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remove speex cpack

cpack was causing issues with compiling remove any references to it.

change all options being set for the new libs to use the advanced_option macro

remove speex, opus is better.
marauder2k7 преди 1 година
родител
ревизия
8fc56dfd9c
променени са 100 файла, в които са добавени 17 реда и са изтрити 37031 реда
  1. 16 18
      Engine/lib/CMakeLists.txt
  2. 0 2
      Engine/lib/libogg/CMakeLists.txt
  3. 1 1
      Engine/lib/libsndfile/CMakeLists.txt
  4. 0 20
      Engine/lib/speex/.appveyor.yml
  5. 0 17
      Engine/lib/speex/.cvsignore
  6. 0 55
      Engine/lib/speex/.gitignore
  7. 0 39
      Engine/lib/speex/.travis.yml
  8. 0 18
      Engine/lib/speex/AUTHORS
  9. 0 435
      Engine/lib/speex/CMakeLists.txt
  10. 0 35
      Engine/lib/speex/COPYING
  11. 0 21
      Engine/lib/speex/ChangeLog
  12. 0 225
      Engine/lib/speex/Doxyfile
  13. 0 4
      Engine/lib/speex/IDEAS
  14. 0 8
      Engine/lib/speex/INSTALL
  15. 0 31
      Engine/lib/speex/Makefile.am
  16. 0 1
      Engine/lib/speex/NEWS
  17. 0 10
      Engine/lib/speex/OPTIMIZE
  18. 0 9
      Engine/lib/speex/README
  19. 0 56
      Engine/lib/speex/README.TI-DSP
  20. 0 191
      Engine/lib/speex/README.Trimedia
  21. 0 21
      Engine/lib/speex/README.blackfin
  22. 0 43
      Engine/lib/speex/README.symbian
  23. 0 11
      Engine/lib/speex/README.win32
  24. 0 201
      Engine/lib/speex/Speex.kdevelop
  25. 0 71
      Engine/lib/speex/Speex.spec.in
  26. 0 38
      Engine/lib/speex/TODO
  27. 0 11
      Engine/lib/speex/autogen.sh
  28. 0 28
      Engine/lib/speex/cmake/FindFFTW3.cmake
  29. 0 38
      Engine/lib/speex/cmake/FindOgg.cmake
  30. 0 28
      Engine/lib/speex/cmake/FindSpeexDsp.cmake
  31. 0 22
      Engine/lib/speex/cmake/TestVarArrays.cmake
  32. 0 1
      Engine/lib/speex/cmake/speex-config.cmake
  33. 0 23
      Engine/lib/speex/config.h.cmake
  34. 0 358
      Engine/lib/speex/configure.ac
  35. 0 2
      Engine/lib/speex/doc/.cvsignore
  36. 0 3
      Engine/lib/speex/doc/Makefile.am
  37. 0 688
      Engine/lib/speex/doc/celp_decoder.eps
  38. BIN
      Engine/lib/speex/doc/celp_decoder.odg
  39. 0 1361
      Engine/lib/speex/doc/components.eps
  40. BIN
      Engine/lib/speex/doc/components.odg
  41. 0 699
      Engine/lib/speex/doc/draft-herlein-avt-rtp-speex-00.txt
  42. 0 841
      Engine/lib/speex/doc/draft-herlein-speex-rtp-profile-02.txt
  43. 0 1232
      Engine/lib/speex/doc/draft-herlein-speex-rtp-profile-03.txt
  44. 0 815
      Engine/lib/speex/doc/draft-herlein-speex-rtp-profile-03.xml
  45. 0 784
      Engine/lib/speex/doc/draft-ietf-avt-rtp-speex-00.txt
  46. 0 1008
      Engine/lib/speex/doc/draft-ietf-avt-rtp-speex-01-tmp.txt
  47. 0 1288
      Engine/lib/speex/doc/draft-ietf-avt-rtp-speex-05-tmp.txt
  48. 0 1298
      Engine/lib/speex/doc/echo_path.eps
  49. BIN
      Engine/lib/speex/doc/echo_path.odg
  50. 0 12085
      Engine/lib/speex/doc/manual.lyx
  51. BIN
      Engine/lib/speex/doc/manual.pdf
  52. 0 182
      Engine/lib/speex/doc/nb_celp.c
  53. 0 125
      Engine/lib/speex/doc/programming.html
  54. 0 2045
      Engine/lib/speex/doc/ref_shaping.eps
  55. 0 76
      Engine/lib/speex/doc/rtp.txt
  56. 0 65
      Engine/lib/speex/doc/sampledec.c
  57. 0 64
      Engine/lib/speex/doc/sampleenc.c
  58. 0 3022
      Engine/lib/speex/doc/speex_abs.eps
  59. BIN
      Engine/lib/speex/doc/speex_abs.odg
  60. 0 744
      Engine/lib/speex/doc/speex_analysis.eps
  61. BIN
      Engine/lib/speex/doc/speex_analysis.odg
  62. 0 215
      Engine/lib/speex/html/index.html
  63. 0 39
      Engine/lib/speex/html/patents.html
  64. BIN
      Engine/lib/speex/html/speex.png
  65. 0 7
      Engine/lib/speex/html/speex.webprj
  66. BIN
      Engine/lib/speex/html/speex.xcf
  67. 0 2
      Engine/lib/speex/include/Makefile.am
  68. 0 9
      Engine/lib/speex/include/speex/Makefile.am
  69. 0 425
      Engine/lib/speex/include/speex/speex.h
  70. 0 174
      Engine/lib/speex/include/speex/speex_bits.h
  71. 0 134
      Engine/lib/speex/include/speex/speex_callbacks.h
  72. 0 12
      Engine/lib/speex/include/speex/speex_config_types.h.in
  73. 0 94
      Engine/lib/speex/include/speex/speex_header.h
  74. 0 92
      Engine/lib/speex/include/speex/speex_stereo.h
  75. 0 126
      Engine/lib/speex/include/speex/speex_types.h
  76. 0 11
      Engine/lib/speex/libspeex/.cvsignore
  77. 0 53
      Engine/lib/speex/libspeex/Makefile.am
  78. 0 160
      Engine/lib/speex/libspeex/_kiss_fft_guts.h
  79. 0 237
      Engine/lib/speex/libspeex/arch.h
  80. 0 15
      Engine/lib/speex/libspeex/bfin.h
  81. 0 372
      Engine/lib/speex/libspeex/bits.c
  82. 0 623
      Engine/lib/speex/libspeex/cb_search.c
  83. 0 103
      Engine/lib/speex/libspeex/cb_search.h
  84. 0 137
      Engine/lib/speex/libspeex/cb_search_arm4.h
  85. 0 111
      Engine/lib/speex/libspeex/cb_search_bfin.h
  86. 0 84
      Engine/lib/speex/libspeex/cb_search_sse.h
  87. 0 50
      Engine/lib/speex/libspeex/exc_10_16_table.c
  88. 0 66
      Engine/lib/speex/libspeex/exc_10_32_table.c
  89. 0 66
      Engine/lib/speex/libspeex/exc_20_32_table.c
  90. 0 290
      Engine/lib/speex/libspeex/exc_5_256_table.c
  91. 0 98
      Engine/lib/speex/libspeex/exc_5_64_table.c
  92. 0 162
      Engine/lib/speex/libspeex/exc_8_128_table.c
  93. 0 448
      Engine/lib/speex/libspeex/fftwrap.c
  94. 0 58
      Engine/lib/speex/libspeex/fftwrap.h
  95. 0 836
      Engine/lib/speex/libspeex/filters.c
  96. 0 105
      Engine/lib/speex/libspeex/filters.h
  97. 0 96
      Engine/lib/speex/libspeex/filters_arm4.h
  98. 0 520
      Engine/lib/speex/libspeex/filters_bfin.h
  99. 0 336
      Engine/lib/speex/libspeex/filters_sse.h
  100. 0 148
      Engine/lib/speex/libspeex/fixed_arm4.h

+ 16 - 18
Engine/lib/CMakeLists.txt

@@ -258,32 +258,30 @@ if(TORQUE_SFX_OPENAL)
     mark_as_advanced(AUDIOUNIT_INCLUDE_DIR)
 endif()
 
-set(INSTALL_DOCS OFF CACHE BOOL "" FORCE)
-set(INSTALL_PKG_CONFIG_MODULE OFF CACHE BOOL "" FORCE)
-set(INSTALL_CMAKE_PACKAGE_MODULE OFF CACHE BOOL "" FORCE)
-set(BUILD_TESTING OFF CACHE BOOL "" FORCE)
+advanced_option(INSTALL_DOCS "" OFF)
+advanced_option(INSTALL_PKG_CONFIG_MODULE "" OFF)
+advanced_option(INSTALL_CMAKE_PACKAGE_MODULE "" OFF)
+advanced_option(BUILD_TESTING "" OFF)
 add_subdirectory(libogg ${TORQUE_LIB_TARG_DIRECTORY}/libogg )
 add_subdirectory(libvorbis ${TORQUE_LIB_TARG_DIRECTORY}/libvorbis EXCLUDE_FROM_ALL)
 
-set(INSTALL_PKGCONFIG_MODULES OFF CACHE BOOL "" FORCE)
-set(INSTALL_CMAKE_CONFIG_MODULE OFF CACHE BOOL "" FORCE)
+advanced_option(INSTALL_PKGCONFIG_MODULES "" OFF)
+sadvanced_optionet(INSTALL_CMAKE_CONFIG_MODULE "" OFF)
 add_subdirectory(flac ${TORQUE_LIB_TARG_DIRECTORY}/flac EXCLUDE_FROM_ALL)
 
-add_subdirectory(speex ${TORQUE_LIB_TARG_DIRECTORY}/speex EXCLUDE_FROM_ALL)
-
-set(INSTALL_DOCS OFF CACHE BOOL "" FORCE)
-set(OPUS_INSTALL_PKG_CONFIG_MODULE OFF CACHE BOOL "" FORCE)
-set(OPUS_INSTALL_CMAKE_CONFIG_MODULE OFF CACHE BOOL "" FORCE)
+advanced_option(INSTALL_DOCS "" OFF)
+advanced_option(OPUS_INSTALL_PKG_CONFIG_MODULE "" OFF)
+advanced_option(OPUS_INSTALL_CMAKE_CONFIG_MODULE "" OFF)
 add_subdirectory(opus ${TORQUE_LIB_TARG_DIRECTORY}/opus EXCLUDE_FROM_ALL)
 add_subdirectory(libtheora ${TORQUE_LIB_TARG_DIRECTORY}/libtheora EXCLUDE_FROM_ALL)
 
-set(BUILD_PROGRAMS OFF CACHE BOOL "" FORCE)
-set(BUILD_EXAMPLES OFF CACHE BOOL "" FORCE)
-set(ENABLE_CPACK OFF CACHE BOOL "" FORCE)
-set(ENABLE_PACKAGE_CONFIG OFF CACHE BOOL "" FORCE)
-set(INSTALL_PKGCONFIG_MODULE OFF CACHE BOOL "" FORCE)
-set(ENABLE_MPEG OFF CACHE BOOL "" FORCE)
-set(ENABLE_EXPERIMENTAL ON CACHE BOOL "" FORCE)
+advanced_option(BUILD_PROGRAMS "" OFF)
+advanced_option(BUILD_EXAMPLES "" OFF)
+advanced_option(ENABLE_CPACK "" OFF)
+advanced_option(ENABLE_PACKAGE_CONFIG "" OFF)
+advanced_option(INSTALL_PKGCONFIG_MODULE "" OFF)
+advanced_option(ENABLE_MPEG "" OFF)
+advanced_option(ENABLE_EXPERIMENTAL "" OFF)
 add_subdirectory(libsndfile ${TORQUE_LIB_TARG_DIRECTORY}/libsndfile EXCLUDE_FROM_ALL)
 
 if(TORQUE_TESTING)

+ 0 - 2
Engine/lib/libogg/CMakeLists.txt

@@ -200,5 +200,3 @@ if(BUILD_TESTING)
     add_test(NAME test_framing COMMAND $<TARGET_FILE:test_framing>)
 endif()
 
-set(CPACK_PACKAGE_VERSION ${PROJECT_VERSION})
-include(CPack)

+ 1 - 1
Engine/lib/libsndfile/CMakeLists.txt

@@ -394,7 +394,7 @@ target_link_libraries (sndfile
 		$<$<BOOL:${HAVE_EXTERNAL_XIPH_LIBS}>:Ogg::ogg>
 		$<$<BOOL:${HAVE_EXTERNAL_XIPH_LIBS}>:vorbisenc>
 		$<$<BOOL:${HAVE_EXTERNAL_XIPH_LIBS}>:FLAC::FLAC>
-		$<$<AND:$<BOOL:${ENABLE_EXPERIMENTAL}>,$<BOOL:${HAVE_EXTERNAL_XIPH_LIBS}>,$<BOOL:${HAVE_SPEEX}>>:speex>
+		$<$<AND:$<BOOL:${ENABLE_EXPERIMENTAL}>,$<BOOL:${HAVE_EXTERNAL_XIPH_LIBS}>,$<BOOL:${HAVE_SPEEX}>>:Speex::Speex>
 		$<$<BOOL:${HAVE_EXTERNAL_XIPH_LIBS}>:Opus::opus>
 		$<$<BOOL:${HAVE_MPEG}>:MPG123::libmpg123>
 		$<$<BOOL:${HAVE_MPEG}>:mp3lame::mp3lame>

+ 0 - 20
Engine/lib/speex/.appveyor.yml

@@ -1,20 +0,0 @@
-version: 1.2-{build}
-image: Visual Studio 2017
-configuration: Debug
-platform:
-  - Win32
-  - x64
-install:
-  - if %platform%==Win32 set VCPKG_TRIPLET=x86-windows
-  - if %platform%==x64 set VCPKG_TRIPLET=x64-windows
-  - vcpkg install libogg:%VCPKG_TRIPLET% fftw3:%VCPKG_TRIPLET%
-before_build:
-  - mkdir CMakeBuild
-  - cd CMakeBuild
-  - if %platform%==Win32 set CMAKE_GENERATOR=Visual Studio 15 2017
-  - if %platform%==x64 set CMAKE_GENERATOR=Visual Studio 15 2017 Win64
-  - cmake .. -G"%CMAKE_GENERATOR%" -DCMAKE_TOOLCHAIN_FILE=C:/Tools/vcpkg/scripts/buildsystems/vcpkg.cmake
-build_script:
-  - cmake --build . --config %configuration%
-cache:
-  C:\Tools\vcpkg\Installed -> appveyor.yml

+ 0 - 17
Engine/lib/speex/.cvsignore

@@ -1,17 +0,0 @@
-Makefile
-Makefile.in
-Speex.spec
-aclocal.m4
-autom4te.cache
-config.guess
-config.log
-config.status
-config.sub
-configure
-depcomp
-install-sh
-libtool
-ltconfig
-ltmain.sh
-missing
-mkinstalldirs

+ 0 - 55
Engine/lib/speex/.gitignore

@@ -1,55 +0,0 @@
-*.o
-*.lo
-Makefile.in
-*~
-*.orig
-fixed
-float
-Speex.kdevelop.pcs
-Speex.kdevses
-aclocal.m4
-autom4te.cache
-compile
-config.guess
-config.h.in
-config.sub
-configure
-depcomp
-install-sh
-ltmain.sh
-m4/libtool.m4
-m4/ltoptions.m4
-m4/ltsugar.m4
-m4/ltversion.m4
-m4/lt~obsolete.m4
-missing
-Makefile
-.deps
-.libs
-*.la
-work
-Speex.spec
-config.h
-config.log
-config.status
-include/speex/speex_config_types.h
-*.sw[lmnop]
-testenc
-testenc_uwb
-testenc_wb
-libtool
-speex.pc
-src/speexdec
-src/speexenc
-stamp-*
-patches
-
-CMakeCache.txt
-CMakeFiles
-CMakeScripts
-Testing
-Makefile
-cmake_install.cmake
-install_manifest.txt
-compile_commands.json
-CTestTestfile.cmake

+ 0 - 39
Engine/lib/speex/.travis.yml

@@ -1,39 +0,0 @@
-language: c
-sudo: false
-dist: trusty
-addons:
-  apt:
-    packages:
-      - libogg-dev
-      - libspeexdsp-dev
-      - libfftw3-dev
-
-env:
-  matrix:
-    - CMAKE=1 CONFIG=""
-    - CMAKE=1 CONFIG="-DENABLE_FIXED_POINT:BOOL=TRUE -DENABLE_FLOATING_POINT:BOOL=FALSE"
-    - CMAKE=1 CONFIG="-DENABLE_FIXED_POINT:BOOL=TRUE -DENABLE_FLOATING_POINT:BOOL=FALSE -DDISABLE_FLOAT_API:BOOL=TRUE"
-    - CMAKE=1 CONFIG="-DENABLE_VORBIS_PSY:BOOL=TRUE"
-    - CMAKE=1 CONFIG="-DDISABLE_BINARIES:BOOL=TRUE"
-    - AUTOTOOLS=1 CONFIG=""
-    - AUTOTOOLS=1 CONFIG="--enable-fixed-point"
-    - AUTOTOOLS=1 CONFIG="--enable-fixed-point --disable-float-api"
-    - AUTOTOOLS=1 CONFIG="--enable-vorbis-psy"
-    - AUTOTOOLS=1 CONFIG="--disable-binaries"
-
-os:
-  - linux
-  - osx
-
-compiler:
-  - gcc
-  - clang
-
-before_install:
-  - if [[ "${TRAVIS_OS_NAME}" == "osx" ]]; then
-      brew install libogg speexdsp fftw;
-    fi
-
-script:
-  - if [ "$CMAKE" == "1" ]; then mkdir cmake-build; cd cmake-build; cmake .. $CONFIG -DBUILD_SHARED_LIBS:BOOL=TRUE -DCMAKE_INSTALL_PREFIX:PATH=$HOME/cmake-check; make install; fi
-  - if [ "$AUTOTOOLS" == "1" ]; then ./autogen.sh; ./configure $CONFIG; make distcheck; fi

+ 0 - 18
Engine/lib/speex/AUTHORS

@@ -1,18 +0,0 @@
-Jean-Marc Valin <[email protected]>
-   All the code except the following
-
-David Rowe <[email protected]>
-   lsp.c lsp.h 
-   Also ideas and feedback
-
-John Francis Edwards
-   wave_out.[ch], some #ifdefs for windows port and MSVC project files
-
-Segher Boessenkool
-   Misc. optimizations (for QMF in particular)
-
-Atsuhiko Yamanaka <[email protected]>:
-   Patch to speexenc.c to add Vorbis comment format
-
-Radim Kolar <[email protected]>:
-   Patch to speexenc.c for supporting more input formats

+ 0 - 435
Engine/lib/speex/CMakeLists.txt

@@ -1,435 +0,0 @@
-cmake_minimum_required(VERSION 3.1)
-
-project(speex VERSION 1.2.0 LANGUAGES C)
-
-set(CMAKE_MODULE_PATH "${CMAKE_CURRENT_SOURCE_DIR}/cmake/")
-
-include(CheckIncludeFile)
-include(CheckSymbolExists)
-include(CheckLibraryExists)
-include(CMakeDependentOption)
-include(FeatureSummary)
-include(TestVarArrays)
-include(CheckCCompilerFlag)
-include(GNUInstallDirs)
-include(TestBigEndian)
-
-test_big_endian(WORDS_BIGENDIAN)
-
-check_include_file(inttypes.h HAVE_INTTYPES_H)
-if(HAVE_INTTYPES_H)
-	set(INCLUDE_STDINT "#include <inttypes.h>")
-else()
-	check_include_file(stdint.h HAVE_STDINT_H)
-	if(HAVE_STDINT_H)
-		set(INCLUDE_STDINT "#include <stdint.h>")
-	else()
-		check_include_file(sys/types.h INCLUDE_SYS_TYPES_H)
-		if(HAVE_SYS_TYPES_H)
-			set(INCLUDE_STDINT "#include <sys/types.h>")
-		endif()
-	endif()
-endif()
-set(SIZE16 int16_t)
-set(USIZE16 uint16_t)
-set(SIZE32 int32_t)
-set(USIZE32 uint32_t)
-set(SIZE64 int64_t)
-configure_file(include/speex/speex_config_types.h.in include/speex/speex_config_types.h @ONLY)
-
-test_vararrays(VAR_ARRAYS)
-if(NOT VAR_ARRAYS)
-	check_include_file(alloca.h HAVE_ALLOCA_H)
-	if(WIN32)
-		set(USE_ALLOCA 1)
-	else()
-		check_symbol_exists(alloca "stdlib.h;alloca.h"  USE_ALLOCA)
-	endif()
-endif()
-
-option(ENABLE_FLOATING_POINT "Compile as floating-point" ON)
-option(ENABLE_FIXED_POINT "Compile as fixed-point" OFF)
-
-
-if(ENABLE_FLOATING_POINT AND ENABLE_FIXED_POINT)
-	message(FATAL_ERROR "Select one of ENABLE_FLOATING_POINT of ENABLE_FIXED_POINT.")
-endif()
-if((NOT ENABLE_FLOATING_POINT) AND (NOT ENABLE_FIXED_POINT))
-	message(FATAL_ERROR "Select one of ENABLE_FLOATING_POINT of ENABLE_FIXED_POINT.")
-endif()
-
-find_package(FFTW3)
-
-cmake_dependent_option(USE_GPL_FFTW3 "Use FFTW3 for FFT" OFF "FFTW3_FOUND; ENABLE_FLOATING_POINT" OFF)
-
-if(ENABLE_FLOATING_POINT)
-	set(FLOATING_POINT 1)
-	set(FIXED_POINT 0)
-	set(USE_KISS_FFT 0)
-	if(NOT USE_GPL_FFTW3)
-		set(USE_SMALLFT 1)
-	endif()
-else()
-	set(FLOATING_POINT 0)
-	set(FIXED_POINT 1)
-	set(USE_KISS_FFT 1)
-	set(USE_SMALLFT 0)
-	set(USE_GPL_FFTW3 0)
-endif()
-
-cmake_dependent_option(ENABLE_FIXED_POINT_DEBUG "Debug fixed-point implementation" OFF "ENABLE_FIXED_POINT" OFF)
-set(FIXED_POINT_DEBUG ${ENABLE_FIXED_POINT_DEBUG})
-
-option(DISABLE_FLOAT_API "Disable all parts of the API that are using floats" OFF)
-option(DISABLE_VBR "Disable VBR and VAD from the codec" OFF)
-cmake_dependent_option(ENABLE_VORBIS_PSY "Enable the Vorbis psy model" OFF "NOT ENABLE_FIXED_POINT;VAR_ARRAYS" OFF)
-set(VORBIS_PSYCHO ${ENABLE_VORBIS_PSY})
-
-if(CMAKE_SYSTEM_PROCESSOR MATCHES "(x86)|(X86)|(amd64)|(AMD64)")
-    set(CPU_IS_X86 TRUE)
-else()
-    set(CPU_IS_X86 FALSE)
-endif()
-if(CPU_IS_X86)
-	check_include_file(xmmintrin.h HAVE_XMMINTRIN_H)
-endif()
-cmake_dependent_option(ENABLE_SSE "Enable SSE support" ON "CPU_IS_X86;HAVE_XMMINTRIN_H;ENABLE_FLOATING_POINT" OFF)
-if(ENABLE_SSE)
-	set(_USE_SSE 1)
-	check_c_compiler_flag("/arch:SSE" ARCH_SSE_FLAG)
-	if(ARCH_SSE_FLAG)
-		set(SSE_FLAGS "/arch:SSE")
-	else()
-		check_c_compiler_flag("-msse" MSSE_FLAG)
-		if(MSSE_FLAG)
-			set(SSE_FLAGS "-msse")
-		endif()
-	endif()
-endif()
-
-if (CMAKE_SYSTEM_PROCESSOR MATCHES "^arm")
-	set(CPU_IS_ARM 1)
-endif ()
-cmake_dependent_option(ENABLE_ARM4_ASM "Make use of ARM4 assembly optimizations" OFF "CPU_IS_ARM;ENABLE_FIXED_POINT" OFF)
-set(ARM4_ASM ${ENABLE_ARM4_ASM})
-cmake_dependent_option(ENABLE_ARM5E_ASM "Make use of ARM5E assembly optimizations" OFF "CPU_IS_ARM;ENABLE_FIXED_POINT" OFF)
-set(ARM5E_ASM ${ENABLE_ARM5E_ASM})
-cmake_dependent_option(ENABLE_BLACKFIN_ASM "Make use of Blackfin assembly optimizations" OFF "NOT CPU_IS_X86;ENABLE_FIXED_POINT" OFF)
-set(BFIN_ASM ${ENABLE_BLACKFIN_ASM})
-cmake_dependent_option(ENABLE_TI_C55X "Enable support for TI C55X DSP" OFF "NOT CPU_IS_X86" OFF)
-set(TI_C55X ${ENABLE_TI_C55X})
-
-if(NOT WIN32)
-	check_library_exists(m cos "" HAVE_LIBM)
-	if(HAVE_LIBM)
-		find_library(LIBM m)
-	endif()
-endif()
-
-if(MSVC)
-	add_definitions(-D_CRT_SECURE_NO_WARNINGS -D_CRT_NONSTDC_NO_DEPRECATE)
-endif(MSVC)
-
-find_package(Ogg)
-find_package(SpeexDsp)
-
-cmake_dependent_option(USE_SPEEXDSP "Enable SpeexDSP library" ON "SpeexDsp_FOUND" OFF)
-cmake_dependent_option(BUILD_PROGRAMS "Build the encoder and decoder programs, not only the library" ON "Ogg_FOUND" ON)
-
-check_c_compiler_flag("-fvisibility=hidden" HAS_VISIBILITY)
-if(HAS_VISIBILITY)
-	SET(EXPORT "__attribute__((visibility(\"default\")))")
-endif()
-
-check_include_file(getopt.h HAVE_GETOPT_H)
-if(HAVE_GETOPT_H)
-	check_symbol_exists(getopt_long getopt.h HAVE_GETOPT_LONG)
-endif()
-
-option (ENABLE_PACKAGE_CONFIG "Generate and install package config file" ON)
-
-set_package_properties(Ogg PROPERTIES TYPE RECOMMENDED
-	URL "www.xiph.org/ogg/"
-	DESCRIPTION "library for manipulating ogg bitstreams"
-	PURPOSE "Required to build speexenc and speexdec tools")
-set_package_properties(SpeexDsp PROPERTIES TYPE RECOMMENDED
-	URL "https://speex.org/"
-	DESCRIPTION "speech processing library that goes along with the Speex codec"
-	PURPOSE "Enables speexenc tool preprocessing options")
-set_package_properties(FFTW3 PROPERTIES TYPE OPTIONAL
-	URL "http://www.fftw.org/"
-	DESCRIPTION "fast Fourier transform library"
-	PURPOSE "Enables use of FFTW3 for fast Fourier transforms")
-add_feature_info(ENABLE_ALLOCA USE_ALLOCA "Make use of alloca function.")
-add_feature_info(ENABLE_VAR_ARRAYS VAR_ARRAYS "Make use of variable-length arrays.")
-add_feature_info(ENABLE_FLOATING_POINT ENABLE_FLOATING_POINT "compile as floating-point.")
-add_feature_info(ENABLE_FIXED_POINT ENABLE_FIXED_POINT "compile as fixed-point.")
-add_feature_info(ENABLE_FIXED_POINT_DEBUG ENABLE_FIXED_POINT_DEBUG "debug fixed-point implementation.")
-add_feature_info(ENABLE_SSE ENABLE_SSE "enable SSE support.")
-add_feature_info(ENABLE_ARM4_ASM ENABLE_ARM4_ASM "make use of ARM4 assembly optimizations.")
-add_feature_info(ENABLE_ARM5E_ASM ENABLE_ARM5E_ASM "make use of ARM5E assembly optimizations.")
-add_feature_info(ENABLE_BLACKFIN_ASM ENABLE_BLACKFIN_ASM "make use of Blackfin assembly optimizations.")
-add_feature_info(ENABLE_TI_C55X ENABLE_TI_C55X "enable support for TI C55X DSP.")
-add_feature_info(DISABLE_FLOAT_API DISABLE_FLOAT_API "disable all parts of the API that are using floats.")
-add_feature_info(DISABLE_VBR DISABLE_VBR "disable VBR and VAD from the codec.")
-add_feature_info(ENABLE_VORBIS_PSY ENABLE_VORBIS_PSY "enable the Vorbis psy model.")
-add_feature_info(ENABLE_SPEEXDSP USE_SPEEXDSP "enable speexenc preprocessing options.")
-add_feature_info(BUILD_BINARIES BUILD_BINARIES "build the encoder and decoder programs, not only the library.")
-add_feature_info(ENABLE_PACKAGE_CONFIG ENABLE_PACKAGE_CONFIG "generate and install package config file")
-add_feature_info(USE_GPL_FFTW3 USE_GPL_FFTW3 "Use FFTW3 library for fast Fourier transforms")
-feature_summary(WHAT ALL)
-
-configure_file(config.h.cmake config.h)
-
-set(speex_PUBLIC_HEADERS
-	include/speex/speex.h
-	include/speex/speex_bits.h
-	include/speex/speex_callbacks.h
-	include/speex/speex_header.h
-	include/speex/speex_stereo.h
-	include/speex/speex_types.h
-	${CMAKE_CURRENT_BINARY_DIR}/include/speex/speex_config_types.h)
-
-set(speex_SOURCES
-	libspeex/cb_search.c
-	libspeex/exc_10_32_table.c
-	libspeex/exc_8_128_table.c
-	libspeex/filters.c
-	libspeex/gain_table.c
-	libspeex/hexc_table.c
-	libspeex/high_lsp_tables.c
-	libspeex/lsp.c
-	libspeex/ltp.c
-	libspeex/speex.c
-	libspeex/stereo.c
-	libspeex/vbr.c
-	libspeex/vq.c
-	libspeex/bits.c
-	libspeex/exc_10_16_table.c
-	libspeex/exc_20_32_table.c
-	libspeex/exc_5_256_table.c
-	libspeex/exc_5_64_table.c
-	libspeex/gain_table_lbr.c
-	libspeex/hexc_10_32_table.c
-	libspeex/lpc.c
-	libspeex/lsp_tables_nb.c
-	libspeex/modes.c
-	libspeex/modes_wb.c
-	libspeex/nb_celp.c
-	libspeex/quant_lsp.c
-	libspeex/sb_celp.c
-	libspeex/speex_callbacks.c
-	libspeex/speex_header.c
-	libspeex/window.c
-	libspeex/arch.h
-	libspeex/bfin.h
-	libspeex/cb_search_arm4.h
-	libspeex/cb_search_bfin.h
-	libspeex/cb_search_sse.h
-	libspeex/filters.h
-	libspeex/filters_arm4.h
-	libspeex/filters_bfin.h
-	libspeex/filters_sse.h
-	libspeex/fixed_arm4.h
-	libspeex/fixed_arm5e.h
-	libspeex/fixed_bfin.h
-	libspeex/fixed_debug.h
-	libspeex/lpc.h
-	libspeex/lpc_bfin.h
-	libspeex/ltp.h
-	libspeex/ltp_arm4.h
-	libspeex/ltp_sse.h
-	libspeex/math_approx.h
-	libspeex/misc_bfin.h
-	libspeex/nb_celp.h
-	libspeex/quant_lsp.h
-	libspeex/sb_celp.h
-	libspeex/stack_alloc.h
-	libspeex/vbr.h
-	libspeex/vq.h
-	libspeex/vq_arm4.h
-	libspeex/vq_bfin.h
-	libspeex/vq_sse.h
-	libspeex/cb_search.h
-	libspeex/fftwrap.h
-	libspeex/fftwrap.c
-	libspeex/fixed_generic.h
-	libspeex/lsp.h
-	libspeex/lsp_bfin.h
-	libspeex/ltp_bfin.h
-	libspeex/modes.h
-	libspeex/os_support.h
-	libspeex/quant_lsp_bfin.h
-	libspeex/smallft.h)
-
-add_library(speex ${speex_PUBLIC_HEADERS} ${speex_SOURCES})
-target_compile_definitions(speex
-	PRIVATE -DHAVE_CONFIG_H)
-target_include_directories(speex
-	PRIVATE $<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}>
-	PUBLIC $<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}/include/speex>
-	PUBLIC $<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/include>
-	PUBLIC $<INSTALL_INTERFACE:${CMAKE_INSTALL_INCLUDEDIR}>)
-if(USE_GPL_FFTW3)
-	target_include_directories(speex
-		PRIVATE $<BUILD_INTERFACE:${FFTW3_INCLUDE_DIRS}>)
-	if(BUILD_SHARED_LIBS)
-		target_link_libraries(speex PRIVATE ${FFTW3_LIBRARIES})
-	else()
-		target_link_libraries(speex PUBLIC ${FFTW3_LIBRARIES})
-	endif()
-endif()
-if(HAVE_LIBM)
-	if(BUILD_SHARED_LIBS)
-		target_link_libraries(speex PRIVATE ${LIBM})
-	else()
-		target_link_libraries(speex PUBLIC ${LIBM})
-	endif()
-endif()
-target_compile_options(speex PRIVATE ${SSE_FLAGS})
-if(WIN32 AND BUILD_SHARED_LIBS)
-	target_sources(speex PRIVATE win32/libspeex.def)
-	set_target_properties (speex PROPERTIES OUTPUT_NAME "libspeex")
-endif()
-set_target_properties (speex PROPERTIES
-		PUBLIC_HEADER "${speex_PUBLIC_HEADERS}"
-		SOVERSION 1.5.1
-		VERSION 1)
-if(EXPORT AND BUILD_SHARED_LIBS)
-	set_target_properties (speex PROPERTIES
-			C_VISIBILITY_PRESET hidden)
-endif()
-if(USE_SMALLFT)
-	target_sources(speex PRIVATE
-		libspeex/smallft.c)
-elseif(USE_KISS_FFT)
-	target_sources(speex PRIVATE
-		libspeex/kiss_fft.c
-		libspeex/_kiss_fft_guts.h
-		libspeex/kiss_fft.h
-		libspeex/kiss_fftr.c
-		libspeex/kiss_fftr.h)
-endif()
-if(VORBIS_PSYCHO)
-	target_sources(speex PRIVATE
-		libspeex/vorbis_psy.h
-		libspeex/vorbis_psy.c)
-endif()
-
-# Programs
-
-if(BUILD_BINARIES)
-
-SET(speexenc_SOURCES
-	src/speexenc.c
-	src/wav_io.c
-	src/skeleton.c)
-add_executable(speexenc ${speexenc_SOURCES})
-target_include_directories(speexenc
-	PRIVATE
-		$<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}>
-		$<BUILD_INTERFACE:${SPEEXDSP_INCLUDE_DIRS}>)
-target_link_libraries(speexenc
-	PUBLIC speex Ogg::ogg ${SPEEXDSP_LIBRARIES})
-if(WIN32)
-	target_link_libraries(speexenc PRIVATE winmm.lib)
-endif()
-target_compile_definitions(speexenc
-	PRIVATE -DHAVE_CONFIG_H)
-if(NOT HAVE_GETOPT_LONG)
-	target_sources(speexenc PRIVATE
-		src/getopt.c
-		src/getopt1.c
-		src/wave_out.c)
-endif()
-
-SET(speexdec_SOURCES
-	src/speexdec.c
-	src/wav_io.c)
-add_executable(speexdec ${speexdec_SOURCES})
-target_include_directories(speexdec
-	PRIVATE
-		$<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}>
-		$<BUILD_INTERFACE:${OGG_INCLUDE_DIRS}>)
-target_link_libraries(speexdec PUBLIC speex ${OGG_LIBRARIES})
-if(WIN32)
-	target_link_libraries(speexdec PRIVATE winmm.lib)
-endif()
-target_compile_definitions(speexdec
-	PRIVATE -DHAVE_CONFIG_H)
-if(NOT HAVE_GETOPT_LONG)
-	target_sources(speexdec PRIVATE
-		src/getopt.c
-		src/getopt1.c
-		src/wave_out.c)
-endif()
-
-# Tests (no automatic checking supported)
-
-add_executable(testenc libspeex/testenc.c)
-target_include_directories(testenc
-	PRIVATE $<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}>)
-target_link_libraries(testenc
-	PRIVATE ${LIBM}
-	PUBLIC speex)
-target_compile_definitions(testenc
-	PRIVATE -DHAVE_CONFIG_H)
-add_executable(testenc_wb libspeex/testenc_wb.c)
-target_include_directories(testenc_wb
-	PRIVATE $<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}>)
-target_link_libraries(testenc_wb
-	PRIVATE ${LIBM}
-	PUBLIC speex)
-target_compile_definitions(testenc_wb
-	PRIVATE -DHAVE_CONFIG_H)
-add_executable(testenc_uwb libspeex/testenc_uwb.c)
-target_include_directories(testenc_uwb
-	PRIVATE $<BUILD_INTERFACE:${CMAKE_CURRENT_BINARY_DIR}>)
-target_link_libraries(testenc_uwb
-	PRIVATE ${LIBM}
-	PUBLIC speex)
-target_compile_definitions(testenc_uwb
-	PRIVATE -DHAVE_CONFIG_H)
-
-endif()
-
-# Installation
-
-install(TARGETS speex
-	EXPORT speex-targets
-	RUNTIME	DESTINATION			${CMAKE_INSTALL_BINDIR}
-	ARCHIVE DESTINATION			${CMAKE_INSTALL_LIBDIR}
-	LIBRARY DESTINATION			${CMAKE_INSTALL_LIBDIR}
-	PUBLIC_HEADER DESTINATION	${CMAKE_INSTALL_INCLUDEDIR}/speex)
-
-if(BUILD_BINARIES)
-	install(TARGETS speexdec speexenc RUNTIME DESTINATION ${CMAKE_INSTALL_BINDIR})
-endif()
-
-install(FILES doc/manual.pdf DESTINATION ${CMAKE_INSTALL_DOCDIR})
-install(FILES src/speexenc.1 src/speexdec.1 DESTINATION ${CMAKE_INSTALL_MANDIR}/man1)
-install(FILES speex.m4 DESTINATION ${CMAKE_INSTALL_DATAROOTDIR}/aclocal)
-
-set(prefix ${CMAKE_INSTALL_PREFIX})
-set(exec_prefix $\{prefix\})
-set(libdir $\{exec_prefix\}/${CMAKE_INSTALL_LIBDIR})
-set(includedir $\{prefix\}/${CMAKE_INSTALL_INCLUDEDIR})
-set(SPEEX_VERSION ${PROJECT_VERSION})
-if(HAVE_LIBM)
-	set(LIBM -lm)
-endif()
-configure_file(speex.pc.in speex.pc @ONLY)
-install(FILES ${CMAKE_CURRENT_BINARY_DIR}/speex.pc DESTINATION ${CMAKE_INSTALL_LIBDIR}/pkgconfig)
-
-set(PACKAGE ${PROJECT_NAME})
-set(VERSION ${PROJECT_VERSION})
-configure_file(Speex.spec.in Speex.spec @ONLY)
-
-if (ENABLE_PACKAGE_CONFIG)
-	include (CMakePackageConfigHelpers)
-	write_basic_package_version_file (speex-config-version.cmake COMPATIBILITY SameMajorVersion)
-	set(CMAKE_INSTALL_PACKAGEDIR ${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME})
-	install(EXPORT speex-targets NAMESPACE Speex:: DESTINATION ${CMAKE_INSTALL_PACKAGEDIR})
-	install(FILES ${CMAKE_CURRENT_BINARY_DIR}/speex-config-version.cmake DESTINATION ${CMAKE_INSTALL_PACKAGEDIR})
-	install(FILES cmake/speex-config.cmake DESTINATION ${CMAKE_INSTALL_PACKAGEDIR})
-endif()

+ 0 - 35
Engine/lib/speex/COPYING

@@ -1,35 +0,0 @@
-Copyright 2002-2008 	Xiph.org Foundation
-Copyright 2002-2008 	Jean-Marc Valin
-Copyright 2005-2007	Analog Devices Inc.
-Copyright 2005-2008	Commonwealth Scientific and Industrial Research 
-                        Organisation (CSIRO)
-Copyright 1993, 2002, 2006 David Rowe
-Copyright 2003 		EpicGames
-Copyright 1992-1994	Jutta Degener, Carsten Bormann
-
-Redistribution and use in source and binary forms, with or without
-modification, are permitted provided that the following conditions
-are met:
-
-- Redistributions of source code must retain the above copyright
-notice, this list of conditions and the following disclaimer.
-
-- Redistributions in binary form must reproduce the above copyright
-notice, this list of conditions and the following disclaimer in the
-documentation and/or other materials provided with the distribution.
-
-- Neither the name of the Xiph.org Foundation nor the names of its
-contributors may be used to endorse or promote products derived from
-this software without specific prior written permission.
-
-THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.

+ 0 - 21
Engine/lib/speex/ChangeLog

@@ -1,21 +0,0 @@
-2005-09-07  Thomas Vander Stichele  <thomas at apestaart dot org>
-
-	* libspeex/cb_search.c: (split_cb_search_shape_sign_N1):
-	  add declaration for n, seems like an obvious build fix, slap
-	  me down if it's not
-
-2004-02-18 Jean-Marc Valin <[email protected]>
-	Patch for compiling with mingw32 sent by [email protected] 
-
-2004-02-18 Jean-Marc Valin <[email protected]>
-	Integrated IRIX patch (getopt stuff) from Michael Pruett <[email protected]> 
-
-2004-02-18 Jean-Marc Valin <[email protected]>
-	Changed the Makefile.am so that KDevelop can parse SUBDIRS correctly 
-
-2002/03/27 Jean-Marc Valin:
-Working encoder and decoder for both narrowband and wideband.
-
-2002/02/27 Jean-Marc Valin:
-Got the basic encoder working as a demo with quantization only on some 
-parameters.

+ 0 - 225
Engine/lib/speex/Doxyfile

@@ -1,225 +0,0 @@
-# Doxyfile 1.5.1-KDevelop
-
-#---------------------------------------------------------------------------
-# Project related configuration options
-#---------------------------------------------------------------------------
-PROJECT_NAME           = Speex
-PROJECT_NUMBER         = 1.2-beta2
-OUTPUT_DIRECTORY       = doc
-CREATE_SUBDIRS         = NO
-OUTPUT_LANGUAGE        = English
-USE_WINDOWS_ENCODING   = NO
-BRIEF_MEMBER_DESC      = YES
-REPEAT_BRIEF           = YES
-ABBREVIATE_BRIEF       = 
-ALWAYS_DETAILED_SEC    = NO
-INLINE_INHERITED_MEMB  = NO
-FULL_PATH_NAMES        = NO
-STRIP_FROM_PATH        = 
-STRIP_FROM_INC_PATH    = 
-SHORT_NAMES            = NO
-JAVADOC_AUTOBRIEF      = NO
-MULTILINE_CPP_IS_BRIEF = NO
-DETAILS_AT_TOP         = NO
-INHERIT_DOCS           = YES
-SEPARATE_MEMBER_PAGES  = NO
-TAB_SIZE               = 8
-ALIASES                = 
-OPTIMIZE_OUTPUT_FOR_C  = NO
-OPTIMIZE_OUTPUT_JAVA   = NO
-BUILTIN_STL_SUPPORT    = NO
-DISTRIBUTE_GROUP_DOC   = NO
-SUBGROUPING            = YES
-#---------------------------------------------------------------------------
-# Build related configuration options
-#---------------------------------------------------------------------------
-EXTRACT_ALL            = NO
-EXTRACT_PRIVATE        = NO
-EXTRACT_STATIC         = NO
-EXTRACT_LOCAL_CLASSES  = YES
-EXTRACT_LOCAL_METHODS  = NO
-HIDE_UNDOC_MEMBERS     = NO
-HIDE_UNDOC_CLASSES     = NO
-HIDE_FRIEND_COMPOUNDS  = NO
-HIDE_IN_BODY_DOCS      = NO
-INTERNAL_DOCS          = NO
-CASE_SENSE_NAMES       = YES
-HIDE_SCOPE_NAMES       = NO
-SHOW_INCLUDE_FILES     = YES
-INLINE_INFO            = YES
-SORT_MEMBER_DOCS       = YES
-SORT_BRIEF_DOCS        = NO
-SORT_BY_SCOPE_NAME     = NO
-GENERATE_TODOLIST      = YES
-GENERATE_TESTLIST      = YES
-GENERATE_BUGLIST       = YES
-GENERATE_DEPRECATEDLIST= YES
-ENABLED_SECTIONS       = 
-MAX_INITIALIZER_LINES  = 30
-SHOW_USED_FILES        = YES
-SHOW_DIRECTORIES       = YES
-FILE_VERSION_FILTER    = 
-#---------------------------------------------------------------------------
-# configuration options related to warning and progress messages
-#---------------------------------------------------------------------------
-QUIET                  = NO
-WARNINGS               = YES
-WARN_IF_UNDOCUMENTED   = YES
-WARN_IF_DOC_ERROR      = YES
-WARN_NO_PARAMDOC       = NO
-WARN_FORMAT            = "$file:$line: $text"
-WARN_LOGFILE           = 
-#---------------------------------------------------------------------------
-# configuration options related to the input files
-#---------------------------------------------------------------------------
-INPUT                  = include/speex
-FILE_PATTERNS          = 
-RECURSIVE              = NO
-EXCLUDE                = 
-EXCLUDE_SYMLINKS       = NO
-EXCLUDE_PATTERNS       = speex_config_types.h
-EXAMPLE_PATH           = 
-EXAMPLE_PATTERNS       = 
-EXAMPLE_RECURSIVE      = NO
-IMAGE_PATH             = 
-INPUT_FILTER           = 
-FILTER_PATTERNS        = 
-FILTER_SOURCE_FILES    = NO
-#---------------------------------------------------------------------------
-# configuration options related to source browsing
-#---------------------------------------------------------------------------
-SOURCE_BROWSER         = NO
-INLINE_SOURCES         = NO
-STRIP_CODE_COMMENTS    = YES
-REFERENCED_BY_RELATION = YES
-REFERENCES_RELATION    = YES
-REFERENCES_LINK_SOURCE = YES
-USE_HTAGS              = NO
-VERBATIM_HEADERS       = YES
-#---------------------------------------------------------------------------
-# configuration options related to the alphabetical class index
-#---------------------------------------------------------------------------
-ALPHABETICAL_INDEX     = NO
-COLS_IN_ALPHA_INDEX    = 5
-IGNORE_PREFIX          = 
-#---------------------------------------------------------------------------
-# configuration options related to the HTML output
-#---------------------------------------------------------------------------
-GENERATE_HTML          = YES
-HTML_OUTPUT            = html
-HTML_FILE_EXTENSION    = .html
-HTML_HEADER            = 
-HTML_FOOTER            = 
-HTML_STYLESHEET        = 
-HTML_ALIGN_MEMBERS     = YES
-GENERATE_HTMLHELP      = NO
-CHM_FILE               = 
-HHC_LOCATION           = 
-GENERATE_CHI           = NO
-BINARY_TOC             = NO
-TOC_EXPAND             = NO
-DISABLE_INDEX          = NO
-ENUM_VALUES_PER_LINE   = 4
-GENERATE_TREEVIEW      = NO
-TREEVIEW_WIDTH         = 250
-#---------------------------------------------------------------------------
-# configuration options related to the LaTeX output
-#---------------------------------------------------------------------------
-GENERATE_LATEX         = YES
-LATEX_OUTPUT           = latex
-LATEX_CMD_NAME         = latex
-MAKEINDEX_CMD_NAME     = makeindex
-COMPACT_LATEX          = NO
-PAPER_TYPE             = a4wide
-EXTRA_PACKAGES         = 
-LATEX_HEADER           = 
-PDF_HYPERLINKS         = YES
-USE_PDFLATEX           = YES
-LATEX_BATCHMODE        = NO
-LATEX_HIDE_INDICES     = NO
-#---------------------------------------------------------------------------
-# configuration options related to the RTF output
-#---------------------------------------------------------------------------
-GENERATE_RTF           = NO
-RTF_OUTPUT             = rtf
-COMPACT_RTF            = NO
-RTF_HYPERLINKS         = NO
-RTF_STYLESHEET_FILE    = 
-RTF_EXTENSIONS_FILE    = 
-#---------------------------------------------------------------------------
-# configuration options related to the man page output
-#---------------------------------------------------------------------------
-GENERATE_MAN           = NO
-MAN_OUTPUT             = man
-MAN_EXTENSION          = .3
-MAN_LINKS              = NO
-#---------------------------------------------------------------------------
-# configuration options related to the XML output
-#---------------------------------------------------------------------------
-GENERATE_XML           = NO
-XML_OUTPUT             = xml
-XML_SCHEMA             = 
-XML_DTD                = 
-XML_PROGRAMLISTING     = YES
-#---------------------------------------------------------------------------
-# configuration options for the AutoGen Definitions output
-#---------------------------------------------------------------------------
-GENERATE_AUTOGEN_DEF   = NO
-#---------------------------------------------------------------------------
-# configuration options related to the Perl module output
-#---------------------------------------------------------------------------
-GENERATE_PERLMOD       = NO
-PERLMOD_LATEX          = NO
-PERLMOD_PRETTY         = YES
-PERLMOD_MAKEVAR_PREFIX = 
-#---------------------------------------------------------------------------
-# Configuration options related to the preprocessor   
-#---------------------------------------------------------------------------
-ENABLE_PREPROCESSING   = YES
-MACRO_EXPANSION        = NO
-EXPAND_ONLY_PREDEF     = NO
-SEARCH_INCLUDES        = YES
-INCLUDE_PATH           = 
-INCLUDE_FILE_PATTERNS  = 
-PREDEFINED             = 
-EXPAND_AS_DEFINED      = 
-SKIP_FUNCTION_MACROS   = YES
-#---------------------------------------------------------------------------
-# Configuration::additions related to external references   
-#---------------------------------------------------------------------------
-TAGFILES               = 
-GENERATE_TAGFILE       = 
-ALLEXTERNALS           = NO
-EXTERNAL_GROUPS        = YES
-PERL_PATH              = /usr/bin/perl
-#---------------------------------------------------------------------------
-# Configuration options related to the dot tool   
-#---------------------------------------------------------------------------
-CLASS_DIAGRAMS         = YES
-HIDE_UNDOC_RELATIONS   = YES
-HAVE_DOT               = NO
-CLASS_GRAPH            = YES
-COLLABORATION_GRAPH    = YES
-GROUP_GRAPHS           = YES
-UML_LOOK               = NO
-TEMPLATE_RELATIONS     = YES
-INCLUDE_GRAPH          = YES
-INCLUDED_BY_GRAPH      = YES
-CALL_GRAPH             = NO
-CALLER_GRAPH           = NO
-GRAPHICAL_HIERARCHY    = YES
-DIRECTORY_GRAPH        = YES
-DOT_IMAGE_FORMAT       = gif
-DOT_PATH               = 
-DOTFILE_DIRS           = 
-MAX_DOT_GRAPH_WIDTH    = 1024
-MAX_DOT_GRAPH_HEIGHT   = 1024
-MAX_DOT_GRAPH_DEPTH    = 0
-DOT_TRANSPARENT        = NO
-DOT_MULTI_TARGETS      = NO
-GENERATE_LEGEND        = YES
-DOT_CLEANUP            = YES
-#---------------------------------------------------------------------------
-# Configuration::additions related to the search engine   
-#---------------------------------------------------------------------------
-SEARCHENGINE           = NO

+ 0 - 4
Engine/lib/speex/IDEAS

@@ -1,4 +0,0 @@
-- Non-linear adaptive codebook (use exc[n]*|exc[n]| to reduce noise 
-  component in adaptive codebook excitation)
-
-- Include time-domain masking for VBR

+ 0 - 8
Engine/lib/speex/INSTALL

@@ -1,8 +0,0 @@
-Installing Speex is as easy as:
-
-% ./configure [--prefix=<install-path>]
-% make
-% make install
-
-Note that if you are using the code from Git, you will need to run "autogen.sh"
-and then "configure".

+ 0 - 31
Engine/lib/speex/Makefile.am

@@ -1,31 +0,0 @@
-## Process this file with automake to produce Makefile.in. -*-Makefile-*-
-
-# To disable automatic dependency tracking if using other tools than
-# gcc and gmake, add the option 'no-dependencies'
-AUTOMAKE_OPTIONS = 1.8
-ACLOCAL_AMFLAGS = -I m4
-
-m4datadir = $(datadir)/aclocal
-m4data_DATA = speex.m4
-
-pkgconfigdir = $(libdir)/pkgconfig
-pkgconfig_DATA = speex.pc
-
-EXTRA_DIST = Speex.spec Speex.spec.in Speex.kdevelop speex.m4 speex.pc.in \
-	README.blackfin README.symbian README.TI-DSP CMakeLists.txt config.h.cmake \
-	$(cmake_files) .appveyor.yml
-
-cmake_files = cmake/FindOgg.cmake cmake/FindSpeexDsp.cmake \
-	cmake/FindSpeexDsp.cmake cmake/speex-config.cmake cmake/TestVarArrays.cmake
-
-#Fools KDevelop into including all files
-SUBDIRS = libspeex include doc win32 symbian ti
-
-if BUILD_BINARIES
-SUBDIRS += src
-endif
-
-DIST_SUBDIRS = libspeex include src doc win32 symbian ti
-
-rpm: dist
-	rpmbuild -ta ${PACKAGE}-${VERSION}.tar.gz

+ 0 - 1
Engine/lib/speex/NEWS

@@ -1 +0,0 @@
-2002/02/13: Creation of the "Speex" project

+ 0 - 10
Engine/lib/speex/OPTIMIZE

@@ -1,10 +0,0 @@
-Narrowband:
-
-- pitch_gain_search_3tap calls syn_filt_zero more times than it should (we're
-computing some things twice)
-
-Wideband
-
-- All narrowband optimizations apply
-- Lots of time spent in the codebook search. We could speed that up by using
-  a hierarchical codebook

+ 0 - 9
Engine/lib/speex/README

@@ -1,9 +0,0 @@
-See INSTALL file for instruction on how to install Speex.
-
-The Speex is a patent-free, Open Source/Free Software voice codec. Unlike other codecs like MP3 and Ogg Vorbis, Speex is designed to compress voice at bitrates in the 2-45 kbps range. Possible applications include VoIP, internet audio streaming, archiving of speech data (e.g. voice mail), and audio books. In some sense, it is meant to be complementary to the Ogg Vorbis codec.
-
-To use the Speex command line tools:
-
-% speexenc [options] input_file.wav compressed_file.spx
-
-% speexdec [options] compressed_file.spx output_file.wav

+ 0 - 56
Engine/lib/speex/README.TI-DSP

@@ -1,56 +0,0 @@
-These are all of the changes and additions necessary to build a loopback application for the 
-TI C6415, C5509A, or C5416 simulators using the TI Code Composer Studio (CCS) development system.  
-A trial version of the tools can be downloaded from the TI website.
-
-This build runs 8kbps narrowband, with minimum complexity.
-
-Several changes are introduced in Speex 1.1.11 which are used in these applications:
-
-arch.h: Added switch for compilers not supporting "long long" (C55x does, C54x, CCS 2.x C64x does not)
-bits.c: Allow external definition for max buffer size, changed MAX_BYTES_PER_FRAME
-        to MAX_CHARS_PER_FRAME for consistency
-misc.c: Added override switches to alloc routines, conditional include of user file "user_misc.h".
-        These changes allow manual memory allocation rather than using heap
-
-The arch.h change allows operation with 2.x versions of Code Composer Studio.
-The bits.c change reduces the data memory usage.
-The misc.c change allows private memory allocation, for cases where it is not
-desirable to use the normal heap.
-
-Added files:
-
-testenc-TI-C5x.c  (For C54x and C55x builds, derived from testenc.c, 
-                       manual alloc, byte packing/unpacking added)
-testenc-TI-C64x.c  (For C64x builds, derived from testenc.c, manual alloc, byte packing/unpacking added)
-
-config.h (not automatically generated, sets memory sizes, enables/disables manual alloc)
-user_misc.h (contains the manual memory alloc routines, with debug code to display mem usage)
-speex\speex_config_types.h (match Speex types to compiler types, not generated from types.in)
-
-speex_c54_test\speex_c54_test.cmd (C5416 linker command file)
-speex_c54_test\speex_c54_test.pjt (Code Composer Studio Project File )
-speex_c55_test\speex_c55_test.cmd (C5509A linker command file)
-speex_c55_test\speex_c55_test.pjt (Code Composer Studio Project File )
-speex_c64_test\speex_c64_test.cmd (C6415 linker command file)
-speex_c64_test\speex_c64_test.pjt (Code Composer Studio Project File )
-
-samples\male.snd  
-
-Usage:
-1. Create a Speex 1.1.11 (or later) source tree.
-2. Edit the files testenc-TI-C5x.c and/or testenc-TI-C64x.c to change the hard-coded path 
-   for the test audio and data files.
-   This build uses the file e:\speextrunktest\samples\male.snd.
-   Note:  This is a headerless 16-bit stereo audio file derived from the male.wav test file 
-          http://www.speex.org/samples/male.wav
-3. Edit the .pjt file with a text editor and change projdir or projectdir to the correct path 
-   (one place near the top of the file).
-4. Edit config.h if desired, to change the memory allocation method (calloc or manual),
-   and to enable/disable debug prints for the memory allocation 
-   (this makes it easier to determine the required size).
-5. Run Code Composer Studio, and open the project for the desired target (e.g. speex_c55_test).
-   Note that the correct simulator must be selected (in CCS Setup) before starting CCS.
-6. Build and run the simulation.
-
-Note that assembly optimizations will be required to run C54x in real time.
-There are no assembly optimizations in any of these builds.

+ 0 - 191
Engine/lib/speex/README.Trimedia

@@ -1,191 +0,0 @@
-################# REMOVE warnings on trimedia compiler 	##############################
-################# Not critical to compilation			##############################
-
-1. Change the following statements to remove warning for constant expression
-(i)		mdf.c			[if(0) --> #if 0]
-(ii)	ltp.c			[if(1) --> #if 1]
-(iii)	preprocess.c	[if(1) --> #if 1]
-(iv)	sb_celp.c		[if (SPEEX_SET_VBR_MAX_BITRATE<1) --> #if (SPEEX_SET_VBR_MAX_BITRATE<1)]
-
-2. add REMARK_ON macro to remove warning on not reference variable
--- uses (void)<variable> to remove warning on not referenced variable
--- #define REMARK_ON
---	  (void)<variable>
--- #endif
--- search for REMARK_ON on the following files 
-(i)		jitter.c
-(ii)	lsp.c
-(iii)	ltp.c
-(iv)	mdf.c
-(v)		filters.c
-(vi)	filterbank.c
-(vii)	cb_search.c
-(viii)	vq.c
-(ix)	vbr.c
-(x)		stereo.c
-(xi)	speex_callbacks.c
-(xii)	preprocess.c
-
-3. commented out the following in pseudofloat.h for unused variable
-//static const spx_float_t FLOAT_HALF = {16384,-15};
-
-4. commented out unused variable in nb_celp.c
-//spx_word16_t *sp; ***unused variable***
-//sp=out+offset; ***unused variable***
-//int submode; ***unused variable***
-// ***unused variable***
-// advance = submode = speex_bits_unpack_unsigned(bits, SB_SUBMODE_BITS);
-advance = speex_bits_unpack_unsigned(bits, SB_SUBMODE_BITS);
-// ***unused variable***
-//advance = submode = speex_bits_unpack_unsigned(bits, SB_SUBMODE_BITS);
-advance = speex_bits_unpack_unsigned(bits, SB_SUBMODE_BITS);
-// spx_word16_t *exc; ***unused variable*** 
-// exc=st->exc+offset; ***unused variable***
-
-5. commented out unused variable in vbr.c
-//int va; ***unused variable***
-//va = 0; ***unused variable***
-//va = 1; ***unused variable***
-
-6. added HAVE_CONFIG into medfilter.c
-
-################# Patches for trimedia compiler 		##############################
-################# Critical to compilation				##############################
--- change the following in modes.c and speex.h as compiler does not support const * const...
-(i) modes.c
-#ifdef __TCS__
-const SpeexMode * speex_mode_list[SPEEX_NB_MODES] = {&speex_nb_mode, &speex_wb_mode, &speex_uwb_mode};
-#else
-const SpeexMode * const speex_mode_list[SPEEX_NB_MODES] = {&speex_nb_mode, &speex_wb_mode, &speex_uwb_mode};
-#endif
-
-(ii) speex.h
-#ifdef __TCS__
-extern const SpeexMode * speex_mode_list[SPEEX_NB_MODES];
-#else
-extern const SpeexMode * const speex_mode_list[SPEEX_NB_MODES];
-#endif
-
--- added the #elif defined (TM_ASM) to the following files for optimized codes
-(1)		arch.h 
-(2)		cb_search.c
-(3)		fftwrap.c
-(4)		filterbank.c
-(5)		filters.c
-(6) 	kiss_fft.c
-(7)		kiss_fftr.c
-(8)		lpc.c
-(9)		lsp.c
-(10)	ltp.c
-(11)	mdf.c
-(12)	misc.c
-(13)	preprocess.c
-(14)	quant_lsp.c
-(15)	vq.c
-
--- reorder macro definations in quant_lsp.c
-#ifdef FIXED_POINT
-
-#define LSP_LINEAR(i)		(SHL16(i+1,11))
-#define LSP_LINEAR_HIGH(i)	(ADD16(MULT16_16_16(i,2560),6144))
-#define LSP_DIV_256(x)		(SHL16((spx_word16_t)x, 5))
-#define LSP_DIV_512(x)		(SHL16((spx_word16_t)x, 4))
-#define LSP_DIV_1024(x)		(SHL16((spx_word16_t)x, 3))
-#define LSP_PI				25736
-
-#else
-
-#define LSP_LINEAR(i)		(.25*(i)+.25)
-#define LSP_LINEAR_HIGH(i)	(.3125*(i)+.75)
-#define LSP_SCALE			256.
-#define LSP_DIV_256(x)		(0.0039062*(x))
-#define LSP_DIV_512(x)		(0.0019531*(x))
-#define LSP_DIV_1024(x)		(0.00097656*(x))
-#define LSP_PI				M_PI
-
-#endif
-
-#ifdef BFIN_ASM
-#include "quant_lsp_bfin.h"
-#elif defined (TM_ASM)
-#include "quant_lsp_tm.h"
-#endif
-
--- added macro PREPROCESS_MDF_FLOAT to allow using of floating point 
--- in mdf and preprocess while keeping fixed point in encoder/decoder
--- This is due to the fact that preprocess/mdf run faster on floating
--- point on trimedia
--- added the following 3 lines to the files below
-#ifdef PREPROCESS_MDF_FLOAT
-#undef FIXED_POINT
-#endif
-(1) mdf.c
-(2) preprocess.c
-(3) filterbank.c
-(4) fftwrap.c
-(5) kiss_fft.c
-(6) kiss_fftr.c
-
--- created a new USE_COMPACT_KISS_FFT for fftwrap.c and shifted defination 
--- to config file so that user configure the usage of fft on config.h
--- TOEXPLORE:is it possible to share table between mdf/preprocess?
--- Introducing this macro made the following changes in C code 
--- New macro to facilitate integration
-(grouping real/complex for dc and nyquist frequency seems to require a large
-amount of memory for mdf, therefore did not made the changes for that)
-(1) modify preprocess.c on init and destroy
-(2) modify mdf.c on init and destroy
-(3) shifted power_spectrum to fftwrap.c to share optimised code between
-	preprocess.c and mdf.c
-	
-################# NOTES 								##############################
-(1) fixed point encoding/decoding is tested on narrowband
-	-	some of the QX fractions are packed together to 
-			(frac1 * a + frac2 * a) >> X (should be more accurate in rounding)
-		instead of 
-			((frac1 * a) >> X) + ((frac2 * a) >> X)
-		will cause some different between optimized and unoptimized code.
-		tried decoding/encoding optimized code on some audio files retains 
-		the clearity of the word
-		
-	- wideband/ultrawideband is not heavily tested yet
-		
-(2) optimized fixed point code requires memory alignment
-	-	used config to debug on functions where memory is not align
-
-(3) floating point optimization for preprocess/mdf is tested
-	fixed point is not tested yet (except fft/filterbank)
-	Note (1) also applies to sround in fft for fixed point
-	some optimization is provided for fixed point as it requires lesser
-	memory compared to floating point.
-	
-(4) unroll configurations provided to reduce code size if required
-
-(5) use profile options only if compiler profiling fails to work 
-
-(6) can't include the makefile as it is close proprietary
-
-################# TODO:For Trimedia						##############################
-(1) Possible add TSSA wrapper for codec but don't think this can be open source.
-(2) Optimizations for fixed point in mdf/preprocess
-
-################# Added Files							##############################
-- _kiss_fft_guts_tm.h
-- cb_search_tm.h
-- fftwrap_tm.h
-- filterbank_tm.h
-- filters_tm.h
-- fixed_tm.h
-- kiss_fft_tm.h
-- kiss_fftr_tm.h
-- lpc_tm.h
-- lsp_tm.h
-- ltp_tm.h
-- mdf_tm.h
-- misc_tm.h
-- preprocess_tm.h
-- profile_tm.h
-- quant_lsp_tm.h
-- vq_tm.h
-- config.h
-- speex_config_types.h

+ 0 - 21
Engine/lib/speex/README.blackfin

@@ -1,21 +0,0 @@
-Speex has been ported to the Blackfin DSP, for the STAMP development board.
-
-This port has been tested on the STAMP development board and requires the 
-toolchain available at http://blackfin.uclinux.org/
-
-1/ In order to cross-compile for uClinux from the Speex tarball:
-
-  ./configure --enable-blackfin-asm --enable-fixed-point --host=bfin-uclinux
-  cd libspeex
-  make
-
-The --enable-blackfin-asm option is not required, but it speeds up Speex by
-approximately a factor of two.
-
-2/ In order to cross-compile for uClinux from the Speex Git:
-
-  git clone git://git.xiph.org/speex.git
-  cd speex
-  ./autogen.sh --enable-blackfin-asm --enable-fixed-point --host=bfin-uclinux
-  cd libspeex
-  make

+ 0 - 43
Engine/lib/speex/README.symbian

@@ -1,43 +0,0 @@
-Using Speex on Symbian OS
-Conrad Parker and Colin Ward, CSIRO Australia, July 2004
-
-
-Introduction
-------------
-
-The symbian/ directory contains the following files for Symbian's abuild tool:
-
-  bld.inf    Component definition file
-  speex.mmp  Project specification file
-  config.h   Configuration options for both emulator and device builds
-
-
-Developing applications for libspeex for Symbian OS
----------------------------------------------------
-
-     Any references to the statically defined SpeexMode structures must be
-     replaced by a call to a speex_lib_get_mode () for that mode.
-
-     * References to the statically defined array speex_mode_list[modeID]
-     must be replaced by a call to speex_lib_get_mode (modeID):
-
--      mode = speex_mode_list[modeID];
-+      mode = speex_lib_get_mode (modeID);
-
-     * References to the statically defined mode structures must be replaced:
-
-       SpeexMode * mode1, * mode2, * mode3;
-
--      mode1 = &speex_nb_mode;
-+      mode1 = speex_lib_get_mode (SPEEX_MODEID_NB);
-
--      mode2 = &speex_wb_mode;
-+      mode2 = speex_lib_get_mode (SPEEX_MODEID_WB);
-
--      mode3 = &speex_uwb_mode;
-+      mode3 = speex_lib_get_mode (SPEEX_MODEID_UWB);
-
-     Note that the constants SPEEX_MODEID_NB, SPEEX_MODEID_WB and
-     SPEEX_MODEID_UWB were introduced in libspeex 1.1.6, and are
-     defined in <speex/speex.h>. speex_lib_get_mode() was introduced
-     in libspeex 1.1.7 and is declared in <speex/speex.h>.

+ 0 - 11
Engine/lib/speex/README.win32

@@ -1,11 +0,0 @@
-Win32 Specific options
-
-In order to enable the following options within Speex, you will need to manually edit the project options for the appropriate VC configuration.  These macros can be specified by adding them as "Preprocessor Definitions" under the appropriate Configuration's project options.  If you don't know how to do this, please check your Visual C documentation.
-
-Feature:
-
-Intel Streaming SIMD Extensions - SSE - macro: USE_SSE
-Fixed point - macro: FIXED_POINT
-Epic 48 - macro: EPIC_48K
-
-Note: USE_SSE and FIXED_POINT are mutually exclusive.

+ 0 - 201
Engine/lib/speex/Speex.kdevelop

@@ -1,201 +0,0 @@
-<?xml version = '1.0'?>
-<kdevelop>
-  <general>
-    <author>Jean-Marc Valin</author>
-    <email>[email protected]</email>
-    <version>$VERSION$</version>
-    <projectmanagement>KDevAutoProject</projectmanagement>
-    <primarylanguage>C</primarylanguage>
-    <ignoreparts/>
-    <projectdirectory>.</projectdirectory>
-    <absoluteprojectpath>false</absoluteprojectpath>
-    <description/>
-    <secondaryLanguages/>
-    <versioncontrol>kdevsubversion</versioncontrol>
-    <defaultencoding/>
-    <projectname>Speex</projectname>
-  </general>
-  <kdevautoproject>
-    <general>
-      <activetarget>libspeex/libspeex.la</activetarget>
-      <useconfiguration>float</useconfiguration>
-    </general>
-    <run>
-      <mainprogram>src/Speex</mainprogram>
-      <directoryradio>executable</directoryradio>
-      <customdirectory>/</customdirectory>
-      <programargs/>
-      <terminal>false</terminal>
-      <autocompile>true</autocompile>
-      <envvars/>
-      <autoinstall>false</autoinstall>
-      <autokdesu>false</autokdesu>
-    </run>
-    <configurations>
-      <float>
-        <builddir>float</builddir>
-        <ccompiler>kdevgccoptions</ccompiler>
-        <cxxcompiler>kdevgppoptions</cxxcompiler>
-        <f77compiler>kdevpgf77options</f77compiler>
-        <cflags>-O2 -g -Wall</cflags>
-        <envvars/>
-        <configargs>--disable-shared</configargs>
-        <topsourcedir/>
-        <cppflags/>
-        <ldflags/>
-        <ccompilerbinary/>
-        <cxxcompilerbinary/>
-        <f77compilerbinary/>
-        <cxxflags/>
-        <f77flags/>
-      </float>
-      <fixed>
-        <configargs>--enable-fixed-point --disable-shared</configargs>
-        <builddir>fixed</builddir>
-        <ccompiler>kdevgccoptions</ccompiler>
-        <cxxcompiler>kdevgppoptions</cxxcompiler>
-        <f77compiler>kdevpgf77options</f77compiler>
-        <cflags>-O2 -g -Wall</cflags>
-        <envvars/>
-        <topsourcedir/>
-        <cppflags/>
-        <ldflags/>
-        <ccompilerbinary/>
-        <cxxcompilerbinary/>
-        <f77compilerbinary/>
-        <cxxflags/>
-        <f77flags/>
-      </fixed>
-      <default>
-        <envvars/>
-      </default>
-    </configurations>
-    <make>
-      <envvars>
-        <envvar value="1" name="WANT_AUTOCONF_2_5" />
-        <envvar value="1" name="WANT_AUTOMAKE_1_6" />
-      </envvars>
-      <abortonerror>false</abortonerror>
-      <numberofjobs>4</numberofjobs>
-      <dontact>false</dontact>
-      <makebin/>
-      <runmultiplejobs>true</runmultiplejobs>
-      <prio>0</prio>
-    </make>
-  </kdevautoproject>
-  <kdevdebugger>
-    <general>
-      <dbgshell>libtool</dbgshell>
-      <programargs/>
-      <gdbpath/>
-      <configGdbScript/>
-      <runShellScript/>
-      <runGdbScript/>
-      <breakonloadinglibs>true</breakonloadinglibs>
-      <separatetty>false</separatetty>
-      <floatingtoolbar>false</floatingtoolbar>
-    </general>
-    <display>
-      <staticmembers>false</staticmembers>
-      <demanglenames>true</demanglenames>
-      <outputradix>10</outputradix>
-    </display>
-  </kdevdebugger>
-  <kdevfilecreate>
-    <filetypes/>
-    <useglobaltypes>
-      <type ext="c" />
-      <type ext="h" />
-    </useglobaltypes>
-  </kdevfilecreate>
-  <kdevcppsupport>
-    <references/>
-    <codecompletion>
-      <includeGlobalFunctions>true</includeGlobalFunctions>
-      <includeTypes>true</includeTypes>
-      <includeEnums>true</includeEnums>
-      <includeTypedefs>false</includeTypedefs>
-      <automaticCodeCompletion>true</automaticCodeCompletion>
-      <automaticArgumentsHint>true</automaticArgumentsHint>
-      <automaticHeaderCompletion>true</automaticHeaderCompletion>
-      <codeCompletionDelay>350</codeCompletionDelay>
-      <argumentsHintDelay>400</argumentsHintDelay>
-      <headerCompletionDelay>250</headerCompletionDelay>
-      <showOnlyAccessibleItems>false</showOnlyAccessibleItems>
-      <completionBoxItemOrder>0</completionBoxItemOrder>
-      <howEvaluationContextMenu>true</howEvaluationContextMenu>
-      <showCommentWithArgumentHint>true</showCommentWithArgumentHint>
-      <statusBarTypeEvaluation>false</statusBarTypeEvaluation>
-      <namespaceAliases>std=_GLIBCXX_STD;__gnu_cxx=std</namespaceAliases>
-      <processPrimaryTypes>true</processPrimaryTypes>
-      <processFunctionArguments>true</processFunctionArguments>
-      <preProcessAllHeaders>false</preProcessAllHeaders>
-      <parseMissingHeaders>false</parseMissingHeaders>
-      <resolveIncludePaths>true</resolveIncludePaths>
-      <alwaysParseInBackground>true</alwaysParseInBackground>
-      <usePermanentCaching>true</usePermanentCaching>
-      <alwaysIncludeNamespaces>true</alwaysIncludeNamespaces>
-      <includePaths>.;</includePaths>
-      <parseMissingHeadersExperimental>false</parseMissingHeadersExperimental>
-      <resolveIncludePathsUsingMakeExperimental>false</resolveIncludePathsUsingMakeExperimental>
-    </codecompletion>
-    <qt>
-      <used>false</used>
-      <version>3</version>
-      <root>/usr/share/qt3</root>
-      <includestyle>3</includestyle>
-      <designerintegration>EmbeddedKDevDesigner</designerintegration>
-      <qmake>/usr/share/qt3/bin/qmake</qmake>
-      <designer>/usr/bin/designer-qt3</designer>
-      <designerpluginpaths/>
-    </qt>
-    <creategettersetter>
-      <prefixGet/>
-      <prefixSet>set</prefixSet>
-      <prefixVariable>m_,_</prefixVariable>
-      <parameterName>theValue</parameterName>
-      <inlineGet>true</inlineGet>
-      <inlineSet>true</inlineSet>
-    </creategettersetter>
-    <splitheadersource>
-      <enabled>true</enabled>
-      <synchronize>true</synchronize>
-      <orientation>Horizontal</orientation>
-    </splitheadersource>
-  </kdevcppsupport>
-  <kdevfileview>
-    <groups>
-      <hidenonprojectfiles>false</hidenonprojectfiles>
-      <hidenonlocation>false</hidenonlocation>
-    </groups>
-    <tree>
-      <hidepatterns>*.o,*.lo,CVS</hidepatterns>
-      <hidenonprojectfiles>true</hidenonprojectfiles>
-      <showvcsfields>false</showvcsfields>
-    </tree>
-  </kdevfileview>
-  <kdevdoctreeview>
-    <projectdoc>
-      <userdocDir>html/</userdocDir>
-      <apidocDir>html/</apidocDir>
-    </projectdoc>
-    <ignoreqt_xml/>
-    <ignoredoxygen/>
-    <ignorekdocs/>
-    <ignoretocs/>
-    <ignoredevhelp/>
-  </kdevdoctreeview>
-  <cppsupportpart>
-    <filetemplates>
-      <interfacesuffix>.h</interfacesuffix>
-      <implementationsuffix>.cpp</implementationsuffix>
-    </filetemplates>
-  </cppsupportpart>
-  <kdevdocumentation>
-    <projectdoc>
-      <docsystem/>
-      <docurl/>
-      <usermanualurl/>
-    </projectdoc>
-  </kdevdocumentation>
-</kdevelop>

+ 0 - 71
Engine/lib/speex/Speex.spec.in

@@ -1,71 +0,0 @@
-%define name     @PACKAGE@
-%define ver      @VERSION@
-%define rel      1
-
-Summary: An open-source, patent-free speech codec
-Name: %name
-Version: %ver
-Release: %rel
-License: BSD
-Group: Application/Devel
-Source: http://www.speex.org/download/%{name}-%{ver}.tar.gz
-URL: http://www.speex.org/
-Vendor: Speex
-Packager: Jean-Marc Valin ([email protected])
-BuildRoot: /var/tmp/%{name}-build-root
-Docdir: /usr/share/doc
-
-%description
-Speex is a patent-free audio codec designed especially for voice (unlike 
-Vorbis which targets general audio) signals and providing good narrowband 
-and wideband quality. This project aims to be complementary to the Vorbis
-codec.
-
-%package devel
-Summary:	Speex development files
-Group:		Development/Libraries
-Requires:	%{name} = %{version}
-
-%description devel
-Speex development files.
-
-%changelog
-* Thu Oct 03 2002 Jean-Marc Valin 
-- Added devel package inspired from PLD spec file
-
-* Tue Jul 30 2002 Fredrik Rambris <[email protected]> 0.5.2
-- Added buildroot and docdir and ldconfig. Makes it builadble by non-roots
-  and also doesn't write to actual library paths when building.
-
-%prep
-%setup
-
-%build
-export CFLAGS='-O3'
-./configure --prefix=/usr --enable-shared --enable-static
-make
-
-%install
-rm -rf $RPM_BUILD_ROOT
-make DESTDIR=$RPM_BUILD_ROOT install
-
-%post -p /sbin/ldconfig
-%postun -p /sbin/ldconfig
-
-%files
-%defattr(644,root,root,755)
-%doc COPYING AUTHORS ChangeLog NEWS README
-%doc doc/manual.pdf
-/usr/share/man/man1/speexenc.1*
-/usr/share/man/man1/speexdec.1*
-%attr(755,root,root) %{_bindir}/speex*
-%attr(755,root,root) %{_libdir}/libspeex*.so*
-
-%files devel
-%defattr(644,root,root,755)
-%attr(755,root,root) %{_libdir}/libspeex*.la
-%{_includedir}/speex/speex*.h
-/usr/share/aclocal/speex.m4
-%{_libdir}/pkgconfig/speex.pc
-%{_libdir}/pkgconfig/speexdsp.pc
-%{_libdir}/libspeex*.a

+ 0 - 38
Engine/lib/speex/TODO

@@ -1,38 +0,0 @@
-For 1.2:
-Major points:
-- Make documentation match the actual code
-- Stabilise all APIs (need feedback)
-- NaN checks?
-- Better error reporting
-- Make kiss-fft 32-bit safe
-
-Minor issues:
-- Fix last frame of speexenc
-
-
-Post 1.2:
-improve float<->int conversion
-split encoder and decoder?
-Merge TriMedia stuff
-packet dump
-Do VAD properly
-
-Optimisations
-- Add restrict in a few places?
-- enable 4x4 version of pitch_xcorr() at least on some archs?
-- use __builtin_expect() (likely()/unlikely())
-
-Would be nice:
-Implement wideband split as IIR instead of QMF?
-
-Allocator override (speex_lib_ctl?)
-Fixed-point:
-  - VBR
-
-Standards
--Complete Speex RTP profile
--MIME type registration
-
-ideas:
-Peelable stream (double codebook, higher bands, stereo)
-LPC from spectral domain

+ 0 - 11
Engine/lib/speex/autogen.sh

@@ -1,11 +0,0 @@
-#!/bin/sh
-# Run this to set up the build system: configure, makefiles, etc.
-set -e
-
-srcdir=`dirname $0`
-test -n "$srcdir" && cd "$srcdir"
-
-echo "Updating build configuration files, please wait...."
-
-autoreconf -if
-

+ 0 - 28
Engine/lib/speex/cmake/FindFFTW3.cmake

@@ -1,28 +0,0 @@
-# - Find fftw3
-# Find the native fftw3 includes and libraries
-#
-#  FFTW3_INCLUDE_DIRS - where to find fftw3.h, etc.
-#  FFTW3_LIBRARIES    - List of libraries when using fftw3.
-#  FFTW3_FOUND        - True if fftw3 found.
-
-if(FFTW3_INCLUDE_DIR)
-    # Already in cache, be silent
-    set(FFTW3_FIND_QUIETLY TRUE)
-endif(FFTW3_INCLUDE_DIR)
-
-find_package (PkgConfig QUIET)
-pkg_check_modules(PC_FFTW QUIET fftw3f)
-
-find_path(FFTW3_INCLUDE_DIR fftw3.h HINTS ${PC_FFTW3_INCLUDEDIR} ${PC_FFTW3_INCLUDE_DIRS} ${FFTW3_ROOT} PATH_SUFFIXES include)
-find_library(FFTW3_LIBRARY NAMES fftw3f HINTS ${PC_FFTW3_LIBDIR} ${PC_FFTW3_LIBRARY_DIRS} ${FFTW3_ROOT} PATH_SUFFIXES lib)
-# Handle the QUIETLY and REQUIRED arguments and set FFTW3_FOUND
-# to TRUE if all listed variables are TRUE.
-include(FindPackageHandleStandardArgs)
-find_package_handle_standard_args(FFTW3 REQUIRED_VARS FFTW3_INCLUDE_DIR FFTW3_LIBRARY)
-
-if (FFTW3_FOUND)
-	set (FFTW3_LIBRARIES ${FFTW3_LIBRARY})
-	set (FFTW3_INCLUDE_DIRS ${FFTW3_INCLUDE_DIR})
-endif (FFTW3_FOUND)
-
-mark_as_advanced(FFTW3_INCLUDE_DIR FFTW3_LIBRARY)

+ 0 - 38
Engine/lib/speex/cmake/FindOgg.cmake

@@ -1,38 +0,0 @@
-# - Find ogg
-# Find the native ogg includes and libraries
-#
-#  OGG_INCLUDE_DIRS - where to find ogg.h, etc.
-#  OGG_LIBRARIES    - List of libraries when using ogg.
-#  Ogg_FOUND        - True if ogg found.
-
-if(OGG_INCLUDE_DIR)
-    # Already in cache, be silent
-    set(OGG_FIND_QUIETLY TRUE)
-endif(OGG_INCLUDE_DIR)
-
-find_package (PkgConfig QUIET)
-pkg_check_modules(PC_OGG QUIET ogg)
-
-find_path(OGG_INCLUDE_DIR ogg/ogg.h HINTS ${PC_OGG_INCLUDEDIR} ${PC_OGG_INCLUDE_DIRS} ${OGG_ROOT} PATH_SUFFIXES include)
-# MSVC built ogg may be named ogg_static.
-# The provided project files name the library with the lib prefix.
-find_library(OGG_LIBRARY NAMES ogg ogg_static libogg libogg_static HINTS ${PC_OGG_LIBDIR} ${PC_OGG_LIBRARY_DIRS} ${OGG_ROOT} PATH_SUFFIXES lib)
-# Handle the QUIETLY and REQUIRED arguments and set OGG_FOUND
-# to TRUE if all listed variables are TRUE.
-include(FindPackageHandleStandardArgs)
-find_package_handle_standard_args(Ogg DEFAULT_MSG OGG_INCLUDE_DIR OGG_LIBRARY)
-
-if (OGG_FOUND)
-	set (OGG_LIBRARIES ${OGG_LIBRARY})
-    set (OGG_INCLUDE_DIRS ${OGG_INCLUDE_DIR})
-    
-    if (NOT TARGET Ogg::ogg)
-        add_library(Ogg::ogg UNKNOWN IMPORTED)
-            set_target_properties(Ogg::ogg PROPERTIES
-                INTERFACE_INCLUDE_DIRECTORIES "${OGG_INCLUDE_DIRS}"
-                IMPORTED_LOCATION "${OGG_LIBRARIES}"
-            )
-    endif ()
-endif (OGG_FOUND)
-
-mark_as_advanced(OGG_INCLUDE_DIR OGG_LIBRARY)

