alBuffer.c 70 KB

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  1. /**
  2. * OpenAL cross platform audio library
  3. * Copyright (C) 1999-2007 by authors.
  4. * This library is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Library General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2 of the License, or (at your option) any later version.
  8. *
  9. * This library is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * Library General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Library General Public
  15. * License along with this library; if not, write to the
  16. * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
  17. * Boston, MA 02111-1307, USA.
  18. * Or go to http://www.gnu.org/copyleft/lgpl.html
  19. */
  20. #include "config.h"
  21. #include <stdlib.h>
  22. #include <stdio.h>
  23. #include <assert.h>
  24. #include <limits.h>
  25. #include "alMain.h"
  26. #include "alu.h"
  27. #include "alError.h"
  28. #include "alBuffer.h"
  29. #include "alThunk.h"
  30. extern inline struct ALbuffer *LookupBuffer(ALCdevice *device, ALuint id);
  31. extern inline struct ALbuffer *RemoveBuffer(ALCdevice *device, ALuint id);
  32. extern inline ALuint FrameSizeFromUserFmt(enum UserFmtChannels chans, enum UserFmtType type);
  33. extern inline ALuint FrameSizeFromFmt(enum FmtChannels chans, enum FmtType type);
  34. static ALenum LoadData(ALbuffer *ALBuf, ALuint freq, ALenum NewFormat, ALsizei frames, enum UserFmtChannels chans, enum UserFmtType type, const ALvoid *data, ALboolean storesrc);
  35. static void ConvertData(ALvoid *dst, enum UserFmtType dstType, const ALvoid *src, enum UserFmtType srcType, ALsizei numchans, ALsizei len);
  36. static ALboolean IsValidType(ALenum type);
  37. static ALboolean IsValidChannels(ALenum channels);
  38. static ALboolean DecomposeUserFormat(ALenum format, enum UserFmtChannels *chans, enum UserFmtType *type);
  39. static ALboolean DecomposeFormat(ALenum format, enum FmtChannels *chans, enum FmtType *type);
  40. /*
  41. * Global Variables
  42. */
  43. /* IMA ADPCM Stepsize table */
  44. static const int IMAStep_size[89] = {
  45. 7, 8, 9, 10, 11, 12, 13, 14, 16, 17, 19,
  46. 21, 23, 25, 28, 31, 34, 37, 41, 45, 50, 55,
  47. 60, 66, 73, 80, 88, 97, 107, 118, 130, 143, 157,
  48. 173, 190, 209, 230, 253, 279, 307, 337, 371, 408, 449,
  49. 494, 544, 598, 658, 724, 796, 876, 963, 1060, 1166, 1282,
  50. 1411, 1552, 1707, 1878, 2066, 2272, 2499, 2749, 3024, 3327, 3660,
  51. 4026, 4428, 4871, 5358, 5894, 6484, 7132, 7845, 8630, 9493,10442,
  52. 11487,12635,13899,15289,16818,18500,20350,22358,24633,27086,29794,
  53. 32767
  54. };
  55. /* IMA4 ADPCM Codeword decode table */
  56. static const int IMA4Codeword[16] = {
  57. 1, 3, 5, 7, 9, 11, 13, 15,
  58. -1,-3,-5,-7,-9,-11,-13,-15,
  59. };
  60. /* IMA4 ADPCM Step index adjust decode table */
  61. static const int IMA4Index_adjust[16] = {
  62. -1,-1,-1,-1, 2, 4, 6, 8,
  63. -1,-1,-1,-1, 2, 4, 6, 8
  64. };
  65. /* A quick'n'dirty lookup table to decode a muLaw-encoded byte sample into a
  66. * signed 16-bit sample */
  67. static const ALshort muLawDecompressionTable[256] = {
  68. -32124,-31100,-30076,-29052,-28028,-27004,-25980,-24956,
  69. -23932,-22908,-21884,-20860,-19836,-18812,-17788,-16764,
  70. -15996,-15484,-14972,-14460,-13948,-13436,-12924,-12412,
  71. -11900,-11388,-10876,-10364, -9852, -9340, -8828, -8316,
  72. -7932, -7676, -7420, -7164, -6908, -6652, -6396, -6140,
  73. -5884, -5628, -5372, -5116, -4860, -4604, -4348, -4092,
  74. -3900, -3772, -3644, -3516, -3388, -3260, -3132, -3004,
  75. -2876, -2748, -2620, -2492, -2364, -2236, -2108, -1980,
  76. -1884, -1820, -1756, -1692, -1628, -1564, -1500, -1436,
  77. -1372, -1308, -1244, -1180, -1116, -1052, -988, -924,
  78. -876, -844, -812, -780, -748, -716, -684, -652,
  79. -620, -588, -556, -524, -492, -460, -428, -396,
  80. -372, -356, -340, -324, -308, -292, -276, -260,
  81. -244, -228, -212, -196, -180, -164, -148, -132,
  82. -120, -112, -104, -96, -88, -80, -72, -64,
  83. -56, -48, -40, -32, -24, -16, -8, 0,