+ 0 - 28
Engine/lib/speex/cmake/FindSpeexDsp.cmake

@@ -1,28 +0,0 @@
-# - Find speexdsp
-# Find the native speexdsp includes and libraries
-#
-#  SPEEXDSP_INCLUDE_DIRS - where to find speex_preprocess.h, etc.
-#  SPEEXDSP_LIBRARIES    - List of libraries when using speexdsp.
-#  SpeexDsp_FOUND        - True if speexdsp found.
-
-if(SPEEXDSP_INCLUDE_DIR)
-    # Already in cache, be silent
-    set(SPEEXDSP_FIND_QUIETLY TRUE)
-endif(SPEEXDSP_INCLUDE_DIR)
-
-find_package (PkgConfig QUIET)
-pkg_check_modules(PC_SPEEXDSP QUIET speexdsp)
-
-find_path(SPEEXDSP_INCLUDE_DIR speex/speex_preprocess.h HINTS ${PC_SPEEXDSP_INCLUDEDIR} ${PC_SPEEXDSP_INCLUDE_DIRS} ${SPEEXDSP_ROOT} PATH_SUFFIXES include)
-find_library(SPEEXDSP_LIBRARY NAMES speexdsp HINTS ${PC_SPEEXDSP_LIBDIR} ${PC_SPEEXDSP_LIBRARY_DIRS} ${SPEEXDSP_ROOT} PATH_SUFFIXES lib)
-# Handle the QUIETLY and REQUIRED arguments and set SPEEXDSP_FOUND
-# to TRUE if all listed variables are TRUE.
-include(FindPackageHandleStandardArgs)
-find_package_handle_standard_args(SpeexDsp DEFAULT_MSG SPEEXDSP_INCLUDE_DIR SPEEXDSP_LIBRARY)
-
-if (SPEEXDSP_FOUND)
-	set (SPEEXDSP_LIBRARIES ${SPEEXDSP_LIBRARY})
-	set (SPEEXDSP_INCLUDE_DIRS ${SPEEXDSP_INCLUDE_DIR})
-endif (SPEEXDSP_FOUND)
-
-mark_as_advanced(SPEEXDSP_INCLUDE_DIR SPEEXDSP_LIBRARY)

+ 0 - 22
Engine/lib/speex/cmake/TestVarArrays.cmake

@@ -1,22 +0,0 @@
-include(CheckCSourceCompiles)
-
-macro(TEST_VARARRAYS VARIABLE)
-	if(NOT DEFINED ${VARIABLE})
-		check_c_source_compiles(
-			"
-			void main(void)
-			{
-				int foo;
-				foo = 10;
-				int array[foo];
-			};
-			"
-			VARARRAYS_SUPPORT)
-		set(${VARIABLE} ${VARARRAYS_SUPPORT} CACHE INTERNAL "C99 variable-size arrays support" FORCE)
-		if(${VARIABLE})
-			set(RESULT_TEXT "success")
-		else()
-			set(RESULT_TEXT "failed")
-		endif()
-	endif()
-endmacro(TEST_VARARRAYS VARIABLE)

+ 0 - 1
Engine/lib/speex/cmake/speex-config.cmake

@@ -1 +0,0 @@
-include (${CMAKE_CURRENT_LIST_DIR}/speex-targets.cmake)

+ 0 - 23
Engine/lib/speex/config.h.cmake

@@ -1,23 +0,0 @@
-#cmakedefine WORDS_BIGENDIAN
-#cmakedefine FLOATING_POINT
-#cmakedefine FIXED_POINT
-#cmakedefine FIXED_POINT_DEBUG
-#cmakedefine DISABLE_FLOAT_API
-#cmakedefine _USE_SSE
-#cmakedefine ARM4_ASM
-#cmakedefine ARM5E_ASM
-#cmakedefine BFIN_ASM
-#cmakedefine TI_C55X
-#cmakedefine DISABLE_VBR
-#cmakedefine USE_SPEEXDSP
-#cmakedefine VORBIS_PSYCHO
-#cmakedefine HAVE_GETOPT_H
-#cmakedefine HAVE_GETOPT_LONG
-#cmakedefine VAR_ARRAYS
-#cmakedefine USE_ALLOCA
-#cmakedefine HAVE_ALLOCA_H
-#cmakedefine USE_SMALLFT
-#cmakedefine USE_KISS_FFT
-#cmakedefine USE_GPL_FFTW3
-
-#define EXPORT @EXPORT@

+ 0 - 358
Engine/lib/speex/configure.ac

@@ -1,358 +0,0 @@
-dnl Process this file with autoconf to produce a configure script. -*-m4-*-
-
-AC_INIT([speex],[1.2.0],[[email protected]])
-
-AC_CONFIG_SRCDIR([libspeex/speex.c])
-AC_CONFIG_MACRO_DIR([m4])
-
-dnl enable silent rules on automake 1.11 and later
-m4_ifdef([AM_SILENT_RULES], [AM_SILENT_RULES([yes])])
-
-
-SPEEX_MAJOR_VERSION=1
-SPEEX_MINOR_VERSION=1
-SPEEX_MICRO_VERSION=16
-SPEEX_EXTRA_VERSION=
-
-SPEEX_LT_CURRENT=6
-SPEEX_LT_REVISION=1
-SPEEX_LT_AGE=5
-
-
-AC_SUBST(SPEEX_LT_CURRENT)
-AC_SUBST(SPEEX_LT_REVISION)
-AC_SUBST(SPEEX_LT_AGE)
-
-AM_INIT_AUTOMAKE([foreign no-define])
-AM_MAINTAINER_MODE([enable])
-
-AC_CANONICAL_HOST
-AC_LIBTOOL_WIN32_DLL
-AM_PROG_LIBTOOL
-
-AC_C_BIGENDIAN
-AC_C_CONST
-AC_C_INLINE
-AC_C_RESTRICT
-
-
-AC_MSG_CHECKING(for C99 variable-size arrays)
-AC_TRY_COMPILE( , [
-int foo;
-foo = 10;
-int array[foo];
-],
-[has_var_arrays=yes;AC_DEFINE([VAR_ARRAYS], [], [Use C99 variable-size arrays])
-],
-has_var_arrays=no
-)
-AC_MSG_RESULT($has_var_arrays)
-
-AC_CHECK_HEADERS([alloca.h getopt.h])
-AC_MSG_CHECKING(for alloca)
-AC_TRY_COMPILE( [
-#ifdef HAVE_ALLOCA_H
-# include <alloca.h>
-#endif
-#include <stdlib.h>
-], [
-int foo=10;
-int *array = alloca(foo);
-],
-[
-has_alloca=yes;
-if test x$has_var_arrays = "xno" ; then
-AC_DEFINE([USE_ALLOCA], [], [Make use of alloca])
-fi
-],
-has_alloca=no
-)
-AC_MSG_RESULT($has_alloca)
-
-AC_MSG_CHECKING(for SSE in current arch/CFLAGS)
-AC_LINK_IFELSE([
-AC_LANG_PROGRAM([[
-#include <xmmintrin.h>
-__m128 testfunc(float *a, float *b) {
-  return _mm_add_ps(_mm_loadu_ps(a), _mm_loadu_ps(b));
-}
-]])],
-[
-has_sse=yes
-],
-[
-has_sse=no
-]
-)
-AC_MSG_RESULT($has_sse)
-
-SAVE_CFLAGS="$CFLAGS"
-CFLAGS="$CFLAGS -fvisibility=hidden"
-AC_MSG_CHECKING(for ELF visibility)
-AC_COMPILE_IFELSE([
-AC_LANG_PROGRAM([[
-#pragma GCC visibility push(hidden)
-__attribute__((visibility("default")))
-int var=10;
-]])],
-[
-has_visibility=yes
-AC_DEFINE([EXPORT], [__attribute__((visibility("default")))], [Symbol visibility prefix])
-],
-[
-has_visibility=no
-AC_DEFINE([EXPORT], [], [Symbol visibility prefix])
-CFLAGS="$SAVE_CFLAGS"
-]
-)
-AC_MSG_RESULT($has_visibility)
-
-AC_CHECK_HEADERS(sys/soundcard.h sys/audioio.h)
-
-LT_LIB_M
-
-# Check for getopt_long; if not found, use included source.
-AC_CHECK_FUNCS([getopt_long],,
-[# FreeBSD has a gnugetopt library.
-  AC_CHECK_LIB([gnugetopt],[getopt_long],
-[AC_DEFINE([HAVE_GETOPT_LONG])],
-[# Use the GNU replacement.
-AC_LIBOBJ(getopt)
-AC_LIBOBJ(getopt1)])])
-
-SPEEX_VERSION=$PACKAGE_VERSION
-
-AC_SUBST(SPEEX_VERSION)
-
-AC_DEFINE_UNQUOTED(SPEEX_VERSION, "${PACKAGE_VERSION}", [Complete version string])
-AC_DEFINE_UNQUOTED(SPEEX_MAJOR_VERSION, ${SPEEX_MAJOR_VERSION}, [Version major])
-AC_DEFINE_UNQUOTED(SPEEX_MINOR_VERSION, ${SPEEX_MINOR_VERSION}, [Version minor])
-AC_DEFINE_UNQUOTED(SPEEX_MICRO_VERSION, ${SPEEX_MICRO_VERSION}, [Version micro])
-AC_DEFINE_UNQUOTED(SPEEX_EXTRA_VERSION, "${SPEEX_EXTRA_VERSION}", [Version extra])
-
-AC_ARG_ENABLE(valgrind, [  --enable-valgrind       Enable valgrind extra checks],
-[if test "$enableval" = yes; then
-  AC_DEFINE([ENABLE_VALGRIND], , [Enable valgrind extra checks])
-fi])
-
-AC_ARG_ENABLE(sse, [  --enable-sse            Enable SSE support], [
-if test "x$enableval" != xno; then
-has_sse=yes
-CFLAGS="$CFLAGS -O3 -msse"
-else
-has_sse=no
-fi
-])
-
-
-FFT=smallft
-
-AC_ARG_ENABLE(fixed-point, [  --enable-fixed-point    Compile as fixed-point],
-[if test "$enableval" = yes; then
-  FFT=kiss
-  has_sse=no
-  AC_DEFINE([FIXED_POINT], , [Compile as fixed-point])
-else
-  AC_DEFINE([FLOATING_POINT], , [Compile as floating-point])
-fi],
-AC_DEFINE([FLOATING_POINT], , [Compile as floating-point]))
-
-if test "$has_sse" = yes; then
-  AC_DEFINE([_USE_SSE], , [Enable SSE support])
-fi
-
-AC_ARG_ENABLE(float-api, [  --disable-float-api     Disable the floating-point API],
-[if test "$enableval" = no; then
-  AC_DEFINE([DISABLE_FLOAT_API], , [Disable all parts of the API that are using floats])
-fi])
-
-AC_ARG_ENABLE(binaries, [  --disable-binaries   Do not build the encoder and decoder programs, only the library])
-if test "$enableval" != no; then
-  PKG_CHECK_MODULES([OGG], [ogg],
-    AM_CONDITIONAL([BUILD_BINARIES], true),
-    AM_CONDITIONAL([BUILD_BINARIES], false))
-else
-  AM_CONDITIONAL([BUILD_BINARIES], false)
-fi
-
-AC_ARG_ENABLE(vbr, [  --disable-vbr           Disable VBR and VAD from the codec],
-[if test "$enableval" = no; then
-  AC_DEFINE([DISABLE_VBR], , [Disable VBR and VAD from the codec])
-fi])
-
-AC_ARG_ENABLE(arm4-asm, [  --enable-arm4-asm       Make use of ARM4 assembly optimizations],
-[if test "$enableval" = yes; then
-  AC_DEFINE([ARM4_ASM], , [Make use of ARM4 assembly optimizations])
-fi])
-
-AC_ARG_ENABLE(arm5e-asm, [  --enable-arm5e-asm      Make use of ARM5E assembly optimizations],
-[if test "$enableval" = yes; then
-  AC_DEFINE([ARM5E_ASM], , [Make use of ARM5E assembly optimizations])
-fi])
-
-AC_ARG_ENABLE(blackfin-asm, [  --enable-blackfin-asm   Make use of Blackfin assembly optimizations],
-[if test "$enableval" = yes; then
-  AC_DEFINE([BFIN_ASM], , [Make use of Blackfin assembly optimizations])
-fi])
-WINMM_LIBS=""
-case $host_os in
-  uclinux) LDFLAGS="-Wl,-elf2flt=-s100000 $LDFLAGS";;
-  *mingw*) WINMM_LIBS="-lwinmm";;
-esac
-AC_SUBST(WINMM_LIBS)
-
-AC_ARG_ENABLE(fixed-point-debug, [  --enable-fixed-point-debug  Debug fixed-point implementation],
-[if test "$enableval" = yes; then
-  AC_DEFINE([FIXED_DEBUG], , [Debug fixed-point implementation])
-fi])
-
-AC_ARG_ENABLE(ti-c55x, [  --enable-ti-c55x        Enable support for TI C55X DSP],
-[if test "$enableval" = yes; then
-  has_char16=yes;
-  AC_DEFINE([TI_C55X], , [Enable support for TI C55X DSP])
-fi])
-
-AC_ARG_ENABLE(vorbis-psy, [  --enable-vorbis-psy    Enable the Vorbis psy model],
-[if test "$enableval" = yes; then
-  vorbis_psy=yes;
-  AC_DEFINE([VORBIS_PSYCHO], , [Enable support for the Vorbis psy model])
-fi])
-
-AC_ARG_WITH([fft], [AS_HELP_STRING([--with-fft=choice],[use an alternate FFT implementation. The available choices are
-kiss (default fixed point), smallft (default floating point), gpl-fftw3 and proprietary-intel-mkl])],
-[FFT=$withval]
-)
-
-FFT_PKGCONFIG=
-AS_CASE([$FFT],
- [kiss], [
-  AC_DEFINE([USE_KISS_FFT], [], [Use KISS Fast Fourier Transform])
- ],
- [smallft], [
-  AC_DEFINE([USE_SMALLFT], [], [Use FFT from OggVorbis])
- ],
- [gpl-fftw3], [
-  AC_DEFINE([USE_GPL_FFTW3], [], [Use FFTW3 for FFT])
-  PKG_CHECK_MODULES([FFT], [fftw3f])
- ],
- [proprietary-intel-mkl], [
-  AC_DEFINE([USE_INTEL_MKL], [], [Use Intel Math Kernel Library for FFT])
-  AC_MSG_CHECKING(for valid MKL)
-  AC_LINK_IFELSE([
-   AC_LANG_PROGRAM([[
-#include <mkl.h>
-void func() {
-  DFTI_DESCRIPTOR_HANDLE h;
-  MKL_LONG result=DftiCreateDescriptor(&h, DFTI_SINGLE, DFTI_REAL, 0);
-}]])],
-   [AC_MSG_RESULT(yes)],
-   [AC_MSG_FAILURE([Failed to compile MKL test program. Make sure you set CFLAGS to include the include directory and set LDFLAGS to include the library directory and all necesarry libraries.])]
-  )
- ],
- [AC_MSG_FAILURE([Unknown FFT $FFT specified for --with-fft])]
-)
-AM_CONDITIONAL(BUILD_KISS_FFT, [test "$FFT" = "kiss"])
-AM_CONDITIONAL(BUILD_SMALLFT, [test "$FFT" = "smallft"])
-AC_SUBST(FFT_PKGCONFIG)
-
-AM_CONDITIONAL(BUILD_VORBIS_PSY, [test "x$vorbis_psy" = "xyes"])
-
-PKG_CHECK_MODULES([SPEEXDSP], [speexdsp], [AC_DEFINE([USE_SPEEXDSP], [], [Use SpeexDSP library])], [speexdsp_failed=yes])
-
-
-AC_CHECK_SIZEOF([int16_t])
-AC_CHECK_SIZEOF([uint16_t])
-AC_CHECK_SIZEOF([u_int16_t])
-AC_CHECK_SIZEOF([int32_t])
-AC_CHECK_SIZEOF([uint32_t])
-AC_CHECK_SIZEOF([u_int32_t])
-AC_CHECK_SIZEOF([short])
-AC_CHECK_SIZEOF([int])
-AC_CHECK_SIZEOF([long])
-
-AS_IF([test "$has_char16" = "yes"],
-  [
-   SIZEOF16=1
-   SIZEOF32=2
-  ],[
-   SIZEOF16=2
-   SIZEOF32=4
-  ])
-
-case $SIZEOF16 in
-    $ac_cv_sizeof_int16_t) SIZE16="int16_t";;
-    $ac_cv_sizeof_short) SIZE16="short";;
-    $ac_cv_sizeof_int) SIZE16="int";;
-esac
-
-case $SIZEOF16 in
-    $ac_cv_sizeof_uint16_t) USIZE16="uint16_t";;
-    $ac_cv_sizeof_u_int16_t) USIZE16="u_int16_t";;
-    $ac_cv_sizeof_short) USIZE16="unsigned short";;
-    $ac_cv_sizeof_int) USIZE16="unsigned int";;
-esac
-
-case $SIZEOF32 in
-    $ac_cv_sizeof_int32_t) SIZE32="int32_t";;
-    $ac_cv_sizeof_int) SIZE32="int";;
-    $ac_cv_sizeof_long) SIZE32="long";;
-    $ac_cv_sizeof_short) SIZE32="short";;
-esac
-
-case $SIZEOF32 in
-    $ac_cv_sizeof_uint32_t) USIZE32="uint32_t";;
-    $ac_cv_sizeof_u_int32_t) USIZE32="u_int32_t";;
-    $ac_cv_sizeof_short) USIZE32="unsigned short";;
-    $ac_cv_sizeof_int) USIZE32="unsigned int";;
-    $ac_cv_sizeof_long) USIZE32="unsigned long";;
-esac
-
-XIPH_ADD_CFLAGS([-Wall])
-
-AS_IF([test -z "$SIZE16"],[AC_MSG_ERROR([No 16 bit type found on this platform!])])
-AS_IF([test -z "$SIZE32"],[AC_MSG_ERROR([No 32 bit type found on this platform!])])
-AS_IF([test -z "$USIZE16"],[AC_MSG_ERROR([No unsigned 16 bit type found on this platform!])])
-AS_IF([test -z "$USIZE32"],[AC_MSG_ERROR([No unsigned 32 bit type found on this platform!])])
-
-AC_SUBST([SIZE16])
-AC_SUBST([USIZE16])
-AC_SUBST([SIZE32])
-AC_SUBST([USIZE32])
-
-AS_IF([test "$ac_cv_header_stdint_h" = "yes"],    [INCLUDE_STDINT="#include <stdint.h>"],
-      [test "$ac_cv_header_inttypes_h" = "yes"],  [INCLUDE_STDINT="#include <inttypes.h>"],
-      [test "$ac_cv_header_sys_types_h" = "yes"], [INCLUDE_STDINT="#include <sys/types.h>"])
-
-AC_SUBST([INCLUDE_STDINT])
-
-
-AC_CONFIG_FILES([
-           Makefile libspeex/Makefile src/Makefile doc/Makefile Speex.spec
-           include/Makefile include/speex/Makefile speex.pc
-           win32/Makefile win32/libspeex/Makefile win32/speexenc/Makefile
-           win32/speexdec/Makefile symbian/Makefile
-           win32/VS2003/Makefile
-           win32/VS2003/tests/Makefile
-           win32/VS2003/libspeex/Makefile
-           win32/VS2003/speexdec/Makefile
-           win32/VS2003/speexenc/Makefile
-           win32/VS2005/Makefile
-           win32/VS2005/libspeex/Makefile
-           win32/VS2005/speexdec/Makefile
-           win32/VS2005/speexenc/Makefile
-           win32/VS2005/tests/Makefile
-           win32/VS2008/Makefile
-           win32/VS2008/speexdec/Makefile
-           win32/VS2008/tests/Makefile
-           win32/VS2008/libspeex/Makefile
-           win32/VS2008/speexenc/Makefile
-           include/speex/speex_config_types.h ti/Makefile
-	   ti/speex_C54_test/Makefile ti/speex_C55_test/Makefile
-	   ti/speex_C64_test/Makefile
-])
-
-AC_CONFIG_HEADERS([config.h])
-
-AC_OUTPUT
-
-echo "Type \"make; make install\" to compile and install Speex";

+ 0 - 2
Engine/lib/speex/doc/.cvsignore

@@ -1,2 +0,0 @@
-Makefile
-Makefile.in

+ 0 - 3
Engine/lib/speex/doc/Makefile.am

@@ -1,3 +0,0 @@
-doc_DATA = manual.pdf
-
-EXTRA_DIST = $(doc_DATA)

+ 0 - 688
Engine/lib/speex/doc/celp_decoder.eps

@@ -1,688 +0,0 @@
-%!PS-Adobe-3.0 EPSF-3.0 
-%%BoundingBox: 0 0 442 315
-%%Pages: 0
-%%Creator: Sun Microsystems, Inc.
-%%Title: none
-%%CreationDate: none
-%%LanguageLevel: 2
-%%EndComments
-%%BeginProlog
-%%BeginResource: SDRes
-/b4_inc_state save def
-/dict_count countdictstack def
-/op_count count 1 sub def
-userdict begin
-0 setgray 0 setlinecap 1 setlinewidth 0 setlinejoin 10 setmiterlimit[] 0 setdash newpath
-/languagelevel where {pop languagelevel 1 ne {false setstrokeadjust false setoverprint} if} if
-/bdef {bind def} bind def
-/c {setgray} bdef
-/l {neg lineto} bdef
-/rl {neg rlineto} bdef
-/lc {setlinecap} bdef
-/lj {setlinejoin} bdef
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-p
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-1653 -162 1656 -151 1658 -128 ct 1557 -128 l  p ef
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-p
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-pom
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-p
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-2975 -270 2970 -260 2970 -249 ct 2970 -241 2972 -235 2977 -229 ct 2981 -223 2988 -218 2998 -214 ct 
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-p ef
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-3468 -92 3477 -124 3477 -167 ct 3477 -208 3468 -239 3449 -260 ct 3431 -281 3408 -291 3381 -291 ct 
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-3743 -275 3730 -279 3716 -279 ct 3704 -279 3693 -276 3683 -268 ct 3673 -261 3666 -251 3662 -238 ct 
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-pom
-gr
-gr
-4400 13500 m  2900 13500 l  2900 12000 l  5900 12000 l  5900 13500 l  4400 13500 l 
-pc
-gs
-gs
-pum
-3122 12970 t
-49 0 m  49 -455 l  220 -455 l  251 -455 274 -454 290 -451 ct 312 -447 331 -440 346 -429 ct 
-361 -419 373 -404 382 -385 ct 391 -367 396 -346 396 -323 ct 396 -285 384 -252 359 -225 ct 
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-631 -307 648 -318 669 -326 ct 691 -333 716 -337 744 -337 ct 772 -337 795 -334 813 -327 ct 
-830 -321 843 -312 851 -302 ct 860 -292 865 -280 869 -264 ct 871 -255 872 -238 872 -213 ct 
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-p
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-815 -166 l  p ef
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-1547 -216 1550 -194 1550 -170 ct 1550 -114 1536 -70 1508 -39 ct 1480 -8 1447 7 1408 7 ct 
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-1484 -92 1493 -123 1493 -165 ct 1493 -208 1485 -240 1467 -260 ct 1450 -281 1430 -291 1406 -291 ct 
-1381 -291 1360 -281 1342 -259 ct 1325 -238 1316 -208 1316 -167 ct p ef
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-1608 -37 1598 -60 1598 -87 ct 1598 -103 1602 -118 1609 -131 ct 1616 -145 1626 -156 1638 -164 ct 
-1650 -172 1663 -178 1678 -182 ct 1689 -185 1705 -188 1728 -190 ct 1773 -196 1806 -202 1827 -209 ct 
-1827 -217 1827 -222 1827 -224 ct 1827 -247 1822 -263 1812 -272 ct 1797 -285 1776 -291 1748 -291 ct 
-1722 -291 1702 -286 1690 -277 ct 1677 -268 1668 -252 1662 -228 ct 1608 -236 l 
-1613 -259 1621 -278 1632 -292 ct 1643 -307 1660 -318 1681 -326 ct 1703 -333 1728 -337 1756 -337 ct 
-1784 -337 1807 -334 1825 -327 ct 1842 -321 1855 -312 1863 -302 ct 1872 -292 1877 -280 1881 -264 ct 
-1883 -255 1884 -238 1884 -213 ct 1884 -138 l  1884 -87 1885 -54 1887 -40 ct 
-1889 -26 1894 -13 1901 0 ct 1843 0 l  1837 -12 1833 -26 1832 -41 ct p
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-1678 -129 1670 -123 1665 -115 ct 1660 -107 1657 -99 1657 -89 ct 1657 -74 1663 -62 1674 -52 ct 
-1686 -42 1702 -37 1724 -37 ct 1745 -37 1764 -41 1781 -51 ct 1798 -60 1810 -73 1818 -89 ct 
-1824 -102 1827 -121 1827 -145 ct 1827 -166 l  p ef
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-1980 -284 1998 -304 2022 -317 ct 2046 -330 2073 -337 2101 -337 ct 2137 -337 2166 -328 2189 -310 ct 
-2211 -292 2226 -266 2232 -233 ct 2178 -224 l  2173 -247 2164 -263 2151 -274 ct 
-2138 -286 2122 -291 2103 -291 ct 2075 -291 2052 -281 2035 -261 ct 2017 -241 2008 -209 2008 -165 ct 
-2008 -121 2017 -89 2034 -69 ct 2051 -49 2073 -39 2100 -39 ct 2122 -39 2140 -46 2155 -59 ct 
-2170 -72 2179 -93 2183 -121 ct p ef
-2286 0 m  2286 -455 l  2342 -455 l  2342 -196 l  2474 -330 l  2546 -330 l 
-2420 -207 l  2559 0 l  2490 0 l  2381 -169 l  2342 -131 l  2342 0 l  2286 0 l 
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-21425 8974 t
-50 0 m  50 -455 l  379 -455 l  379 -401 l  110 -401 l  110 -262 l  362 -262 l 
-362 -209 l  110 -209 l  110 -54 l  389 -54 l  389 0 l  50 0 l  p ef
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-731 -247 732 -229 732 -203 ct 732 0 l  677 0 l  677 -200 l  677 -223 674 -240 670 -252 ct 
-666 -263 658 -272 647 -279 ct 636 -285 623 -289 608 -289 ct 584 -289 564 -281 547 -266 ct 
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-905 7 868 -8 841 -37 ct 814 -67 800 -109 800 -164 ct 800 -199 806 -230 817 -257 ct 
-829 -284 847 -304 871 -317 ct 895 -330 922 -337 950 -337 ct 986 -337 1015 -328 1038 -310 ct 
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-857 -121 866 -89 883 -69 ct 900 -49 922 -39 949 -39 ct 971 -39 989 -46 1004 -59 ct 
-1019 -72 1028 -93 1032 -121 ct p ef
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-1313 -337 1350 -322 1378 -293 ct 1407 -263 1422 -222 1422 -170 ct 1422 -127 1415 -94 1403 -70 ct 
-1390 -45 1371 -27 1347 -13 ct 1323 0 1296 7 1268 7 ct 1221 7 1184 -8 1156 -37 ct 
-1127 -67 1113 -110 1113 -165 ct p
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-1355 -92 1364 -124 1364 -167 ct 1364 -208 1355 -239 1336 -260 ct 1318 -281 1295 -291 1268 -291 ct 
-1240 -291 1216 -281 1198 -260 ct 1180 -239 1170 -207 1170 -165 ct p ef
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-1472 -101 1466 -131 1466 -165 ct 1466 -198 1471 -228 1482 -254 ct 1493 -281 1510 -302 1531 -316 ct 
-1553 -330 1578 -337 1605 -337 ct 1625 -337 1642 -333 1658 -325 ct 1673 -316 1686 -305 1696 -292 ct 
-1696 -455 l  1751 -455 l  1751 0 l  1699 0 l  p
-1523 -165 m  1523 -123 1532 -91 1550 -70 ct 1568 -49 1588 -39 1613 -39 ct 1637 -39 1658 -49 1675 -69 ct 
-1692 -89 1700 -119 1700 -160 ct 1700 -205 1692 -238 1674 -259 ct 1657 -280 1636 -291 1610 -291 ct 
-1585 -291 1565 -281 1548 -261 ct 1531 -240 1523 -208 1523 -165 ct p ef
-2062 -107 m  2120 -99 l  2111 -66 2094 -40 2069 -21 ct 2045 -2 2013 7 1975 7 ct 
-1927 7 1889 -8 1861 -37 ct 1832 -67 1818 -109 1818 -162 ct 1818 -218 1833 -261 1861 -291 ct 
-1890 -322 1927 -337 1972 -337 ct 2016 -337 2052 -322 2080 -292 ct 2108 -262 2122 -220 2122 -166 ct 
-2122 -163 2122 -158 2121 -151 ct 1876 -151 l  1878 -115 1888 -87 1907 -68 ct 
-1925 -49 1948 -39 1975 -39 ct 1996 -39 2013 -44 2028 -55 ct 2042 -66 2054 -83 2062 -107 ct 
-p
-1879 -197 m  2063 -197 l  2060 -225 2053 -245 2042 -259 ct 2024 -280 2001 -291 1973 -291 ct 
-1947 -291 1925 -283 1908 -265 ct 1891 -248 1881 -226 1879 -197 ct p ef
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-2284 -333 2296 -337 2309 -337 ct 2328 -337 2347 -331 2366 -319 ct 2347 -267 l 
-2333 -275 2320 -279 2306 -279 ct 2294 -279 2283 -276 2273 -268 ct 2263 -261 2256 -251 2252 -238 ct 
-2246 -218 2243 -196 2243 -173 ct 2243 0 l  2187 0 l  p ef
-pom
-gr
-gr
-17400 13500 m  15900 13500 l  15900 12000 l  18900 12000 l  18900 13500 l 
-17400 13500 l  pc
-gs
-gs
-pum
-16195 12970 t
-49 0 m  49 -455 l  206 -455 l  241 -455 268 -453 287 -448 ct 313 -442 335 -432 353 -416 ct 
-377 -396 395 -370 407 -338 ct 419 -307 425 -271 425 -230 ct 425 -195 421 -165 413 -138 ct 
-405 -111 394 -89 382 -72 ct 369 -54 355 -41 340 -31 ct 325 -21 307 -13 286 -8 ct 
-265 -3 241 0 213 0 ct 49 0 l  p
-109 -54 m  206 -54 l  236 -54 260 -56 277 -62 ct 294 -68 307 -76 318 -86 ct 
-332 -100 343 -119 351 -143 ct 359 -167 363 -197 363 -231 ct 363 -279 355 -315 339 -341 ct 
-324 -366 305 -383 282 -392 ct 266 -398 240 -401 205 -401 ct 109 -401 l  109 -54 l 
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-724 -107 m  782 -99 l  773 -66 756 -40 731 -21 ct 707 -2 675 7 637 7 ct 589 7 551 -8 523 -37 ct 
-494 -67 480 -109 480 -162 ct 480 -218 495 -261 523 -291 ct 552 -322 589 -337 634 -337 ct 
-678 -337 714 -322 742 -292 ct 770 -262 784 -220 784 -166 ct 784 -163 784 -158 783 -151 ct 
-538 -151 l  540 -115 550 -87 569 -68 ct 587 -49 610 -39 637 -39 ct 658 -39 675 -44 690 -55 ct 
-704 -66 716 -83 724 -107 ct p
-541 -197 m  725 -197 l  722 -225 715 -245 704 -259 ct 686 -280 663 -291 635 -291 ct 
-609 -291 587 -283 570 -265 ct 553 -248 543 -226 541 -197 ct p ef
-1066 -121 m  1121 -114 l  1115 -76 1099 -46 1075 -25 ct 1050 -4 1020 7 984 7 ct 
-939 7 902 -8 875 -37 ct 848 -67 834 -109 834 -164 ct 834 -199 840 -230 851 -257 ct 
-863 -284 881 -304 905 -317 ct 929 -330 956 -337 984 -337 ct 1020 -337 1049 -328 1072 -310 ct 
-1094 -292 1109 -266 1115 -233 ct 1061 -224 l  1056 -247 1047 -263 1034 -274 ct 
-1021 -286 1005 -291 986 -291 ct 958 -291 935 -281 918 -261 ct 900 -241 891 -209 891 -165 ct 
-891 -121 900 -89 917 -69 ct 934 -49 956 -39 983 -39 ct 1005 -39 1023 -46 1038 -59 ct 
-1053 -72 1062 -93 1066 -121 ct p ef
-1147 -165 m  1147 -226 1164 -271 1198 -301 ct 1226 -325 1261 -337 1302 -337 ct 
-1347 -337 1384 -322 1412 -293 ct 1441 -263 1456 -222 1456 -170 ct 1456 -127 1449 -94 1437 -70 ct 
-1424 -45 1405 -27 1381 -13 ct 1357 0 1330 7 1302 7 ct 1255 7 1218 -8 1190 -37 ct 
-1161 -67 1147 -110 1147 -165 ct p
-1204 -165 m  1204 -123 1214 -91 1232 -70 ct 1250 -49 1274 -39 1302 -39 ct 1329 -39 1352 -49 1371 -71 ct 
-1389 -92 1398 -124 1398 -167 ct 1398 -208 1389 -239 1370 -260 ct 1352 -281 1329 -291 1302 -291 ct 
-1274 -291 1250 -281 1232 -260 ct 1214 -239 1204 -207 1204 -165 ct p ef
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-1505 -101 1499 -131 1499 -165 ct 1499 -198 1504 -228 1515 -254 ct 1526 -281 1543 -302 1564 -316 ct 
-1586 -330 1611 -337 1638 -337 ct 1658 -337 1675 -333 1691 -325 ct 1706 -316 1719 -305 1729 -292 ct 
-1729 -455 l  1784 -455 l  1784 0 l  1732 0 l  p
-1556 -165 m  1556 -123 1565 -91 1583 -70 ct 1601 -49 1621 -39 1646 -39 ct 1670 -39 1691 -49 1708 -69 ct 
-1725 -89 1733 -119 1733 -160 ct 1733 -205 1725 -238 1707 -259 ct 1690 -280 1669 -291 1643 -291 ct 
-1618 -291 1598 -281 1581 -261 ct 1564 -240 1556 -208 1556 -165 ct p ef
-2096 -107 m  2154 -99 l  2145 -66 2128 -40 2103 -21 ct 2079 -2 2047 7 2009 7 ct 
-1961 7 1923 -8 1895 -37 ct 1866 -67 1852 -109 1852 -162 ct 1852 -218 1867 -261 1895 -291 ct 
-1924 -322 1961 -337 2006 -337 ct 2050 -337 2086 -322 2114 -292 ct 2142 -262 2156 -220 2156 -166 ct 
-2156 -163 2156 -158 2155 -151 ct 1910 -151 l  1912 -115 1922 -87 1941 -68 ct 
-1959 -49 1982 -39 2009 -39 ct 2030 -39 2047 -44 2062 -55 ct 2076 -66 2088 -83 2096 -107 ct 
-p
-1913 -197 m  2097 -197 l  2094 -225 2087 -245 2076 -259 ct 2058 -280 2035 -291 2007 -291 ct 
-1981 -291 1959 -283 1942 -265 ct 1925 -248 1915 -226 1913 -197 ct p ef
-2221 0 m  2221 -330 l  2271 -330 l  2271 -280 l  2284 -303 2296 -318 2307 -326 ct 
-2318 -333 2330 -337 2343 -337 ct 2362 -337 2381 -331 2400 -319 ct 2381 -267 l 
-2367 -275 2354 -279 2340 -279 ct 2328 -279 2317 -276 2307 -268 ct 2297 -261 2290 -251 2286 -238 ct 
-2280 -218 2277 -196 2277 -173 ct 2277 0 l  2221 0 l  p ef
-pom
-gr
-gr
-22600 13500 m  21100 13500 l  21100 12000 l  24100 12000 l  24100 13500 l 
-22600 13500 l  pc
-gs
-gs
-pum
-21916 12626 t
-18 -129 m  73 -136 l  74 -102 81 -78 92 -65 ct 104 -52 120 -46 140 -46 ct 155 -46 168 -49 179 -56 ct 
-190 -63 198 -72 202 -84 ct 206 -96 208 -115 208 -141 ct 208 -455 l  268 -455 l 
-268 -145 l  268 -107 264 -77 254 -56 ct 245 -35 231 -19 211 -8 ct 191 3 167 8 140 8 ct 
-101 8 70 -3 49 -26 ct 28 -49 17 -84 18 -129 ct p ef
-360 -391 m  360 -455 l  416 -455 l  416 -391 l  360 -391 l  p
-360 0 m  360 -330 l  416 -330 l  416 0 l  360 0 l  p ef
-621 -50 m  629 -1 l  613 2 599 4 587 4 ct 566 4 551 1 539 -6 ct 528 -12 520 -20 516 -31 ct 
-511 -41 509 -63 509 -97 ct 509 -287 l  468 -287 l  468 -330 l  509 -330 l 
-509 -412 l  565 -445 l  565 -330 l  621 -330 l  621 -287 l  565 -287 l 
-565 -94 l  565 -78 566 -68 568 -63 ct 570 -58 573 -55 577 -52 ct 582 -49 588 -48 596 -48 ct 
-602 -48 611 -49 621 -50 ct p ef
-799 -50 m  807 -1 l  791 2 777 4 765 4 ct 744 4 729 1 717 -6 ct 706 -12 698 -20 694 -31 ct 
-689 -41 687 -63 687 -97 ct 687 -287 l  646 -287 l  646 -330 l  687 -330 l 
-687 -412 l  743 -445 l  743 -330 l  799 -330 l  799 -287 l  743 -287 l 
-743 -94 l  743 -78 744 -68 746 -63 ct 748 -58 751 -55 755 -52 ct 760 -49 766 -48 774 -48 ct 
-780 -48 789 -49 799 -50 ct p ef
-1080 -107 m  1138 -99 l  1129 -66 1112 -40 1087 -21 ct 1063 -2 1031 7 993 7 ct 
-945 7 907 -8 879 -37 ct 850 -67 836 -109 836 -162 ct 836 -218 851 -261 879 -291 ct 
-908 -322 945 -337 990 -337 ct 1034 -337 1070 -322 1098 -292 ct 1126 -262 1140 -220 1140 -166 ct 
-1140 -163 1140 -158 1139 -151 ct 894 -151 l  896 -115 906 -87 925 -68 ct 943 -49 966 -39 993 -39 ct 
-1014 -39 1031 -44 1046 -55 ct 1060 -66 1072 -83 1080 -107 ct p
-897 -197 m  1081 -197 l  1078 -225 1071 -245 1060 -259 ct 1042 -280 1019 -291 991 -291 ct 
-965 -291 943 -283 926 -265 ct 909 -248 899 -226 897 -197 ct p ef
-1205 0 m  1205 -330 l  1255 -330 l  1255 -280 l  1268 -303 1280 -318 1291 -326 ct 
-1302 -333 1314 -337 1327 -337 ct 1346 -337 1365 -331 1384 -319 ct 1365 -267 l 
-1351 -275 1338 -279 1324 -279 ct 1312 -279 1301 -276 1291 -268 ct 1281 -261 1274 -251 1270 -238 ct 
-1264 -218 1261 -196 1261 -173 ct 1261 0 l  1205 0 l  p ef
-pom
-gr
-gs
-pum
-21764 13337 t
-47 0 m  47 -455 l  217 -455 l  252 -455 280 -450 301 -441 ct 322 -432 338 -418 350 -399 ct 
-362 -380 368 -359 368 -339 ct 368 -319 362 -301 352 -284 ct 341 -266 325 -253 304 -242 ct 
-332 -234 353 -220 368 -201 ct 382 -181 390 -158 390 -132 ct 390 -111 385 -91 376 -72 ct 
-367 -54 356 -40 343 -30 ct 330 -20 313 -13 293 -8 ct 273 -3 249 0 220 0 ct 47 0 l 
-p
-107 -264 m  205 -264 l  232 -264 251 -265 262 -269 ct 278 -274 289 -281 297 -292 ct 
-305 -302 309 -315 309 -331 ct 309 -347 305 -360 298 -371 ct 290 -383 280 -391 267 -395 ct 
-253 -399 230 -401 198 -401 ct 107 -401 l  107 -264 l  p
-107 -54 m  220 -54 l  239 -54 253 -54 261 -56 ct 275 -58 286 -62 295 -68 ct 
-305 -74 312 -82 318 -94 ct 324 -105 327 -117 327 -132 ct 327 -149 323 -164 314 -176 ct 
-306 -189 294 -197 278 -202 ct 263 -207 241 -210 212 -210 ct 107 -210 l  107 -54 l 
-p ef
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-476 -44 470 -57 467 -74 ct 465 -85 464 -102 464 -126 ct 464 -330 l  519 -330 l 
-519 -147 l  519 -118 521 -98 523 -88 ct 526 -74 534 -62 545 -54 ct 557 -45 571 -41 587 -41 ct 
-604 -41 620 -45 634 -54 ct 649 -63 660 -74 666 -89 ct 672 -104 675 -125 675 -153 ct 
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-965 -408 l  953 -410 943 -411 932 -411 ct 915 -411 903 -407 896 -400 ct 889 -393 886 -379 886 -360 ct 
-886 -329 l  950 -329 l  950 -286 l  886 -286 l  886 0 l  830 0 l  p ef
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-1006 -428 1016 -440 1029 -449 ct 1043 -458 1062 -462 1086 -462 ct 1102 -462 1119 -460 1138 -457 ct 
-1130 -408 l  1118 -410 1108 -411 1097 -411 ct 1080 -411 1068 -407 1061 -400 ct 
-1054 -393 1051 -379 1051 -360 ct 1051 -329 l  1115 -329 l  1115 -286 l  1051 -286 l 
-1051 0 l  995 0 l  p ef
-1385 -107 m  1443 -99 l  1434 -66 1417 -40 1392 -21 ct 1368 -2 1336 7 1298 7 ct 
-1250 7 1212 -8 1184 -37 ct 1155 -67 1141 -109 1141 -162 ct 1141 -218 1156 -261 1184 -291 ct 
-1213 -322 1250 -337 1295 -337 ct 1339 -337 1375 -322 1403 -292 ct 1431 -262 1445 -220 1445 -166 ct 
-1445 -163 1445 -158 1444 -151 ct 1199 -151 l  1201 -115 1211 -87 1230 -68 ct 
-1248 -49 1271 -39 1298 -39 ct 1319 -39 1336 -44 1351 -55 ct 1365 -66 1377 -83 1385 -107 ct 
-p
-1202 -197 m  1386 -197 l  1383 -225 1376 -245 1365 -259 ct 1347 -280 1324 -291 1296 -291 ct 
-1270 -291 1248 -283 1231 -265 ct 1214 -248 1204 -226 1202 -197 ct p ef
-1510 0 m  1510 -330 l  1560 -330 l  1560 -280 l  1573 -303 1585 -318 1596 -326 ct 
-1607 -333 1619 -337 1632 -337 ct 1651 -337 1670 -331 1689 -319 ct 1670 -267 l 
-1656 -275 1643 -279 1629 -279 ct 1617 -279 1606 -276 1596 -268 ct 1586 -261 1579 -251 1575 -238 ct 
-1569 -218 1566 -196 1566 -173 ct 1566 0 l  1510 0 l  p ef
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-7100 8750 m  6538 8938 l  6538 8563 l  7100 8750 l  p ef
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-15400 8750 m  14838 8938 l  14838 8563 l  15400 8750 l  p ef
-14300 8725 m  14950 8725 l  14950 8775 l  14300 8775 l  14300 8725 l  p ef
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-15900 12775 m  10950 12775 l  10950 12725 l  15900 12725 l  15900 12775 l 
-p ef
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-21100 12775 m  19350 12775 l  19350 12725 l  21100 12725 l  21100 12775 l 
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-15900 12775 m  12850 12775 l  12850 12750 l  12850 12725 l  15900 12725 l 
-15900 12750 l  15900 12775 l  p ef
-12850 12750 m  12850 12775 l  12846 12775 l  12841 12773 l  12838 12772 l 
-12834 12769 l  12831 12766 l  12828 12763 l  12827 12759 l  12825 12754 l 
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-12825 12750 m  12825 9950 l  12850 9950 l  12875 9950 l  12875 12750 l 
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-1225 13350 m  1000 13350 l  1000 12150 l  1450 12150 l  1450 13350 l  1225 13350 l 
-pc
-500 14050 m  500 11549 l  1001 12175 l  1001 13425 l  500 14050 l  pc
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-24100 12750 m  24663 12563 l  24663 12938 l  24100 12750 l  p ef
-25100 12775 m  24550 12775 l  24550 12725 l  25100 12725 l  25100 12775 l 
-p ef
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-1500 9026 1276 9250 1000 9250 ct pc
-500 8250 m  500 9250 l  ps
-2900 8750 m  2338 8938 l  2338 8563 l  2900 8750 l  p ef
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-1500 8724 l  p ef
-2200 8749 m  2200 8724 l  2204 8724 l  2209 8726 l  2212 8727 l  2216 8730 l 
-2219 8733 l  2222 8736 l  2223 8740 l  2225 8745 l  2225 8749 l  2225 8749 l 
-2200 8749 l  p ef
-2225 8749 m  2225 8750 l  2200 8750 l  2175 8750 l  2175 8749 l  2200 8749 l 
-2225 8749 l  p ef
-2200 8750 m  2200 8775 l  2196 8775 l  2191 8773 l  2188 8772 l  2184 8769 l 
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-2200 8750 l  p ef
-2200 8725 m  2450 8725 l  2450 8750 l  2450 8775 l  2200 8775 l  2200 8750 l 
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-%%PageTrailer
-%%Trailer
-%%EOF

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-
-
-
-
-Internet Engineering Task Force                          Greg Herlein
-Internet Draft                                        Jean-Marc Valin
-draft-herlein-avt-rtp-speex-00.txt                       Simon Morlat
-March 3, 2004                                          Roger Hardiman
-Expires: September 3, 2004                                  Phil Kerr
-
-
-                 RTP Payload Format for the Speex Codec
-
-Status of this Memo
-
-   This document is an Internet-Draft and is in full conformance with
-   all provisions of Section 10 of RFC 2026.
-
-   Internet-Drafts are working documents of the Internet Engineering
-   Task Force (IETF), its areas, and its working groups.  Note that
-   other groups may also distribute working documents as Internet-
-   Drafts.
-
-   Internet-Drafts are draft documents valid for a maximum of six
-   months and may be updated, replaced, or obsoleted by other
-   documents at any time.  It is inappropriate to use Internet-Drafts
-   as reference material or to cite them other than as "work in
-   progress".
-
-   The list of current Internet-Drafts can be accessed at
-   http://www.ietf.org/ietf/1id-abstracts.txt
-
-   To view the list Internet-Draft Shadow Directories, see
-   http://www.ietf.org/shadow.html.
-
-
-Copyright Notice
-
-   Copyright (C) The Internet Society (2003).  All Rights Reserved.
-
-
-Abstract
-
-   Speex is an open-source voice codec suitable for use in Voice over
-   IP (VoIP) type applications.  This document describes the payload
-   format for Speex generated bit streams within an RTP packet.  Also
-   included here are the necessary details for the use of Speex with
-   the Session Description Protocol (SDP) and a preliminary method of
-   using Speex within H.323 applications.
-
-
-1. Conventions used in this document
-
-   The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-   "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-   document are to be interpreted as described in RFC 2119 [5].
-
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-
-
-2. Overview of the Speex Codec
-
-   Speex is based on the CELP [12] encoding technique with support for 
-   either narrowband (nominal 8kHz), wideband (nominal 16kHz) or 
-   ultra-wideband (nominal 32kHz), and (non-optimal) rates up to 48 kHz 
-   sampling also available.  The main characteristics can be summarized 
-   as follows:
-
-   o  Free software/open-source
-   o  Integration of wideband and narrowband in the same bit-stream
-   o  Wide range of bit-rates available
-   o  Dynamic bit-rate switching and variable bit-rate (VBR)
-   o  Voice Activity Detection (VAD, integrated with VBR)
-   o  Variable complexity
-
-
-3. RTP payload format for Speex
-
-   For RTP based transportation of Speex encoded audio the standard 
-   RTP header [2] is followed by one or more payload data blocks. 
-   An optional padding terminator may also be used. 
-
-      0                   1                   2                   3
-      0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |                         RTP Header                            |
-     +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-     |                 one or more frames of Speex ....              |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |        one or more frames of Speex ....       |    padding    |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-3.1 RTP Header
-
-      0                   1                   2                   3
-      0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |                           timestamp                           |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |           synchronization source (SSRC) identifier            |
-     +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-     |            contributing source (CSRC) identifiers             |
-     |                              ...                              |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-   The RTP header begins with an octet of fields (V, P, X, and CC) to   
-   support specialized RTP uses (see [8] and [9] for details). For 
-   Speex the following values are used.
-
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-
-   Version (V): 2 bits
-      This field identifies the version of RTP. The version
-      used by this specification is two (2).
-
-   Padding (P): 1 bit
-      If the padding bit is set, the packet contains one or more
-      additional padding octets at the end which are not part of
-      the payload.  P is set if the total packet size is less than 
-      the MTU.  
-
-   Extension (X): 1 bit
-      If the extension, X, bit is set, the fixed header MUST be 
-      followed by exactly one header extension, with a format defined 
-      in Section 5.3.1. of [8], 
-
-   CSRC count (CC): 4 bits
-      The CSRC count contains the number of CSRC identifiers.
-
-   Marker (M): 1 bit
-      The M bit indicates if the packet contains comfort noise.  This 
-      field is used in conjunction with the cng SDP attribute and is 
-      detailed further in section 5 below.  In normal usage this bit 
-      is set if the packet contains comfort noise.
-
-   Payload Type (PT): 7 bits
-      An RTP profile for a class of applications is expected to assign 
-      a payload type for this format, or a dynamically allocated 
-      payload type SHOULD be chosen which designates the payload as 
-      Speex.
-
-   Sequence number: 16 bits
-      The sequence number increments by one for each RTP data packet
-      sent, and may be used by the receiver to detect packet loss and
-      to restore packet sequence.  This field is detailed further in
-      [2].
-
-   Timestamp: 32 bits
-      A timestamp representing the sampling time of the first sample of
-      the first Speex packet in the RTP packet.  The clock frequency 
-      MUST be set to the sample rate of the encoded audio data.
-
-      Speex uses 20 msec frames and a variable sampling rate clock.  
-      The RTP timestamp MUST be in units of 1/X of a second where X 
-      is the sample rate used.  Speex uses a nominal 8kHz sampling rate
-      for narrowband use, a nominal 16kHz sampling rate for wideband use, 
-      and a nominal 32kHz sampling rate for ultra-wideband use.
-
-   SSRC/CSRC identifiers: 
-      These two fields, 32 bits each with one SSRC field and a maximum 
-      of 16 CSRC fields, are as defined in [2].  
-
-
-
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-
-
-3.2 Speex payload
-
-   For the purposes of packetizing the bit stream in RTP, it is only
-   necessary to consider the sequence of bits as output by the Speex
-   encoder [11], and present the same sequence to the decoder.  The 
-   payload format described here maintains this sequence.  
-
-   A typical Speex frame, encoded at the maximum bitrate, is approx.
-   110 octets and the total number of Speex frames SHOULD be kept 
-   less than the path MTU to prevent fragmentation.  Speex frames MUST
-   NOT be fragmented across multiple RTP packets,
-
-   An RTP packet MAY contain Speex frames of the same bit rate or of
-   varying bit rates, since the bit-rate for a frame is conveyed in
-   band with the signal.
-
-   The encoding and decoding algorithm can change the bit rate at any
-   20 msec frame boundary, with the bit rate change notification provided
-   in-band with the bit stream.  Each frame contains both "mode" 
-   (narrowband, wideband or ultra-wideband) and "sub-mode" (bit-rate) 
-   information in the bit stream.  No out-of-band notification is 
-   required for the decoder to process changes in the bit rate sent 
-   by the encoder.
-
-   It is RECOMMENDED that values of 8000, 16000 and 32000 be used 
-   for normal internet telephony applications, though the sample 
-   rate is supported at rates as low as 6000 Hz and as high as 
-   48 kHz.
-
-   The RTP payload MUST be padded to provide an integer number of
-   octets as the payload length.  These padding bits are LSB aligned
-   in network byte order and consist of a 0 followed by all ones
-   (until the end of the octet).  This padding is only required for
-   the last frame in the packet, and only to ensure the packet
-   contents ends on an octet boundary.
-
-
-3.2.1 Example Speex packet
-
-   In the example below we have a single Speex frame with 5 bits
-   of padding to ensure the packet size falls on an octet boundary.
-
-    0                   1                   2                   3
-    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                           timestamp                           |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |         synchronization source (SSRC) identifier              |
-   +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-
-
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-
-
-    0                   1                   2                   3
-    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-   +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-   |         contributing source (CSRC) identifiers                |
-   |                              ...                              |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..                         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..               |0 1 1 1 1|
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-3.4 Multiple Speex frames in a RTP packet
-
-   Below is an example of two Speex frames contained within one RTP 
-   packet.  The Speex frame length in this example fall on an octet
-   boundary so there is no padding.
-
-   Speex codecs [11] are able to detect the the bitrate from the
-   payload and are responsible for detecting the 20 msec boundaries
-   between each frame.
-
-    0                   1                   2                   3
-    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                           timestamp                           |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |         synchronization source (SSRC) identifier              |
-   +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-   |         contributing source (CSRC) identifiers                |
-   |                              ...                              |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..                         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |        ..speex data..         |        ..speex data..         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..                         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-4. MIME registration of Speex
-
-   Full definition of the MIME type for Speex will be part of the Ogg
-   Vorbis MIME type definition application [10].  
-
-   MIME media type name: audio
-
-   MIME subtype: speex
-
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-
-
-   Optional parameters:
-
-   Required parameters: to be included in the Ogg MIME specification.
-
-   Encoding considerations:
-
-   Security Considerations:
-         See Section 6 of RFC 3047.
-
-   Interoperability considerations: none
-
-   Published specification:  
-
-   Applications which use this media type:
-
-   Additional information: none
-
-   Person & email address to contact for further information:
-	 Greg Herlein <[email protected]>
-	 Jean-Marc Valin <[email protected]>
-
-   Intended usage: COMMON
-
-   Author/Change controller:
-         Author:  Greg Herlein <[email protected]>
-         Change controller: Greg Herlein <[email protected]>
-
-   This transport type signifies that the content is to be interpreted
-   according to this document if the contents are transmitted over RTP. 
-   Should this transport type appear over a lossless streaming protocol
-   such as TCP, the content encapsulation should be interpreted as an 
-   Ogg Stream in accordance with RFC 3534, with the exception that the
-   content of the Ogg Stream may be assumed to be Speex audio and 
-   Speex audio only.
-
-
-5. SDP usage of Speex
-
-   When conveying information by SDP [4], the encoding name MUST be
-   set to "speex".  An example of the media representation in SDP for
-   offering a single channel of Speex at 8000 samples per second might
-   be:
-
-	m=audio 8088 RTP/AVP 97
-	a=rtpmap:97 speex/8000
-
-   Note that the RTP payload type code of 97 is defined in this media
-   definition to be 'mapped' to the speex codec at an 8kHz sampling
-   frequency using the 'a=rtpmap' line.  Any number from 96 to 127
-   could have been chosen (the allowed range for dynamic types).  
-
-
-
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-
-
-   The value of the sampling frequency is typically 8000 for narrow band
-   operation, 16000 for wide band operation, and 32000 for ultra-wide
-   band operation.
-
-   If for some reason the offerer has bandwidth limitations, the client 
-   may use the "b=" header, as explained in SDP [4]. The following example
-   illustrates the case where the offerer cannot receive more than
-   10 kbit/s.
-
-   	m=audio 8088 RTP/AVP 97
-	b=AS:10
-	a=rtmap:97 speex/8000
-
-   In this case, if the remote part agrees, it should configure its
-   Speex encoder so that it does not use modes that produce more than
-   10 kbit/s. Note that the "b=" constraint also applies on all
-   payload types that may be proposed in the media line ("m=").
-
-   An other way to make recommendations to the remote Speex encoder
-   is to use its specific parameters via the a=fmtp: directive.  The
-   following parameters are defined for use in this way:
-
-         ptime: duration of each packet in milliseconds.
-
-	 sr:    actual sample rate in Hz.
-
-	 ebw:   encoding bandwidth - either 'narrow' or 'wide' or 
-                'ultra' (corresponds to nominal 8000, 16000, and
-		32000 Hz sampling rates).
-
-	 vbr:   variable bit rate  - either 'on' 'off' or 'vad'
-		(defaults to off).  If on, variable bit rate is
-		enabled.  If off, disabled.  If set to 'vad' then
-		constant bit rate is used but silence will be encoded
-		with special short frames to indicate a lack of voice
-		for that period.
-
-	 cng:   comfort noise generation - either 'on' or 'off'. If
-		off then silence frames will be silent; if 'on' then
-		those frames will be filled with comfort noise.
-
-	 mode:  Speex encoding mode. Can be {1,2,3,4,5,6,any}
-                defaults to 3 in narrowband, 6 in wide and ultra-wide.
-
-	 penh:	use of perceptual enhancement. 1 indicates 
-	 	to the decoder that perceptual enhancement is recommended,
-		0 indicates that it is not. Defaults to on (1).
-
-
-
-
-
-
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-
-
-   Examples:
-
-   	m=audio 8008 RTP/AVP 97
-	a=rtpmap:97 speex/8000
-	a=fmtp:97 mode=4
-
-   This examples illustrate an offerer that wishes to receive
-   a Speex stream at 8000Hz, but only using speex mode 3.
- 
-   The offerer may suggest to the remote decoder to activate
-   its perceptual enhancement filter like this:
-   
-	m=audio 8088 RTP/AVP 97
-	a=rtmap:97 speex/8000
-	a=fmtp:97 penh=1 
-	
-   Several Speex specific parameters can be given in a single
-   a=fmtp line provided that they are separated by a semi-colon:
-   
-   	a=fmtp:97 mode=any;penh=1
-
-   The offerer may indicate that it wishes to send variable bit rate
-   frames with comfort noise:
-
-	m=audio 8088 RTP/AVP 97
-	a=rtmap:97 speex/8000
-	a=fmtp:97 vbr=on;cng=on
-
-   The "ptime" attribute is used to denote the packetization 
-   interval (ie, how many milliseconds of audio is encoded in a 
-   single RTP packet).  Since Speex uses 20 msec frames, ptime values 
-   of multiples of 20 denote multiple Speex frames per packet.  
-   Values of ptime which are not multiples of 20 MUST be ignored 
-   and clients MUST use the default value of 20 instead.
-   
-   In the example below the ptime value is set to 40, indicating that 
-   there are 2 frames in each packet.	
-   
-   	m=audio 8008 RTP/AVP 97
-	a=rtpmap:97 speex/8000
-	a=ptime:40
-	
-   Note that the ptime parameter applies to all payloads listed
-   in the media line and is not used as part of an a=fmtp directive.
-
-   Values of ptime not multiple of 20 msec are meaningless, so the 
-   receiver of such ptime values MUST ignore them.  If during the 
-   life of an RTP session the ptime value changes, when there are 
-   multiple Speex frames for example, the SDP value must also reflect 
-   the new value. 
-
-
-
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-
-
-   Care must be taken when setting the value of ptime so that the 
-   RTP packet size does not exceed the path MTU. 
-
-
-6. ITU H.323/H.245 Use of Speex
-
-   Application is underway to make Speex a standard ITU codec.
-   However, until that is finalized, Speex MAY be used in H.323 [6] by
-   using a non-standard codec block definition in the H.245 [7] codec
-   capability negotiations.  
-
-
-6.1 NonStandardMessage format
-
-   For Speex use in H.245 [7] based systems, the fields in the
-   NonStandardMessage should be:
-
-   t35CountryCode   = Hex: B5
-   t35Extension     = Hex: 00
-   manufacturerCode = Hex: 0026
-   [Length of the Binary Sequence (8 bit number)]
-   [Binary Sequence consisting of an ASCII string, no NULL terminator]
-
-   The binary sequence is an ascii string merely for ease of use.
-   The string is not null terminated.  The format of this string is
-
-       speex [optional variables]
-   
-   The optional variables are identical to those used for the SDP
-   a=fmtp strings discussed in section 5 above.  The string is built
-   to be all on one line, each key-value pair separated by a
-   semi-colon.  The optional variables MAY be omitted, which causes
-   the default values to be assumed.  They are:
-
-       ebw=narrow;mode=3;vbr=off;cng=off;ptime=20;sr=8000;penh=no;
-
-   The fifth byte of the block is the length of the binary sequence.
-
-   NOTE:  this method can result in the advertising of a large number
-   of Speex 'codecs' based on the number of variables possible.  For
-   most VoIP applications, use of the default binary sequence of
-   'speex' is RECOMMENDED to be used in addition to all other options.
-   This maximizes the chances that two H.323 based applications that
-   support Speex can find a mutual codec.   
-
-
-6.2 RTP Payload Types
-
-   Dynamic payload type codes MUST be negotiated 'out-of-band'
-   for the assignment of a dynamic payload type from the
-   range of 96-127.  H.323 applications MUST use the H.245
-   H2250LogicalChannelParameters encoding to accomplish this.  
-
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-
-
-7. Security Considerations
-
-   RTP packets using the payload format defined in this specification
-   are subject to the security considerations discussed in the RTP
-   specification [2], and any appropriate RTP profile.  This implies
-   that confidentiality of the media streams is achieved by encryption.
-   Because the data compression used with this payload format is applied
-   end-to-end, encryption may be performed after compression so there is
-   no conflict between the two operations.
-
-   A potential denial-of-service threat exists for data encodings using
-   compression techniques that have non-uniform receiver-end
-   computational load.  The attacker can inject pathological datagrams
-   into the stream which are complex to decode and cause the receiver to
-   be overloaded.  However, this encoding does not exhibit any
-   significant non-uniformity.
-
-   As with any IP-based protocol, in some circumstances a receiver may
-   be overloaded simply by the receipt of too many packets, either
-   desired or undesired.  Network-layer authentication may be used to
-   discard packets from undesired sources, but the processing cost of
-   the authentication itself may be too high.  
-
-
-8. Normative References
-
-   1.  Bradner, S., "The Internet Standards Process -- Revision 3", BCP
-       9, RFC 2026, October 1996.
-
-   2.  Schulzrinne, H., Casner, S., Frederick, R. and V. Jacobson, "RTP:
-       A Transport Protocol for real-time applications", RFC 1889,
-       January 1996.
-
-   3.  Freed, N. and N. Borenstein, "Multipurpose Internet Mail
-       Extensions (MIME) Part One: Format of Internet Message Bodies",
-       RFC 2045, November 1996.
-
-   4.  Handley, M. and V. Jacobson, "SDP: Session Description 
-       Protocol", RFC 2327, April 1998.
-
-   5.  Bradner, S., "Key words for use in RFCs to Indicate Requirement
-       Levels", BCP 14, RFC 2119, March 1997.
-
-   6.  ITU-T Recommendation H.323.  "Packet-based Multimedia 
-       Communications Systems," 1998.
-
-   7.  ITU-T Recommendation H.245 (1998), "Control of communications
-       between Visual Telephone Systems and Terminal Equipment".
-
-   8.  RTP: A transport protocol for real-time applications. Work   
-       in progress, draft-ietf-avt-rtp-new-12.txt.
-
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-
-
-   9.  RTP Profile for Audio and Video Conferences with Minimal  
-       Control.  Work in progress, draft-ietf-avt-profile-new-13.txt.
-
-   10. L. Walleij, "The application/ogg Media Type", RFC 3534, May 
-       2003.
-
-
-8.1 Informative References
-
-   11. Speexenc/speexdec, reference command-line encoder/decoder, 
-       Speex website, http://www.speex.org/
- 
-   12. CELP, U.S. Federal Standard 1016.  National Technical 
-       Information Service (NTIS) website, http://www.ntis.gov/ 
-
-
-9. Acknowledgments
-
-   The authors would like to thank Equivalence Pty Ltd of Australia
-   for their assistance in attempting to standardize the use of Speex
-   in H.323 applications, and for implementing Speex in their open
-   source OpenH323 stack.  The authors would also like to thank Brian
-   C. Wiles <[email protected]> of StreamComm for his assistance in
-   developing the proposed standard for Speex use in H.323
-   applications.
-
-   The authors would also like to thank the following members of the 
-   Speex and AVT communities for their input:  Ross Finlayson, 
-   Federico Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund.
-
-
-10. Author's Address
-
-   Greg Herlein <[email protected]>
-   2034 Filbert Street
-   San Francisco, CA 
-   United States 94123
-   
-
-   Jean-Marc Valin <[email protected]>
-   Department of Electrical and Computer Engineering
-   University of Sherbrooke
-   2500 blvd UniversitüÃü­üÃé
-   Sherbrooke, Quebec, Canada, J1K 2R1
-
-
-   Simon MORLAT <[email protected]>
-   35, av de Vizille App 42
-   38000 GRENOBLE
-   FRANCE
-
-
-
-
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-
-
-   Roger Hardiman <[email protected]>
-   49 Nettleton Road
-   Cheltenham
-   Gloucestershire
-   GL51 6NR
-   England
-
-
-   Phil Kerr <[email protected]>
-   Centre for Music Technology
-   University of Glasgow
-   Glasgow
-   G12 8LT
-   Scotland
-
-
-10. Full Copyright Statement
-
-   Copyright (C) The Internet Society (2003).  All Rights Reserved.
-
-   This document and translations of it may be copied and furnished to
-   others, and derivative works that comment on or otherwise explain it
-   or assist in its implementation may be prepared, copied, published
-   and distributed, in whole or in part, without restriction of any
-   kind, provided that the above copyright notice and this paragraph are
-   included on all such copies and derivative works.  However, this
-   document itself may not be modified in any way, such as by removing
-   the copyright notice or references to the Internet Society or other
-   Internet organizations, except as needed for the purpose of
-   developing Internet standards in which case the procedures for
-   copyrights defined in the Internet Standards process must be
-   followed, or as required to translate it into languages other than
-   English.
-
-   The limited permissions granted above are perpetual and will not be
-   revoked by the Internet Society or its successors or assigns.
-
-   This document and the information contained herein is provided on an
-   "AS IS" basis and THE INTERNET SOCIETY AND THE INTERNET ENGINEERING
-   TASK FORCE DISCLAIMS ALL WARRANTIES, EXPRESS OR IMPLIED, INCLUDING
-   BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE INFORMATION
-   HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED WARRANTIES OF
-   MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
-
-
-Acknowledgement
-
-   Funding for the RFC Editor function is currently provided by the
-   Internet Society.
-
-
-
-
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@@ -1,841 +0,0 @@
-
-
-AVT Working Group                                             G. Herlein
-Internet-Draft                                                 S. Morlat
-Expires: October 3, 2005                                    J. Jean-Marc
-                                                             R. Hardiman
-                                                                 P. Kerr
-                                                          April 04, 2005
-
-
-                   draft-herlein-speex-rtp-profile-02
-                 RTP Payload Format for the Speex Codec
-
-Status of this Memo
-
-   This document is an Internet-Draft and is subject to all provisions
-   of section 3 of RFC 3667.  By submitting this Internet-Draft, each
-   author represents that any applicable patent or other IPR claims of
-   which he or she is aware have been or will be disclosed, and any of
-   which he or she become aware will be disclosed, in accordance with
-   RFC 3668.
-
-   Internet-Drafts are working documents of the Internet Engineering
-   Task Force (IETF), its areas, and its working groups.  Note that
-   other groups may also distribute working documents as
-   Internet-Drafts.
-
-   Internet-Drafts are draft documents valid for a maximum of six months
-   and may be updated, replaced, or obsoleted by other documents at any
-   time.  It is inappropriate to use Internet-Drafts as reference
-   material or to cite them other than as "work in progress."
-
-   The list of current Internet-Drafts can be accessed at
-   http://www.ietf.org/ietf/1id-abstracts.txt.
-
-   The list of Internet-Draft Shadow Directories can be accessed at
-   http://www.ietf.org/shadow.html.
-
-   This Internet-Draft will expire on October 3, 2005.
-
-Copyright Notice
-
-   Copyright (C) The Internet Society (2005).
-
-Abstract
-
-   Speex is an open-source voice codec suitable for use in Voice over IP
-   (VoIP) type applications.  This document describes the payload format
-   for Speex generated bit streams within an RTP packet.  Also included
-   here are the necessary details for the use of Speex with the Session
-   Description Protocol (SDP) and a preliminary method of using Speex
-
-
-
-Herlein, et al.         Expires October 3, 2005                 [Page 1]
-
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-
-
-   within H.323 applications.
-
-Table of Contents
-
-   1.   Conventions used in this document  . . . . . . . . . . . . .   3
-   2.   Overview of the Speex Codec  . . . . . . . . . . . . . . . .   3
-   3.   RTP payload format for Speex . . . . . . . . . . . . . . . .   3
-   4.   RTP Header . . . . . . . . . . . . . . . . . . . . . . . . .   3
-   5.   Speex payload  . . . . . . . . . . . . . . . . . . . . . . .   5
-   6.   Example Speex packet . . . . . . . . . . . . . . . . . . . .   6
-   7.   Multiple Speex frames in a RTP packet  . . . . . . . . . . .   6
-   8.   MIME registration of Speex . . . . . . . . . . . . . . . . .   7
-   9.   SDP usage of Speex . . . . . . . . . . . . . . . . . . . . .   8
-   10.  ITU H.323/H.245 Use of Speex . . . . . . . . . . . . . . . .  10
-   11.  NonStandardMessage format  . . . . . . . . . . . . . . . . .  10
-   12.  RTP Payload Types  . . . . . . . . . . . . . . . . . . . . .  11
-   13.  Security Considerations  . . . . . . . . . . . . . . . . . .  11
-   14.  Acknowledgments  . . . . . . . . . . . . . . . . . . . . . .  12
-   15.  References . . . . . . . . . . . . . . . . . . . . . . . . .  12
-   15.1   Normative References . . . . . . . . . . . . . . . . . . .  12
-   15.2   Informative References . . . . . . . . . . . . . . . . . .  13
-        Authors' Addresses . . . . . . . . . . . . . . . . . . . . .  13
-        Intellectual Property and Copyright Statements . . . . . . .  15
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-Herlein, et al.         Expires October 3, 2005                 [Page 2]
-
-Internet-Draft     draft-herlein-speex-rtp-profile-02         April 2005
-
-
-1.  Conventions used in this document
-
-   The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-   "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-   document are to be interpreted as described in RFC 2119 [1].
-
-2.  Overview of the Speex Codec
-
-   Speex is based on the CELP [10] encoding technique with support for
-   either narrowband (nominal 8kHz), wideband (nominal 16kHz) or
-   ultra-wideband (nominal 32kHz), and (non-optimal) rates up to 48 kHz
-   sampling also available.  The main characteristics can be summarized
-   as follows:
-
-   o  Free software/open-source
-   o  Integration of wideband and narrowband in the same bit-stream
-   o  Wide range of bit-rates available
-   o  Dynamic bit-rate switching and variable bit-rate (VBR)
-   o  Voice Activity Detection (VAD, integrated with VBR)
-   o  Variable complexity
-
-3.  RTP payload format for Speex
-
-   For RTP based transportation of Speex encoded audio the standard RTP
-   header [2] is followed by one or more payload data blocks.  An
-   optional padding terminator may also be used.
-
-         0                   1                   2                   3
-         0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |                         RTP Header                            |
-        +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-        |                 one or more frames of Speex ....              |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |        one or more frames of Speex ....       |    padding    |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-4.  RTP Header
-
-         0                   1                   2                   3
-         0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |                           timestamp                           |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |           synchronization source (SSRC) identifier            |
-
-
-
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-
-
-        +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-        |            contributing source (CSRC) identifiers             |
-        |                              ...                              |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-   The RTP header begins with an octet of fields (V, P, X, and CC) to
-   support specialized RTP uses (see [2] and [7] for details).  For
-   Speex the following values are used.
-
-   Version (V): 2 bits
-
-   This field identifies the version of RTP.  The version used by this
-   specification is two [2].
-
-   Padding (P): 1 bit
-
-   If the padding bit is set, the packet contains one or more additional
-   padding octets at the end which are not part of the payload.  P is
-   set if the total packet size is less than the MTU.
-
-   Extension (X): 1 bit
-
-   If the extension, X, bit is set, the fixed header MUST be followed by
-   exactly one header extension, with a format defined in Section 5.3.1.
-   of [2].
-
-   CSRC count (CC): 4 bits
-
-   The CSRC count contains the number of CSRC identifiers.
-
-   Marker (M): 1 bit
-
-   The M bit indicates if the packet contains comfort noise.  This field
-   is used in conjunction with the cng SDP attribute and is detailed
-   further in section 5 below.  In normal usage this bit is set if the
-   packet contains comfort noise.
-
-   Payload Type (PT): 7 bits
-
-   An RTP profile for a class of applications is expected to assign a
-   payload type for this format, or a dynamically allocated payload type
-   SHOULD be chosen which designates the payload as Speex.
-
-   Sequence number: 16 bits
-
-   The sequence number increments by one for each RTP data packet sent,
-   and may be used by the receiver to detect packet loss and to restore
-   packet sequence.  This field is detailed further in [2].
-
-
-
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-
-
-   Timestamp: 32 bits
-
-   A timestamp representing the sampling time of the first sample of the
-   first Speex packet in the RTP packet.  The clock frequency MUST be
-   set to the sample rate of the encoded audio data.  Speex uses 20 msec
-   frames and a variable sampling rate clock.  The RTP timestamp MUST be
-   in units of 1/X of a second where X is the sample rate used.  Speex
-   uses a nominal 8kHz sampling rate for narrowband use, a nominal 16kHz
-   sampling rate for wideband use, and a nominal 32kHz sampling rate for
-   ultra-wideband use.
-
-   SSRC/CSRC identifiers:
-
-   These two fields, 32 bits each with one SSRC field and a maximum of
-   16 CSRC fields, are as defined in [2].
-
-5.  Speex payload
-
-   For the purposes of packetizing the bit stream in RTP, it is only
-   necessary to consider the sequence of bits as output by the Speex
-   encoder [9], and present the same sequence to the decoder.  The
-   payload format described here maintains this sequence.
-
-   A typical Speex frame, encoded at the maximum bitrate, is approx.
-   110 octets and the total number of Speex frames SHOULD be kept less
-   than the path MTU to prevent fragmentation.  Speex frames MUST NOT be
-   fragmented across multiple RTP packets,
-
-   An RTP packet MAY contain Speex frames of the same bit rate or of
-   varying bit rates, since the bit-rate for a frame is conveyed in band
-   with the signal.
-
-   The encoding and decoding algorithm can change the bit rate at any 20
-   msec frame boundary, with the bit rate change notification provided
-   in-band with the bit stream.  Each frame contains both "mode"
-   (narrowband, wideband or ultra-wideband) and "sub-mode" (bit-rate)
-   information in the bit stream.  No out-of-band notification is
-   required for the decoder to process changes in the bit rate sent by
-   the encoder.
-
-   It is RECOMMENDED that values of 8000, 16000 and 32000 be used for
-   normal internet telephony applications, though the sample rate is
-   supported at rates as low as 6000 Hz and as high as 48 kHz.
-
-   The RTP payload MUST be padded to provide an integer number of octets
-   as the payload length.  These padding bits are LSB aligned in network
-   octet order and consist of a 0 followed by all ones (until the end of
-   the octet).  This padding is only required for the last frame in the
-
-
-
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-
-
-   packet, and only to ensure the packet contents ends on an octet
-   boundary.
-
-6.  Example Speex packet
-
-   In the example below we have a single Speex frame with 5 bits of
-   padding to ensure the packet size falls on an octet boundary.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                           timestamp                           |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |         synchronization source (SSRC) identifier              |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |         contributing source (CSRC) identifiers                |
-      |                              ...                              |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..               |0 1 1 1 1|
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-7.  Multiple Speex frames in a RTP packet
-
-   Below is an example of two Speex frames contained within one RTP
-   packet.  The Speex frame length in this example fall on an octet
-   boundary so there is no padding.
-
-   Speex codecs [9] are able to detect the the bitrate from the payload
-   and are responsible for detecting the 20 msec boundaries between each
-   frame.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                           timestamp                           |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-
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-
-
-      |         synchronization source (SSRC) identifier              |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |         contributing source (CSRC) identifiers                |
-      |                              ...                              |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |        ..speex data..         |        ..speex data..         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-8.  MIME registration of Speex
-
-   Full definition of the MIME [3] type for Speex will be part of the
-   Ogg Vorbis MIME type definition application [8].
-
-   MIME media type name: audio
-
-   MIME subtype: speex
-
-   Optional parameters:
-
-   Required parameters: to be included in the Ogg MIME specification.
-
-   Encoding considerations:
-
-   Security Considerations:
-
-   See Section 6 of RFC 3047.
-
-   Interoperability considerations: none
-
-   Published specification:
-
-   Applications which use this media type:
-
-   Additional information: none
-
-   Person & email address to contact for further information:
-
-      Greg Herlein <[email protected]>
-      Jean-Marc Valin <[email protected]>
-
-   Intended usage: COMMON
-
-
-
-
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-
-
-   Author/Change controller:
-
-      Author:  Greg Herlein <[email protected]>
-      Change controller: Greg Herlein <[email protected]>
-      Change controller: IETF AVT Working Group
-
-   This transport type signifies that the content is to be interpreted
-   according to this document if the contents are transmitted over RTP.
-   Should this transport type appear over a lossless streaming protocol
-   such as TCP, the content encapsulation should be interpreted as an
-   Ogg Stream in accordance with [8], with the exception that the
-   content of the Ogg Stream may be assumed to be Speex audio and Speex
-   audio only.
-
-9.  SDP usage of Speex
-
-   When conveying information by SDP [4], the encoding name MUST be set
-   to "speex".  An example of the media representation in SDP for
-   offering a single channel of Speex at 8000 samples per second might
-   be:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-
-   Note that the RTP payload type code of 97 is defined in this media
-   definition to be 'mapped' to the speex codec at an 8kHz sampling
-   frequency using the 'a=rtpmap' line.  Any number from 96 to 127 could
-   have been chosen (the allowed range for dynamic types).
-
-   The value of the sampling frequency is typically 8000 for narrow band
-   operation, 16000 for wide band operation, and 32000 for ultra-wide
-   band operation.
-
-   If for some reason the offerer has bandwidth limitations, the client
-   may use the "b=" header, as explained in SDP [4].  The following
-   example illustrates the case where the offerer cannot receive more
-   than 10 kbit/s.
-
-      m=audio 8088 RTP/AVP 97
-      b=AS:10
-      a=rtmap:97 speex/8000
-
-   In this case, if the remote part agrees, it should configure its
-   Speex encoder so that it does not use modes that produce more than 10
-   kbit/s.  Note that the "b=" constraint also applies on all payload
-   types that may be proposed in the media line ("m=").
-
-   An other way to make recommendations to the remote Speex encoder is
-
-
-
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-   to use its specific parameters via the a=fmtp: directive.  The
-   following parameters are defined for use in this way:
-
-      ptime: duration of each packet in milliseconds.
-
-      sr:    actual sample rate in Hz.
-
-      ebw:   encoding bandwidth - either 'narrow' or 'wide' or 'ultra'
-      (corresponds to nominal 8000, 16000, and 32000 Hz sampling rates).
-
-      vbr:   variable bit rate  - either 'on' 'off' or 'vad' (defaults
-      to off).  If on, variable bit rate is enabled.  If off, disabled.
-      If set to 'vad' then constant bit rate is used but silence will be
-      encoded with special short frames to indicate a lack of voice for
-      that period.
-
-      cng:   comfort noise generation - either 'on' or 'off'.  If off
-      then silence frames will be silent; if 'on' then those frames will
-      be filled with comfort noise.
-
-      mode:  Speex encoding mode.  Can be {1,2,3,4,5,6,any} defaults to
-      3 in narrowband, 6 in wide and ultra-wide.
-
-      penh:	use of perceptual enhancement.  1 indicates to the decoder
-      that perceptual enhancement is recommended, 0 indicates that it is
-      not.  Defaults to on (1).
-
-
-   Examples:
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=fmtp:97 mode=4
-
-   This examples illustrate an offerer that wishes to receive a Speex
-   stream at 8000Hz, but only using speex mode 3.
-
-   The offerer may suggest to the remote decoder to activate its
-   perceptual enhancement filter like this:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtmap:97 speex/8000
-      a=fmtp:97 penh=1
-
-   Several Speex specific parameters can be given in a single a=fmtp
-   line provided that they are separated by a semi-colon:
-
-
-
-
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-      a=fmtp:97 mode=any;penh=1
-
-   The offerer may indicate that it wishes to send variable bit rate
-   frames with comfort noise:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtmap:97 speex/8000
-      a=fmtp:97 vbr=on;cng=on
-
-   The "ptime" attribute is used to denote the packetization interval
-   (ie, how many milliseconds of audio is encoded in a single RTP
-   packet).  Since Speex uses 20 msec frames, ptime values of multiples
-   of 20 denote multiple Speex frames per packet.  Values of ptime which
-   are not multiples of 20 MUST be ignored and clients MUST use the
-   default value of 20 instead.
-
-   In the example below the ptime value is set to 40, indicating that
-   there are 2 frames in each packet.
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=ptime:40
-
-   Note that the ptime parameter applies to all payloads listed in the
-   media line and is not used as part of an a=fmtp directive.
-
-   Values of ptime not multiple of 20 msec are meaningless, so the
-   receiver of such ptime values MUST ignore them.  If during the life
-   of an RTP session the ptime value changes, when there are multiple
-   Speex frames for example, the SDP value must also reflect the new
-   value.
-
-   Care must be taken when setting the value of ptime so that the RTP
-   packet size does not exceed the path MTU.
-
-10.  ITU H.323/H.245 Use of Speex
-
-   Application is underway to make Speex a standard ITU codec.  However,
-   until that is finalized, Speex MAY be used in H.323 [5] by using a
-   non-standard codec block definition in the H.245 [6] codec capability
-   negotiations.
-
-11.  NonStandardMessage format
-
-   For Speex use in H.245 [6] based systems, the fields in the
-   NonStandardMessage should be:
-
-
-
-
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-      t35CountryCode   = Hex: B5
-      t35Extension     = Hex: 00
-      manufacturerCode = Hex: 0026
-      [Length of the Binary Sequence (8 bit number)]
-      [Binary Sequence consisting of an ASCII string, no NULL
-      terminator]
-
-   The binary sequence is an ascii string merely for ease of use.  The
-   string is not null terminated.  The format of this string is
-
-      speex [optional variables]
-
-   The optional variables are identical to those used for the SDP a=fmtp
-   strings discussed in section 5 above.  The string is built to be all
-   on one line, each key-value pair separated by a semi-colon.  The
-   optional variables MAY be omitted, which causes the default values to
-   be assumed.  They are:
-
-      ebw=narrow;mode=3;vbr=off;cng=off;ptime=20;sr=8000;penh=no;
-
-   The fifth octet of the block is the length of the binary sequence.
-
-   NOTE:  this method can result in the advertising of a large number of
-   Speex 'codecs' based on the number of variables possible.  For most
-   VoIP applications, use of the default binary sequence of 'speex' is
-   RECOMMENDED to be used in addition to all other options.  This
-   maximizes the chances that two H.323 based applications that support
-   Speex can find a mutual codec.
-
-12.  RTP Payload Types
-
-   Dynamic payload type codes MUST be negotiated 'out-of-band' for the
-   assignment of a dynamic payload type from the range of 96-127.  H.323
-   applications MUST use the H.245 H2250LogicalChannelParameters
-   encoding to accomplish this.
-
-13.  Security Considerations
-
-   RTP packets using the payload format defined in this specification
-   are subject to the security considerations discussed in the RTP
-   specification [2], and any appropriate RTP profile.  This implies
-   that confidentiality of the media streams is achieved by encryption.
-   Because the data compression used with this payload format is applied
-   end-to-end, encryption may be performed after compression so there is
-   no conflict between the two operations.
-
-   A potential denial-of-service threat exists for data encodings using
-   compression techniques that have non-uniform receiver-end
-
-
-
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-   computational load.  The attacker can inject pathological datagrams
-   into the stream which are complex to decode and cause the receiver to
-   be overloaded.  However, this encoding does not exhibit any
-   significant non-uniformity.
-
-   As with any IP-based protocol, in some circumstances a receiver may
-   be overloaded simply by the receipt of too many packets, either
-   desired or undesired.  Network-layer authentication may be used to
-   discard packets from undesired sources, but the processing cost of
-   the authentication itself may be too high.
-
-14.  Acknowledgments
-
-   The authors would like to thank Equivalence Pty Ltd of Australia for
-   their assistance in attempting to standardize the use of Speex in
-   H.323 applications, and for implementing Speex in their open source
-   OpenH323 stack.  The authors would also like to thank Brian C.  Wiles
-   <[email protected]> of StreamComm for his assistance in developing
-   the proposed standard for Speex use in H.323 applications.
-
-   The authors would also like to thank the following members of the
-   Speex and AVT communities for their input:  Ross Finlayson, Federico
-   Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund.
-
-15.  References
-
-15.1  Normative References
-
-   [1]  Bradner, S., "Key words for use in RFCs to Indicate Requirement
-        Levels", RFC 2119.
-
-   [2]  Schulzrinne, H., Casner, S., Frederick, R. and V. Jacobson,
-        "RTP: A Transport Protocol for real-time applications", RFC
-        3550.
-
-   [3]  "Multipurpose Internet Mail Extensions (MIME) Part One: Format
-        of Internet Message Bodies", RFC 2045.
-
-   [4]  Jacobson, V. and M. Handley, "SDP: Session Description
-        Protocol", RFC 2327.
-
-   [5]  "Packet-based Multimedia Communications Systems", ITU-T
-        Recommendation H.323.
-
-   [6]  "Control of communications between Visual Telephone Systems and
-        Terminal Equipment", ITU-T Recommendation H.245.
-
-   [7]  Schulzrinne, H. and S. Casner, "RTP Profile for Audio and Video
-
-
-
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-        Conferences with Minimal Control.", RFC 3551.
-
-   [8]  Walleij, L., "The application/ogg Media Type", RFC 3534.
-
-15.2  Informative References
-
-   [9]   "Speexenc/speexdec, reference command-line encoder/decoder",
-         Speex website http://www.speex.org/.
-
-   [10]  "CELP, U.S. Federal Standard 1016.", National Technical
-         Information Service (NTIS) website http://www.ntis.gov/.
-
-
-Authors' Addresses
-
-   Greg Herlein
-   2034 Filbert Street
-   San Francisco, California  94123
-   United States
-
-   EMail: [email protected]
-
-
-   Simon Morlat
-   35, av de Vizille App 42
-   Grenoble  38000
-   France
-
-   EMail: [email protected]
-
-
-   Jean-Marc Valin
-   Department of Electrical and Computer Engineering
-   University of Sherbrooke
-   2500 blvd Universite
-   Sherbrooke, Quebec  J1K 2R1
-   Canada
-
-   EMail: [email protected]
-
-
-   Roger Hardiman
-   49 Nettleton Road
-   Cheltenham, Gloucestershire  GL51 6NR
-   England
-
-   EMail: [email protected]
-
-
-
-
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-   Phil Kerr
-   England
-
-   EMail: [email protected]
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-Intellectual Property Statement
-
-   The IETF takes no position regarding the validity or scope of any
-   Intellectual Property Rights or other rights that might be claimed to
-   pertain to the implementation or use of the technology described in
-   this document or the extent to which any license under such rights
-   might or might not be available; nor does it represent that it has
-   made any independent effort to identify any such rights.  Information
-   on the procedures with respect to rights in RFC documents can be
-   found in BCP 78 and BCP 79.
-
-   Copies of IPR disclosures made to the IETF Secretariat and any
-   assurances of licenses to be made available, or the result of an
-   attempt made to obtain a general license or permission for the use of
-   such proprietary rights by implementers or users of this
-   specification can be obtained from the IETF on-line IPR repository at
-   http://www.ietf.org/ipr.
-
-   The IETF invites any interested party to bring to its attention any
-   copyrights, patents or patent applications, or other proprietary
-   rights that may cover technology that may be required to implement
-   this standard.  Please address the information to the IETF at
-   [email protected].
-
-
-Disclaimer of Validity
-
-   This document and the information contained herein are provided on an
-   "AS IS" basis and THE CONTRIBUTOR, THE ORGANIZATION HE/SHE REPRESENTS
-   OR IS SPONSORED BY (IF ANY), THE INTERNET SOCIETY AND THE INTERNET
-   ENGINEERING TASK FORCE DISCLAIM ALL WARRANTIES, EXPRESS OR IMPLIED,
-   INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE
-   INFORMATION HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED
-   WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
-
-
-Copyright Statement
-
-   Copyright (C) The Internet Society (2005).  This document is subject
-   to the rights, licenses and restrictions contained in BCP 78, and
-   except as set forth therein, the authors retain all their rights.
-
-
-Acknowledgment
-
-   Funding for the RFC Editor function is currently provided by the
-   Internet Society.
-
-
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-AVT Working Group                                             G. Herlein
-Internet-Draft                                                 S. Morlat
-Expires: July 2, 2005                                       J. Jean-Marc
-                                                             R. Hardiman
-                                                                 P. Kerr
-                                                        January 01, 2005
-
-
-                   draft-herlein-speex-rtp-profile-03
-                 RTP Payload Format for the Speex Codec
-
-Status of this Memo
-
-   This document is an Internet-Draft and is subject to all provisions
-   of section 3 of RFC 3667.  By submitting this Internet-Draft, each
-   author represents that any applicable patent or other IPR claims of
-   which he or she is aware have been or will be disclosed, and any of
-   which he or she become aware will be disclosed, in accordance with
-   RFC 3668.
-
-   Internet-Drafts are working documents of the Internet Engineering
-   Task Force (IETF), its areas, and its working groups.  Note that
-   other groups may also distribute working documents as
-   Internet-Drafts.
-
-   Internet-Drafts are draft documents valid for a maximum of six months
-   and may be updated, replaced, or obsoleted by other documents at any
-   time.  It is inappropriate to use Internet-Drafts as reference
-   material or to cite them other than as "work in progress."
-
-   The list of current Internet-Drafts can be accessed at
-   http://www.ietf.org/ietf/1id-abstracts.txt.
-
-   The list of Internet-Draft Shadow Directories can be accessed at
-   http://www.ietf.org/shadow.html.
-
-   This Internet-Draft will expire on July 2, 2005.
-
-Copyright Notice
-
-   Copyright (C) The Internet Society (2005).
-
-Abstract
-
-   Speex is an open-source voice codec suitable for use in Voice over IP
-   (VoIP) type applications.  This document describes the payload format
-   for Speex generated bit streams within an RTP packet.  Also included
-   here are the necessary details for the use of Speex with the Session
-   Description Protocol (SDP) and a preliminary method of using Speex
-
-
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-   within H.323 applications.
-
-Table of Contents
-
-   1.   Conventions used in this document  . . . . . . . . . . . . .   3
-   2.   Overview of the Speex Codec  . . . . . . . . . . . . . . . .   4
-   3.   RTP payload format for Speex . . . . . . . . . . . . . . . .   5
-   4.   RTP Header . . . . . . . . . . . . . . . . . . . . . . . . .   6
-   5.   Speex payload  . . . . . . . . . . . . . . . . . . . . . . .   8
-   6.   Example Speex packet . . . . . . . . . . . . . . . . . . . .   9
-   7.   Multiple Speex frames in a RTP packet  . . . . . . . . . . .  10
-   8.   MIME registration of Speex . . . . . . . . . . . . . . . . .  11
-   9.   SDP usage of Speex . . . . . . . . . . . . . . . . . . . . .  12
-   10.  ITU H.323/H.245 Use of Speex . . . . . . . . . . . . . . . .  15
-   11.  NonStandardMessage format  . . . . . . . . . . . . . . . . .  16
-   12.  RTP Payload Types  . . . . . . . . . . . . . . . . . . . . .  17
-   13.  Security Considerations  . . . . . . . . . . . . . . . . . .  18
-   14.  Acknowledgments  . . . . . . . . . . . . . . . . . . . . . .  19
-   15.  References . . . . . . . . . . . . . . . . . . . . . . . . .  20
-   15.1   Normative References . . . . . . . . . . . . . . . . . . .  20
-   15.2   Informative References . . . . . . . . . . . . . . . . . .  20
-        Authors' Addresses . . . . . . . . . . . . . . . . . . . . .  20
-        Intellectual Property and Copyright Statements . . . . . . .  22
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-
-1.  Conventions used in this document
-
-   The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-   "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-   document are to be interpreted as described in RFC 2119 [1].
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-2.  Overview of the Speex Codec
-
-   Speex is based on the CELP [10] encoding technique with support for
-   either narrowband (nominal 8kHz), wideband (nominal 16kHz) or
-   ultra-wideband (nominal 32kHz), and (non-optimal) rates up to 48 kHz
-   sampling also available.  The main characteristics can be summarized
-   as follows:
-
-   o  Free software/open-source
-   o  Integration of wideband and narrowband in the same bit-stream
-   o  Wide range of bit-rates available
-   o  Dynamic bit-rate switching and variable bit-rate (VBR)
-   o  Voice Activity Detection (VAD, integrated with VBR)
-   o  Variable complexity
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-3.  RTP payload format for Speex
-
-   For RTP based transportation of Speex encoded audio the standard RTP
-   header [2] is followed by one or more payload data blocks.  An
-   optional padding terminator may also be used.
-
-         0                   1                   2                   3
-         0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |                         RTP Header                            |
-        +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-        |                 one or more frames of Speex ....              |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |        one or more frames of Speex ....       |    padding    |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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-4.  RTP Header
-
-         0                   1                   2                   3
-         0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |                           timestamp                           |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-        |           synchronization source (SSRC) identifier            |
-        +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-        |            contributing source (CSRC) identifiers             |
-        |                              ...                              |
-        +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-   The RTP header begins with an octet of fields (V, P, X, and CC) to
-   support specialized RTP uses (see [2] and [7] for details).  For
-   Speex the following values are used.
-
-   Version (V): 2 bits
-
-   This field identifies the version of RTP.  The version used by this
-   specification is two [2].
-
-   Padding (P): 1 bit
-
-   If the padding bit is set, the packet contains one or more additional
-   padding octets at the end which are not part of the payload.  P is
-   set if the total packet size is less than the MTU.
-
-   Extension (X): 1 bit
-
-   If the extension, X, bit is set, the fixed header MUST be followed by
-   exactly one header extension, with a format defined in Section 5.3.1.
-   of [2].
-
-   CSRC count (CC): 4 bits
-
-   The CSRC count contains the number of CSRC identifiers.
-
-   Marker (M): 1 bit
-
-   The M bit indicates if the packet contains comfort noise.  This field
-   is used in conjunction with the cng SDP attribute and is detailed
-   further in section 5 below.  In normal usage this bit is set if the
-   packet contains comfort noise.
-
-   Payload Type (PT): 7 bits
-
-
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-   An RTP profile for a class of applications is expected to assign a
-   payload type for this format, or a dynamically allocated payload type
-   SHOULD be chosen which designates the payload as Speex.
-
-   Sequence number: 16 bits
-
-   The sequence number increments by one for each RTP data packet sent,
-   and may be used by the receiver to detect packet loss and to restore
-   packet sequence.  This field is detailed further in [2].
-
-   Timestamp: 32 bits
-
-   A timestamp representing the sampling time of the first sample of the
-   first Speex packet in the RTP packet.  The clock frequency MUST be
-   set to the sample rate of the encoded audio data.  Speex uses 20 msec
-   frames and a variable sampling rate clock.  The RTP timestamp MUST be
-   in units of 1/X of a second where X is the sample rate used.  Speex
-   uses a nominal 8kHz sampling rate for narrowband use, a nominal 16kHz
-   sampling rate for wideband use, and a nominal 32kHz sampling rate for
-   ultra-wideband use.
-
-   SSRC/CSRC identifiers:
-
-   These two fields, 32 bits each with one SSRC field and a maximum of
-   16 CSRC fields, are as defined in [2].
-
-
-
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-
-
-5.  Speex payload
-
-   For the purposes of packetizing the bit stream in RTP, it is only
-   necessary to consider the sequence of bits as output by the Speex
-   encoder [9], and present the same sequence to the decoder.  The
-   payload format described here maintains this sequence.
-
-   A typical Speex frame, encoded at the maximum bitrate, is approx.
-   110 octets and the total number of Speex frames SHOULD be kept less
-   than the path MTU to prevent fragmentation.  Speex frames MUST NOT be
-   fragmented across multiple RTP packets,
-
-   An RTP packet MAY contain Speex frames of the same bit rate or of
-   varying bit rates, since the bit-rate for a frame is conveyed in band
-   with the signal.
-
-   The encoding and decoding algorithm can change the bit rate at any 20
-   msec frame boundary, with the bit rate change notification provided
-   in-band with the bit stream.  Each frame contains both "mode"
-   (narrowband, wideband or ultra-wideband) and "sub-mode" (bit-rate)
-   information in the bit stream.  No out-of-band notification is
-   required for the decoder to process changes in the bit rate sent by
-   the encoder.
-
-   It is RECOMMENDED that values of 8000, 16000 and 32000 be used for
-   normal internet telephony applications, though the sample rate is
-   supported at rates as low as 6000 Hz and as high as 48 kHz.
-
-   The RTP payload MUST be padded to provide an integer number of octets
-   as the payload length.  These padding bits are LSB aligned in network
-   octet order and consist of a 0 followed by all ones (until the end of
-   the octet).  This padding is only required for the last frame in the
-   packet, and only to ensure the packet contents ends on an octet
-   boundary.
-
-
-
-
-
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-Internet-Draft     draft-herlein-speex-rtp-profile-03       January 2005
-
-
-6.  Example Speex packet
-
-   In the example below we have a single Speex frame with 5 bits of
-   padding to ensure the packet size falls on an octet boundary.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                           timestamp                           |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |         synchronization source (SSRC) identifier              |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |         contributing source (CSRC) identifiers                |
-      |                              ...                              |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..               |0 1 1 1 1|
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
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-
-7.  Multiple Speex frames in a RTP packet
-
-   Below is an example of two Speex frames contained within one RTP
-   packet.  The Speex frame length in this example fall on an octet
-   boundary so there is no padding.
-
-   Speex codecs [9] are able to detect the the bitrate from the payload
-   and are responsible for detecting the 20 msec boundaries between each
-   frame.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                           timestamp                           |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |         synchronization source (SSRC) identifier              |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |         contributing source (CSRC) identifiers                |
-      |                              ...                              |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |        ..speex data..         |        ..speex data..         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
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-
-
-8.  MIME registration of Speex
-
-   Full definition of the MIME [3] type for Speex will be part of the
-   Ogg Vorbis MIME type definition application [8].
-
-   MIME media type name: audio
-
-   MIME subtype: speex
-
-   Optional parameters:
-
-   Required parameters: to be included in the Ogg MIME specification.
-
-   Encoding considerations:
-
-   Security Considerations:
-
-   See Section 6 of RFC 3047.
-
-   Interoperability considerations: none
-
-   Published specification:
-
-   Applications which use this media type:
-
-   Additional information: none
-
-   Person & email address to contact for further information:
-
-      Greg Herlein <[email protected]>
-      Jean-Marc Valin <[email protected]>
-
-   Intended usage: COMMON
-
-   Author/Change controller:
-
-      Author:  Greg Herlein <[email protected]>
-      Change controller: Greg Herlein <[email protected]>
-      Change controller: IETF AVT Working Group
-
-   This transport type signifies that the content is to be interpreted
-   according to this document if the contents are transmitted over RTP.
-   Should this transport type appear over a lossless streaming protocol
-   such as TCP, the content encapsulation should be interpreted as an
-   Ogg Stream in accordance with [8], with the exception that the
-   content of the Ogg Stream may be assumed to be Speex audio and Speex
-   audio only.
-
-
-
-
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-
-
-9.  SDP usage of Speex
-
-   When conveying information by SDP [4], the encoding name MUST be set
-   to "speex".  An example of the media representation in SDP for
-   offering a single channel of Speex at 8000 samples per second might
-   be:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-
-   Note that the RTP payload type code of 97 is defined in this media
-   definition to be 'mapped' to the speex codec at an 8kHz sampling
-   frequency using the 'a=rtpmap' line.  Any number from 96 to 127 could
-   have been chosen (the allowed range for dynamic types).
-
-   The value of the sampling frequency is typically 8000 for narrow band
-   operation, 16000 for wide band operation, and 32000 for ultra-wide
-   band operation.
-
-   If for some reason the offerer has bandwidth limitations, the client
-   may use the "b=" header, as explained in SDP [4].  The following
-   example illustrates the case where the offerer cannot receive more
-   than 10 kbit/s.
-
-      m=audio 8088 RTP/AVP 97
-      b=AS:10
-      a=rtmap:97 speex/8000
-
-   In this case, if the remote part agrees, it should configure its
-   Speex encoder so that it does not use modes that produce more than 10
-   kbit/s.  Note that the "b=" constraint also applies on all payload
-   types that may be proposed in the media line ("m=").
-
-   An other way to make recommendations to the remote Speex encoder is
-   to use its specific parameters via the a=fmtp: directive.  The
-   following parameters are defined for use in this way:
-
-      ptime: duration of each packet in milliseconds.
-
-      sr:    actual sample rate in Hz.
-
-      ebw:   encoding bandwidth - either 'narrow' or 'wide' or 'ultra'
-      (corresponds to nominal 8000, 16000, and 32000 Hz sampling rates).
-
-      vbr:   variable bit rate  - either 'on' 'off' or 'vad' (defaults
-      to off).  If on, variable bit rate is enabled.  If off, disabled.
-      If set to 'vad' then constant bit rate is used but silence will be
-      encoded with special short frames to indicate a lack of voice for
-
-
-
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-
-
-      that period.
-
-      cng:   comfort noise generation - either 'on' or 'off'.  If off
-      then silence frames will be silent; if 'on' then those frames will
-      be filled with comfort noise.
-
-      mode:  Speex encoding mode.  Can be {1,2,3,4,5,6,any} defaults to
-      3 in narrowband, 6 in wide and ultra-wide.
-
-      penh:	use of perceptual enhancement.  1 indicates to the decoder
-      that perceptual enhancement is recommended, 0 indicates that it is
-      not.  Defaults to on (1).
-
-
-   Examples:
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=fmtp:97 mode=4
-
-   This examples illustrate an offerer that wishes to receive a Speex
-   stream at 8000Hz, but only using speex mode 3.
-
-   The offerer may suggest to the remote decoder to activate its
-   perceptual enhancement filter like this:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtmap:97 speex/8000
-      a=fmtp:97 penh=1
-
-   Several Speex specific parameters can be given in a single a=fmtp
-   line provided that they are separated by a semi-colon:
-
-      a=fmtp:97 mode=any;penh=1
-
-   The offerer may indicate that it wishes to send variable bit rate
-   frames with comfort noise:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtmap:97 speex/8000
-      a=fmtp:97 vbr=on;cng=on
-
-   The "ptime" attribute is used to denote the packetization interval
-   (ie, how many milliseconds of audio is encoded in a single RTP
-   packet).  Since Speex uses 20 msec frames, ptime values of multiples
-   of 20 denote multiple Speex frames per packet.  Values of ptime which
-   are not multiples of 20 MUST be ignored and clients MUST use the
-   default value of 20 instead.
-
-
-
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-
-
-   In the example below the ptime value is set to 40, indicating that
-   there are 2 frames in each packet.
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=ptime:40
-
-   Note that the ptime parameter applies to all payloads listed in the
-   media line and is not used as part of an a=fmtp directive.
-
-   Values of ptime not multiple of 20 msec are meaningless, so the
-   receiver of such ptime values MUST ignore them.  If during the life
-   of an RTP session the ptime value changes, when there are multiple
-   Speex frames for example, the SDP value must also reflect the new
-   value.
-
-   Care must be taken when setting the value of ptime so that the RTP
-   packet size does not exceed the path MTU.
-
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-
-
-10.  ITU H.323/H.245 Use of Speex
-
-   Application is underway to make Speex a standard ITU codec.  However,
-   until that is finalized, Speex MAY be used in H.323 [5] by using a
-   non-standard codec block definition in the H.245 [6] codec capability
-   negotiations.
-
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-
-
-11.  NonStandardMessage format
-
-   For Speex use in H.245 [6] based systems, the fields in the
-   NonStandardMessage should be:
-
-      t35CountryCode   = Hex: B5
-      t35Extension     = Hex: 00
-      manufacturerCode = Hex: 0026
-      [Length of the Binary Sequence (8 bit number)]
-      [Binary Sequence consisting of an ASCII string, no NULL
-      terminator]
-
-   The binary sequence is an ascii string merely for ease of use.  The
-   string is not null terminated.  The format of this string is
-
-      speex [optional variables]
-
-   The optional variables are identical to those used for the SDP a=fmtp
-   strings discussed in section 5 above.  The string is built to be all
-   on one line, each key-value pair separated by a semi-colon.  The
-   optional variables MAY be omitted, which causes the default values to
-   be assumed.  They are:
-
-      ebw=narrow;mode=3;vbr=off;cng=off;ptime=20;sr=8000;penh=no;
-
-   The fifth octet of the block is the length of the binary sequence.
-
-   NOTE:  this method can result in the advertising of a large number of
-   Speex 'codecs' based on the number of variables possible.  For most
-   VoIP applications, use of the default binary sequence of 'speex' is
-   RECOMMENDED to be used in addition to all other options.  This
-   maximizes the chances that two H.323 based applications that support
-   Speex can find a mutual codec.
-
-
-
-
-
-
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-
-
-12.  RTP Payload Types
-
-   Dynamic payload type codes MUST be negotiated 'out-of-band' for the
-   assignment of a dynamic payload type from the range of 96-127.  H.323
-   applications MUST use the H.245 H2250LogicalChannelParameters
-   encoding to accomplish this.
-
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-
-
-13.  Security Considerations
-
-   RTP packets using the payload format defined in this specification
-   are subject to the security considerations discussed in the RTP
-   specification [2], and any appropriate RTP profile.  This implies
-   that confidentiality of the media streams is achieved by encryption.
-   Because the data compression used with this payload format is applied
-   end-to-end, encryption may be performed after compression so there is
-   no conflict between the two operations.
-
-   A potential denial-of-service threat exists for data encodings using
-   compression techniques that have non-uniform receiver-end
-   computational load.  The attacker can inject pathological datagrams
-   into the stream which are complex to decode and cause the receiver to
-   be overloaded.  However, this encoding does not exhibit any
-   significant non-uniformity.
-
-   As with any IP-based protocol, in some circumstances a receiver may
-   be overloaded simply by the receipt of too many packets, either
-   desired or undesired.  Network-layer authentication may be used to
-   discard packets from undesired sources, but the processing cost of
-   the authentication itself may be too high.
-
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-
-14.  Acknowledgments
-
-   The authors would like to thank Equivalence Pty Ltd of Australia for
-   their assistance in attempting to standardize the use of Speex in
-   H.323 applications, and for implementing Speex in their open source
-   OpenH323 stack.  The authors would also like to thank Brian C.  Wiles
-   <[email protected]> of StreamComm for his assistance in developing
-   the proposed standard for Speex use in H.323 applications.
-
-   The authors would also like to thank the following members of the
-   Speex and AVT communities for their input:  Ross Finlayson, Federico
-   Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund.
-
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-
-
-15.  References
-
-15.1  Normative References
-
-   [1]  Bradner, S., "Key words for use in RFCs to Indicate Requirement
-        Levels", RFC 2119.
-
-   [2]  Schulzrinne, H., Casner, S., Frederick, R. and V. Jacobson,
-        "RTP: A Transport Protocol for real-time applications", RFC
-        3550.
-
-   [3]  "Multipurpose Internet Mail Extensions (MIME) Part One: Format
-        of Internet Message Bodies", RFC 2045.
-
-   [4]  Jacobson, V. and M. Handley, "SDP: Session Description
-        Protocol", RFC 2327.
-
-   [5]  "Packet-based Multimedia Communications Systems", ITU-T
-        Recommendation H.323.
-
-   [6]  "Control of communications between Visual Telephone Systems and
-        Terminal Equipment", ITU-T Recommendation H.245.
-
-   [7]  Schulzrinne, H. and S. Casner, "RTP Profile for Audio and Video
-        Conferences with Minimal Control.", RFC 3551.
-
-   [8]  Walleij, L., "The application/ogg Media Type", RFC 3534.
-
-15.2  Informative References
-
-   [9]   "Speexenc/speexdec, reference command-line encoder/decoder",
-         Speex website http://www.speex.org/.
-
-   [10]  "CELP, U.S. Federal Standard 1016.", National Technical
-         Information Service (NTIS) website http://www.ntis.gov/.
-
-
-Authors' Addresses
-
-   Greg Herlein
-   2034 Filbert Street
-   San Francisco, California  94123
-   United States
-
-   EMail: [email protected]
-
-
-
-
-
-
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-
-
-   Simon Morlat
-   35, av de Vizille App 42
-   Grenoble  38000
-   France
-
-   EMail: [email protected]
-
-
-   Jean-Marc Valin
-   Department of Electrical and Computer Engineering
-   University of Sherbrooke
-   2500 blvd Universite
-   Sherbrooke, Quebec  J1K 2R1
-   Canada
-
-   EMail: [email protected]
-
-
-   Roger Hardiman
-   49 Nettleton Road
-   Cheltenham, Gloucestershire  GL51 6NR
-   England
-
-   EMail: [email protected]
-
-
-   Phil Kerr
-   England
-
-   EMail: [email protected]
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-
-Intellectual Property Statement
-
-   The IETF takes no position regarding the validity or scope of any
-   Intellectual Property Rights or other rights that might be claimed to
-   pertain to the implementation or use of the technology described in
-   this document or the extent to which any license under such rights
-   might or might not be available; nor does it represent that it has
-   made any independent effort to identify any such rights.  Information
-   on the procedures with respect to rights in RFC documents can be
-   found in BCP 78 and BCP 79.
-
-   Copies of IPR disclosures made to the IETF Secretariat and any
-   assurances of licenses to be made available, or the result of an
-   attempt made to obtain a general license or permission for the use of
-   such proprietary rights by implementers or users of this
-   specification can be obtained from the IETF on-line IPR repository at
-   http://www.ietf.org/ipr.
-
-   The IETF invites any interested party to bring to its attention any
-   copyrights, patents or patent applications, or other proprietary
-   rights that may cover technology that may be required to implement
-   this standard.  Please address the information to the IETF at
-   [email protected].
-
-
-Disclaimer of Validity
-
-   This document and the information contained herein are provided on an
-   "AS IS" basis and THE CONTRIBUTOR, THE ORGANIZATION HE/SHE REPRESENTS
-   OR IS SPONSORED BY (IF ANY), THE INTERNET SOCIETY AND THE INTERNET
-   ENGINEERING TASK FORCE DISCLAIM ALL WARRANTIES, EXPRESS OR IMPLIED,
-   INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE
-   INFORMATION HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED
-   WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
-
-
-Copyright Statement
-
-   Copyright (C) The Internet Society (2005).  This document is subject
-   to the rights, licenses and restrictions contained in BCP 78, and
-   except as set forth therein, the authors retain all their rights.
-
-
-Acknowledgment
-
-   Funding for the RFC Editor function is currently provided by the
-   Internet Society.
-
-
-
-
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-