  84. 32124, 31100, 30076, 29052, 28028, 27004, 25980, 24956,
  85. 23932, 22908, 21884, 20860, 19836, 18812, 17788, 16764,
  86. 15996, 15484, 14972, 14460, 13948, 13436, 12924, 12412,
  87. 11900, 11388, 10876, 10364, 9852, 9340, 8828, 8316,
  88. 7932, 7676, 7420, 7164, 6908, 6652, 6396, 6140,
  89. 5884, 5628, 5372, 5116, 4860, 4604, 4348, 4092,
  90. 3900, 3772, 3644, 3516, 3388, 3260, 3132, 3004,
  91. 2876, 2748, 2620, 2492, 2364, 2236, 2108, 1980,
  92. 1884, 1820, 1756, 1692, 1628, 1564, 1500, 1436,
  93. 1372, 1308, 1244, 1180, 1116, 1052, 988, 924,
  94. 876, 844, 812, 780, 748, 716, 684, 652,
  95. 620, 588, 556, 524, 492, 460, 428, 396,
  96. 372, 356, 340, 324, 308, 292, 276, 260,
  97. 244, 228, 212, 196, 180, 164, 148, 132,
  98. 120, 112, 104, 96, 88, 80, 72, 64,
  99. 56, 48, 40, 32, 24, 16, 8, 0
  100. };
  101. /* Values used when encoding a muLaw sample */
  102. static const int muLawBias = 0x84;
  103. static const int muLawClip = 32635;
  104. static const char muLawCompressTable[256] = {
  105. 0,0,1,1,2,2,2,2,3,3,3,3,3,3,3,3,
  106. 4,4,4,4,4,4,4,4,4,4,4,4,4,4,4,4,
  107. 5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,
  108. 5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,
  109. 6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
  110. 6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
  111. 6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
  112. 6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
  113. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  114. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  115. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  116. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  117. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  118. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  119. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  120. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7
  121. };
  122. /* A quick'n'dirty lookup table to decode an aLaw-encoded byte sample into a
  123. * signed 16-bit sample */
  124. static const ALshort aLawDecompressionTable[256] = {
  125. -5504, -5248, -6016, -5760, -4480, -4224, -4992, -4736,
  126. -7552, -7296, -8064, -7808, -6528, -6272, -7040, -6784,
  127. -2752, -2624, -3008, -2880, -2240, -2112, -2496, -2368,
  128. -3776, -3648, -4032, -3904, -3264, -3136, -3520, -3392,
  129. -22016,-20992,-24064,-23040,-17920,-16896,-19968,-18944,
  130. -30208,-29184,-32256,-31232,-26112,-25088,-28160,-27136,
  131. -11008,-10496,-12032,-11520, -8960, -8448, -9984, -9472,
  132. -15104,-14592,-16128,-15616,-13056,-12544,-14080,-13568,
  133. -344, -328, -376, -360, -280, -264, -312, -296,
  134. -472, -456, -504, -488, -408, -392, -440, -424,
  135. -88, -72, -120, -104, -24, -8, -56, -40,
  136. -216, -200, -248, -232, -152, -136, -184, -168,
  137. -1376, -1312, -1504, -1440, -1120, -1056, -1248, -1184,
  138. -1888, -1824, -2016, -1952, -1632, -1568, -1760, -1696,
  139. -688, -656, -752, -720, -560, -528, -624, -592,
  140. -944, -912, -1008, -976, -816, -784, -880, -848,
  141. 5504, 5248, 6016, 5760, 4480, 4224, 4992, 4736,
  142. 7552, 7296, 8064, 7808, 6528, 6272, 7040, 6784,
  143. 2752, 2624, 3008, 2880, 2240, 2112, 2496, 2368,
  144. 3776, 3648, 4032, 3904, 3264, 3136, 3520, 3392,
  145. 22016, 20992, 24064, 23040, 17920, 16896, 19968, 18944,
  146. 30208, 29184, 32256, 31232, 26112, 25088, 28160, 27136,
  147. 11008, 10496, 12032, 11520, 8960, 8448, 9984, 9472,
  148. 15104, 14592, 16128, 15616, 13056, 12544, 14080, 13568,
  149. 344, 328, 376, 360, 280, 264, 312, 296,
  150. 472, 456, 504, 488, 408, 392, 440, 424,
  151. 88, 72, 120, 104, 24, 8, 56, 40,
  152. 216, 200, 248, 232, 152, 136, 184, 168,
  153. 1376, 1312, 1504, 1440, 1120, 1056, 1248, 1184,
  154. 1888, 1824, 2016, 1952, 1632, 1568, 1760, 1696,
  155. 688, 656, 752, 720, 560, 528, 624, 592,
  156. 944, 912, 1008, 976, 816, 784, 880, 848
  157. };
  158. /* Values used when encoding an aLaw sample */
  159. static const int aLawClip = 32635;
  160. static const char aLawCompressTable[128] = {
  161. 1,1,2,2,3,3,3,3,4,4,4,4,4,4,4,4,