+ 0 - 815
Engine/lib/speex/doc/draft-herlein-speex-rtp-profile-03.xml

@@ -1,815 +0,0 @@
-<?xml version='1.0'?>
-<!DOCTYPE rfc SYSTEM 'rfc2629.dtd'>
-<?rfc toc="yes" ?>
-
-<rfc ipr="full3667" docName="RTP Payload Format for the Speex Codec">
-
-<front>
-<title>draft-herlein-speex-rtp-profile-03</title>
-
-<author initials="G" surname="Herlein" fullname="Greg Herlein">
-<organization></organization>
-<address>
-<email>[email protected]</email>
-<postal>
-<street>2034 Filbert Street</street>
-<city>San Francisco</city> 
-<region>California</region>
-<code>94123</code>
-<country>United States</country> 
-</postal>
-</address>
-</author>
-
-<author initials="S" surname="Morlat" fullname="Simon Morlat">
-<address>
-<email>[email protected]</email>
-<postal>
-<street>35, av de Vizille App 42</street>
-<city>Grenoble</city>
-<code>38000</code>
-<country>France</country>
-</postal>
-</address>
-</author>
-
-<author initials="J" surname="Jean-Marc" fullname="Jean-Marc Valin">
-<address>
-<email>[email protected]</email>
-<postal>
-<street>Department of Electrical and Computer Engineering</street>
-<street>University of Sherbrooke</street>
-<street>2500 blvd Universite</street>
-<city>Sherbrooke</city>
-<region>Quebec</region>
-<code>J1K 2R1</code>
-<country>Canada</country>
-</postal>
-</address>
-</author>
-
-<author initials="R" surname="Hardiman" fullname="Roger Hardiman">
-<address>
-<email>[email protected]</email>
-<postal>
-<street>49 Nettleton Road</street>
-<city>Cheltenham</city>
-<region>Gloucestershire</region>
-<code>GL51 6NR</code>
-<country>England</country>
-</postal>
-</address>
-</author>
-
-
-<author initials="P" surname="Kerr" fullname="Phil Kerr">
-<address>
-<email>[email protected]</email>
-<postal>
-<country>England</country>
-</postal>
-</address>
-</author>
-
-<date day="01" month="January" year="2005" />
-
-<area>General</area>
-<workgroup>AVT Working Group</workgroup>
-<keyword>I-D</keyword>
-
-<keyword>Internet-Draft</keyword>
-<keyword>Speex</keyword>
-<keyword>RTP</keyword>
-<abstract>
-<t>
-Speex is an open-source voice codec suitable for use in Voice over
-IP (VoIP) type applications.  This document describes the payload
-format for Speex generated bit streams within an RTP packet.  Also
-included here are the necessary details for the use of Speex with
-the Session Description Protocol (SDP) and a preliminary method of
-using Speex within H.323 applications.
-</t>
-</abstract>
-</front>
-
-<middle>
-
-<section anchor="Conventions used in this document" title="Conventions used in this document">
-<t>
-The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-"SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-document are to be interpreted as described in RFC 2119 <xref target="rfc2119"></xref>.
-</t>
-</section>
-
-<section anchor="Overview of the Speex Codec" title="Overview of the Speex Codec">
-
-<t>
-Speex is based on the CELP <xref target="CELP"></xref> encoding technique with support for 
-either narrowband (nominal 8kHz), wideband (nominal 16kHz) or 
-ultra-wideband (nominal 32kHz), and (non-optimal) rates up to 48 kHz 
-sampling also available.  The main characteristics can be summarized 
-as follows:
-</t>
-
-<t>
-<list style="symbols">
-<t>Free software/open-source</t>
-<t>Integration of wideband and narrowband in the same bit-stream</t>
-<t>Wide range of bit-rates available</t>
-<t>Dynamic bit-rate switching and variable bit-rate (VBR)</t>
-<t>Voice Activity Detection (VAD, integrated with VBR)</t>
-<t>Variable complexity</t>
-</list>
-</t>
-
-</section>
-
-<section anchor="RTP payload format for Speex" title="RTP payload format for Speex">
-
-<t>
-For RTP based transportation of Speex encoded audio the standard 
-RTP header [2] is followed by one or more payload data blocks. 
-An optional padding terminator may also be used. 
-</t>
-<artwork><![CDATA[
-      0                   1                   2                   3
-      0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |                         RTP Header                            |
-     +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-     |                 one or more frames of Speex ....              |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |        one or more frames of Speex ....       |    padding    |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-]]></artwork>
-
-</section>
-
-<section anchor="RTP Header" title="RTP Header">
-
-<artwork><![CDATA[
-      0                   1                   2                   3
-      0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |                           timestamp                           |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-     |           synchronization source (SSRC) identifier            |
-     +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-     |            contributing source (CSRC) identifiers             |
-     |                              ...                              |
-     +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-]]></artwork>
-
-<t>
-The RTP header begins with an octet of fields (V, P, X, and CC) to   
-support specialized RTP uses (see <xref target="rfc3550"></xref> and <xref target="rfc3551"></xref> for details). For 
-Speex the following values are used.
-</t>
-
-<t>Version (V): 2 bits</t><t>
-   This field identifies the version of RTP. The version
-   used by this specification is two <xref target="rfc3550"></xref>.
-</t>
-
-<t>Padding (P): 1 bit</t><t>
-      If the padding bit is set, the packet contains one or more
-      additional padding octets at the end which are not part of
-      the payload.  P is set if the total packet size is less than 
-      the MTU.  
-</t>
-
-<t>Extension (X): 1 bit</t><t>
-      If the extension, X, bit is set, the fixed header MUST be 
-      followed by exactly one header extension, with a format defined 
-      in Section 5.3.1. of <xref target="rfc3550"></xref>. 
-</t>
-
-<t>CSRC count (CC): 4 bits</t><t>
-      The CSRC count contains the number of CSRC identifiers.
-</t>
-
-<t>Marker (M): 1 bit</t><t>
-      The M bit indicates if the packet contains comfort noise.  This 
-      field is used in conjunction with the cng SDP attribute and is 
-      detailed further in section 5 below.  In normal usage this bit 
-      is set if the packet contains comfort noise.
-</t>
-
-<t>Payload Type (PT): 7 bits</t><t>
-      An RTP profile for a class of applications is expected to assign 
-      a payload type for this format, or a dynamically allocated 
-      payload type SHOULD be chosen which designates the payload as 
-      Speex.
-</t>
-
-<t>Sequence number: 16 bits</t><t>
-      The sequence number increments by one for each RTP data packet
-      sent, and may be used by the receiver to detect packet loss and
-      to restore packet sequence.  This field is detailed further in
-      <xref target="rfc3550"></xref>.
-</t>
-
-<t>Timestamp: 32 bits</t><t>
-      A timestamp representing the sampling time of the first sample of
-      the first Speex packet in the RTP packet.  The clock frequency 
-      MUST be set to the sample rate of the encoded audio data.
-
-      Speex uses 20 msec frames and a variable sampling rate clock.  
-      The RTP timestamp MUST be in units of 1/X of a second where X 
-      is the sample rate used.  Speex uses a nominal 8kHz sampling rate
-      for narrowband use, a nominal 16kHz sampling rate for wideband use, 
-      and a nominal 32kHz sampling rate for ultra-wideband use.
-</t>
-
-<t>SSRC/CSRC identifiers:</t><t>
-      These two fields, 32 bits each with one SSRC field and a maximum 
-      of 16 CSRC fields, are as defined in <xref target="rfc3550"></xref>.  
-</t>
-
-</section>
-
-<section anchor="Speex payload" title="Speex payload">
-
-<t>
-For the purposes of packetizing the bit stream in RTP, it is only
-necessary to consider the sequence of bits as output by the Speex
-encoder <xref target="speexenc"></xref>, and present the same sequence to the decoder.  The 
-payload format described here maintains this sequence.  
-</t>
-
-<t>
-A typical Speex frame, encoded at the maximum bitrate, is approx.
-110 octets and the total number of Speex frames SHOULD be kept 
-less than the path MTU to prevent fragmentation.  Speex frames MUST
-NOT be fragmented across multiple RTP packets,
-</t>
-
-<t>
-An RTP packet MAY contain Speex frames of the same bit rate or of
-varying bit rates, since the bit-rate for a frame is conveyed in
-band with the signal.
-</t>
-
-<t>
-The encoding and decoding algorithm can change the bit rate at any
-20 msec frame boundary, with the bit rate change notification provided
-in-band with the bit stream.  Each frame contains both "mode" 
-(narrowband, wideband or ultra-wideband) and "sub-mode" (bit-rate) 
-information in the bit stream.  No out-of-band notification is 
-required for the decoder to process changes in the bit rate sent 
-by the encoder.
-</t>
-
-<t>
-It is RECOMMENDED that values of 8000, 16000 and 32000 be used 
-for normal internet telephony applications, though the sample 
-rate is supported at rates as low as 6000 Hz and as high as 
-48 kHz.
-</t>
-
-<t>
-The RTP payload MUST be padded to provide an integer number of
-octets as the payload length.  These padding bits are LSB aligned
-in network octet order and consist of a 0 followed by all ones
-(until the end of the octet).  This padding is only required for
-the last frame in the packet, and only to ensure the packet
-contents ends on an octet boundary.
-</t>
-
-</section>
-
-<section anchor="Example Speex packet" title="Example Speex packet">
-
-<t>
-In the example below we have a single Speex frame with 5 bits
-of padding to ensure the packet size falls on an octet boundary.
-</t>
-
-<artwork><![CDATA[
-    0                   1                   2                   3
-    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                           timestamp                           |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |         synchronization source (SSRC) identifier              |
-   +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-
-    0                   1                   2                   3
-    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-   +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-   |         contributing source (CSRC) identifiers                |
-   |                              ...                              |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..                         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..               |0 1 1 1 1|
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-]]></artwork>
-
-</section>
-
-<section anchor="Multiple Speex frames in a RTP packet" title="Multiple Speex frames in a RTP packet">
-
-<t>
-Below is an example of two Speex frames contained within one RTP 
-packet.  The Speex frame length in this example fall on an octet
-boundary so there is no padding.
-</t>
-
-<t>
-Speex codecs <xref target="speexenc"></xref> are able to detect the the bitrate from the
-payload and are responsible for detecting the 20 msec boundaries
-between each frame.
-</t>
-
-<artwork><![CDATA[
-    0                   1                   2                   3
-    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                           timestamp                           |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |         synchronization source (SSRC) identifier              |
-   +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-   |         contributing source (CSRC) identifiers                |
-   |                              ...                              |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..                         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |        ..speex data..         |        ..speex data..         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-   |                        ..speex data..                         |
-   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-]]></artwork>
-
-</section>
-
-<section anchor="MIME registration of Speex" title="MIME registration of Speex">
-
-<t>
-Full definition of the MIME <xref target="rfc2045"></xref> type for Speex will be part of the Ogg
-Vorbis MIME type definition application <xref target="rfc3534"></xref>.  
-</t>
-
-<t>MIME media type name: audio</t>
-
-<t>MIME subtype: speex</t>
-
-<t>Optional parameters:</t>
-
-<t>Required parameters: to be included in the Ogg MIME specification.</t>
-
-<t>Encoding considerations:</t>
-
-<t>Security Considerations:</t>
-<t>See Section 6 of RFC 3047.</t>
-
-<t>Interoperability considerations: none</t>
-
-<t>Published specification:  </t>
-
-<t>Applications which use this media type:</t>
-
-<t>Additional information: none</t>
-
-<t>Person &amp; email address to contact for further information:<vspace blankLines="1" />
-<list style="empty">
-<t>Greg Herlein &lt;[email protected]&gt;</t>
-<t>Jean-Marc Valin &lt;[email protected]&gt;</t>
-</list>
-</t>
-
-<t>Intended usage: COMMON</t>
-
-<t>Author/Change controller:</t>
-
-<t>
-<list style="empty">
-<t>Author:  Greg Herlein &lt;[email protected]&gt;</t>
-<t>Change controller: Greg Herlein &lt;[email protected]&gt;</t>          
-<t>Change controller: IETF AVT Working Group</t>
-</list>
-</t>
-
-<t>
-This transport type signifies that the content is to be interpreted
-according to this document if the contents are transmitted over RTP. 
-Should this transport type appear over a lossless streaming protocol
-such as TCP, the content encapsulation should be interpreted as an 
-Ogg Stream in accordance with <xref target="rfc3534"></xref>, with the exception that the
-content of the Ogg Stream may be assumed to be Speex audio and 
-Speex audio only.
-</t>
-
-</section>
-
-<section anchor="SDP usage of Speex" title="SDP usage of Speex">
-
-<t>
-When conveying information by SDP <xref target="rfc2327"></xref>, the encoding name MUST be
-set to "speex".  An example of the media representation in SDP for
-offering a single channel of Speex at 8000 samples per second might
-be:
-</t>
-
-<vspace blankLines="1" />
-<list style="empty">
-<t>m=audio 8088 RTP/AVP 97</t>
-<t>a=rtpmap:97 speex/8000</t>
-</list>	
-
-<t>
-Note that the RTP payload type code of 97 is defined in this media
-definition to be 'mapped' to the speex codec at an 8kHz sampling
-frequency using the 'a=rtpmap' line.  Any number from 96 to 127
-could have been chosen (the allowed range for dynamic types).  
-</t>
-
-<t>
-The value of the sampling frequency is typically 8000 for narrow band
-operation, 16000 for wide band operation, and 32000 for ultra-wide
-band operation.
-</t>
-
-<t>
-If for some reason the offerer has bandwidth limitations, the client 
-may use the "b=" header, as explained in SDP <xref target="rfc2327"></xref>. The following example
-illustrates the case where the offerer cannot receive more than
-10 kbit/s.
-</t>
-
-<vspace blankLines="1" />
-<list style="empty">
-<t>m=audio 8088 RTP/AVP 97</t>
-<t>b=AS:10</t>
-<t>a=rtmap:97 speex/8000</t>
-</list>	
-
-<t>
-In this case, if the remote part agrees, it should configure its
-Speex encoder so that it does not use modes that produce more than
-10 kbit/s. Note that the "b=" constraint also applies on all
-payload types that may be proposed in the media line ("m=").
-</t>
-
-<t>
-An other way to make recommendations to the remote Speex encoder
-is to use its specific parameters via the a=fmtp: directive.  The
-following parameters are defined for use in this way:
-</t>
-
-<vspace blankLines="1" />
-<list style="empty">
-<t>ptime: duration of each packet in milliseconds.<vspace blankLines="1" /></t>
-
-<t>sr:    actual sample rate in Hz.<vspace blankLines="1" /></t>
-
-<t>ebw:   encoding bandwidth - either 'narrow' or 'wide' or 
-        'ultra' (corresponds to nominal 8000, 16000, and
-		32000 Hz sampling rates).<vspace blankLines="1" /></t>
-
-<t>vbr:   variable bit rate  - either 'on' 'off' or 'vad'
-		(defaults to off).  If on, variable bit rate is
-		enabled.  If off, disabled.  If set to 'vad' then
-		constant bit rate is used but silence will be encoded
-		with special short frames to indicate a lack of voice
-		for that period.<vspace blankLines="1" /></t>
-
-<t>cng:   comfort noise generation - either 'on' or 'off'. If
-		off then silence frames will be silent; if 'on' then
-		those frames will be filled with comfort noise.<vspace blankLines="1" /></t>
-
-<t>mode:  Speex encoding mode. Can be {1,2,3,4,5,6,any}
-                defaults to 3 in narrowband, 6 in wide and ultra-wide.<vspace blankLines="1" /></t>
-
-<t>penh:	use of perceptual enhancement. 1 indicates 
-	 	to the decoder that perceptual enhancement is recommended,
-		0 indicates that it is not. Defaults to on (1).<vspace blankLines="1" /></t>
-</list>	
-
-<t>Examples:</t>
-
-<vspace blankLines="1" />
-<list style="empty">
-   	<t>m=audio 8008 RTP/AVP 97</t>
-	<t>a=rtpmap:97 speex/8000</t>
-	<t>a=fmtp:97 mode=4</t>
-</list>	
-
-<t>
-This examples illustrate an offerer that wishes to receive
-a Speex stream at 8000Hz, but only using speex mode 3.
-</t>
- 
-<t>
-The offerer may suggest to the remote decoder to activate
-its perceptual enhancement filter like this:
-</t>
-
-<vspace blankLines="1" />   
-<list style="empty">
-	<t>m=audio 8088 RTP/AVP 97</t>
-	<t>a=rtmap:97 speex/8000</t>
-	<t>a=fmtp:97 penh=1 </t>
-</list>	
-	
-<t>
-Several Speex specific parameters can be given in a single
-a=fmtp line provided that they are separated by a semi-colon:
-</t>
-
-<vspace blankLines="1" />   
-<list style="empty">
-   	<t>a=fmtp:97 mode=any;penh=1</t>
-</list>	
-
-<t>
-The offerer may indicate that it wishes to send variable bit rate
-frames with comfort noise:
-</t>
-
-<vspace blankLines="1" />
-<list style="empty">
-	<t>m=audio 8088 RTP/AVP 97</t>
-	<t>a=rtmap:97 speex/8000</t>
-	<t>a=fmtp:97 vbr=on;cng=on</t>
-</list>	
-
-<t>
-The "ptime" attribute is used to denote the packetization 
-interval (ie, how many milliseconds of audio is encoded in a 
-single RTP packet).  Since Speex uses 20 msec frames, ptime values 
-of multiples of 20 denote multiple Speex frames per packet.  
-Values of ptime which are not multiples of 20 MUST be ignored 
-and clients MUST use the default value of 20 instead.
-</t>
-   
-<t>
-In the example below the ptime value is set to 40, indicating that 
-there are 2 frames in each packet.	
-</t>
-
-<vspace blankLines="1" />   
-<list style="empty">
-   	<t>m=audio 8008 RTP/AVP 97</t>
-	<t>a=rtpmap:97 speex/8000</t>
-	<t>a=ptime:40</t>
-</list>	
-
-<t>
-Note that the ptime parameter applies to all payloads listed
-in the media line and is not used as part of an a=fmtp directive.
-</t>
-
-<t>
-Values of ptime not multiple of 20 msec are meaningless, so the 
-receiver of such ptime values MUST ignore them.  If during the 
-life of an RTP session the ptime value changes, when there are 
-multiple Speex frames for example, the SDP value must also reflect 
-the new value. 
-</t>
-
-<t>
-Care must be taken when setting the value of ptime so that the 
-RTP packet size does not exceed the path MTU. 
-</t>
-
-</section>
-<section anchor="ITU H.323/H.245 Use of Speex" title="ITU H.323/H.245 Use of Speex">
-
-<t>
-Application is underway to make Speex a standard ITU codec.
-However, until that is finalized, Speex MAY be used in H.323 <xref target="H323"></xref> by
-using a non-standard codec block definition in the H.245 <xref target="H245"></xref> codec
-capability negotiations.  
-</t>
-
-</section>
-
-<section anchor="NonStandardMessage format" title="NonStandardMessage format">
-
-<t>
-For Speex use in H.245 <xref target="H245"></xref> based systems, the fields in the
-NonStandardMessage should be:
-</t>
-
-<vspace blankLines="1" />   
-<list style="empty">
-<t>t35CountryCode   = Hex: B5</t>
-<t>t35Extension     = Hex: 00</t>
-<t>manufacturerCode = Hex: 0026</t>
-<t>[Length of the Binary Sequence (8 bit number)]</t>
-<t>[Binary Sequence consisting of an ASCII string, no NULL terminator]</t>
-</list>
-
-<t>
-The binary sequence is an ascii string merely for ease of use.
-The string is not null terminated.  The format of this string is
-</t>
-
-<vspace blankLines="1" />   
-<list style="empty">
-<t>speex [optional variables]</t>
-</list>
-   
-<t>
-The optional variables are identical to those used for the SDP
-a=fmtp strings discussed in section 5 above.  The string is built
-to be all on one line, each key-value pair separated by a
-semi-colon.  The optional variables MAY be omitted, which causes
-the default values to be assumed.  They are:
-</t>
-
-<vspace blankLines="1" />   
-<list style="empty">
-<t>ebw=narrow;mode=3;vbr=off;cng=off;ptime=20;sr=8000;penh=no;</t>
-</list>
-
-<t>
-The fifth octet of the block is the length of the binary sequence.
-</t>
-
-<t>
-NOTE:  this method can result in the advertising of a large number
-of Speex 'codecs' based on the number of variables possible.  For
-most VoIP applications, use of the default binary sequence of
-'speex' is RECOMMENDED to be used in addition to all other options.
-This maximizes the chances that two H.323 based applications that
-support Speex can find a mutual codec.   
-</t>
-
-</section>
-
-<section anchor="RTP Payload Types" title="RTP Payload Types">
-
-<t>
-Dynamic payload type codes MUST be negotiated 'out-of-band'
-for the assignment of a dynamic payload type from the
-range of 96-127.  H.323 applications MUST use the H.245
-H2250LogicalChannelParameters encoding to accomplish this.  
-</t>
-
-</section>
-
-<section anchor="Security Considerations" title="Security Considerations">
-
-<t>
-RTP packets using the payload format defined in this specification
-are subject to the security considerations discussed in the RTP
-specification <xref target="rfc3550"></xref>, and any appropriate RTP profile.  This implies
-that confidentiality of the media streams is achieved by encryption.
-Because the data compression used with this payload format is applied
-end-to-end, encryption may be performed after compression so there is
-no conflict between the two operations.
-</t>
-
-<t>
-A potential denial-of-service threat exists for data encodings using
-compression techniques that have non-uniform receiver-end
-computational load.  The attacker can inject pathological datagrams
-into the stream which are complex to decode and cause the receiver to
-be overloaded.  However, this encoding does not exhibit any
-significant non-uniformity.
-</t>
-
-<t>
-As with any IP-based protocol, in some circumstances a receiver may
-be overloaded simply by the receipt of too many packets, either
-desired or undesired.  Network-layer authentication may be used to
-discard packets from undesired sources, but the processing cost of
-the authentication itself may be too high.  
-</t>
-
-</section> 
-
-<section anchor="Acknowledgments" title="Acknowledgments">
-
-<t>
-The authors would like to thank Equivalence Pty Ltd of Australia
-for their assistance in attempting to standardize the use of Speex
-in H.323 applications, and for implementing Speex in their open
-source OpenH323 stack.  The authors would also like to thank Brian
-C. Wiles &lt;[email protected]&gt; of StreamComm for his assistance in
-developing the proposed standard for Speex use in H.323
-applications.
-</t>
-
-<t>
-The authors would also like to thank the following members of the 
-Speex and AVT communities for their input:  Ross Finlayson, 
-Federico Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund.
-</t>
-</section> 
-
-</middle>
-
-<back>
-
-<references title="Normative References">
-
-<reference anchor="rfc2119">
-<front>
-<title>Key words for use in RFCs to Indicate Requirement Levels </title>
-<author initials="S." surname="Bradner" fullname="Scott Bradner"></author>
-</front>
-<seriesInfo name="RFC" value="2119" />
-</reference> 
-
-<reference anchor="rfc3550">
-<front>
-<title>RTP: A Transport Protocol for real-time applications</title>
-<author initials="H." surname="Schulzrinne" fullname=""></author>
-<author initials="S." surname="Casner" fullname=""></author>
-<author initials="R." surname="Frederick" fullname=""></author>
-<author initials="V." surname="Jacobson" fullname=""></author>
-</front>
-<seriesInfo name="RFC" value="3550" />
-</reference> 
-
-<reference anchor="rfc2045">
-<front>
-<title>Multipurpose Internet Mail Extensions (MIME) Part One: Format of Internet Message Bodies</title>
-<author initials="" surname="" fullname=""></author>
-</front>
-<date month="November" year="1998" />
-<seriesInfo name="RFC" value="2045" />
-</reference> 
-
-<reference anchor="rfc2327">
-<front>
-<title>SDP: Session Description Protocol</title>
-<author initials="V." surname="Jacobson" fullname=""></author>
-<author initials="M." surname="Handley" fullname=""></author>
-</front>
-<date month="April" year="1998" />
-<seriesInfo name="RFC" value="2327" />
-</reference> 
-
-<reference anchor="H323">
-<front>
-<title>Packet-based Multimedia Communications Systems</title>
-<author initials="" surname="" fullname=""></author>
-</front>
-<date month="" year="1998" />
-<seriesInfo name="ITU-T Recommendation" value="H.323" />
-</reference> 
-
-<reference anchor="H245">
-<front>
-<title>Control of communications between Visual Telephone Systems and Terminal Equipment</title>
-<author initials="" surname="" fullname=""></author>
-</front>
-<date month="" year="1998" />
-<seriesInfo name="ITU-T Recommendation" value="H.245" />
-</reference> 
-
-<reference anchor="rfc3551">
-<front>
-<title>RTP Profile for Audio and Video Conferences with Minimal Control.</title>
-<author initials="H." surname="Schulzrinne" fullname=""></author>
-<author initials="S." surname="Casner" fullname=""></author>
-</front>
-<date month="July" year="2003" />
-<seriesInfo name="RFC" value="3551" />
-</reference> 
-
-<reference anchor="rfc3534">
-<front>
-<title>The application/ogg Media Type</title>
-<author initials="L." surname="Walleij" fullname=""></author>
-</front>
-<date month="May" year="2003" />
-<seriesInfo name="RFC" value="3534" />
-</reference> 
-
-</references> 
-
-<references title="Informative References">
-
-<reference anchor="speexenc">
-<front>
-<title>Speexenc/speexdec, reference command-line encoder/decoder</title>
-</front>
-<seriesInfo name="Speex website" value="http://www.speex.org/" />
-</reference> 
-
-<reference anchor="CELP">
-<front>
-<title>CELP, U.S. Federal Standard 1016.</title>
-<author initials="" surname="" fullname=""></author>
-</front>
-<seriesInfo name="National Technical Information Service (NTIS) website" value="http://www.ntis.gov/" />
-</reference> 
-
-</references> 
-
-</back>
-</rfc>