  162. 5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,
  163. 6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
  164. 6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
  165. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  166. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  167. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
  168. 7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7
  169. };
  170. AL_API ALvoid AL_APIENTRY alGenBuffers(ALsizei n, ALuint *buffers)
  171. {
  172. ALCdevice *device;
  173. ALCcontext *context;
  174. ALsizei cur = 0;
  175. ALenum err;
  176. context = GetContextRef();
  177. if(!context) return;
  178. if(!(n >= 0))
  179. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  180. device = context->Device;
  181. for(cur = 0;cur < n;cur++)
  182. {
  183. ALbuffer *buffer = calloc(1, sizeof(ALbuffer));
  184. if(!buffer)
  185. {
  186. alDeleteBuffers(cur, buffers);
  187. SET_ERROR_AND_GOTO(context, AL_OUT_OF_MEMORY, done);
  188. }
  189. RWLockInit(&buffer->lock);
  190. err = NewThunkEntry(&buffer->id);
  191. if(err == AL_NO_ERROR)
  192. err = InsertUIntMapEntry(&device->BufferMap, buffer->id, buffer);
  193. if(err != AL_NO_ERROR)
  194. {
  195. FreeThunkEntry(buffer->id);
  196. memset(buffer, 0, sizeof(ALbuffer));
  197. free(buffer);
  198. alDeleteBuffers(cur, buffers);
  199. SET_ERROR_AND_GOTO(context, err, done);
  200. }
  201. buffers[cur] = buffer->id;
  202. }
  203. done:
  204. ALCcontext_DecRef(context);
  205. }
  206. AL_API ALvoid AL_APIENTRY alDeleteBuffers(ALsizei n, const ALuint *buffers)
  207. {
  208. ALCdevice *device;
  209. ALCcontext *context;
  210. ALbuffer *ALBuf;
  211. ALsizei i;
  212. context = GetContextRef();
  213. if(!context) return;
  214. if(!(n >= 0))
  215. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  216. device = context->Device;
  217. for(i = 0;i < n;i++)
  218. {
  219. if(!buffers[i])
  220. continue;
  221. /* Check for valid Buffer ID */
  222. if((ALBuf=LookupBuffer(device, buffers[i])) == NULL)
  223. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  224. if(ALBuf->ref != 0)
  225. SET_ERROR_AND_GOTO(context, AL_INVALID_OPERATION, done);
  226. }
  227. for(i = 0;i < n;i++)
  228. {
  229. if((ALBuf=RemoveBuffer(device, buffers[i])) == NULL)
  230. continue;
  231. FreeThunkEntry(ALBuf->id);
  232. free(ALBuf->data);
  233. memset(ALBuf, 0, sizeof(*ALBuf));
  234. free(ALBuf);
  235. }
  236. done:
  237. ALCcontext_DecRef(context);
  238. }
  239. AL_API ALboolean AL_APIENTRY alIsBuffer(ALuint buffer)
  240. {
  241. ALCcontext *context;
  242. ALboolean ret;
  243. context = GetContextRef();
  244. if(!context) return AL_FALSE;
  245. ret = ((!buffer || LookupBuffer(context->Device, buffer)) ?
  246. AL_TRUE : AL_FALSE);
  247. ALCcontext_DecRef(context);
  248. return ret;
  249. }
  250. AL_API ALvoid AL_APIENTRY alBufferData(ALuint buffer, ALenum format, const ALvoid *data, ALsizei size, ALsizei freq)
  251. {
  252. enum UserFmtChannels srcchannels;
  253. enum UserFmtType srctype;
  254. ALCdevice *device;
  255. ALCcontext *context;
  256. ALuint framesize;
  257. ALenum newformat;
  258. ALbuffer *albuf;
  259. ALenum err;
  260. context = GetContextRef();
  261. if(!context) return;
  262. device = context->Device;
  263. if((albuf=LookupBuffer(device, buffer)) == NULL)
  264. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  265. if(!(size >= 0 && freq > 0))
  266. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  267. if(DecomposeUserFormat(format, &srcchannels, &srctype) == AL_FALSE)
  268. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  269. switch(srctype)
  270. {
  271. case UserFmtByte:
  272. case UserFmtUByte:
  273. case UserFmtShort:
  274. case UserFmtUShort:
  275. case UserFmtFloat:
  276. framesize = FrameSizeFromUserFmt(srcchannels, srctype);
  277. if(!((size%framesize) == 0))
  278. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  279. err = LoadData(albuf, freq, format, size/framesize,
  280. srcchannels, srctype, data, AL_TRUE);
  281. if(err != AL_NO_ERROR)