+ 0 - 784
Engine/lib/speex/doc/draft-ietf-avt-rtp-speex-00.txt

@@ -1,784 +0,0 @@
-
-
-
-AVT Working Group                                             G. Herlein
-Internet-Draft                                                 S. Morlat
-Expires: April 15, 2006                                     J. Jean-Marc
-                                                             R. Hardiman
-                                                                 P. Kerr
-                                                        October 12, 2005
-
-
-                      draft-ietf-avt-rtp-speex-00
-                 RTP Payload Format for the Speex Codec
-
-Status of this Memo
-
-   By submitting this Internet-Draft, each author represents that any
-   applicable patent or other IPR claims of which he or she is aware
-   have been or will be disclosed, and any of which he or she becomes
-   aware will be disclosed, in accordance with Section 6 of BCP 79.
-
-   Internet-Drafts are working documents of the Internet Engineering
-   Task Force (IETF), its areas, and its working groups.  Note that
-   other groups may also distribute working documents as Internet-
-   Drafts.
-
-   Internet-Drafts are draft documents valid for a maximum of six months
-   and may be updated, replaced, or obsoleted by other documents at any
-   time.  It is inappropriate to use Internet-Drafts as reference
-   material or to cite them other than as "work in progress."
-
-   The list of current Internet-Drafts can be accessed at
-   http://www.ietf.org/ietf/1id-abstracts.txt.
-
-   The list of Internet-Draft Shadow Directories can be accessed at
-   http://www.ietf.org/shadow.html.
-
-   This Internet-Draft will expire on April 15, 2006.
-
-Copyright Notice
-
-   Copyright (C) The Internet Society (2005).
-
-Abstract
-
-   Speex is an open-source voice codec suitable for use in Voice over IP
-   (VoIP) type applications.  This document describes the payload format
-   for Speex generated bit streams within an RTP packet.  Also included
-   here are the necessary details for the use of Speex with the Session
-   Description Protocol (SDP).
-
-
-
-
-Herlein, et al.          Expires April 15, 2006                 [Page 1]
-
-Internet-Draft         draft-ietf-avt-rtp-speex-00          October 2005
-
-
-Editors Note
-
-   All references to RFC XXXX are to be replaced by references to the
-   RFC number of this memo, when published.
-
-Table of Contents
-
-   1.   Conventions used in this document  . . . . . . . . . . . . .   3
-   2.   Overview of the Speex Codec  . . . . . . . . . . . . . . . .   3
-   3.   RTP payload format for Speex . . . . . . . . . . . . . . . .   3
-   4.   RTP Header . . . . . . . . . . . . . . . . . . . . . . . . .   3
-   5.   Speex payload  . . . . . . . . . . . . . . . . . . . . . . .   5
-   6.   Example Speex packet . . . . . . . . . . . . . . . . . . . .   6
-   7.   Multiple Speex frames in a RTP packet  . . . . . . . . . . .   6
-   8.   MIME registration of Speex . . . . . . . . . . . . . . . . .   7
-   9.   SDP usage of Speex . . . . . . . . . . . . . . . . . . . . .   8
-   10.  ITU H.323 Use of Speex . . . . . . . . . . . . . . . . . . .  10
-   11.  Security Considerations  . . . . . . . . . . . . . . . . . .  10
-   12.  Acknowledgments  . . . . . . . . . . . . . . . . . . . . . .  11
-   13.  References . . . . . . . . . . . . . . . . . . . . . . . . .  11
-     13.1   Normative References . . . . . . . . . . . . . . . . . .  11
-     13.2   Informative References . . . . . . . . . . . . . . . . .  12
-        Authors' Addresses . . . . . . . . . . . . . . . . . . . . .  12
-        Intellectual Property and Copyright Statements . . . . . . .  14
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-Herlein, et al.          Expires April 15, 2006                 [Page 2]
-
-Internet-Draft         draft-ietf-avt-rtp-speex-00          October 2005
-
-
-1.  Conventions used in this document
-
-   The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-   "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-   document are to be interpreted as described in RFC 2119 [1].
-
-2.  Overview of the Speex Codec
-
-   Speex is based on the CELP [8] encoding technique with support for
-   either narrowband (nominal 8kHz), wideband (nominal 16kHz) or ultra-
-   wideband (nominal 32kHz), and (non-optimal) rates up to 48 kHz
-   sampling also available.  The main characteristics can be summarized
-   as follows:
-
-   o  Free software/open-source
-   o  Integration of wideband and narrowband in the same bit-stream
-   o  Wide range of bit-rates available
-   o  Dynamic bit-rate switching and variable bit-rate (VBR)
-   o  Voice Activity Detection (VAD, integrated with VBR)
-   o  Variable complexity
-
-3.  RTP payload format for Speex
-
-   For RTP based transportation of Speex encoded audio the standard RTP
-   header [2] is followed by one or more payload data blocks.  An
-   optional padding terminator may also be used.
-
-        0                   1                   2                   3
-        0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |                         RTP Header                            |
-       +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-       |                 one or more frames of Speex ....              |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |        one or more frames of Speex ....       |    padding    |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-4.  RTP Header
-
-
-
-
-
-
-
-
-
-
-
-
-Herlein, et al.          Expires April 15, 2006                 [Page 3]
-
-Internet-Draft         draft-ietf-avt-rtp-speex-00          October 2005
-
-
-        0                   1                   2                   3
-        0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |                           timestamp                           |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |           synchronization source (SSRC) identifier            |
-       +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-       |            contributing source (CSRC) identifiers             |
-       |                              ...                              |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-   The RTP header begins with an octet of fields (V, P, X, and CC) to
-   support specialized RTP uses (see [2] and [5] for details).  For
-   Speex the following values are used.
-
-   Version (V): 2 bits
-
-   This field identifies the version of RTP.  The version used by this
-   specification is two [2].
-
-   Padding (P): 1 bit
-
-   If the padding bit is set, the packet contains one or more additional
-   padding octets at the end which are not part of the payload.
-
-   Extension (X): 1 bit
-
-   If the extension, X, bit is set, the fixed header MUST be followed by
-   exactly one header extension, with a format defined in Section 5.3.1.
-   of [2].
-
-   CSRC count (CC): 4 bits
-
-   The CSRC count contains the number of CSRC identifiers.
-
-   Marker (M): 1 bit
-
-   The M bit indicates if the packet contains comfort noise.  This field
-   is used in conjunction with the cng SDP attribute and conforms to
-   Section 4.1. of [5].
-
-   Payload Type (PT): 7 bits
-
-   An RTP profile for a class of applications is expected to assign a
-   payload type for this format, or a dynamically allocated payload type
-   SHOULD be chosen which designates the payload as Speex.
-
-
-
-Herlein, et al.          Expires April 15, 2006                 [Page 4]
-
-Internet-Draft         draft-ietf-avt-rtp-speex-00          October 2005
-
-
-   Sequence number: 16 bits
-
-   The sequence number increments by one for each RTP data packet sent,
-   and may be used by the receiver to detect packet loss and to restore
-   packet sequence.  This field is detailed further in [2].
-
-   Timestamp: 32 bits
-
-   A timestamp representing the sampling time of the first sample of the
-   first Speex packet in the RTP packet.  The clock frequency MUST be
-   set to the sample rate of the encoded audio data.  Speex uses 20 msec
-   frames and a variable sampling rate clock.  The RTP timestamp MUST be
-   in units of 1/X of a second where X is the sample rate used.  Speex
-   uses a nominal 8kHz sampling rate for narrowband use, a nominal 16kHz
-   sampling rate for wideband use, and a nominal 32kHz sampling rate for
-   ultra-wideband use.
-
-   SSRC/CSRC identifiers:
-
-   These two fields, 32 bits each with one SSRC field and a maximum of
-   16 CSRC fields, are as defined in [2].
-
-5.  Speex payload
-
-   For the purposes of packetizing the bit stream in RTP, it is only
-   necessary to consider the sequence of bits as output by the Speex
-   encoder [7], and present the same sequence to the decoder.  The
-   payload format described here maintains this sequence.
-
-   A typical Speex frame, encoded at the maximum bitrate, is approx. 110
-   octets and the total number of Speex frames SHOULD be kept less than
-   the path MTU to prevent fragmentation.  Speex frames MUST NOT be
-   fragmented across multiple RTP packets,
-
-   An RTP packet MAY contain Speex frames of the same bit rate or of
-   varying bit rates, since the bit-rate for a frame is conveyed in band
-   with the signal.
-
-   The encoding and decoding algorithm can change the bit rate at any 20
-   msec frame boundary, with the bit rate change notification provided
-   in-band with the bit stream.  Each frame contains both "mode"
-   (narrowband, wideband or ultra-wideband) and "sub-mode" (bit-rate)
-   information in the bit stream.  No out-of-band notification is
-   required for the decoder to process changes in the bit rate sent by
-   the encoder.
-
-   It is RECOMMENDED that values of 8000, 16000 and 32000 be used for
-   normal internet telephony applications, though the sample rate is
-
-
-
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-Internet-Draft         draft-ietf-avt-rtp-speex-00          October 2005
-
-
-   supported at rates as low as 6000 Hz and as high as 48 kHz.
-
-   The RTP payload MUST be padded to provide an integer number of octets
-   as the payload length.  These padding bits are LSB aligned in network
-   octet order and consist of a 0 followed by all ones (until the end of
-   the octet).  This padding is only required for the last frame in the
-   packet, and only to ensure the packet contents ends on an octet
-   boundary.
-
-6.  Example Speex packet
-
-   In the example below we have a single Speex frame with 5 bits of
-   padding to ensure the packet size falls on an octet boundary.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                           timestamp                           |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |         synchronization source (SSRC) identifier              |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |         contributing source (CSRC) identifiers                |
-      |                              ...                              |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..               |0 1 1 1 1|
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-7.  Multiple Speex frames in a RTP packet
-
-   Below is an example of two Speex frames contained within one RTP
-   packet.  The Speex frame length in this example fall on an octet
-   boundary so there is no padding.
-
-   Speex codecs [7] are able to detect the bitrate from the payload and
-   are responsible for detecting the 20 msec boundaries between each
-   frame.
-
-
-
-
-
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-Internet-Draft         draft-ietf-avt-rtp-speex-00          October 2005
-
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |V=2|P|X|  CC   |M|     PT      |       sequence number         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                           timestamp                           |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |         synchronization source (SSRC) identifier              |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |         contributing source (CSRC) identifiers                |
-      |                              ...                              |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |        ..speex data..         |        ..speex data..         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-
-8.  MIME registration of Speex
-
-   Full definition of the MIME [3] type for Speex will be part of the
-   Ogg Vorbis MIME type definition application [6].
-
-   MIME media type name: audio
-
-   MIME subtype: speex
-
-   Optional parameters:
-
-   Required parameters: to be included in the Ogg MIME specification.
-
-   Encoding considerations:
-
-   This type is only defined for transfer via HTTP as specified in RFC
-   XXXX.
-
-   Security Considerations:
-
-   See Section 6 of RFC 3047.
-
-   Interoperability considerations: none
-
-   Published specification:
-
-   Applications which use this media type:
-
-
-
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-
-
-   Additional information: none
-
-   Person & email address to contact for further information:
-
-      Greg Herlein <[email protected]>
-      Jean-Marc Valin <[email protected]>
-
-   Intended usage: COMMON
-
-   Author/Change controller:
-
-      Author:  Greg Herlein <[email protected]>
-      Change controller: Greg Herlein <[email protected]>
-      Change controller: IETF AVT Working Group
-
-   This transport type signifies that the content is to be interpreted
-   according to this document if the contents are transmitted over RTP.
-   Should this transport type appear over a lossless streaming protocol
-   such as TCP, the content encapsulation should be interpreted as an
-   Ogg Stream in accordance with [6], with the exception that the
-   content of the Ogg Stream may be assumed to be Speex audio and Speex
-   audio only.
-
-9.  SDP usage of Speex
-
-   When conveying information by SDP [4], the encoding name MUST be set
-   to "speex".  An example of the media representation in SDP for
-   offering a single channel of Speex at 8000 samples per second might
-   be:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-
-   Note that the RTP payload type code of 97 is defined in this media
-   definition to be 'mapped' to the speex codec at an 8kHz sampling
-   frequency using the 'a=rtpmap' line.  Any number from 96 to 127 could
-   have been chosen (the allowed range for dynamic types).
-
-   The value of the sampling frequency is typically 8000 for narrow band
-   operation, 16000 for wide band operation, and 32000 for ultra-wide
-   band operation.
-
-   If for some reason the offerer has bandwidth limitations, the client
-   may use the "b=" header, as explained in SDP [4].  The following
-   example illustrates the case where the offerer cannot receive more
-   than 10 kbit/s.
-
-
-
-
-
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-
-
-      m=audio 8088 RTP/AVP 97
-      b=AS:10
-      a=rtmap:97 speex/8000
-
-   In this case, if the remote part agrees, it should configure its
-   Speex encoder so that it does not use modes that produce more than 10
-   kbit/s.  Note that the "b=" constraint also applies on all payload
-   types that may be proposed in the media line ("m=").
-
-   An other way to make recommendations to the remote Speex encoder is
-   to use its specific parameters via the a=fmtp: directive.  The
-   following parameters are defined for use in this way:
-
-      ptime: duration of each packet in milliseconds.
-
-      sr:    actual sample rate in Hz.
-
-      ebw:   encoding bandwidth - either 'narrow' or 'wide' or 'ultra'
-      (corresponds to nominal 8000, 16000, and 32000 Hz sampling rates).
-
-      vbr:   variable bit rate  - either 'on' 'off' or 'vad' (defaults
-      to off).  If on, variable bit rate is enabled.  If off, disabled.
-      If set to 'vad' then constant bit rate is used but silence will be
-      encoded with special short frames to indicate a lack of voice for
-      that period.
-
-      cng:   comfort noise generation - either 'on' or 'off'.  If off
-      then silence frames will be silent; if 'on' then those frames will
-      be filled with comfort noise.
-
-      mode:  Speex encoding mode.  Can be {1,2,3,4,5,6,any} defaults to
-      3 in narrowband, 6 in wide and ultra-wide.
-
-
-   Examples:
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=fmtp:97 mode=4
-
-   This examples illustrate an offerer that wishes to receive a Speex
-   stream at 8000Hz, but only using speex mode 4.
-
-   Several Speex specific parameters can be given in a single a=fmtp
-   line provided that they are separated by a semi-colon:
-
-
-
-
-
-
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-
-
-      a=fmtp:97 mode=any;mode=1
-
-   The offerer may indicate that it wishes to send variable bit rate
-   frames with comfort noise:
-
-      m=audio 8088 RTP/AVP 97
-      a=rtmap:97 speex/8000
-      a=fmtp:97 vbr=on;cng=on
-
-   The "ptime" attribute is used to denote the packetization interval
-   (ie, how many milliseconds of audio is encoded in a single RTP
-   packet).  Since Speex uses 20 msec frames, ptime values of multiples
-   of 20 denote multiple Speex frames per packet.  Values of ptime which
-   are not multiples of 20 MUST be ignored and clients MUST use the
-   default value of 20 instead.
-
-   In the example below the ptime value is set to 40, indicating that
-   there are 2 frames in each packet.
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=ptime:40
-
-   Note that the ptime parameter applies to all payloads listed in the
-   media line and is not used as part of an a=fmtp directive.
-
-   Values of ptime not multiple of 20 msec are meaningless, so the
-   receiver of such ptime values MUST ignore them.  If during the life
-   of an RTP session the ptime value changes, when there are multiple
-   Speex frames for example, the SDP value must also reflect the new
-   value.
-
-   Care must be taken when setting the value of ptime so that the RTP
-   packet size does not exceed the path MTU.
-
-10.  ITU H.323 Use of Speex
-
-   It is outside the scope of this document to cover the use of Speex
-   and H.323, more details may be found on the Speex website [9].
-
-11.  Security Considerations
-
-   RTP packets using the payload format defined in this specification
-   are subject to the security considerations discussed in the RTP
-   specification [2], and any appropriate RTP profile.  This implies
-   that confidentiality of the media streams is achieved by encryption.
-   Because the data compression used with this payload format is applied
-   end-to-end, encryption may be performed after compression so there is
-
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-   no conflict between the two operations.
-
-   A potential denial-of-service threat exists for data encodings using
-   compression techniques that have non-uniform receiver-end
-   computational load.  The attacker can inject pathological datagrams
-   into the stream which are complex to decode and cause the receiver to
-   be overloaded.  However, this encoding does not exhibit any
-   significant non-uniformity.
-
-   As with any IP-based protocol, in some circumstances a receiver may
-   be overloaded simply by the receipt of too many packets, either
-   desired or undesired.  Network-layer authentication may be used to
-   discard packets from undesired sources, but the processing cost of
-   the authentication itself may be too high.
-
-12.  Acknowledgments
-
-   The authors would like to thank Equivalence Pty Ltd of Australia for
-   their assistance in attempting to standardize the use of Speex in
-   H.323 applications, and for implementing Speex in their open source
-   OpenH323 stack.  The authors would also like to thank Brian C. Wiles
-   <[email protected]> of StreamComm for his assistance in developing
-   the proposed standard for Speex use in H.323 applications.
-
-   The authors would also like to thank the following members of the
-   Speex and AVT communities for their input:  Ross Finlayson, Federico
-   Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund.
-
-13.  References
-
-13.1  Normative References
-
-   [1]  Bradner, S., "Key words for use in RFCs to Indicate Requirement
-        Levels", RFC 2119.
-
-   [2]  Schulzrinne, H., Casner, S., Frederick, R., and V. Jacobson,
-        "RTP: A Transport Protocol for real-time applications",
-        RFC 3550.
-
-   [3]  "Multipurpose Internet Mail Extensions (MIME) Part One: Format
-        of Internet Message Bodies", RFC 2045.
-
-   [4]  Jacobson, V. and M. Handley, "SDP: Session Description
-        Protocol", RFC 2327.
-
-   [5]  Schulzrinne, H. and S. Casner, "RTP Profile for Audio and Video
-        Conferences with Minimal Control.", RFC 3551.
-
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-   [6]  Walleij, L., "The application/ogg Media Type", RFC 3534.
-
-13.2  Informative References
-
-   [7]  "Speexenc/speexdec, reference command-line encoder/decoder",
-        Speex website http://www.speex.org/.
-
-   [8]  "CELP, U.S. Federal Standard 1016.", National Technical
-        Information Service (NTIS) website http://www.ntis.gov/.
-
-   [9]  "ITU H.323/H.245 Use of Speex", Speex
-        website http://www.speex.org/itu/.
-
-
-Authors' Addresses
-
-   Greg Herlein
-   2034 Filbert Street
-   San Francisco, California  94123
-   United States
-
-   Email: [email protected]
-
-
-   Simon Morlat
-   35, av de Vizille App 42
-   Grenoble  38000
-   France
-
-   Email: [email protected]
-
-
-   Jean-Marc Valin
-   Department of Electrical and Computer Engineering
-   University of Sherbrooke
-   2500 blvd Universite
-   Sherbrooke, Quebec  J1K 2R1
-   Canada
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-   Email: [email protected]
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-   Roger Hardiman
-   49 Nettleton Road
-   Cheltenham, Gloucestershire  GL51 6NR
-   England
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-   Email: [email protected]
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-   Phil Kerr
-   England
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-Intellectual Property Statement
-
-   The IETF takes no position regarding the validity or scope of any
-   Intellectual Property Rights or other rights that might be claimed to
-   pertain to the implementation or use of the technology described in
-   this document or the extent to which any license under such rights
-   might or might not be available; nor does it represent that it has
-   made any independent effort to identify any such rights.  Information
-   on the procedures with respect to rights in RFC documents can be
-   found in BCP 78 and BCP 79.
-
-   Copies of IPR disclosures made to the IETF Secretariat and any
-   assurances of licenses to be made available, or the result of an
-   attempt made to obtain a general license or permission for the use of
-   such proprietary rights by implementers or users of this
-   specification can be obtained from the IETF on-line IPR repository at
-   http://www.ietf.org/ipr.
-
-   The IETF invites any interested party to bring to its attention any
-   copyrights, patents or patent applications, or other proprietary
-   rights that may cover technology that may be required to implement
-   this standard.  Please address the information to the IETF at
-   [email protected].
-
-
-Disclaimer of Validity
-
-   This document and the information contained herein are provided on an
-   "AS IS" basis and THE CONTRIBUTOR, THE ORGANIZATION HE/SHE REPRESENTS
-   OR IS SPONSORED BY (IF ANY), THE INTERNET SOCIETY AND THE INTERNET
-   ENGINEERING TASK FORCE DISCLAIM ALL WARRANTIES, EXPRESS OR IMPLIED,
-   INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE
-   INFORMATION HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED
-   WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
-
-
-Copyright Statement
-
-   Copyright (C) The Internet Society (2005).  This document is subject
-   to the rights, licenses and restrictions contained in BCP 78, and
-   except as set forth therein, the authors retain all their rights.
-
-
-Acknowledgment
-
-   Funding for the RFC Editor function is currently provided by the
-   Internet Society.
-
-
-
-
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-AVT                                                           G. Herlein
-Internet-Draft
-Intended status: Standards Track                                J. Valin
-Expires: October 24, 2007                       University of Sherbrooke
-                                                            A. Heggestad
-                                                          April 22, 2007
-
-
-                 RTP Payload Format for the Speex Codec
-                      draft-ietf-avt-rtp-speex-01 (non-final)
-
-Status of this Memo
-
-   By submitting this Internet-Draft, each author represents that any
-   applicable patent or other IPR claims of which he or she is aware
-   have been or will be disclosed, and any of which he or she becomes
-   aware will be disclosed, in accordance with Section 6 of BCP 79.
-
-   Internet-Drafts are working documents of the Internet Engineering
-   Task Force (IETF), its areas, and its working groups.  Note that
-   other groups may also distribute working documents as Internet-
-   Drafts.
-
-   Internet-Drafts are draft documents valid for a maximum of six months
-   and may be updated, replaced, or obsoleted by other documents at any
-   time.  It is inappropriate to use Internet-Drafts as reference
-   material or to cite them other than as "work in progress."
-
-   The list of current Internet-Drafts can be accessed at
-   http://www.ietf.org/ietf/1id-abstracts.txt.
-
-   The list of Internet-Draft Shadow Directories can be accessed at
-   http://www.ietf.org/shadow.html.
-
-   This Internet-Draft will expire on October 24, 2007.
-
-Copyright Notice
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-   Copyright (C) The Internet Society (2007).
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-Internet-Draft                    Speex                       April 2007
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-Abstract
-
-   Speex is an open-source voice codec suitable for use in Voice over IP
-   (VoIP) type applications.  This document describes the payload format
-   for Speex generated bit streams within an RTP packet.  Also included
-   here are the necessary details for the use of Speex with the Session
-   Description Protocol (SDP).
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-Editors Note
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-   All references to RFC XXXX are to be replaced by references to the
-   RFC number of this memo, when published.
-
-
-Table of Contents
-
-   1.  Introduction . . . . . . . . . . . . . . . . . . . . . . . . .  4
-   2.  Terminology  . . . . . . . . . . . . . . . . . . . . . . . . .  5
-   3.  RTP usage for Speex  . . . . . . . . . . . . . . . . . . . . .  6
-     3.1.  RTP Speex Header Fields  . . . . . . . . . . . . . . . . .  6
-     3.2.  RTP payload format for Speex . . . . . . . . . . . . . . .  6
-     3.3.  Speex payload  . . . . . . . . . . . . . . . . . . . . . .  6
-     3.4.  Example Speex packet . . . . . . . . . . . . . . . . . . .  7
-     3.5.  Multiple Speex frames in a RTP packet  . . . . . . . . . .  7
-   4.  IANA Considerations  . . . . . . . . . . . . . . . . . . . . .  9
-     4.1.  Media Type Registration  . . . . . . . . . . . . . . . . .  9
-       4.1.1.  Registration of media type audio/speex . . . . . . . .  9
-   5.  SDP usage of Speex . . . . . . . . . . . . . . . . . . . . . . 11
-   6.  Security Considerations  . . . . . . . . . . . . . . . . . . . 14
-   7.  Acknowledgements . . . . . . . . . . . . . . . . . . . . . . . 15
-   8.  References . . . . . . . . . . . . . . . . . . . . . . . . . . 16
-     8.1.  Normative References . . . . . . . . . . . . . . . . . . . 16
-     8.2.  Informative References . . . . . . . . . . . . . . . . . . 16
-   Authors' Addresses . . . . . . . . . . . . . . . . . . . . . . . . 17
-   Intellectual Property and Copyright Statements . . . . . . . . . . 18
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-1.  Introduction
-
-   Speex is based on the CELP [CELP] encoding technique with support for
-   either narrowband (nominal 8kHz), wideband (nominal 16kHz) or ultra-
-   wideband (nominal 32kHz).  The main characteristics can be summarized
-   as follows:
-
-   o  Free software/open-source
-
-   o  Integration of wideband and narrowband in the same bit-stream
-
-   o  Wide range of bit-rates available
-
-   o  Dynamic bit-rate switching and variable bit-rate (VBR)
-
-   o  Voice Activity Detection (VAD, integrated with VBR)
-
-   o  Variable complexity
-
-   To be compliant with this specification, implementations MUST support
-   8 kHz sampling rate (narrowband)" and SHOULD support 8 kbps bitrate.
-   The sampling rate MUST be 8, 16 or 32 kHz.
-
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-2.  Terminology
-
-   The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-   "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-   document are to be interpreted as described in RFC2119 [RFC2119] and
-   indicate requirement levels for compliant RTP implementations.
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-3.  RTP usage for Speex
-
-3.1.  RTP Speex Header Fields
-
-   The RTP header is defined in the RTP specification [RFC3550].  This
-   section defines how fields in the RTP header are used.
-
-      Payload Type (PT): The assignment of an RTP payload type for this
-      packet format is outside the scope of this document; it is
-      specified by the RTP profile under which this payload format is
-      used, or signaled dynamically out-of-band (e.g., using SDP).
-
-      Marker (M) bit: The M bit is set to one to indicate that the RTP
-      packet payload contains at least one complete frame
-
-      Extension (X) bit: Defined by the RTP profile used.
-
-      Timestamp: A 32-bit word that corresponds to the sampling instant
-      for the first frame in the RTP packet.
-
-3.2.  RTP payload format for Speex
-
-   The RTP payload for Speex has the format shown in Figure 1.  No
-   additional header fields specific to this payload format are
-   required.  For RTP based transportation of Speex encoded audio the
-   standard RTP header [RFC3550] is followed by one or more payload data
-   blocks.  An optional padding terminator may also be used.
-
-        0                   1                   2                   3
-        0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |                         RTP Header                            |
-       +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-       |                 one or more frames of Speex ....              |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |        one or more frames of Speex ....       |    padding    |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-                     Figure 1: RTP payload for Speex
-
-3.3.  Speex payload
-
-   For the purposes of packetizing the bit stream in RTP, it is only
-   necessary to consider the sequence of bits as output by the Speex
-   encoder [speexenc], and present the same sequence to the decoder.
-   The payload format described here maintains this sequence.
-
-   A typical Speex frame, encoded at the maximum bitrate, is approx. 110
-
-
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-   octets and the total number of Speex frames SHOULD be kept less than
-   the path MTU to prevent fragmentation.  Speex frames MUST NOT be
-   fragmented across multiple RTP packets,
-
-   An RTP packet MAY contain Speex frames of the same bit rate or of
-   varying bit rates, since the bit-rate for a frame is conveyed in band
-   with the signal.
-
-   The encoding and decoding algorithm can change the bit rate at any 20
-   msec frame boundary, with the bit rate change notification provided
-   in-band with the bit stream.  Each frame contains both "mode"
-   (narrowband, wideband or ultra-wideband) and "sub-mode" (bit-rate)
-   information in the bit stream.  No out-of-band notification is
-   required for the decoder to process changes in the bit rate sent by
-   the encoder.
-
-   Sampling rate values of 8000, 16000 or 32000 Hz MUST be used.  Any
-   other sampling rates MUST NOT be used.
-
-   The RTP payload MUST be padded to provide an integer number of octets
-   as the payload length.  These padding bits are LSB aligned in network
-   octet order and consist of a 0 followed by all ones (until the end of
-   the octet).  This padding is only required for the last frame in the
-   packet, and only to ensure the packet contents ends on an octet
-   boundary.
-
-3.4.  Example Speex packet
-
-   In the example below we have a single Speex frame with 5 bits of
-   padding to ensure the packet size falls on an octet boundary.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                      RTP Header                               |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..               |0 1 1 1 1|
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-3.5.  Multiple Speex frames in a RTP packet
-
-   Below is an example of two Speex frames contained within one RTP
-   packet.  The Speex frame length in this example fall on an octet
-   boundary so there is no padding.
-
-   Speex codecs [speexenc] are able to detect the bitrate from the
-
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-   payload and are responsible for detecting the 20 msec boundaries
-   between each frame.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                      RTP Header                               |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |                     ..speex frame 1..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |       ..speex frame 1..       |      ..speex frame 2..        |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                      ..speex frame 2..                        |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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-4.  IANA Considerations
-
-   This document defines the Speex media type.
-
-4.1.  Media Type Registration
-
-   This section describes the media types and names associated with this
-   payload format.  The section registers the media types, as per
-   RFC4288 [RFC4288]
-
-4.1.1.  Registration of media type audio/speex
-
-   Media type name: audio
-
-   Media subtype name: speex
-
-   Required parameters:
-
-   None
-
-   Optional parameters:
-
-      ptime: see RFC 4566.  SHOULD be a multiple of 20 msec.
-
-      maxptime: see RFC 4566.  SHOULD be a multiple of 20 msec.
-
-   Encoding considerations:
-
-      This media type is framed and binary, see section 4.8 in
-      [RFC4288].
-
-   Security considerations: See Section 6
-
-   Interoperability considerations:
-
-      None.
-
-   Published specification: RFC XXXX [This RFC].
-
-   Applications which use this media type:
-
-      Audio streaming and conferencing applications.
-
-   Additional information: none
-
-   Person and email address to contact for further information :
-
-
-
-
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-      Alfred E. Heggestad: [email protected]
-
-   Intended usage: COMMON
-
-   Restrictions on usage:
-
-      This media type depends on RTP framing, and hence is only defined
-      for transfer via RTP [RFC3550].  Transport within other framing
-      protocols is not defined at this time.
-
-   Author: Alfred E. Heggestad
-
-   Change controller:
-
-      IETF Audio/Video Transport working group delegated from the IESG.
-
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-5.  SDP usage of Speex
-
-   When conveying information by SDP [RFC4566], the encoding name MUST
-   be set to "speex".  An example of the media representation in SDP for
-   offering a single channel of Speex at 8000 samples per second might
-   be:
-
-             m=audio 8088 RTP/AVP 97
-             a=rtpmap:97 speex/8000
-
-   Note that the RTP payload type code of 97 is defined in this media
-   definition to be 'mapped' to the speex codec at an 8kHz sampling
-   frequency using the 'a=rtpmap' line.  Any number from 96 to 127 could
-   have been chosen (the allowed range for dynamic types).
-
-   The value of the sampling frequency is typically 8000 for narrow band
-   operation, 16000 for wide band operation, and 32000 for ultra-wide
-   band operation.
-
-   If for some reason the offerer has bandwidth limitations, the client
-   may use the "b=" header, as explained in SDP [RFC4566].  The
-   following example illustrates the case where the offerer cannot
-   receive more than 10 kbit/s.
-
-             m=audio 8088 RTP/AVP 97
-             b=AS:10
-             a=rtmap:97 speex/8000
-
-   In this case, if the remote part agrees, it should configure its
-   Speex encoder so that it does not use modes that produce more than 10
-   kbit/s.  Note that the "b=" constraint also applies on all payload
-   types that may be proposed in the media line ("m=").
-
-   An other way to make recommendations to the remote Speex encoder is
-   to use its specific parameters via the a=fmtp: directive.  The
-   following parameters are defined for use in this way:
-
-      ptime: duration of each packet in milliseconds.
-
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-      sr: actual sample rate in Hz.
-
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-      ebw: encoding bandwidth - either 'narrow' or 'wide' or 'ultra'
-      (corresponds to nominal 8000, 16000, and 32000 Hz sampling rates).
-
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-      vbr: variable bit rate - either 'on' 'off' or 'vad' (defaults to
-      off).  If on, variable bit rate is enabled.  If off, disabled.  If
-      set to 'vad' then constant bit rate is used but silence will be
-      encoded with special short frames to indicate a lack of voice for
-      that period.
-
-
-      cng: comfort noise generation - either 'on' or 'off'.  If off then
-      silence frames will be silent; if 'on' then those frames will be
-      filled with comfort noise.
-
-
-      mode: Speex encoding mode.  Can be {1,2,3,4,5,6,any} defaults to 3
-      in narrowband, 6 in wide and ultra-wide.
-
-
-   Examples:
-
-      m=audio 8008 RTP/AVP 97
-      a=rtpmap:97 speex/8000
-      a=fmtp:97 mode=4
-
-   This examples illustrate an offerer that wishes to receive a Speex
-   stream at 8000Hz, but only using speex mode 4.
-
-   Several Speex specific parameters can be given in a single a=fmtp
-   line provided that they are separated by a semi-colon:
-
-      a=fmtp:97 mode=any;mode=1
-
-   The offerer may indicate that it wishes to send variable bit rate
-   frames with comfort noise:
-
-             m=audio 8088 RTP/AVP 97
-             a=rtmap:97 speex/8000
-             a=fmtp:97 vbr=on;cng=on
-
-   The "ptime" attribute is used to denote the packetization interval
-   (ie, how many milliseconds of audio is encoded in a single RTP
-   packet).  Since Speex uses 20 msec frames, ptime values of multiples
-   of 20 denote multiple Speex frames per packet.  Values of ptime which
-   are not multiples of 20 MUST be ignored and clients MUST use the
-   default value of 20 instead.
-
-   Implementations SHOULD support ptime of 20 msec (i.e. one frame per
-   packet)
-
-   In the example below the ptime value is set to 40, indicating that
-
-
-
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-   there are 2 frames in each packet.
-
-             m=audio 8008 RTP/AVP 97
-             a=rtpmap:97 speex/8000
-             a=ptime:40
-
-   Note that the ptime parameter applies to all payloads listed in the
-   media line and is not used as part of an a=fmtp directive.
-
-   Values of ptime not multiple of 20 msec are meaningless, so the
-   receiver of such ptime values MUST ignore them.  If during the life
-   of an RTP session the ptime value changes, when there are multiple
-   Speex frames for example, the SDP value must also reflect the new
-   value.
-
-   Care must be taken when setting the value of ptime so that the RTP
-   packet size does not exceed the path MTU.
-
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-
-6.  Security Considerations
-
-   RTP packets using the payload format defined in this specification
-   are subject to the security considerations discussed in the RTP
-   specification [RFC3550], and any appropriate RTP profile.  This
-   implies that confidentiality of the media streams is achieved by
-   encryption.  Because the data compression used with this payload
-   format is applied end-to-end, encryption may be performed after
-   compression so there is no conflict between the two operations.
-
-   A potential denial-of-service threat exists for data encodings using
-   compression techniques that have non-uniform receiver-end
-   computational load.  The attacker can inject pathological datagrams
-   into the stream which are complex to decode and cause the receiver to
-   be overloaded.  However, this encoding does not exhibit any
-   significant non-uniformity.
-
-   As with any IP-based protocol, in some circumstances a receiver may
-   be overloaded simply by the receipt of too many packets, either
-   desired or undesired.  Network-layer authentication may be used to
-   discard packets from undesired sources, but the processing cost of
-   the authentication itself may be too high.
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-7.  Acknowledgements
-
-   The authors would like to thank Equivalence Pty Ltd of Australia for
-   their assistance in attempting to standardize the use of Speex in
-   H.323 applications, and for implementing Speex in their open source
-   OpenH323 stack.  The authors would also like to thank Brian C. Wiles
-   <[email protected]> of StreamComm for his assistance in developing
-   the proposed standard for Speex use in H.323 applications.
-
-   The authors would also like to thank the following members of the
-   Speex and AVT communities for their input: Ross Finlayson, Federico
-   Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund.
-
-   Thanks to former authors of this document; Simon Morlat, Roger
-   Hardiman, Phil Kerr
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-8.  References
-
-8.1.  Normative References
-
-   [RFC2119]  Bradner, S., "Key words for use in RFCs to Indicate
-              Requirement Levels", BCP 14, RFC 2119, March 1997.
-
-   [RFC3550]  Schulzrinne, H., Casner, S., Frederick, R., and V.
-              Jacobson, "RTP: A Transport Protocol for Real-Time
-              Applications", STD 64, RFC 3550, July 2003.
-
-   [RFC4566]  Handley, M., Jacobson, V., and C. Perkins, "SDP: Session
-              Description Protocol", RFC 4566, July 2006.
-
-8.2.  Informative References
-
-   [CELP]     "CELP, U.S. Federal Standard 1016.", National Technical
-              Information Service (NTIS) website http://www.ntis.gov/.
-
-   [RFC4288]  Freed, N. and J. Klensin, "Media Type Specifications and
-              Registration Procedures", BCP 13, RFC 4288, December 2005.
-
-   [speexenc]
-              Valin, J., "Speexenc/speexdec, reference command-line
-              encoder/decoder", Speex website http://www.speex.org/.
-
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-Authors' Addresses
-
-   Greg Herlein
-   2034 Filbert Street
-   San Francisco, California  94123
-   United States
-
-   Email: [email protected]
-
-
-   Jean-Marc Valin
-   University of Sherbrooke
-   Department of Electrical and Computer Engineering
-   University of Sherbrooke
-   2500 blvd Universite
-   Sherbrooke, Quebec  J1K 2R1
-   Canada
-
-   Email: [email protected]
-
-
-   Alfred E. Heggestad
-   Biskop J. Nilssonsgt. 20a
-   Oslo  0659
-   Norway
-
-   Email: [email protected]
-
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-Full Copyright Statement
-
-   Copyright (C) The Internet Society (2007).
-
-   This document is subject to the rights, licenses and restrictions
-   contained in BCP 78, and except as set forth therein, the authors
-   retain all their rights.
-
-   This document and the information contained herein are provided on an
-   "AS IS" basis and THE CONTRIBUTOR, THE ORGANIZATION HE/SHE REPRESENTS
-   OR IS SPONSORED BY (IF ANY), THE INTERNET SOCIETY AND THE INTERNET
-   ENGINEERING TASK FORCE DISCLAIM ALL WARRANTIES, EXPRESS OR IMPLIED,
-   INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE
-   INFORMATION HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED
-   WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
-
-
-Intellectual Property
-
-   The IETF takes no position regarding the validity or scope of any
-   Intellectual Property Rights or other rights that might be claimed to
-   pertain to the implementation or use of the technology described in
-   this document or the extent to which any license under such rights
-   might or might not be available; nor does it represent that it has
-   made any independent effort to identify any such rights.  Information
-   on the procedures with respect to rights in RFC documents can be
-   found in BCP 78 and BCP 79.
-
-   Copies of IPR disclosures made to the IETF Secretariat and any
-   assurances of licenses to be made available, or the result of an
-   attempt made to obtain a general license or permission for the use of
-   such proprietary rights by implementers or users of this
-   specification can be obtained from the IETF on-line IPR repository at
-   http://www.ietf.org/ipr.
-
-   The IETF invites any interested party to bring to its attention any
-   copyrights, patents or patent applications, or other proprietary
-   rights that may cover technology that may be required to implement
-   this standard.  Please address the information to the IETF at
-   [email protected].
-
-
-Acknowledgment
-
-   Funding for the RFC Editor function is provided by the IETF
-   Administrative Support Activity (IASA).
-
-
-
-
-
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-AVT                                                           G. Herlein
-Internet-Draft
-Intended status: Standards Track                                J. Valin
-Expires: August 19, 2008                                           CSIRO
-                                                            A. Heggestad
-                                                             Creytiv.com
-                                                              A. Moizard
-                                                                 Antisip
-                                                       February 16, 2008
-
-
-                 RTP Payload Format for the Speex Codec
-                      draft-ietf-avt-rtp-speex-05
-
-Status of this Memo
-
-   By submitting this Internet-Draft, each author represents that any
-   applicable patent or other IPR claims of which he or she is aware
-   have been or will be disclosed, and any of which he or she becomes
-   aware will be disclosed, in accordance with Section 6 of BCP 79.
-
-   Internet-Drafts are working documents of the Internet Engineering
-   Task Force (IETF), its areas, and its working groups.  Note that
-   other groups may also distribute working documents as Internet-
-   Drafts.
-
-   Internet-Drafts are draft documents valid for a maximum of six months
-   and may be updated, replaced, or obsoleted by other documents at any
-   time.  It is inappropriate to use Internet-Drafts as reference
-   material or to cite them other than as "work in progress."
-
-   The list of current Internet-Drafts can be accessed at
-   http://www.ietf.org/ietf/1id-abstracts.txt.
-
-   The list of Internet-Draft Shadow Directories can be accessed at
-   http://www.ietf.org/shadow.html.
-
-   This Internet-Draft will expire on August 19, 2008.
-
-Copyright Notice
-
-   Copyright (C) The IETF Trust (2008).
-
-
-
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-
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-Internet-Draft                    Speex                    February 2008
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-
-Abstract
-
-   Speex is an open-source voice codec suitable for use in Voice over IP
-   (VoIP) type applications.  This document describes the payload format
-   for Speex generated bit streams within an RTP packet.  Also included
-   here are the necessary details for the use of Speex with the Session
-   Description Protocol (SDP).
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-
-Editors Note
-
-   All references to RFC XXXX are to be replaced by references to the
-   RFC number of this memo, when published.
-
-
-Table of Contents
-
-   1.  Introduction . . . . . . . . . . . . . . . . . . . . . . . . .  4
-   2.  Terminology  . . . . . . . . . . . . . . . . . . . . . . . . .  5
-   3.  RTP usage for Speex  . . . . . . . . . . . . . . . . . . . . .  6
-     3.1.  RTP Speex Header Fields  . . . . . . . . . . . . . . . . .  6
-     3.2.  RTP payload format for Speex . . . . . . . . . . . . . . .  6
-     3.3.  Speex payload  . . . . . . . . . . . . . . . . . . . . . .  6
-     3.4.  Example Speex packet . . . . . . . . . . . . . . . . . . .  7
-     3.5.  Multiple Speex frames in a RTP packet  . . . . . . . . . .  7
-   4.  IANA Considerations  . . . . . . . . . . . . . . . . . . . . .  9
-     4.1.  Media Type Registration  . . . . . . . . . . . . . . . . .  9
-       4.1.1.  Registration of media type audio/speex . . . . . . . .  9
-   5.  SDP usage of Speex . . . . . . . . . . . . . . . . . . . . . . 12
-     5.1.  Example supporting all modes, prefer mode 4  . . . . . . . 15
-     5.2.  Example supporting only mode 3 and 5 . . . . . . . . . . . 15
-     5.3.  Example with Variable Bit Rate and Comfort Noise . . . . . 15
-     5.4.  Example with Voice Activity Detection  . . . . . . . . . . 15
-     5.5.  Example with Multiple sampling rates . . . . . . . . . . . 15
-     5.6.  Example with ptime and Multiple Speex frames . . . . . . . 16
-     5.7.  Example with Complete Offer/Answer exchange  . . . . . . . 16
-   6.  Implementation Guidelines  . . . . . . . . . . . . . . . . . . 17
-   7.  Security Considerations  . . . . . . . . . . . . . . . . . . . 18
-   8.  Acknowledgements . . . . . . . . . . . . . . . . . . . . . . . 19
-   9.  Copying conditions . . . . . . . . . . . . . . . . . . . . . . 20
-   10. References . . . . . . . . . . . . . . . . . . . . . . . . . . 21
-     10.1. Normative References . . . . . . . . . . . . . . . . . . . 21
-     10.2. Informative References . . . . . . . . . . . . . . . . . . 21
-   Authors' Addresses . . . . . . . . . . . . . . . . . . . . . . . . 22
-   Intellectual Property and Copyright Statements . . . . . . . . . . 23
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-1.  Introduction
-
-   Speex is based on the CELP [CELP] encoding technique with support for
-   either narrowband (nominal 8kHz), wideband (nominal 16kHz) or ultra-
-   wideband (nominal 32kHz).  The main characteristics can be summarized
-   as follows:
-
-   o  Free software/open-source
-
-   o  Integration of wideband and narrowband in the same bit-stream
-
-   o  Wide range of bit-rates available
-
-   o  Dynamic bit-rate switching and variable bit-rate (VBR)
-
-   o  Voice Activity Detection (VAD, integrated with VBR)
-
-   o  Variable complexity
-
-   The Speex codec supports a wide range of bit-rates from 2.15 kbit/s
-   to 44 kbit/s.  In some cases however, it may not be possible for an
-   implementation to include support for all rates (e.g. because of
-   bandwidth, RAM or CPU constraints).  In those cases, to be compliant
-   with this specification, implementations MUST support at least
-   narrowband (8 kHz) encoding and decoding at 8 kbit/s bit-rate
-   (narrowband mode 3).  Support for narrowband at 15 kbit/s (narrowband
-   mode 5) is RECOMMENDED and support for wideband at 27.8 kbit/s
-   (wideband mode 8) is also RECOMMENDED.  The sampling rate MUST be 8,
-   16 or 32 kHz.
-
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-2.  Terminology
-
-   The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT",
-   "SHOULD", "SHOULD NOT", "RECOMMENDED", "MAY", and "OPTIONAL" in this
-   document are to be interpreted as described in RFC2119 [RFC2119] and
-   indicate requirement levels for compliant RTP implementations.
-
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-3.  RTP usage for Speex
-
-3.1.  RTP Speex Header Fields
-
-   The RTP header is defined in the RTP specification [RFC3550].  This
-   section defines how fields in the RTP header are used.
-
-      Payload Type (PT): The assignment of an RTP payload type for this
-      packet format is outside the scope of this document; it is
-      specified by the RTP profile under which this payload format is
-      used, or signaled dynamically out-of-band (e.g., using SDP).
-
-      Marker (M) bit: The M bit is set to one on the first packet sent
-      after a silence period, during which packets have not been
-      transmitted contiguously.
-
-      Extension (X) bit: Defined by the RTP profile used.
-
-      Timestamp: A 32-bit word that corresponds to the sampling instant
-      for the first frame in the RTP packet.
-
-3.2.  RTP payload format for Speex
-
-   The RTP payload for Speex has the format shown in Figure 1.  No
-   additional header fields specific to this payload format are
-   required.  For RTP based transportation of Speex encoded audio the
-   standard RTP header [RFC3550] is followed by one or more payload data
-   blocks.  An optional padding terminator may also be used.
-
-        0                   1                   2                   3
-        0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |                         RTP Header                            |
-       +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-       |                 one or more frames of Speex ....              |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-       |        one or more frames of Speex ....       |    padding    |
-       +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-                     Figure 1: RTP payload for Speex
-
-3.3.  Speex payload
-
-   For the purposes of packetizing the bit stream in RTP, it is only
-   necessary to consider the sequence of bits as output by the Speex
-   encoder [speex_manual], and present the same sequence to the decoder.
-   The payload format described here maintains this sequence.
-
-
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-   A typical Speex frame, encoded at the maximum bitrate, is approx. 110
-   octets and the total number of Speex frames SHOULD be kept less than
-   the path MTU to prevent fragmentation.  Speex frames MUST NOT be
-   fragmented across multiple RTP packets,
-
-   An RTP packet MAY contain Speex frames of the same bit rate or of
-   varying bit rates, since the bit-rate for a frame is conveyed in band
-   with the signal.
-
-   The encoding and decoding algorithm can change the bit rate at any 20
-   msec frame boundary, with the bit rate change notification provided
-   in-band with the bit stream.  Each frame contains both sampling rate
-   (narrowband, wideband or ultra-wideband) and "mode" (bit-rate)
-   information in the bit stream.  No out-of-band notification is
-   required for the decoder to process changes in the bit rate sent by
-   the encoder.
-
-   The sampling rate MUST be either 8000 Hz, 16000 Hz, or 32000 Hz.
-
-   The RTP payload MUST be padded to provide an integer number of octets
-   as the payload length.  These padding bits are LSB aligned in network
-   octet order and consist of a 0 followed by all ones (until the end of
-   the octet).  This padding is only required for the last frame in the
-   packet, and only to ensure the packet contents ends on an octet
-   boundary.
-
-3.4.  Example Speex packet
-
-   In the example below we have a single Speex frame with 5 bits of
-   padding to ensure the packet size falls on an octet boundary.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                      RTP Header                               |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |                        ..speex data..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                        ..speex data..               |0 1 1 1 1|
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-
-3.5.  Multiple Speex frames in a RTP packet
-
-   Below is an example of two Speex frames contained within one RTP
-   packet.  The Speex frame length in this example fall on an octet
-   boundary so there is no padding.
-
-   The Speex decoder [speex_manual] can detect the bitrate from the
-
-
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-   payload and is responsible for detecting the 20 msec boundaries
-   between each frame.
-
-       0                   1                   2                   3
-       0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                      RTP Header                               |
-      +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
-      |                     ..speex frame 1..                         |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |       ..speex frame 1..       |      ..speex frame 2..        |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-      |                      ..speex frame 2..                        |
-      +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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-4.  IANA Considerations
-
-   This document defines the Speex media type.
-
-4.1.  Media Type Registration
-
-   This section describes the media types and names associated with this
-   payload format.  The section registers the media types, as per
-   RFC4288 [RFC4288]
-
-4.1.1.  Registration of media type audio/speex
-
-   Media type name: audio
-
-   Media subtype name: speex
-
-   Required parameters:
-
-      rate: RTP timestamp clock rate, which is equal to the sampling
-      rate in Hz.  The sampling rate MUST be either 8000, 16000, or
-      32000.
-
-   Optional parameters:
-
-      ptime: SHOULD be a multiple of 20 msec [RFC4566]
-
-      maxptime: SHOULD be a multiple of 20 msec [RFC4566]
-
-      vbr: variable bit rate - either 'on' 'off' or 'vad' (defaults to
-      off).  If on, variable bit rate is enabled.  If off, disabled.  If
-      set to 'vad' then constant bit rate is used but silence will be
-      encoded with special short frames to indicate a lack of voice for
-      that period.
-
-
-      cng: comfort noise generation - either 'on' or 'off'.  If off then
-      silence frames will be silent; if 'on' then those frames will be
-      filled with comfort noise.
-
-
-      mode: List supported Speex decoding modes.  The valid modes are
-      different for narrowband and wideband, and are defined as follows:
-
-      *  {1,2,3,4,5,6,7,8,any} for narrowband
-
-      *  {0,1,2,3,4,5,6,7,8,9,10,any} for wideband and ultra-wideband
-
-      Several 'mode' parameters can be provided.  In this case, the
-
-
-
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-
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-
-
-      remote party SHOULD configure its encoder using the first
-      supported mode provided.  When 'any' is used, the offerer
-      indicates that it supports all decoding modes.  If the 'mode'
-      parameter is not provided, the mode value is considered to be
-      equivalent to 'mode=3;mode=any' in narrowband and
-      'mode=8;mode=any' in wideband and ultra-wideband.  Note that each
-      Speex frame does contains the mode (or bit-rate) that should be
-      used to decode it.  Thus application MUST be able to decode any
-      Speex frame unless the SDP clearly specify that some modes are not
-      supported. (e.g., by not including 'mode=any')
-
-   Encoding considerations:
-
-      This media type is framed and binary, see section 4.8 in
-      [RFC4288].
-
-   Security considerations: See Section 6
-
-   Interoperability considerations:
-
-      None.
-
-   Published specification:
-
-      RFC XXXX [RFC Editor: please replace by the RFC number of this
-      memo, when published]
-
-   Applications which use this media type:
-
-      Audio streaming and conferencing applications.
-
-   Additional information: none
-
-   Person and email address to contact for further information :
-
-      Alfred E. Heggestad: [email protected]
-
-   Intended usage: COMMON
-
-   Restrictions on usage:
-
-      This media type depends on RTP framing, and hence is only defined
-      for transfer via RTP [RFC3550].  Transport within other framing
-      protocols is not defined at this time.
-
-   Author: Alfred E. Heggestad
-
-   Change controller:
-
-
-
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-      IETF Audio/Video Transport working group delegated from the IESG.
-
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-
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-5.  SDP usage of Speex
-
-   The information carried in the media type specification has a
-   specific mapping to fields in the Session Description Protocol (SDP)
-   [RFC4566], which is commonly used to describe RTP sessions.  When SDP
-   is used to specify sessions employing the Speex codec, the mapping is
-   as follows:
-
-   o  The media type ("audio") goes in SDP "m=" as the media name.
-
-   o  The media subtype ("speex") goes in SDP "a=rtpmap" as the encoding
-      name.  The required parameter "rate" also goes in "a=rtpmap" as
-      the clock rate.
-
-   o  The parameters "ptime" and "maxptime" go in the SDP "a=ptime" and
-      "a=maxptime" attributes, respectively.
-
-   o  Any remaining parameters go in the SDP "a=fmtp" attribute by
-      copying them directly from the media type string as a semicolon
-      separated list of parameter=value pairs.
-
-   The tables below include the equivalence between modes and bitrates
-   for narrowband, wideband and ultra-wideband.  Also, the corresponding
-   "Speex quality" setting (see SPEEX_SET_QUALITY in The Speex Codec
-   Manual [speex_manual]) is included as an indication.
-
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-
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-                  +------+---------------+-------------+
-                  | mode | Speex quality |   bitrate   |
-                  +------+---------------+-------------+
-                  |   1  |       0       | 2.15 kbit/s |
-                  |      |               |             |
-                  |   2  |       2       | 5.95 kbit/s |
-                  |      |               |             |
-                  |   3  |     3 or 4    | 8.00 kbit/s |
-                  |      |               |             |
-                  |   4  |     5 or 6    | 11.0 kbit/s |
-                  |      |               |             |
-                  |   5  |     7 or 8    | 15.0 kbit/s |
-                  |      |               |             |
-                  |   6  |       9       | 18.2 kbit/s |
-                  |      |               |             |
-                  |   7  |       10      | 24.6 kbit/s |
-                  |      |               |             |
-                  |   8  |       1       | 3.95 kbit/s |
-                  +------+---------------+-------------+
-
-                   Mode vs Bitrate table for narrowband
-
-                                  Table 1
-
-
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-   +------+---------------+------------------+------------------------+
-   | mode | Speex quality | wideband bitrate | ultra wideband bitrate |
-   +------+---------------+------------------+------------------------+
-   |   0  |       0       |    3.95 kbit/s   |       5.75 kbit/s      |
-   |      |               |                  |                        |
-   |   1  |       1       |    5.75 kbit/s   |       7.55 kbit/s      |
-   |      |               |                  |                        |
-   |   2  |       2       |    7.75 kbit/s   |       9.55 kbit/s      |
-   |      |               |                  |                        |
-   |   3  |       3       |    9.80 kbit/s   |       11.6 kbit/s      |
-   |      |               |                  |                        |
-   |   4  |       4       |    12.8 kbit/s   |       14.6 kbit/s      |
-   |      |               |                  |                        |
-   |   5  |       5       |    16.8 kbit/s   |       18.6 kbit/s      |
-   |      |               |                  |                        |
-   |   6  |       6       |    20.6 kbit/s   |       22.4 kbit/s      |
-   |      |               |                  |                        |
-   |   7  |       7       |    23.8 kbit/s   |       25.6 kbit/s      |
-   |      |               |                  |                        |
-   |   8  |       8       |    27.8 kbit/s   |       29.6 kbit/s      |
-   |      |               |                  |                        |
-   |   9  |       9       |    34.2 kbit/s   |       36.0 kbit/s      |
-   |      |               |                  |                        |
-   |  10  |       10      |    42.2 kbit/s   |       44.0 kbit/s      |
-   +------+---------------+------------------+------------------------+
-
-           Mode vs Bitrate table for wideband and ultra-wideband
-
-                                  Table 2
-
-   The Speex parameters indicate the decoding capabilities of the agent,
-   and what the agent prefers to receive.
-
-   The Speex parameters in an SDP Offer/Answer exchange are completely
-   orthogonal, and there is no relationship between the SDP Offer and
-   the Answer.
-
-   Several Speex specific parameters can be given in a single a=fmtp
-   line provided that they are separated by a semi-colon:
-
-             a=fmtp:97 mode=1;mode=any;vbr=on
-
-   Some example SDP session descriptions utilizing Speex encodings
-   follow.
-
-
-
-
-
-
-
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-
-
-5.1.  Example supporting all modes, prefer mode 4
-
-   The offerer indicates that it wishes to receive a Speex stream at
-   8000Hz, and wishes to receive Speex 'mode 4'.  It is important to
-   understand that any other mode might still be sent by remote party:
-   the device might have bandwidth limitation or might only be able to
-   send 'mode=3'.  Thus, application that support all decoding modes
-   SHOULD include 'mode=any' as shown in the example below:
-
-             m=audio 8088 RTP/AVP 97
-             a=rtpmap:97 speex/8000
-             a=fmtp:97 mode=4;mode=any
-
-5.2.  Example supporting only mode 3 and 5
-
-   The offerer indicates the mode he wishes to receive (Speex 'mode 3').
-   This offer indicates mode 3 and mode 5 are supported and that no
-   other modes are supported.  The remote party MUST NOT configure its
-   encoder using another Speex mode.
-
-             m=audio 8088 RTP/AVP 97
-             a=rtmap:97 speex/8000
-             a=fmtp:97 mode=3;mode=5
-
-5.3.  Example with Variable Bit Rate and Comfort Noise
-
-   The offerer indicates that it wishes to receive variable bit rate
-   frames with comfort noise:
-
-             m=audio 8088 RTP/AVP 97
-             a=rtmap:97 speex/8000
-             a=fmtp:97 vbr=on;cng=on
-
-5.4.  Example with Voice Activity Detection
-
-   The offerer indicates that it wishes to use silence suppression.  In
-   this case vbr=vad parameter will be used:
-
-             m=audio 8088 RTP/AVP 97
-             a=rtmap:97 speex/8000
-             a=fmtp:97 vbr=vad
-
-5.5.  Example with Multiple sampling rates
-
-   The offerer indicates that it wishes to receive Speex audio at 16000
-   Hz with mode 10 (42.2 kbit/s), alternatively Speex audio at 8000 Hz
-   with mode 7 (24.6 kbit/s).  The offerer supports decoding all modes.
-
-
-
-
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-
-Internet-Draft                    Speex                    February 2008
-
-
-             m=audio 8088 RTP/AVP 97 98
-             a=rtmap:97 speex/16000
-             a=fmtp:97 mode=10;mode=any
-             a=rtmap:98 speex/8000
-             a=fmtp:98 mode=7;mode=any
-
-5.6.  Example with ptime and Multiple Speex frames
-
-   The "ptime" attribute is used to denote the packetization interval
-   (ie, how many milliseconds of audio is encoded in a single RTP
-   packet).  Since Speex uses 20 msec frames, ptime values of multiples
-   of 20 denote multiple Speex frames per packet.  Values of ptime which
-   are not multiples of 20 MUST be rounded up to the first multiple of
-   20 above the ptime value.
-
-   In the example below the ptime value is set to 40, indicating that
-   there are 2 frames in each packet.
-
-             m=audio 8088 RTP/AVP 97
-             a=rtpmap:97 speex/8000
-             a=ptime:40
-
-   Note that the ptime parameter applies to all payloads listed in the
-   media line and is not used as part of an a=fmtp directive.
-
-   Care must be taken when setting the value of ptime so that the RTP
-   packet size does not exceed the path MTU.
-
-5.7.  Example with Complete Offer/Answer exchange
-
-   The offerer indicates that it wishes to receive Speex audio at 16000
-   Hz, alternatively Speex audio at 8000 Hz.  The offerer does support
-   ALL modes because no mode is specified.
-
-             m=audio 8088 RTP/AVP 97 98
-             a=rtmap:97 speex/16000
-             a=rtmap:98 speex/8000
-
-   The answerer indicates that it wishes to receive Speex audio at 8000
-   Hz, which is the only sampling rate it supports.  The answerer does
-   support ALL modes because no mode is specified.
-
-             m=audio 8088 RTP/AVP 99
-             a=rtmap:99 speex/8000
-
-
-
-
-
-
-
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-
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-
-
-6.  Implementation Guidelines
-
-   Implementations that supports Speex are responsible for correctly
-   decoding incoming Speex frames.
-
-   Each Speex frame does contains all needed informations to decode
-   itself.  In particular, the 'mode' and 'ptime' values proposed in the
-   SDP contents MUST NOT be used for decoding: those values are not
-   needed to properly decode a RTP Speex stream.
-
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-
-
-7.  Security Considerations
-
-   RTP packets using the payload format defined in this specification
-   are subject to the security considerations discussed in the RTP
-   specification [RFC3550], and any appropriate RTP profile.  This
-   implies that confidentiality of the media streams is achieved by
-   encryption.  Because the data compression used with this payload
-   format is applied end-to-end, encryption may be performed after
-   compression so there is no conflict between the two operations.
-
-   A potential denial-of-service threat exists for data encodings using
-   compression techniques that have non-uniform receiver-end
-   computational load.  The attacker can inject pathological datagrams
-   into the stream which are complex to decode and cause the receiver to
-   be overloaded.  However, this encoding does not exhibit any
-   significant non-uniformity.
-
-   As with any IP-based protocol, in some circumstances a receiver may
-   be overloaded simply by the receipt of too many packets, either
-   desired or undesired.  Network-layer authentication may be used to
-   discard packets from undesired sources, but the processing cost of
-   the authentication itself may be too high.
-
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-
-
-8.  Acknowledgements
-
-   The authors would like to thank Equivalence Pty Ltd of Australia for
-   their assistance in attempting to standardize the use of Speex in
-   H.323 applications, and for implementing Speex in their open source
-   OpenH323 stack.  The authors would also like to thank Brian C. Wiles
-   <[email protected]> of StreamComm for his assistance in developing
-   the proposed standard for Speex use in H.323 applications.
-
-   The authors would also like to thank the following members of the
-   Speex and AVT communities for their input: Ross Finlayson, Federico
-   Montesino Pouzols, Henning Schulzrinne, Magnus Westerlund, Colin
-   Perkins, Ivo Emanuel Goncalves.
-
-   Thanks to former authors of this document; Simon Morlat, Roger
-   Hardiman, Phil Kerr.
-
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-
-
-9.  Copying conditions
-
-   The authors agree to grant third parties the irrevocable right to
-   copy, use and distribute the work, with or without modification, in
-   any medium, without royalty, provided that, unless separate
-   permission is granted, redistributed modified works do not contain
-   misleading author, version, name of work, or endorsement information.
-
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-
-
-10.  References
-
-10.1.  Normative References
-
-   [RFC2119]  Bradner, S., "Key words for use in RFCs to Indicate
-              Requirement Levels", BCP 14, RFC 2119, March 1997.
-
-   [RFC3550]  Schulzrinne, H., Casner, S., Frederick, R., and V.
-              Jacobson, "RTP: A Transport Protocol for Real-Time
-              Applications", STD 64, RFC 3550, July 2003.
-
-   [RFC4566]  Handley, M., Jacobson, V., and C. Perkins, "SDP: Session
-              Description Protocol", RFC 4566, July 2006.
-
-10.2.  Informative References
-
-   [CELP]     "CELP, U.S. Federal Standard 1016.", National Technical
-              Information Service (NTIS) website http://www.ntis.gov/.
-
-   [RFC4288]  Freed, N. and J. Klensin, "Media Type Specifications and
-              Registration Procedures", BCP 13, RFC 4288, December 2005.
-
-   [speex_manual]
-              Valin, J., "The Speex Codec Manual", Speex
-              website http://www.speex.org/docs/.
-
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-
-
-Authors' Addresses
-
-   Greg Herlein
-   2034 Filbert Street
-   San Francisco, California  94123
-   United States
-
-   Email: [email protected]
-
-
-   Jean-Marc Valin
-   CSIRO
-   PO Box 76
-   Epping, NSW  1710
-   Australia
-
-   Email: [email protected]
-
-
-   Alfred E. Heggestad
-   Creytiv.com
-   Biskop J. Nilssonsgt. 20a
-   Oslo  0659
-   Norway
-
-   Email: [email protected]
-
-
-   Aymeric Moizard
-   Antisip
-   4 Quai Perrache
-   Lyon  69002
-   France
-
-   Email: [email protected]
-
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-
-
-Full Copyright Statement
-
-   Copyright (C) The IETF Trust (2008).
-
-   This document is subject to the rights, licenses and restrictions
-   contained in BCP 78, and except as set forth therein, the authors
-   retain all their rights.
-
-   This document and the information contained herein are provided on an
-   "AS IS" basis and THE CONTRIBUTOR, THE ORGANIZATION HE/SHE REPRESENTS
-   OR IS SPONSORED BY (IF ANY), THE INTERNET SOCIETY, THE IETF TRUST AND
-   THE INTERNET ENGINEERING TASK FORCE DISCLAIM ALL WARRANTIES, EXPRESS
-   OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF
-   THE INFORMATION HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED
-   WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
-
-
-Intellectual Property
-
-   The IETF takes no position regarding the validity or scope of any
-   Intellectual Property Rights or other rights that might be claimed to
-   pertain to the implementation or use of the technology described in
-   this document or the extent to which any license under such rights
-   might or might not be available; nor does it represent that it has
-   made any independent effort to identify any such rights.  Information
-   on the procedures with respect to rights in RFC documents can be
-   found in BCP 78 and BCP 79.
-
-   Copies of IPR disclosures made to the IETF Secretariat and any
-   assurances of licenses to be made available, or the result of an
-   attempt made to obtain a general license or permission for the use of
-   such proprietary rights by implementers or users of this
-   specification can be obtained from the IETF on-line IPR repository at
-   http://www.ietf.org/ipr.
-
-   The IETF invites any interested party to bring to its attention any
-   copyrights, patents or patent applications, or other proprietary
-   rights that may cover technology that may be required to implement
-   this standard.  Please address the information to the IETF at
-   [email protected].
-
-
-Acknowledgment
-
-   Funding for the RFC Editor function is provided by the IETF
-   Administrative Support Activity (IASA).
-
-
-
-
-
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-

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-2681 -181 2681 -181 2681 -226 ct 2681 -226 2681 -226 2679 -227 ct 2653 -216 2636 -210 2607 -200 ct 
-2607 -200 2607 -200 2607 -192 ct p ef
-pom
-gr
-gr
-gs
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-1009 -117 1009 -117 957 -148 ct 943 -156 936 -169 936 -182 ct 936 -202 951 -216 973 -216 ct 
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-1303 -183 1269 -227 1222 -227 ct 1195 -227 1173 -215 1152 -189 ct 1152 -189 1152 -189 1152 -226 ct 
-1152 -226 1152 -226 1149 -227 ct 1123 -217 1106 -210 1079 -202 ct 1079 -202 1079 -202 1079 -195 ct 
-p
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-1261 -48 1237 -11 1202 -11 ct 1180 -11 1152 -29 1152 -44 ct 1152 -44 1152 -44 1152 -165 ct 
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-1372 -137 1372 -137 1521 -137 ct 1517 -169 1512 -183 1500 -199 ct 1486 -217 1463 -227 1438 -227 ct 
-1414 -227 1391 -218 1373 -201 ct 1350 -181 1337 -146 1337 -106 ct 1337 -37 1372 5 1428 5 ct 
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-1472 -153 1472 -153 1373 -153 ct p ef
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-1723 -173 1721 -188 1713 -200 ct 1703 -218 1682 -227 1653 -227 ct 1608 -227 1572 -203 1572 -171 ct 
-1572 -160 1582 -150 1593 -150 ct 1605 -150 1615 -160 1615 -171 ct 1615 -173 1614 -175 1614 -179 ct 
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-1684 -174 1684 -174 1684 -144 ct 1609 -113 1601 -109 1580 -90 ct 1570 -81 1563 -64 1563 -48 ct 
-1563 -17 1584 5 1614 5 ct 1635 5 1655 -5 1684 -31 ct 1687 -5 1696 5 1715 5 ct 1732 5 1742 -1 1759 -20 ct 
-1759 -20 1759 -20 1759 -32 ct p
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-1606 -62 1606 -62 1606 -63 ct 1606 -92 1625 -110 1684 -132 ct 1684 -132 1684 -132 1684 -61 ct 
-p ef
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-1805 -278 1805 -278 1805 -40 ct 1805 -15 1803 -13 1768 -7 ct 1768 -7 1768 -7 1768 0 ct 
-1768 0 1768 0 1882 0 ct 1882 0 1882 0 1882 -8 ct 1882 -8 1882 -8 1872 -8 ct 1853 -8 1845 -15 1845 -32 ct 
-1845 -32 1845 -32 1845 -124 ct 1845 -124 1845 -124 1913 -32 ct 1913 -32 1913 -32 1915 -30 ct 
-1916 -28 1917 -27 1918 -25 ct 1922 -20 1923 -17 1923 -15 ct 1923 -10 1919 -7 1913 -7 ct 
-1913 -7 1913 -7 1904 -7 ct 1904 -7 1904 -7 1904 0 ct 1904 0 1904 0 2009 0 ct 2009 0 2009 0 2009 -8 ct 
-1988 -8 1973 -18 1953 -43 ct 1953 -43 1953 -43 1879 -139 ct 1879 -139 1879 -139 1893 -152 ct 
-1927 -185 1957 -208 1971 -212 ct 1979 -214 1985 -215 1994 -215 ct 1994 -215 1994 -215 1997 -215 ct 
-1997 -215 1997 -215 1997 -222 ct 1997 -222 1997 -222 1899 -222 ct 1899 -222 1899 -222 1899 -215 ct 
-1918 -215 1923 -213 1923 -206 ct 1923 -202 1918 -195 1912 -189 ct 1912 -189 1912 -189 1845 -129 ct 
-1845 -129 1845 -129 1845 -336 ct 1845 -336 1845 -336 1843 -337 ct 1825 -331 1811 -327 1783 -319 ct 
-1783 -319 1783 -319 1768 -315 ct 1768 -315 1768 -315 1768 -307 ct p ef
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-2066 -137 2066 -137 2215 -137 ct 2211 -169 2206 -183 2194 -199 ct 2180 -217 2157 -227 2132 -227 ct 
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-2166 -153 2166 -153 2067 -153 ct p ef
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-2276 -164 2276 -164 2276 -41 ct 2276 -17 2272 -13 2241 -7 ct 2241 -7 2241 -7 2241 0 ct 
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-2316 -171 2337 -196 2350 -196 ct 2353 -196 2358 -193 2363 -188 ct 2371 -182 2376 -179 2382 -179 ct 
-2394 -179 2401 -187 2401 -201 ct 2401 -217 2391 -227 2375 -227 ct 2354 -227 2340 -216 2316 -181 ct 
-2316 -181 2316 -181 2316 -226 ct 2316 -226 2316 -226 2314 -227 ct 2288 -216 2271 -210 2242 -200 ct 
-2242 -200 2242 -200 2242 -192 ct p ef
-pom
-gr
-gr
-gs
-gs
-pum
-4619 16250 t
-121 -227 m  58 -227 14 -180 14 -112 ct 14 -45 59 5 120 5 ct 181 5 228 -47 228 -115 ct 
-228 -180 183 -227 121 -227 ct p
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-65 -66 58 -101 58 -136 ct 58 -183 80 -213 115 -213 ct p ef
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-452 -222 452 -222 375 -222 ct 375 -222 375 -222 375 -213 ct 405 -213 411 -208 411 -183 ct 
-411 -183 411 -183 411 -67 ct 411 -53 409 -46 402 -41 ct 389 -30 374 -24 359 -24 ct 
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-p
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-1087 -222 1087 -222 1010 -222 ct 1010 -222 1010 -222 1010 -213 ct 1040 -213 1046 -208 1046 -183 ct 
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-976 -24 960 -41 960 -61 ct 960 -61 960 -61 960 -222 ct 960 -222 960 -222 889 -222 ct 
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-1117 -18 1117 -18 1117 -25 ct p ef
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-1205 -284 1204 -286 1201 -286 ct 1198 -281 1195 -277 1191 -272 ct 1173 -245 1152 -221 1145 -219 ct 
-1139 -216 1136 -212 1136 -210 ct 1136 -208 1137 -207 1138 -206 ct 1138 -206 1138 -206 1164 -206 ct 
-1164 -206 1164 -206 1164 -58 ct 1164 -16 1178 5 1207 5 ct 1231 5 1249 -7 1265 -33 ct 
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-1205 -65 1205 -65 1205 -206 ct 1205 -206 1205 -206 1253 -206 ct 1253 -206 1253 -206 1253 -222 ct 
-p ef
-pom
-gr
-gs
-pum
-4138 16851 t
-143 -334 m  107 -310 92 -297 75 -274 ct 40 -231 23 -182 23 -124 ct 23 -62 41 -13 84 37 ct 
-104 61 116 72 141 87 ct 141 87 141 87 147 79 ct 108 48 95 31 82 -6 ct 70 -39 65 -76 65 -126 ct 
-65 -178 71 -218 84 -249 ct 98 -279 112 -297 147 -326 ct 147 -326 147 -326 143 -334 ct 
-p ef
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-233 -281 230 -277 226 -272 ct 208 -245 187 -221 180 -219 ct 174 -216 171 -212 171 -210 ct 
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-247 -21 240 -34 240 -65 ct 240 -65 240 -65 240 -206 ct 240 -206 240 -206 288 -206 ct 
-288 -206 288 -206 288 -222 ct p ef
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-805 -323 812 -318 820 -304 ct 828 -291 834 -286 842 -286 ct 853 -286 862 -295 862 -306 ct 
-862 -324 841 -337 812 -337 ct 782 -337 756 -324 744 -301 ct 731 -279 727 -261 727 -222 ct 
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-827 -206 827 -206 827 -222 ct p ef
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-1016 -173 1014 -188 1006 -200 ct 996 -218 975 -227 946 -227 ct 901 -227 865 -203 865 -171 ct 
-865 -160 875 -150 886 -150 ct 898 -150 908 -160 908 -171 ct 908 -173 907 -175 907 -179 ct 
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-1052 -20 1052 -20 1052 -32 ct p
-977 -61 m  977 -45 975 -41 964 -35 ct 953 -28 939 -24 929 -24 ct 912 -24 899 -40 899 -62 ct 
-899 -62 899 -62 899 -63 ct 899 -92 918 -110 977 -132 ct 977 -132 977 -132 977 -61 ct 
-p ef
-1061 -192 m  1068 -194 1073 -194 1078 -194 ct 1090 -194 1095 -186 1095 -164 ct 
-1095 -164 1095 -164 1095 -41 ct 1095 -17 1091 -13 1060 -7 ct 1060 -7 1060 -7 1060 0 ct 
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-1135 -171 1156 -196 1169 -196 ct 1172 -196 1177 -193 1182 -188 ct 1190 -182 1195 -179 1201 -179 ct 
-1213 -179 1220 -187 1220 -201 ct 1220 -217 1210 -227 1194 -227 ct 1173 -227 1159 -216 1135 -181 ct 
-1135 -181 1135 -181 1135 -226 ct 1135 -226 1135 -226 1133 -227 ct 1107 -216 1090 -210 1061 -200 ct 
-1061 -200 1061 -200 1061 -192 ct p ef
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-1393 -137 1393 -137 1542 -137 ct 1538 -169 1533 -183 1521 -199 ct 1507 -217 1484 -227 1459 -227 ct 
-1435 -227 1412 -218 1394 -201 ct 1371 -181 1358 -146 1358 -106 ct 1358 -37 1393 5 1449 5 ct 
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-1394 -153 m  1399 -191 1416 -209 1445 -209 ct 1475 -209 1486 -196 1493 -153 ct 
-1493 -153 1493 -153 1394 -153 ct p ef
-1574 -196 m  1577 -198 1581 -198 1587 -198 ct 1600 -198 1605 -191 1605 -166 ct 
-1605 -166 1605 -166 1605 -44 ct 1605 -15 1599 -8 1575 -8 ct 1575 -8 1575 -8 1575 0 ct 
-1575 0 1575 0 1677 0 ct 1677 0 1677 0 1677 -8 ct 1653 -8 1645 -14 1645 -32 ct 1645 -32 1645 -32 1645 -171 ct 
-1669 -194 1679 -200 1695 -200 ct 1719 -200 1731 -184 1731 -152 ct 1731 -152 1731 -152 1731 -48 ct 
-1731 -17 1724 -8 1700 -8 ct 1700 -8 1700 -8 1700 0 ct 1700 0 1700 0 1801 0 ct 1801 0 1801 0 1801 -7 ct 
-1777 -10 1771 -16 1771 -40 ct 1771 -40 1771 -40 1771 -153 ct 1771 -199 1750 -227 1714 -227 ct 
-1692 -227 1677 -219 1644 -187 ct 1644 -187 1644 -187 1644 -226 ct 1644 -226 1644 -226 1641 -227 ct 
-1617 -218 1600 -213 1574 -205 ct 1574 -205 1574 -205 1574 -196 ct p ef
-1983 5 m  1983 5 1983 5 2054 -21 ct 2054 -21 2054 -21 2054 -28 ct 2045 -28 2044 -28 2043 -28 ct 
-2025 -28 2021 -33 2021 -56 ct 2021 -56 2021 -56 2021 -336 ct 2021 -336 2021 -336 2019 -337 ct 
-1996 -329 1979 -324 1948 -315 ct 1948 -315 1948 -315 1948 -308 ct 1952 -308 1954 -308 1958 -308 ct 
-1976 -308 1981 -303 1981 -283 ct 1981 -283 1981 -283 1981 -206 ct 1962 -222 1949 -227 1930 -227 ct 
-1874 -227 1829 -171 1829 -101 ct 1829 -38 1865 5 1919 5 ct 1946 5 1964 -5 1981 -28 ct 
-1981 -28 1981 -28 1981 4 ct 1981 4 1981 4 1983 5 ct p
-1981 -50 m  1981 -47 1977 -41 1972 -35 ct 1964 -26 1952 -21 1938 -21 ct 1897 -21 1871 -60 1871 -121 ct 
-1871 -177 1894 -213 1931 -213 ct 1957 -213 1981 -190 1981 -164 ct 1981 -164 1981 -164 1981 -50 ct 
-p ef
-2084 87 m  2120 64 2135 51 2153 28 ct 2187 -15 2204 -64 2204 -122 ct 2204 -185 2186 -233 2143 -283 ct 
-2124 -307 2111 -318 2086 -334 ct 2086 -334 2086 -334 2080 -326 ct 2119 -295 2132 -277 2145 -240 ct 
-2157 -207 2162 -170 2162 -120 ct 2162 -69 2156 -28 2143 2 ct 2129 33 2115 51 2080 79 ct 
-2080 79 2080 79 2084 87 ct p ef
-pom
-gr
-gr
-gs
-gs
-pum
-8742 14319 t
-7 -199 m  14 -200 17 -201 23 -201 ct 51 -201 58 -188 81 -103 ct 89 -71 101 -13 101 -4 ct 
-101 4 98 11 91 20 ct 76 41 66 54 60 59 ct 50 70 44 74 38 74 ct 35 74 31 73 26 69 ct 
-18 63 13 60 7 60 ct -3 60 -12 69 -12 80 ct -12 92 -1 102 13 102 ct 45 102 110 27 163 -71 ct 
-197 -131 210 -167 210 -191 ct 210 -206 198 -219 183 -219 ct 172 -219 164 -211 164 -200 ct 
-164 -193 168 -188 178 -181 ct 187 -176 191 -171 191 -164 ct 191 -145 172 -106 130 -36 ct 
-130 -36 130 -36 121 -94 ct 113 -137 85 -219 78 -219 ct 78 -219 78 -219 76 -219 ct 
-76 -218 74 -218 72 -218 ct 67 -217 49 -214 23 -209 ct 21 -209 14 -208 7 -207 ct 
-7 -207 7 -207 7 -199 ct p ef
-pom
-gr
-gs
-pum
-8962 14319 t
-143 -334 m  107 -310 92 -297 75 -274 ct 40 -231 23 -182 23 -124 ct 23 -62 41 -13 84 37 ct 
-104 61 116 72 141 87 ct 141 87 141 87 147 79 ct 108 48 95 31 82 -6 ct 70 -39 65 -76 65 -126 ct 
-65 -178 71 -218 84 -249 ct 98 -279 112 -297 147 -326 ct 147 -326 147 -326 143 -334 ct 
-p ef
-pom
-gr
-gs
-pum
-9127 14319 t
-227 -58 m  227 -58 227 -58 217 -45 ct 203 -27 194 -19 187 -19 ct 183 -19 179 -23 179 -27 ct 
-179 -31 179 -31 186 -58 ct 186 -58 186 -58 214 -160 ct 216 -170 218 -181 218 -188 ct 
-218 -206 205 -218 186 -218 ct 154 -218 123 -189 72 -110 ct 72 -110 72 -110 105 -217 ct 
-105 -217 105 -217 104 -218 ct 77 -213 67 -211 24 -203 ct 24 -203 24 -203 24 -195 ct 
-49 -195 55 -192 55 -182 ct 55 -179 55 -176 54 -173 ct 54 -173 54 -173 7 0 ct 7 0 7 0 44 0 ct 
-67 -78 72 -89 93 -123 ct 123 -168 148 -193 166 -193 ct 174 -193 178 -188 178 -179 ct 
-178 -173 175 -156 171 -141 ct 171 -141 171 -141 150 -60 ct 143 -35 142 -28 142 -23 ct 
-142 -4 149 4 165 4 ct 187 4 200 -6 234 -52 ct 234 -52 234 -52 227 -58 ct p ef
-pom
-gr
-gs
-pum
-9377 14319 t
-18 87 m  54 64 69 51 87 28 ct 121 -15 138 -64 138 -122 ct 138 -185 120 -233 77 -283 ct 
-58 -307 45 -318 20 -334 ct 20 -334 20 -334 14 -326 ct 53 -295 66 -277 79 -240 ct 
-91 -207 96 -170 96 -120 ct 96 -69 90 -28 77 2 ct 63 33 49 51 14 79 ct 14 79 14 79 18 87 ct 
-p ef
-pom
-gr
-gr
-gs
-gs
-pum
-8742 14186 t
-45 -147 m  114 -290 l  183 -147 l  216 -147 l  128 -327 l  99 -327 l  12 -147 l 
-45 -147 l  p ef
-pom
-gr
-gr
-gs
-gs
-pum
-14351 14292 t
-7 -199 m  14 -200 17 -201 23 -201 ct 51 -201 58 -188 81 -103 ct 89 -71 101 -13 101 -4 ct 
-101 4 98 11 91 20 ct 76 41 66 54 60 59 ct 50 70 44 74 38 74 ct 35 74 31 73 26 69 ct 
-18 63 13 60 7 60 ct -3 60 -12 69 -12 80 ct -12 92 -1 102 13 102 ct 45 102 110 27 163 -71 ct 
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-\begin_body
-
-\begin_layout Title
-The Speex Manual
-\begin_inset Newline newline
-\end_inset
-
-Version 1.2
-\end_layout
-
-\begin_layout Author
-Jean-Marc Valin
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Copyright 
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-copyright
-\end_layout
-
-\end_inset
-
- 2002-2008 Jean-Marc Valin/Xiph.org Foundation
-\end_layout
-
-\begin_layout Standard
-Permission is granted to copy, distribute and/or modify this document under
- the terms of the GNU Free Documentation License, Version 1.1 or any later
- version published by the Free Software Foundation; with no Invariant Section,
- with no Front-Cover Texts, and with no Back-Cover.
- A copy of the license is included in the section entitled "GNU Free Documentati
-on License".
- 
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\begin_inset CommandInset toc
-LatexCommand tableofcontents
-
-\end_inset
-
-
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset FloatList table
-
-\end_inset
-
-
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Introduction to Speex
-\end_layout
-
-\begin_layout Standard
-The Speex codec (
-\family typewriter
-http://www.speex.org/
-\family default
-) exists because there is a need for a speech codec that is open-source
- and free from software patent royalties.
- These are essential conditions for being usable in any open-source software.
- In essence, Speex is to speech what Vorbis is to audio/music.
- Unlike many other speech codecs, Speex is not designed for mobile phones
- but rather for packet networks and voice over IP (VoIP) applications.
- File-based compression is of course also supported.
- 
-\end_layout
-
-\begin_layout Standard
-The Speex codec is designed to be very flexible and support a wide range
- of speech quality and bit-rate.
- Support for very good quality speech also means that Speex can encode wideband
- speech (16 kHz sampling rate) in addition to narrowband speech (telephone
- quality, 8 kHz sampling rate).
-\end_layout
-
-\begin_layout Standard
-Designing for VoIP instead of mobile phones means that Speex is robust to
- lost packets, but not to corrupted ones.
- This is based on the assumption that in VoIP, packets either arrive unaltered
- or don't arrive at all.
- Because Speex is targeted at a wide range of devices, it has modest (adjustable
-) complexity and a small memory footprint.
-\end_layout
-
-\begin_layout Standard
-All the design goals led to the choice of CELP
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-CELP
-\end_layout
-
-\end_inset
-
- as the encoding technique.
- One of the main reasons is that CELP has long proved that it could work
- reliably and scale well to both low bit-rates (e.g.
- DoD CELP @ 4.8 kbps) and high bit-rates (e.g.
- G.728 @ 16 kbps).
- 
-\end_layout
-
-\begin_layout Section
-Getting help
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Getting-help"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-As for many open source projects, there are many ways to get help with Speex.
- These include:
-\end_layout
-
-\begin_layout Itemize
-This manual
-\end_layout
-
-\begin_layout Itemize
-Other documentation on the Speex website (http://www.speex.org/)
-\end_layout
-
-\begin_layout Itemize
-Mailing list: Discuss any Speex-related topic on [email protected] (not
- just for developers)
-\end_layout
-
-\begin_layout Itemize
-IRC: The main channel is #speex on irc.freenode.net.
- Note that due to time differences, it may take a while to get someone,
- so please be patient.
-\end_layout
-
-\begin_layout Itemize
-Email the author privately at [email protected] 
-\series bold
-only
-\series default
- for private/delicate topics you do not wish to discuss publicly.
-\end_layout
-
-\begin_layout Standard
-Before asking for help (mailing list or IRC), 
-\series bold
-it is important to first read this manual
-\series default
- (OK, so if you made it here it's already a good sign).
- It is generally considered rude to ask on a mailing list about topics that
- are clearly detailed in the documentation.
- On the other hand, it's perfectly OK (and encouraged) to ask for clarifications
- about something covered in the manual.
- This manual does not (yet) cover everything about Speex, so everyone is
- encouraged to ask questions, send comments, feature requests, or just let
- us know how Speex is being used.
- 
-\end_layout
-
-\begin_layout Standard
-Here are some additional guidelines related to the mailing list.
- Before reporting bugs in Speex to the list, it is strongly recommended
- (if possible) to first test whether these bugs can be reproduced using
- the speexenc and speexdec (see Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Command-line-encoder/decoder"
-
-\end_inset
-
-) command-line utilities.
- Bugs reported based on 3rd party code are both harder to find and far too
- often caused by errors that have nothing to do with Speex.
- 
-\end_layout
-
-\begin_layout Section
-About this document
-\end_layout
-
-\begin_layout Standard
-This document is divided in the following way.
- Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Feature-description"
-
-\end_inset
-
- describes the different Speex features and defines many basic terms that
- are used throughout this manual.
- Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Command-line-encoder/decoder"
-
-\end_inset
-
- documents the standard command-line tools provided in the Speex distribution.
- Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Programming-with-Speex"
-
-\end_inset
-
- includes detailed instructions about programming using the libspeex
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-libspeex
-\end_layout
-
-\end_inset
-
- API.
- Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Formats-and-standards"
-
-\end_inset
-
- has some information related to Speex and standards.
- 
-\end_layout
-
-\begin_layout Standard
-The three last sections describe the algorithms used in Speex.
- These sections require signal processing knowledge, but are not required
- for merely using Speex.
- They are intended for people who want to understand how Speex really works
- and/or want to do research based on Speex.
- Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Introduction-to-CELP"
-
-\end_inset
-
- explains the general idea behind CELP, while sections 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Speex-narrowband-mode"
-
-\end_inset
-
- and 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Speex-wideband-mode"
-
-\end_inset
-
- are specific to Speex.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Codec description
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Feature-description"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-This section describes Speex and its features into more details.
-\end_layout
-
-\begin_layout Section
-Concepts
-\end_layout
-
-\begin_layout Standard
-Before introducing all the Speex features, here are some concepts in speech
- coding that help better understand the rest of the manual.
- Although some are general concepts in speech/audio processing, others are
- specific to Speex.
-\end_layout
-
-\begin_layout Subsection*
-Sampling rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-sampling rate
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The sampling rate expressed in Hertz (Hz) is the number of samples taken
- from a signal per second.
- For a sampling rate of 
-\begin_inset Formula $F_{s}$
-\end_inset
-
- kHz, the highest frequency that can be represented is equal to 
-\begin_inset Formula $F_{s}/2$
-\end_inset
-
- kHz (
-\begin_inset Formula $F_{s}/2$
-\end_inset
-
- is known as the Nyquist frequency).
- This is a fundamental property in signal processing and is described by
- the sampling theorem.
- Speex is mainly designed for three different sampling rates: 8 kHz, 16
- kHz, and 32 kHz.
- These are respectively referred to as narrowband
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-narrowband
-\end_layout
-
-\end_inset
-
-, wideband
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-wideband
-\end_layout
-
-\end_inset
-
- and ultra-wideband
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-ultra-wideband
-\end_layout
-
-\end_inset
-
-.
- 
-\end_layout
-
-\begin_layout Subsection*
-Bit-rate
-\end_layout
-
-\begin_layout Standard
-When encoding a speech signal, the bit-rate is defined as the number of
- bits per unit of time required to encode the speech.
- It is measured in 
-\emph on
-bits per second
-\emph default
- (bps), or generally 
-\emph on
-kilobits per second
-\emph default
-.
- It is important to make the distinction between 
-\emph on
-kilo
-\series bold
-bits
-\series default
-\emph default
- 
-\emph on
-per second
-\emph default
- (k
-\series bold
-b
-\series default
-ps) and 
-\emph on
-kilo
-\series bold
-bytes
-\series default
-\emph default
- 
-\emph on
-per second
-\emph default
- (k
-\series bold
-B
-\series default
-ps).
-\end_layout
-
-\begin_layout Subsection*
-Quality
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-quality
-\end_layout
-
-\end_inset
-
- (variable)
-\end_layout
-
-\begin_layout Standard
-Speex is a lossy codec, which means that it achieves compression at the
- expense of fidelity of the input speech signal.
- Unlike some other speech codecs, it is possible to control the trade-off
- made between quality and bit-rate.
- The Speex encoding process is controlled most of the time by a quality
- parameter that ranges from 0 to 10.
- In constant bit-rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-constant bit-rate
-\end_layout
-
-\end_inset
-
- (CBR) operation, the quality parameter is an integer, while for variable
- bit-rate (VBR), the parameter is a float.
- 
-\end_layout
-
-\begin_layout Subsection*
-Complexity
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-complexity
-\end_layout
-
-\end_inset
-
- (variable)
-\end_layout
-
-\begin_layout Standard
-With Speex, it is possible to vary the complexity allowed for the encoder.
- This is done by controlling how the search is performed with an integer
- ranging from 1 to 10 in a way that's similar to the -1 to -9 options to
- 
-\emph on
-gzip
-\emph default
- and 
-\emph on
-bzip2
-\emph default
- compression utilities.
- For normal use, the noise level at complexity 1 is between 1 and 2 dB higher
- than at complexity 10, but the CPU requirements for complexity 10 is about
- 5 times higher than for complexity 1.
- In practice, the best trade-off is between complexity 2 and 4, though higher
- settings are often useful when encoding non-speech sounds like DTMF
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-DTMF
-\end_layout
-
-\end_inset
-
- tones.
-\end_layout
-
-\begin_layout Subsection*
-Variable Bit-Rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-variable bit-rate
-\end_layout
-
-\end_inset
-
- (VBR)
-\end_layout
-
-\begin_layout Standard
-Variable bit-rate (VBR) allows a codec to change its bit-rate dynamically
- to adapt to the 
-\begin_inset Quotes eld
-\end_inset
-
-difficulty
-\begin_inset Quotes erd
-\end_inset
-
- of the audio being encoded.
- In the example of Speex, sounds like vowels and high-energy transients
- require a higher bit-rate to achieve good quality, while fricatives (e.g.
- s,f sounds) can be coded adequately with less bits.
- For this reason, VBR can achieve lower bit-rate for the same quality, or
- a better quality for a certain bit-rate.
- Despite its advantages, VBR has two main drawbacks: first, by only specifying
- quality, there's no guaranty about the final average bit-rate.
- Second, for some real-time applications like voice over IP (VoIP), what
- counts is the maximum bit-rate, which must be low enough for the communication
- channel.
-\end_layout
-
-\begin_layout Subsection*
-Average Bit-Rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-average bit-rate
-\end_layout
-
-\end_inset
-
- (ABR)
-\end_layout
-
-\begin_layout Standard
-Average bit-rate solves one of the problems of VBR, as it dynamically adjusts
- VBR quality in order to meet a specific target bit-rate.
- Because the quality/bit-rate is adjusted in real-time (open-loop), the
- global quality will be slightly lower than that obtained by encoding in
- VBR with exactly the right quality setting to meet the target average bit-rate.
-\end_layout
-
-\begin_layout Subsection*
-Voice Activity Detection
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-voice activity detection
-\end_layout
-
-\end_inset
-
- (VAD)
-\end_layout
-
-\begin_layout Standard
-When enabled, voice activity detection detects whether the audio being encoded
- is speech or silence/background noise.
- VAD is always implicitly activated when encoding in VBR, so the option
- is only useful in non-VBR operation.
- In this case, Speex detects non-speech periods and encode them with just
- enough bits to reproduce the background noise.
- This is called 
-\begin_inset Quotes eld
-\end_inset
-
-comfort noise generation
-\begin_inset Quotes erd
-\end_inset
-
- (CNG).
-\end_layout
-
-\begin_layout Subsection*
-Discontinuous Transmission
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-discontinuous transmission
-\end_layout
-
-\end_inset
-
- (DTX)
-\end_layout
-
-\begin_layout Standard
-Discontinuous transmission is an addition to VAD/VBR operation, that allows
- to stop transmitting completely when the background noise is stationary.
- In file-based operation, since we cannot just stop writing to the file,
- only 5 bits are used for such frames (corresponding to 250 bps).
-\end_layout
-
-\begin_layout Subsection*
-Perceptual enhancement
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-perceptual enhancement
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Perceptual enhancement is a part of the decoder which, when turned on, attempts
- to reduce the perception of the noise/distortion produced by the encoding/decod
-ing process.
- In most cases, perceptual enhancement brings the sound further from the
- original 
-\emph on
-objectively
-\emph default
- (e.g.
- considering only SNR), but in the end it still 
-\emph on
-sounds
-\emph default
- better (subjective improvement).
-\end_layout
-
-\begin_layout Subsection*
-Latency and algorithmic delay
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-algorithmic delay
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Every speech codec introduces a delay in the transmission.
- For Speex, this delay is equal to the frame size, plus some amount of 
-\begin_inset Quotes eld
-\end_inset
-
-look-ahead
-\begin_inset Quotes erd
-\end_inset
-
- required to process each frame.
- In narrowband operation (8 kHz), the look-ahead is 10 ms, in wideband operation
- (16 kHz), the look-ahead is 13.9 ms and in ultra-wideband operation (32
- kHz) look-ahead is 15.9 ms, resulting in the algorithic delays of 30 ms,
- 33.9 ms and 35.9 ms accordingly.
- These values don't account for the CPU time it takes to encode or decode
- the frames.
-\end_layout
-
-\begin_layout Section
-Codec
-\end_layout
-
-\begin_layout Standard
-The main characteristics of Speex can be summarized as follows:
-\end_layout
-
-\begin_layout Itemize
-Free software/open-source
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-open-source
-\end_layout
-
-\end_inset
-
-, patent
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-patent
-\end_layout
-
-\end_inset
-
- and royalty-free
-\end_layout
-
-\begin_layout Itemize
-Integration of narrowband
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-narrowband
-\end_layout
-
-\end_inset
-
- and wideband
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-wideband
-\end_layout
-
-\end_inset
-
- using an embedded bit-stream
-\end_layout
-
-\begin_layout Itemize
-Wide range of bit-rates available (from 2.15 kbps to 44 kbps)
-\end_layout
-
-\begin_layout Itemize
-Dynamic bit-rate switching (AMR) and Variable Bit-Rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-variable bit-rate
-\end_layout
-
-\end_inset
-
- (VBR) operation
-\end_layout
-
-\begin_layout Itemize
-Voice Activity Detection
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-voice activity detection
-\end_layout
-
-\end_inset
-
- (VAD, integrated with VBR) and discontinuous transmission (DTX)
-\end_layout
-
-\begin_layout Itemize
-Variable complexity
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-complexity
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Itemize
-Embedded wideband structure (scalable sampling rate)
-\end_layout
-
-\begin_layout Itemize
-Ultra-wideband sampling rate at 32 kHz
-\end_layout
-
-\begin_layout Itemize
-Intensity stereo encoding option
-\end_layout
-
-\begin_layout Itemize
-Fixed-point implementation
-\end_layout
-
-\begin_layout Section
-Preprocessor
-\end_layout
-
-\begin_layout Standard
-This part refers to the preprocessor module introduced in the 1.1.x branch.
- The preprocessor is designed to be used on the audio 
-\emph on
-before
-\emph default
- running the encoder.
- The preprocessor provides three main functionalities:
-\end_layout
-
-\begin_layout Itemize
-noise suppression
-\end_layout
-
-\begin_layout Itemize
-automatic gain control (AGC)
-\end_layout
-
-\begin_layout Itemize
-voice activity detection (VAD)
-\end_layout
-
-\begin_layout Standard
-The denoiser can be used to reduce the amount of background noise present
- in the input signal.
- This provides higher quality speech whether or not the denoised signal
- is encoded with Speex (or at all).
- However, when using the denoised signal with the codec, there is an additional
- benefit.
- Speech codecs in general (Speex included) tend to perform poorly on noisy
- input, which tends to amplify the noise.
- The denoiser greatly reduces this effect.
-\end_layout
-
-\begin_layout Standard
-Automatic gain control (AGC) is a feature that deals with the fact that
- the recording volume may vary by a large amount between different setups.
- The AGC provides a way to adjust a signal to a reference volume.
- This is useful for voice over IP because it removes the need for manual
- adjustment of the microphone gain.
- A secondary advantage is that by setting the microphone gain to a conservative
- (low) level, it is easier to avoid clipping.
-\end_layout
-
-\begin_layout Standard
-The voice activity detector (VAD) provided by the preprocessor is more advanced
- than the one directly provided in the codec.
- 
-\end_layout
-
-\begin_layout Section
-Adaptive Jitter Buffer
-\end_layout
-
-\begin_layout Standard
-When transmitting voice (or any content for that matter) over UDP or RTP,
- packet may be lost, arrive with different delay, or even out of order.
- The purpose of a jitter buffer is to reorder packets and buffer them long
- enough (but no longer than necessary) so they can be sent to be decoded.
- 
-\end_layout
-
-\begin_layout Section
-Acoustic Echo Canceller
-\end_layout
-
-\begin_layout Standard
-In any hands-free communication system (Fig.
- 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "fig:Acoustic-echo-model"
-
-\end_inset
-
-), speech from the remote end is played in the local loudspeaker, propagates
- in the room and is captured by the microphone.
- If the audio captured from the microphone is sent directly to the remote
- end, then the remote user hears an echo of his voice.
- An acoustic echo canceller is designed to remove the acoustic echo before
- it is sent to the remote end.
- It is important to understand that the echo canceller is meant to improve
- the quality on the 
-\series bold
-remote
-\series default
- end.
- For those who care a lot about mouth-to-ear delays it should be noted that
- unlike Speex codec, resampler and preprocessor, this Acoustic Echo Canceller
- does not introduce any latency.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float figure
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Graphics
-	filename echo_path.eps
-	width 10cm
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Acoustic echo model
-\begin_inset CommandInset label
-LatexCommand label
-name "fig:Acoustic-echo-model"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Resampler
-\end_layout
-
-\begin_layout Standard
-In some cases, it may be useful to convert audio from one sampling rate
- to another.
- There are many reasons for that.
- It can be for mixing streams that have different sampling rates, for supporting
- sampling rates that the soundcard doesn't support, for transcoding, etc.
- That's why there is now a resampler that is part of the Speex project.
- This resampler can be used to convert between any two arbitrary rates (the
- ratio must only be a rational number) and there is control over the quality/com
-plexity tradeoff.
- Keep in mind, that resampler introduce some delay in audio stream, which
- size depends on resampler quality setting.
- Refer to resampler API documentation to know how to get exact delay values.
-\end_layout
-
-\begin_layout Section
-Integration
-\end_layout
-
-\begin_layout Standard
-Knowing 
-\emph on
-how
-\emph default
- to use each of the components is not that useful unless we know 
-\emph on
-where
-\emph default
- to use them.
- Figure 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "fig:Integration-VoIP"
-
-\end_inset
-
- shows where each of the components would be used in a typical VoIP client.
- Components in dotted lines are optional, though they may be very useful
- in some circumstances.
- There are several important things to note from there.
- The AEC must be placed as close as possible to the playback and capture.
- Only the resampling may be closer.
- Also, it is very important to use the same clock for both mic capture and
- speaker/headphones playback.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float figure
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Graphics
-	filename components.eps
-	width 80text%
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Integration of all the components in a VoIP client.
-\begin_inset CommandInset label
-LatexCommand label
-name "fig:Integration-VoIP"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Compiling and Porting
-\end_layout
-
-\begin_layout Standard
-Compiling Speex under UNIX/Linux or any other platform supported by autoconf
- (e.g.
- Win32/cygwin) is as easy as typing:
-\end_layout
-
-\begin_layout LyX-Code
-% ./configure [options]
-\end_layout
-
-\begin_layout LyX-Code
-% make
-\end_layout
-
-\begin_layout LyX-Code
-% make install
-\end_layout
-
-\begin_layout Standard
-The options supported by the Speex configure script are:
-\end_layout
-
-\begin_layout Description
---prefix=<path> Specifies the base path for installing Speex (e.g.
- /usr)
-\end_layout
-
-\begin_layout Description
---enable-shared/--disable-shared Whether to compile shared libraries
-\end_layout
-
-\begin_layout Description
---enable-static/--disable-static Whether to compile static libraries
-\end_layout
-
-\begin_layout Description
---disable-wideband Disable the wideband part of Speex (typically to save
- space)
-\end_layout
-
-\begin_layout Description
---enable-valgrind Enable extra hits for valgrind for debugging purposes
- (do not use by default)
-\end_layout
-
-\begin_layout Description
---enable-sse Enable use of SSE instructions (x86/float only)
-\end_layout
-
-\begin_layout Description
---enable-fixed-point
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-fixed-point
-\end_layout
-
-\end_inset
-
- Compile Speex for a processor that does not have a floating point unit
- (FPU)
-\end_layout
-
-\begin_layout Description
---enable-arm4-asm Enable assembly specific to the ARMv4 architecture (gcc
- only)
-\end_layout
-
-\begin_layout Description
---enable-arm5e-asm Enable assembly specific to the ARMv5E architecture (gcc
- only)
-\end_layout
-
-\begin_layout Description
---enable-fixed-point-debug Use only for debugging the fixed-point
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-fixed-point
-\end_layout
-
-\end_inset
-
- code (very slow)
-\end_layout
-
-\begin_layout Description
---enable-ti-c55x Enable support for the TI C5x family
-\end_layout
-
-\begin_layout Description
---enable-blackfin-asm Enable assembly specific to the Blackfin DSP architecture
- (gcc only)
-\end_layout
-
-\begin_layout Section
-Platforms
-\end_layout
-
-\begin_layout Standard
-Speex is known to compile and work on a large number of architectures, both
- floating-point and fixed-point.
- In general, any architecture that can natively compute the multiplication
- of two signed 16-bit numbers (32-bit result) and runs at a sufficient clock
- rate (architecture-dependent) is capable of running Speex.
- Architectures on which Speex is 
-\series bold
-known
-\series default
- to work (it probably works on many others) are:
-\end_layout
-
-\begin_layout Itemize
-x86 & x86-64
-\end_layout
-
-\begin_layout Itemize
-Power
-\end_layout
-
-\begin_layout Itemize
-SPARC
-\end_layout
-
-\begin_layout Itemize
-ARM
-\end_layout
-
-\begin_layout Itemize
-Blackfin
-\end_layout
-
-\begin_layout Itemize
-Coldfire (68k family)
-\end_layout
-
-\begin_layout Itemize
-TI C54xx & C55xx
-\end_layout
-
-\begin_layout Itemize
-TI C6xxx
-\end_layout
-
-\begin_layout Itemize
-TriMedia (experimental)
-\end_layout
-
-\begin_layout Standard
-Operating systems on top of which Speex is known to work include (it probably
- works on many others):
-\end_layout
-
-\begin_layout Itemize
-Linux
-\end_layout
-
-\begin_layout Itemize
-\begin_inset Formula $\mu$
-\end_inset
-
-Clinux
-\end_layout
-
-\begin_layout Itemize
-MacOS X
-\end_layout
-
-\begin_layout Itemize
-BSD
-\end_layout
-
-\begin_layout Itemize
-Other UNIX/POSIX variants
-\end_layout
-
-\begin_layout Itemize
-Symbian
-\end_layout
-
-\begin_layout Standard
-The source code directory include additional information for compiling on
- certain architectures or operating systems in README.xxx files.
-\end_layout
-
-\begin_layout Section
-Porting and Optimising
-\end_layout
-
-\begin_layout Standard
-Here are a few things to consider when porting or optimising Speex for a
- new platform or an existing one.
-\end_layout
-
-\begin_layout Subsection
-CPU optimisation
-\end_layout
-
-\begin_layout Standard
-The single factor that will affect the CPU usage of Speex the most is whether
- it is compiled for floating point or fixed-point.
- If your CPU/DSP does not have a floating-point unit FPU, then compiling
- as fixed-point will be orders of magnitudes faster.
- If there is an FPU present, then it is important to test which version
- is faster.
- On the x86 architecture, floating-point is 
-\series bold
-generally
-\series default
- faster, but not always.
- To compile Speex as fixed-point, you need to pass --fixed-point to the
- configure script or define the FIXED_POINT macro for the compiler.
- As of 1.2beta3, it is now possible to disable the floating-point compatibility
- API, which means that your code can link without a float emulation library.
- To do that configure with --disable-float-api or define the DISABLE_FLOAT_API
- macro.
- Until the VBR feature is ported to fixed-point, you will also need to configure
- with --disable-vbr or define DISABLE_VBR.
-\end_layout
-
-\begin_layout Standard
-Other important things to check on some DSP architectures are:
-\end_layout
-
-\begin_layout Itemize
-Make sure the cache is set to write-back mode
-\end_layout
-
-\begin_layout Itemize
-If the chip has SRAM instead of cache, make sure as much code and data are
- in SRAM, rather than in RAM
-\end_layout
-
-\begin_layout Standard
-If you are going to be writing assembly, then the following functions are
- 
-\series bold
-usually
-\series default
- the first ones you should consider optimising:
-\end_layout
-
-\begin_layout Itemize
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-filter_mem16()
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Itemize
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-iir_mem16()
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Itemize
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-vq_nbest()
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Itemize
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-pitch_xcorr()
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Itemize
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-interp_pitch()
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The filtering functions 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-filter_mem16()
-\end_layout
-
-\end_inset
-
- and 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-iir_mem16()
-\end_layout
-
-\end_inset
-
- are implemented in the direct form II transposed (DF2T).
- However, for architectures based on multiply-accumulate (MAC), DF2T requires
- frequent reload of the accumulator, which can make the code very slow.
- For these architectures (e.g.
- Blackfin and Coldfire), a better approach is to implement those functions
- as direct form I (DF1), which is easier to express in terms of MAC.
- When doing that however, 
-\series bold
-it is important to make sure that the DF1 implementation still behaves like
- the original DF2T behaviour when it comes to memory values
-\series default
-.
- This is necessary because the filter is time-varying and must compute exactly
- the same value (not counting machine rounding) on any encoder or decoder.
-\end_layout
-
-\begin_layout Subsection
-Memory optimisation
-\end_layout
-
-\begin_layout Standard
-Memory optimisation is mainly something that should be considered for small
- embedded platforms.
- For PCs, Speex is already so tiny that it's just not worth doing any of
- the things suggested here.
- There are several ways to reduce the memory usage of Speex, both in terms
- of code size and data size.
- For optimising code size, the trick is to first remove features you do
- not need.
- Some examples of things that can easily be disabled 
-\series bold
-if you don't need them
-\series default
- are:
-\end_layout
-
-\begin_layout Itemize
-Wideband support (--disable-wideband)
-\end_layout
-
-\begin_layout Itemize
-Support for stereo (removing stereo.c)
-\end_layout
-
-\begin_layout Itemize
-VBR support (--disable-vbr or DISABLE_VBR)
-\end_layout
-
-\begin_layout Itemize
-Static codebooks that are not needed for the bit-rates you are using (*_table.c
- files)
-\end_layout
-
-\begin_layout Standard
-Speex also has several methods for allocating temporary arrays.
- When using a compiler that supports C99 properly (as of 2007, Microsoft
- compilers don't, but gcc does), it is best to define VAR_ARRAYS.
- That makes use of the variable-size array feature of C99.
- The next best is to define USE_ALLOCA so that Speex can use alloca() to
- allocate the temporary arrays.
- Note that on many systems, alloca() is buggy so it may not work.
- If none of VAR_ARRAYS and USE_ALLOCA are defined, then Speex falls back
- to allocating a large 
-\begin_inset Quotes eld
-\end_inset
-
-scratch space
-\begin_inset Quotes erd
-\end_inset
-
- and doing its own internal allocation.
- The main disadvantage of this solution is that it is wasteful.
- It needs to allocate enough stack for the worst case scenario (worst bit-rate,
- highest complexity setting, ...) and by default, the memory isn't shared between
- multiple encoder/decoder states.
- Still, if the 
-\begin_inset Quotes eld
-\end_inset
-
-manual
-\begin_inset Quotes erd
-\end_inset
-
- allocation is the only option left, there are a few things that can be
- improved.
- By overriding the speex_alloc_scratch() call in os_support.h, it is possible
- to always return the same memory area for all states
-\begin_inset Foot
-status collapsed
-
-\begin_layout Plain Layout
-In this case, one must be careful with threads
-\end_layout
-
-\end_inset
-
-.
- In addition to that, by redefining the NB_ENC_STACK and NB_DEC_STACK (or
- similar for wideband), it is possible to only allocate memory for a scenario
- that is known in advance.
- In this case, it is important to measure the amount of memory required
- for the specific sampling rate, bit-rate and complexity level being used.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Command-line encoder/decoder
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Command-line-encoder/decoder"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The base Speex distribution includes a command-line encoder (
-\emph on
-speexenc
-\emph default
-) and decoder (
-\emph on
-speexdec
-\emph default
-).
- Those tools produce and read Speex files encapsulated in the Ogg container.
- Although it is possible to encapsulate Speex in any container, Ogg is the
- recommended container for files.
- This section describes how to use the command line tools for Speex files
- in Ogg.
-\end_layout
-
-\begin_layout Section
-
-\emph on
-speexenc
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-speexenc
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The 
-\emph on
-speexenc
-\emph default
- utility is used to create Speex files from raw PCM or wave files.
- It can be used by calling: 
-\end_layout
-
-\begin_layout LyX-Code
-speexenc [options] input_file output_file
-\end_layout
-
-\begin_layout Standard
-The value '-' for input_file or output_file corresponds respectively to
- stdin and stdout.
- The valid options are:
-\end_layout
-
-\begin_layout Description
---narrowband
-\begin_inset space ~
-\end_inset
-
-(-n) Tell Speex to treat the input as narrowband (8 kHz).
- This is the default
-\end_layout
-
-\begin_layout Description
---wideband
-\begin_inset space ~
-\end_inset
-
-(-w) Tell Speex to treat the input as wideband (16 kHz)
-\end_layout
-
-\begin_layout Description
---ultra-wideband
-\begin_inset space ~
-\end_inset
-
-(-u) Tell Speex to treat the input as 
-\begin_inset Quotes eld
-\end_inset
-
-ultra-wideband
-\begin_inset Quotes erd
-\end_inset
-
- (32 kHz)
-\end_layout
-
-\begin_layout Description
---quality
-\begin_inset space ~
-\end_inset
-
-n Set the encoding quality (0-10), default is 8
-\end_layout
-
-\begin_layout Description
---bitrate
-\begin_inset space ~
-\end_inset
-
-n Encoding bit-rate (use bit-rate n or lower) 
-\end_layout
-
-\begin_layout Description
---vbr Enable VBR (Variable Bit-Rate), disabled by default
-\end_layout
-
-\begin_layout Description
---abr
-\begin_inset space ~
-\end_inset
-
-n Enable ABR (Average Bit-Rate) at n kbps, disabled by default
-\end_layout
-
-\begin_layout Description
---vad Enable VAD (Voice Activity Detection), disabled by default
-\end_layout
-
-\begin_layout Description
---dtx Enable DTX (Discontinuous Transmission), disabled by default
-\end_layout
-
-\begin_layout Description
---nframes
-\begin_inset space ~
-\end_inset
-
-n Pack n frames in each Ogg packet (this saves space at low bit-rates)
-\end_layout
-
-\begin_layout Description
---comp
-\begin_inset space ~
-\end_inset
-
-n Set encoding speed/quality tradeoff.
- The higher the value of n, the slower the encoding (default is 3)
-\end_layout
-
-\begin_layout Description
--V Verbose operation, print bit-rate currently in use
-\end_layout
-
-\begin_layout Description
---help
-\begin_inset space ~
-\end_inset
-
-(-h) Print the help
-\end_layout
-
-\begin_layout Description
---version
-\begin_inset space ~
-\end_inset
-
-(-v) Print version information
-\end_layout
-
-\begin_layout Subsection*
-Speex comments
-\end_layout
-
-\begin_layout Description
---comment Add the given string as an extra comment.
- This may be used multiple times.
- 
-\end_layout
-
-\begin_layout Description
---author Author of this track.
- 
-\end_layout
-
-\begin_layout Description
---title Title for this track.
- 
-\end_layout
-
-\begin_layout Subsection*
-Raw input options
-\end_layout
-
-\begin_layout Description
---rate
-\begin_inset space ~
-\end_inset
-
-n Sampling rate for raw input
-\end_layout
-
-\begin_layout Description
---stereo Consider raw input as stereo 
-\end_layout
-
-\begin_layout Description
---le Raw input is little-endian 
-\end_layout
-
-\begin_layout Description
---be Raw input is big-endian 
-\end_layout
-
-\begin_layout Description
---8bit Raw input is 8-bit unsigned 
-\end_layout
-
-\begin_layout Description
---16bit Raw input is 16-bit signed 
-\end_layout
-
-\begin_layout Section
-
-\emph on
-speexdec
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-speexdec
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The 
-\emph on
-speexdec
-\emph default
- utility is used to decode Speex files and can be used by calling: 
-\end_layout
-
-\begin_layout LyX-Code
-speexdec [options] speex_file [output_file]
-\end_layout
-
-\begin_layout Standard
-The value '-' for input_file or output_file corresponds respectively to
- stdin and stdout.
- Also, when no output_file is specified, the file is played to the soundcard.
- The valid options are:
-\end_layout
-
-\begin_layout Description
---enh enable post-filter (default)
-\end_layout
-
-\begin_layout Description
---no-enh disable post-filter
-\end_layout
-
-\begin_layout Description
---force-nb Force decoding in narrowband 
-\end_layout
-
-\begin_layout Description
---force-wb Force decoding in wideband 
-\end_layout
-
-\begin_layout Description
---force-uwb Force decoding in ultra-wideband 
-\end_layout
-
-\begin_layout Description
---mono Force decoding in mono 
-\end_layout
-
-\begin_layout Description
---stereo Force decoding in stereo 
-\end_layout
-
-\begin_layout Description
---rate
-\begin_inset space ~
-\end_inset
-
-n Force decoding at n Hz sampling rate
-\end_layout
-
-\begin_layout Description
---packet-loss
-\begin_inset space ~
-\end_inset
-
-n Simulate n % random packet loss
-\end_layout
-
-\begin_layout Description
--V Verbose operation, print bit-rate currently in use
-\end_layout
-
-\begin_layout Description
---help
-\begin_inset space ~
-\end_inset
-
-(-h) Print the help
-\end_layout
-
-\begin_layout Description
---version
-\begin_inset space ~
-\end_inset
-
-(-v) Print version information
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Using the Speex Codec API (
-\emph on
-libspeex
-\emph default
-
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-libspeex
-\end_layout
-
-\end_inset
-
-)
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Programming-with-Speex"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The 
-\emph on
-libspeex
-\emph default
- library contains all the functions for encoding and decoding speech with
- the Speex codec.
- When linking on a UNIX system, one must add 
-\emph on
--lspeex -lm
-\emph default
- to the compiler command line.
- One important thing to know is that 
-\series bold
-libspeex calls are reentrant, but not thread-safe
-\series default
-.
- That means that it is fine to use calls from many threads, but 
-\series bold
-calls using the same state from multiple threads must be protected by mutexes
-\series default
-.
- Examples of code can also be found in Appendix 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Sample-code"
-
-\end_inset
-
- and the complete API documentation is included in the Documentation section
- of the Speex website (http://www.speex.org/).
-\end_layout
-
-\begin_layout Section
-Encoding
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Encoding"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-In order to encode speech using Speex, one first needs to:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-#include <speex/speex.h>
-\end_layout
-
-\end_inset
-
-Then in the code, a Speex bit-packing struct must be declared, along with
- a Speex encoder state:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-SpeexBits bits;
-\end_layout
-
-\begin_layout Plain Layout
-
-void *enc_state;
-\end_layout
-
-\end_inset
-
-The two are initialized by:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_bits_init(&bits);
-\end_layout
-
-\begin_layout Plain Layout
-
-enc_state = speex_encoder_init(&speex_nb_mode);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-For wideband coding, 
-\emph on
-speex_nb_mode
-\emph default
- will be replaced by 
-\emph on
-speex_wb_mode
-\emph default
-.
- In most cases, you will need to know the frame size used at the sampling
- rate you are using.
- You can get that value in the 
-\emph on
-frame_size
-\emph default
- variable (expressed in 
-\series bold
-samples
-\series default
-, not bytes) with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_encoder_ctl(enc_state,SPEEX_GET_FRAME_SIZE,&frame_size);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-In practice, 
-\emph on
-frame_size
-\emph default
- will correspond to 20 ms when using 8, 16, or 32 kHz sampling rate.
- There are many parameters that can be set for the Speex encoder, but the
- most useful one is the quality parameter that controls the quality vs bit-rate
- tradeoff.
- This is set by:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_encoder_ctl(enc_state,SPEEX_SET_QUALITY,&quality);
-\end_layout
-
-\end_inset
-
-where 
-\emph on
-quality
-\emph default
- is an integer value ranging from 0 to 10 (inclusively).
- The mapping between quality and bit-rate is described in Fig.
- 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:quality_vs_bps"
-
-\end_inset
-
- for narrowband.
-\end_layout
-
-\begin_layout Standard
-Once the initialization is done, for every input frame:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_bits_reset(&bits);
-\end_layout
-
-\begin_layout Plain Layout
-
-speex_encode_int(enc_state, input_frame, &bits);
-\end_layout
-
-\begin_layout Plain Layout
-
-nbBytes = speex_bits_write(&bits, byte_ptr, MAX_NB_BYTES);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-where 
-\emph on
-input_frame
-\emph default
- is a 
-\emph on
-(
-\emph default
-short 
-\emph on
-*)
-\emph default
- pointing to the beginning of a speech frame, 
-\emph on
-byte_ptr
-\emph default
- is a 
-\emph on
-(char *)
-\emph default
- where the encoded frame will be written, 
-\emph on
-MAX_NB_BYTES
-\emph default
- is the maximum number of bytes that can be written to 
-\emph on
-byte_ptr
-\emph default
- without causing an overflow and 
-\emph on
-nbBytes
-\emph default
- is the number of bytes actually written to 
-\emph on
-byte_ptr
-\emph default
- (the encoded size in bytes).
- Before calling speex_bits_write, it is possible to find the number of bytes
- that need to be written by calling 
-\family typewriter
-speex_bits_nbytes(&bits)
-\family default
-, which returns a number of bytes.
-\end_layout
-
-\begin_layout Standard
-It is still possible to use the 
-\emph on
-speex_encode()
-\emph default
- function, which takes a 
-\emph on
-(float *)
-\emph default
- for the audio.
- However, this would make an eventual port to an FPU-less platform (like
- ARM) more complicated.
- Internally, 
-\emph on
-speex_encode()
-\emph default
- and 
-\emph on
-speex_encode_int()
-\emph default
- are processed in the same way.
- Whether the encoder uses the fixed-point version is only decided by the
- compile-time flags, not at the API level.
-\end_layout
-
-\begin_layout Standard
-After you're done with the encoding, free all resources with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_bits_destroy(&bits);
-\end_layout
-
-\begin_layout Plain Layout
-
-speex_encoder_destroy(enc_state);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-That's about it for the encoder.
- 
-\end_layout
-
-\begin_layout Section
-Decoding
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Decoding"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-In order to decode speech using Speex, you first need to:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-#include <speex/speex.h>
-\end_layout
-
-\end_inset
-
-You also need to declare a Speex bit-packing struct
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-SpeexBits bits;
-\end_layout
-
-\end_inset
-
-and a Speex decoder state
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-void *dec_state;
-\end_layout
-
-\end_inset
-
-The two are initialized by:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_bits_init(&bits);
-\end_layout
-
-\begin_layout Plain Layout
-
-dec_state = speex_decoder_init(&speex_nb_mode);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-For wideband decoding, 
-\emph on
-speex_nb_mode
-\emph default
- will be replaced by 
-\emph on
-speex_wb_mode
-\emph default
-.
- If you need to obtain the size of the frames that will be used by the decoder,
- you can get that value in the 
-\emph on
-frame_size
-\emph default
- variable (expressed in 
-\series bold
-samples
-\series default
-, not bytes) with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_decoder_ctl(dec_state, SPEEX_GET_FRAME_SIZE, &frame_size);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-There is also a parameter that can be set for the decoder: whether or not
- to use a perceptual enhancer.
- This can be set by: 
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_decoder_ctl(dec_state, SPEEX_SET_ENH, &enh);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-where 
-\emph on
-enh
-\emph default
- is an int with value 0 to have the enhancer disabled and 1 to have it enabled.
- As of 1.2-beta1, the default is now to enable the enhancer.
-\end_layout
-
-\begin_layout Standard
-Again, once the decoder initialization is done, for every input frame:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_bits_read_from(&bits, input_bytes, nbBytes);
-\end_layout
-
-\begin_layout Plain Layout
-
-speex_decode_int(dec_state, &bits, output_frame);
-\end_layout
-
-\end_inset
-
-where input_bytes is a 
-\emph on
-(char *)
-\emph default
- containing the bit-stream data received for a frame, 
-\emph on
-nbBytes
-\emph default
- is the size (in bytes) of that bit-stream, and 
-\emph on
-output_frame
-\emph default
- is a 
-\emph on
-(short *)
-\emph default
- and points to the area where the decoded speech frame will be written.
- A NULL value as the second argument indicates that we don't have the bits
- for the current frame.
- When a frame is lost, the Speex decoder will do its best to "guess" the
- correct signal.
-\end_layout
-
-\begin_layout Standard
-As for the encoder, the 
-\emph on
-speex_decode()
-\emph default
- function can still be used, with a 
-\emph on
-(float *)
-\emph default
- as the output for the audio.
- After you're done with the decoding, free all resources with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_bits_destroy(&bits);
-\end_layout
-
-\begin_layout Plain Layout
-
-speex_decoder_destroy(dec_state);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Codec Options (speex_*_ctl)
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Codec-Options"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Quote
-\align center
-
-\emph on
-Entities should not be multiplied beyond necessity -- William of Ockham.
-\end_layout
-
-\begin_layout Quote
-\align center
-
-\emph on
-Just because there's an option for it doesn't mean you have to turn it on
- -- me.
-\end_layout
-
-\begin_layout Standard
-The Speex encoder and decoder support many options and requests that can
- be accessed through the 
-\emph on
-speex_encoder_ctl
-\emph default
- and 
-\emph on
-speex_decoder_ctl
-\emph default
- functions.
- These functions are similar to the 
-\emph on
-ioctl
-\emph default
- system call and their prototypes are:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-void speex_encoder_ctl(void *encoder, int request, void *ptr);
-\end_layout
-
-\begin_layout Plain Layout
-
-void speex_decoder_ctl(void *encoder, int request, void *ptr);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Despite those functions, the defaults are usually good for many applications
- and 
-\series bold
-optional settings should only be used when one understands them and knows
- that they are needed
-\series default
-.
- A common error is to attempt to set many unnecessary settings.
- 
-\end_layout
-
-\begin_layout Standard
-Here is a list of the values allowed for the requests.
- Some only apply to the encoder or the decoder.
- Because the last argument is of type 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-void *
-\end_layout
-
-\end_inset
-
-, the 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-_ctl()
-\end_layout
-
-\end_inset
-
- functions are 
-\series bold
-not type safe
-\series default
-, and should thus be used with care.
- The type 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- is the same as the C99 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-int32_t
-\end_layout
-
-\end_inset
-
- type.
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_ENH
-\begin_inset Formula $\ddagger$
-\end_inset
-
- Set perceptual enhancer
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-perceptual enhancement
-\end_layout
-
-\end_inset
-
- to on (1) or off (0) (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-, default is on)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_ENH
-\begin_inset Formula $\ddagger$
-\end_inset
-
- Get perceptual enhancer status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_FRAME_SIZE Get the number of samples per frame for the current
- mode (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_QUALITY
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set the encoder speech quality (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- from 0 to 10, default is 8)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_QUALITY
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get the current encoder speech quality (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- from 0 to 10)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_MODE
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set the mode number, as specified in the RTP spec (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_MODE
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get the current mode number, as specified in the RTP spec (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_VBR
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set variable bit-rate (VBR) to on (1) or off (0) (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-, default is off)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_VBR
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get variable bit-rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-variable bit-rate
-\end_layout
-
-\end_inset
-
- (VBR) status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_VBR_QUALITY
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set the encoder VBR speech quality (float 0.0 to 10.0, default is 8.0)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_VBR_QUALITY
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get the current encoder VBR speech quality (float 0 to 10)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_COMPLEXITY
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set the CPU resources allowed for the encoder (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- from 1 to 10, default is 2)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_COMPLEXITY
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get the CPU resources allowed for the encoder (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- from 1 to 10, default is 2)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_BITRATE
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set the bit-rate to use the closest value not exceeding the parameter (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in bits per second)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_BITRATE Get the current bit-rate in use (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in bits per second)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_SAMPLING_RATE Set real sampling rate (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in Hz)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_SAMPLING_RATE Get real sampling rate (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in Hz)
-\end_layout
-
-\begin_layout Description
-SPEEX_RESET_STATE Reset the encoder/decoder state to its original state,
- clearing all memories (no argument)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_VAD
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set voice activity detection
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-voice activity detection
-\end_layout
-
-\end_inset
-
- (VAD) to on (1) or off (0) (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-, default is off)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_VAD
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get voice activity detection (VAD) status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_DTX
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set discontinuous transmission
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-discontinuous transmission
-\end_layout
-
-\end_inset
-
- (DTX) to on (1) or off (0) (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-, default is off)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_DTX
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get discontinuous transmission (DTX) status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_ABR
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set average bit-rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-average bit-rate
-\end_layout
-
-\end_inset
-
- (ABR) to a value n in bits per second (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in bits per second)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_ABR
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get average bit-rate (ABR) setting (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in bits per second)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_PLC_TUNING
-\begin_inset Formula $\dagger$
-\end_inset
-
- Tell the encoder to optimize encoding for a certain percentage of packet
- loss (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in percent)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_PLC_TUNING
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get the current tuning of the encoder for PLC (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in percent)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_LOOKAHEAD Returns the lookahead used by Speex separately for an
- encoder and a decoder.
- Sum encoder and decoder lookahead values to get the total codec lookahead.
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_VBR_MAX_BITRATE
-\begin_inset Formula $\dagger$
-\end_inset
-
- Set the maximum bit-rate allowed in VBR operation (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in bits per second)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_VBR_MAX_BITRATE
-\begin_inset Formula $\dagger$
-\end_inset
-
- Get the current maximum bit-rate allowed in VBR operation (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
- in bits per second)
-\end_layout
-
-\begin_layout Description
-SPEEX_SET_HIGHPASS Set the high-pass filter on (1) or off (0) (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-, default is on)
-\end_layout
-
-\begin_layout Description
-SPEEX_GET_HIGHPASS Get the current high-pass filter status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-\begin_inset Formula $\dagger$
-\end_inset
-
- applies only to the encoder
-\end_layout
-
-\begin_layout Description
-\begin_inset Formula $\ddagger$
-\end_inset
-
- applies only to the decoder
-\end_layout
-
-\begin_layout Section
-Mode queries
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Mode-queries"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Speex modes have a query system similar to the speex_encoder_ctl and speex_decod
-er_ctl calls.
- Since modes are read-only, it is only possible to get information about
- a particular mode.
- The function used to do that is:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-void speex_mode_query(SpeexMode *mode, int request, void *ptr);
-\end_layout
-
-\end_inset
-
-The admissible values for request are (unless otherwise note, the values
- are returned through 
-\emph on
-ptr
-\emph default
-):
-\end_layout
-
-\begin_layout Description
-SPEEX_MODE_FRAME_SIZE Get the frame size (in samples) for the mode
-\end_layout
-
-\begin_layout Description
-SPEEX_SUBMODE_BITRATE Get the bit-rate for a submode number specified through
- 
-\emph on
-ptr
-\emph default
- (integer in bps).
- 
-\end_layout
-
-\begin_layout Section
-Packing and in-band signalling
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-in-band signalling
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Sometimes it is desirable to pack more than one frame per packet (or other
- basic unit of storage).
- The proper way to do it is to call speex_encode 
-\begin_inset Formula $N$
-\end_inset
-
- times before writing the stream with speex_bits_write.
- In cases where the number of frames is not determined by an out-of-band
- mechanism, it is possible to include a terminator code.
- That terminator consists of the code 15 (decimal) encoded with 5 bits,
- as shown in Table 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:quality_vs_bps"
-
-\end_inset
-
-.
- Note that as of version 1.0.2, calling speex_bits_write automatically inserts
- the terminator so as to fill the last byte.
- This doesn't involves any overhead and makes sure Speex can always detect
- when there is no more frame in a packet.
-\end_layout
-
-\begin_layout Standard
-It is also possible to send in-band 
-\begin_inset Quotes eld
-\end_inset
-
-messages
-\begin_inset Quotes erd
-\end_inset
-
- to the other side.
- All these messages are encoded as 
-\begin_inset Quotes eld
-\end_inset
-
-pseudo-frames
-\begin_inset Quotes erd
-\end_inset
-
- of mode 14 which contain a 4-bit message type code, followed by the message.
- Table 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:In-band-signalling-codes"
-
-\end_inset
-
- lists the available codes, their meaning and the size of the message that
- follows.
- Most of these messages are requests that are sent to the encoder or decoder
- on the other end, which is free to comply or ignore them.
- By default, all in-band messages are ignored.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float table
-placement htbp
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Tabular
-<lyxtabular version="3" rows="17" columns="3">
-<features>
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Code
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Size (bits)
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Content
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks decoder to set perceptual enhancement off (0) or on(1)
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks (if 1) the encoder to be less 
-\begin_inset Quotes eld
-\end_inset
-
-aggressive
-\begin_inset Quotes erd
-\end_inset
-
- due to high packet loss
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-2
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks encoder to switch to mode N
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-3
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks encoder to switch to mode N for low-band
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks encoder to switch to mode N for high-band
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks encoder to switch to quality N for VBR
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-6
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Request acknowledge (0=no, 1=all, 2=only for in-band data)
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Asks encoder to set CBR (0), VAD(1), DTX(3), VBR(5), VBR+DTX(7)
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-8
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-8
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Transmit (8-bit) character to the other end
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-9
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-8
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Intensity stereo information
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-10
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-16
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Announce maximum bit-rate acceptable (N in bytes/second)
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-11
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-16
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-reserved
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-12
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-32
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Acknowledge receiving packet N
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-13
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-32
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-reserved
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-14
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-64
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-reserved
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-15
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-64
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-reserved
-\end_layout
-
-\end_inset
-</cell>
-</row>
-</lyxtabular>
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-In-band signalling codes
-\begin_inset CommandInset label
-LatexCommand label
-name "cap:In-band-signalling-codes"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Finally, applications may define custom in-band messages using mode 13.
- The size of the message in bytes is encoded with 5 bits, so that the decoder
- can skip it if it doesn't know how to interpret it.
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Speech Processing API (
-\emph on
-libspeexdsp
-\emph default
-)
-\end_layout
-
-\begin_layout Standard
-As of version 1.2beta3, the non-codec parts of the Speex package are now
- in a separate library called 
-\emph on
-libspeexdsp
-\emph default
-.
- This library includes the preprocessor, the acoustic echo canceller, the
- jitter buffer, and the resampler.
- In a UNIX environment, it can be linked into a program by adding 
-\emph on
--lspeexdsp -lm
-\emph default
- to the compiler command line.
- Just like for libspeex, 
-\series bold
-libspeexdsp calls are reentrant, but not thread-safe
-\series default
-.
- That means that it is fine to use calls from many threads, but 
-\series bold
-calls using the same state from multiple threads must be protected by mutexes
-\series default
-.
-\end_layout
-
-\begin_layout Section
-Preprocessor
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Preprocessor"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\noindent
-In order to use the Speex preprocessor
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-preprocessor
-\end_layout
-
-\end_inset
-
-, you first need to:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-#include <speex/speex_preprocess.h>
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\noindent
-Then, a preprocessor state can be created as:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-SpeexPreprocessState *preprocess_state = speex_preprocess_state_init(frame_size,
- sampling_rate);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\noindent
-and it is recommended to use the same value for 
-\family typewriter
-frame_size
-\family default
- as is used by the encoder (20 
-\emph on
-ms
-\emph default
-).
-\end_layout
-
-\begin_layout Standard
-For each input frame, you need to call:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_preprocess_run(preprocess_state, audio_frame);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\noindent
-where 
-\family typewriter
-audio_frame
-\family default
- is used both as input and output.
- In cases where the output audio is not useful for a certain frame, it is
- possible to use instead:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_preprocess_estimate_update(preprocess_state, audio_frame);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\noindent
-This call will update all the preprocessor internal state variables without
- computing the output audio, thus saving some CPU cycles.
-\end_layout
-
-\begin_layout Standard
-The behaviour of the preprocessor can be changed using:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_preprocess_ctl(preprocess_state, request, ptr);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\noindent
-which is used in the same way as the encoder and decoder equivalent.
- Options are listed in Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sub:Preprocessor-options"
-
-\end_inset
-
-.
-\end_layout
-
-\begin_layout Standard
-The preprocessor state can be destroyed using:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_preprocess_state_destroy(preprocess_state);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Subsection
-Preprocessor options
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Preprocessor-options"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-As with the codec, the preprocessor also has options that can be controlled
- using an ioctl()-like call.
- The available options are:
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_DENOISE Turns denoising on(1) or off(0) (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_DENOISE Get denoising status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_AGC Turns automatic gain control (AGC) on(1) or off(0)
- (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_AGC Get AGC status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_VAD Turns voice activity detector (VAD) on(1) or off(0)
- (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_VAD Get VAD status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_AGC_LEVEL
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_AGC_LEVEL
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_DEREVERB Turns reverberation removal on(1) or off(0)
- (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_DEREVERB Get reverberation removal status (
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_DEREVERB_LEVEL Not working yet, do not use
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_DEREVERB_LEVEL Not working yet, do not use
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_DEREVERB_DECAY Not working yet, do not use
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_DEREVERB_DECAY Not working yet, do not use
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_PROB_START
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_PROB_START
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_PROB_CONTINUE
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_PROB_CONTINUE
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_NOISE_SUPPRESS Set maximum attenuation of the noise
- in dB (negative 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_NOISE_SUPPRESS Get maximum attenuation of the noise
- in dB (negative 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_ECHO_SUPPRESS Set maximum attenuation of the residual
- echo in dB (negative 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_ECHO_SUPPRESS Get maximum attenuation of the residual
- echo in dB (negative 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_ECHO_SUPPRESS_ACTIVE Set maximum attenuation of the
- echo in dB when near end is active (negative 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_ECHO_SUPPRESS_ACTIVE Get maximum attenuation of the
- echo in dB when near end is active (negative 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-spx_int32_t
-\end_layout
-
-\end_inset
-
-)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_SET_ECHO_STATE Set the associated echo canceller for residual
- echo suppression (pointer or NULL for no residual echo suppression)
-\end_layout
-
-\begin_layout Description
-SPEEX_PREPROCESS_GET_ECHO_STATE Get the associated echo canceller (pointer)
-\end_layout
-
-\begin_layout Section
-Echo Cancellation
-\begin_inset CommandInset label
-LatexCommand label
-name "sub:Echo-Cancellation"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The Speex library now includes an echo cancellation
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-echo cancellation
-\end_layout
-
-\end_inset
-
- algorithm suitable for Acoustic Echo Cancellation
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-acoustic echo cancellation
-\end_layout
-
-\end_inset
-
- (AEC).
- In order to use the echo canceller, you first need to
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-#include <speex/speex_echo.h>
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Then, an echo canceller state can be created by:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-SpeexEchoState *echo_state = speex_echo_state_init(frame_size, filter_length);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-where 
-\family typewriter
-frame_size
-\family default
- is the amount of data (in samples) you want to process at once and 
-\family typewriter
-filter_length
-\family default
- is the length (in samples) of the echo cancelling filter you want to use
- (also known as 
-\shape italic
-tail length
-\shape default
-
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-tail length
-\end_layout
-
-\end_inset
-
-).
- It is recommended to use a frame size in the order of 20 ms (or equal to
- the codec frame size) and make sure it is easy to perform an FFT of that
- size (powers of two are better than prime sizes).
- The recommended tail length is approximately the third of the room reverberatio
-n time.
- For example, in a small room, reverberation time is in the order of 300
- ms, so a tail length of 100 ms is a good choice (800 samples at 8000 Hz
- sampling rate).
-\end_layout
-
-\begin_layout Standard
-Once the echo canceller state is created, audio can be processed by:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_echo_cancellation(echo_state, input_frame, echo_frame, output_frame);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-where 
-\family typewriter
-input_frame
-\family default
- is the audio as captured by the microphone, 
-\family typewriter
-echo_frame
-\family default
- is the signal that was played in the speaker (and needs to be removed)
- and 
-\family typewriter
-output_frame
-\family default
- is the signal with echo removed.
- 
-\end_layout
-
-\begin_layout Standard
-One important thing to keep in mind is the relationship between 
-\family typewriter
-input_frame
-\family default
- and 
-\family typewriter
-echo_frame
-\family default
-.
- It is important that, at any time, any echo that is present in the input
- has already been sent to the echo canceller as 
-\family typewriter
-echo_frame
-\family default
-.
- In other words, the echo canceller cannot remove a signal that it hasn't
- yet received.
- On the other hand, the delay between the input signal and the echo signal
- must be small enough because otherwise part of the echo cancellation filter
- is inefficient.
- In the ideal case, you code would look like:
-\begin_inset listings
-lstparams "breaklines=true"
-inline false
-status open
-
-\begin_layout Plain Layout
-
-write_to_soundcard(echo_frame, frame_size);
-\end_layout
-
-\begin_layout Plain Layout
-
-read_from_soundcard(input_frame, frame_size);
-\end_layout
-
-\begin_layout Plain Layout
-
-speex_echo_cancellation(echo_state, input_frame, echo_frame, output_frame);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-If you wish to further reduce the echo present in the signal, you can do
- so by associating the echo canceller to the preprocessor (see Section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sub:Preprocessor"
-
-\end_inset
-
-).
- This is done by calling:
-\begin_inset listings
-lstparams "breaklines=true"
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_preprocess_ctl(preprocess_state, SPEEX_PREPROCESS_SET_ECHO_STATE,echo_stat
-e);
-\end_layout
-
-\end_inset
-
-in the initialisation.
-\end_layout
-
-\begin_layout Standard
-As of version 1.2-beta2, there is an alternative, simpler API that can be
- used instead of 
-\emph on
-speex_echo_cancellation()
-\emph default
-.
- When audio capture and playback are handled asynchronously (e.g.
- in different threads or using the 
-\emph on
-poll()
-\emph default
- or 
-\emph on
-select()
-\emph default
- system call), it can be difficult to keep track of what input_frame comes
- with what echo_frame.
- Instead, the playback context/thread can simply call:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_echo_playback(echo_state, echo_frame);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-every time an audio frame is played.
- Then, the capture context/thread calls:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_echo_capture(echo_state, input_frame, output_frame);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-for every frame captured.
- Internally, 
-\emph on
-speex_echo_playback()
-\emph default
- simply buffers the playback frame so it can be used by 
-\emph on
-speex_echo_capture()
-\emph default
- to call 
-\emph on
-speex_echo_cancel()
-\emph default
-.
- A side effect of using this alternate API is that the playback audio is
- delayed by two frames, which is the normal delay caused by the soundcard.
- When capture and playback are already synchronised, 
-\emph on
-speex_echo_cancellation()
-\emph default
- is preferable since it gives better control on the exact input/echo timing.
-\end_layout
-
-\begin_layout Standard
-The echo cancellation state can be destroyed with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_echo_state_destroy(echo_state);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-It is also possible to reset the state of the echo canceller so it can be
- reused without the need to create another state with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-speex_echo_state_reset(echo_state);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Subsection
-Troubleshooting
-\end_layout
-
-\begin_layout Standard
-There are several things that may prevent the echo canceller from working
- properly.
- One of them is a bug (or something suboptimal) in the code, but there are
- many others you should consider first
-\end_layout
-
-\begin_layout Itemize
-Using a different soundcard to do the capture and plaback will 
-\series bold
-not
-\series default
- work, regardless of what you may think.
- The only exception to that is if the two cards can be made to have their
- sampling clock 
-\begin_inset Quotes eld
-\end_inset
-
-locked
-\begin_inset Quotes erd
-\end_inset
-
- on the same clock source.
- If not, the clocks will always have a small amount of drift, which will
- prevent the echo canceller from adapting.
-\end_layout
-
-\begin_layout Itemize
-The delay between the record and playback signals must be minimal.
- Any signal played has to 
-\begin_inset Quotes eld
-\end_inset
-
-appear
-\begin_inset Quotes erd
-\end_inset
-
- on the playback (far end) signal slightly before the echo canceller 
-\begin_inset Quotes eld
-\end_inset
-
-sees
-\begin_inset Quotes erd
-\end_inset
-
- it in the near end signal, but excessive delay means that part of the filter
- length is wasted.
- In the worst situations, the delay is such that it is longer than the filter
- length, in which case, no echo can be cancelled.
-\end_layout
-
-\begin_layout Itemize
-When it comes to echo tail length (filter length), longer is 
-\series bold
-not
-\series default
- better.
- Actually, the longer the tail length, the longer it takes for the filter
- to adapt.
- Of course, a tail length that is too short will not cancel enough echo,
- but the most common problem seen is that people set a very long tail length
- and then wonder why no echo is being cancelled.
-\end_layout
-
-\begin_layout Itemize
-Non-linear distortion cannot (by definition) be modeled by the linear adaptive
- filter used in the echo canceller and thus cannot be cancelled.
- Use good audio gear and avoid saturation/clipping.
-\end_layout
-
-\begin_layout Standard
-Also useful is reading 
-\emph on
-Echo Cancellation Demystified
-\emph default
- by Alexey Frunze
-\begin_inset Foot
-status collapsed
-
-\begin_layout Plain Layout
-http://www.embeddedstar.com/articles/2003/7/article20030720-1.html
-\end_layout
-
-\end_inset
-
-, which explains the fundamental principles of echo cancellation.
- The details of the algorithm described in the article are different, but
- the general ideas of echo cancellation through adaptive filters are the
- same.
-\end_layout
-
-\begin_layout Standard
-As of version 1.2beta2, a new 
-\family typewriter
-echo_diagnostic.m
-\family default
- tool is included in the source distribution.
- The first step is to define DUMP_ECHO_CANCEL_DATA during the build.
- This causes the echo canceller to automatically save the near-end, far-end
- and output signals to files (aec_rec.sw aec_play.sw and aec_out.sw).
- These are exactly what the AEC receives and outputs.
- From there, it is necessary to start Octave and type:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-lstparams "language=Matlab"
-inline false
-status open
-
-\begin_layout Plain Layout
-
-echo_diagnostic('aec_rec.sw', 'aec_play.sw', 'aec_diagnostic.sw', 1024);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The value of 1024 is the filter length and can be changed.
- There will be some (hopefully) useful messages printed and echo cancelled
- audio will be saved to aec_diagnostic.sw .
- If even that output is bad (almost no cancellation) then there is  probably
- problem with the playback or recording process.
-\end_layout
-
-\begin_layout Section
-Jitter Buffer
-\end_layout
-
-\begin_layout Standard
-The jitter buffer can be enabled by including:
-\begin_inset listings
-lstparams "breaklines=true"
-inline false
-status open
-
-\begin_layout Plain Layout
-
-#include <speex/speex_jitter.h>
-\end_layout
-
-\end_inset
-
- and a new jitter buffer state can be initialised by:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-lstparams "breaklines=true"
-inline false
-status open
-
-\begin_layout Plain Layout
-
-JitterBuffer *state = jitter_buffer_init(step);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-where the 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-step
-\end_layout
-
-\end_inset
-
- argument is the default time step (in timestamp units) used for adjusting
- the delay and doing concealment.
- A value of 1 is always correct, but higher values may be more convenient
- sometimes.
- For example, if you are only able to do concealment on 20ms frames, there
- is no point in the jitter buffer asking you to do it on one sample.
- Another example is that for video, it makes no sense to adjust the delay
- by less than a full frame.
- The value provided can always be changed at a later time.
-\end_layout
-
-\begin_layout Standard
-The jitter buffer API is based on the 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-JitterBufferPacket
-\end_layout
-
-\end_inset
-
- type, which is defined as:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-typedef struct {
-\end_layout
-
-\begin_layout Plain Layout
-
-   char        *data;       /* Data bytes contained in the packet */
-\end_layout
-
-\begin_layout Plain Layout
-
-   spx_uint32_t len;        /* Length of the packet in bytes */
-\end_layout
-
-\begin_layout Plain Layout
-
-   spx_uint32_t timestamp;  /* Timestamp for the packet */
-\end_layout
-
-\begin_layout Plain Layout
-
-   spx_uint32_t span;       /* Time covered by the packet (timestamp units)
- */
-\end_layout
-
-\begin_layout Plain Layout
-
-} JitterBufferPacket; 
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-As an example, for audio the timestamp field would be what is obtained from
- the RTP timestamp field and the span would be the number of samples that
- are encoded in the packet.
- For Speex narrowband, span would be 160 if only one frame is included in
- the packet.
- 
-\end_layout
-
-\begin_layout Standard
-When a packet arrives, it need to be inserter into the jitter buffer by:
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-JitterBufferPacket packet;
-\end_layout
-
-\begin_layout Plain Layout
-
-/* Fill in each field in the packet struct */
-\end_layout
-
-\begin_layout Plain Layout
-
-jitter_buffer_put(state, &packet);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-When the decoder is ready to decode a packet the packet to be decoded can
- be obtained by: 
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-int start_offset;
-\end_layout
-
-\begin_layout Plain Layout
-
-err = jitter_buffer_get(state, &packet, desired_span, &start_offset);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-If 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-jitter_buffer_put()
-\end_layout
-
-\end_inset
-
- and 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-jitter_buffer_get()
-\end_layout
-
-\end_inset
-
- are called from different threads, then 
-\series bold
-you need to protect the jitter buffer state with a mutex
-\series default
-.
- 
-\end_layout
-
-\begin_layout Standard
-Because the jitter buffer is designed not to use an explicit timer, it needs
- to be told about the time explicitly.
- This is done by calling: 
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-jitter_buffer_tick(state);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-This needs to be done periodically in the playing thread.
- This will be the last jitter buffer call before going to sleep (until more
- data is played back).
- In some cases, it may be preferable to use 
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-jitter_buffer_remaining_span(state, remaining);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The second argument is used to specify that we are still holding data that
- has not been written to the playback device.
- For instance, if 256 samples were needed by the soundcard (specified by
- 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-desired_span
-\end_layout
-
-\end_inset
-
-), but 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-jitter_buffer_get()
-\end_layout
-
-\end_inset
-
- returned 320 samples, we would have 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-remaining=64
-\end_layout
-
-\end_inset
-
-.
-\end_layout
-
-\begin_layout Section
-Resampler
-\end_layout
-
-\begin_layout Standard
-Speex includes a resampling modules.
- To make use of the resampler, it is necessary to include its header file:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-#include <speex/speex_resampler.h>
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-For each stream that is to be resampled, it is necessary to create a resampler
- state with:
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-SpeexResamplerState *resampler;
-\end_layout
-
-\begin_layout Plain Layout
-
-resampler = speex_resampler_init(nb_channels, input_rate, output_rate, quality,
- &err);
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-where 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-nb_channels
-\end_layout
-
-\end_inset
-
- is the number of channels that will be used (either interleaved or non-interlea
-ved), 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-input_rate
-\end_layout
-
-\end_inset
-
- is the sampling rate of the input stream, 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-output_rate
-\end_layout
-
-\end_inset
-
- is the sampling rate of the output stream and 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-quality
-\end_layout
-
-\end_inset
-
- is the requested quality setting (0 to 10).
- The quality parameter is useful for controlling the quality/complexity/latency
- tradeoff.
- Using a higher quality setting means less noise/aliasing, a higher complexity
- and a higher latency.
- Usually, a quality of 3 is acceptable for most desktop uses and quality
- 10 is mostly recommended for pro audio work.
- Quality 0 usually has a decent sound (certainly better than using linear
- interpolation resampling), but artifacts may be heard.
-\end_layout
-
-\begin_layout Standard
-The actual resampling is performed using
-\end_layout
-
-\begin_layout Standard
-\begin_inset listings
-inline false
-status open
-
-\begin_layout Plain Layout
-
-err = speex_resampler_process_int(resampler, channelID, in, &in_length,
- out, &out_length);
-\end_layout
-
-\end_inset
-
-where 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-channelID
-\end_layout
-
-\end_inset
-
- is the ID of the channel to be processed.
- For a mono stream, use 0.
- The 
-\emph on
-in
-\emph default
- pointer points to the first sample of the input buffer for the selected
- channel and 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-out
-\end_layout
-
-\end_inset
-
- points to the first sample of the output.
- The size of the input and output buffers are specified by 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-in_length
-\end_layout
-
-\end_inset
-
- and 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-out_length
-\end_layout
-
-\end_inset
-
- respectively.
- Upon completion, these values are replaced by the number of samples read
- and written by the resampler.
- Unless an error occurs, either all input samples will be read or all output
- samples will be written to (or both).
- For floating-point samples, the function 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_process_float()
-\end_layout
-
-\end_inset
-
- behaves similarly.
-\end_layout
-
-\begin_layout Standard
-It is also possible to process multiple channels at once.
- To do that, you can use speex_resampler_process_interleaved_int() or 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_process_interleaved_float()
-\end_layout
-
-\end_inset
-
-.
- The arguments are the same except that there is no 
-\begin_inset listings
-inline true
-status collapsed
-
-\begin_layout Plain Layout
-
-channelID
-\end_layout
-
-\end_inset
-
- argument.
- Note that the 
-\series bold
-length parameters are per-channel
-\series default
-.
- So if you have 1024 samples for each of 4 channels, you pass 1024 and not
- 4096.
-\end_layout
-
-\begin_layout Standard
-The resampler allows changing the quality and input/output sampling frequencies
- on the fly without glitches.
- This can be done with calls such as 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_set_quality()
-\end_layout
-
-\end_inset
-
- and 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_set_rate()
-\end_layout
-
-\end_inset
-
-.
- The only side effect is that a new filter will have to be recomputed, consuming
- many CPU cycles.
- 
-\end_layout
-
-\begin_layout Standard
-When resampling a file, it is often desirable to have the output file perfectly
- synchronised with the input.
- To do that, you need to call 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_skip_zeros()
-\end_layout
-
-\end_inset
-
- 
-\series bold
-before
-\series default
- you start processing any samples.
- For real-time applications (e.g.
- VoIP), it is not recommended to do that as the first process frame will
- be shorter to compensate for the delay (the skipped zeros).
- Instead, in real-time applications you may want to know how many delay
- is introduced by the resampler.
- This can be done at run-time with 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_get_input_latency()
-\end_layout
-
-\end_inset
-
- and 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_get_output_latency()
-\end_layout
-
-\end_inset
-
- functions.
- First function returns delay measured in samples at input samplerate, while
- second returns delay measured in samples at output samplerate.
-\end_layout
-
-\begin_layout Standard
-To destroy a resampler state, just call 
-\begin_inset listings
-inline true
-status open
-
-\begin_layout Plain Layout
-
-speex_resampler_destroy()
-\end_layout
-
-\end_inset
-
-.
-\end_layout
-
-\begin_layout Section
-Ring Buffer
-\end_layout
-
-\begin_layout Standard
-In some cases, it is necessary to interface components that use different
- block sizes.
- For example, it is possible that the soundcard does not support reading/writing
- in blocks of 20
-\begin_inset space ~
-\end_inset
-
-ms or sometimes, complicated resampling ratios mean that the blocks don't
- always have the same time.
- In thoses cases, it is often necessary to buffer a bit of audio using a
- ring buffer.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Formats and standards
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-standards
-\end_layout
-
-\end_inset
-
-
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Formats-and-standards"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Speex can encode speech in both narrowband and wideband and provides different
- bit-rates.
- However, not all features need to be supported by a certain implementation
- or device.
- In order to be called 
-\begin_inset Quotes eld
-\end_inset
-
-Speex compatible
-\begin_inset Quotes erd
-\end_inset
-
- (whatever that means), an implementation must implement at least a basic
- set of features.
-\end_layout
-
-\begin_layout Standard
-At the minimum, all narrowband modes of operation MUST be supported at the
- decoder.
- This includes the decoding of a wideband bit-stream by the narrowband decoder
-\begin_inset Foot
-status collapsed
-
-\begin_layout Plain Layout
-The wideband bit-stream contains an embedded narrowband bit-stream which
- can be decoded alone
-\end_layout
-
-\end_inset
-
-.
- If present, a wideband decoder MUST be able to decode a narrowband stream,
- and MAY either be able to decode all wideband modes or be able to decode
- the embedded narrowband part of all modes (which includes ignoring the
- high-band bits).
-\end_layout
-
-\begin_layout Standard
-For encoders, at least one narrowband or wideband mode MUST be supported.
- The main reason why all encoding modes do not have to be supported is that
- some platforms may not be able to handle the complexity of encoding in
- some modes.
-\end_layout
-
-\begin_layout Section
-RTP
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-RTP
-\end_layout
-
-\end_inset
-
- Payload Format 
-\end_layout
-
-\begin_layout Standard
-The RTP payload draft is included in appendix 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:IETF-draft"
-
-\end_inset
-
- and the latest version is available at 
-\begin_inset Flex URL
-status collapsed
-
-\begin_layout Plain Layout
-
-http://www.speex.org/drafts/latest
-\end_layout
-
-\end_inset
-
-.
- This draft has been sent (2003/02/26) to the Internet Engineering Task
- Force (IETF) and will be discussed at the March 18th meeting in San Francisco.
- 
-\end_layout
-
-\begin_layout Section
-MIME Type
-\end_layout
-
-\begin_layout Standard
-For now, you should use the MIME type audio/x-speex for Speex-in-Ogg.
- We will apply for type 
-\family typewriter
-audio/speex
-\family default
- in the near future.
-\end_layout
-
-\begin_layout Section
-Ogg
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-Ogg
-\end_layout
-
-\end_inset
-
- file format
-\end_layout
-
-\begin_layout Standard
-Speex bit-streams can be stored in Ogg files.
- In this case, the first packet of the Ogg file contains the Speex header
- described in table 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:ogg_speex_header"
-
-\end_inset
-
-.
- All integer fields in the headers are stored as little-endian.
- The 
-\family typewriter
-speex_string
-\family default
- field must contain the 
-\begin_inset Quotes eld
-\end_inset
-
-
-\family typewriter
-Speex
-\family default
-
-\begin_inset space ~
-\end_inset
-
-
-\begin_inset space ~
-\end_inset
-
-
-\begin_inset space ~
-\end_inset
-
-
-\begin_inset Quotes erd
-\end_inset
-
- (with 3 trailing spaces), which identifies the bit-stream.
- The next field, 
-\family typewriter
-speex_version
-\family default
- contains the version of Speex that encoded the file.
- For now, refer to speex_header.[ch] for more info.
- The 
-\emph on
-beginning of stream
-\emph default
- (
-\family typewriter
-b_o_s
-\family default
-) flag is set to 1 for the header.
- The header packet has 
-\family typewriter
-packetno=0
-\family default
- and 
-\family typewriter
-granulepos=0
-\family default
-.
-\end_layout
-
-\begin_layout Standard
-The second packet contains the Speex comment header.
- The format used is the Vorbis comment format described here: http://www.xiph.org/
-ogg/vorbis/doc/v-comment.html .
- This packet has 
-\family typewriter
-packetno=1
-\family default
- and 
-\family typewriter
-granulepos=0
-\family default
-.
-\end_layout
-
-\begin_layout Standard
-The third and subsequent packets each contain one or more (number found
- in header) Speex frames.
- These are identified with 
-\family typewriter
-packetno
-\family default
- starting from 2 and the 
-\family typewriter
-granulepos
-\family default
- is the number of the last sample encoded in that packet.
- The last of these packets has the 
-\emph on
-end of stream
-\emph default
- (
-\family typewriter
-e_o_s
-\family default
-) flag is set to 1.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float table
-placement htbp
-wide true
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Tabular
-<lyxtabular version="3" rows="16" columns="3">
-<features>
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-\end_layout
-
-\end_inset
-</cell>
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-
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-</cell>
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-\begin_inset Text
-
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-
-\end_inset
-</cell>
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-\begin_inset Text
-
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-speex_string
-\end_layout
-
-\end_inset
-</cell>
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-\begin_inset Text
-
-\begin_layout Plain Layout
-char[]
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-8
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-</cell>
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-
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-\begin_inset Text
-
-\begin_layout Plain Layout
-char[]
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-
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_inset Text
-
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-\begin_inset Text
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-\begin_inset Text
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-\begin_inset Text
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-\begin_inset Text
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-\begin_inset Text
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\end_layout
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-\end_inset
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
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-\begin_inset Text
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-\begin_layout Plain Layout
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-\begin_inset Text
-
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-
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-reserved1
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-
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-\begin_inset Text
-
-\begin_layout Plain Layout
-reserved2
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-\begin_inset Text
-
-\begin_layout Plain Layout
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-</cell>
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-
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-</row>
-</lyxtabular>
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Ogg/Speex header packet
-\begin_inset CommandInset label
-LatexCommand label
-name "cap:ogg_speex_header"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-clearpage
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-Introduction to CELP Coding
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-CELP
-\end_layout
-
-\end_inset
-
-
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Introduction-to-CELP"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Quote
-\align center
-
-\emph on
-Do not meddle in the affairs of poles, for they are subtle and quick to
- leave the unit circle.
-\end_layout
-
-\begin_layout Standard
-Speex is based on CELP, which stands for Code Excited Linear Prediction.
- This section attempts to introduce the principles behind CELP, so if you
- are already familiar with CELP, you can safely skip to section 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "sec:Speex-narrowband-mode"
-
-\end_inset
-
-.
- The CELP technique is based on three ideas:
-\end_layout
-
-\begin_layout Enumerate
-The use of a linear prediction (LP) model to model the vocal tract
-\end_layout
-
-\begin_layout Enumerate
-The use of (adaptive and fixed) codebook entries as input (excitation) of
- the LP model
-\end_layout
-
-\begin_layout Enumerate
-The search performed in closed-loop in a 
-\begin_inset Quotes eld
-\end_inset
-
-perceptually weighted domain
-\begin_inset Quotes erd
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-This section describes the basic ideas behind CELP.
- This is still a work in progress.
-\end_layout
-
-\begin_layout Section
-Source-Filter Model of Speech Prediction
-\end_layout
-
-\begin_layout Standard
-The source-filter model of speech production assumes that the vocal cords
- are the source of spectrally flat sound (the excitation signal), and that
- the vocal tract acts as a filter to spectrally shape the various sounds
- of speech.
- While still an approximation, the model is widely used in speech coding
- because of its simplicity.Its use is also the reason why most speech codecs
- (Speex included) perform badly on music signals.
- The different phonemes can be distinguished by their excitation (source)
- and spectral shape (filter).
- Voiced sounds (e.g.
- vowels) have an excitation signal that is periodic and that can be approximated
- by an impulse train in the time domain or by regularly-spaced harmonics
- in the frequency domain.
- On the other hand, fricatives (such as the "s", "sh" and "f" sounds) have
- an excitation signal that is similar to white Gaussian noise.
- So called voice fricatives (such as "z" and "v") have excitation signal
- composed of an harmonic part and a noisy part.
-\end_layout
-
-\begin_layout Standard
-The source-filter model is usually tied with the use of Linear prediction.
- The CELP model is based on source-filter model, as can be seen from the
- CELP decoder illustrated in Figure 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "fig:The-CELP-model"
-
-\end_inset
-
-.
- 
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float figure
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Graphics
-	filename celp_decoder.eps
-	width 45page%
-	keepAspectRatio
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-The CELP model of speech synthesis (decoder)
-\begin_inset CommandInset label
-LatexCommand label
-name "fig:The-CELP-model"
-
-\end_inset
-
- 
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Linear Prediction Coefficients (LPC)
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-linear prediction
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Linear prediction is at the base of many speech coding techniques, including
- CELP.
- The idea behind it is to predict the signal 
-\begin_inset Formula $x[n]$
-\end_inset
-
- using a linear combination of its past samples:
-\end_layout
-
-\begin_layout Standard
-\begin_inset Formula \[
-y[n]=\sum_{i=1}^{N}a_{i}x[n-i]\]
-
-\end_inset
-
-where 
-\begin_inset Formula $y[n]$
-\end_inset
-
- is the linear prediction of 
-\begin_inset Formula $x[n]$
-\end_inset
-
-.
- The prediction error is thus given by:
-\begin_inset Formula \[
-e[n]=x[n]-y[n]=x[n]-\sum_{i=1}^{N}a_{i}x[n-i]\]
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The goal of the LPC analysis is to find the best prediction coefficients
- 
-\begin_inset Formula $a_{i}$
-\end_inset
-
- which minimize the quadratic error function:
-\begin_inset Formula \[
-E=\sum_{n=0}^{L-1}\left[e[n]\right]^{2}=\sum_{n=0}^{L-1}\left[x[n]-\sum_{i=1}^{N}a_{i}x[n-i]\right]^{2}\]
-
-\end_inset
-
-That can be done by making all derivatives 
-\begin_inset Formula $\frac{\partial E}{\partial a_{i}}$
-\end_inset
-
- equal to zero:
-\begin_inset Formula \[
-\frac{\partial E}{\partial a_{i}}=\frac{\partial}{\partial a_{i}}\sum_{n=0}^{L-1}\left[x[n]-\sum_{i=1}^{N}a_{i}x[n-i]\right]^{2}=0\]
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-For an order 
-\begin_inset Formula $N$
-\end_inset
-
- filter, the filter coefficients 
-\begin_inset Formula $a_{i}$
-\end_inset
-
- are found by solving the system 
-\begin_inset Formula $N\times N$
-\end_inset
-
- linear system 
-\begin_inset Formula $\mathbf{Ra}=\mathbf{r}$
-\end_inset
-
-, where
-\begin_inset Formula \[
-\mathbf{R}=\left[\begin{array}{cccc}
-R(0) & R(1) & \cdots & R(N-1)\\
-R(1) & R(0) & \cdots & R(N-2)\\
-\vdots & \vdots & \ddots & \vdots\\
-R(N-1) & R(N-2) & \cdots & R(0)\end{array}\right]\]
-
-\end_inset
-
-
-\begin_inset Formula \[
-\mathbf{r}=\left[\begin{array}{c}
-R(1)\\
-R(2)\\
-\vdots\\
-R(N)\end{array}\right]\]
-
-\end_inset
-
-with 
-\begin_inset Formula $R(m)$
-\end_inset
-
-, the auto-correlation
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-auto-correlation
-\end_layout
-
-\end_inset
-
- of the signal 
-\begin_inset Formula $x[n]$
-\end_inset
-
-, computed as:
-\end_layout
-
-\begin_layout Standard
-\begin_inset Formula \[
-R(m)=\sum_{i=0}^{N-1}x[i]x[i-m]\]
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Because 
-\begin_inset Formula $\mathbf{R}$
-\end_inset
-
- is Hermitian Toeplitz, the Levinson-Durbin
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-Levinson-Durbin
-\end_layout
-
-\end_inset
-
- algorithm can be used, making the solution to the problem 
-\begin_inset Formula $\mathcal{O}\left(N^{2}\right)$
-\end_inset
-
- instead of 
-\begin_inset Formula $\mathcal{O}\left(N^{3}\right)$
-\end_inset
-
-.
- Also, it can be proven that all the roots of 
-\begin_inset Formula $A(z)$
-\end_inset
-
- are within the unit circle, which means that 
-\begin_inset Formula $1/A(z)$
-\end_inset
-
- is always stable.
- This is in theory; in practice because of finite precision, there are two
- commonly used techniques to make sure we have a stable filter.
- First, we multiply 
-\begin_inset Formula $R(0)$
-\end_inset
-
- by a number slightly above one (such as 1.0001), which is equivalent to
- adding noise to the signal.
- Also, we can apply a window to the auto-correlation, which is equivalent
- to filtering in the frequency domain, reducing sharp resonances.
-\end_layout
-
-\begin_layout Section
-Pitch Prediction
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-pitch
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-During voiced segments, the speech signal is periodic, so it is possible
- to take advantage of that property by approximating the excitation signal
- 
-\begin_inset Formula $e[n]$
-\end_inset
-
- by a gain times the past of the excitation:
-\end_layout
-
-\begin_layout Standard
-\begin_inset Formula \[
-e[n]\simeq p[n]=\beta e[n-T]\ ,\]
-
-\end_inset
-
-where 
-\begin_inset Formula $T$
-\end_inset
-
- is the pitch period, 
-\begin_inset Formula $\beta$
-\end_inset
-
- is the pitch gain.
- We call that long-term prediction since the excitation is predicted from
- 
-\begin_inset Formula $e[n-T]$
-\end_inset
-
- with 
-\begin_inset Formula $T\gg N$
-\end_inset
-
-.
-\end_layout
-
-\begin_layout Section
-Innovation Codebook
-\end_layout
-
-\begin_layout Standard
-The final excitation 
-\begin_inset Formula $e[n]$
-\end_inset
-
- will be the sum of the pitch prediction and an 
-\emph on
-innovation
-\emph default
- signal 
-\begin_inset Formula $c[n]$
-\end_inset
-
- taken from a fixed codebook, hence the name 
-\emph on
-Code
-\emph default
- Excited Linear Prediction.
- The final excitation is given by
-\end_layout
-
-\begin_layout Standard
-\begin_inset Formula \[
-e[n]=p[n]+c[n]=\beta e[n-T]+c[n]\ .\]
-
-\end_inset
-
-The quantization of 
-\begin_inset Formula $c[n]$
-\end_inset
-
- is where most of the bits in a CELP codec are allocated.
- It represents the information that couldn't be obtained either from linear
- prediction or pitch prediction.
- In the 
-\emph on
-z
-\emph default
--domain we can represent the final signal 
-\begin_inset Formula $X(z)$
-\end_inset
-
- as
-\begin_inset Formula \[
-X(z)=\frac{C(z)}{A(z)\left(1-\beta z^{-T}\right)}\]
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Noise Weighting
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-error weighting
-\end_layout
-
-\end_inset
-
-
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-analysis-by-synthesis
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-Most (if not all) modern audio codecs attempt to 
-\begin_inset Quotes eld
-\end_inset
-
-shape
-\begin_inset Quotes erd
-\end_inset
-
- the noise so that it appears mostly in the frequency regions where the
- ear cannot detect it.
- For example, the ear is more tolerant to noise in parts of the spectrum
- that are louder and 
-\emph on
-vice versa
-\emph default
-.
- In order to maximize speech quality, CELP codecs minimize the mean square
- of the error (noise) in the perceptually weighted domain.
- This means that a perceptual noise weighting filter 
-\begin_inset Formula $W(z)$
-\end_inset
-
- is applied to the error signal in the encoder.
- In most CELP codecs, 
-\begin_inset Formula $W(z)$
-\end_inset
-
- is a pole-zero weighting filter derived from the linear prediction coefficients
- (LPC), generally using bandwidth expansion.
- Let the spectral envelope be represented by the synthesis filter 
-\begin_inset Formula $1/A(z)$
-\end_inset
-
-, CELP codecs typically derive the noise weighting filter as 
-\begin_inset Formula \begin{equation}
-W(z)=\frac{A(z/\gamma_{1})}{A(z/\gamma_{2})}\ ,\label{eq:gamma-weighting}\end{equation}
-
-\end_inset
-
-where 
-\begin_inset Formula $\gamma_{1}=0.9$
-\end_inset
-
- and 
-\begin_inset Formula $\gamma_{2}=0.6$
-\end_inset
-
- in the Speex reference implementation.
- If a filter 
-\begin_inset Formula $A(z)$
-\end_inset
-
- has (complex) poles at 
-\begin_inset Formula $p_{i}$
-\end_inset
-
- in the 
-\begin_inset Formula $z$
-\end_inset
-
--plane, the filter 
-\begin_inset Formula $A(z/\gamma)$
-\end_inset
-
- will have its poles at 
-\begin_inset Formula $p'_{i}=\gamma p_{i}$
-\end_inset
-
-, making it a flatter version of 
-\begin_inset Formula $A(z)$
-\end_inset
-
-.
-\end_layout
-
-\begin_layout Standard
-The weighting filter is applied to the error signal used to optimize the
- codebook search through analysis-by-synthesis (AbS).
- This results in a spectral shape of the noise that tends towards 
-\begin_inset Formula $1/W(z)$
-\end_inset
-
-.
- While the simplicity of the model has been an important reason for the
- success of CELP, it remains that 
-\begin_inset Formula $W(z)$
-\end_inset
-
- is a very rough approximation for the perceptually optimal noise weighting
- function.
- Fig.
- 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:Standard-noise-shaping"
-
-\end_inset
-
- illustrates the noise shaping that results from Eq.
- 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "eq:gamma-weighting"
-
-\end_inset
-
-.
- Throughout this paper, we refer to 
-\begin_inset Formula $W(z)$
-\end_inset
-
- as the noise weighting filter and to 
-\begin_inset Formula $1/W(z)$
-\end_inset
-
- as the noise shaping filter (or curve).
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float figure
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Graphics
-	filename ref_shaping.eps
-	width 45page%
-	keepAspectRatio
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Standard noise shaping in CELP.
- Arbitrary y-axis offset.
-\begin_inset CommandInset label
-LatexCommand label
-name "cap:Standard-noise-shaping"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Analysis-by-Synthesis
-\end_layout
-
-\begin_layout Standard
-One of the main principles behind CELP is called Analysis-by-Synthesis (AbS),
- meaning that the encoding (analysis) is performed by perceptually optimising
- the decoded (synthesis) signal in a closed loop.
- In theory, the best CELP stream would be produced by trying all possible
- bit combinations and selecting the one that produces the best-sounding
- decoded signal.
- This is obviously not possible in practice for two reasons: the required
- complexity is beyond any currently available hardware and the 
-\begin_inset Quotes eld
-\end_inset
-
-best sounding
-\begin_inset Quotes erd
-\end_inset
-
- selection criterion implies a human listener.
- 
-\end_layout
-
-\begin_layout Standard
-In order to achieve real-time encoding using limited computing resources,
- the CELP optimisation is broken down into smaller, more manageable, sequential
- searches using the perceptual weighting function described earlier.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Newpage newpage
-\end_inset
-
-
-\end_layout
-
-\begin_layout Chapter
-The Speex Decoder Specification
-\end_layout
-
-\begin_layout Section
-Narrowband decoder
-\end_layout
-
-\begin_layout Standard
-<Insert decoder figure here>
-\end_layout
-
-\begin_layout Subsection
-Narrowband modes
-\end_layout
-
-\begin_layout Standard
-There are 7 different narrowband bit-rates defined for Speex, ranging from
- 250 bps to 24.6 kbps, although the modes below 5.9 kbps should not be used
- for speech.
- The bit-allocation for each mode is detailed in table 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:bits-narrowband"
-
-\end_inset
-
-.
- Each frame starts with the mode ID encoded with 4 bits which allows a range
- from 0 to 15, though only the first 7 values are used (the others are reserved).
- The parameters are listed in the table in the order they are packed in
- the bit-stream.
- All frame-based parameters are packed before sub-frame parameters.
- The parameters for a certain sub-frame are all packed before the following
- sub-frame is packed.
- The 
-\begin_inset Quotes eld
-\end_inset
-
-OL
-\begin_inset Quotes erd
-\end_inset
-
- in the parameter description means that the parameter is an open loop estimatio
-n based on the whole frame.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float table
-placement h
-wide true
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Tabular
-<lyxtabular version="3" rows="12" columns="11">
-<features>
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
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-<column alignment="center" valignment="top" width="0pt">
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-\begin_inset Text
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-</cell>
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-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
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-18
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-
-\begin_layout Plain Layout
-18
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-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
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-
-\begin_layout Plain Layout
-30
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-
-\begin_layout Plain Layout
-30
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-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-30
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-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-18
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-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-OL pitch
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-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
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-\begin_layout Plain Layout
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-\begin_layout Plain Layout
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-\end_inset
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-
-\begin_layout Plain Layout
-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-OL Exc gain
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Fine pitch
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-sub-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Pitch gain
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-sub-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Innovation gain
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-sub-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-3
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-3
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-3
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Innovation VQ
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-sub-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-16
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-20
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-35
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-48
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-64
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-96
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-10
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Total
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-frame
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-43
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-119
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-160
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-220
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-300
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-364
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-492
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-79
-\end_layout
-
-\end_inset
-</cell>
-</row>
-</lyxtabular>
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Bit allocation for narrowband modes
-\begin_inset CommandInset label
-LatexCommand label
-name "cap:bits-narrowband"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Subsection
-LSP decoding
-\end_layout
-
-\begin_layout Standard
-Depending on the mode, LSP parameters are encoded using either 18 bits or
- 30 bits.
-\end_layout
-
-\begin_layout Standard
-Interpolation
-\end_layout
-
-\begin_layout Standard
-Safe margin
-\end_layout
-
-\begin_layout Subsection
-Adaptive codebook
-\end_layout
-
-\begin_layout Standard
-For rates of 8 kbit/s and above, the pitch period is encoded for each subframe.
- The real period is 
-\begin_inset Formula $T=p_{i}+17$
-\end_inset
-
- where 
-\begin_inset Formula $p_{i}$
-\end_inset
-
- is a value encoded with 7 bits and 17 corresponds to the minimum pitch.
- The maximum period is 144.
- At 5.95 kbit/s (mode 2), the pitch period is similarly encoded, but only
- once for the frame.
- Each sub-frame then has a 2-bit offset that is added to the pitch value
- of the frame.
- In that case, the pitch for each sub-frame is equal to 
-\begin_inset Formula $T-1+offset$
-\end_inset
-
-.
- For rates below 5.95 kbit/s, only the per-frame pitch is used and the pitch
- is constant for all sub-frames.
-\end_layout
-
-\begin_layout Standard
-Speex uses a 3-tap predictor for rates of 5.95 kbit/s and above.
- The three gain values are obtained from a 5-bit or a 7-bit codebook, depending
- on the mode.
-  
-\end_layout
-
-\begin_layout Subsection
-Innovation codebook
-\end_layout
-
-\begin_layout Standard
-Split codebook, size and entries depend on bit-rate
-\end_layout
-
-\begin_layout Standard
-a 5-bit gain is encoder on a per-frame basis
-\end_layout
-
-\begin_layout Standard
-Depending on the mode, higher resolution per sub-frame
-\end_layout
-
-\begin_layout Standard
-innovation sub-vectors concatenated, gain applied
-\end_layout
-
-\begin_layout Subsection
-Perceptual enhancement
-\end_layout
-
-\begin_layout Standard
-Optional, implementation-defined.
- 
-\end_layout
-
-\begin_layout Subsection
-Bit-stream definition
-\end_layout
-
-\begin_layout Standard
-This section defines the bit-stream that is transmitted on the wire.
- One speex packet consist of 1 frame header and 4 sub-frames:
-\end_layout
-
-\begin_layout Standard
-\begin_inset Tabular
-<lyxtabular version="3" rows="1" columns="5">
-<features>
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Frame Header
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Subframe 1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Subframe2
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Subframe 3
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Subframe 4
-\end_layout
-
-\end_inset
-</cell>
-</row>
-</lyxtabular>
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The frame header is variable length, depending on decoding mode and submode.
- The narrowband frame header is defined as follows:
-\end_layout
-
-\begin_layout Standard
-\begin_inset Tabular
-<lyxtabular version="3" rows="1" columns="6">
-<features>
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-wb bit
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-modeid
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-LSP
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-OL-pitch
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-OL-pitchgain
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-OL ExcGain
-\end_layout
-
-\end_inset
-</cell>
-</row>
-</lyxtabular>
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-wb-bit: Wideband bit (1 bit) 0=narrowband, 1=wideband
-\end_layout
-
-\begin_layout Standard
-modeid: Mode identifier (4 bits)
-\end_layout
-
-\begin_layout Standard
-LSP: Line Spectral Pairs (0, 18 or 30 bits)
-\end_layout
-
-\begin_layout Standard
-OL-pitch: Open Loop Pitch (0 or 7 bits)
-\end_layout
-
-\begin_layout Standard
-OL-pitchgain: Open Loop Pitch Gain (0 or 4 bits)
-\end_layout
-
-\begin_layout Standard
-OL-ExcGain: Open Loop Excitation Gain (0 or 5 bits)
-\end_layout
-
-\begin_layout Standard
-...
-\end_layout
-
-\begin_layout Standard
-Each subframe is defined as follows:
-\end_layout
-
-\begin_layout Standard
-\begin_inset Tabular
-<lyxtabular version="3" rows="1" columns="4">
-<features>
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<column alignment="center" valignment="top" width="0">
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-FinePitch
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-PitchGain
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-InnovationGain
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Innovation VQ
-\end_layout
-
-\end_inset
-</cell>
-</row>
-</lyxtabular>
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-FinePitch: (0 or 7 bits)
-\end_layout
-
-\begin_layout Standard
-PitchGain: (0, 5, or 7 bits)
-\end_layout
-
-\begin_layout Standard
-Innovation Gain: (0, 1, 3 bits)
-\end_layout
-
-\begin_layout Standard
-Innovation VQ: (0-96 bits)
-\end_layout
-
-\begin_layout Standard
-...
-\end_layout
-
-\begin_layout Subsection
-Sample decoder
-\end_layout
-
-\begin_layout Standard
-This section contains some sample source code, showing how a basic Speex
- decoder can be implemented.
- The sample decoder is narrowband submode 3 only, and with no advanced features
- like enhancement, vbr etc.
-\end_layout
-
-\begin_layout Standard
-...
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "nb_celp.c"
-lstparams "caption={Sample Decoder}"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Subsection
-Lookup tables
-\end_layout
-
-\begin_layout Standard
-The Speex decoder includes a set of lookup tables and codebooks, which are
- used to convert between values of different domains.
- This includes:
-\end_layout
-
-\begin_layout Standard
-- Excitation 10x16 (3200 bps)
-\end_layout
-
-\begin_layout Standard
-- Excitation 10x32 (4000 bps)
-\end_layout
-
-\begin_layout Standard
-- Excitation 20x32 (2000 bps)
-\end_layout
-
-\begin_layout Standard
-- Excitation 5x256 (12800 bps)
-\end_layout
-
-\begin_layout Standard
-- Excitation 5x64 (9600 bps)
-\end_layout
-
-\begin_layout Standard
-- Excitation 8x128 (7000 bps)
-\end_layout
-
-\begin_layout Standard
-- Codebook for 3-tap pitch prediction gain (Normal and Low Bitrate)
-\end_layout
-
-\begin_layout Standard
-- Codebook for LSPs in narrowband CELP mode
-\end_layout
-
-\begin_layout Standard
-...
-\end_layout
-
-\begin_layout Standard
-The exact lookup tables are included here for reference.
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/exc_5_64_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/exc_5_256_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/exc_8_128_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/exc_10_16_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/exc_10_32_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/exc_20_32_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/gain_table.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/gain_table_lbr.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand lstinputlisting
-filename "../libspeex/lsp_tables_nb.c"
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Wideband embedded decoder
-\end_layout
-
-\begin_layout Standard
-QMF filter.
- Narrowband signal decoded using narrowband decoder
-\end_layout
-
-\begin_layout Standard
-For the high band, the decoder is similar to the narrowband decoder, with
- the main difference being that there is no adaptive codebook.
-\end_layout
-
-\begin_layout Standard
-Gain is per-subframe
-\end_layout
-
-\begin_layout Chapter
-Speex narrowband mode
-\begin_inset CommandInset label
-LatexCommand label
-name "sec:Speex-narrowband-mode"
-
-\end_inset
-
-
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-narrowband
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-This section looks at how Speex works for narrowband (
-\begin_inset Formula $8\:\mathrm{kHz}$
-\end_inset
-
- sampling rate) operation.
- The frame size for this mode is 
-\begin_inset Formula $20\:\mathrm{ms}$
-\end_inset
-
-, corresponding to 160 samples.
- Each frame is also subdivided into 4 sub-frames of 40 samples each.
-\end_layout
-
-\begin_layout Standard
-Also many design decisions were based on the original goals and assumptions:
-\end_layout
-
-\begin_layout Itemize
-Minimizing the amount of information extracted from past frames (for robustness
- to packet loss)
-\end_layout
-
-\begin_layout Itemize
-Dynamically-selectable codebooks (LSP, pitch and innovation)
-\end_layout
-
-\begin_layout Itemize
-sub-vector fixed (innovation) codebooks
-\end_layout
-
-\begin_layout Section
-Whole-Frame Analysis
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-linear prediction
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-In narrowband, Speex frames are 20 ms long (160 samples) and are subdivided
- in 4 sub-frames of 5 ms each (40 samples).
- For most narrowband bit-rates (8 kbps and above), the only parameters encoded
- at the frame level are the Line Spectral Pairs (LSP) and a global excitation
- gain 
-\begin_inset Formula $g_{frame}$
-\end_inset
-
-, as shown in Fig.
- 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:Frame-open-loop-analysis"
-
-\end_inset
-
-.
- All other parameters are encoded at the sub-frame level.
-\end_layout
-
-\begin_layout Standard
-Linear prediction analysis is performed once per frame using an asymmetric
- Hamming window centered on the fourth sub-frame.
- Because linear prediction coefficients (LPC) are not robust to quantization,
- they are first converted to line spectral pairs (LSP)
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-line spectral pair
-\end_layout
-
-\end_inset
-
-.
- The LSP's are considered to be associated to the 
-\begin_inset Formula $4^{th}$
-\end_inset
-
- sub-frames and the LSP's associated to the first 3 sub-frames are linearly
- interpolated using the current and previous LSP coefficients.
- The LSP coefficients and converted back to the LPC filter 
-\begin_inset Formula $\hat{A}(z)$
-\end_inset
-
-.
- The non-quantized interpolated filter is denoted 
-\begin_inset Formula $A(z)$
-\end_inset
-
- and can be used for the weighting filter 
-\begin_inset Formula $W(z)$
-\end_inset
-
- because it does not need to be available to the decoder.
- 
-\end_layout
-
-\begin_layout Standard
-To make Speex more robust to packet loss, no prediction is applied on the
- LSP coefficients prior to quantization.
- The LSPs are encoded using vector quantization (VQ) with 30 bits for higher
- quality modes and 18 bits for lower quality.
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float figure
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Graphics
-	filename speex_analysis.eps
-	width 35page%
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Frame open-loop analysis
-\begin_inset CommandInset label
-LatexCommand label
-name "cap:Frame-open-loop-analysis"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Section
-Sub-Frame Analysis-by-Synthesis
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float figure
-wide false
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Graphics
-	filename speex_abs.eps
-	lyxscale 75
-	width 40page%
-
-\end_inset
-
-
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-end{center}
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Plain Layout
-\begin_inset Caption
-
-\begin_layout Plain Layout
-Analysis-by-synthesis closed-loop optimization on a sub-frame.
-\begin_inset CommandInset label
-LatexCommand label
-name "cap:Sub-frame-AbS"
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\begin_layout Standard
-The analysis-by-synthesis (AbS) encoder loop is described in Fig.
- 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:Sub-frame-AbS"
-
-\end_inset
-
-.
- There are three main aspects where Speex significantly differs from most
- other CELP codecs.
- First, while most recent CELP codecs make use of fractional pitch estimation
- with a single gain, Speex uses an integer to encode the pitch period, but
- uses a 3-tap predictor (3 gains).
- The adaptive codebook contribution 
-\begin_inset Formula $e_{a}[n]$
-\end_inset
-
- can thus be expressed as:
-\begin_inset Formula \begin{equation}
-e_{a}[n]=g_{0}e[n-T-1]+g_{1}e[n-T]+g_{2}e[n-T+1]\label{eq:adaptive-3tap}\end{equation}
-
-\end_inset
-
-where 
-\begin_inset Formula $g_{0}$
-\end_inset
-
-, 
-\begin_inset Formula $g_{1}$
-\end_inset
-
- and 
-\begin_inset Formula $g_{2}$
-\end_inset
-
- are the jointly quantized pitch gains and 
-\begin_inset Formula $e[n]$
-\end_inset
-
- is the codec excitation memory.
- It is worth noting that when the pitch is smaller than the sub-frame size,
- we repeat the excitation at a period 
-\begin_inset Formula $T$
-\end_inset
-
-.
- For example, when 
-\begin_inset Formula $n-T+1\geq0$
-\end_inset
-
-, we use 
-\begin_inset Formula $n-2T+1$
-\end_inset
-
- instead.
- In most modes, the pitch period is encoded with 7 bits in the 
-\begin_inset Formula $\left[17,144\right]$
-\end_inset
-
- range and the 
-\begin_inset Formula $\beta_{i}$
-\end_inset
-
- coefficients are vector-quantized using 7 bits at higher bit-rates (15
- kbps narrowband and above) and 5 bits at lower bit-rates (11 kbps narrowband
- and below).
-\end_layout
-
-\begin_layout Standard
-Many current CELP codecs use moving average (MA) prediction to encode the
- fixed codebook gain.
- This provides slightly better coding at the expense of introducing a dependency
- on previously encoded frames.
- A second difference is that Speex encodes the fixed codebook gain as the
- product of the global excitation gain 
-\begin_inset Formula $g_{frame}$
-\end_inset
-
- with a sub-frame gain corrections 
-\begin_inset Formula $g_{subf}$
-\end_inset
-
-.
- This increases robustness to packet loss by eliminating the inter-frame
- dependency.
- The sub-frame gain correction is encoded before the fixed codebook is searched
- (not closed-loop optimized) and uses between 0 and 3 bits per sub-frame,
- depending on the bit-rate.
-\end_layout
-
-\begin_layout Standard
-The third difference is that Speex uses sub-vector quantization of the innovatio
-n (fixed codebook) signal instead of an algebraic codebook.
- Each sub-frame is divided into sub-vectors of lengths ranging between 5
- and 20 samples.
- Each sub-vector is chosen from a bitrate-dependent codebook and all sub-vectors
- are concatenated to form a sub-frame.
- As an example, the 3.95 kbps mode uses a sub-vector size of 20 samples with
- 32 entries in the codebook (5 bits).
- This means that the innovation is encoded with 10 bits per sub-frame, or
- 2000 bps.
- On the other hand, the 18.2 kbps mode uses a sub-vector size of 5 samples
- with 256 entries in the codebook (8 bits), so the innovation uses 64 bits
- per sub-frame, or 12800 bps.
- 
-\end_layout
-
-\begin_layout Section
-Bit-rates
-\end_layout
-
-\begin_layout Standard
-So far, no MOS (Mean Opinion Score
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-mean opinion score
-\end_layout
-
-\end_inset
-
-) subjective evaluation has been performed for Speex.
- In order to give an idea of the quality achievable with it, table 
-\begin_inset CommandInset ref
-LatexCommand ref
-reference "cap:quality_vs_bps"
-
-\end_inset
-
- presents my own subjective opinion on it.
- It should be noted that different people will perceive the quality differently
- and that the person that designed the codec often has a bias (one way or
- another) when it comes to subjective evaluation.
- Last thing, it should be noted that for most codecs (including Speex) encoding
- quality sometimes varies depending on the input.
- Note that the complexity is only approximate (within 0.5 mflops and using
- the lowest complexity setting).
- Decoding requires approximately 0.5 mflops
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-complexity
-\end_layout
-
-\end_inset
-
- in most modes (1 mflops with perceptual enhancement).
-\end_layout
-
-\begin_layout Standard
-\begin_inset Float table
-placement h
-wide true
-sideways false
-status open
-
-\begin_layout Plain Layout
-\begin_inset ERT
-status collapsed
-
-\begin_layout Plain Layout
-
-
-\backslash
-begin{center}
-\end_layout
-
-\end_inset
-
-
-\begin_inset Tabular
-<lyxtabular version="3" rows="17" columns="5">
-<features>
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<column alignment="center" valignment="top" width="0pt">
-<row>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Mode
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Quality
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Bit-rate
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-bit-rate
-\end_layout
-
-\end_inset
-
- (bps)
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-mflops
-\begin_inset Index
-status collapsed
-
-\begin_layout Plain Layout
-complexity
-\end_layout
-
-\end_inset
-
-
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" bottomline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Quality/description
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
--
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-250
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-No transmission (DTX)
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-1
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-0
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-2,150
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-6
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Vocoder (mostly for comfort noise)
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-2
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-2
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5,950
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-9
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Very noticeable artifacts/noise, good intelligibility
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-3
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-3-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-8,000
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-10
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Artifacts/noise sometimes noticeable
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-4
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5-6
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-11,000
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-14
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" rightline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-Artifacts usually noticeable only with headphones
-\end_layout
-
-\end_inset
-</cell>
-</row>
-<row>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-5
-\end_layout
-
-\end_inset
-</cell>
-<cell alignment="center" valignment="top" topline="true" leftline="true" usebox="none">
-\begin_inset Text
-
-\begin_layout Plain Layout
-7-8
-\end_layout
-
-\end_inset
-</cell>
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-
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-\series bold
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- enhancement is not yet documented.
-\end_layout
-
-\begin_layout Standard
-This part of the codec only applies to the decoder and can even be changed
- without affecting inter-operability.
- For that reason, the implementation provided and described here should
- only be considered as a reference implementation.
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- First, the synthesis filter 
-\begin_inset Formula $S(z)=1/A(z)$
-\end_inset
-
- is replaced by an enhanced filter:
-\begin_inset Formula \[
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-
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-\begin_inset Formula $a_{1}$
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- and 
-\begin_inset Formula $a_{2}$
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- depend on the mode in use and 
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-\end_inset
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- with 
-\begin_inset Formula $r=.9$
-\end_inset
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-.
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- 
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-
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-
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-\begin_layout Chapter
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- (QMF) to split the band in two.
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-\begin_inset CommandInset ref
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-
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- in such a way that the resulting 
-\begin_inset Quotes eld
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-\end_layout
-
-\begin_layout Section
-Linear Prediction
-\end_layout
-
-\begin_layout Standard
-The linear prediction part used for the high-band is very similar to what
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- LSP's using a multi-stage vector quantizer (MSVQ).
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- is then quantized using 6 bits, too.
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-
-\begin_layout Section
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-\end_layout
-
-\begin_layout Standard
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- Second, it would be very hard to implement since the QMF folds the 4-8
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-
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-\end_layout
-
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- 
-\end_layout
-
-\begin_layout Section
-Bit allocation
-\end_layout
-
-\begin_layout Standard
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- high-band is encoded.
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-
-\end_inset
-
-.
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-reference "cap:bits-wideband"
-
-\end_inset
-
-.
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-
-\end_inset
-
-.
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-\begin_layout Standard
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-
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-
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-
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-This section shows sample code for encoding and decoding speech using the
- Speex API.
- The commands can be used to encode and decode a file by calling:
-\family typewriter
-
-\begin_inset Newline newline
-\end_inset
-
-% sampleenc in_file.sw | sampledec out_file.sw
-\family default
-
-\begin_inset Newline newline
-\end_inset
-
-where both files are raw (no header) files encoded at 16 bits per sample
- (in the machine natural endianness).
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-
-\begin_layout Section
-sampleenc.c
-\end_layout
-
-\begin_layout Standard
-sampleenc takes a raw 16 bits/sample file, encodes it and outputs a Speex
- stream to stdout.
- Note that the packing used is 
-\series bold
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-
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-
-
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-
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-
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-
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-
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-
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-
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-
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-\begin_layout Chapter
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-
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-
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-
-\begin_layout Standard
-\begin_inset CommandInset include
-LatexCommand verbatiminput
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-
-\end_layout
-
-\begin_layout Standard
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-
-\end_layout
-
-\begin_layout Chapter
-GNU Free Documentation License
-\end_layout
-
-\begin_layout Standard
-Version 1.1, March 2000
-\end_layout
-
-\begin_layout Standard
-Copyright (C) 2000 Free Software Foundation, Inc.
- 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA Everyone is permitted
- to copy and distribute verbatim copies of this license document, but changing
- it is not allowed.
- 
-\end_layout
-
-\begin_layout Section*
-0.
- PREAMBLE
-\end_layout
-
-\begin_layout Standard
-The purpose of this License is to make a manual, textbook, or other written
- document "free" in the sense of freedom: to assure everyone the effective
- freedom to copy and redistribute it, with or without modifying it, either
- commercially or noncommercially.
- Secondarily, this License preserves for the author and publisher a way
- to get credit for their work, while not being considered responsible for
- modifications made by others.
-\end_layout
-
-\begin_layout Standard
-This License is a kind of "copyleft", which means that derivative works
- of the document must themselves be free in the same sense.
- It complements the GNU General Public License, which is a copyleft license
- designed for free software.
-\end_layout
-
-\begin_layout Standard
-We have designed this License in order to use it for manuals for free software,
- because free software needs free documentation: a free program should come
- with manuals providing the same freedoms that the software does.
- But this License is not limited to software manuals; it can be used for
- any textual work, regardless of subject matter or whether it is published
- as a printed book.
- We recommend this License principally for works whose purpose is instruction
- or reference.
- 
-\end_layout
-
-\begin_layout Section*
-1.
- APPLICABILITY AND DEFINITIONS
-\end_layout
-
-\begin_layout Standard
-This License applies to any manual or other work that contains a notice
- placed by the copyright holder saying it can be distributed under the terms
- of this License.
- The "Document", below, refers to any such manual or work.
- Any member of the public is a licensee, and is addressed as "you".
-\end_layout
-
-\begin_layout Standard
-A "Modified Version" of the Document means any work containing the Document
- or a portion of it, either copied verbatim, or with modifications and/or
- translated into another language.
-\end_layout
-
-\begin_layout Standard
-A "Secondary Section" is a named appendix or a front-matter section of the
- Document that deals exclusively with the relationship of the publishers
- or authors of the Document to the Document's overall subject (or to related
- matters) and contains nothing that could fall directly within that overall
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- (For example, if the Document is in part a textbook of mathematics, a Secondary
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- them.
-\end_layout
-
-\begin_layout Standard
-The "Invariant Sections" are certain Secondary Sections whose titles are
- designated, as being those of Invariant Sections, in the notice that says
- that the Document is released under this License.
-\end_layout
-
-\begin_layout Standard
-The "Cover Texts" are certain short passages of text that are listed, as
- Front-Cover Texts or Back-Cover Texts, in the notice that says that the
- Document is released under this License.
-\end_layout
-
-\begin_layout Standard
-A "Transparent" copy of the Document means a machine-readable copy, represented
- in a format whose specification is available to the general public, whose
- contents can be viewed and edited directly and straightforwardly with generic
- text editors or (for images composed of pixels) generic paint programs
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- A copy made in an otherwise Transparent file format whose markup has been
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- not Transparent.
- A copy that is not "Transparent" is called "Opaque".
-\end_layout
-
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-2.
- VERBATIM COPYING
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-
-\begin_layout Standard
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-\begin_layout Standard
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-\begin_layout Section*
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- MODIFICATIONS
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BIN
Engine/lib/speex/doc/manual.pdf