  282. SET_ERROR_AND_GOTO(context, err, done);
  283. break;
  284. case UserFmtInt:
  285. case UserFmtUInt:
  286. case UserFmtByte3:
  287. case UserFmtUByte3:
  288. case UserFmtDouble:
  289. framesize = FrameSizeFromUserFmt(srcchannels, srctype);
  290. if(!((size%framesize) == 0))
  291. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  292. newformat = AL_FORMAT_MONO_FLOAT32;
  293. switch(srcchannels)
  294. {
  295. case UserFmtMono: newformat = AL_FORMAT_MONO_FLOAT32; break;
  296. case UserFmtStereo: newformat = AL_FORMAT_STEREO_FLOAT32; break;
  297. case UserFmtRear: newformat = AL_FORMAT_REAR32; break;
  298. case UserFmtQuad: newformat = AL_FORMAT_QUAD32; break;
  299. case UserFmtX51: newformat = AL_FORMAT_51CHN32; break;
  300. case UserFmtX61: newformat = AL_FORMAT_61CHN32; break;
  301. case UserFmtX71: newformat = AL_FORMAT_71CHN32; break;
  302. }
  303. err = LoadData(albuf, freq, newformat, size/framesize,
  304. srcchannels, srctype, data, AL_TRUE);
  305. if(err != AL_NO_ERROR)
  306. SET_ERROR_AND_GOTO(context, err, done);
  307. break;
  308. case UserFmtMulaw:
  309. case UserFmtAlaw:
  310. framesize = FrameSizeFromUserFmt(srcchannels, srctype);
  311. if(!((size%framesize) == 0))
  312. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  313. newformat = AL_FORMAT_MONO16;
  314. switch(srcchannels)
  315. {
  316. case UserFmtMono: newformat = AL_FORMAT_MONO16; break;
  317. case UserFmtStereo: newformat = AL_FORMAT_STEREO16; break;
  318. case UserFmtRear: newformat = AL_FORMAT_REAR16; break;
  319. case UserFmtQuad: newformat = AL_FORMAT_QUAD16; break;
  320. case UserFmtX51: newformat = AL_FORMAT_51CHN16; break;
  321. case UserFmtX61: newformat = AL_FORMAT_61CHN16; break;
  322. case UserFmtX71: newformat = AL_FORMAT_71CHN16; break;
  323. }
  324. err = LoadData(albuf, freq, newformat, size/framesize,
  325. srcchannels, srctype, data, AL_TRUE);
  326. if(err != AL_NO_ERROR)
  327. SET_ERROR_AND_GOTO(context, err, done);
  328. break;
  329. case UserFmtIMA4:
  330. /* Here is where things vary:
  331. * nVidia and Apple use 64+1 sample frames per block -> block_size=36 bytes per channel
  332. * Most PC sound software uses 2040+1 sample frames per block -> block_size=1024 bytes per channel
  333. */
  334. framesize = ChannelsFromUserFmt(srcchannels) * 36;
  335. if(!((size%framesize) == 0))
  336. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  337. newformat = AL_FORMAT_MONO16;
  338. switch(srcchannels)
  339. {
  340. case UserFmtMono: newformat = AL_FORMAT_MONO16; break;
  341. case UserFmtStereo: newformat = AL_FORMAT_STEREO16; break;
  342. case UserFmtRear: newformat = AL_FORMAT_REAR16; break;
  343. case UserFmtQuad: newformat = AL_FORMAT_QUAD16; break;
  344. case UserFmtX51: newformat = AL_FORMAT_51CHN16; break;
  345. case UserFmtX61: newformat = AL_FORMAT_61CHN16; break;
  346. case UserFmtX71: newformat = AL_FORMAT_71CHN16; break;
  347. }
  348. err = LoadData(albuf, freq, newformat, size/framesize*65,
  349. srcchannels, srctype, data, AL_TRUE);
  350. if(err != AL_NO_ERROR)
  351. SET_ERROR_AND_GOTO(context, err, done);
  352. break;
  353. }
  354. done:
  355. ALCcontext_DecRef(context);
  356. }
  357. AL_API ALvoid AL_APIENTRY alBufferSubDataSOFT(ALuint buffer, ALenum format, const ALvoid *data, ALsizei offset, ALsizei length)
  358. {
  359. enum UserFmtChannels srcchannels;
  360. enum UserFmtType srctype;
  361. ALCdevice *device;
  362. ALCcontext *context;
  363. ALbuffer *albuf;
  364. ALuint original_align;
  365. ALuint channels;
  366. ALuint bytes;
  367. context = GetContextRef();
  368. if(!context) return;
  369. device = context->Device;
  370. if((albuf=LookupBuffer(device, buffer)) == NULL)
  371. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  372. if(!(length >= 0 && offset >= 0))
  373. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  374. if(DecomposeUserFormat(format, &srcchannels, &srctype) == AL_FALSE)
  375. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  376. WriteLock(&albuf->lock);
  377. original_align = ((albuf->OriginalType == UserFmtIMA4) ?