+ 0 - 182
Engine/lib/speex/doc/nb_celp.c

@@ -1,182 +0,0 @@
-#include <math.h>
-#include "nb_celp.h"
-#include "lsp.h"
-#include "ltp.h"
-#include "quant_lsp.h"
-#include "cb_search.h"
-#include "filters.h"
-#include "os_support.h"
-
-#ifndef NULL
-#define NULL 0
-#endif
-
-#define LSP_MARGIN .002f
-#define SIG_SCALING  1.f
-#define NB_DEC_BUFFER (NB_FRAME_SIZE+2*NB_PITCH_END+NB_SUBFRAME_SIZE+12)
-#define NB_ORDER 10
-#define NB_FRAME_SIZE 160
-#define NB_SUBFRAME_SIZE 40
-#define NB_NB_SUBFRAMES 4
-#define NB_PITCH_START 17
-#define NB_PITCH_END 144
-
-
-struct speex_decode_state {
-	float excBuf[NB_DEC_BUFFER]; /**< Excitation buffer */
-	float *exc;                  /**< Start of excitation frame */
-	float old_qlsp[10];          /**< Quantized LSPs for previous frame */
-	float interp_qlpc[10];       /**< Interpolated quantized LPCs */
-	float mem_sp[10];            /**< Filter memory for synthesis signal */
-	int first;                   /**< Is this the first frame? */
-};
-
-
-static const float exc_gain_quant_scal1[2] = {0.70469f, 1.05127f};
-
-
-struct speex_decode_state *nb_decoder_init(void)
-{
-	struct speex_decode_state *st;
-
-	st = malloc(sizeof(*st));
-	if (!st)
-		return NULL;
-
-	memset(st, 0, sizeof(*st));
-	st->first = 1;
-
-	return st;
-}
-
-
-void nb_decoder_destroy(struct speex_decode_state *state)
-{
-	if (state)
-		free(state);
-}
-
-
-/* basic decoder using mode3 only */
-int nb_decode(struct speex_decode_state *st, SpeexBits *bits, float *out)
-{
-	int i, sub, wideband, mode, qe;
-	float ol_gain;
-	float innov[NB_SUBFRAME_SIZE];
-	float exc32[NB_SUBFRAME_SIZE];
-	float qlsp[NB_ORDER], interp_qlsp[NB_ORDER];
-	float ak[NB_ORDER];
-
-	if (!bits)
-		return -1;
-
-	st->exc = st->excBuf + 2*NB_PITCH_END + NB_SUBFRAME_SIZE + 6;
-
-	/* Decode Sub-modes */
-	do {
-		if (speex_bits_remaining(bits) < 5)
-			return -1;
-
-		wideband = speex_bits_unpack_unsigned(bits, 1);
-		if (wideband) {
-			printf("wideband not supported\n");
-			return -2;
-		}
-
-		mode = speex_bits_unpack_unsigned(bits, 4);
-		if (mode == 15)
-			return -1;
-
-	} while (mode > 8);
-
-	if (mode != 3) {
-		printf("only mode 3 supported\n");
-		return -2;
-	}
-
-	/* Shift all buffers by one frame */
-	SPEEX_MOVE(st->excBuf, st->excBuf+NB_FRAME_SIZE,
-		   2*NB_PITCH_END + NB_SUBFRAME_SIZE + 12);
-
-	/* Unquantize LSPs */
-	lsp_unquant_lbr(qlsp, NB_ORDER, bits);
-
-	/* Handle first frame */
-	if (st->first) {
-		st->first = 0;
-
-		for (i=0; i<NB_ORDER; i++)
-			st->old_qlsp[i] = qlsp[i];
-	}
-
-	/* Get global excitation gain */
-	qe = speex_bits_unpack_unsigned(bits, 5);
-	ol_gain = SIG_SCALING*exp(qe/3.5);
-
-	/* Loop on subframes */
-	for (sub=0; sub<4; sub++) {
-		int offset, q_energy;
-		float *exc, *sp;
-		float ener;
-
-		offset = NB_SUBFRAME_SIZE*sub;
-		exc = st->exc + offset;
-		sp = out + offset;
-
-		SPEEX_MEMSET(exc, 0, NB_SUBFRAME_SIZE);
-
-		/* Adaptive codebook contribution */
-		pitch_unquant_3tap(exc, exc32, NB_PITCH_START,
-				   NB_SUBFRAME_SIZE, bits, 0);
-
-		sanitize_values32(exc32, -32000, 32000, NB_SUBFRAME_SIZE);
-
-		/* Unquantize the innovation */
-		SPEEX_MEMSET(innov, 0, NB_SUBFRAME_SIZE);
-
-		/* Decode sub-frame gain correction */
-		q_energy = speex_bits_unpack_unsigned(bits, 1);
-		ener = exc_gain_quant_scal1[q_energy] * ol_gain;
-
-		/* Fixed codebook contribution */
-		split_cb_shape_sign_unquant(innov, bits);
-
-		/* De-normalize innovation and update excitation */
-		signal_mul(innov, innov, ener, NB_SUBFRAME_SIZE);
-
-		for (i=0; i<NB_SUBFRAME_SIZE; i++) {
-			exc[i] = exc32[i] + innov[i];
-		}
-	}
-
-	SPEEX_COPY(out, &st->exc[-NB_SUBFRAME_SIZE], NB_FRAME_SIZE);
-
-	/* Loop on subframes */
-	for (sub=0; sub<4; sub++) {
-		const int offset = NB_SUBFRAME_SIZE*sub;
-		float *sp, *exc;
-
-		sp = out + offset;
-		exc = st->exc + offset;
-
-		/* LSP interpolation (quantized and unquantized) */
-		lsp_interpolate(st->old_qlsp, qlsp, interp_qlsp, NB_ORDER,
-				sub, NB_NB_SUBFRAMES, LSP_MARGIN);
-
-		/* Compute interpolated LPCs (unquantized) */
-		lsp_to_lpc(interp_qlsp, ak, NB_ORDER);
-
-		iir_mem16(sp, st->interp_qlpc, sp, NB_SUBFRAME_SIZE,
-			  NB_ORDER, st->mem_sp);
-
-		/* Save for interpolation in next frame */
-		for (i=0; i<NB_ORDER; i++)
-			st->interp_qlpc[i] = ak[i];
-	}
-
-	/* Store the LSPs for interpolation in the next frame */
-	for (i=0; i<NB_ORDER; i++)
-		st->old_qlsp[i] = qlsp[i];
-
-	return 0;
-}

+ 0 - 125
Engine/lib/speex/doc/programming.html

@@ -1,125 +0,0 @@
-<!DOCTYPE html PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN">
-<html>
-<head>
-  <title>Speex Programming</title>
-      
-  <meta http-equiv="content-type"
- content="text/html; charset=ISO-8859-1">
-</head>
-  <body>
- 
-<div align="center"> 
-<h1>Speex Programming</h1>
- 
-<div align="left"> 
-<h2>Encoding</h2>
- In order to encode speech using Speex, you first need to:<br>
- 
-<blockquote>   
-  <pre><big>#include &lt;speex.h&gt;</big></pre>
- </blockquote>
- You then need to declare a Speex bit-packing struct<br>
- 
-<blockquote>   
-  <pre><big>SpeexBits bits;</big></pre>
- </blockquote>
- and a Speex encoder state<br>
- 
-<blockquote>   
-  <pre><big>void *enc_state;</big></pre>
- </blockquote>
- The two are initialized by:<br>
- 
-<blockquote>   
-  <pre><big>speex_bits_init(&amp;bits);</big></pre>
-   
-  <pre><big>enc_state = speex_encoder_init(&amp;speex_nb_mode);</big></pre>
- </blockquote>
- For wideband coding, <i>speex_nb_mode</i> will be replaced by <i>speex_wb_mode</i>
-. In most cases, you will need to know the frame size used by the mode you
-are using. You can get that value in the <i>frame_size</i> variable with:<br>
-<blockquote><big><tt>speex_encoder_ctl(enc_state, SPEEX_GET_FRAME_SIZE, &amp;frame_size);</tt></big><br>
-</blockquote>
- For every input frame:<br>
- 
-<blockquote>   
-  <pre><big>speex_bits_reset(&amp;bits);</big></pre>
-   
-  <pre><big>speex_encode(enc_state, input_frame, &amp;bits);</big></pre>
-   
-  <pre><big>nbBytes = speex_bits_write(&amp;bits, byte_ptr, MAX_NB_BYTES);</big></pre>
- </blockquote>
- where <i>input_frame</i> is a <i>(float *)</i> pointing to the beginning 
-of a speech frame, byte_ptr is a <i>(char *)</i> where the encoded frame will
-be written, <i>MAX_NB_BYTES</i> is the maximum number of bytes that can be
-written to <i>byte_ptr</i> without causing an overflow and <i>nbBytes</i>
-  is the number of bytes actually written to <i>byte_ptr</i> (the encoded 
-size in bytes).<br>
- <br>
- After you're done with the encoding, free all resources with:<br>
- 
-<blockquote>   
-  <pre><big>speex_bits_destroy(&amp;bits);</big></pre>
-   
-  <pre><big>speex_encoder_destroy(&amp;enc_state);</big></pre>
- </blockquote>
- That's about it for the encoder.<br>
- 
-<h2>Decoding</h2>
- In order to encode speech using Speex, you first need to:<br>
-   
-<blockquote>      
-  <pre><big>#include &lt;speex.h&gt;</big></pre>
-  </blockquote>
-  You then need to declare a Speex bit-packing struct<br>
-   
-<blockquote>      
-  <pre><big>SpeexBits bits;</big></pre>
-  </blockquote>
-  and a Speex encoder state<br>
-   
-<blockquote>      
-  <pre><big>void *dec_state;</big></pre>
-  </blockquote>
-  The two are initialized by:<br>
-   
-<blockquote>      
-  <pre><big>speex_bits_init(&amp;bits);</big></pre>
-       
-  <pre><big>dec_state = speex_decoder_init(&amp;speex_nb_mode);</big></pre>
-  </blockquote>
-  For wideband decoding, <i>speex_nb_mode</i> will be replaced by <i>speex_wb_mode</i>
-. You can get that value in the <i>frame_size</i> variable with:<br>
- 
-<blockquote><big><tt>speex_decoder_ctl(dec_state, SPEEX_GET_FRAME_SIZE, &amp;frame_size);</tt></big><br>
-</blockquote>
-  There is also a parameter that can be set for the decoder: whether or not
-to use a perceptual post-filter. This can be set by:<br>
-<blockquote><big><tt>speex_decoder_ctl(dec_state, SPEEX_SET_PF, &amp;pf);</tt></big><br>
-</blockquote>
-where <i>pf</i> is an <i>int</i> that with value 0 to have the post-filter
-disabled and 1 to have it enabled.<br>
-<br>
-For every input frame:<br>
-       
-<blockquote>   
-  <pre><big>speex_bits_read_from(&amp;bits, input_bytes, nbBytes);</big></pre>
-   
-  <pre><big>speex_decode(st, &amp;bits, output_frame, 0);</big></pre>
- </blockquote>
- where <i>input_bytes</i> is a <i>(char *)</i> containing the bit-stream
-data received for a frame, <i>nbBytes</i> is the size (in bytes) of that
-bit-stream, and <i>output_frame</i> is a <i>(float *)</i> and points to the
-area where the decoded speech frame will be written. The last argument indicates
-whether the frame we'd like to decode was lost. A value of 0 indicates the
-normal case where bits points to the bit of the current frame. A value of
-1 indicates that we don't have the bits for the current frame, in which case
-the bits argument should be the same as the bits for the last correctly received
-frame. When a frame is lost, the Speex decoder will do its best to "guess"
-the sorrect signal.<br>
- <br>
- </div>
- </div>
- 
-</body>
-</html>

+ 0 - 2045
Engine/lib/speex/doc/ref_shaping.eps

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+ 0 - 76
Engine/lib/speex/doc/rtp.txt

@@ -1,76 +0,0 @@
-The Speex RTP payload is defined as a header, followed by any number of
-requests to the remote encoder and all encoded speech frames.
-
-+--------+----------+----------------+
-| Header | Requests | Speech data... |
-+--------+----------+----------------+
-
-The header contains only the number of frames sent 
-encoded in 6 bits
-
- 0 1 2 3 4 5 
-+-+-+-+-+-+-+
-| NB frames |
-+-+-+-+-+-+-+
-
-There can be any number of requests of the form
-
- 0 1 2 3 4 5 6 7 0 1
-+-+-+-+-+-+-+-+-+-+-+
-|R| ReqID | ReqVal  |
-+-+-+-+-+-+-+-+-+-+-+
-
-where R is 1 when a request is following and 0 when there is no more
-request. Each request (if R=1) is composed of a 4-bit request ID (ReqID) and
-a 5-bit value (ReqVal)
-
-Possible values for ReqID are:
- 0: REQ_PERSIST   ReqVal=1 for persistent requests/mode selection, 
-                  0 otherwise
- 1: PERSIST_ACK   Acknowledge a REQ_PERSIST from the other end, 
-                  ReqVal equals the value received
- 2: MODE          Choose the encoder mode directly
- 3: QUALITY       Choose the encoder quality
- 4: VBR           Set VBR on (ReqVal=1) or off (ReqVal=2)
- 5: VBR_QUALITY   Set the encoder quality for VBR mode
- 6: LOW_MODE      Set the encoder mode for low-band (wideband only)
- 7: HIGH_MODE     Set the encoder mode for high-band (wideband only)
-
-All requests should be considered at the receiver as a suggestion and
-compliance is not mandatory. The PERSIST_ACK should be sent upon receiving a
-REQ_PERSIST request to indicate that the request has been received.
-
-The speech data part contains speech frames one after the other. The size of
-the encoded frames can be found since the mode is directly encoded into each
-frame.
-
-For example, a frame where we request VBR to be on with quality 8 and we
-transmit two frames encoded at 8.35 kbps (167 bits/frame) will be:
-
- 0               1               2               3
- 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|   NB=2    |1|ReqID=2| ReqVal=0|1|ReqID=3|ReqVal=8 |0| frame 1 |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 1                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 1                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 1                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 1                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 1                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|end|                     frame 2                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 2                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 2                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 2                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|                         frame 2                               |
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
-|    end frame 2    |P|P|P|P|P|P|
-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+

+ 0 - 65
Engine/lib/speex/doc/sampledec.c

@@ -1,65 +0,0 @@
-#include <speex/speex.h>
-#include <stdio.h>
-
-/*The frame size in hardcoded for this sample code but it doesn't have to be*/
-#define FRAME_SIZE 160
-int main(int argc, char **argv)
-{
-   char *outFile;
-   FILE *fout;
-   /*Holds the audio that will be written to file (16 bits per sample)*/
-   short out[FRAME_SIZE];
-   /*Speex handle samples as float, so we need an array of floats*/
-   float output[FRAME_SIZE];
-   char cbits[200];
-   int nbBytes;
-   /*Holds the state of the decoder*/
-   void *state;
-   /*Holds bits so they can be read and written to by the Speex routines*/
-   SpeexBits bits;
-   int i, tmp;
-
-   /*Create a new decoder state in narrowband mode*/
-   state = speex_decoder_init(&speex_nb_mode);
-
-   /*Set the perceptual enhancement on*/
-   tmp=1;
-   speex_decoder_ctl(state, SPEEX_SET_ENH, &tmp);
-
-   outFile = argv[1];
-   fout = fopen(outFile, "w");
-
-   /*Initialization of the structure that holds the bits*/
-   speex_bits_init(&bits);
-   while (1)
-   {
-      /*Read the size encoded by sampleenc, this part will likely be
-        different in your application*/
-      fread(&nbBytes, sizeof(int), 1, stdin);
-      fprintf (stderr, "nbBytes: %d\n", nbBytes);
-      if (feof(stdin))
-         break;
-
-      /*Read the "packet" encoded by sampleenc*/
-      fread(cbits, 1, nbBytes, stdin);
-      /*Copy the data into the bit-stream struct*/
-      speex_bits_read_from(&bits, cbits, nbBytes);
-
-      /*Decode the data*/
-      speex_decode(state, &bits, output);
-
-      /*Copy from float to short (16 bits) for output*/
-      for (i=0;i<FRAME_SIZE;i++)
-         out[i]=output[i];
-
-      /*Write the decoded audio to file*/
-      fwrite(out, sizeof(short), FRAME_SIZE, fout);
-   }
-
-   /*Destroy the decoder state*/
-   speex_decoder_destroy(state);
-   /*Destroy the bit-stream truct*/
-   speex_bits_destroy(&bits);
-   fclose(fout);
-   return 0;
-}

+ 0 - 64
Engine/lib/speex/doc/sampleenc.c

@@ -1,64 +0,0 @@
-#include <speex/speex.h>
-#include <stdio.h>
-
-/*The frame size in hardcoded for this sample code but it doesn't have to be*/
-#define FRAME_SIZE 160
-int main(int argc, char **argv)
-{
-   char *inFile;
-   FILE *fin;
-   short in[FRAME_SIZE];
-   float input[FRAME_SIZE];
-   char cbits[200];
-   int nbBytes;
-   /*Holds the state of the encoder*/
-   void *state;
-   /*Holds bits so they can be read and written to by the Speex routines*/
-   SpeexBits bits;
-   int i, tmp;
-
-   /*Create a new encoder state in narrowband mode*/
-   state = speex_encoder_init(&speex_nb_mode);
-
-   /*Set the quality to 8 (15 kbps)*/
-   tmp=8;
-   speex_encoder_ctl(state, SPEEX_SET_QUALITY, &tmp);
-
-   inFile = argv[1];
-   fin = fopen(inFile, "r");
-
-   /*Initialization of the structure that holds the bits*/
-   speex_bits_init(&bits);
-   while (1)
-   {
-      /*Read a 16 bits/sample audio frame*/
-      fread(in, sizeof(short), FRAME_SIZE, fin);
-      if (feof(fin))
-         break;
-      /*Copy the 16 bits values to float so Speex can work on them*/
-      for (i=0;i<FRAME_SIZE;i++)
-         input[i]=in[i];
-
-      /*Flush all the bits in the struct so we can encode a new frame*/
-      speex_bits_reset(&bits);
-
-      /*Encode the frame*/
-      speex_encode(state, input, &bits);
-      /*Copy the bits to an array of char that can be written*/
-      nbBytes = speex_bits_write(&bits, cbits, 200);
-
-      /*Write the size of the frame first. This is what sampledec expects but
-       it's likely to be different in your own application*/
-      fwrite(&nbBytes, sizeof(int), 1, stdout);
-      /*Write the compressed data*/
-      fwrite(cbits, 1, nbBytes, stdout);
-
-   }
-
-   /*Destroy the encoder state*/
-   speex_encoder_destroy(state);
-   /*Destroy the bit-packing struct*/
-   speex_bits_destroy(&bits);
-   fclose(fin);
-   return 0;
-}

+ 0 - 3022
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-%%PageTrailer
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Engine/lib/speex/doc/speex_analysis.odg


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-<!DOCTYPE doctype PUBLIC "-//w3c//dtd html 4.0 transitional//en"><html><head>
-                                                    
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-  
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-  <meta http-equiv="Content-Type" content="text/html; charset=iso-8859-1">
-
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-                                                    
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-  <meta name="GENERATOR" content="Mozilla/4.78 [fr] (X11; U; Linux 2.4.17 i686) [Netscape]">
-
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-                                                    
-  
-  
-  
-  <meta name="Author" content="Jean-Marc Valin">
-  <title>The Speex Speech Codec</title>
-
-  
-
-  
-
-  
-                               </head>
-
-<body text="#000000" bgcolor="#ffffff" link="#0000ef" vlink="#59188e" alink="#ff0000">
-                          
-<center>             
-<img src="speex.png" alt="Speex">
-</center>
-<br>
-<br>
-
-
-             <a href="http://sourceforge.net/projects/speex">The Speex project</a>
-          aims  to build an open-source (LGPL) <A href="patents.html">patent-free</A> voice codec. Unlike 
-  other codecs   like  MP3 and <a href="http://www.vorbis.org/">Ogg Vorbis</a>, 
-Speex is specially designed for compressing voice at low bit-rates in the 
-8-32 kbps/channel range. Possible applications include Voice over IP (VoIP), 
- Internet audio streaming, archiving of speech data (e.g. voice mail), and
-audio books. In some sense, it is meant to  be complementary to the 
-Ogg Vorbis codec.             
-<p>If you are interested in participating to the project, contact us at <a href="mailto:[email protected]">
-           [email protected]</a>  or <a href="http://lists.sourceforge.net/lists/listinfo/speex-devel">
-           join  our mailing list</a>. Right now, we are mostly looking for 
- developers with signal processing and speech coding knowledge, as well 
- as people with knowledge about patents in that field. See the 
-<A href="http://sourceforge.net/pm/task.php?group_project_id=19556&group_id=46651&func=browse">task list</A> for more details about what's left to do in Speex<br>
-</p>
-
-
-
-                       
-<h2>Download</h2>
-
-
-
-           You can download Speex from <a href="http://sourceforge.net/project/showfiles.php?group_id=46651">
-           here</a>.<br>
-
-
-<h2>Documentation</h2>
-This Speex manual includes information about the
-algorithms used in Speex, the bit-stream, the API and more.
-<br>
-<A href="manual.pdf">Speex manual (PDF)</A> 
-<br>
-<A href="manual.ps">Speex manual (Postscript)</A>
-<br>
-<A href="manual/">Speex manual (HTML online)</A>
-<br>
-<A href="manual.tar.gz">Speex manual (HTML tarball)</A>
-<br><br>
-There is also some API documentation generated by Doxygen directly from the header files
-<br>
-<A href="refman.pdf">Speex API (PDF)</A>
-           
-<h2>Samples</h2>
-
-You can listen to samples encoded with Speex <A href="/audio/samples/">here</A>
-
-<h2>Who uses Speex</h2>
-
-<A href="http://www.linphone.org">LinPhone</a>: A SIP-based VoIP phone written for GNOME
-<br>
-<A href="http://jzb.rapanden.dk/speex/">Speex XMMS plugin</a> written by <a href="mailto:[email protected]">Jens Burkal</a>
-<br>
-<A href="http://www.openh323.org">OpenH323</a>: An open-source H.323 stack
-<br>
-<A href="http://www.gnomemeeting.org">GnomeMeeting</A>: A H323 Video Conferencing Program
-
-<br><br>
-In development:
-<br>
-<A href="http://www.asteriskpbx.org">Asterisk</a>: An open-source PBX
-
-<h2>News</h2>
-
-<h3>2002/09/04</h3>
-
-Speex 0.8.1 released. This release fixes a bug in the new 0.8 API (function
-speex_mode_query). For those using only speexenc/speexdec, no need to upgrade
-but those using libspeex (directly or through another application) should.
-
-<h3>2002/08/24</h3>
-  Speex 0.8.0 released. The speex_decode() function no longer uses the
-'lost' parameter. Applications will need
-  to be updated.
-
-<h3>2002/08/09</h3>
-  Speex 0.7.0 released. The format of the bit stream has changed once again
-and the bandwidth required has been
-  reduced slightly.
-
-<h3>2002/08/01</h3>
-
-Speex 0.6.0 has been released. This is a major release that contains many improvements and lots of bug-fixing. The post-filter that was causing problems throughout 0.5.x was replaced with a new perceptual enhancement system, which sounds better and consume much less CPU. Also many changes to Ogg encoder/decoder, including possibility to see the bit-rate being played/encoded. There is also a discontinuous transmission (DTX) mode. Last but not least, 0.6.0 now reports no error when being run with the valgrind memory debugger. 
-
-<h3>2002/07/26</h3>
-
-Speex 0.5.2 is out and brings a number of improvements and bug fixes. First,
-the search has been improved and it is now possible to choose the right
-quality/encoding time tradeoff (--comp option). Is is also possible to pack
-more that one frame in an Ogg packet (--nframes), reducing the overhead for
-low bit-rates. Last but not least: there is now some documentation about
-Speex!
-
-
-<h3>2002/07/17</h3> 
-
-Version 0.5.1 is released. This release brings quality improvements at very
-low bit-rate (5.7 kbps) and a new post-filter. VBR should also be a bit
-better though there's still a lot to do. Most of the modes are bit-rate
-compatible with 0.5.0, with the exception of the very low bit-rate (which is
-sometimes used in VBR, so expect some glitches). The source (and probably
-binary) compatibility with 0.5.0 is maintained.
-
-<h3>2002/07/08</h3>
-
-Speex 0.5.0 is out. The most important new feature is Varible Bit-Rate
-(VBR). It can be enabled by using the --vbr option to speexenc. When
-encoding in VBR, the --quality option can still be used. Note VBR
-implementation in this release is experimental and still requires lots of
-tuning.
-
-<h3>2002/06/23</h3>
-
-Speex 0.4.0 is here, adding many more bit-rates to both narrowband and wideband, as
-well as the ability to change bit-rate dynamically from frame to frame. The
-narrowband modes now range from 8 kbps to 18 kbps, while wideband range from
-10 kbps to 28 kbps. There is also a "noise coding" mode at 2 kbps for
-narrowband and 3 kbps for wideband. All this will lead to real Variable
-Bit-Rate (VBR) in the future. Also, worth mentioning the codec latency has
-been reduced from 40 ms to 30 ms (20 ms frames + 10 ms lookahead).
-
-<h3>2002/06/12</h3>
-
-Speex 0.3.0 has been released. There is now a new "low bit-rate" narrowband
-mode for coding speech at 8 kbps. There's also support for big-endian
-machines (untested, please report bugs). Speex files now have real header
-containing information like bit-stream version (revents from playing an
-incompatible bit-stream), sampling rate, bit-rate and user comments. On the
-quality side, the post-filter has been improved and there has been more
-codebook optimization. Note that this release breaks bit-stream
-compatibility with previous releases.
-
-<h3>2002/06/07</h3>
-
-Speex 0.2.0 is out. This is a major release with lots of improvements and
-bugfixes. First, the encoder and decoder can work directly from wav files
-(mono only for now) and the decoder can play directly to soundcard. Also,
-most of the codebooks have been re-trained in order to improve quality (but
-this also breaks format compatibility with previous versions), while
-slightly decreasing complexity. Speex is now able to encode both DTMF and
-music (not as good as Vorbis of course) after bugs were fixed in the pitch
-prediction and LSP quantization. Last but not the least, the perceptual
-post-filter has been improved.
-
-<h3>2002/06/04</h3>
-
-Speex 0.1.2 is out. This adds a perceptual post-filter at the decoder to 
-(hopefully) increase quality. It can be enabled with the --pf option to 
-speexdec. The Speex format remains the same for both narrowband 
-and wideband.
-
-<h3>2002/05/15</h3>
-
-Speex 0.1.0 has been released. Speex now uses the Ogg bitstream (using
-libogg). That means that there is now (limited) bitstream error
-recovery. Also, the narrowband bit-rate has been reduced from 15.7 kbps to
-15.1 kbps and the wideband bit-rate has been reduced from 31.3 kbps to 27.7
-kbps.  The quality remains roughly the same for both narrowband and
-wideband.  Once again, this breaks compatibility with previous versions.
-
-<hr width="100%" size="2">          
-<div align="right"><a href="http://uk.eurorights.org/issues/cd/quick/"><img 
-border="0" width="160" height="40" src="badcd002.png" 
-alt="Say NO to corrupt audio discs" /></a>
-<br>
-<img src="http://sourceforge.net/sflogo.php?group_id=46651&amp;amp;type=5" alt="SourceForge Logo">
-<br>
-
-<a href="mailto:[email protected]">Jean-Mrc Valin</a>       <br>
-            $Date: 2002/09/16 00:59:10 $</div>
-
-
-
-                          
-</body></html>

+ 0 - 39
Engine/lib/speex/html/patents.html

@@ -1,39 +0,0 @@
-<!DOCTYPE html PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN">
-<html>
-<head>
-  <title>Speex and patents</title>
-      
-  <meta name="author" content="Jean-Marc Valin">
-</head>
-  <body>
- 
-<div align="center"> 
-<h1>Position regarding patents</h1>
- 
-<div align="left">The goal of Speex is to provide a codec that is open-source
-(released under the <a href="http://www.gnu.org/licenses/lgpl.html">LGPL</a>)
-and that can be used in open-source software. This implies that it also has
-to be free from patent restrictions. Unfortunately, the field of speech coding
-known to be a real patent minefield and to make the matter worse, each country
-has its own patent laws and list of granted patents so tracking them all
-would be next to impossible. This is why we cannot provide an absolute warranty
-that Speex is indeed completely patent-free.<br>
-<br>
- That being said, we are doing our best to keep away from known patents and 
-we do not patent the algorithms we use. That's about all we can do about it.
-If you are aware of a patent issue with Speex, please <a
- href="mailto:[email protected]">let us know</a>.<br>
- <br>
-Normally there shouldn't be any problem when you use Speex. However for the
-reasons explained above, if you are thinking about using Speex commercially,
-we strongly suggest that you have a closer look at patent issues with respect
-to your country. Note that this is not specific to Speex, since many "standardized"
-codecs have an unclear patent status (like <a
- href="http://www.mp3-tech.org/patents.html">MP3</a>, <a
- href="http://kbs.cs.tu-berlin.de/%7Ejutta/toast.html">GSM</a> and probably 
-others), not to mention the risks of a previously unknown patent holder claiming
-rights on a standardized codec long after standardization (<a href="http://lpf.ai.mit.edu/Patents/Gif/Gif.html">GIF</a>, <a href="http://www.itworld.com/Man/2687/020719jpegpatent/">JPEG</a>).<br>
-</div>
- </div>
-</body>
-</html>

BIN
Engine/lib/speex/html/speex.png


+ 0 - 7
Engine/lib/speex/html/speex.webprj

@@ -1,7 +0,0 @@
-<!DOCTYPE webproject ><webproject>
- <project usePreviewPrefix="0" previewPrefix="" type="Local" name="speex" >
-  <upload/>
-  <author></author>
-  <email></email>
- </project>
-</webproject>

BIN
Engine/lib/speex/html/speex.xcf


+ 0 - 2
Engine/lib/speex/include/Makefile.am

@@ -1,2 +0,0 @@
-
-SUBDIRS = speex

+ 0 - 9
Engine/lib/speex/include/speex/Makefile.am

@@ -1,9 +0,0 @@
-# Disable automatic dependency tracking if using other tools than gcc and gmake
-#AUTOMAKE_OPTIONS = no-dependencies
-
-nodist_pkginclude_HEADERS = speex_config_types.h
-
-pkginclude_HEADERS = speex.h speex_bits.h speex_callbacks.h \
-	speex_header.h \
-	speex_stereo.h speex_types.h
-

+ 0 - 425
Engine/lib/speex/include/speex/speex.h

@@ -1,425 +0,0 @@
-/* Copyright (C) 2002-2006 Jean-Marc Valin*/
-/**
-  @file speex.h
-  @brief Describes the different modes of the codec
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-#ifndef SPEEX_H
-#define SPEEX_H
-/** @defgroup Codec Speex encoder and decoder
- *  This is the Speex codec itself.
- *  @{
- */
-
-#include "speex_types.h"
-#include "speex_bits.h"
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-/* Values allowed for *ctl() requests */
-
-/** Set enhancement on/off (decoder only) */
-#define SPEEX_SET_ENH 0
-/** Get enhancement state (decoder only) */
-#define SPEEX_GET_ENH 1
-
-/*Would be SPEEX_SET_FRAME_SIZE, but it's (currently) invalid*/
-/** Obtain frame size used by encoder/decoder */
-#define SPEEX_GET_FRAME_SIZE 3
-
-/** Set quality value */
-#define SPEEX_SET_QUALITY 4
-/** Get current quality setting */
-/* #define SPEEX_GET_QUALITY 5 -- Doesn't make much sense, does it? */
-
-/** Set sub-mode to use */
-#define SPEEX_SET_MODE 6
-/** Get current sub-mode in use */
-#define SPEEX_GET_MODE 7
-
-/** Set low-band sub-mode to use (wideband only)*/
-#define SPEEX_SET_LOW_MODE 8
-/** Get current low-band mode in use (wideband only)*/
-#define SPEEX_GET_LOW_MODE 9
-
-/** Set high-band sub-mode to use (wideband only)*/
-#define SPEEX_SET_HIGH_MODE 10
-/** Get current high-band mode in use (wideband only)*/
-#define SPEEX_GET_HIGH_MODE 11
-
-/** Set VBR on (1) or off (0) */
-#define SPEEX_SET_VBR 12
-/** Get VBR status (1 for on, 0 for off) */
-#define SPEEX_GET_VBR 13
-
-/** Set quality value for VBR encoding (0-10) */
-#define SPEEX_SET_VBR_QUALITY 14
-/** Get current quality value for VBR encoding (0-10) */
-#define SPEEX_GET_VBR_QUALITY 15
-
-/** Set complexity of the encoder (0-10) */
-#define SPEEX_SET_COMPLEXITY 16
-/** Get current complexity of the encoder (0-10) */
-#define SPEEX_GET_COMPLEXITY 17
-
-/** Set bit-rate used by the encoder (or lower) */
-#define SPEEX_SET_BITRATE 18
-/** Get current bit-rate used by the encoder or decoder */
-#define SPEEX_GET_BITRATE 19
-
-/** Define a handler function for in-band Speex request*/
-#define SPEEX_SET_HANDLER 20
-
-/** Define a handler function for in-band user-defined request*/
-#define SPEEX_SET_USER_HANDLER 22
-
-/** Set sampling rate used in bit-rate computation */
-#define SPEEX_SET_SAMPLING_RATE 24
-/** Get sampling rate used in bit-rate computation */
-#define SPEEX_GET_SAMPLING_RATE 25
-
-/** Reset the encoder/decoder memories to zero*/
-#define SPEEX_RESET_STATE 26
-
-/** Get VBR info (mostly used internally) */
-#define SPEEX_GET_RELATIVE_QUALITY 29
-
-/** Set VAD status (1 for on, 0 for off) */
-#define SPEEX_SET_VAD 30
-
-/** Get VAD status (1 for on, 0 for off) */
-#define SPEEX_GET_VAD 31
-
-/** Set Average Bit-Rate (ABR) to n bits per seconds */
-#define SPEEX_SET_ABR 32
-/** Get Average Bit-Rate (ABR) setting (in bps) */
-#define SPEEX_GET_ABR 33
-
-/** Set DTX status (1 for on, 0 for off) */
-#define SPEEX_SET_DTX 34
-/** Get DTX status (1 for on, 0 for off) */
-#define SPEEX_GET_DTX 35
-
-/** Set submode encoding in each frame (1 for yes, 0 for no, setting to no breaks the standard) */
-#define SPEEX_SET_SUBMODE_ENCODING 36
-/** Get submode encoding in each frame */
-#define SPEEX_GET_SUBMODE_ENCODING 37
-
-/*#define SPEEX_SET_LOOKAHEAD 38*/
-/** Returns the lookahead used by Speex separately for an encoder and a decoder.
- *  Sum encoder and decoder lookahead values to get the total codec lookahead. */
-#define SPEEX_GET_LOOKAHEAD 39
-
-/** Sets tuning for packet-loss concealment (expected loss rate) */
-#define SPEEX_SET_PLC_TUNING 40
-/** Gets tuning for PLC */
-#define SPEEX_GET_PLC_TUNING 41
-
-/** Sets the max bit-rate allowed in VBR mode */
-#define SPEEX_SET_VBR_MAX_BITRATE 42
-/** Gets the max bit-rate allowed in VBR mode */
-#define SPEEX_GET_VBR_MAX_BITRATE 43
-
-/** Turn on/off input/output high-pass filtering */
-#define SPEEX_SET_HIGHPASS 44
-/** Get status of input/output high-pass filtering */
-#define SPEEX_GET_HIGHPASS 45
-
-/** Get "activity level" of the last decoded frame, i.e.
-    how much damage we cause if we remove the frame */
-#define SPEEX_GET_ACTIVITY 47
-
-
-/* Preserving compatibility:*/
-/** Equivalent to SPEEX_SET_ENH */
-#define SPEEX_SET_PF 0
-/** Equivalent to SPEEX_GET_ENH */
-#define SPEEX_GET_PF 1
-
-
-
-
-/* Values allowed for mode queries */
-/** Query the frame size of a mode */
-#define SPEEX_MODE_FRAME_SIZE 0
-
-/** Query the size of an encoded frame for a particular sub-mode */
-#define SPEEX_SUBMODE_BITS_PER_FRAME 1
-
-
-
-/** Get major Speex version */
-#define SPEEX_LIB_GET_MAJOR_VERSION 1
-/** Get minor Speex version */
-#define SPEEX_LIB_GET_MINOR_VERSION 3
-/** Get micro Speex version */
-#define SPEEX_LIB_GET_MICRO_VERSION 5
-/** Get extra Speex version */
-#define SPEEX_LIB_GET_EXTRA_VERSION 7
-/** Get Speex version string */
-#define SPEEX_LIB_GET_VERSION_STRING 9
-
-/*#define SPEEX_LIB_SET_ALLOC_FUNC 10
-#define SPEEX_LIB_GET_ALLOC_FUNC 11
-#define SPEEX_LIB_SET_FREE_FUNC 12
-#define SPEEX_LIB_GET_FREE_FUNC 13
-
-#define SPEEX_LIB_SET_WARNING_FUNC 14
-#define SPEEX_LIB_GET_WARNING_FUNC 15
-#define SPEEX_LIB_SET_ERROR_FUNC 16
-#define SPEEX_LIB_GET_ERROR_FUNC 17
-*/
-
-/** Number of defined modes in Speex */
-#define SPEEX_NB_MODES 3
-
-/** modeID for the defined narrowband mode */
-#define SPEEX_MODEID_NB 0
-
-/** modeID for the defined wideband mode */
-#define SPEEX_MODEID_WB 1
-
-/** modeID for the defined ultra-wideband mode */
-#define SPEEX_MODEID_UWB 2
-
-struct SpeexMode;
-
-
-/* Prototypes for mode function pointers */
-
-/** Encoder state initialization function */
-typedef void *(*encoder_init_func)(const struct SpeexMode *mode);
-
-/** Encoder state destruction function */
-typedef void (*encoder_destroy_func)(void *st);
-
-/** Main encoding function */
-typedef int (*encode_func)(void *state, void *in, SpeexBits *bits);
-
-/** Function for controlling the encoder options */
-typedef int (*encoder_ctl_func)(void *state, int request, void *ptr);
-
-/** Decoder state initialization function */
-typedef void *(*decoder_init_func)(const struct SpeexMode *mode);
-
-/** Decoder state destruction function */
-typedef void (*decoder_destroy_func)(void *st);
-
-/** Main decoding function */
-typedef int  (*decode_func)(void *state, SpeexBits *bits, void *out);
-
-/** Function for controlling the decoder options */
-typedef int (*decoder_ctl_func)(void *state, int request, void *ptr);
-
-
-/** Query function for a mode */
-typedef int (*mode_query_func)(const void *mode, int request, void *ptr);
-
-/** Struct defining a Speex mode */
-typedef struct SpeexMode {
-   /** Pointer to the low-level mode data */
-   const void *mode;
-
-   /** Pointer to the mode query function */
-   mode_query_func query;
-
-   /** The name of the mode (you should not rely on this to identify the mode)*/
-   const char *modeName;
-
-   /**ID of the mode*/
-   int modeID;
-
-   /**Version number of the bitstream (incremented every time we break
-    bitstream compatibility*/
-   int bitstream_version;
-
-   /** Pointer to encoder initialization function */
-   encoder_init_func enc_init;
-
-   /** Pointer to encoder destruction function */
-   encoder_destroy_func enc_destroy;
-
-   /** Pointer to frame encoding function */
-   encode_func enc;
-
-   /** Pointer to decoder initialization function */
-   decoder_init_func dec_init;
-
-   /** Pointer to decoder destruction function */
-   decoder_destroy_func dec_destroy;
-
-   /** Pointer to frame decoding function */
-   decode_func dec;
-
-   /** ioctl-like requests for encoder */
-   encoder_ctl_func enc_ctl;
-
-   /** ioctl-like requests for decoder */
-   decoder_ctl_func dec_ctl;
-
-} SpeexMode;
-
-/**
- * Returns a handle to a newly created Speex encoder state structure. For now,
- * the "mode" argument can be &nb_mode or &wb_mode . In the future, more modes
- * may be added. Note that for now if you have more than one channels to
- * encode, you need one state per channel.
- *
- * @param mode The mode to use (either speex_nb_mode or speex_wb.mode)
- * @return A newly created encoder state or NULL if state allocation fails
- */
-void *speex_encoder_init(const SpeexMode *mode);
-
-/** Frees all resources associated to an existing Speex encoder state.
- * @param state Encoder state to be destroyed */
-void speex_encoder_destroy(void *state);
-
-/** Uses an existing encoder state to encode one frame of speech pointed to by
-    "in". The encoded bit-stream is saved in "bits".
- @param state Encoder state
- @param in Frame that will be encoded with a +-2^15 range. This data MAY be
-        overwritten by the encoder and should be considered uninitialised
-        after the call.
- @param bits Bit-stream where the data will be written
- @return 0 if frame needs not be transmitted (DTX only), 1 otherwise
- */
-int speex_encode(void *state, float *in, SpeexBits *bits);
-
-/** Uses an existing encoder state to encode one frame of speech pointed to by
-    "in". The encoded bit-stream is saved in "bits".
- @param state Encoder state
- @param in Frame that will be encoded with a +-2^15 range
- @param bits Bit-stream where the data will be written
- @return 0 if frame needs not be transmitted (DTX only), 1 otherwise
- */
-int speex_encode_int(void *state, spx_int16_t *in, SpeexBits *bits);
-
-/** Used like the ioctl function to control the encoder parameters
- *
- * @param state Encoder state
- * @param request ioctl-type request (one of the SPEEX_* macros)
- * @param ptr Data exchanged to-from function
- * @return 0 if no error, -1 if request in unknown, -2 for invalid parameter
- */
-int speex_encoder_ctl(void *state, int request, void *ptr);
-
-
-/** Returns a handle to a newly created decoder state structure. For now,
- * the mode argument can be &nb_mode or &wb_mode . In the future, more modes
- * may be added.  Note that for now if you have more than one channels to
- * decode, you need one state per channel.
- *
- * @param mode Speex mode (one of speex_nb_mode or speex_wb_mode)
- * @return A newly created decoder state or NULL if state allocation fails
- */
-void *speex_decoder_init(const SpeexMode *mode);
-
-/** Frees all resources associated to an existing decoder state.
- *
- * @param state State to be destroyed
- */
-void speex_decoder_destroy(void *state);
-
-/** Uses an existing decoder state to decode one frame of speech from
- * bit-stream bits. The output speech is saved written to out.
- *
- * @param state Decoder state
- * @param bits Bit-stream from which to decode the frame (NULL if the packet was lost)
- * @param out Where to write the decoded frame
- * @return return status (0 for no error, -1 for end of stream, -2 corrupt stream)
- */
-int speex_decode(void *state, SpeexBits *bits, float *out);
-
-/** Uses an existing decoder state to decode one frame of speech from
- * bit-stream bits. The output speech is saved written to out.
- *
- * @param state Decoder state
- * @param bits Bit-stream from which to decode the frame (NULL if the packet was lost)
- * @param out Where to write the decoded frame
- * @return return status (0 for no error, -1 for end of stream, -2 corrupt stream)
- */
-int speex_decode_int(void *state, SpeexBits *bits, spx_int16_t *out);
-
-/** Used like the ioctl function to control the encoder parameters
- *
- * @param state Decoder state
- * @param request ioctl-type request (one of the SPEEX_* macros)
- * @param ptr Data exchanged to-from function
- * @return 0 if no error, -1 if request in unknown, -2 for invalid parameter
- */
-int speex_decoder_ctl(void *state, int request, void *ptr);
-
-
-/** Query function for mode information
- *
- * @param mode Speex mode
- * @param request ioctl-type request (one of the SPEEX_* macros)
- * @param ptr Data exchanged to-from function
- * @return 0 if no error, -1 if request in unknown, -2 for invalid parameter
- */
-int speex_mode_query(const SpeexMode *mode, int request, void *ptr);
-
-/** Functions for controlling the behavior of libspeex
- * @param request ioctl-type request (one of the SPEEX_LIB_* macros)
- * @param ptr Data exchanged to-from function
- * @return 0 if no error, -1 if request in unknown, -2 for invalid parameter
- */
-int speex_lib_ctl(int request, void *ptr);
-
-/** Default narrowband mode */
-extern const SpeexMode speex_nb_mode;
-
-/** Default wideband mode */
-extern const SpeexMode speex_wb_mode;
-
-/** Default "ultra-wideband" mode */
-extern const SpeexMode speex_uwb_mode;
-
-/** List of all modes available */
-extern const SpeexMode * const speex_mode_list[SPEEX_NB_MODES];
-
-/** Obtain one of the modes available */
-const SpeexMode * speex_lib_get_mode (int mode);
-
-#ifndef WIN32
-/* We actually override the function in the narrowband case so that we can avoid linking in the wideband stuff */
-#define speex_lib_get_mode(mode) ((mode)==SPEEX_MODEID_NB ? &speex_nb_mode : speex_lib_get_mode (mode))
-#endif
-
-#ifdef __cplusplus
-}
-#endif
-
-/** @}*/
-#endif

+ 0 - 174
Engine/lib/speex/include/speex/speex_bits.h

@@ -1,174 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin */
-/**
-   @file speex_bits.h
-   @brief Handles bit packing/unpacking
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-#ifndef BITS_H
-#define BITS_H
-/** @defgroup SpeexBits SpeexBits: Bit-stream manipulations
- *  This is the structure that holds the bit-stream when encoding or decoding
- * with Speex. It allows some manipulations as well.
- *  @{
- */
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-/** Bit-packing data structure representing (part of) a bit-stream. */
-typedef struct SpeexBits {
-   char *chars;   /**< "raw" data */
-   int   nbBits;  /**< Total number of bits stored in the stream*/
-   int   charPtr; /**< Position of the byte "cursor" */
-   int   bitPtr;  /**< Position of the bit "cursor" within the current char */
-   int   owner;   /**< Does the struct "own" the "raw" buffer (member "chars") */
-   int   overflow;/**< Set to one if we try to read past the valid data */
-   int   buf_size;/**< Allocated size for buffer */
-   int   reserved1; /**< Reserved for future use */
-   void *reserved2; /**< Reserved for future use */
-} SpeexBits;
-
-/** Initializes and allocates resources for a SpeexBits struct */
-void speex_bits_init(SpeexBits *bits);
-
-/** Initializes SpeexBits struct using a pre-allocated buffer*/
-void speex_bits_init_buffer(SpeexBits *bits, void *buff, int buf_size);
-
-/** Sets the bits in a SpeexBits struct to use data from an existing buffer (for decoding without copying data) */
-void speex_bits_set_bit_buffer(SpeexBits *bits, void *buff, int buf_size);
-
-/** Frees all resources associated to a SpeexBits struct. Right now this does nothing since no resources are allocated, but this could change in the future.*/
-void speex_bits_destroy(SpeexBits *bits);
-
-/** Resets bits to initial value (just after initialization, erasing content)*/
-void speex_bits_reset(SpeexBits *bits);
-
-/** Rewind the bit-stream to the beginning (ready for read) without erasing the content */
-void speex_bits_rewind(SpeexBits *bits);
-
-/** Initializes the bit-stream from the data in an area of memory */
-void speex_bits_read_from(SpeexBits *bits, const char *bytes, int len);
-
-/** Append bytes to the bit-stream
- *
- * @param bits Bit-stream to operate on
- * @param bytes pointer to the bytes what will be appended
- * @param len Number of bytes of append
- */
-void speex_bits_read_whole_bytes(SpeexBits *bits, const char *bytes, int len);
-
-/** Write the content of a bit-stream to an area of memory
- *
- * @param bits Bit-stream to operate on
- * @param bytes Memory location where to write the bits
- * @param max_len Maximum number of bytes to write (i.e. size of the "bytes" buffer)
- * @return Number of bytes written to the "bytes" buffer
-*/
-int speex_bits_write(SpeexBits *bits, char *bytes, int max_len);
-
-/** Like speex_bits_write, but writes only the complete bytes in the stream. Also removes the written bytes from the stream */
-int speex_bits_write_whole_bytes(SpeexBits *bits, char *bytes, int max_len);
-
-/** Append bits to the bit-stream
- * @param bits Bit-stream to operate on
- * @param data Value to append as integer
- * @param nbBits number of bits to consider in "data"
- */
-void speex_bits_pack(SpeexBits *bits, int data, int nbBits);
-
-/** Interpret the next bits in the bit-stream as a signed integer
- *
- * @param bits Bit-stream to operate on
- * @param nbBits Number of bits to interpret
- * @return A signed integer represented by the bits read
- */
-int speex_bits_unpack_signed(SpeexBits *bits, int nbBits);
-
-/** Interpret the next bits in the bit-stream as an unsigned integer
- *
- * @param bits Bit-stream to operate on
- * @param nbBits Number of bits to interpret
- * @return An unsigned integer represented by the bits read
- */
-unsigned int speex_bits_unpack_unsigned(SpeexBits *bits, int nbBits);
-
-/** Returns the number of bytes in the bit-stream, including the last one even if it is not "full"
- *
- * @param bits Bit-stream to operate on
- * @return Number of bytes in the stream
- */
-int speex_bits_nbytes(SpeexBits *bits);
-
-/** Same as speex_bits_unpack_unsigned, but without modifying the cursor position
- *
- * @param bits Bit-stream to operate on
- * @param nbBits Number of bits to look for
- * @return Value of the bits peeked, interpreted as unsigned
- */
-unsigned int speex_bits_peek_unsigned(SpeexBits *bits, int nbBits);
-
-/** Get the value of the next bit in the stream, without modifying the
- * "cursor" position
- *
- * @param bits Bit-stream to operate on
- * @return Value of the bit peeked (one bit only)
- */
-int speex_bits_peek(SpeexBits *bits);
-
-/** Advances the position of the "bit cursor" in the stream
- *
- * @param bits Bit-stream to operate on
- * @param n Number of bits to advance
- */
-void speex_bits_advance(SpeexBits *bits, int n);
-
-/** Returns the number of bits remaining to be read in a stream
- *
- * @param bits Bit-stream to operate on
- * @return Number of bits that can still be read from the stream
- */
-int speex_bits_remaining(SpeexBits *bits);
-
-/** Insert a terminator so that the data can be sent as a packet while auto-detecting
- * the number of frames in each packet
- *
- * @param bits Bit-stream to operate on
- */
-void speex_bits_insert_terminator(SpeexBits *bits);
-
-#ifdef __cplusplus
-}
-#endif
-
-/* @} */
-#endif

+ 0 - 134
Engine/lib/speex/include/speex/speex_callbacks.h

@@ -1,134 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin*/
-/**
-  @file speex_callbacks.h
-  @brief Describes callback handling and in-band signalling
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-#ifndef SPEEX_CALLBACKS_H
-#define SPEEX_CALLBACKS_H
-/** @defgroup SpeexCallbacks Various definitions for Speex callbacks supported by the decoder.
- *  @{
- */
-
-#include "speex.h"
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-/** Total number of callbacks */
-#define SPEEX_MAX_CALLBACKS 16
-
-/* Describes all the in-band requests */
-
-/*These are 1-bit requests*/
-/** Request for perceptual enhancement (1 for on, 0 for off) */
-#define SPEEX_INBAND_ENH_REQUEST         0
-/** Reserved */
-#define SPEEX_INBAND_RESERVED1           1
-
-/*These are 4-bit requests*/
-/** Request for a mode change */
-#define SPEEX_INBAND_MODE_REQUEST        2
-/** Request for a low mode change */
-#define SPEEX_INBAND_LOW_MODE_REQUEST    3
-/** Request for a high mode change */
-#define SPEEX_INBAND_HIGH_MODE_REQUEST   4
-/** Request for VBR (1 on, 0 off) */
-#define SPEEX_INBAND_VBR_QUALITY_REQUEST 5
-/** Request to be sent acknowledge */
-#define SPEEX_INBAND_ACKNOWLEDGE_REQUEST 6
-/** Request for VBR (1 for on, 0 for off) */
-#define SPEEX_INBAND_VBR_REQUEST         7
-
-/*These are 8-bit requests*/
-/** Send a character in-band */
-#define SPEEX_INBAND_CHAR                8
-/** Intensity stereo information */
-#define SPEEX_INBAND_STEREO              9
-
-/*These are 16-bit requests*/
-/** Transmit max bit-rate allowed */
-#define SPEEX_INBAND_MAX_BITRATE         10
-
-/*These are 32-bit requests*/
-/** Acknowledge packet reception */
-#define SPEEX_INBAND_ACKNOWLEDGE         12
-
-/** Callback function type */
-typedef int (*speex_callback_func)(SpeexBits *bits, void *state, void *data);
-
-/** Callback information */
-typedef struct SpeexCallback {
-   int callback_id;             /**< ID associated to the callback */
-   speex_callback_func func;    /**< Callback handler function */
-   void *data;                  /**< Data that will be sent to the handler */
-   void *reserved1;             /**< Reserved for future use */
-   int   reserved2;             /**< Reserved for future use */
-} SpeexCallback;
-
-/** Handle in-band request */
-int speex_inband_handler(SpeexBits *bits, SpeexCallback *callback_list, void *state);
-
-/** Standard handler for mode request (change mode, no questions asked) */
-int speex_std_mode_request_handler(SpeexBits *bits, void *state, void *data);
-
-/** Standard handler for high mode request (change high mode, no questions asked) */
-int speex_std_high_mode_request_handler(SpeexBits *bits, void *state, void *data);
-
-/** Standard handler for in-band characters (write to stderr) */
-int speex_std_char_handler(SpeexBits *bits, void *state, void *data);
-
-/** Default handler for user-defined requests: in this case, just ignore */
-int speex_default_user_handler(SpeexBits *bits, void *state, void *data);
-
-
-
-/** Standard handler for low mode request (change low mode, no questions asked) */
-int speex_std_low_mode_request_handler(SpeexBits *bits, void *state, void *data);
-
-/** Standard handler for VBR request (Set VBR, no questions asked) */
-int speex_std_vbr_request_handler(SpeexBits *bits, void *state, void *data);
-
-/** Standard handler for enhancer request (Turn enhancer on/off, no questions asked) */
-int speex_std_enh_request_handler(SpeexBits *bits, void *state, void *data);
-
-/** Standard handler for VBR quality request (Set VBR quality, no questions asked) */
-int speex_std_vbr_quality_request_handler(SpeexBits *bits, void *state, void *data);
-
-
-#ifdef __cplusplus
-}
-#endif
-
-/** @} */
-#endif

+ 0 - 12
Engine/lib/speex/include/speex/speex_config_types.h.in

@@ -1,12 +0,0 @@
-#ifndef __SPEEX_TYPES_H__
-#define __SPEEX_TYPES_H__
-
-@INCLUDE_STDINT@
-
-typedef @SIZE16@ spx_int16_t;
-typedef @USIZE16@ spx_uint16_t;
-typedef @SIZE32@ spx_int32_t;
-typedef @USIZE32@ spx_uint32_t;
-
-#endif
-

+ 0 - 94
Engine/lib/speex/include/speex/speex_header.h

@@ -1,94 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin */
-/**
-   @file speex_header.h
-   @brief Describes the Speex header
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-
-#ifndef SPEEX_HEADER_H
-#define SPEEX_HEADER_H
-/** @defgroup SpeexHeader SpeexHeader: Makes it easy to write/parse an Ogg/Speex header
- *  This is the Speex header for the Ogg encapsulation. You don't need that if you just use RTP.
- *  @{
- */
-
-#include "speex_types.h"
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-struct SpeexMode;
-
-/** Length of the Speex header identifier */
-#define SPEEX_HEADER_STRING_LENGTH 8
-
-/** Maximum number of characters for encoding the Speex version number in the header */
-#define SPEEX_HEADER_VERSION_LENGTH 20
-
-/** Speex header info for file-based formats */
-typedef struct SpeexHeader {
-   char speex_string[SPEEX_HEADER_STRING_LENGTH];   /**< Identifies a Speex bit-stream, always set to "Speex   " */
-   char speex_version[SPEEX_HEADER_VERSION_LENGTH]; /**< Speex version */
-   spx_int32_t speex_version_id;       /**< Version for Speex (for checking compatibility) */
-   spx_int32_t header_size;            /**< Total size of the header ( sizeof(SpeexHeader) ) */
-   spx_int32_t rate;                   /**< Sampling rate used */
-   spx_int32_t mode;                   /**< Mode used (0 for narrowband, 1 for wideband) */
-   spx_int32_t mode_bitstream_version; /**< Version ID of the bit-stream */
-   spx_int32_t nb_channels;            /**< Number of channels encoded */
-   spx_int32_t bitrate;                /**< Bit-rate used */
-   spx_int32_t frame_size;             /**< Size of frames */
-   spx_int32_t vbr;                    /**< 1 for a VBR encoding, 0 otherwise */
-   spx_int32_t frames_per_packet;      /**< Number of frames stored per Ogg packet */
-   spx_int32_t extra_headers;          /**< Number of additional headers after the comments */
-   spx_int32_t reserved1;              /**< Reserved for future use, must be zero */
-   spx_int32_t reserved2;              /**< Reserved for future use, must be zero */
-} SpeexHeader;
-
-/** Initializes a SpeexHeader using basic information */
-void speex_init_header(SpeexHeader *header, int rate, int nb_channels, const struct SpeexMode *m);
-
-/** Creates the header packet from the header itself (mostly involves endianness conversion) */
-char *speex_header_to_packet(SpeexHeader *header, int *size);
-
-/** Creates a SpeexHeader from a packet */
-SpeexHeader *speex_packet_to_header(char *packet, int size);
-
-/** Frees the memory allocated by either speex_header_to_packet() or speex_packet_to_header() */
-void speex_header_free(void *ptr);
-
-#ifdef __cplusplus
-}
-#endif
-
-/** @} */
-#endif

+ 0 - 92
Engine/lib/speex/include/speex/speex_stereo.h

@@ -1,92 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin*/
-/**
-   @file speex_stereo.h
-   @brief Describes the handling for intensity stereo
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifndef STEREO_H
-#define STEREO_H
-/** @defgroup SpeexStereoState SpeexStereoState: Handling Speex stereo files
- *  This describes the Speex intensity stereo encoding/decoding
- *  @{
- */
-
-#include "speex_types.h"
-#include "speex_bits.h"
-
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-/** If you access any of these fields directly, I'll personally come and bite you */
-typedef struct SpeexStereoState {
-   float balance;      /**< Left/right balance info */
-   float e_ratio;      /**< Ratio of energies: E(left+right)/[E(left)+E(right)]  */
-   float smooth_left;  /**< Smoothed left channel gain */
-   float smooth_right; /**< Smoothed right channel gain */
-   float reserved1;    /**< Reserved for future use */
-   float reserved2;    /**< Reserved for future use */
-} SpeexStereoState;
-
-/** Deprecated. Use speex_stereo_state_init() instead. */
-#define SPEEX_STEREO_STATE_INIT {1,.5,1,1,0,0}
-
-/** Initialise/create a stereo stereo state */
-SpeexStereoState *speex_stereo_state_init();
-
-/** Reset/re-initialise an already allocated stereo state */
-void speex_stereo_state_reset(SpeexStereoState *stereo);
-
-/** Destroy a stereo stereo state */
-void speex_stereo_state_destroy(SpeexStereoState *stereo);
-
-/** Transforms a stereo frame into a mono frame and stores intensity stereo info in 'bits' */
-void speex_encode_stereo(float *data, int frame_size, SpeexBits *bits);
-
-/** Transforms a stereo frame into a mono frame and stores intensity stereo info in 'bits' */
-void speex_encode_stereo_int(spx_int16_t *data, int frame_size, SpeexBits *bits);
-
-/** Transforms a mono frame into a stereo frame using intensity stereo info */
-void speex_decode_stereo(float *data, int frame_size, SpeexStereoState *stereo);
-
-/** Transforms a mono frame into a stereo frame using intensity stereo info */
-void speex_decode_stereo_int(spx_int16_t *data, int frame_size, SpeexStereoState *stereo);
-
-/** Callback handler for intensity stereo info */
-int speex_std_stereo_request_handler(SpeexBits *bits, void *state, void *data);
-
-#ifdef __cplusplus
-}
-#endif
-
-/** @} */
-#endif

+ 0 - 126
Engine/lib/speex/include/speex/speex_types.h

@@ -1,126 +0,0 @@
-/* speex_types.h taken from libogg */
-/********************************************************************
- *                                                                  *
- * THIS FILE IS PART OF THE OggVorbis SOFTWARE CODEC SOURCE CODE.   *
- * USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS     *
- * GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE *
- * IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING.       *
- *                                                                  *
- * THE OggVorbis SOURCE CODE IS (C) COPYRIGHT 1994-2002             *
- * by the Xiph.Org Foundation http://www.xiph.org/                  *
- *                                                                  *
- ********************************************************************
-
- function: #ifdef jail to whip a few platforms into the UNIX ideal.
- last mod: $Id: os_types.h 7524 2004-08-11 04:20:36Z conrad $
-
- ********************************************************************/
-/**
-   @file speex_types.h
-   @brief Speex types
-*/
-#ifndef _SPEEX_TYPES_H
-#define _SPEEX_TYPES_H
-
-#if defined(_WIN32)
-
-#  if defined(__CYGWIN__)
-#    include <_G_config.h>
-     typedef _G_int32_t spx_int32_t;
-     typedef _G_uint32_t spx_uint32_t;
-     typedef _G_int16_t spx_int16_t;
-     typedef _G_uint16_t spx_uint16_t;
-#  elif defined(__MINGW32__)
-     typedef short spx_int16_t;
-     typedef unsigned short spx_uint16_t;
-     typedef int spx_int32_t;
-     typedef unsigned int spx_uint32_t;
-#  elif defined(__MWERKS__)
-     typedef int spx_int32_t;
-     typedef unsigned int spx_uint32_t;
-     typedef short spx_int16_t;
-     typedef unsigned short spx_uint16_t;
-#  else
-     /* MSVC/Borland */
-     typedef __int32 spx_int32_t;
-     typedef unsigned __int32 spx_uint32_t;
-     typedef __int16 spx_int16_t;
-     typedef unsigned __int16 spx_uint16_t;
-#  endif
-
-#elif defined(__MACOS__)
-
-#  include <sys/types.h>
-   typedef SInt16 spx_int16_t;
-   typedef UInt16 spx_uint16_t;
-   typedef SInt32 spx_int32_t;
-   typedef UInt32 spx_uint32_t;
-
-#elif (defined(__APPLE__) && defined(__MACH__)) /* MacOS X Framework build */
-
-#  include <sys/types.h>
-   typedef int16_t spx_int16_t;
-   typedef u_int16_t spx_uint16_t;
-   typedef int32_t spx_int32_t;
-   typedef u_int32_t spx_uint32_t;
-
-#elif defined(__BEOS__)
-
-   /* Be */
-#  include <inttypes.h>
-   typedef int16_t spx_int16_t;
-   typedef u_int16_t spx_uint16_t;
-   typedef int32_t spx_int32_t;
-   typedef u_int32_t spx_uint32_t;
-
-#elif defined (__EMX__)
-
-   /* OS/2 GCC */
-   typedef short spx_int16_t;
-   typedef unsigned short spx_uint16_t;
-   typedef int spx_int32_t;
-   typedef unsigned int spx_uint32_t;
-
-#elif defined (DJGPP)
-
-   /* DJGPP */
-   typedef short spx_int16_t;
-   typedef int spx_int32_t;
-   typedef unsigned int spx_uint32_t;
-
-#elif defined(R5900)
-
-   /* PS2 EE */
-   typedef int spx_int32_t;
-   typedef unsigned spx_uint32_t;
-   typedef short spx_int16_t;
-
-#elif defined(__SYMBIAN32__)
-
-   /* Symbian GCC */
-   typedef signed short spx_int16_t;
-   typedef unsigned short spx_uint16_t;
-   typedef signed int spx_int32_t;
-   typedef unsigned int spx_uint32_t;
-
-#elif defined(CONFIG_TI_C54X) || defined (CONFIG_TI_C55X)
-
-   typedef short spx_int16_t;
-   typedef unsigned short spx_uint16_t;
-   typedef long spx_int32_t;
-   typedef unsigned long spx_uint32_t;
-
-#elif defined(CONFIG_TI_C6X)
-
-   typedef short spx_int16_t;
-   typedef unsigned short spx_uint16_t;
-   typedef int spx_int32_t;
-   typedef unsigned int spx_uint32_t;
-
-#else
-
-#include "speex_config_types.h"
-
-#endif
-
-#endif  /* _SPEEX_TYPES_H */

+ 0 - 11
Engine/lib/speex/libspeex/.cvsignore

@@ -1,11 +0,0 @@
-.deps
-.libs
-*.la
-*.lo
-*.o
-Makefile
-Makefile.in
-testdenoise
-testenc
-testenc_uwb
-testenc_wb

+ 0 - 53
Engine/lib/speex/libspeex/Makefile.am

@@ -1,53 +0,0 @@
-# Disable automatic dependency tracking if using other tools than gcc and gmake
-#AUTOMAKE_OPTIONS = no-dependencies
-
-if BUILD_VORBIS_PSY
-  VPSY_SOURCE=vorbis_psy.c
-if BUILD_KISS_FFT
-  FFTSRC=kiss_fft.c _kiss_fft_guts.h kiss_fft.h kiss_fftr.c kiss_fftr.h 
-else
-if BUILD_SMALLFT
-  FFTSRC=smallft.c
-else
-  FFTSRC=
-endif
-endif
-else
-  VPSY_SOURCE=
-  FFTSRC=
-endif
-
-AM_CPPFLAGS = -I$(top_srcdir)/include -I$(top_builddir)/include/speex -I$(top_builddir) @OGG_CFLAGS@ @FFT_CFLAGS@
-
-lib_LTLIBRARIES = libspeex.la
-
-# Sources for compilation in the library
-libspeex_la_SOURCES = 	$(VPSY_SOURCE) $(FFTSRC) cb_search.c 	exc_10_32_table.c 	exc_8_128_table.c \
-		filters.c 	gain_table.c 	hexc_table.c 	high_lsp_tables.c 	lsp.c \
-		ltp.c 	speex.c 	stereo.c 	vbr.c 	vq.c bits.c exc_10_16_table.c \
-	exc_20_32_table.c exc_5_256_table.c exc_5_64_table.c gain_table_lbr.c hexc_10_32_table.c \
-	lpc.c lsp_tables_nb.c modes.c modes_wb.c nb_celp.c quant_lsp.c sb_celp.c \
-	speex_callbacks.c speex_header.c window.c
-
-
-noinst_HEADERS = 	arch.h 	bfin.h cb_search_arm4.h 	cb_search_bfin.h 	cb_search_sse.h \
-		filters.h 	filters_arm4.h 	filters_bfin.h 	filters_sse.h 	fixed_arm4.h \
-		fixed_arm5e.h 	fixed_bfin.h 	fixed_debug.h 	lpc.h 	lpc_bfin.h 	ltp.h 	ltp_arm4.h \
-		ltp_sse.h 	math_approx.h 		misc_bfin.h 	nb_celp.h 	quant_lsp.h 	sb_celp.h \
-		stack_alloc.h 	vbr.h 	vq.h 	vq_arm4.h 	vq_bfin.h 	vq_sse.h cb_search.h fftwrap.h \
-	fixed_generic.h lsp.h lsp_bfin.h ltp_bfin.h modes.h os_support.h \
-	quant_lsp_bfin.h smallft.h vorbis_psy.h
-
-
-libspeex_la_LDFLAGS = -no-undefined -version-info @SPEEX_LT_CURRENT@:@SPEEX_LT_REVISION@:@SPEEX_LT_AGE@
-libspeex_la_LIBADD = $(LIBM)
-
-if BUILD_BINARIES
-noinst_PROGRAMS = testenc testenc_wb testenc_uwb
-testenc_SOURCES = testenc.c
-testenc_LDADD = libspeex.la $(LIBM)
-testenc_wb_SOURCES = testenc_wb.c
-testenc_wb_LDADD = libspeex.la $(LIBM)
-testenc_uwb_SOURCES = testenc_uwb.c
-testenc_uwb_LDADD = libspeex.la $(LIBM)
-endif

+ 0 - 160
Engine/lib/speex/libspeex/_kiss_fft_guts.h

@@ -1,160 +0,0 @@
-/*
-Copyright (c) 2003-2004, Mark Borgerding
-
-All rights reserved.
-
-Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met:
-
-    * Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer.
-    * Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution.
-    * Neither the author nor the names of any contributors may be used to endorse or promote products derived from this software without specific prior written permission.
-
-THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#define MIN(a,b) ((a)<(b) ? (a):(b))
-#define MAX(a,b) ((a)>(b) ? (a):(b))
-
-/* kiss_fft.h
-   defines kiss_fft_scalar as either short or a float type
-   and defines
-   typedef struct { kiss_fft_scalar r; kiss_fft_scalar i; }kiss_fft_cpx; */
-#include "kiss_fft.h"
-#include "math_approx.h"
-
-#define MAXFACTORS 32
-/* e.g. an fft of length 128 has 4 factors 
- as far as kissfft is concerned
- 4*4*4*2
- */
-
-struct kiss_fft_state{
-    int nfft;
-    int inverse;
-    int factors[2*MAXFACTORS];
-    kiss_fft_cpx twiddles[1];
-};
-
-/*
-  Explanation of macros dealing with complex math:
-
-   C_MUL(m,a,b)         : m = a*b
-   C_FIXDIV( c , div )  : if a fixed point impl., c /= div. noop otherwise
-   C_SUB( res, a,b)     : res = a - b
-   C_SUBFROM( res , a)  : res -= a
-   C_ADDTO( res , a)    : res += a
- * */
-#ifdef FIXED_POINT
-#include "arch.h"
-# define FRACBITS 15
-# define SAMPPROD spx_int32_t 
-#define SAMP_MAX 32767
-
-#define SAMP_MIN -SAMP_MAX
-
-#if defined(CHECK_OVERFLOW)
-#  define CHECK_OVERFLOW_OP(a,op,b)  \
-	if ( (SAMPPROD)(a) op (SAMPPROD)(b) > SAMP_MAX || (SAMPPROD)(a) op (SAMPPROD)(b) < SAMP_MIN ) { \
-		fprintf(stderr,"WARNING:overflow @ " __FILE__ "(%d): (%d " #op" %d) = %ld\n",__LINE__,(a),(b),(SAMPPROD)(a) op (SAMPPROD)(b) );  }
-#endif
-
-
-#   define smul(a,b) ( (SAMPPROD)(a)*(b) )
-#   define sround( x )  (kiss_fft_scalar)( ( (x) + (1<<(FRACBITS-1)) ) >> FRACBITS )
-
-#   define S_MUL(a,b) sround( smul(a,b) )
-
-#   define C_MUL(m,a,b) \
-      do{ (m).r = sround( smul((a).r,(b).r) - smul((a).i,(b).i) ); \
-          (m).i = sround( smul((a).r,(b).i) + smul((a).i,(b).r) ); }while(0)
-
-#   define C_MUL4(m,a,b) \
-               do{ (m).r = PSHR32( smul((a).r,(b).r) - smul((a).i,(b).i),17 ); \
-               (m).i = PSHR32( smul((a).r,(b).i) + smul((a).i,(b).r),17 ); }while(0)
-
-#   define DIVSCALAR(x,k) \
-	(x) = sround( smul(  x, SAMP_MAX/k ) )
-
-#   define C_FIXDIV(c,div) \
-	do {    DIVSCALAR( (c).r , div);  \
-		DIVSCALAR( (c).i  , div); }while (0)
-
-#   define C_MULBYSCALAR( c, s ) \
-    do{ (c).r =  sround( smul( (c).r , s ) ) ;\
-        (c).i =  sround( smul( (c).i , s ) ) ; }while(0)
-
-#else  /* not FIXED_POINT*/
-
-#   define S_MUL(a,b) ( (a)*(b) )
-#define C_MUL(m,a,b) \
-    do{ (m).r = (a).r*(b).r - (a).i*(b).i;\
-        (m).i = (a).r*(b).i + (a).i*(b).r; }while(0)
-
-#define C_MUL4(m,a,b) C_MUL(m,a,b)
-
-#   define C_FIXDIV(c,div) /* NOOP */
-#   define C_MULBYSCALAR( c, s ) \
-    do{ (c).r *= (s);\
-        (c).i *= (s); }while(0)
-#endif
-
-#ifndef CHECK_OVERFLOW_OP
-#  define CHECK_OVERFLOW_OP(a,op,b) /* noop */
-#endif
-
-#define  C_ADD( res, a,b)\
-    do { \
-	    CHECK_OVERFLOW_OP((a).r,+,(b).r)\
-	    CHECK_OVERFLOW_OP((a).i,+,(b).i)\
-	    (res).r=(a).r+(b).r;  (res).i=(a).i+(b).i; \
-    }while(0)
-#define  C_SUB( res, a,b)\
-    do { \
-	    CHECK_OVERFLOW_OP((a).r,-,(b).r)\
-	    CHECK_OVERFLOW_OP((a).i,-,(b).i)\
-	    (res).r=(a).r-(b).r;  (res).i=(a).i-(b).i; \
-    }while(0)
-#define C_ADDTO( res , a)\
-    do { \
-	    CHECK_OVERFLOW_OP((res).r,+,(a).r)\
-	    CHECK_OVERFLOW_OP((res).i,+,(a).i)\
-	    (res).r += (a).r;  (res).i += (a).i;\
-    }while(0)
-
-#define C_SUBFROM( res , a)\
-    do {\
-	    CHECK_OVERFLOW_OP((res).r,-,(a).r)\
-	    CHECK_OVERFLOW_OP((res).i,-,(a).i)\
-	    (res).r -= (a).r;  (res).i -= (a).i; \
-    }while(0)
-
-
-#ifdef FIXED_POINT
-#  define KISS_FFT_COS(phase)  floor(MIN(32767,MAX(-32767,.5+32768 * cos (phase))))
-#  define KISS_FFT_SIN(phase)  floor(MIN(32767,MAX(-32767,.5+32768 * sin (phase))))
-#  define HALF_OF(x) ((x)>>1)
-#elif defined(USE_SIMD)
-#  define KISS_FFT_COS(phase) _mm_set1_ps( cos(phase) )
-#  define KISS_FFT_SIN(phase) _mm_set1_ps( sin(phase) )
-#  define HALF_OF(x) ((x)*_mm_set1_ps(.5))
-#else
-#  define KISS_FFT_COS(phase) (kiss_fft_scalar) cos(phase)
-#  define KISS_FFT_SIN(phase) (kiss_fft_scalar) sin(phase)
-#  define HALF_OF(x) ((x)*.5)
-#endif
-
-#define  kf_cexp(x,phase) \
-	do{ \
-		(x)->r = KISS_FFT_COS(phase);\
-		(x)->i = KISS_FFT_SIN(phase);\
-	}while(0)
-#define  kf_cexp2(x,phase) \
-               do{ \
-               (x)->r = spx_cos_norm((phase));\
-               (x)->i = spx_cos_norm((phase)-32768);\
-}while(0)
-
-
-/* a debugging function */
-#define pcpx(c)\
-    fprintf(stderr,"%g + %gi\n",(double)((c)->r),(double)((c)->i) )

+ 0 - 237
Engine/lib/speex/libspeex/arch.h

@@ -1,237 +0,0 @@
-/* Copyright (C) 2003 Jean-Marc Valin */
-/**
-   @file arch.h
-   @brief Various architecture definitions Speex
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifndef ARCH_H
-#define ARCH_H
-
-#ifndef SPEEX_VERSION
-#define SPEEX_MAJOR_VERSION 1         /**< Major Speex version. */
-#define SPEEX_MINOR_VERSION 1         /**< Minor Speex version. */
-#define SPEEX_MICRO_VERSION 16        /**< Micro Speex version. */
-#define SPEEX_EXTRA_VERSION ""        /**< Extra Speex version. */
-#define SPEEX_VERSION "speex-1.2.0"   /**< Speex version string. */
-#endif
-
-/* A couple test to catch stupid option combinations */
-#ifdef FIXED_POINT
-
-#ifdef FLOATING_POINT
-#error You cannot compile as floating point and fixed point at the same time
-#endif
-#ifdef _USE_SSE
-#error SSE is only for floating-point
-#endif
-#if ((defined (ARM4_ASM)||defined (ARM4_ASM)) && defined(BFIN_ASM)) || (defined (ARM4_ASM)&&defined(ARM5E_ASM))
-#error Make up your mind. What CPU do you have?
-#endif
-#ifdef VORBIS_PSYCHO
-#error Vorbis-psy model currently not implemented in fixed-point
-#endif
-
-#else
-
-#ifndef FLOATING_POINT
-#error You now need to define either FIXED_POINT or FLOATING_POINT
-#endif
-#if defined (ARM4_ASM) || defined(ARM5E_ASM) || defined(BFIN_ASM)
-#error I suppose you can have a [ARM4/ARM5E/Blackfin] that has float instructions?
-#endif
-#ifdef FIXED_POINT_DEBUG
-#error "Don't you think enabling fixed-point is a good thing to do if you want to debug that?"
-#endif
-
-
-#endif
-
-#include "speex/speex_types.h"
-
-#define ABS(x) ((x) < 0 ? (-(x)) : (x))      /**< Absolute integer value. */
-#define ABS16(x) ((x) < 0 ? (-(x)) : (x))    /**< Absolute 16-bit value.  */
-#define MIN16(a,b) ((a) < (b) ? (a) : (b))   /**< Maximum 16-bit value.   */
-#define MAX16(a,b) ((a) > (b) ? (a) : (b))   /**< Maximum 16-bit value.   */
-#define ABS32(x) ((x) < 0 ? (-(x)) : (x))    /**< Absolute 32-bit value.  */
-#define MIN32(a,b) ((a) < (b) ? (a) : (b))   /**< Maximum 32-bit value.   */
-#define MAX32(a,b) ((a) > (b) ? (a) : (b))   /**< Maximum 32-bit value.   */
-
-#ifdef FIXED_POINT
-
-typedef spx_int16_t spx_word16_t;
-typedef spx_int32_t spx_word32_t;
-typedef spx_word32_t spx_mem_t;
-typedef spx_word16_t spx_coef_t;
-typedef spx_word16_t spx_lsp_t;
-typedef spx_word32_t spx_sig_t;
-
-#define Q15ONE 32767
-
-#define LPC_SCALING  8192
-#define SIG_SCALING  16384
-#define LSP_SCALING  8192.
-#define GAMMA_SCALING 32768.
-#define GAIN_SCALING 64
-#define GAIN_SCALING_1 0.015625
-
-#define LPC_SHIFT    13
-#define LSP_SHIFT    13
-#define SIG_SHIFT    14
-#define GAIN_SHIFT   6
-
-#define VERY_SMALL 0
-#define VERY_LARGE32 ((spx_word32_t)2147483647)
-#define VERY_LARGE16 ((spx_word16_t)32767)
-#define Q15_ONE ((spx_word16_t)32767)
-
-
-#ifdef FIXED_DEBUG
-#include "fixed_debug.h"
-#else
-
-#include "fixed_generic.h"
-
-#ifdef ARM5E_ASM
-#include "fixed_arm5e.h"
-#elif defined (ARM4_ASM)
-#include "fixed_arm4.h"
-#elif defined (BFIN_ASM)
-#include "fixed_bfin.h"
-#endif
-
-#endif
-
-
-#else
-
-typedef float spx_mem_t;
-typedef float spx_coef_t;
-typedef float spx_lsp_t;
-typedef float spx_sig_t;
-typedef float spx_word16_t;
-typedef float spx_word32_t;
-
-#define Q15ONE 1.0f
-#define LPC_SCALING  1.f
-#define SIG_SCALING  1.f
-#define LSP_SCALING  1.f
-#define GAMMA_SCALING 1.f
-#define GAIN_SCALING 1.f
-#define GAIN_SCALING_1 1.f
-
-
-#define VERY_SMALL 1e-15f
-#define VERY_LARGE32 1e15f
-#define VERY_LARGE16 1e15f
-#define Q15_ONE ((spx_word16_t)1.f)
-
-#define QCONST16(x,bits) (x)
-#define QCONST32(x,bits) (x)
-
-#define NEG16(x) (-(x))
-#define NEG32(x) (-(x))
-#define EXTRACT16(x) (x)
-#define EXTEND32(x) (x)
-#define SHR16(a,shift) (a)
-#define SHL16(a,shift) (a)
-#define SHR32(a,shift) (a)
-#define SHL32(a,shift) (a)
-#define PSHR16(a,shift) (a)
-#define PSHR32(a,shift) (a)
-#define VSHR32(a,shift) (a)
-#define SATURATE16(x,a) (x)
-#define SATURATE32(x,a) (x)
-
-#define PSHR(a,shift)       (a)
-#define SHR(a,shift)       (a)
-#define SHL(a,shift)       (a)
-#define SATURATE(x,a) (x)
-
-#define ADD16(a,b) ((a)+(b))
-#define SUB16(a,b) ((a)-(b))
-#define ADD32(a,b) ((a)+(b))
-#define SUB32(a,b) ((a)-(b))
-#define MULT16_16_16(a,b)     ((a)*(b))
-#define MULT16_16(a,b)     ((spx_word32_t)(a)*(spx_word32_t)(b))
-#define MAC16_16(c,a,b)     ((c)+(spx_word32_t)(a)*(spx_word32_t)(b))
-
-#define MULT16_32_Q11(a,b)     ((a)*(b))
-#define MULT16_32_Q13(a,b)     ((a)*(b))
-#define MULT16_32_Q14(a,b)     ((a)*(b))
-#define MULT16_32_Q15(a,b)     ((a)*(b))
-#define MULT16_32_P15(a,b)     ((a)*(b))
-
-#define MAC16_32_Q11(c,a,b)     ((c)+(a)*(b))
-#define MAC16_32_Q15(c,a,b)     ((c)+(a)*(b))
-
-#define MAC16_16_Q11(c,a,b)     ((c)+(a)*(b))
-#define MAC16_16_Q13(c,a,b)     ((c)+(a)*(b))
-#define MAC16_16_P13(c,a,b)     ((c)+(a)*(b))
-#define MULT16_16_Q11_32(a,b)     ((a)*(b))
-#define MULT16_16_Q13(a,b)     ((a)*(b))
-#define MULT16_16_Q14(a,b)     ((a)*(b))
-#define MULT16_16_Q15(a,b)     ((a)*(b))
-#define MULT16_16_P15(a,b)     ((a)*(b))
-#define MULT16_16_P13(a,b)     ((a)*(b))
-#define MULT16_16_P14(a,b)     ((a)*(b))
-
-#define DIV32_16(a,b)     (((spx_word32_t)(a))/(spx_word16_t)(b))
-#define PDIV32_16(a,b)     (((spx_word32_t)(a))/(spx_word16_t)(b))
-#define DIV32(a,b)     (((spx_word32_t)(a))/(spx_word32_t)(b))
-#define PDIV32(a,b)     (((spx_word32_t)(a))/(spx_word32_t)(b))
-
-
-#endif
-
-
-#if defined (CONFIG_TI_C54X) || defined (CONFIG_TI_C55X)
-
-/* 2 on TI C5x DSP */
-#define BYTES_PER_CHAR 2 
-#define BITS_PER_CHAR 16
-#define LOG2_BITS_PER_CHAR 4
-
-#else 
-
-#define BYTES_PER_CHAR 1
-#define BITS_PER_CHAR 8
-#define LOG2_BITS_PER_CHAR 3
-
-#endif
-
-
-
-#ifdef FIXED_DEBUG
-extern long long spx_mips;
-#endif
-
-
-#endif

+ 0 - 15
Engine/lib/speex/libspeex/bfin.h

@@ -1,15 +0,0 @@
-/* Common Blackfin assembly defines
- *
- * Copyright (C) 2005-2009 Analog Devices
- */
-
-#if __GNUC__ <= 3
-/* GCC-3.4 and older did not use hardware loops and thus did not have
- * register constraints for declaring clobbers.
- */
-# define BFIN_HWLOOP0_REGS
-# define BFIN_HWLOOP1_REGS
-#else
-# define BFIN_HWLOOP0_REGS , "LB0", "LT0", "LC0"
-# define BFIN_HWLOOP1_REGS , "LB1", "LT1", "LC1"
-#endif

+ 0 - 372
Engine/lib/speex/libspeex/bits.c

@@ -1,372 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: speex_bits.c
-
-   Handles bit packing/unpacking
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-#ifdef HAVE_CONFIG_H
-#include "config.h"
-#endif
-
-#include "speex/speex_bits.h"
-#include "arch.h"
-#include "os_support.h"
-
-/* Maximum size of the bit-stream (for fixed-size allocation) */
-#ifndef MAX_CHARS_PER_FRAME
-#define MAX_CHARS_PER_FRAME (2000/BYTES_PER_CHAR)
-#endif
-
-EXPORT void speex_bits_init(SpeexBits *bits)
-{
-   bits->chars = (char*)speex_alloc(MAX_CHARS_PER_FRAME);
-   if (!bits->chars)
-      return;
-
-   bits->buf_size = MAX_CHARS_PER_FRAME;
-
-   bits->owner=1;
-
-   speex_bits_reset(bits);
-}
-
-EXPORT void speex_bits_init_buffer(SpeexBits *bits, void *buff, int buf_size)
-{
-   bits->chars = (char*)buff;
-   bits->buf_size = buf_size;
-
-   bits->owner=0;
-
-   speex_bits_reset(bits);
-}
-
-EXPORT void speex_bits_set_bit_buffer(SpeexBits *bits, void *buff, int buf_size)
-{
-   bits->chars = (char*)buff;
-   bits->buf_size = buf_size;
-
-   bits->owner=0;
-
-   bits->nbBits=buf_size<<LOG2_BITS_PER_CHAR;
-   bits->charPtr=0;
-   bits->bitPtr=0;
-   bits->overflow=0;
-
-}
-
-EXPORT void speex_bits_destroy(SpeexBits *bits)
-{
-   if (bits->owner)
-      speex_free(bits->chars);
-   /* Will do something once the allocation is dynamic */
-}
-
-EXPORT void speex_bits_reset(SpeexBits *bits)
-{
-   /* We only need to clear the first byte now */
-   bits->chars[0]=0;
-   bits->nbBits=0;
-   bits->charPtr=0;
-   bits->bitPtr=0;
-   bits->overflow=0;
-}
-
-EXPORT void speex_bits_rewind(SpeexBits *bits)
-{
-   bits->charPtr=0;
-   bits->bitPtr=0;
-   bits->overflow=0;
-}
-
-EXPORT void speex_bits_read_from(SpeexBits *bits, const char *chars, int len)
-{
-   int i;
-   int nchars = len / BYTES_PER_CHAR;
-   if (nchars > bits->buf_size)
-   {
-      speex_notify("Packet is larger than allocated buffer");
-      if (bits->owner)
-      {
-         char *tmp = (char*)speex_realloc(bits->chars, nchars);
-         if (tmp)
-         {
-            bits->buf_size=nchars;
-            bits->chars=tmp;
-         } else {
-            nchars=bits->buf_size;
-            speex_warning("Could not resize input buffer: truncating input");
-         }
-      } else {
-         speex_warning("Do not own input buffer: truncating oversize input");
-         nchars=bits->buf_size;
-      }
-   }
-#if (BYTES_PER_CHAR==2)
-/* Swap bytes to proper endian order (could be done externally) */
-#define HTOLS(A) ((((A) >> 8)&0xff)|(((A) & 0xff)<<8))
-#else
-#define HTOLS(A) (A)
-#endif
-   for (i=0;i<nchars;i++)
-      bits->chars[i]=HTOLS(chars[i]);
-
-   bits->nbBits=nchars<<LOG2_BITS_PER_CHAR;
-   bits->charPtr=0;
-   bits->bitPtr=0;
-   bits->overflow=0;
-}
-
-static void speex_bits_flush(SpeexBits *bits)
-{
-   int nchars = ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR);
-   if (bits->charPtr>0)
-      SPEEX_MOVE(bits->chars, &bits->chars[bits->charPtr], nchars-bits->charPtr);
-   bits->nbBits -= bits->charPtr<<LOG2_BITS_PER_CHAR;
-   bits->charPtr=0;
-}
-
-EXPORT void speex_bits_read_whole_bytes(SpeexBits *bits, const char *chars, int nbytes)
-{
-   int i,pos;
-   int nchars = nbytes/BYTES_PER_CHAR;
-
-   if (((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR)+nchars > bits->buf_size)
-   {
-      /* Packet is larger than allocated buffer */
-      if (bits->owner)
-      {
-         char *tmp = (char*)speex_realloc(bits->chars, (bits->nbBits>>LOG2_BITS_PER_CHAR)+nchars+1);
-         if (tmp)
-         {
-            bits->buf_size=(bits->nbBits>>LOG2_BITS_PER_CHAR)+nchars+1;
-            bits->chars=tmp;
-         } else {
-            nchars=bits->buf_size-(bits->nbBits>>LOG2_BITS_PER_CHAR)-1;
-            speex_warning("Could not resize input buffer: truncating oversize input");
-         }
-      } else {
-         speex_warning("Do not own input buffer: truncating oversize input");
-         nchars=bits->buf_size;
-      }
-   }
-
-   speex_bits_flush(bits);
-   pos=bits->nbBits>>LOG2_BITS_PER_CHAR;
-   for (i=0;i<nchars;i++)
-      bits->chars[pos+i]=HTOLS(chars[i]);
-   bits->nbBits+=nchars<<LOG2_BITS_PER_CHAR;
-}
-
-EXPORT int speex_bits_write(SpeexBits *bits, char *chars, int max_nbytes)
-{
-   int i;
-   int max_nchars = max_nbytes/BYTES_PER_CHAR;
-   int charPtr, bitPtr, nbBits;
-
-   /* Insert terminator, but save the data so we can put it back after */
-   bitPtr=bits->bitPtr;
-   charPtr=bits->charPtr;
-   nbBits=bits->nbBits;
-   speex_bits_insert_terminator(bits);
-   bits->bitPtr=bitPtr;
-   bits->charPtr=charPtr;
-   bits->nbBits=nbBits;
-
-   if (max_nchars > ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR))
-      max_nchars = ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR);
-
-   for (i=0;i<max_nchars;i++)
-      chars[i]=HTOLS(bits->chars[i]);
-   return max_nchars*BYTES_PER_CHAR;
-}
-
-EXPORT int speex_bits_write_whole_bytes(SpeexBits *bits, char *chars, int max_nbytes)
-{
-   int max_nchars = max_nbytes/BYTES_PER_CHAR;
-   int i;
-   if (max_nchars > ((bits->nbBits)>>LOG2_BITS_PER_CHAR))
-      max_nchars = ((bits->nbBits)>>LOG2_BITS_PER_CHAR);
-   for (i=0;i<max_nchars;i++)
-      chars[i]=HTOLS(bits->chars[i]);
-
-   if (bits->bitPtr>0)
-      bits->chars[0]=bits->chars[max_nchars];
-   else
-      bits->chars[0]=0;
-   bits->charPtr=0;
-   bits->nbBits &= (BITS_PER_CHAR-1);
-   return max_nchars*BYTES_PER_CHAR;
-}
-
-EXPORT void speex_bits_pack(SpeexBits *bits, int data, int nbBits)
-{
-   unsigned int d=data;
-
-   if (bits->charPtr+((nbBits+bits->bitPtr)>>LOG2_BITS_PER_CHAR) >= bits->buf_size)
-   {
-      speex_notify("Buffer too small to pack bits");
-      if (bits->owner)
-      {
-         int new_nchars = ((bits->buf_size+5)*3)>>1;
-         char *tmp = (char*)speex_realloc(bits->chars, new_nchars);
-         if (tmp)
-         {
-            bits->buf_size=new_nchars;
-            bits->chars=tmp;
-         } else {
-            speex_warning("Could not resize input buffer: not packing");
-            return;
-         }
-      } else {
-         speex_warning("Do not own input buffer: not packing");
-         return;
-      }
-   }
-
-   while(nbBits)
-   {
-      int bit;
-      bit = (d>>(nbBits-1))&1;
-      bits->chars[bits->charPtr] |= bit<<(BITS_PER_CHAR-1-bits->bitPtr);
-      bits->bitPtr++;
-
-      if (bits->bitPtr==BITS_PER_CHAR)
-      {
-         bits->bitPtr=0;
-         bits->charPtr++;
-         bits->chars[bits->charPtr] = 0;
-      }
-      bits->nbBits++;
-      nbBits--;
-   }
-}
-
-EXPORT int speex_bits_unpack_signed(SpeexBits *bits, int nbBits)
-{
-   unsigned int d=speex_bits_unpack_unsigned(bits,nbBits);
-   /* If number is negative */
-   if (d>>(nbBits-1))
-   {
-      d |= (-1)<<nbBits;
-   }
-   return d;
-}
-
-EXPORT unsigned int speex_bits_unpack_unsigned(SpeexBits *bits, int nbBits)
-{
-   unsigned int d=0;
-   if ((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+nbBits>bits->nbBits)
-      bits->overflow=1;
-   if (bits->overflow)
-      return 0;
-   while(nbBits)
-   {
-      d<<=1;
-      d |= (bits->chars[bits->charPtr]>>(BITS_PER_CHAR-1 - bits->bitPtr))&1;
-      bits->bitPtr++;
-      if (bits->bitPtr==BITS_PER_CHAR)
-      {
-         bits->bitPtr=0;
-         bits->charPtr++;
-      }
-      nbBits--;
-   }
-   return d;
-}
-
-EXPORT unsigned int speex_bits_peek_unsigned(SpeexBits *bits, int nbBits)
-{
-   unsigned int d=0;
-   int bitPtr, charPtr;
-   char *chars;
-
-   if ((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+nbBits>bits->nbBits)
-     bits->overflow=1;
-   if (bits->overflow)
-      return 0;
-
-   bitPtr=bits->bitPtr;
-   charPtr=bits->charPtr;
-   chars = bits->chars;
-   while(nbBits)
-   {
-      d<<=1;
-      d |= (chars[charPtr]>>(BITS_PER_CHAR-1 - bitPtr))&1;
-      bitPtr++;
-      if (bitPtr==BITS_PER_CHAR)
-      {
-         bitPtr=0;
-         charPtr++;
-      }
-      nbBits--;
-   }
-   return d;
-}
-
-EXPORT int speex_bits_peek(SpeexBits *bits)
-{
-   if ((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+1>bits->nbBits)
-      bits->overflow=1;
-   if (bits->overflow)
-      return 0;
-   return (bits->chars[bits->charPtr]>>(BITS_PER_CHAR-1 - bits->bitPtr))&1;
-}
-
-EXPORT void speex_bits_advance(SpeexBits *bits, int n)
-{
-    if (((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr+n>bits->nbBits) || bits->overflow){
-      bits->overflow=1;
-      return;
-    }
-   bits->charPtr += (bits->bitPtr+n) >> LOG2_BITS_PER_CHAR; /* divide by BITS_PER_CHAR */
-   bits->bitPtr = (bits->bitPtr+n) & (BITS_PER_CHAR-1);       /* modulo by BITS_PER_CHAR */
-}
-
-EXPORT int speex_bits_remaining(SpeexBits *bits)
-{
-   if (bits->overflow)
-      return -1;
-   else
-      return bits->nbBits-((bits->charPtr<<LOG2_BITS_PER_CHAR)+bits->bitPtr);
-}
-
-EXPORT int speex_bits_nbytes(SpeexBits *bits)
-{
-   return ((bits->nbBits+BITS_PER_CHAR-1)>>LOG2_BITS_PER_CHAR);
-}
-
-EXPORT void speex_bits_insert_terminator(SpeexBits *bits)
-{
-   if (bits->bitPtr)
-      speex_bits_pack(bits, 0, 1);
-   while (bits->bitPtr)
-      speex_bits_pack(bits, 1, 1);
-}

+ 0 - 623
Engine/lib/speex/libspeex/cb_search.c

@@ -1,623 +0,0 @@
-/* Copyright (C) 2002-2006 Jean-Marc Valin
-   File: cb_search.c
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifdef HAVE_CONFIG_H
-#include "config.h"
-#endif
-
-#include "cb_search.h"
-#include "filters.h"
-#include "stack_alloc.h"
-#include "vq.h"
-#include "arch.h"
-#include "math_approx.h"
-#include "os_support.h"
-
-#ifdef _USE_SSE
-#include "cb_search_sse.h"
-#elif defined(ARM4_ASM) || defined(ARM5E_ASM)
-#include "cb_search_arm4.h"
-#elif defined(BFIN_ASM)
-#include "cb_search_bfin.h"
-#endif
-
-#ifndef DISABLE_ENCODER
-
-#ifndef OVERRIDE_COMPUTE_WEIGHTED_CODEBOOK
-static void compute_weighted_codebook(const signed char *shape_cb, const spx_word16_t *r, spx_word16_t *resp, spx_word16_t *resp2, spx_word32_t *E, int shape_cb_size, int subvect_size, char *stack)
-{
-   int i, j, k;
-   VARDECL(spx_word16_t *shape);
-   ALLOC(shape, subvect_size, spx_word16_t);
-   for (i=0;i<shape_cb_size;i++)
-   {
-      spx_word16_t *res;
-
-      res = resp+i*subvect_size;
-      for (k=0;k<subvect_size;k++)
-         shape[k] = (spx_word16_t)shape_cb[i*subvect_size+k];
-      E[i]=0;
-
-      /* Compute codeword response using convolution with impulse response */
-      for(j=0;j<subvect_size;j++)
-      {
-         spx_word32_t resj=0;
-         spx_word16_t res16;
-         for (k=0;k<=j;k++)
-            resj = MAC16_16(resj,shape[k],r[j-k]);
-#ifdef FIXED_POINT
-         res16 = EXTRACT16(SHR32(resj, 13));
-#else
-         res16 = 0.03125f*resj;
-#endif
-         /* Compute codeword energy */
-         E[i]=MAC16_16(E[i],res16,res16);
-         res[j] = res16;
-         /*printf ("%d\n", (int)res[j]);*/
-      }
-   }
-
-}
-#endif
-
-#ifndef OVERRIDE_TARGET_UPDATE
-static inline void target_update(spx_word16_t *t, spx_word16_t g, spx_word16_t *r, int len)
-{
-   int n;
-   for (n=0;n<len;n++)
-      t[n] = SUB16(t[n],PSHR32(MULT16_16(g,r[n]),13));
-}
-#endif
-
-
-
-static void split_cb_search_shape_sign_N1(
-spx_word16_t target[],			/* target vector */
-spx_coef_t ak[],			/* LPCs for this subframe */
-spx_coef_t awk1[],			/* Weighted LPCs for this subframe */
-spx_coef_t awk2[],			/* Weighted LPCs for this subframe */
-const void *par,                      /* Codebook/search parameters*/
-int   p,                        /* number of LPC coeffs */
-int   nsf,                      /* number of samples in subframe */
-spx_sig_t *exc,
-spx_word16_t *r,
-SpeexBits *bits,
-char *stack,
-int   update_target
-)
-{
-   int i,j,m,q;
-   VARDECL(spx_word16_t *resp);
-#ifdef _USE_SSE
-   VARDECL(__m128 *resp2);
-   VARDECL(__m128 *E);
-#else
-   spx_word16_t *resp2;
-   VARDECL(spx_word32_t *E);
-#endif
-   VARDECL(spx_word16_t *t);
-   VARDECL(spx_sig_t *e);
-   const signed char *shape_cb;
-   int shape_cb_size, subvect_size, nb_subvect;
-   const split_cb_params *params;
-   int best_index;
-   spx_word32_t best_dist;
-   int have_sign;
-
-   params = (const split_cb_params *) par;
-   subvect_size = params->subvect_size;
-   nb_subvect = params->nb_subvect;
-   shape_cb_size = 1<<params->shape_bits;
-   shape_cb = params->shape_cb;
-   have_sign = params->have_sign;
-   ALLOC(resp, shape_cb_size*subvect_size, spx_word16_t);
-#ifdef _USE_SSE
-   ALLOC(resp2, (shape_cb_size*subvect_size)>>2, __m128);
-   ALLOC(E, shape_cb_size>>2, __m128);
-#else
-   resp2 = resp;
-   ALLOC(E, shape_cb_size, spx_word32_t);
-#endif
-   ALLOC(t, nsf, spx_word16_t);
-   ALLOC(e, nsf, spx_sig_t);
-
-   /* FIXME: Do we still need to copy the target? */
-   SPEEX_COPY(t, target, nsf);
-
-   compute_weighted_codebook(shape_cb, r, resp, resp2, E, shape_cb_size, subvect_size, stack);
-
-   for (i=0;i<nb_subvect;i++)
-   {
-      spx_word16_t *x=t+subvect_size*i;
-      /*Find new n-best based on previous n-best j*/
-#ifndef DISABLE_WIDEBAND
-      if (have_sign)
-         vq_nbest_sign(x, resp2, subvect_size, shape_cb_size, E, 1, &best_index, &best_dist, stack);
-      else
-#endif /* DISABLE_WIDEBAND */
-         vq_nbest(x, resp2, subvect_size, shape_cb_size, E, 1, &best_index, &best_dist, stack);
-
-      speex_bits_pack(bits,best_index,params->shape_bits+have_sign);
-
-      {
-         int rind;
-         spx_word16_t *res;
-         spx_word16_t sign=1;
-         rind = best_index;
-         if (rind>=shape_cb_size)
-         {
-            sign=-1;
-            rind-=shape_cb_size;
-         }
-         res = resp+rind*subvect_size;
-         if (sign>0)
-            for (m=0;m<subvect_size;m++)
-               t[subvect_size*i+m] = SUB16(t[subvect_size*i+m], res[m]);
-         else
-            for (m=0;m<subvect_size;m++)
-               t[subvect_size*i+m] = ADD16(t[subvect_size*i+m], res[m]);
-
-#ifdef FIXED_POINT
-         if (sign==1)
-         {
-            for (j=0;j<subvect_size;j++)
-               e[subvect_size*i+j]=SHL32(EXTEND32(shape_cb[rind*subvect_size+j]),SIG_SHIFT-5);
-         } else {
-            for (j=0;j<subvect_size;j++)
-               e[subvect_size*i+j]=NEG32(SHL32(EXTEND32(shape_cb[rind*subvect_size+j]),SIG_SHIFT-5));
-         }
-#else
-         for (j=0;j<subvect_size;j++)
-            e[subvect_size*i+j]=sign*0.03125*shape_cb[rind*subvect_size+j];
-#endif
-
-      }
-
-      for (m=0;m<subvect_size;m++)
-      {
-         spx_word16_t g;
-         int rind;
-         spx_word16_t sign=1;
-         rind = best_index;
-         if (rind>=shape_cb_size)
-         {
-            sign=-1;
-            rind-=shape_cb_size;
-         }
-
-         q=subvect_size-m;
-#ifdef FIXED_POINT
-         g=sign*shape_cb[rind*subvect_size+m];
-#else
-         g=sign*0.03125*shape_cb[rind*subvect_size+m];
-#endif
-         target_update(t+subvect_size*(i+1), g, r+q, nsf-subvect_size*(i+1));
-      }
-   }
-
-   /* Update excitation */
-   /* FIXME: We could update the excitation directly above */
-   for (j=0;j<nsf;j++)
-      exc[j]=ADD32(exc[j],e[j]);
-
-   /* Update target: only update target if necessary */
-   if (update_target)
-   {
-      VARDECL(spx_word16_t *r2);
-      ALLOC(r2, nsf, spx_word16_t);
-      for (j=0;j<nsf;j++)
-         r2[j] = EXTRACT16(PSHR32(e[j] ,6));
-      syn_percep_zero16(r2, ak, awk1, awk2, r2, nsf,p, stack);
-      for (j=0;j<nsf;j++)
-         target[j]=SUB16(target[j],PSHR16(r2[j],2));
-   }
-}
-
-
-
-void split_cb_search_shape_sign(
-spx_word16_t target[],			/* target vector */
-spx_coef_t ak[],			/* LPCs for this subframe */
-spx_coef_t awk1[],			/* Weighted LPCs for this subframe */
-spx_coef_t awk2[],			/* Weighted LPCs for this subframe */
-const void *par,                      /* Codebook/search parameters*/
-int   p,                        /* number of LPC coeffs */
-int   nsf,                      /* number of samples in subframe */
-spx_sig_t *exc,
-spx_word16_t *r,
-SpeexBits *bits,
-char *stack,
-int   complexity,
-int   update_target
-)
-{
-   int i,j,k,m,n,q;
-   VARDECL(spx_word16_t *resp);
-#ifdef _USE_SSE
-   VARDECL(__m128 *resp2);
-   VARDECL(__m128 *E);
-#else
-   spx_word16_t *resp2;
-   VARDECL(spx_word32_t *E);
-#endif
-   VARDECL(spx_word16_t *t);
-   VARDECL(spx_sig_t *e);
-   VARDECL(spx_word16_t *tmp);
-   VARDECL(spx_word32_t *ndist);
-   VARDECL(spx_word32_t *odist);
-   VARDECL(int *itmp);
-   VARDECL(spx_word16_t **ot2);
-   VARDECL(spx_word16_t **nt2);
-   spx_word16_t **ot, **nt;
-   VARDECL(int **nind);
-   VARDECL(int **oind);
-   VARDECL(int *ind);
-   const signed char *shape_cb;
-   int shape_cb_size, subvect_size, nb_subvect;
-   const split_cb_params *params;
-   int N=2;
-   VARDECL(int *best_index);
-   VARDECL(spx_word32_t *best_dist);
-   VARDECL(int *best_nind);
-   VARDECL(int *best_ntarget);
-   int have_sign;
-   N=complexity;
-   if (N>10)
-      N=10;
-   /* Complexity isn't as important for the codebooks as it is for the pitch */
-   N=(2*N)/3;
-   if (N<1)
-      N=1;
-   if (N==1)
-   {
-      split_cb_search_shape_sign_N1(target,ak,awk1,awk2,par,p,nsf,exc,r,bits,stack,update_target);
-      return;
-   }
-   ALLOC(ot2, N, spx_word16_t*);
-   ALLOC(nt2, N, spx_word16_t*);
-   ALLOC(oind, N, int*);
-   ALLOC(nind, N, int*);
-
-   params = (const split_cb_params *) par;
-   subvect_size = params->subvect_size;
-   nb_subvect = params->nb_subvect;
-   shape_cb_size = 1<<params->shape_bits;
-   shape_cb = params->shape_cb;
-   have_sign = params->have_sign;
-   ALLOC(resp, shape_cb_size*subvect_size, spx_word16_t);
-#ifdef _USE_SSE
-   ALLOC(resp2, (shape_cb_size*subvect_size)>>2, __m128);
-   ALLOC(E, shape_cb_size>>2, __m128);
-#else
-   resp2 = resp;
-   ALLOC(E, shape_cb_size, spx_word32_t);
-#endif
-   ALLOC(t, nsf, spx_word16_t);
-   ALLOC(e, nsf, spx_sig_t);
-   ALLOC(ind, nb_subvect, int);
-
-   ALLOC(tmp, 2*N*nsf, spx_word16_t);
-   for (i=0;i<N;i++)
-   {
-      ot2[i]=tmp+2*i*nsf;
-      nt2[i]=tmp+(2*i+1)*nsf;
-   }
-   ot=ot2;
-   nt=nt2;
-   ALLOC(best_index, N, int);
-   ALLOC(best_dist, N, spx_word32_t);
-   ALLOC(best_nind, N, int);
-   ALLOC(best_ntarget, N, int);
-   ALLOC(ndist, N, spx_word32_t);
-   ALLOC(odist, N, spx_word32_t);
-
-   ALLOC(itmp, 2*N*nb_subvect, int);
-   for (i=0;i<N;i++)
-   {
-      nind[i]=itmp+2*i*nb_subvect;
-      oind[i]=itmp+(2*i+1)*nb_subvect;
-   }
-
-   SPEEX_COPY(t, target, nsf);
-
-   for (j=0;j<N;j++)
-      SPEEX_COPY(&ot[j][0], t, nsf);
-
-   /* Pre-compute codewords response and energy */
-   compute_weighted_codebook(shape_cb, r, resp, resp2, E, shape_cb_size, subvect_size, stack);
-
-   for (j=0;j<N;j++)
-      odist[j]=0;
-
-   /*For all subvectors*/
-   for (i=0;i<nb_subvect;i++)
-   {
-      /*"erase" nbest list*/
-      for (j=0;j<N;j++)
-         ndist[j]=VERY_LARGE32;
-      /* This is not strictly necessary, but it provides an additonal safety
-         to prevent crashes in case something goes wrong in the previous
-         steps (e.g. NaNs) */
-      for (j=0;j<N;j++)
-         best_nind[j] = best_ntarget[j] = 0;
-      /*For all n-bests of previous subvector*/
-      for (j=0;j<N;j++)
-      {
-         spx_word16_t *x=ot[j]+subvect_size*i;
-         spx_word32_t tener = 0;
-         for (m=0;m<subvect_size;m++)
-            tener = MAC16_16(tener, x[m],x[m]);
-#ifdef FIXED_POINT
-         tener = SHR32(tener,1);
-#else
-         tener *= .5;
-#endif
-         /*Find new n-best based on previous n-best j*/
-#ifndef DISABLE_WIDEBAND
-         if (have_sign)
-            vq_nbest_sign(x, resp2, subvect_size, shape_cb_size, E, N, best_index, best_dist, stack);
-         else
-#endif /* DISABLE_WIDEBAND */
-            vq_nbest(x, resp2, subvect_size, shape_cb_size, E, N, best_index, best_dist, stack);
-
-         /*For all new n-bests*/
-         for (k=0;k<N;k++)
-         {
-            /* Compute total distance (including previous sub-vectors */
-            spx_word32_t err = ADD32(ADD32(odist[j],best_dist[k]),tener);
-
-            /*update n-best list*/
-            if (err<ndist[N-1])
-            {
-               for (m=0;m<N;m++)
-               {
-                  if (err < ndist[m])
-                  {
-                     for (n=N-1;n>m;n--)
-                     {
-                        ndist[n] = ndist[n-1];
-                        best_nind[n] = best_nind[n-1];
-                        best_ntarget[n] = best_ntarget[n-1];
-                     }
-                     /* n is equal to m here, so they're interchangeable */
-                     ndist[m] = err;
-                     best_nind[n] = best_index[k];
-                     best_ntarget[n] = j;
-                     break;
-                  }
-               }
-            }
-         }
-         if (i==0)
-            break;
-      }
-      for (j=0;j<N;j++)
-      {
-         /*previous target (we don't care what happened before*/
-         for (m=(i+1)*subvect_size;m<nsf;m++)
-            nt[j][m]=ot[best_ntarget[j]][m];
-
-         /* New code: update the rest of the target only if it's worth it */
-         for (m=0;m<subvect_size;m++)
-         {
-            spx_word16_t g;
-            int rind;
-            spx_word16_t sign=1;
-            rind = best_nind[j];
-            if (rind>=shape_cb_size)
-            {
-               sign=-1;
-               rind-=shape_cb_size;
-            }
-
-            q=subvect_size-m;
-#ifdef FIXED_POINT
-            g=sign*shape_cb[rind*subvect_size+m];
-#else
-            g=sign*0.03125*shape_cb[rind*subvect_size+m];
-#endif
-            target_update(nt[j]+subvect_size*(i+1), g, r+q, nsf-subvect_size*(i+1));
-         }
-
-         for (q=0;q<nb_subvect;q++)
-            nind[j][q]=oind[best_ntarget[j]][q];
-         nind[j][i]=best_nind[j];
-      }
-
-      /*update old-new data*/
-      /* just swap pointers instead of a long copy */
-      {
-         spx_word16_t **tmp2;
-         tmp2=ot;
-         ot=nt;
-         nt=tmp2;
-      }
-      for (j=0;j<N;j++)
-         for (m=0;m<nb_subvect;m++)
-            oind[j][m]=nind[j][m];
-      for (j=0;j<N;j++)
-         odist[j]=ndist[j];
-   }
-
-   /*save indices*/
-   for (i=0;i<nb_subvect;i++)
-   {
-      ind[i]=nind[0][i];
-      speex_bits_pack(bits,ind[i],params->shape_bits+have_sign);
-   }
-
-   /* Put everything back together */
-   for (i=0;i<nb_subvect;i++)
-   {
-      int rind;
-      spx_word16_t sign=1;
-      rind = ind[i];
-      if (rind>=shape_cb_size)
-      {
-         sign=-1;
-         rind-=shape_cb_size;
-      }
-#ifdef FIXED_POINT
-      if (sign==1)
-      {
-         for (j=0;j<subvect_size;j++)
-            e[subvect_size*i+j]=SHL32(EXTEND32(shape_cb[rind*subvect_size+j]),SIG_SHIFT-5);
-      } else {
-         for (j=0;j<subvect_size;j++)
-            e[subvect_size*i+j]=NEG32(SHL32(EXTEND32(shape_cb[rind*subvect_size+j]),SIG_SHIFT-5));
-      }
-#else
-      for (j=0;j<subvect_size;j++)
-         e[subvect_size*i+j]=sign*0.03125*shape_cb[rind*subvect_size+j];
-#endif
-   }
-   /* Update excitation */
-   for (j=0;j<nsf;j++)
-      exc[j]=ADD32(exc[j],e[j]);
-
-   /* Update target: only update target if necessary */
-   if (update_target)
-   {
-      VARDECL(spx_word16_t *r2);
-      ALLOC(r2, nsf, spx_word16_t);
-      for (j=0;j<nsf;j++)
-         r2[j] = EXTRACT16(PSHR32(e[j] ,6));
-      syn_percep_zero16(r2, ak, awk1, awk2, r2, nsf,p, stack);
-      for (j=0;j<nsf;j++)
-         target[j]=SUB16(target[j],PSHR16(r2[j],2));
-   }
-}
-#endif /* DISABLE_ENCODER */
-
-#ifndef DISABLE_DECODER
-void split_cb_shape_sign_unquant(
-spx_sig_t *exc,
-const void *par,                      /* non-overlapping codebook */
-int   nsf,                      /* number of samples in subframe */
-SpeexBits *bits,
-char *stack,
-spx_int32_t *seed
-)
-{
-   int i,j;
-   VARDECL(int *ind);
-   VARDECL(int *signs);
-   const signed char *shape_cb;
-   int subvect_size, nb_subvect;
-   const split_cb_params *params;
-   int have_sign;
-
-   params = (const split_cb_params *) par;
-   subvect_size = params->subvect_size;
-   nb_subvect = params->nb_subvect;
-
-   shape_cb = params->shape_cb;
-   have_sign = params->have_sign;
-
-   ALLOC(ind, nb_subvect, int);
-   ALLOC(signs, nb_subvect, int);
-
-   /* Decode codewords and gains */
-   for (i=0;i<nb_subvect;i++)
-   {
-      if (have_sign)
-         signs[i] = speex_bits_unpack_unsigned(bits, 1);
-      else
-         signs[i] = 0;
-      ind[i] = speex_bits_unpack_unsigned(bits, params->shape_bits);
-   }
-   /* Compute decoded excitation */
-   for (i=0;i<nb_subvect;i++)
-   {
-      spx_word16_t s=1;
-      if (signs[i])
-         s=-1;
-#ifdef FIXED_POINT
-      if (s==1)
-      {
-         for (j=0;j<subvect_size;j++)
-            exc[subvect_size*i+j]=SHL32(EXTEND32(shape_cb[ind[i]*subvect_size+j]),SIG_SHIFT-5);
-      } else {
-         for (j=0;j<subvect_size;j++)
-            exc[subvect_size*i+j]=NEG32(SHL32(EXTEND32(shape_cb[ind[i]*subvect_size+j]),SIG_SHIFT-5));
-      }
-#else
-      for (j=0;j<subvect_size;j++)
-         exc[subvect_size*i+j]+=s*0.03125*shape_cb[ind[i]*subvect_size+j];
-#endif
-   }
-}
-#endif /* DISABLE_DECODER */
-
-#ifndef DISABLE_ENCODER
-void noise_codebook_quant(
-spx_word16_t target[],			/* target vector */
-spx_coef_t ak[],			/* LPCs for this subframe */
-spx_coef_t awk1[],			/* Weighted LPCs for this subframe */
-spx_coef_t awk2[],			/* Weighted LPCs for this subframe */
-const void *par,                      /* Codebook/search parameters*/
-int   p,                        /* number of LPC coeffs */
-int   nsf,                      /* number of samples in subframe */
-spx_sig_t *exc,
-spx_word16_t *r,
-SpeexBits *bits,
-char *stack,
-int   complexity,
-int   update_target
-)
-{
-   int i;
-   VARDECL(spx_word16_t *tmp);
-   ALLOC(tmp, nsf, spx_word16_t);
-   residue_percep_zero16(target, ak, awk1, awk2, tmp, nsf, p, stack);
-
-   for (i=0;i<nsf;i++)
-      exc[i]+=SHL32(EXTEND32(tmp[i]),8);
-   SPEEX_MEMSET(target, 0, nsf);
-}
-#endif /* DISABLE_ENCODER */
-
-#ifndef DISABLE_DECODER
-void noise_codebook_unquant(
-spx_sig_t *exc,
-const void *par,                      /* non-overlapping codebook */
-int   nsf,                      /* number of samples in subframe */
-SpeexBits *bits,
-char *stack,
-spx_int32_t *seed
-)
-{
-   int i;
-   /* FIXME: This is bad, but I don't think the function ever gets called anyway */
-   for (i=0;i<nsf;i++)
-      exc[i]=SHL32(EXTEND32(speex_rand(1, seed)),SIG_SHIFT);
-}
-#endif /* DISABLE_DECODER */

+ 0 - 103
Engine/lib/speex/libspeex/cb_search.h

@@ -1,103 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin & David Rowe */
-/**
-   @file cb_search.h
-   @brief Overlapped codebook search
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifndef CB_SEARCH_H
-#define CB_SEARCH_H
-
-#include "speex/speex_bits.h"
-#include "arch.h"
-
-/** Split codebook parameters. */
-typedef struct split_cb_params {
-   int     subvect_size;
-   int     nb_subvect;
-   const signed char  *shape_cb;
-   int     shape_bits;
-   int     have_sign;
-} split_cb_params;
-
-
-void split_cb_search_shape_sign(
-spx_word16_t target[],             /* target vector */
-spx_coef_t ak[],                /* LPCs for this subframe */
-spx_coef_t awk1[],              /* Weighted LPCs for this subframe */
-spx_coef_t awk2[],              /* Weighted LPCs for this subframe */
-const void *par,                /* Codebook/search parameters */
-int   p,                        /* number of LPC coeffs */
-int   nsf,                      /* number of samples in subframe */
-spx_sig_t *exc,
-spx_word16_t *r,
-SpeexBits *bits,
-char *stack,
-int   complexity,
-int   update_target
-);
-
-void split_cb_shape_sign_unquant(
-spx_sig_t *exc,
-const void *par,                /* non-overlapping codebook */
-int   nsf,                      /* number of samples in subframe */
-SpeexBits *bits,
-char *stack,
-spx_int32_t *seed
-);
-
-
-void noise_codebook_quant(
-spx_word16_t target[],             /* target vector */
-spx_coef_t ak[],                /* LPCs for this subframe */
-spx_coef_t awk1[],              /* Weighted LPCs for this subframe */
-spx_coef_t awk2[],              /* Weighted LPCs for this subframe */
-const void *par,                /* Codebook/search parameters */
-int   p,                        /* number of LPC coeffs */
-int   nsf,                      /* number of samples in subframe */
-spx_sig_t *exc,
-spx_word16_t *r,
-SpeexBits *bits,
-char *stack,
-int   complexity,
-int   update_target
-);
-
-
-void noise_codebook_unquant(
-spx_sig_t *exc,
-const void *par,                /* non-overlapping codebook */
-int   nsf,                      /* number of samples in subframe */
-SpeexBits *bits,
-char *stack,
-spx_int32_t *seed
-);
-
-#endif

+ 0 - 137
Engine/lib/speex/libspeex/cb_search_arm4.h

@@ -1,137 +0,0 @@
-/* Copyright (C) 2004 Jean-Marc Valin */
-/**
-   @file cb_search_arm4.h
-   @brief Fixed codebook functions (ARM4 version)
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-/* This optimization is temporaly disabled until it is fixed to account for the fact 
-   that "r" is now a 16-bit array */
-#if 0
-#define OVERRIDE_COMPUTE_WEIGHTED_CODEBOOK
-static void compute_weighted_codebook(const signed char *shape_cb, const spx_word16_t *r, spx_word16_t *resp, spx_word16_t *resp2, spx_word32_t *E, int shape_cb_size, int subvect_size, char *stack)
-{
-   int i, j, k;
-  //const signed char *shape;
-   for (i=0;i<shape_cb_size;i+=4)
-   {
-
-      //shape = shape_cb;
-      E[0]=0;
-      E[1]=0;
-      E[2]=0;
-      E[3]=0;
-
-      /* Compute codeword response using convolution with impulse response */
-      for(j=0;j<subvect_size;j++)
-      {
-#if 1
-          spx_word16_t *res;
-          res = resp+j;
-          spx_word32_t resj0,resj1,resj2,resj3;
-          spx_word32_t dead1, dead2, dead3, dead4, dead5, dead6, dead7, dead8;
-          __asm__ __volatile__ (
-                "mov %0, #0 \n\t"
-                "mov %1, #0 \n\t"
-                "mov %2, #0 \n\t"
-                "mov %3, #0 \n\t"
-                ".weighted%=: \n\t"
-                "ldrsb %8, [%6] \n\t"
-                "ldr %10, [%5], #-4 \n\t"
-                "mov %9, %6 \n\t"
-                "ldrsb %11, [%9, %7]! \n\t"
-                "mla %0, %10, %8, %0 \n\t"
-                "ldrsb %8, [%9, %7]! \n\t"
-                "mla %1, %10, %11, %1 \n\t"
-                "ldrsb %11, [%9, %7]! \n\t"
-                "mla %2, %10, %8, %2 \n\t"
-                "subs %4, %4, #1 \n\t"
-                "mla %3, %10, %11, %3 \n\t"
-                "add %6, %6, #1 \n\t"
-                "bne .weighted%= \n\t"
-            : "=r" (resj0), "=r" (resj1), "=r" (resj2), "=r" (resj3),
-          "=r" (dead1), "=r" (dead2), "=r" (dead3), "=r" (dead4),
-          "=r" (dead5), "=r" (dead6), "=r" (dead7), "=r" (dead8)
-            : "4" (j+1), "5" (r+j), "6" (shape_cb), "7" (subvect_size)
-            : "cc", "memory");
-#else
-          spx_word16_t *res;
-          res = resp+j;
-          spx_word32_t resj0=0;
-          spx_word32_t resj1=0;
-          spx_word32_t resj2=0;
-          spx_word32_t resj3=0;
-          for (k=0;k<=j;k++)
-          {
-             const signed char *shape=shape_cb+k;
-             resj0 = MAC16_16(resj0,*shape,r[j-k]);
-             shape += subvect_size;
-             resj1 = MAC16_16(resj1,*shape,r[j-k]);
-             shape += subvect_size;
-             resj2 = MAC16_16(resj2,*shape,r[j-k]);
-             shape += subvect_size;
-             resj3 = MAC16_16(resj3,*shape,r[j-k]);
-             shape += subvect_size;
-          }
-#endif
-
-#ifdef FIXED_POINT
-          resj0 = SHR(resj0, 11);
-          resj1 = SHR(resj1, 11);
-          resj2 = SHR(resj2, 11);
-          resj3 = SHR(resj3, 11);
-#else
-          resj0 *= 0.03125;
-          resj1 *= 0.03125;
-          resj2 *= 0.03125;
-          resj3 *= 0.03125;
-#endif
-
-          /* Compute codeword energy */
-          E[0]=ADD32(E[0],MULT16_16(resj0,resj0));
-          E[1]=ADD32(E[1],MULT16_16(resj1,resj1));
-          E[2]=ADD32(E[2],MULT16_16(resj2,resj2));
-          E[3]=ADD32(E[3],MULT16_16(resj3,resj3));
-          *res = resj0;
-          res += subvect_size;
-          *res = resj1;
-          res += subvect_size;
-          *res = resj2;
-          res += subvect_size;
-          *res = resj3;
-          res += subvect_size;
-      }
-      resp += subvect_size<<2;
-      shape_cb += subvect_size<<2;
-      E+=4;
-   }
-
-}
-#endif

+ 0 - 111
Engine/lib/speex/libspeex/cb_search_bfin.h

@@ -1,111 +0,0 @@
-/* Copyright (C) 2005 Analog Devices */
-/**
-   @author Jean-Marc Valin 
-   @file cb_search_bfin.h
-   @brief Fixed codebook functions (Blackfin version)
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#include "bfin.h"
-
-#define OVERRIDE_COMPUTE_WEIGHTED_CODEBOOK 
-void compute_weighted_codebook(const signed char *shape_cb, const spx_word16_t *r, spx_word16_t *resp, spx_word16_t *resp2, spx_word32_t *E, int shape_cb_size, int subvect_size, char *stack)
-{
-   int i;
-   for (i=0;i<shape_cb_size;i++)
-   {
-      __asm__ __volatile__ (
-         "P0 = %0;\n\t"
-         "LC0 = P0;\n\t"
-         "P1 = %1;\n\t"
-         "P2 = %2;\n\t"
-         "P3 = %3;\n\t"
-         "P0 = 1;\n\t"
-         "L0 = 0;\n\t"
-         "L1 = 0;\n\t"
-         "R2 = 0;\n\t"
-         "A1 = 0;\n\t"
-         "LOOP outter%= LC0;\n\t"
-         "LOOP_BEGIN outter%=;\n\t"
-            "A0 = 0;\n\t"
-            "P4 = P1;\n\t"
-            "I1 = P2;\n\t"
-            "R0 = B[P4++] (X) || R1.L = W[I1--];\n\t"
-            "LOOP inner%= LC1 = P0;\n\t"
-            "LOOP_BEGIN inner%=;\n\t"
-               "A0 += R0.L*R1.L (IS) || R0 = B[P4++] (X) || R1.L = W[I1--];\n\t"
-            "LOOP_END inner%=;\n\t"
-            "R0 = A0;\n\t"
-            "R0 >>>= 13;\n\t"
-            "A1 += R0.L*R0.L (IS);\n\t"
-            "W[P3++] = R0;\n\t"
-            "P0 += 1;\n\t"
-            "P2 += 2;\n\t"
-         "LOOP_END outter%=;\n\t"
-         "P4 = %4;\n\t"
-         "R1 = A1;\n\t"
-         "[P4] = R1;\n\t"
-         :
-      : "m" (subvect_size), "m" (shape_cb), "m" (r), "m" (resp), "m" (E)
-      : "A0", "P0", "P1", "P2", "P3", "P4", "R0", "R1", "R2", "I0", "I1", "L0", 
-        "L1", "A0", "A1", "memory", "ASTAT" BFIN_HWLOOP0_REGS BFIN_HWLOOP1_REGS
-      );
-      shape_cb += subvect_size;
-      resp += subvect_size;
-      E++;
-   }
-}
-
-#define OVERRIDE_TARGET_UPDATE
-static inline void target_update(spx_word16_t *t, spx_word16_t g, spx_word16_t *r, int len)
-{
-   if (!len)
-      return;
-   __asm__ __volatile__
-         (
-         "I0 = %0;\n\t"
-         "I1 = %1;\n\t"
-         "L0 = 0;\n\t"
-         "L1 = 0;\n\t"
-         "R2 = 4096;\n\t"
-         "LOOP tupdate%= LC0 = %3;\n\t"
-         "LOOP_BEGIN tupdate%=;\n\t"
-            "R0.L = W[I0] || R1.L = W[I1++];\n\t"
-            "R1 = (A1 = R1.L*%2.L) (IS);\n\t"
-            "R1 = R1 + R2;\n\t"
-            "R1 >>>= 13;\n\t"
-            "R0.L = R0.L - R1.L;\n\t"
-            "W[I0++] = R0.L;\n\t"
-         "LOOP_END tupdate%=;\n\t"
-   :
-   : "a" (t), "a" (r), "d" (g), "a" (len)
-   : "R0", "R1", "R2", "A1", "I0", "I1", "L0", "L1", "ASTAT" BFIN_HWLOOP0_REGS
-         );
-}

+ 0 - 84
Engine/lib/speex/libspeex/cb_search_sse.h

@@ -1,84 +0,0 @@
-/* Copyright (C) 2004 Jean-Marc Valin */
-/**
-   @file cb_search_sse.h
-   @brief Fixed codebook functions (SSE version)
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#include <xmmintrin.h>
-
-static inline void _spx_mm_getr_ps (__m128 U, float *__Z, float *__Y, float *__X, float *__W)
-{
-  union {
-    float __a[4];
-    __m128 __v;
-  } __u;
-  
-  __u.__v = U;
-
-  *__Z = __u.__a[0];
-  *__Y = __u.__a[1];
-  *__X = __u.__a[2];
-  *__W = __u.__a[3];
-
-}
-
-#define OVERRIDE_COMPUTE_WEIGHTED_CODEBOOK
-static void compute_weighted_codebook(const signed char *shape_cb, const spx_sig_t *_r, float *resp, __m128 *resp2, __m128 *E, int shape_cb_size, int subvect_size, char *stack)
-{
-   int i, j, k;
-   __m128 resj, EE;
-   VARDECL(__m128 *r);
-   VARDECL(__m128 *shape);
-   ALLOC(r, subvect_size, __m128);
-   ALLOC(shape, subvect_size, __m128);
-   for(j=0;j<subvect_size;j++)
-      r[j] = _mm_load_ps1(_r+j);
-   for (i=0;i<shape_cb_size;i+=4)
-   {
-      float *_res = resp+i*subvect_size;
-      const signed char *_shape = shape_cb+i*subvect_size;
-      EE = _mm_setzero_ps();
-      for(j=0;j<subvect_size;j++)
-      {
-         shape[j] = _mm_setr_ps(0.03125*_shape[j], 0.03125*_shape[subvect_size+j], 0.03125*_shape[2*subvect_size+j], 0.03125*_shape[3*subvect_size+j]);
-      }
-      for(j=0;j<subvect_size;j++)
-      {
-         resj = _mm_setzero_ps();
-         for (k=0;k<=j;k++)
-            resj = _mm_add_ps(resj, _mm_mul_ps(shape[k],r[j-k]));
-         _spx_mm_getr_ps(resj, _res+j, _res+subvect_size+j, _res+2*subvect_size+j, _res+3*subvect_size+j);
-         *resp2++ = resj;
-         EE = _mm_add_ps(EE, _mm_mul_ps(resj, resj));
-      }
-      E[i>>2] = EE;
-   }
-}

+ 0 - 50
Engine/lib/speex/libspeex/exc_10_16_table.c

@@ -1,50 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: exc_10_16_table.c
-   Codebook for excitation in narrowband CELP mode (3200 bps)
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-
-const signed char exc_10_16_table[160] = {
-22,39,14,44,11,35,-2,23,-4,6,
-46,-28,13,-27,-23,12,4,20,-5,9,
-37,-18,-23,23,0,9,-6,-20,4,-1,
--17,-5,-4,17,0,1,9,-2,1,2,
-2,-12,8,-25,39,15,9,16,-55,-11,
-9,11,5,10,-2,-60,8,13,-6,11,
--16,27,-47,-12,11,1,16,-7,9,-3,
--29,9,-14,25,-19,34,36,12,40,-10,
--3,-24,-14,-37,-21,-35,-2,-36,3,-6,
-67,28,6,-17,-3,-12,-16,-15,-17,-7,
--59,-36,-13,1,7,1,2,10,2,11,
-13,10,8,-2,7,3,5,4,2,2,
--3,-8,4,-5,6,7,-42,15,35,-2,
--46,38,28,-20,-9,1,7,-3,0,-2,
-0,0,0,0,0,0,0,0,0,0,
--15,-28,52,32,5,-5,-17,-20,-10,-1};

+ 0 - 66
Engine/lib/speex/libspeex/exc_10_32_table.c

@@ -1,66 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: exc_10_32_table.c
-   Codebook for excitation in narrowband CELP mode (4000 bps)
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-
-const signed char exc_10_32_table[320] = {
-7,17,17,27,25,22,12,4,-3,0,
-28,-36,39,-24,-15,3,-9,15,-5,10,
-31,-28,11,31,-21,9,-11,-11,-2,-7,
--25,14,-22,31,4,-14,19,-12,14,-5,
-4,-7,4,-5,9,0,-2,42,-47,-16,
-1,8,0,9,23,-57,0,28,-11,6,
--31,55,-45,3,-5,4,2,-2,4,-7,
--3,6,-2,7,-3,12,5,8,54,-10,
-8,-7,-8,-24,-25,-27,-14,-5,8,5,
-44,23,5,-9,-11,-11,-13,-9,-12,-8,
--29,-8,-22,6,-15,3,-12,-1,-5,-3,
-34,-1,29,-16,17,-4,12,2,1,4,
--2,-4,2,-1,11,-3,-52,28,30,-9,
--32,25,44,-20,-24,4,6,-1,0,0,
-0,0,0,0,0,0,0,0,0,0,
--25,-10,22,29,13,-13,-22,-13,-4,0,
--4,-16,10,15,-36,-24,28,25,-1,-3,
-66,-33,-11,-15,6,0,3,4,-2,5,
-24,-20,-47,29,19,-2,-4,-1,0,-1,
--2,3,1,8,-11,5,5,-57,28,28,
-0,-16,4,-4,12,-6,-1,2,-20,61,
--9,24,-22,-42,29,6,17,8,4,2,
--65,15,8,10,5,6,5,3,2,-2,
--3,5,-9,4,-5,23,13,23,-3,-63,
-3,-5,-4,-6,0,-3,23,-36,-46,9,
-5,5,8,4,9,-5,1,-3,10,1,
--6,10,-11,24,-47,31,22,-12,14,-10,
-6,11,-7,-7,7,-31,51,-12,-6,7,
-6,-17,9,-11,-20,52,-19,3,-6,-6,
--8,-5,23,-41,37,1,-21,10,-14,8,
-7,5,-15,-15,23,39,-26,-33,7,2,
--32,-30,-21,-8,4,12,17,15,14,11};

+ 0 - 66
Engine/lib/speex/libspeex/exc_20_32_table.c

@@ -1,66 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: exc_20_32_table.c
-   Codebook for excitation in narrowband CELP mode (2000 bps)
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-
-const signed char exc_20_32_table[640] = {
-12,32,25,46,36,33,9,14,-3,6,1,-8,0,-10,-5,-7,-7,-7,-5,-5,
-31,-27,24,-32,-4,10,-11,21,-3,19,23,-9,22,24,-10,-1,-10,-13,-7,-11,
-42,-33,31,19,-8,0,-10,-16,1,-21,-17,10,-8,14,8,4,11,-2,5,-2,
--33,11,-16,33,11,-4,9,-4,11,2,6,-5,8,-5,11,-4,-6,26,-36,-16,
-0,4,-2,-8,12,6,-1,34,-46,-22,9,9,21,9,5,-66,-5,26,2,10,
-13,2,19,9,12,-81,3,13,13,0,-14,22,-35,6,-7,-4,6,-6,10,-6,
--31,38,-33,0,-10,-11,5,-12,12,-17,5,0,-6,13,-9,10,8,25,33,2,
--12,8,-6,10,-2,21,7,17,43,5,11,-7,-9,-20,-36,-20,-23,-4,-4,-3,
-27,-9,-9,-49,-39,-38,-11,-9,6,5,23,25,5,3,3,4,1,2,-3,-1,
-87,39,17,-21,-9,-19,-9,-15,-13,-14,-17,-11,-10,-11,-8,-6,-1,-3,-3,-1,
--54,-34,-27,-8,-11,-4,-5,0,0,4,8,6,9,7,9,7,6,5,5,5,
-48,10,19,-10,12,-1,9,-3,2,5,-3,2,-2,-2,0,-2,-26,6,9,-7,
--16,-9,2,7,7,-5,-43,11,22,-11,-9,34,37,-15,-13,-6,1,-1,1,1,
--64,56,52,-11,-27,5,4,3,1,2,1,3,-1,-4,-4,-10,-7,-4,-4,2,
--1,-7,-7,-12,-10,-15,-9,-5,-5,-11,-16,-13,6,16,4,-13,-16,-10,-4,2,
--47,-13,25,47,19,-14,-20,-8,-17,0,-3,-13,1,6,-17,-14,15,1,10,6,
--24,0,-10,19,-69,-8,14,49,17,-5,33,-29,3,-4,0,2,-8,5,-6,2,
-120,-56,-12,-47,23,-9,6,-5,1,2,-5,1,-10,4,-1,-1,4,-1,0,-3,
-30,-52,-67,30,22,11,-1,-4,3,0,7,2,0,1,-10,-4,-8,-13,5,1,
-1,-1,5,13,-9,-3,-10,-62,22,48,-4,-6,2,3,5,1,1,4,1,13,
-3,-20,10,-9,13,-2,-4,9,-20,44,-1,20,-32,-67,19,0,28,11,8,2,
--11,15,-19,-53,31,2,34,10,6,-4,-58,8,10,13,14,1,12,2,0,0,
--128,37,-8,44,-9,26,-3,18,2,6,11,-1,9,1,5,3,0,1,1,2,
-12,3,-2,-3,7,25,9,18,-6,-37,3,-8,-16,3,-10,-7,17,-34,-44,11,
-17,-15,-3,-16,-1,-13,11,-46,-65,-2,8,13,2,4,4,5,15,5,9,6,
-0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
--9,19,-12,12,-28,38,29,-1,12,2,5,23,-10,3,4,-15,21,-4,3,3,
-6,17,-9,-4,-8,-20,26,5,-10,6,1,-19,18,-15,-12,47,-6,-2,-7,-9,
--1,-17,-2,-2,-14,30,-14,2,-7,-4,-1,-12,11,-25,16,-3,-12,11,-7,7,
--17,1,19,-28,31,-7,-10,7,-10,3,12,5,-16,6,24,41,-29,-54,0,1,
-7,-1,5,-6,13,10,-4,-8,8,-9,-27,-53,-38,-1,10,19,17,16,12,12,
-0,3,-7,-4,13,12,-31,-14,6,-5,3,5,17,43,50,25,10,1,-6,-2};

+ 0 - 290
Engine/lib/speex/libspeex/exc_5_256_table.c

@@ -1,290 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: exc_5_256_table.c
-   Codebook for excitation in narrowband CELP mode (12800 bps)
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-
-const signed char exc_5_256_table[1280] = {
--8,-37,5,-43,5,
-73,61,39,12,-3,
--61,-32,2,42,30,
--3,17,-27,9,34,
-20,-1,-5,2,23,
--7,-46,26,53,-47,
-20,-2,-33,-89,-51,
--64,27,11,15,-34,
--5,-56,25,-9,-1,
--29,1,40,67,-23,
--16,16,33,19,7,
-14,85,22,-10,-10,
--12,-7,-1,52,89,
-29,11,-20,-37,-46,
--15,17,-24,-28,24,
-2,1,0,23,-101,
-23,14,-1,-23,-18,
-9,5,-13,38,1,
--28,-28,4,27,51,
--26,34,-40,35,47,
-54,38,-54,-26,-6,
-42,-25,13,-30,-36,
-18,41,-4,-33,23,
--32,-7,-4,51,-3,
-17,-52,56,-47,36,
--2,-21,36,10,8,
--33,31,19,9,-5,
--40,10,-9,-21,19,
-18,-78,-18,-5,0,
--26,-36,-47,-51,-44,
-18,40,27,-2,29,
-49,-26,2,32,-54,
-30,-73,54,3,-5,
-36,22,53,10,-1,
--84,-53,-29,-5,3,
--44,53,-51,4,22,
-71,-35,-1,33,-5,
--27,-7,36,17,-23,
--39,16,-9,-55,-15,
--20,39,-35,6,-39,
--14,18,48,-64,-17,
--15,9,39,81,37,
--68,37,47,-21,-6,
--104,13,6,9,-2,
-35,8,-23,18,42,
-45,21,33,-5,-49,
-9,-6,-43,-56,39,
-2,-16,-25,87,1,
--3,-9,17,-25,-11,
--9,-1,10,2,-14,
--14,4,-1,-10,28,
--23,40,-32,26,-9,
-26,4,-27,-23,3,
-42,-60,1,49,-3,
-27,10,-52,-40,-2,
-18,45,-23,17,-44,
-3,-3,17,-46,52,
--40,-47,25,75,31,
--49,53,30,-30,-32,
--36,38,-6,-15,-16,
-54,-27,-48,3,38,
--29,-32,-22,-14,-4,
--23,-13,32,-39,9,
-8,-45,-13,34,-16,
-49,40,32,31,28,
-23,23,32,47,59,
--68,8,62,44,25,
--14,-24,-65,-16,36,
-67,-25,-38,-21,4,
--33,-2,42,5,-63,
-40,11,26,-42,-23,
--61,79,-31,23,-20,
-10,-32,53,-25,-36,
-10,-26,-5,3,0,
--71,5,-10,-37,1,
--24,21,-54,-17,1,
--29,-25,-15,-27,32,
-68,45,-16,-37,-18,
--5,1,0,-77,71,
--6,3,-20,71,-67,
-29,-35,10,-30,19,
-4,16,17,5,0,
--14,19,2,28,26,
-59,3,2,24,39,
-55,-50,-45,-18,-17,
-33,-35,14,-1,1,
-8,87,-35,-29,0,
--27,13,-7,23,-13,
-37,-40,50,-35,14,
-19,-7,-14,49,54,
--5,22,-2,-29,-8,
--27,38,13,27,48,
-12,-41,-21,-15,28,
-7,-16,-24,-19,-20,
-11,-20,9,2,13,
-23,-20,11,27,-27,
-71,-69,8,2,-6,
-22,12,16,16,9,
--16,-8,-17,1,25,
-1,40,-37,-33,66,
-94,53,4,-22,-25,
--41,-42,25,35,-16,
--15,57,31,-29,-32,
-21,16,-60,45,15,
--1,7,57,-26,-47,
--29,11,8,15,19,
--105,-8,54,27,10,
--17,6,-12,-1,-10,
-4,0,23,-10,31,
-13,11,10,12,-64,
-23,-3,-8,-19,16,
-52,24,-40,16,10,
-40,5,9,0,-13,
--7,-21,-8,-6,-7,
--21,59,16,-53,18,
--60,11,-47,14,-18,
-25,-13,-24,4,-39,
-16,-28,54,26,-67,
-30,27,-20,-52,20,
--12,55,12,18,-16,
-39,-14,-6,-26,56,
--88,-55,12,25,26,
--37,6,75,0,-34,
--81,54,-30,1,-7,
-49,-23,-14,21,10,
--62,-58,-57,-47,-34,
-15,-4,34,-78,31,
-25,-11,7,50,-10,
-42,-63,14,-36,-4,
-57,55,57,53,42,
--42,-1,15,40,37,
-15,25,-11,6,1,
-31,-2,-6,-1,-7,
--64,34,28,30,-1,
-3,21,0,-88,-12,
--56,25,-28,40,8,
--28,-14,9,12,2,
--6,-17,22,49,-6,
--26,14,28,-20,4,
--12,50,35,40,13,
--38,-58,-29,17,30,
-22,60,26,-54,-39,
--12,58,-28,-63,10,
--21,-8,-12,26,-62,
-6,-10,-11,-22,-6,
--7,4,1,18,2,
--70,11,14,4,13,
-19,-24,-34,24,67,
-17,51,-21,13,23,
-54,-30,48,1,-13,
-80,26,-16,-2,13,
--4,6,-30,29,-24,
-73,-58,30,-27,20,
--2,-21,41,45,30,
--27,-3,-5,-18,-20,
--49,-3,-35,10,42,
--19,-67,-53,-11,9,
-13,-15,-33,-51,-30,
-15,7,25,-30,4,
-28,-22,-34,54,-29,
-39,-46,20,16,34,
--4,47,75,1,-44,
--55,-24,7,-1,9,
--42,50,-8,-36,41,
-68,0,-4,-10,-23,
--15,-50,64,36,-9,
--27,12,25,-38,-47,
--37,32,-49,51,-36,
-2,-4,69,-26,19,
-7,45,67,46,13,
--63,46,15,-47,4,
--41,13,-6,5,-21,
-37,26,-55,-7,33,
--1,-28,10,-17,-64,
--14,0,-36,-17,93,
--3,-9,-66,44,-21,
-3,-12,38,-6,-13,
--12,19,13,43,-43,
--10,-12,6,-5,9,
--49,32,-5,2,4,
-5,15,-16,10,-21,
-8,-62,-8,64,8,
-79,-1,-66,-49,-18,
-5,40,-5,-30,-45,
-1,-6,21,-32,93,
--18,-30,-21,32,21,
--18,22,8,5,-41,
--54,80,22,-10,-7,
--8,-23,-64,66,56,
--14,-30,-41,-46,-14,
--29,-37,27,-14,42,
--2,-9,-29,34,14,
-33,-14,22,4,10,
-26,26,28,32,23,
--72,-32,3,0,-14,
-35,-42,-78,-32,6,
-29,-18,-45,-5,7,
--33,-45,-3,-22,-34,
-8,-8,4,-51,-25,
--9,59,-78,21,-5,
--25,-48,66,-15,-17,
--24,-49,-13,25,-23,
--64,-6,40,-24,-19,
--11,57,-33,-8,1,
-10,-52,-54,28,39,
-49,34,-11,-61,-41,
--43,10,15,-15,51,
-30,15,-51,32,-34,
--2,-34,14,18,16,
-1,1,-3,-3,1,
-1,-18,6,16,48,
-12,-5,-42,7,36,
-48,7,-20,-10,7,
-12,2,54,39,-38,
-37,54,4,-11,-8,
--46,-10,5,-10,-34,
-46,-12,29,-37,39,
-36,-11,24,56,17,
-14,20,25,0,-25,
--28,55,-7,-5,27,
-3,9,-26,-8,6,
--24,-10,-30,-31,-34,
-18,4,22,21,40,
--1,-29,-37,-8,-21,
-92,-29,11,-3,11,
-73,23,22,7,4,
--44,-9,-11,21,-13,
-11,9,-78,-1,47,
-114,-12,-37,-19,-5,
--11,-22,19,12,-30,
-7,38,45,-21,-8,
--9,55,-45,56,-21,
-7,17,46,-57,-87,
--6,27,31,31,7,
--56,-12,46,21,-5,
--12,36,3,3,-21,
-43,19,12,-7,9,
--14,0,-9,-33,-91,
-7,26,3,-11,64,
-83,-31,-46,25,2,
-9,5,2,2,-1,
-20,-17,10,-5,-27,
--8,20,8,-19,16,
--21,-13,-31,5,5,
-42,24,9,34,-20,
-28,-61,22,11,-39,
-64,-20,-1,-30,-9,
--20,24,-25,-24,-29,
-22,-60,6,-5,41,
--9,-87,14,34,15,
--57,52,69,15,-3,
--102,58,16,3,6,
-60,-75,-32,26,7,
--57,-27,-32,-24,-21,
--29,-16,62,-46,31,
-30,-27,-15,7,15};

+ 0 - 98
Engine/lib/speex/libspeex/exc_5_64_table.c

@@ -1,98 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: exc_5_64_table.c
-   Codebook for excitation in narrowband CELP mode (9600 bps)
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-
-const signed char exc_5_64_table[320]={
-1,5,-15,49,-66,
--48,-4,50,-44,7,
-37,16,-18,25,-26,
--26,-15,19,19,-27,
--47,28,57,5,-17,
--32,-41,68,21,-2,
-64,56,8,-16,-13,
--26,-9,-16,11,6,
--39,25,-19,22,-31,
-20,-45,55,-43,10,
--16,47,-40,40,-20,
--51,3,-17,-14,-15,
--24,53,-20,-46,46,
-27,-68,32,3,-18,
--5,9,-31,16,-9,
--10,-1,-23,48,95,
-47,25,-41,-32,-3,
-15,-25,-55,36,41,
--27,20,5,13,14,
--22,5,2,-23,18,
-46,-15,17,-18,-34,
--5,-8,27,-55,73,
-16,2,-1,-17,40,
--78,33,0,2,19,
-4,53,-16,-15,-16,
--28,-3,-13,49,8,
--7,-29,27,-13,32,
-20,32,-61,16,14,
-41,44,40,24,20,
-7,4,48,-60,-77,
-17,-6,-48,65,-15,
-32,-30,-71,-10,-3,
--6,10,-2,-7,-29,
--56,67,-30,7,-5,
-86,-6,-10,0,5,
--31,60,34,-38,-3,
-24,10,-2,30,23,
-24,-41,12,70,-43,
-15,-17,6,13,16,
--13,8,30,-15,-8,
-5,23,-34,-98,-4,
--13,13,-48,-31,70,
-12,31,25,24,-24,
-26,-7,33,-16,8,
-5,-11,-14,-8,-65,
-13,10,-2,-9,0,
--3,-68,5,35,7,
-0,-31,-1,-17,-9,
--9,16,-37,-18,-1,
-69,-48,-28,22,-21,
--11,5,49,55,23,
--86,-36,16,2,13,
-63,-51,30,-11,13,
-24,-18,-6,14,-19,
-1,41,9,-5,27,
--36,-44,-34,-37,-21,
--26,31,-39,15,43,
-5,-8,29,20,-8,
--20,-52,-28,-1,13,
-26,-34,-10,-9,27,
--8,8,27,-66,4,
-12,-22,49,10,-77,
-32,-18,3,-38,12,
--3,-1,2,2,0};

+ 0 - 162
Engine/lib/speex/libspeex/exc_8_128_table.c

@@ -1,162 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin
-   File: exc_8_128_table.c
-   Codebook for excitation in narrowband CELP mode (7000 bps)
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-
-const signed char exc_8_128_table[1024] = {
--14,9,13,-32,2,-10,31,-10,
--8,-8,6,-4,-1,10,-64,23,
-6,20,13,6,8,-22,16,34,
-7,42,-49,-28,5,26,4,-15,
-41,34,41,32,33,24,23,14,
-8,40,34,4,-24,-41,-19,-15,
-13,-13,33,-54,24,27,-44,33,
-27,-15,-15,24,-19,14,-36,14,
--9,24,-12,-4,37,-5,16,-34,
-5,10,33,-15,-54,-16,12,25,
-12,1,2,0,3,-1,-4,-4,
-11,2,-56,54,27,-20,13,-6,
--46,-41,-33,-11,-5,7,12,14,
--14,-5,8,20,6,3,4,-8,
--5,-42,11,8,-14,25,-2,2,
-13,11,-22,39,-9,9,5,-45,
--9,7,-9,12,-7,34,-17,-102,
-7,2,-42,18,35,-9,-34,11,
--5,-2,3,22,46,-52,-25,-9,
--94,8,11,-5,-5,-5,4,-7,
--35,-7,54,5,-32,3,24,-9,
--22,8,65,37,-1,-12,-23,-6,
--9,-28,55,-33,14,-3,2,18,
--60,41,-17,8,-16,17,-11,0,
--11,29,-28,37,9,-53,33,-14,
--9,7,-25,-7,-11,26,-32,-8,
-24,-21,22,-19,19,-10,29,-14,
-0,0,0,0,0,0,0,0,
--5,-52,10,41,6,-30,-4,16,
-32,22,-27,-22,32,-3,-28,-3,
-3,-35,6,17,23,21,8,2,
-4,-45,-17,14,23,-4,-31,-11,
--3,14,1,19,-11,2,61,-8,
-9,-12,7,-10,12,-3,-24,99,
--48,23,50,-37,-5,-23,0,8,
--14,35,-64,-5,46,-25,13,-1,
--49,-19,-15,9,34,50,25,11,
--6,-9,-16,-20,-32,-33,-32,-27,
-10,-8,12,-15,56,-14,-32,33,
-3,-9,1,65,-9,-9,-10,-2,
--6,-23,9,17,3,-28,13,-32,
-4,-2,-10,4,-16,76,12,-52,
-6,13,33,-6,4,-14,-9,-3,
-1,-15,-16,28,1,-15,11,16,
-9,4,-21,-37,-40,-6,22,12,
--15,-23,-14,-17,-16,-9,-10,-9,
-13,-39,41,5,-9,16,-38,25,
-46,-47,4,49,-14,17,-2,6,
-18,5,-6,-33,-22,44,50,-2,
-1,3,-6,7,7,-3,-21,38,
--18,34,-14,-41,60,-13,6,16,
--24,35,19,-13,-36,24,3,-17,
--14,-10,36,44,-44,-29,-3,3,
--54,-8,12,55,26,4,-2,-5,
-2,-11,22,-23,2,22,1,-25,
--39,66,-49,21,-8,-2,10,-14,
--60,25,6,10,27,-25,16,5,
--2,-9,26,-13,-20,58,-2,7,
-52,-9,2,5,-4,-15,23,-1,
--38,23,8,27,-6,0,-27,-7,
-39,-10,-14,26,11,-45,-12,9,
--5,34,4,-35,10,43,-22,-11,
-56,-7,20,1,10,1,-26,9,
-94,11,-27,-14,-13,1,-11,0,
-14,-5,-6,-10,-4,-15,-8,-41,
-21,-5,1,-28,-8,22,-9,33,
--23,-4,-4,-12,39,4,-7,3,
--60,80,8,-17,2,-6,12,-5,
-1,9,15,27,31,30,27,23,
-61,47,26,10,-5,-8,-12,-13,
-5,-18,25,-15,-4,-15,-11,12,
--2,-2,-16,-2,-6,24,12,11,
--4,9,1,-9,14,-45,57,12,
-20,-35,26,11,-64,32,-10,-10,
-42,-4,-9,-16,32,24,7,10,
-52,-11,-57,29,0,8,0,-6,
-17,-17,-56,-40,7,20,18,12,
--6,16,5,7,-1,9,1,10,
-29,12,16,13,-2,23,7,9,
--3,-4,-5,18,-64,13,55,-25,
-9,-9,24,14,-25,15,-11,-40,
--30,37,1,-19,22,-5,-31,13,
--2,0,7,-4,16,-67,12,66,
--36,24,-8,18,-15,-23,19,0,
--45,-7,4,3,-13,13,35,5,
-13,33,10,27,23,0,-7,-11,
-43,-74,36,-12,2,5,-8,6,
--33,11,-16,-14,-5,-7,-3,17,
--34,27,-16,11,-9,15,33,-31,
-8,-16,7,-6,-7,63,-55,-17,
-11,-1,20,-46,34,-30,6,9,
-19,28,-9,5,-24,-8,-23,-2,
-31,-19,-16,-5,-15,-18,0,26,
-18,37,-5,-15,-2,17,5,-27,
-21,-33,44,12,-27,-9,17,11,
-25,-21,-31,-7,13,33,-8,-25,
--7,7,-10,4,-6,-9,48,-82,
--23,-8,6,11,-23,3,-3,49,
--29,25,31,4,14,16,9,-4,
--18,10,-26,3,5,-44,-9,9,
--47,-55,15,9,28,1,4,-3,
-46,6,-6,-38,-29,-31,-15,-6,
-3,0,14,-6,8,-54,-50,33,
--5,1,-14,33,-48,26,-4,-5,
--3,-5,-3,-5,-28,-22,77,55,
--1,2,10,10,-9,-14,-66,-49,
-11,-36,-6,-20,10,-10,16,12,
-4,-1,-16,45,-44,-50,31,-2,
-25,42,23,-32,-22,0,11,20,
--40,-35,-40,-36,-32,-26,-21,-13,
-52,-22,6,-24,-20,17,-5,-8,
-36,-25,-11,21,-26,6,34,-8,
-7,20,-3,5,-25,-8,18,-5,
--9,-4,1,-9,20,20,39,48,
--24,9,5,-65,22,29,4,3,
--43,-11,32,-6,9,19,-27,-10,
--47,-14,24,10,-7,-36,-7,-1,
--4,-5,-5,16,53,25,-26,-29,
--4,-12,45,-58,-34,33,-5,2,
--1,27,-48,31,-15,22,-5,4,
-7,7,-25,-3,11,-22,16,-12,
-8,-3,7,-11,45,14,-73,-19,
-56,-46,24,-20,28,-12,-2,-1,
--36,-3,-33,19,-6,7,2,-15,
-5,-31,-45,8,35,13,20,0,
--9,48,-13,-43,-3,-13,2,-5,
-72,-68,-27,2,1,-2,-7,5,
-36,33,-40,-12,-4,-5,23,19};

+ 0 - 448
Engine/lib/speex/libspeex/fftwrap.c

@@ -1,448 +0,0 @@
-/* Copyright (C) 2005-2006 Jean-Marc Valin
-   File: fftwrap.c
-
-   Wrapper for various FFTs
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-#ifdef HAVE_CONFIG_H
-#include "config.h"
-#endif
-
-#include "arch.h"
-#include "os_support.h"
-
-#define MAX_FFT_SIZE 2048
-
-#ifdef FIXED_POINT
-static int maximize_range(spx_word16_t *in, spx_word16_t *out, spx_word16_t bound, int len)
-{
-   int i, shift;
-   spx_word16_t max_val = 0;
-   for (i=0;i<len;i++)
-   {
-      if (in[i]>max_val)
-         max_val = in[i];
-      if (-in[i]>max_val)
-         max_val = -in[i];
-   }
-   shift=0;
-   while (max_val <= (bound>>1) && max_val != 0)
-   {
-      max_val <<= 1;
-      shift++;
-   }
-   for (i=0;i<len;i++)
-   {
-      out[i] = SHL16(in[i], shift);
-   }
-   return shift;
-}
-
-static void renorm_range(spx_word16_t *in, spx_word16_t *out, int shift, int len)
-{
-   int i;
-   for (i=0;i<len;i++)
-   {
-      out[i] = PSHR16(in[i], shift);
-   }
-}
-#endif
-
-#ifdef USE_SMALLFT
-
-#include "smallft.h"
-#include <math.h>
-
-void *spx_fft_init(int size)
-{
-   struct drft_lookup *table;
-   table = speex_alloc(sizeof(struct drft_lookup));
-   spx_drft_init((struct drft_lookup *)table, size);
-   return (void*)table;
-}
-
-void spx_fft_destroy(void *table)
-{
-   spx_drft_clear(table);
-   speex_free(table);
-}
-
-void spx_fft(void *table, float *in, float *out)
-{
-   if (in==out)
-   {
-      int i;
-      float scale = 1./((struct drft_lookup *)table)->n;
-      speex_warning("FFT should not be done in-place");
-      for (i=0;i<((struct drft_lookup *)table)->n;i++)
-         out[i] = scale*in[i];
-   } else {
-      int i;
-      float scale = 1./((struct drft_lookup *)table)->n;
-      for (i=0;i<((struct drft_lookup *)table)->n;i++)
-         out[i] = scale*in[i];
-   }
-   spx_drft_forward((struct drft_lookup *)table, out);
-}
-
-void spx_ifft(void *table, float *in, float *out)
-{
-   if (in==out)
-   {
-      speex_warning("FFT should not be done in-place");
-   } else {
-      int i;
-      for (i=0;i<((struct drft_lookup *)table)->n;i++)
-         out[i] = in[i];
-   }
-   spx_drft_backward((struct drft_lookup *)table, out);
-}
-
-#elif defined(USE_INTEL_MKL)
-#include <mkl.h>
-
-struct mkl_config {
-  DFTI_DESCRIPTOR_HANDLE desc;
-  int N;
-};
-
-void *spx_fft_init(int size)
-{
-  struct mkl_config *table = (struct mkl_config *) speex_alloc(sizeof(struct mkl_config));
-  table->N = size;
-  DftiCreateDescriptor(&table->desc, DFTI_SINGLE, DFTI_REAL, 1, size);
-  DftiSetValue(table->desc, DFTI_PACKED_FORMAT, DFTI_PACK_FORMAT);
-  DftiSetValue(table->desc, DFTI_PLACEMENT, DFTI_NOT_INPLACE);
-  DftiSetValue(table->desc, DFTI_FORWARD_SCALE, 1.0f / size);
-  DftiCommitDescriptor(table->desc);
-  return table;
-}
-
-void spx_fft_destroy(void *table)
-{
-  struct mkl_config *t = (struct mkl_config *) table;
-  DftiFreeDescriptor(t->desc);
-  speex_free(table);
-}
-
-void spx_fft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-  struct mkl_config *t = (struct mkl_config *) table;
-  DftiComputeForward(t->desc, in, out);
-}
-
-void spx_ifft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-  struct mkl_config *t = (struct mkl_config *) table;
-  DftiComputeBackward(t->desc, in, out);
-}
-
-#elif defined(USE_INTEL_IPP)
-
-#include <ipps.h>
-
-struct ipp_fft_config
-{
-  IppsDFTSpec_R_32f *dftSpec;
-  Ipp8u *buffer;
-};
-
-void *spx_fft_init(int size)
-{
-  int bufferSize = 0;
-  int hint;
-  struct ipp_fft_config *table;
-
-  table = (struct ipp_fft_config *)speex_alloc(sizeof(struct ipp_fft_config));
-
-  /* there appears to be no performance difference between ippAlgHintFast and
-     ippAlgHintAccurate when using the with the floating point version
-     of the fft. */
-  hint = ippAlgHintAccurate;
-
-  ippsDFTInitAlloc_R_32f(&table->dftSpec, size, IPP_FFT_DIV_FWD_BY_N, hint);
-
-  ippsDFTGetBufSize_R_32f(table->dftSpec, &bufferSize);
-  table->buffer = ippsMalloc_8u(bufferSize);
-
-  return table;
-}
-
-void spx_fft_destroy(void *table)
-{
-  struct ipp_fft_config *t = (struct ipp_fft_config *)table;
-  ippsFree(t->buffer);
-  ippsDFTFree_R_32f(t->dftSpec);
-  speex_free(t);
-}
-
-void spx_fft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-  struct ipp_fft_config *t = (struct ipp_fft_config *)table;
-  ippsDFTFwd_RToPack_32f(in, out, t->dftSpec, t->buffer);
-}
-
-void spx_ifft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-  struct ipp_fft_config *t = (struct ipp_fft_config *)table;
-  ippsDFTInv_PackToR_32f(in, out, t->dftSpec, t->buffer);
-}
-
-#elif defined(USE_GPL_FFTW3)
-
-#include <fftw3.h>
-
-struct fftw_config {
-  float *in;
-  float *out;
-  fftwf_plan fft;
-  fftwf_plan ifft;
-  int N;
-};
-
-void *spx_fft_init(int size)
-{
-  struct fftw_config *table = (struct fftw_config *) speex_alloc(sizeof(struct fftw_config));
-  table->in = fftwf_malloc(sizeof(float) * (size+2));
-  table->out = fftwf_malloc(sizeof(float) * (size+2));
-
-  table->fft = fftwf_plan_dft_r2c_1d(size, table->in, (fftwf_complex *) table->out, FFTW_PATIENT);
-  table->ifft = fftwf_plan_dft_c2r_1d(size, (fftwf_complex *) table->in, table->out, FFTW_PATIENT);
-
-  table->N = size;
-  return table;
-}
-
-void spx_fft_destroy(void *table)
-{
-  struct fftw_config *t = (struct fftw_config *) table;
-  fftwf_destroy_plan(t->fft);
-  fftwf_destroy_plan(t->ifft);
-  fftwf_free(t->in);
-  fftwf_free(t->out);
-  speex_free(table);
-}
-
-
-void spx_fft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-  int i;
-  struct fftw_config *t = (struct fftw_config *) table;
-  const int N = t->N;
-  float *iptr = t->in;
-  float *optr = t->out;
-  const float m = 1.0 / N;
-  for(i=0;i<N;++i)
-    iptr[i]=in[i] * m;
-
-  fftwf_execute(t->fft);
-
-  out[0] = optr[0];
-  for(i=1;i<N;++i)
-    out[i] = optr[i+1];
-}
-
-void spx_ifft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-  int i;
-  struct fftw_config *t = (struct fftw_config *) table;
-  const int N = t->N;
-  float *iptr = t->in;
-  float *optr = t->out;
-
-  iptr[0] = in[0];
-  iptr[1] = 0.0f;
-  for(i=1;i<N;++i)
-    iptr[i+1] = in[i];
-  iptr[N+1] = 0.0f;
-
-  fftwf_execute(t->ifft);
-
-  for(i=0;i<N;++i)
-    out[i] = optr[i];
-}
-
-#elif defined(USE_KISS_FFT)
-
-#include "kiss_fftr.h"
-#include "kiss_fft.h"
-
-struct kiss_config {
-   kiss_fftr_cfg forward;
-   kiss_fftr_cfg backward;
-   int N;
-};
-
-void *spx_fft_init(int size)
-{
-   struct kiss_config *table;
-   table = (struct kiss_config*)speex_alloc(sizeof(struct kiss_config));
-   table->forward = kiss_fftr_alloc(size,0,NULL,NULL);
-   table->backward = kiss_fftr_alloc(size,1,NULL,NULL);
-   table->N = size;
-   return table;
-}
-
-void spx_fft_destroy(void *table)
-{
-   struct kiss_config *t = (struct kiss_config *)table;
-   kiss_fftr_free(t->forward);
-   kiss_fftr_free(t->backward);
-   speex_free(table);
-}
-
-#ifdef FIXED_POINT
-
-void spx_fft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-   int shift;
-   struct kiss_config *t = (struct kiss_config *)table;
-   shift = maximize_range(in, in, 32000, t->N);
-   kiss_fftr2(t->forward, in, out);
-   renorm_range(in, in, shift, t->N);
-   renorm_range(out, out, shift, t->N);
-}
-
-#else
-
-void spx_fft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-   int i;
-   float scale;
-   struct kiss_config *t = (struct kiss_config *)table;
-   scale = 1./t->N;
-   kiss_fftr2(t->forward, in, out);
-   for (i=0;i<t->N;i++)
-      out[i] *= scale;
-}
-#endif
-
-void spx_ifft(void *table, spx_word16_t *in, spx_word16_t *out)
-{
-   struct kiss_config *t = (struct kiss_config *)table;
-   kiss_fftri2(t->backward, in, out);
-}
-
-
-#else
-
-#error No other FFT implemented
-
-#endif
-
-
-#ifdef FIXED_POINT
-/*#include "smallft.h"*/
-
-
-void spx_fft_float(void *table, float *in, float *out)
-{
-   int i;
-#ifdef USE_SMALLFT
-   int N = ((struct drft_lookup *)table)->n;
-#elif defined(USE_KISS_FFT)
-   int N = ((struct kiss_config *)table)->N;
-#else
-#endif
-#ifdef VAR_ARRAYS
-   spx_word16_t _in[N];
-   spx_word16_t _out[N];
-#else
-   spx_word16_t _in[MAX_FFT_SIZE];
-   spx_word16_t _out[MAX_FFT_SIZE];
-#endif
-   for (i=0;i<N;i++)
-      _in[i] = (int)floor(.5+in[i]);
-   spx_fft(table, _in, _out);
-   for (i=0;i<N;i++)
-      out[i] = _out[i];
-#if 0
-   if (!fixed_point)
-   {
-      float scale;
-      struct drft_lookup t;
-      spx_drft_init(&t, ((struct kiss_config *)table)->N);
-      scale = 1./((struct kiss_config *)table)->N;
-      for (i=0;i<((struct kiss_config *)table)->N;i++)
-         out[i] = scale*in[i];
-      spx_drft_forward(&t, out);
-      spx_drft_clear(&t);
-   }
-#endif
-}
-
-void spx_ifft_float(void *table, float *in, float *out)
-{
-   int i;
-#ifdef USE_SMALLFT
-   int N = ((struct drft_lookup *)table)->n;
-#elif defined(USE_KISS_FFT)
-   int N = ((struct kiss_config *)table)->N;
-#else
-#endif
-#ifdef VAR_ARRAYS
-   spx_word16_t _in[N];
-   spx_word16_t _out[N];
-#else
-   spx_word16_t _in[MAX_FFT_SIZE];
-   spx_word16_t _out[MAX_FFT_SIZE];
-#endif
-   for (i=0;i<N;i++)
-      _in[i] = (int)floor(.5+in[i]);
-   spx_ifft(table, _in, _out);
-   for (i=0;i<N;i++)
-      out[i] = _out[i];
-#if 0
-   if (!fixed_point)
-   {
-      int i;
-      struct drft_lookup t;
-      spx_drft_init(&t, ((struct kiss_config *)table)->N);
-      for (i=0;i<((struct kiss_config *)table)->N;i++)
-         out[i] = in[i];
-      spx_drft_backward(&t, out);
-      spx_drft_clear(&t);
-   }
-#endif
-}
-
-#else
-
-void spx_fft_float(void *table, float *in, float *out)
-{
-   spx_fft(table, in, out);
-}
-void spx_ifft_float(void *table, float *in, float *out)
-{
-   spx_ifft(table, in, out);
-}
-
-#endif