  378. (ChannelsFromUserFmt(albuf->OriginalChannels)*36) :
  379. FrameSizeFromUserFmt(albuf->OriginalChannels,
  380. albuf->OriginalType));
  381. if(srcchannels != albuf->OriginalChannels || srctype != albuf->OriginalType)
  382. {
  383. WriteUnlock(&albuf->lock);
  384. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  385. }
  386. if(offset > albuf->OriginalSize || length > albuf->OriginalSize-offset ||
  387. (offset%original_align) != 0 || (length%original_align) != 0)
  388. {
  389. WriteUnlock(&albuf->lock);
  390. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  391. }
  392. channels = ChannelsFromFmt(albuf->FmtChannels);
  393. bytes = BytesFromFmt(albuf->FmtType);
  394. /* offset -> byte offset, length -> sample count */
  395. if(srctype == UserFmtIMA4)
  396. {
  397. offset = offset/36*65 * bytes;
  398. length = length/original_align * 65;
  399. }
  400. else
  401. {
  402. ALuint OldBytes = BytesFromUserFmt(srctype);
  403. offset = offset/OldBytes * bytes;
  404. length = length/OldBytes/channels;
  405. }
  406. ConvertData((char*)albuf->data+offset, (enum UserFmtType)albuf->FmtType,
  407. data, srctype, channels, length);
  408. WriteUnlock(&albuf->lock);
  409. done:
  410. ALCcontext_DecRef(context);
  411. }
  412. AL_API void AL_APIENTRY alBufferSamplesSOFT(ALuint buffer,
  413. ALuint samplerate, ALenum internalformat, ALsizei samples,
  414. ALenum channels, ALenum type, const ALvoid *data)
  415. {
  416. ALCdevice *device;
  417. ALCcontext *context;
  418. ALbuffer *albuf;
  419. ALenum err;
  420. context = GetContextRef();
  421. if(!context) return;
  422. device = context->Device;
  423. if((albuf=LookupBuffer(device, buffer)) == NULL)
  424. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  425. if(!(samples >= 0 && samplerate != 0))
  426. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  427. if(IsValidType(type) == AL_FALSE || IsValidChannels(channels) == AL_FALSE)
  428. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  429. err = LoadData(albuf, samplerate, internalformat, samples,
  430. channels, type, data, AL_FALSE);
  431. if(err != AL_NO_ERROR)
  432. SET_ERROR_AND_GOTO(context, err, done);
  433. done:
  434. ALCcontext_DecRef(context);
  435. }
  436. AL_API void AL_APIENTRY alBufferSubSamplesSOFT(ALuint buffer,
  437. ALsizei offset, ALsizei samples,
  438. ALenum channels, ALenum type, const ALvoid *data)
  439. {
  440. ALCdevice *device;
  441. ALCcontext *context;
  442. ALuint framesize;
  443. ALbuffer *albuf;
  444. context = GetContextRef();
  445. if(!context) return;
  446. device = context->Device;
  447. if((albuf=LookupBuffer(device, buffer)) == NULL)
  448. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  449. if(!(samples >= 0 && offset >= 0))
  450. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  451. if(IsValidType(type) == AL_FALSE)
  452. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  453. WriteLock(&albuf->lock);
  454. framesize = FrameSizeFromFmt(albuf->FmtChannels, albuf->FmtType);
  455. if(channels != (ALenum)albuf->FmtChannels)
  456. {
  457. WriteUnlock(&albuf->lock);
  458. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  459. }
  460. else if(offset > albuf->SampleLen || samples > albuf->SampleLen-offset)
  461. {
  462. WriteUnlock(&albuf->lock);
  463. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  464. }
  465. /* offset -> byte offset */
  466. offset *= framesize;
  467. ConvertData((char*)albuf->data+offset, (enum UserFmtType)albuf->FmtType,
  468. data, type, ChannelsFromFmt(albuf->FmtChannels), samples);
  469. WriteUnlock(&albuf->lock);
  470. done:
  471. ALCcontext_DecRef(context);
  472. }
  473. AL_API void AL_APIENTRY alGetBufferSamplesSOFT(ALuint buffer,
  474. ALsizei offset, ALsizei samples,
  475. ALenum channels, ALenum type, ALvoid *data)
  476. {
  477. ALCdevice *device;
  478. ALCcontext *context;
  479. ALuint framesize;
  480. ALbuffer *albuf;
  481. context = GetContextRef();
  482. if(!context) return;
  483. device = context->Device;
  484. if((albuf=LookupBuffer(device, buffer)) == NULL)
  485. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  486. if(!(samples >= 0 && offset >= 0))
  487. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  488. if(IsValidType(type) == AL_FALSE)
  489. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  490. ReadLock(&albuf->lock);
  491. framesize = FrameSizeFromFmt(albuf->FmtChannels, albuf->FmtType);
  492. if(channels != (ALenum)albuf->FmtChannels)
  493. {
  494. ReadUnlock(&albuf->lock);
  495. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  496. }
  497. if(offset > albuf->SampleLen || samples > albuf->SampleLen-offset)
  498. {
  499. ReadUnlock(&albuf->lock);
  500. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  501. }
  502. if(type == UserFmtIMA4 && (samples%65) != 0)
  503. {
  504. ReadUnlock(&albuf->lock);
  505. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  506. }
  507. /* offset -> byte offset */
  508. offset *= framesize;
  509. ConvertData(data, type, (char*)albuf->data+offset, (enum UserFmtType)albuf->FmtType,
  510. ChannelsFromFmt(albuf->FmtChannels), samples);
  511. ReadUnlock(&albuf->lock);
  512. done:
  513. ALCcontext_DecRef(context);
  514. }
  515. AL_API ALboolean AL_APIENTRY alIsBufferFormatSupportedSOFT(ALenum format)
  516. {
  517. enum FmtChannels dstchannels;
  518. enum FmtType dsttype;
  519. ALCcontext *context;
  520. ALboolean ret;
  521. context = GetContextRef();
  522. if(!context) return AL_FALSE;
  523. ret = DecomposeFormat(format, &dstchannels, &dsttype);
  524. ALCcontext_DecRef(context);
  525. return ret;
  526. }
  527. AL_API void AL_APIENTRY alBufferf(ALuint buffer, ALenum param, ALfloat UNUSED(value))
  528. {
  529. ALCdevice *device;
  530. ALCcontext *context;
  531. context = GetContextRef();
  532. if(!context) return;
  533. device = context->Device;
  534. if(LookupBuffer(device, buffer) == NULL)
  535. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  536. switch(param)
  537. {
  538. default:
  539. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  540. }
  541. done:
  542. ALCcontext_DecRef(context);
  543. }
  544. AL_API void AL_APIENTRY alBuffer3f(ALuint buffer, ALenum param, ALfloat UNUSED(value1), ALfloat UNUSED(value2), ALfloat UNUSED(value3))
  545. {
  546. ALCdevice *device;
  547. ALCcontext *context;
  548. context = GetContextRef();
  549. if(!context) return;
  550. device = context->Device;
  551. if(LookupBuffer(device, buffer) == NULL)
  552. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  553. switch(param)
  554. {
  555. default:
  556. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  557. }
  558. done:
  559. ALCcontext_DecRef(context);
  560. }
  561. AL_API void AL_APIENTRY alBufferfv(ALuint buffer, ALenum param, const ALfloat *values)
  562. {
  563. ALCdevice *device;
  564. ALCcontext *context;
  565. context = GetContextRef();
  566. if(!context) return;
  567. device = context->Device;
  568. if(LookupBuffer(device, buffer) == NULL)
  569. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  570. if(!(values))
  571. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  572. switch(param)
  573. {
  574. default:
  575. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  576. }
  577. done:
  578. ALCcontext_DecRef(context);
  579. }
  580. AL_API void AL_APIENTRY alBufferi(ALuint buffer, ALenum param, ALint UNUSED(value))
  581. {
  582. ALCdevice *device;
  583. ALCcontext *context;
  584. context = GetContextRef();
  585. if(!context) return;
  586. device = context->Device;
  587. if(LookupBuffer(device, buffer) == NULL)
  588. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  589. switch(param)
  590. {
  591. default:
  592. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  593. }
  594. done:
  595. ALCcontext_DecRef(context);
  596. }
  597. AL_API void AL_APIENTRY alBuffer3i(ALuint buffer, ALenum param, ALint UNUSED(value1), ALint UNUSED(value2), ALint UNUSED(value3))
  598. {
  599. ALCdevice *device;
  600. ALCcontext *context;
  601. context = GetContextRef();
  602. if(!context) return;
  603. device = context->Device;
  604. if(LookupBuffer(device, buffer) == NULL)
  605. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  606. switch(param)
  607. {
  608. default:
  609. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  610. }
  611. done:
  612. ALCcontext_DecRef(context);
  613. }
  614. AL_API void AL_APIENTRY alBufferiv(ALuint buffer, ALenum param, const ALint *values)
  615. {
  616. ALCdevice *device;
  617. ALCcontext *context;
  618. ALbuffer *albuf;
  619. context = GetContextRef();
  620. if(!context) return;
  621. device = context->Device;
  622. if((albuf=LookupBuffer(device, buffer)) == NULL)
  623. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  624. if(!(values))
  625. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  626. switch(param)
  627. {
  628. case AL_LOOP_POINTS_SOFT:
  629. WriteLock(&albuf->lock);
  630. if(albuf->ref != 0)
  631. {
  632. WriteUnlock(&albuf->lock);
  633. SET_ERROR_AND_GOTO(context, AL_INVALID_OPERATION, done);
  634. }
  635. if(values[0] >= values[1] || values[0] < 0 ||
  636. values[1] > albuf->SampleLen)
  637. {
  638. WriteUnlock(&albuf->lock);
  639. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  640. }
  641. albuf->LoopStart = values[0];
  642. albuf->LoopEnd = values[1];
  643. WriteUnlock(&albuf->lock);
  644. break;
  645. default:
  646. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  647. }
  648. done:
  649. ALCcontext_DecRef(context);
  650. }
  651. AL_API ALvoid AL_APIENTRY alGetBufferf(ALuint buffer, ALenum param, ALfloat *value)
  652. {
  653. ALCdevice *device;
  654. ALCcontext *context;
  655. ALbuffer *albuf;
  656. context = GetContextRef();
  657. if(!context) return;
  658. device = context->Device;
  659. if((albuf=LookupBuffer(device, buffer)) == NULL)
  660. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  661. if(!(value))
  662. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  663. switch(param)
  664. {
  665. case AL_SEC_LENGTH_SOFT:
  666. ReadLock(&albuf->lock);
  667. if(albuf->SampleLen != 0)
  668. *value = albuf->SampleLen / (ALfloat)albuf->Frequency;
  669. else
  670. *value = 0.0f;
  671. ReadUnlock(&albuf->lock);
  672. break;
  673. default:
  674. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  675. }
  676. done:
  677. ALCcontext_DecRef(context);
  678. }
  679. AL_API void AL_APIENTRY alGetBuffer3f(ALuint buffer, ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3)
  680. {
  681. ALCdevice *device;
  682. ALCcontext *context;
  683. context = GetContextRef();
  684. if(!context) return;
  685. device = context->Device;
  686. if(LookupBuffer(device, buffer) == NULL)
  687. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  688. if(!(value1 && value2 && value3))
  689. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  690. switch(param)
  691. {
  692. default:
  693. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  694. }
  695. done:
  696. ALCcontext_DecRef(context);
  697. }
  698. AL_API void AL_APIENTRY alGetBufferfv(ALuint buffer, ALenum param, ALfloat *values)
  699. {
  700. ALCdevice *device;
  701. ALCcontext *context;
  702. switch(param)
  703. {
  704. case AL_SEC_LENGTH_SOFT:
  705. alGetBufferf(buffer, param, values);
  706. return;
  707. }
  708. context = GetContextRef();
  709. if(!context) return;
  710. device = context->Device;
  711. if(LookupBuffer(device, buffer) == NULL)
  712. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  713. if(!(values))
  714. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  715. switch(param)
  716. {
  717. default:
  718. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  719. }
  720. done:
  721. ALCcontext_DecRef(context);
  722. }
  723. AL_API ALvoid AL_APIENTRY alGetBufferi(ALuint buffer, ALenum param, ALint *value)
  724. {
  725. ALCdevice *device;
  726. ALCcontext *context;
  727. ALbuffer *albuf;
  728. context = GetContextRef();
  729. if(!context) return;
  730. device = context->Device;
  731. if((albuf=LookupBuffer(device, buffer)) == NULL)
  732. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  733. if(!(value))
  734. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  735. switch(param)
  736. {
  737. case AL_FREQUENCY:
  738. *value = albuf->Frequency;
  739. break;
  740. case AL_BITS:
  741. *value = BytesFromFmt(albuf->FmtType) * 8;
  742. break;
  743. case AL_CHANNELS:
  744. *value = ChannelsFromFmt(albuf->FmtChannels);
  745. break;
  746. case AL_SIZE:
  747. ReadLock(&albuf->lock);
  748. *value = albuf->SampleLen * FrameSizeFromFmt(albuf->FmtChannels,
  749. albuf->FmtType);
  750. ReadUnlock(&albuf->lock);
  751. break;
  752. case AL_INTERNAL_FORMAT_SOFT:
  753. *value = albuf->Format;
  754. break;
  755. case AL_BYTE_LENGTH_SOFT:
  756. *value = albuf->OriginalSize;
  757. break;
  758. case AL_SAMPLE_LENGTH_SOFT:
  759. *value = albuf->SampleLen;
  760. break;
  761. default:
  762. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  763. }
  764. done:
  765. ALCcontext_DecRef(context);
  766. }
  767. AL_API void AL_APIENTRY alGetBuffer3i(ALuint buffer, ALenum param, ALint *value1, ALint *value2, ALint *value3)
  768. {
  769. ALCdevice *device;
  770. ALCcontext *context;
  771. context = GetContextRef();
  772. if(!context) return;
  773. device = context->Device;
  774. if(LookupBuffer(device, buffer) == NULL)
  775. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  776. if(!(value1 && value2 && value3))
  777. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  778. switch(param)
  779. {
  780. default:
  781. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  782. }
  783. done:
  784. ALCcontext_DecRef(context);
  785. }
  786. AL_API void AL_APIENTRY alGetBufferiv(ALuint buffer, ALenum param, ALint *values)
  787. {
  788. ALCdevice *device;
  789. ALCcontext *context;
  790. ALbuffer *albuf;
  791. switch(param)
  792. {
  793. case AL_FREQUENCY:
  794. case AL_BITS:
  795. case AL_CHANNELS:
  796. case AL_SIZE:
  797. case AL_INTERNAL_FORMAT_SOFT:
  798. case AL_BYTE_LENGTH_SOFT:
  799. case AL_SAMPLE_LENGTH_SOFT:
  800. alGetBufferi(buffer, param, values);
  801. return;
  802. }
  803. context = GetContextRef();
  804. if(!context) return;
  805. device = context->Device;
  806. if((albuf=LookupBuffer(device, buffer)) == NULL)
  807. SET_ERROR_AND_GOTO(context, AL_INVALID_NAME, done);
  808. if(!(values))
  809. SET_ERROR_AND_GOTO(context, AL_INVALID_VALUE, done);
  810. switch(param)
  811. {
  812. case AL_LOOP_POINTS_SOFT:
  813. ReadLock(&albuf->lock);
  814. values[0] = albuf->LoopStart;
  815. values[1] = albuf->LoopEnd;
  816. ReadUnlock(&albuf->lock);
  817. break;
  818. default:
  819. SET_ERROR_AND_GOTO(context, AL_INVALID_ENUM, done);
  820. }
  821. done:
  822. ALCcontext_DecRef(context);
  823. }
  824. typedef ALubyte ALmulaw;
  825. typedef ALubyte ALalaw;
  826. typedef ALubyte ALima4;
  827. typedef struct {
  828. ALbyte b[3];
  829. } ALbyte3;
  830. extern ALbyte ALbyte3_size_is_not_3[(sizeof(ALbyte3)==sizeof(ALbyte[3]))?1:-1];
  831. typedef struct {
  832. ALubyte b[3];
  833. } ALubyte3;
  834. extern ALbyte ALubyte3_size_is_not_3[(sizeof(ALubyte3)==sizeof(ALubyte[3]))?1:-1];
  835. static inline ALshort DecodeMuLaw(ALmulaw val)
  836. { return muLawDecompressionTable[val]; }
  837. static ALmulaw EncodeMuLaw(ALshort val)
  838. {
  839. ALint mant, exp, sign;
  840. sign = (val>>8) & 0x80;
  841. if(sign)
  842. {
  843. /* -32768 doesn't properly negate on a short; it results in itself.