+ 0 - 58
Engine/lib/speex/libspeex/fftwrap.h

@@ -1,58 +0,0 @@
-/* Copyright (C) 2005 Jean-Marc Valin 
-   File: fftwrap.h
-
-   Wrapper for various FFTs 
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-*/
-
-#ifndef FFTWRAP_H
-#define FFTWRAP_H
-
-#include "arch.h"
-
-/** Compute tables for an FFT */
-void *spx_fft_init(int size);
-
-/** Destroy tables for an FFT */
-void spx_fft_destroy(void *table);
-
-/** Forward (real to half-complex) transform */
-void spx_fft(void *table, spx_word16_t *in, spx_word16_t *out);
-
-/** Backward (half-complex to real) transform */
-void spx_ifft(void *table, spx_word16_t *in, spx_word16_t *out);
-
-/** Forward (real to half-complex) transform of float data */
-void spx_fft_float(void *table, float *in, float *out);
-
-/** Backward (half-complex to real) transform of float data */
-void spx_ifft_float(void *table, float *in, float *out);
-
-#endif

+ 0 - 836
Engine/lib/speex/libspeex/filters.c

@@ -1,836 +0,0 @@
-/* Copyright (C) 2002-2006 Jean-Marc Valin
-   File: filters.c
-   Various analysis/synthesis filters
-
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifdef HAVE_CONFIG_H
-#include "config.h"
-#endif
-
-#include "filters.h"
-#include "stack_alloc.h"
-#include "arch.h"
-#include "math_approx.h"
-#include "ltp.h"
-#include <math.h>
-
-#ifdef _USE_SSE
-#include "filters_sse.h"
-#elif defined (ARM4_ASM) || defined(ARM5E_ASM)
-#include "filters_arm4.h"
-#elif defined (BFIN_ASM)
-#include "filters_bfin.h"
-#endif
-
-
-
-void bw_lpc(spx_word16_t gamma, const spx_coef_t *lpc_in, spx_coef_t *lpc_out, int order)
-{
-   int i;
-   spx_word16_t tmp=gamma;
-   for (i=0;i<order;i++)
-   {
-      lpc_out[i] = MULT16_16_P15(tmp,lpc_in[i]);
-      tmp = MULT16_16_P15(tmp, gamma);
-   }
-}
-
-void sanitize_values32(spx_word32_t *vec, spx_word32_t min_val, spx_word32_t max_val, int len)
-{
-   int i;
-   for (i=0;i<len;i++)
-   {
-      /* It's important we do the test that way so we can catch NaNs, which are neither greater nor smaller */
-      if (!(vec[i]>=min_val && vec[i] <= max_val))
-      {
-         if (vec[i] < min_val)
-            vec[i] = min_val;
-         else if (vec[i] > max_val)
-            vec[i] = max_val;
-         else /* Has to be NaN */
-            vec[i] = 0;
-      }
-   }
-}
-
-void highpass(const spx_word16_t *x, spx_word16_t *y, int len, int filtID, spx_mem_t *mem)
-{
-   int i;
-#ifdef FIXED_POINT
-   const spx_word16_t Pcoef[5][3] = {{16384, -31313, 14991}, {16384, -31569, 15249}, {16384, -31677, 15328}, {16384, -32313, 15947}, {16384, -22446, 6537}};
-   const spx_word16_t Zcoef[5][3] = {{15672, -31344, 15672}, {15802, -31601, 15802}, {15847, -31694, 15847}, {16162, -32322, 16162}, {14418, -28836, 14418}};
-#else
-   const spx_word16_t Pcoef[5][3] = {{1.00000f, -1.91120f, 0.91498f}, {1.00000f, -1.92683f, 0.93071f}, {1.00000f, -1.93338f, 0.93553f}, {1.00000f, -1.97226f, 0.97332f}, {1.00000f, -1.37000f, 0.39900f}};
-   const spx_word16_t Zcoef[5][3] = {{0.95654f, -1.91309f, 0.95654f}, {0.96446f, -1.92879f, 0.96446f}, {0.96723f, -1.93445f, 0.96723f}, {0.98645f, -1.97277f, 0.98645f}, {0.88000f, -1.76000f, 0.88000f}};
-#endif
-   const spx_word16_t *den, *num;
-   if (filtID>4)
-      filtID=4;
-
-   den = Pcoef[filtID]; num = Zcoef[filtID];
-   /*return;*/
-   for (i=0;i<len;i++)
-   {
-      spx_word16_t yi;
-      spx_word32_t vout = ADD32(MULT16_16(num[0], x[i]),mem[0]);
-      yi = EXTRACT16(SATURATE(PSHR32(vout,14),32767));
-      mem[0] = ADD32(MAC16_16(mem[1], num[1],x[i]), SHL32(MULT16_32_Q15(-den[1],vout),1));
-      mem[1] = ADD32(MULT16_16(num[2],x[i]), SHL32(MULT16_32_Q15(-den[2],vout),1));
-      y[i] = yi;
-   }
-}
-
-#ifdef FIXED_POINT
-
-/* FIXME: These functions are ugly and probably introduce too much error */
-void signal_mul(const spx_sig_t *x, spx_sig_t *y, spx_word32_t scale, int len)
-{
-   int i;
-   for (i=0;i<len;i++)
-   {
-      y[i] = SHL32(MULT16_32_Q14(EXTRACT16(SHR32(x[i],7)),scale),7);
-   }
-}
-
-#ifndef DISABLE_ENCODER
-void signal_div(const spx_word16_t *x, spx_word16_t *y, spx_word32_t scale, int len)
-{
-   int i;
-   if (scale > SHL32(EXTEND32(SIG_SCALING), 8))
-   {
-      spx_word16_t scale_1;
-      scale = PSHR32(scale, SIG_SHIFT);
-      scale_1 = EXTRACT16(PDIV32_16(SHL32(EXTEND32(SIG_SCALING),7),scale));
-      for (i=0;i<len;i++)
-      {
-         y[i] = MULT16_16_P15(scale_1, x[i]);
-      }
-   } else if (scale > SHR32(EXTEND32(SIG_SCALING), 2)) {
-      spx_word16_t scale_1;
-      scale = PSHR32(scale, SIG_SHIFT-5);
-      scale_1 = DIV32_16(SHL32(EXTEND32(SIG_SCALING),3),scale);
-      for (i=0;i<len;i++)
-      {
-         y[i] = PSHR32(MULT16_16(scale_1, SHL16(x[i],2)),8);
-      }
-   } else {
-      spx_word16_t scale_1;
-      scale = PSHR32(scale, SIG_SHIFT-7);
-      if (scale < 5)
-         scale = 5;
-      scale_1 = DIV32_16(SHL32(EXTEND32(SIG_SCALING),3),scale);
-      for (i=0;i<len;i++)
-      {
-         y[i] = PSHR32(MULT16_16(scale_1, SHL16(x[i],2)),6);
-      }
-   }
-}
-#endif /* DISABLE_ENCODER */
-
-#else /* FIXED_POINT */
-
-void signal_mul(const spx_sig_t *x, spx_sig_t *y, spx_word32_t scale, int len)
-{
-   int i;
-   for (i=0;i<len;i++)
-      y[i] = scale*x[i];
-}
-
-#ifndef DISABLE_ENCODER
-void signal_div(const spx_sig_t *x, spx_sig_t *y, spx_word32_t scale, int len)
-{
-   int i;
-   float scale_1 = 1/scale;
-   for (i=0;i<len;i++)
-      y[i] = scale_1*x[i];
-}
-#endif /* DISABLE_ENCODER */
-
-#endif /* !FIXED_POINT */
-
-
-
-#ifdef FIXED_POINT
-
-
-
-#if !defined (DISABLE_WIDEBAND) && !defined (DISABLE_ENCODER)
-spx_word16_t compute_rms(const spx_sig_t *x, int len)
-{
-   int i;
-   spx_word32_t sum=0;
-   spx_sig_t max_val=1;
-   int sig_shift;
-
-   for (i=0;i<len;i++)
-   {
-      spx_sig_t tmp = x[i];
-      if (tmp<0)
-         tmp = -tmp;
-      if (tmp > max_val)
-         max_val = tmp;
-   }
-
-   sig_shift=0;
-   while (max_val>16383)
-   {
-      sig_shift++;
-      max_val >>= 1;
-   }
-
-   for (i=0;i<len;i+=4)
-   {
-      spx_word32_t sum2=0;
-      spx_word16_t tmp;
-      tmp = EXTRACT16(SHR32(x[i],sig_shift));
-      sum2 = MAC16_16(sum2,tmp,tmp);
-      tmp = EXTRACT16(SHR32(x[i+1],sig_shift));
-      sum2 = MAC16_16(sum2,tmp,tmp);
-      tmp = EXTRACT16(SHR32(x[i+2],sig_shift));
-      sum2 = MAC16_16(sum2,tmp,tmp);
-      tmp = EXTRACT16(SHR32(x[i+3],sig_shift));
-      sum2 = MAC16_16(sum2,tmp,tmp);
-      sum = ADD32(sum,SHR32(sum2,6));
-   }
-
-   return EXTRACT16(PSHR32(SHL32(EXTEND32(spx_sqrt(DIV32(sum,len))),(sig_shift+3)),SIG_SHIFT));
-}
-#endif /* !defined (DISABLE_WIDEBAND) && !defined (DISABLE_ENCODER) */
-
-spx_word16_t compute_rms16(const spx_word16_t *x, int len)
-{
-   int i;
-   spx_word16_t max_val=10;
-
-   for (i=0;i<len;i++)
-   {
-      spx_sig_t tmp = x[i];
-      if (tmp<0)
-         tmp = -tmp;
-      if (tmp > max_val)
-         max_val = tmp;
-   }
-   if (max_val>16383)
-   {
-      spx_word32_t sum=0;
-      for (i=0;i<len;i+=4)
-      {
-         spx_word32_t sum2=0;
-         sum2 = MAC16_16(sum2,SHR16(x[i],1),SHR16(x[i],1));
-         sum2 = MAC16_16(sum2,SHR16(x[i+1],1),SHR16(x[i+1],1));
-         sum2 = MAC16_16(sum2,SHR16(x[i+2],1),SHR16(x[i+2],1));
-         sum2 = MAC16_16(sum2,SHR16(x[i+3],1),SHR16(x[i+3],1));
-         sum = ADD32(sum,SHR32(sum2,6));
-      }
-      return SHL16(spx_sqrt(DIV32(sum,len)),4);
-   } else {
-      spx_word32_t sum=0;
-      int sig_shift=0;
-      if (max_val < 8192)
-         sig_shift=1;
-      if (max_val < 4096)
-         sig_shift=2;
-      if (max_val < 2048)
-         sig_shift=3;
-      for (i=0;i<len;i+=4)
-      {
-         spx_word32_t sum2=0;
-         sum2 = MAC16_16(sum2,SHL16(x[i],sig_shift),SHL16(x[i],sig_shift));
-         sum2 = MAC16_16(sum2,SHL16(x[i+1],sig_shift),SHL16(x[i+1],sig_shift));
-         sum2 = MAC16_16(sum2,SHL16(x[i+2],sig_shift),SHL16(x[i+2],sig_shift));
-         sum2 = MAC16_16(sum2,SHL16(x[i+3],sig_shift),SHL16(x[i+3],sig_shift));
-         sum = ADD32(sum,SHR32(sum2,6));
-      }
-      return SHL16(spx_sqrt(DIV32(sum,len)),3-sig_shift);
-   }
-}
-
-#ifndef OVERRIDE_NORMALIZE16
-int normalize16(const spx_sig_t *x, spx_word16_t *y, spx_sig_t max_scale, int len)
-{
-   int i;
-   spx_sig_t max_val=1;
-   int sig_shift;
-
-   for (i=0;i<len;i++)
-   {
-      spx_sig_t tmp = x[i];
-      if (tmp<0)
-         tmp = NEG32(tmp);
-      if (tmp >= max_val)
-         max_val = tmp;
-   }
-
-   sig_shift=0;
-   while (max_val>max_scale)
-   {
-      sig_shift++;
-      max_val >>= 1;
-   }
-
-   for (i=0;i<len;i++)
-      y[i] = EXTRACT16(SHR32(x[i], sig_shift));
-
-   return sig_shift;
-}
-#endif
-
-#else
-
-spx_word16_t compute_rms(const spx_sig_t *x, int len)
-{
-   int i;
-   float sum=0;
-   for (i=0;i<len;i++)
-   {
-      sum += x[i]*x[i];
-   }
-   return sqrt(.1+sum/len);
-}
-spx_word16_t compute_rms16(const spx_word16_t *x, int len)
-{
-   return compute_rms(x, len);
-}
-#endif
-
-#ifdef MERGE_FILTERS
-const spx_word16_t zeros[10] = {0,0,0,0,0,0,0,0,0,0};
-#endif  /* MERGE_FILTERS */
-
-#if !defined(OVERRIDE_FILTER_MEM16) && !defined(DISABLE_ENCODER)
-void filter_mem16(const spx_word16_t *x, const spx_coef_t *num, const spx_coef_t *den, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack)
-{
-   int i,j;
-   spx_word16_t xi,yi,nyi;
-   for (i=0;i<N;i++)
-   {
-      xi= x[i];
-      yi = EXTRACT16(SATURATE(ADD32(EXTEND32(x[i]),PSHR32(mem[0],LPC_SHIFT)),32767));
-      nyi = NEG16(yi);
-      for (j=0;j<ord-1;j++)
-      {
-         mem[j] = MAC16_16(MAC16_16(mem[j+1], num[j],xi), den[j],nyi);
-      }
-      mem[ord-1] = ADD32(MULT16_16(num[ord-1],xi), MULT16_16(den[ord-1],nyi));
-      y[i] = yi;
-   }
-}
-#endif /* !defined(OVERRIDE_FILTER_MEM16) && !defined(DISABLE_ENCODER) */
-
-#ifndef OVERRIDE_IIR_MEM16
-void iir_mem16(const spx_word16_t *x, const spx_coef_t *den, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack)
-{
-   int i,j;
-   spx_word16_t yi,nyi;
-
-   for (i=0;i<N;i++)
-   {
-      yi = EXTRACT16(SATURATE(ADD32(EXTEND32(x[i]),PSHR32(mem[0],LPC_SHIFT)),32767));
-      nyi = NEG16(yi);
-      for (j=0;j<ord-1;j++)
-      {
-         mem[j] = MAC16_16(mem[j+1],den[j],nyi);
-      }
-      mem[ord-1] = MULT16_16(den[ord-1],nyi);
-      y[i] = yi;
-   }
-}
-#endif
-
-#if !defined(OVERRIDE_FIR_MEM16) && !defined(DISABLE_ENCODER)
-void fir_mem16(const spx_word16_t *x, const spx_coef_t *num, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack)
-{
-   int i,j;
-   spx_word16_t xi,yi;
-
-   for (i=0;i<N;i++)
-   {
-      xi=x[i];
-      yi = EXTRACT16(SATURATE(ADD32(EXTEND32(x[i]),PSHR32(mem[0],LPC_SHIFT)),32767));
-      for (j=0;j<ord-1;j++)
-      {
-         mem[j] = MAC16_16(mem[j+1], num[j],xi);
-      }
-      mem[ord-1] = MULT16_16(num[ord-1],xi);
-      y[i] = yi;
-   }
-}
-#endif /* !defined(OVERRIDE_FIR_MEM16) && !defined(DISABLE_ENCODER) */
-
-#ifndef DISABLE_ENCODER
-void syn_percep_zero16(const spx_word16_t *xx, const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack)
-{
-   int i;
-   VARDECL(spx_mem_t *mem);
-   ALLOC(mem, ord, spx_mem_t);
-   for (i=0;i<ord;i++)
-      mem[i]=0;
-   iir_mem16(xx, ak, y, N, ord, mem, stack);
-   for (i=0;i<ord;i++)
-      mem[i]=0;
-   filter_mem16(y, awk1, awk2, y, N, ord, mem, stack);
-}
-void residue_percep_zero16(const spx_word16_t *xx, const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack)
-{
-   int i;
-   VARDECL(spx_mem_t *mem);
-   ALLOC(mem, ord, spx_mem_t);
-   for (i=0;i<ord;i++)
-      mem[i]=0;
-   filter_mem16(xx, ak, awk1, y, N, ord, mem, stack);
-   for (i=0;i<ord;i++)
-      mem[i]=0;
-   fir_mem16(y, awk2, y, N, ord, mem, stack);
-}
-#endif /* DISABLE_ENCODER */
-
-#if !defined(OVERRIDE_COMPUTE_IMPULSE_RESPONSE) && !defined(DISABLE_ENCODER)
-void compute_impulse_response(const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack)
-{
-   int i,j;
-   spx_word16_t y1, ny1i, ny2i;
-   VARDECL(spx_mem_t *mem1);
-   VARDECL(spx_mem_t *mem2);
-   ALLOC(mem1, ord, spx_mem_t);
-   ALLOC(mem2, ord, spx_mem_t);
-
-   y[0] = LPC_SCALING;
-   for (i=0;i<ord;i++)
-      y[i+1] = awk1[i];
-   i++;
-   for (;i<N;i++)
-      y[i] = VERY_SMALL;
-   for (i=0;i<ord;i++)
-      mem1[i] = mem2[i] = 0;
-   for (i=0;i<N;i++)
-   {
-      y1 = ADD16(y[i], EXTRACT16(PSHR32(mem1[0],LPC_SHIFT)));
-      ny1i = NEG16(y1);
-      y[i] = PSHR32(ADD32(SHL32(EXTEND32(y1),LPC_SHIFT+1),mem2[0]),LPC_SHIFT);
-      ny2i = NEG16(y[i]);
-      for (j=0;j<ord-1;j++)
-      {
-         mem1[j] = MAC16_16(mem1[j+1], awk2[j],ny1i);
-         mem2[j] = MAC16_16(mem2[j+1], ak[j],ny2i);
-      }
-      mem1[ord-1] = MULT16_16(awk2[ord-1],ny1i);
-      mem2[ord-1] = MULT16_16(ak[ord-1],ny2i);
-   }
-}
-#endif /* !defined(OVERRIDE_COMPUTE_IMPULSE_RESPONSE) && !defined(DISABLE_ENCODER) */
-
-#ifndef DISABLE_WIDEBAND
-/* Decomposes a signal into low-band and high-band using a QMF */
-void qmf_decomp(const spx_word16_t *xx, const spx_word16_t *aa, spx_word16_t *y1, spx_word16_t *y2, int N, int M, spx_word16_t *mem, char *stack)
-{
-   int i,j,k,M2;
-   VARDECL(spx_word16_t *a);
-   VARDECL(spx_word16_t *x);
-   spx_word16_t *x2;
-
-   ALLOC(a, M, spx_word16_t);
-   ALLOC(x, N+M-1, spx_word16_t);
-   x2=x+M-1;
-   M2=M>>1;
-   for (i=0;i<M;i++)
-      a[M-i-1]= aa[i];
-   for (i=0;i<M-1;i++)
-      x[i]=mem[M-i-2];
-   for (i=0;i<N;i++)
-      x[i+M-1]=SHR16(xx[i],1);
-   for (i=0;i<M-1;i++)
-      mem[i]=SHR16(xx[N-i-1],1);
-   for (i=0,k=0;i<N;i+=2,k++)
-   {
-      spx_word32_t y1k=0, y2k=0;
-      for (j=0;j<M2;j++)
-      {
-         y1k=ADD32(y1k,MULT16_16(a[j],ADD16(x[i+j],x2[i-j])));
-         y2k=SUB32(y2k,MULT16_16(a[j],SUB16(x[i+j],x2[i-j])));
-         j++;
-         y1k=ADD32(y1k,MULT16_16(a[j],ADD16(x[i+j],x2[i-j])));
-         y2k=ADD32(y2k,MULT16_16(a[j],SUB16(x[i+j],x2[i-j])));
-      }
-      y1[k] = EXTRACT16(SATURATE(PSHR32(y1k,15),32767));
-      y2[k] = EXTRACT16(SATURATE(PSHR32(y2k,15),32767));
-   }
-}
-
-/* Re-synthesised a signal from the QMF low-band and high-band signals */
-void qmf_synth(const spx_word16_t *x1, const spx_word16_t *x2, const spx_word16_t *a, spx_word16_t *y, int N, int M, spx_word16_t *mem1, spx_word16_t *mem2, char *stack)
-   /* assumptions:
-      all odd x[i] are zero -- well, actually they are left out of the array now
-      N and M are multiples of 4 */
-{
-   int i, j;
-   int M2, N2;
-   VARDECL(spx_word16_t *xx1);
-   VARDECL(spx_word16_t *xx2);
-
-   M2 = M>>1;
-   N2 = N>>1;
-   ALLOC(xx1, M2+N2, spx_word16_t);
-   ALLOC(xx2, M2+N2, spx_word16_t);
-
-   for (i = 0; i < N2; i++)
-      xx1[i] = x1[N2-1-i];
-   for (i = 0; i < M2; i++)
-      xx1[N2+i] = mem1[2*i+1];
-   for (i = 0; i < N2; i++)
-      xx2[i] = x2[N2-1-i];
-   for (i = 0; i < M2; i++)
-      xx2[N2+i] = mem2[2*i+1];
-
-   for (i = 0; i < N2; i += 2) {
-      spx_sig_t y0, y1, y2, y3;
-      spx_word16_t x10, x20;
-
-      y0 = y1 = y2 = y3 = 0;
-      x10 = xx1[N2-2-i];
-      x20 = xx2[N2-2-i];
-
-      for (j = 0; j < M2; j += 2) {
-         spx_word16_t x11, x21;
-         spx_word16_t a0, a1;
-
-         a0 = a[2*j];
-         a1 = a[2*j+1];
-         x11 = xx1[N2-1+j-i];
-         x21 = xx2[N2-1+j-i];
-
-#ifdef FIXED_POINT
-         /* We multiply twice by the same coef to avoid overflows */
-         y0 = MAC16_16(MAC16_16(y0, a0, x11), NEG16(a0), x21);
-         y1 = MAC16_16(MAC16_16(y1, a1, x11), a1, x21);
-         y2 = MAC16_16(MAC16_16(y2, a0, x10), NEG16(a0), x20);
-         y3 = MAC16_16(MAC16_16(y3, a1, x10), a1, x20);
-#else
-         y0 = ADD32(y0,MULT16_16(a0, x11-x21));
-         y1 = ADD32(y1,MULT16_16(a1, x11+x21));
-         y2 = ADD32(y2,MULT16_16(a0, x10-x20));
-         y3 = ADD32(y3,MULT16_16(a1, x10+x20));
-#endif
-         a0 = a[2*j+2];
-         a1 = a[2*j+3];
-         x10 = xx1[N2+j-i];
-         x20 = xx2[N2+j-i];
-
-#ifdef FIXED_POINT
-         /* We multiply twice by the same coef to avoid overflows */
-         y0 = MAC16_16(MAC16_16(y0, a0, x10), NEG16(a0), x20);
-         y1 = MAC16_16(MAC16_16(y1, a1, x10), a1, x20);
-         y2 = MAC16_16(MAC16_16(y2, a0, x11), NEG16(a0), x21);
-         y3 = MAC16_16(MAC16_16(y3, a1, x11), a1, x21);
-#else
-         y0 = ADD32(y0,MULT16_16(a0, x10-x20));
-         y1 = ADD32(y1,MULT16_16(a1, x10+x20));
-         y2 = ADD32(y2,MULT16_16(a0, x11-x21));
-         y3 = ADD32(y3,MULT16_16(a1, x11+x21));
-#endif
-      }
-#ifdef FIXED_POINT
-      y[2*i] = EXTRACT16(SATURATE32(PSHR32(y0,15),32767));
-      y[2*i+1] = EXTRACT16(SATURATE32(PSHR32(y1,15),32767));
-      y[2*i+2] = EXTRACT16(SATURATE32(PSHR32(y2,15),32767));
-      y[2*i+3] = EXTRACT16(SATURATE32(PSHR32(y3,15),32767));
-#else
-      /* Normalize up explicitly if we're in float */
-      y[2*i] = 2.f*y0;
-      y[2*i+1] = 2.f*y1;
-      y[2*i+2] = 2.f*y2;
-      y[2*i+3] = 2.f*y3;
-#endif
-   }
-
-   for (i = 0; i < M2; i++)
-      mem1[2*i+1] = xx1[i];
-   for (i = 0; i < M2; i++)
-      mem2[2*i+1] = xx2[i];
-}
-#endif /* DISABLE_WIDEBAND */
-
-
-#ifndef DISABLE_DECODER
-
-#ifdef FIXED_POINT
-#if 0
-const spx_word16_t shift_filt[3][7] = {{-33,    1043,   -4551,   19959,   19959,   -4551,    1043},
-                                 {-98,    1133,   -4425,   29179,    8895,   -2328,     444},
-                                 {444,   -2328,    8895,   29179,   -4425,    1133,     -98}};
-#else
-const spx_word16_t shift_filt[3][7] = {{-390,    1540,   -4993,   20123,   20123,   -4993,    1540},
-                                {-1064,    2817,   -6694,   31589,    6837,    -990,    -209},
-                                 {-209,    -990,    6837,   31589,   -6694,    2817,   -1064}};
-#endif
-#else
-#if 0
-const float shift_filt[3][7] = {{-9.9369e-04, 3.1831e-02, -1.3889e-01, 6.0910e-01, 6.0910e-01, -1.3889e-01, 3.1831e-02},
-                          {-0.0029937, 0.0345613, -0.1350474, 0.8904793, 0.2714479, -0.0710304, 0.0135403},
-                          {0.0135403, -0.0710304, 0.2714479, 0.8904793, -0.1350474, 0.0345613,  -0.0029937}};
-#else
-const float shift_filt[3][7] = {{-0.011915f, 0.046995f, -0.152373f, 0.614108f, 0.614108f, -0.152373f, 0.046995f},
-                          {-0.0324855f, 0.0859768f, -0.2042986f, 0.9640297f, 0.2086420f, -0.0302054f, -0.0063646f},
-                          {-0.0063646f, -0.0302054f, 0.2086420f, 0.9640297f, -0.2042986f, 0.0859768f, -0.0324855f}};
-#endif
-#endif
-
-static int interp_pitch(
-spx_word16_t *exc,          /*decoded excitation*/
-spx_word16_t *interp,          /*decoded excitation*/
-int pitch,               /*pitch period*/
-int len
-)
-{
-   int i,j,k;
-   spx_word32_t corr[4][7];
-   spx_word32_t maxcorr;
-   int maxi, maxj;
-   for (i=0;i<7;i++)
-   {
-      corr[0][i] = inner_prod(exc, exc-pitch-3+i, len);
-   }
-   for (i=0;i<3;i++)
-   {
-      for (j=0;j<7;j++)
-      {
-         int i1, i2;
-         spx_word32_t tmp=0;
-         i1 = 3-j;
-         if (i1<0)
-            i1 = 0;
-         i2 = 10-j;
-         if (i2>7)
-            i2 = 7;
-         for (k=i1;k<i2;k++)
-            tmp += MULT16_32_Q15(shift_filt[i][k],corr[0][j+k-3]);
-         corr[i+1][j] = tmp;
-      }
-   }
-   maxi=maxj=0;
-   maxcorr = corr[0][0];
-   for (i=0;i<4;i++)
-   {
-      for (j=0;j<7;j++)
-      {
-         if (corr[i][j] > maxcorr)
-         {
-            maxcorr = corr[i][j];
-            maxi=i;
-            maxj=j;
-         }
-      }
-   }
-   for (i=0;i<len;i++)
-   {
-      spx_word32_t tmp = 0;
-      if (maxi>0)
-      {
-         for (k=0;k<7;k++)
-         {
-            tmp += MULT16_16(exc[i-(pitch-maxj+3)+k-3],shift_filt[maxi-1][k]);
-         }
-      } else {
-         tmp = SHL32(exc[i-(pitch-maxj+3)],15);
-      }
-      interp[i] = PSHR32(tmp,15);
-   }
-   return pitch-maxj+3;
-}
-
-void multicomb(
-spx_word16_t *exc,          /*decoded excitation*/
-spx_word16_t *new_exc,      /*enhanced excitation*/
-spx_coef_t *ak,           /*LPC filter coefs*/
-int p,               /*LPC order*/
-int nsf,             /*sub-frame size*/
-int pitch,           /*pitch period*/
-int max_pitch,
-spx_word16_t  comb_gain,    /*gain of comb filter*/
-char *stack
-)
-{
-   int i;
-   VARDECL(spx_word16_t *iexc);
-   spx_word16_t old_ener, new_ener;
-   int corr_pitch;
-
-   spx_word16_t iexc0_mag, iexc1_mag, exc_mag;
-   spx_word32_t corr0, corr1;
-   spx_word16_t gain0, gain1;
-   spx_word16_t pgain1, pgain2;
-   spx_word16_t c1, c2;
-   spx_word16_t g1, g2;
-   spx_word16_t ngain;
-   spx_word16_t gg1, gg2;
-#ifdef FIXED_POINT
-   int scaledown=0;
-#endif
-#if 0 /* Set to 1 to enable full pitch search */
-   int nol_pitch[6];
-   spx_word16_t nol_pitch_coef[6];
-   spx_word16_t ol_pitch_coef;
-   open_loop_nbest_pitch(exc, 20, 120, nsf,
-                         nol_pitch, nol_pitch_coef, 6, stack);
-   corr_pitch=nol_pitch[0];
-   ol_pitch_coef = nol_pitch_coef[0];
-   /*Try to remove pitch multiples*/
-   for (i=1;i<6;i++)
-   {
-#ifdef FIXED_POINT
-      if ((nol_pitch_coef[i]>MULT16_16_Q15(nol_pitch_coef[0],19661)) &&
-#else
-      if ((nol_pitch_coef[i]>.6*nol_pitch_coef[0]) &&
-#endif
-         (ABS(2*nol_pitch[i]-corr_pitch)<=2 || ABS(3*nol_pitch[i]-corr_pitch)<=3 ||
-         ABS(4*nol_pitch[i]-corr_pitch)<=4 || ABS(5*nol_pitch[i]-corr_pitch)<=5))
-      {
-         corr_pitch = nol_pitch[i];
-      }
-   }
-#else
-   corr_pitch = pitch;
-#endif
-
-   ALLOC(iexc, 2*nsf, spx_word16_t);
-
-   interp_pitch(exc, iexc, corr_pitch, 80);
-   if (corr_pitch>max_pitch)
-      interp_pitch(exc, iexc+nsf, 2*corr_pitch, 80);
-   else
-      interp_pitch(exc, iexc+nsf, -corr_pitch, 80);
-
-#ifdef FIXED_POINT
-   for (i=0;i<nsf;i++)
-   {
-      if (ABS16(exc[i])>16383)
-      {
-         scaledown = 1;
-         break;
-      }
-   }
-   if (scaledown)
-   {
-      for (i=0;i<nsf;i++)
-         exc[i] = SHR16(exc[i],1);
-      for (i=0;i<2*nsf;i++)
-         iexc[i] = SHR16(iexc[i],1);
-   }
-#endif
-   /*interp_pitch(exc, iexc+2*nsf, 2*corr_pitch, 80);*/
-
-   /*printf ("%d %d %f\n", pitch, corr_pitch, max_corr*ener_1);*/
-   iexc0_mag = spx_sqrt(1000+inner_prod(iexc,iexc,nsf));
-   iexc1_mag = spx_sqrt(1000+inner_prod(iexc+nsf,iexc+nsf,nsf));
-   exc_mag = spx_sqrt(1+inner_prod(exc,exc,nsf));
-   corr0  = inner_prod(iexc,exc,nsf);
-   if (corr0<0)
-      corr0=0;
-   corr1 = inner_prod(iexc+nsf,exc,nsf);
-   if (corr1<0)
-      corr1=0;
-#ifdef FIXED_POINT
-   /* Doesn't cost much to limit the ratio and it makes the rest easier */
-   if (SHL32(EXTEND32(iexc0_mag),6) < EXTEND32(exc_mag))
-      iexc0_mag = ADD16(1,PSHR16(exc_mag,6));
-   if (SHL32(EXTEND32(iexc1_mag),6) < EXTEND32(exc_mag))
-      iexc1_mag = ADD16(1,PSHR16(exc_mag,6));
-#endif
-   if (corr0 > MULT16_16(iexc0_mag,exc_mag))
-      pgain1 = QCONST16(1., 14);
-   else
-      pgain1 = PDIV32_16(SHL32(PDIV32(corr0, exc_mag),14),iexc0_mag);
-   if (corr1 > MULT16_16(iexc1_mag,exc_mag))
-      pgain2 = QCONST16(1., 14);
-   else
-      pgain2 = PDIV32_16(SHL32(PDIV32(corr1, exc_mag),14),iexc1_mag);
-   gg1 = PDIV32_16(SHL32(EXTEND32(exc_mag),8), iexc0_mag);
-   gg2 = PDIV32_16(SHL32(EXTEND32(exc_mag),8), iexc1_mag);
-   if (comb_gain>0)
-   {
-#ifdef FIXED_POINT
-      c1 = (MULT16_16_Q15(QCONST16(.4,15),comb_gain)+QCONST16(.07,15));
-      c2 = QCONST16(.5,15)+MULT16_16_Q14(QCONST16(1.72,14),(c1-QCONST16(.07,15)));
-#else
-      c1 = .4*comb_gain+.07;
-      c2 = .5+1.72*(c1-.07);
-#endif
-   } else
-   {
-      c1=c2=0;
-   }
-#ifdef FIXED_POINT
-   g1 = 32767 - MULT16_16_Q13(MULT16_16_Q15(c2, pgain1),pgain1);
-   g2 = 32767 - MULT16_16_Q13(MULT16_16_Q15(c2, pgain2),pgain2);
-#else
-   g1 = 1-c2*pgain1*pgain1;
-   g2 = 1-c2*pgain2*pgain2;
-#endif
-   if (g1<c1)
-      g1 = c1;
-   if (g2<c1)
-      g2 = c1;
-   g1 = (spx_word16_t)PDIV32_16(SHL32(EXTEND32(c1),14),(spx_word16_t)g1);
-   g2 = (spx_word16_t)PDIV32_16(SHL32(EXTEND32(c1),14),(spx_word16_t)g2);
-   if (corr_pitch>max_pitch)
-   {
-      gain0 = MULT16_16_Q15(QCONST16(.7,15),MULT16_16_Q14(g1,gg1));
-      gain1 = MULT16_16_Q15(QCONST16(.3,15),MULT16_16_Q14(g2,gg2));
-   } else {
-      gain0 = MULT16_16_Q15(QCONST16(.6,15),MULT16_16_Q14(g1,gg1));
-      gain1 = MULT16_16_Q15(QCONST16(.6,15),MULT16_16_Q14(g2,gg2));
-   }
-   for (i=0;i<nsf;i++)
-      new_exc[i] = ADD16(exc[i], EXTRACT16(PSHR32(ADD32(MULT16_16(gain0,iexc[i]), MULT16_16(gain1,iexc[i+nsf])),8)));
-   /* FIXME: compute_rms16 is currently not quite accurate enough (but close) */
-   new_ener = compute_rms16(new_exc, nsf);
-   old_ener = compute_rms16(exc, nsf);
-
-   if (old_ener < 1)
-      old_ener = 1;
-   if (new_ener < 1)
-      new_ener = 1;
-   if (old_ener > new_ener)
-      old_ener = new_ener;
-   ngain = PDIV32_16(SHL32(EXTEND32(old_ener),14),new_ener);
-
-   for (i=0;i<nsf;i++)
-      new_exc[i] = MULT16_16_Q14(ngain, new_exc[i]);
-#ifdef FIXED_POINT
-   if (scaledown)
-   {
-      for (i=0;i<nsf;i++)
-         exc[i] = SHL16(exc[i],1);
-      for (i=0;i<nsf;i++)
-         new_exc[i] = SHL16(SATURATE16(new_exc[i],16383),1);
-   }
-#endif
-}
-
-#endif /* DISABLE_DECODER */

+ 0 - 105
Engine/lib/speex/libspeex/filters.h

@@ -1,105 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin */
-/**
-   @file filters.h
-   @brief Various analysis/synthesis filters
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifndef FILTERS_H
-#define FILTERS_H
-
-#include "arch.h"
-
-spx_word16_t compute_rms(const spx_sig_t *x, int len);
-spx_word16_t compute_rms16(const spx_word16_t *x, int len);
-void signal_mul(const spx_sig_t *x, spx_sig_t *y, spx_word32_t scale, int len);
-void signal_div(const spx_word16_t *x, spx_word16_t *y, spx_word32_t scale, int len);
-
-#ifdef FIXED_POINT
-
-int normalize16(const spx_sig_t *x, spx_word16_t *y, spx_sig_t max_scale, int len);
-
-#endif
-
-
-#define HIGHPASS_NARROWBAND 0
-#define HIGHPASS_WIDEBAND 2
-#define HIGHPASS_INPUT 0
-#define HIGHPASS_OUTPUT 1
-#define HIGHPASS_IRS 4
-
-void highpass(const spx_word16_t *x, spx_word16_t *y, int len, int filtID, spx_mem_t *mem);
-
-
-void qmf_decomp(const spx_word16_t *xx, const spx_word16_t *aa, spx_word16_t *, spx_word16_t *y2, int N, int M, spx_word16_t *mem, char *stack);
-void qmf_synth(const spx_word16_t *x1, const spx_word16_t *x2, const spx_word16_t *a, spx_word16_t *y, int N, int M, spx_word16_t *mem1, spx_word16_t *mem2, char *stack);
-
-void filter_mem16(const spx_word16_t *x, const spx_coef_t *num, const spx_coef_t *den, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack);
-
-#ifdef MERGE_FILTERS
-
-#define OVERRIDE_IIR_MEM16
-#define OVERRIDE_FIR_MEM16
-extern const spx_word16_t zeros[];
-#define iir_mem16(x, den, y, N, ord, mem, stack) filter_mem16(x, zeros, den, y,  N, ord, mem, stack)
-#define fir_mem16(x, num, y, N, ord, mem, stack) filter_mem16(x, num, zeros, y,  N, ord, mem, stack)
-
-#else /* MERGE_FILTERS */
-void iir_mem16(const spx_word16_t *x, const spx_coef_t *den, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack);
-void fir_mem16(const spx_word16_t *x, const spx_coef_t *num, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack);
-#endif  /* MERGE_FILTERS */
-
-/* Apply bandwidth expansion on LPC coef */
-void bw_lpc(spx_word16_t , const spx_coef_t *lpc_in, spx_coef_t *lpc_out, int order);
-void sanitize_values32(spx_word32_t *vec, spx_word32_t min_val, spx_word32_t max_val, int len);
-
-
-void syn_percep_zero16(const spx_word16_t *xx, const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack);
-void residue_percep_zero16(const spx_word16_t *xx, const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack);
-
-void compute_impulse_response(const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack);
-
-void multicomb(
-spx_word16_t *exc,          /*decoded excitation*/
-spx_word16_t *new_exc,      /*enhanced excitation*/
-spx_coef_t *ak,           /*LPC filter coefs*/
-int p,               /*LPC order*/
-int nsf,             /*sub-frame size*/
-int pitch,           /*pitch period*/
-int max_pitch,   /*pitch gain (3-tap)*/
-spx_word16_t  comb_gain,    /*gain of comb filter*/
-char *stack
-);
-
-
-#define filter10(x, num, den, y, N, mem, stack) filter_mem16(x, num, den, y, N, 10, mem, stack)
-
-
-#endif

+ 0 - 96
Engine/lib/speex/libspeex/filters_arm4.h

@@ -1,96 +0,0 @@
-/* Copyright (C) 2004 Jean-Marc Valin */
-/**
-   @file filters_arm4.h
-   @brief Various analysis/synthesis filters (ARM4 version)
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#define OVERRIDE_NORMALIZE16
-int normalize16(const spx_sig_t *x, spx_word16_t *y, spx_sig_t max_scale, int len)
-{
-   spx_sig_t max_val=1;
-   int sig_shift;
-   int dead1, dead2, dead3, dead4, dead5, dead6;
-
-   __asm__ __volatile__ (
-         "\tmov %1, #1 \n"
-         "\tmov %3, #0 \n"
-
-         ".normalize16loop1%=: \n"
-
-         "\tldr %4, [%0], #4 \n"
-         "\tcmp %4, %1 \n"
-         "\tmovgt %1, %4 \n"
-         "\tcmp %4, %3 \n"
-         "\tmovlt %3, %4 \n"
-
-         "\tsubs %2, %2, #1 \n"
-         "\tbne .normalize16loop1%=\n"
-
-         "\trsb %3, %3, #0 \n"
-         "\tcmp %1, %3 \n"
-         "\tmovlt %1, %3 \n"
-   : "=r" (dead1), "=r" (max_val), "=r" (dead3), "=r" (dead4),
-   "=r" (dead5), "=r" (dead6)
-   : "0" (x), "2" (len)
-   : "cc");
-
-   sig_shift=0;
-   while (max_val>max_scale)
-   {
-      sig_shift++;
-      max_val >>= 1;
-   }
-   
-   __asm__ __volatile__ (
-         ".normalize16loop%=: \n"
-
-         "\tldr %4, [%0], #4 \n"
-         "\tldr %5, [%0], #4 \n"
-         "\tmov %4, %4, asr %3 \n"
-         "\tstrh %4, [%1], #2 \n"
-         "\tldr %4, [%0], #4 \n"
-         "\tmov %5, %5, asr %3 \n"
-         "\tstrh %5, [%1], #2 \n"
-         "\tldr %5, [%0], #4 \n"
-         "\tmov %4, %4, asr %3 \n"
-         "\tstrh %4, [%1], #2 \n"
-         "\tsubs %2, %2, #1 \n"
-         "\tmov %5, %5, asr %3 \n"
-         "\tstrh %5, [%1], #2 \n"
-
-         "\tbgt .normalize16loop%=\n"
-   : "=r" (dead1), "=r" (dead2), "=r" (dead3), "=r" (dead4),
-   "=r" (dead5), "=r" (dead6)
-   : "0" (x), "1" (y), "2" (len>>2), "3" (sig_shift)
-   : "cc", "memory");
-   return sig_shift;
-}
-

+ 0 - 520
Engine/lib/speex/libspeex/filters_bfin.h

@@ -1,520 +0,0 @@
-/* Copyright (C) 2005 Analog Devices */
-/**
-   @file filters_bfin.h
-   @brief Various analysis/synthesis filters (Blackfin version)
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#include "bfin.h"
-
-#define OVERRIDE_NORMALIZE16
-int normalize16(const spx_sig_t *x, spx_word16_t *y, spx_sig_t max_scale, int len)
-{
-   spx_sig_t max_val=1;
-   int sig_shift;
-   __asm__ 
-   (
-   "%0 = 0;\n\t"
-   "I0 = %1;\n\t"
-   "L0 = 0;\n\t"
-   "R1 = [I0++];\n\t"
-   "LOOP norm_max%= LC0 = %2;\n\t"
-   "LOOP_BEGIN norm_max%=;\n\t"
-      "R2 = ABS R1 || R1 = [I0++];\n\t"
-      "%0 = MAX(%0, R2);\n\t"
-   "LOOP_END norm_max%=;\n\t"
-   : "=&d" (max_val)
-   : "a" (x), "a" (len)
-   : "R1", "R2", "ASTAT" BFIN_HWLOOP0_REGS
-   );
-
-   sig_shift=0;
-   while (max_val>max_scale)
-   {
-      sig_shift++;
-      max_val >>= 1;
-   }
-
-   __asm__ __volatile__ 
-   (
-   "I0 = %0;\n\t"
-   "L0 = 0;\n\t"
-   "P1 = %1;\n\t"
-   "R0 = [I0++];\n\t"
-   "LOOP norm_shift%= LC0 = %3;\n\t"
-   "LOOP_BEGIN norm_shift%=;\n\t"
-      "R1 = ASHIFT R0 by %2.L || R0 = [I0++];\n\t"
-      "W[P1++] = R1;\n\t"
-   "LOOP_END norm_shift%=;\n\t"
-   "R1 = ASHIFT R0 by %2.L;\n\t"
-   "W[P1++] = R1;\n\t"
-   : : "a" (x), "a" (y), "d" (-sig_shift), "a" (len-1)
-   : "I0", "L0", "P1", "R0", "R1", "memory", "ASTAT" BFIN_HWLOOP0_REGS
-   );
-   return sig_shift;
-}
-
-
-
-#define OVERRIDE_FILTER_MEM16
-void filter_mem16(const spx_word16_t *_x, const spx_coef_t *num, const spx_coef_t *den, spx_word16_t *_y, int N, int ord, spx_mem_t *mem, char *stack)
-{
-   VARDECL(spx_word32_t *xy2);
-   VARDECL(spx_word32_t *numden_a);
-   spx_word32_t *xy;
-   spx_word16_t *numden;
-   int i;
-
-   ALLOC(xy2, (N+1), spx_word32_t);
-   ALLOC(numden_a, (2*ord+2), spx_word32_t);
-   xy = xy2+1;  
-   numden = (spx_word16_t*) numden_a;
-
-   for (i=0;i<ord;i++)
-   {
-      numden[2*i] = num[i];
-      numden[2*i+1] = den[i];
-   }
-   __asm__ __volatile__
-   (
-   /* Register setup */
-   "R0 = %5;\n\t"      /*ord */
-   
-   "P0 = %3;\n\t"
-   "I0 = P0;\n\t"
-   "B0 = P0;\n\t" /* numden */
-   "L0 = 0;\n\t"
-      
-   "P2 = %0;\n\t" /* Fused xy */
-   "I2 = P2;\n\t"
-   "L2 = 0;\n\t"
-   
-   "P4 = %6;\n\t" /* mem */
-   "P0 = %1;\n\t" /* _x */
-   "P1 = %2;\n\t" /* _y */
-   
-   /* First sample */
-   "R1 = [P4++];\n\t"
-   "R1 <<= 3;\n\t" /* shift mem */
-   "R1.L = R1 (RND);\n\t"
-   "R2 = W[P0++];\n\t" /* load x[0] */
-   "R1.L = R1.L + R2.L;\n\t"
-   "W[P1++] = R1;\n\t" /* store y[0] */
-   "R2 = PACK(R1.L, R2.L);\n\t" /* pack x16 and y16 */
-   "[P2] = R2;\n\t"
-               
-   /* Samples 1 to ord-1 (using memory) */
-   "R0 += -1;\n\t"
-   "R3 = 0;\n\t"
-   "LC0 = R0;\n\t"
-   "LOOP filter_start%= LC0;\n\t"
-   "LOOP_BEGIN filter_start%=;\n\t"
-      "R3 += 1;\n\t"
-      "LC1 = R3;\n\t"
-      
-      "R1 = [P4++];\n\t"
-      "A1 = R1;\n\t"
-      "A0 = 0;\n\t"
-      "I0 = B0;\n\t"
-      "I2 = P2;\n\t"
-      "P2 += 4;\n\t"
-      "R4 = [I0++] || R5 = [I2--];\n\t"
-      "LOOP filter_start_inner%= LC1;\n\t"
-      "LOOP_BEGIN filter_start_inner%=;\n\t"
-         "A1 -= R4.H*R5.H, A0 += R4.L*R5.L (IS) || R4 = [I0++] || R5 = [I2--];\n\t"
-      "LOOP_END filter_start_inner%=;\n\t"
-      "A0 += A1;\n\t"
-      "R4 = A0;\n\t"
-      "R4 <<= 3;\n\t" /* shift mem */
-      "R4.L = R4 (RND);\n\t"
-      "R2 = W[P0++];\n\t" /* load x */
-      "R4.L = R4.L + R2.L;\n\t"
-      "W[P1++] = R4;\n\t" /* store y */
-      //"R4 <<= 2;\n\t"
-      //"R2 <<= 2;\n\t"
-      "R2 = PACK(R4.L, R2.L);\n\t" /* pack x16 and y16 */
-      "[P2] = R2;\n\t"
-
-   "LOOP_END filter_start%=;\n\t"
-
-   /* Samples ord to N*/   
-   "R0 = %5;\n\t"
-   "R0 <<= 1;\n\t"
-   "I0 = B0;\n\t" /* numden */
-   "R0 <<= 1;\n\t"   
-   "L0 = R0;\n\t"
-   
-   "R0 = %5;\n\t" /* org */
-   "R2 = %4;\n\t" /* N */
-   "R2 = R2 - R0;\n\t"
-   "R4 = [I0++];\n\t" /* numden */
-   "LC0 = R2;\n\t"
-   "P3 = R0;\n\t"
-   "R0 <<= 2;\n\t"
-   "R0 += 8;\n\t"
-   "I2 = P2;\n\t"
-   "M0 = R0;\n\t"
-   "A1 = A0 = 0;\n\t"
-   "R5 = [I2--];\n\t" /* load xy */
-   "LOOP filter_mid%= LC0;\n\t"
-   "LOOP_BEGIN filter_mid%=;\n\t"
-      "LOOP filter_mid_inner%= LC1=P3;\n\t"
-      "LOOP_BEGIN filter_mid_inner%=;\n\t"
-         "A1 -= R4.H*R5.H, A0 += R4.L*R5.L (IS) || R4 = [I0++] || R5 = [I2--];\n\t"
-      "LOOP_END filter_mid_inner%=;\n\t"
-      "R0 = (A0 += A1) || I2 += M0;\n\t"
-      "R0 = R0 << 3 || R5 = W[P0++];\n\t" /* load x */
-      "R0.L = R0 (RND);\n\t"
-      "R0.L = R0.L + R5.L;\n\t"
-      "R5 = PACK(R0.L, R5.L) || W[P1++] = R0;\n\t" /* shift y | store y */
-      "A1 = A0 = 0 || [I2--] = R5\n\t"
-      "LOOP_END filter_mid%=;\n\t"
-   "I2 += 4;\n\t"
-   "P2 = I2;\n\t"
-   /* Update memory */
-   "P4 = %6;\n\t"
-   "R0 = %5;\n\t"
-   "LC0 = R0;\n\t"
-   "P0 = B0;\n\t"
-   "A1 = A0 = 0;\n\t"
-   "LOOP mem_update%= LC0;\n\t"
-   "LOOP_BEGIN mem_update%=;\n\t"
-      "I2 = P2;\n\t"
-      "I0 = P0;\n\t"
-      "P0 += 4;\n\t"
-      "R0 = LC0;\n\t"
-      "LC1 = R0;\n\t"
-      "R5 = [I2--] || R4 = [I0++];\n\t"
-      "LOOP mem_accum%= LC1;\n\t"
-      "LOOP_BEGIN mem_accum%=;\n\t"
-         "A1 -= R4.H*R5.H, A0 += R4.L*R5.L (IS) || R4 = [I0++] || R5 = [I2--];\n\t"
-      "LOOP_END mem_accum%=;\n\t"
-      "R0 = (A0 += A1);\n\t"
-      "A1 = A0 = 0 || [P4++] = R0;\n\t"
-   "LOOP_END mem_update%=;\n\t"
-   "L0 = 0;\n\t"
-   : : "m" (xy), "m" (_x), "m" (_y), "m" (numden), "m" (N), "m" (ord), "m" (mem)
-   : "A0", "A1", "R0", "R1", "R2", "R3", "R4", "R5", "P0", "P1", "P2", "P3", "P4", "B0", "I0", "I2", "L0", "L2", "M0", "memory",
-     "ASTAT" BFIN_HWLOOP0_REGS BFIN_HWLOOP1_REGS
-   );
-
-}
-
-
-
-#define OVERRIDE_IIR_MEM16
-void iir_mem16(const spx_word16_t *_x, const spx_coef_t *den, spx_word16_t *_y, int N, int ord, spx_mem_t *mem, char *stack)
-{
-   VARDECL(spx_word16_t *y);
-   spx_word16_t *yy;
-
-   ALLOC(y, (N+2), spx_word16_t);
-   yy = y+2;
-
-   __asm__ __volatile__
-   (
-   /* Register setup */
-   "R0 = %5;\n\t"      /*ord */
-   
-   "P1 = %3;\n\t"
-   "I1 = P1;\n\t"
-   "B1 = P1;\n\t"
-   "L1 = 0;\n\t"
-   
-   "P3 = %0;\n\t"
-   "I3 = P3;\n\t"
-   "L3 = 0;\n\t"
-   
-   "P4 = %6;\n\t"
-   "P0 = %1;\n\t"
-   "P1 = %2;\n\t"
-   
-   /* First sample */
-   "R1 = [P4++];\n\t"
-   "R1 = R1 << 3 (S);\n\t"
-   "R1.L = R1 (RND);\n\t"
-   "R2 = W[P0++];\n\t"
-   "R1 = R1 + R2;\n\t"
-   "W[P1++] = R1;\n\t"
-   "W[P3] = R1;\n\t"
-
-   /* Samples 1 to ord-1 (using memory) */
-   "R0 += -1;\n\t"
-   "R3 = 0;\n\t"
-   "LC0 = R0;\n\t"
-   "LOOP filter_start%= LC0;\n\t"
-   "LOOP_BEGIN filter_start%=;\n\t"
-      "R3 += 1;\n\t"
-      "LC1 = R3;\n\t"
-      
-      "R1 = [P4++];\n\t"
-      "A1 = R1;\n\t"
-      "I1 = B1;\n\t"
-      "I3 = P3;\n\t"
-      "P3 += 2;\n\t"
-      "LOOP filter_start_inner%= LC1;\n\t"
-      "LOOP_BEGIN filter_start_inner%=;\n\t"
-         "R4.L = W[I1++];\n\t"
-         "R5.L = W[I3--];\n\t"
-         "A1 -= R4.L*R5.L (IS);\n\t"
-      "LOOP_END filter_start_inner%=;\n\t"
-   
-      "R1 = A1;\n\t"
-      "R1 <<= 3;\n\t"
-      "R1.L = R1 (RND);\n\t"
-      "R2 = W[P0++];\n\t"
-      "R1 = R1 + R2;\n\t"
-      "W[P1++] = R1;\n\t"
-      "W[P3] = R1;\n\t"
-   "LOOP_END filter_start%=;\n\t"
-
-   /* Samples ord to N*/   
-   "R0 = %5;\n\t"
-   "R0 <<= 1;\n\t"
-   "I1 = B1;\n\t"
-   "L1 = R0;\n\t"
-   
-   "R0 = %5;\n\t"
-   "R2 = %4;\n\t"
-   "R2 = R2 - R0;\n\t"
-   "R4.L = W[I1++];\n\t"
-   "LC0 = R2;\n\t"
-   "LOOP filter_mid%= LC0;\n\t"
-   "LOOP_BEGIN filter_mid%=;\n\t"
-      "LC1 = R0;\n\t"
-      "A1 = 0;\n\t"
-      "I3 = P3;\n\t"
-      "P3 += 2;\n\t"
-      "R5.L = W[I3--];\n\t"
-      "LOOP filter_mid_inner%= LC1;\n\t"
-      "LOOP_BEGIN filter_mid_inner%=;\n\t"
-         "A1 -= R4.L*R5.L (IS) || R4.L = W[I1++] || R5.L = W[I3--];\n\t"
-      "LOOP_END filter_mid_inner%=;\n\t"
-      "R1 = A1;\n\t"
-      "R1 = R1 << 3 || R2 = W[P0++];\n\t"
-      "R1.L = R1 (RND);\n\t"
-      "R1 = R1 + R2;\n\t"
-      "W[P1++] = R1;\n\t"
-      "W[P3] = R1;\n\t"
-   "LOOP_END filter_mid%=;\n\t"
-     
-   /* Update memory */
-   "P4 = %6;\n\t"
-   "R0 = %5;\n\t"
-   "LC0 = R0;\n\t"
-   "P1 = B1;\n\t"
-   "LOOP mem_update%= LC0;\n\t"
-   "LOOP_BEGIN mem_update%=;\n\t"
-      "A0 = 0;\n\t"
-      "I3 = P3;\n\t"
-      "I1 = P1;\n\t"
-      "P1 += 2;\n\t"
-      "R0 = LC0;\n\t"
-      "LC1=R0;\n\t"
-      "R5.L = W[I3--] || R4.L = W[I1++];\n\t"
-      "LOOP mem_accum%= LC1;\n\t"
-      "LOOP_BEGIN mem_accum%=;\n\t"
-         "A0 -= R4.L*R5.L (IS) || R4.L = W[I1++] || R5.L = W[I3--];\n\t"
-      "LOOP_END mem_accum%=;\n\t"
-      "R0 = A0;\n\t"
-      "[P4++] = R0;\n\t"
-   "LOOP_END mem_update%=;\n\t"
-   "L1 = 0;\n\t"
-   : : "m" (yy), "m" (_x), "m" (_y), "m" (den), "m" (N), "m" (ord), "m" (mem)
-   : "A0", "A1", "R0", "R1", "R2", "R3", "R4", "R5", "P0", "P1", "P2", "P3", "P4", "B1", "I1", "I3", "L1", "L3", "memory",
-     "ASTAT" BFIN_HWLOOP0_REGS BFIN_HWLOOP1_REGS
-   );
-
-}
-
-
-#define OVERRIDE_FIR_MEM16
-void fir_mem16(const spx_word16_t *x, const spx_coef_t *num, spx_word16_t *y, int N, int ord, spx_mem_t *mem, char *stack)
-{
-   int i;
-   spx_coef_t den2[12];
-   spx_coef_t *den;
-   den = (spx_coef_t*)((((int)den2)+4)&0xfffffffc);
-   for (i=0;i<10;i++)
-      den[i] = 0;
-   filter_mem16(x, num, den, y, N, ord, mem, stack);
-}
-
-
-#define OVERRIDE_COMPUTE_IMPULSE_RESPONSE
-void compute_impulse_response(const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack)
-{
-   int i;
-   VARDECL(spx_word16_t *ytmp);
-   ALLOC(ytmp, N, spx_word16_t);
-   spx_word16_t *ytmp2 = ytmp;
-   y[0] = LPC_SCALING;
-   for (i=0;i<ord;i++)
-      y[i+1] = awk1[i];
-   i++;
-   for (;i<N;i++)
-      y[i] = 0;
-
-   N-=1;
-   __asm__ __volatile__
-   (
-         "I0 = %0;\n\t"
-         "I1 = %1;\n\t"
-         "L0 = 0;\n\t"
-         "L1 = 0;\n\t"
-         "L2 = 0;\n\t"
-         "L3 = 0;\n\t"
-         "R0 = 1;\n\t"
-         "R0 <<= 13;\n\t"
-         "W[I0] = R0.L;\n\t"
-         "R0 <<= 1;\n\t"
-         "W[I1] = R0.L;\n\t"
-         "R0 = %5;\n\t"
-         "LC0 = R0;\n\t"
-         "R2 = 0;\n\t"
-         "LOOP samples%= LC0;\n\t"
-         "LOOP_BEGIN samples%=;\n\t"
-            "R2 += 1;\n\t"
-            "R2 = MIN(R2, %4);\n\t"
-            "I0 = %0;\n\t"
-            "I1 = %1;\n\t"
-            "I2 = %2;\n\t"
-            "I3 = %3;\n\t"
-            "%0 += 2;\n\t"
-            "%1 += 2;\n\t"
-            "A1 = A0 = 0;\n\t"
-            "R0.L = W[I0--] || R1.L = W[I2++];\n\t"
-            "LC1 = R2;\n\t"
-            "LOOP filter%= LC1;\n\t"
-            "LOOP_BEGIN filter%=;\n\t"
-               "A0 -= R0.L*R1.L (IS) || R0.L = W[I1--] || R1.L = W[I3++];\n\t"
-               "A1 -= R0.L*R1.L (IS) || R0.L = W[I0--] || R1.L = W[I2++];\n\t"
-            "LOOP_END filter%=;\n\t"
-            "R0 = A0, R1 = A1;\n\t"
-            "R3 = W[%1] (X);\n\t"
-            "R3 <<= 13;\n\t"
-            "R0 = R0 + R3;\n\t"
-            "R3 = R0 >>> 13;\n\t"
-            "W[%0] = R3.L;\n\t"
-            "R0 <<= 1;\n\t"
-            "R1 = R1 + R0;\n\t"
-            "R1 >>>= 13;\n\t"
-            "W[%1] = R1.L;\n\t"
-         "LOOP_END samples%=;\n\t"
-   : "=a" (ytmp2), "=a" (y)
-   : "a" (awk2), "a" (ak), "d" (ord), "m" (N), "0" (ytmp2), "1" (y)
-   : "A0", "A1", "R0", "R1", "R2", "R3", "I0", "I1", "I2", "I3", "L0", "L1", "L2", "L3",
-     "ASTAT" BFIN_HWLOOP0_REGS BFIN_HWLOOP1_REGS
-   );
-}
-
-
-
-#if 0 /* Equivalent C function for filter_mem2 and compute_impulse_response */
-#define min(a,b) ((a)<(b) ? (a):(b))
-
-void compute_impulse_response(const spx_coef_t *ak, const spx_coef_t *awk1, const spx_coef_t *awk2, spx_word16_t *y, int N, int ord, char *stack)
-{
-   int i,j;
-   VARDECL(spx_word16_t *ytmp);
-   ALLOC(ytmp, N, spx_word16_t);
-   
-   y[0] = LPC_SCALING;
-   for (i=0;i<ord;i++)
-      y[i+1] = awk1[i];
-   i++;
-   for (;i<N;i++)
-      y[i] = 0;
-
-   for (i=0;i<N;i++)
-   {
-      spx_word32_t yi = SHL32(EXTEND32(y[i]),LPC_SHIFT);
-      spx_word32_t yi2 = 0;
-      for (j=0;j<min(i,ord);j++)
-      {
-         yi = MAC16_16(yi, awk2[j], -ytmp[i-j-1]);
-         yi2 = MAC16_16(yi2, ak[j], -y[i-j-1]);
-      }
-      ytmp[i] = EXTRACT16(SHR32(yi,LPC_SHIFT));
-      yi2 = ADD32(yi2,SHL32(yi,1));
-      y[i] = EXTRACT16(SHR32(yi2,LPC_SHIFT));
-   }
-
-}
-
-
-void filter_mem2(const spx_sig_t *_x, const spx_coef_t *num, const spx_coef_t *den, spx_sig_t *_y, int N, int ord, spx_mem_t *mem)
-{
-   int i,j;
-   spx_word16_t xi,yi,nyi;
-   spx_word16_t x[N],y[N];
-   spx_word16_t *xx, *yy;
-   xx = x;
-   yy = y;
-   for (i=0;i<N;i++)
-   {
-      x[i] = EXTRACT16(SHR32(_x[i],SIG_SHIFT));
-   }
-   
-   for (i=0;i<ord;i++)
-   {
-      spx_word32_t yi = mem[i];
-      for (j=0;j<i;j++)
-      {
-         yi = MAC16_16(yi, num[j], x[i-j-1]);
-         yi = MAC16_16(yi, den[j], -y[i-j-1]);
-      }
-      _y[i] = ADD32(_x[i],SHL32(yi,1));
-      y[i] = EXTRACT16(SHR32(_y[i],SIG_SHIFT));
-   }
-   for (i=ord;i<N;i++)
-   {
-      spx_word32_t yi = 0;
-      for (j=0;j<ord;j++)
-      {
-         yi = MAC16_16(yi, num[j], x[i-j-1]);
-         yi = MAC16_16(yi, den[j], -y[i-j-1]);
-      }
-      _y[i] = ADD32(_x[i],SHL32(yi,1));
-      y[i] = EXTRACT16(SHR32(_y[i],SIG_SHIFT));
-   }
-
-   for (i=0;i<ord;i++)
-   {
-      spx_mem_t m = 0;
-      for (j=0;j<ord-i;j++)
-      {
-         m = MAC16_16(m, x[N-1-j], num[j+i]);
-         m = MAC16_16(m, -y[N-1-j], den[j+i]);
-      }
-      mem[i] = m;
-   }
-}
-#endif

+ 0 - 336
Engine/lib/speex/libspeex/filters_sse.h

@@ -1,336 +0,0 @@
-/* Copyright (C) 2002 Jean-Marc Valin */
-/**
-   @file filters_sse.h
-   @brief Various analysis/synthesis filters (SSE version)
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#include <xmmintrin.h>
-
-void filter_mem16_10(const float *x, const float *_num, const float *_den, float *y, int N, int ord, float *_mem)
-{
-   __m128 num[3], den[3], mem[3];
-
-   int i;
-
-   /* Copy numerator, denominator and memory to aligned xmm */
-   for (i=0;i<2;i++)
-   {
-      mem[i] = _mm_loadu_ps(_mem+4*i);
-      num[i] = _mm_loadu_ps(_num+4*i);
-      den[i] = _mm_loadu_ps(_den+4*i);
-   }
-   mem[2] = _mm_setr_ps(_mem[8], _mem[9], 0, 0);
-   num[2] = _mm_setr_ps(_num[8], _num[9], 0, 0);
-   den[2] = _mm_setr_ps(_den[8], _den[9], 0, 0);
-   
-   for (i=0;i<N;i++)
-   {
-      __m128 xx;
-      __m128 yy;
-      /* Compute next filter result */
-      xx = _mm_load_ps1(x+i);
-      yy = _mm_add_ss(xx, mem[0]);
-      _mm_store_ss(y+i, yy);
-      yy = _mm_shuffle_ps(yy, yy, 0);
-      
-      /* Update memory */
-      mem[0] = _mm_move_ss(mem[0], mem[1]);
-      mem[0] = _mm_shuffle_ps(mem[0], mem[0], 0x39);
-
-      mem[0] = _mm_add_ps(mem[0], _mm_mul_ps(xx, num[0]));
-      mem[0] = _mm_sub_ps(mem[0], _mm_mul_ps(yy, den[0]));
-
-      mem[1] = _mm_move_ss(mem[1], mem[2]);
-      mem[1] = _mm_shuffle_ps(mem[1], mem[1], 0x39);
-
-      mem[1] = _mm_add_ps(mem[1], _mm_mul_ps(xx, num[1]));
-      mem[1] = _mm_sub_ps(mem[1], _mm_mul_ps(yy, den[1]));
-
-      mem[2] = _mm_shuffle_ps(mem[2], mem[2], 0xfd);
-
-      mem[2] = _mm_add_ps(mem[2], _mm_mul_ps(xx, num[2]));
-      mem[2] = _mm_sub_ps(mem[2], _mm_mul_ps(yy, den[2]));
-   }
-   /* Put memory back in its place */
-   _mm_storeu_ps(_mem, mem[0]);
-   _mm_storeu_ps(_mem+4, mem[1]);
-   _mm_store_ss(_mem+8, mem[2]);
-   mem[2] = _mm_shuffle_ps(mem[2], mem[2], 0x55);
-   _mm_store_ss(_mem+9, mem[2]);
-}
-
-void filter_mem16_8(const float *x, const float *_num, const float *_den, float *y, int N, int ord, float *_mem)
-{
-   __m128 num[2], den[2], mem[2];
-
-   int i;
-
-   /* Copy numerator, denominator and memory to aligned xmm */
-   for (i=0;i<2;i++)
-   {
-      mem[i] = _mm_loadu_ps(_mem+4*i);
-      num[i] = _mm_loadu_ps(_num+4*i);
-      den[i] = _mm_loadu_ps(_den+4*i);
-   }
-   
-   for (i=0;i<N;i++)
-   {
-      __m128 xx;
-      __m128 yy;
-      /* Compute next filter result */
-      xx = _mm_load_ps1(x+i);
-      yy = _mm_add_ss(xx, mem[0]);
-      _mm_store_ss(y+i, yy);
-      yy = _mm_shuffle_ps(yy, yy, 0);
-      
-      /* Update memory */
-      mem[0] = _mm_move_ss(mem[0], mem[1]);
-      mem[0] = _mm_shuffle_ps(mem[0], mem[0], 0x39);
-
-      mem[0] = _mm_add_ps(mem[0], _mm_mul_ps(xx, num[0]));
-      mem[0] = _mm_sub_ps(mem[0], _mm_mul_ps(yy, den[0]));
-
-      mem[1] = _mm_sub_ss(mem[1], mem[1]);
-      mem[1] = _mm_shuffle_ps(mem[1], mem[1], 0x39);
-
-      mem[1] = _mm_add_ps(mem[1], _mm_mul_ps(xx, num[1]));
-      mem[1] = _mm_sub_ps(mem[1], _mm_mul_ps(yy, den[1]));
-   }
-   /* Put memory back in its place */
-   _mm_storeu_ps(_mem, mem[0]);
-   _mm_storeu_ps(_mem+4, mem[1]);
-}
-
-
-#define OVERRIDE_FILTER_MEM16
-void filter_mem16(const float *x, const float *_num, const float *_den, float *y, int N, int ord, float *_mem, char *stack)
-{
-   if(ord==10)
-      filter_mem16_10(x, _num, _den, y, N, ord, _mem);
-   else if (ord==8)
-      filter_mem16_8(x, _num, _den, y, N, ord, _mem);
-}
-
-
-
-void iir_mem16_10(const float *x, const float *_den, float *y, int N, int ord, float *_mem)
-{
-   __m128 den[3], mem[3];
-
-   int i;
-
-   /* Copy numerator, denominator and memory to aligned xmm */
-   for (i=0;i<2;i++)
-   {
-      mem[i] = _mm_loadu_ps(_mem+4*i);
-      den[i] = _mm_loadu_ps(_den+4*i);
-   }
-   mem[2] = _mm_setr_ps(_mem[8], _mem[9], 0, 0);
-   den[2] = _mm_setr_ps(_den[8], _den[9], 0, 0);
-   
-   for (i=0;i<N;i++)
-   {
-      __m128 xx;
-      __m128 yy;
-      /* Compute next filter result */
-      xx = _mm_load_ps1(x+i);
-      yy = _mm_add_ss(xx, mem[0]);
-      _mm_store_ss(y+i, yy);
-      yy = _mm_shuffle_ps(yy, yy, 0);
-      
-      /* Update memory */
-      mem[0] = _mm_move_ss(mem[0], mem[1]);
-      mem[0] = _mm_shuffle_ps(mem[0], mem[0], 0x39);
-
-      mem[0] = _mm_sub_ps(mem[0], _mm_mul_ps(yy, den[0]));
-
-      mem[1] = _mm_move_ss(mem[1], mem[2]);
-      mem[1] = _mm_shuffle_ps(mem[1], mem[1], 0x39);
-
-      mem[1] = _mm_sub_ps(mem[1], _mm_mul_ps(yy, den[1]));
-
-      mem[2] = _mm_shuffle_ps(mem[2], mem[2], 0xfd);
-
-      mem[2] = _mm_sub_ps(mem[2], _mm_mul_ps(yy, den[2]));
-   }
-   /* Put memory back in its place */
-   _mm_storeu_ps(_mem, mem[0]);
-   _mm_storeu_ps(_mem+4, mem[1]);
-   _mm_store_ss(_mem+8, mem[2]);
-   mem[2] = _mm_shuffle_ps(mem[2], mem[2], 0x55);
-   _mm_store_ss(_mem+9, mem[2]);
-}
-
-
-void iir_mem16_8(const float *x, const float *_den, float *y, int N, int ord, float *_mem)
-{
-   __m128 den[2], mem[2];
-
-   int i;
-
-   /* Copy numerator, denominator and memory to aligned xmm */
-   for (i=0;i<2;i++)
-   {
-      mem[i] = _mm_loadu_ps(_mem+4*i);
-      den[i] = _mm_loadu_ps(_den+4*i);
-   }
-   
-   for (i=0;i<N;i++)
-   {
-      __m128 xx;
-      __m128 yy;
-      /* Compute next filter result */
-      xx = _mm_load_ps1(x+i);
-      yy = _mm_add_ss(xx, mem[0]);
-      _mm_store_ss(y+i, yy);
-      yy = _mm_shuffle_ps(yy, yy, 0);
-      
-      /* Update memory */
-      mem[0] = _mm_move_ss(mem[0], mem[1]);
-      mem[0] = _mm_shuffle_ps(mem[0], mem[0], 0x39);
-
-      mem[0] = _mm_sub_ps(mem[0], _mm_mul_ps(yy, den[0]));
-
-      mem[1] = _mm_sub_ss(mem[1], mem[1]);
-      mem[1] = _mm_shuffle_ps(mem[1], mem[1], 0x39);
-
-      mem[1] = _mm_sub_ps(mem[1], _mm_mul_ps(yy, den[1]));
-   }
-   /* Put memory back in its place */
-   _mm_storeu_ps(_mem, mem[0]);
-   _mm_storeu_ps(_mem+4, mem[1]);
-}
-
-#define OVERRIDE_IIR_MEM16
-void iir_mem16(const float *x, const float *_den, float *y, int N, int ord, float *_mem, char *stack)
-{
-   if(ord==10)
-      iir_mem16_10(x, _den, y, N, ord, _mem);
-   else if (ord==8)
-      iir_mem16_8(x, _den, y, N, ord, _mem);
-}
-
-
-void fir_mem16_10(const float *x, const float *_num, float *y, int N, int ord, float *_mem)
-{
-   __m128 num[3], mem[3];
-
-   int i;
-
-   /* Copy numerator, denominator and memory to aligned xmm */
-   for (i=0;i<2;i++)
-   {
-      mem[i] = _mm_loadu_ps(_mem+4*i);
-      num[i] = _mm_loadu_ps(_num+4*i);
-   }
-   mem[2] = _mm_setr_ps(_mem[8], _mem[9], 0, 0);
-   num[2] = _mm_setr_ps(_num[8], _num[9], 0, 0);
-   
-   for (i=0;i<N;i++)
-   {
-      __m128 xx;
-      __m128 yy;
-      /* Compute next filter result */
-      xx = _mm_load_ps1(x+i);
-      yy = _mm_add_ss(xx, mem[0]);
-      _mm_store_ss(y+i, yy);
-      yy = _mm_shuffle_ps(yy, yy, 0);
-      
-      /* Update memory */
-      mem[0] = _mm_move_ss(mem[0], mem[1]);
-      mem[0] = _mm_shuffle_ps(mem[0], mem[0], 0x39);
-
-      mem[0] = _mm_add_ps(mem[0], _mm_mul_ps(xx, num[0]));
-
-      mem[1] = _mm_move_ss(mem[1], mem[2]);
-      mem[1] = _mm_shuffle_ps(mem[1], mem[1], 0x39);
-
-      mem[1] = _mm_add_ps(mem[1], _mm_mul_ps(xx, num[1]));
-
-      mem[2] = _mm_shuffle_ps(mem[2], mem[2], 0xfd);
-
-      mem[2] = _mm_add_ps(mem[2], _mm_mul_ps(xx, num[2]));
-   }
-   /* Put memory back in its place */
-   _mm_storeu_ps(_mem, mem[0]);
-   _mm_storeu_ps(_mem+4, mem[1]);
-   _mm_store_ss(_mem+8, mem[2]);
-   mem[2] = _mm_shuffle_ps(mem[2], mem[2], 0x55);
-   _mm_store_ss(_mem+9, mem[2]);
-}
-
-void fir_mem16_8(const float *x, const float *_num, float *y, int N, int ord, float *_mem)
-{
-   __m128 num[2], mem[2];
-
-   int i;
-
-   /* Copy numerator, denominator and memory to aligned xmm */
-   for (i=0;i<2;i++)
-   {
-      mem[i] = _mm_loadu_ps(_mem+4*i);
-      num[i] = _mm_loadu_ps(_num+4*i);
-   }
-   
-   for (i=0;i<N;i++)
-   {
-      __m128 xx;
-      __m128 yy;
-      /* Compute next filter result */
-      xx = _mm_load_ps1(x+i);
-      yy = _mm_add_ss(xx, mem[0]);
-      _mm_store_ss(y+i, yy);
-      yy = _mm_shuffle_ps(yy, yy, 0);
-      
-      /* Update memory */
-      mem[0] = _mm_move_ss(mem[0], mem[1]);
-      mem[0] = _mm_shuffle_ps(mem[0], mem[0], 0x39);
-
-      mem[0] = _mm_add_ps(mem[0], _mm_mul_ps(xx, num[0]));
-
-      mem[1] = _mm_sub_ss(mem[1], mem[1]);
-      mem[1] = _mm_shuffle_ps(mem[1], mem[1], 0x39);
-
-      mem[1] = _mm_add_ps(mem[1], _mm_mul_ps(xx, num[1]));
-   }
-   /* Put memory back in its place */
-   _mm_storeu_ps(_mem, mem[0]);
-   _mm_storeu_ps(_mem+4, mem[1]);
-}
-
-#define OVERRIDE_FIR_MEM16
-void fir_mem16(const float *x, const float *_num, float *y, int N, int ord, float *_mem, char *stack)
-{
-   if(ord==10)
-      fir_mem16_10(x, _num, y, N, ord, _mem);
-   else if (ord==8)
-      fir_mem16_8(x, _num, y, N, ord, _mem);
-}

+ 0 - 148
Engine/lib/speex/libspeex/fixed_arm4.h

@@ -1,148 +0,0 @@
-/* Copyright (C) 2004 Jean-Marc Valin */
-/**
-   @file fixed_arm4.h
-   @brief ARM4 fixed-point operations
-*/
-/*
-   Redistribution and use in source and binary forms, with or without
-   modification, are permitted provided that the following conditions
-   are met:
-   
-   - Redistributions of source code must retain the above copyright
-   notice, this list of conditions and the following disclaimer.
-   
-   - Redistributions in binary form must reproduce the above copyright
-   notice, this list of conditions and the following disclaimer in the
-   documentation and/or other materials provided with the distribution.
-   
-   - Neither the name of the Xiph.org Foundation nor the names of its
-   contributors may be used to endorse or promote products derived from
-   this software without specific prior written permission.
-   
-   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
-   ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
-   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
-   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
-   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
-   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
-   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
-   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
-   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
-   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-*/
-
-#ifndef FIXED_ARM4_H
-#define FIXED_ARM4_H
-
-#undef MULT16_32_Q14
-static inline spx_word32_t MULT16_32_Q14(spx_word16_t x, spx_word32_t y) {
-  int res;
-  int dummy;
-  asm (
-        "smull  %0,%1,%2,%3 \n\t"
-        "mov %0, %0, lsr #14 \n\t"
-        "add %0, %0, %1, lsl #18 \n\t"
-   : "=&r"(res), "=&r" (dummy)
-   : "r"(y),"r"((int)x));
-  return(res);
-}
-
-#undef MULT16_32_Q15
-static inline spx_word32_t MULT16_32_Q15(spx_word16_t x, spx_word32_t y) {
-  int res;
-  int dummy;
-  asm (
-        "smull  %0,%1,%2,%3 \n\t"
-        "mov %0, %0, lsr #15 \n\t"
-        "add %0, %0, %1, lsl #17 \n\t"
-   : "=&r"(res), "=&r" (dummy)
-   : "r"(y),"r"((int)x));
-  return(res);
-}
-
-#undef DIV32_16
-static inline short DIV32_16(int a, int b)
-{
-   int res=0;
-   int dead1, dead2, dead3, dead4, dead5;
-   __asm__ __volatile__ (
-         "\teor %5, %0, %1\n"
-         "\tmovs %4, %0\n"
-         "\trsbmi %0, %0, #0 \n"
-         "\tmovs %4, %1\n"
-         "\trsbmi %1, %1, #0 \n"
-         "\tmov %4, #1\n"
-
-         "\tsubs %3, %0, %1, asl #14 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #14 \n"
-
-         "\tsubs %3, %0, %1, asl #13 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #13 \n"
-
-         "\tsubs %3, %0, %1, asl #12 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #12 \n"
-
-         "\tsubs %3, %0, %1, asl #11 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #11 \n"
-
-         "\tsubs %3, %0, %1, asl #10 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #10 \n"
-
-         "\tsubs %3, %0, %1, asl #9 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #9 \n"
-
-         "\tsubs %3, %0, %1, asl #8 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #8 \n"
-
-         "\tsubs %3, %0, %1, asl #7 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #7 \n"
-
-         "\tsubs %3, %0, %1, asl #6 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #6 \n"
-         
-         "\tsubs %3, %0, %1, asl #5 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #5 \n"
-
-         "\tsubs %3, %0, %1, asl #4 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #4 \n"
-
-         "\tsubs %3, %0, %1, asl #3 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #3 \n"
-
-         "\tsubs %3, %0, %1, asl #2 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #2 \n"
-
-         "\tsubs %3, %0, %1, asl #1 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4, asl #1 \n"
-
-         "\tsubs %3, %0, %1 \n"
-         "\tmovpl %0, %3 \n"
-         "\torrpl %2, %2, %4 \n"
-
-         "\tmovs %5, %5, lsr #31 \n"
-         "\trsbne %2, %2, #0 \n"
-   : "=r" (dead1), "=r" (dead2), "=r" (res),
-   "=r" (dead3), "=r" (dead4), "=r" (dead5)
-   : "0" (a), "1" (b), "2" (res)
-   : "cc"
-                        );
-   return res;
-}
-
-
-#endif

Някои файлове не бяха показани, защото твърде много файлове са промени