  844. * So clamp to -32767 */
  845. val = maxi(val, -32767);
  846. val = -val;
  847. }
  848. val = mini(val, muLawClip);
  849. val += muLawBias;
  850. exp = muLawCompressTable[(val>>7) & 0xff];
  851. mant = (val >> (exp+3)) & 0x0f;
  852. return ~(sign | (exp<<4) | mant);
  853. }
  854. static inline ALshort DecodeALaw(ALalaw val)
  855. { return aLawDecompressionTable[val]; }
  856. static ALalaw EncodeALaw(ALshort val)
  857. {
  858. ALint mant, exp, sign;
  859. sign = ((~val) >> 8) & 0x80;
  860. if(!sign)
  861. {
  862. val = maxi(val, -32767);
  863. val = -val;
  864. }
  865. val = mini(val, aLawClip);
  866. if(val >= 256)
  867. {
  868. exp = aLawCompressTable[(val>>8) & 0x7f];
  869. mant = (val >> (exp+3)) & 0x0f;
  870. }
  871. else
  872. {
  873. exp = 0;
  874. mant = val >> 4;
  875. }
  876. return ((exp<<4) | mant) ^ (sign^0x55);
  877. }
  878. static void DecodeIMA4Block(ALshort *dst, const ALima4 *src, ALint numchans)
  879. {
  880. ALint sample[MAX_INPUT_CHANNELS], index[MAX_INPUT_CHANNELS];
  881. ALuint code[MAX_INPUT_CHANNELS];
  882. ALsizei j,k,c;
  883. for(c = 0;c < numchans;c++)
  884. {
  885. sample[c] = *(src++);
  886. sample[c] |= *(src++) << 8;
  887. sample[c] = (sample[c]^0x8000) - 32768;
  888. index[c] = *(src++);
  889. index[c] |= *(src++) << 8;
  890. index[c] = (index[c]^0x8000) - 32768;
  891. index[c] = clampi(index[c], 0, 88);
  892. dst[c] = sample[c];
  893. }
  894. j = 1;
  895. while(j < 65)
  896. {
  897. for(c = 0;c < numchans;c++)
  898. {
  899. code[c] = *(src++);
  900. code[c] |= *(src++) << 8;
  901. code[c] |= *(src++) << 16;
  902. code[c] |= *(src++) << 24;
  903. }
  904. for(k = 0;k < 8;k++,j++)
  905. {
  906. for(c = 0;c < numchans;c++)
  907. {
  908. int nibble = code[c]&0xf;
  909. code[c] >>= 4;
  910. sample[c] += IMA4Codeword[nibble] * IMAStep_size[index[c]] / 8;
  911. sample[c] = clampi(sample[c], -32768, 32767);
  912. index[c] += IMA4Index_adjust[nibble];
  913. index[c] = clampi(index[c], 0, 88);
  914. dst[j*numchans + c] = sample[c];
  915. }
  916. }
  917. }
  918. }
  919. static void EncodeIMA4Block(ALima4 *dst, const ALshort *src, ALint *sample, ALint *index, ALint numchans)
  920. {
  921. ALsizei j,k,c;
  922. for(c = 0;c < numchans;c++)
  923. {
  924. int diff = src[c] - sample[c];
  925. int step = IMAStep_size[index[c]];
  926. int nibble;
  927. nibble = 0;
  928. if(diff < 0)
  929. {
  930. nibble = 0x8;
  931. diff = -diff;
  932. }
  933. diff = mini(step*2, diff);
  934. nibble |= (diff*8/step - 1) / 2;
  935. sample[c] += IMA4Codeword[nibble] * step / 8;
  936. sample[c] = clampi(sample[c], -32768, 32767);
  937. index[c] += IMA4Index_adjust[nibble];
  938. index[c] = clampi(index[c], 0, 88);
  939. *(dst++) = sample[c] & 0xff;
  940. *(dst++) = (sample[c]>>8) & 0xff;
  941. *(dst++) = index[c] & 0xff;
  942. *(dst++) = (index[c]>>8) & 0xff;
  943. }
  944. j = 1;
  945. while(j < 65)
  946. {
  947. for(c = 0;c < numchans;c++)
  948. {
  949. for(k = 0;k < 8;k++)
  950. {
  951. int diff = src[(j+k)*numchans + c] - sample[c];
  952. int step = IMAStep_size[index[c]];
  953. int nibble;
  954. nibble = 0;
  955. if(diff < 0)
  956. {
  957. nibble = 0x8;
  958. diff = -diff;
  959. }
  960. diff = mini(step*2, diff);
  961. nibble |= (diff*8/step - 1) / 2;
  962. sample[c] += IMA4Codeword[nibble] * step / 8;
  963. sample[c] = clampi(sample[c], -32768, 32767);
  964. index[c] += IMA4Index_adjust[nibble];
  965. index[c] = clampi(index[c], 0, 88);
  966. if(!(k&1)) *dst = nibble;
  967. else *(dst++) |= nibble<<4;
  968. }
  969. }
  970. j += 8;
  971. }
  972. }
  973. static inline ALint DecodeByte3(ALbyte3 val)
  974. {
  975. if(IS_LITTLE_ENDIAN)
  976. return (val.b[2]<<16) | (((ALubyte)val.b[1])<<8) | ((ALubyte)val.b[0]);
  977. return (val.b[0]<<16) | (((ALubyte)val.b[1])<<8) | ((ALubyte)val.b[2]);
  978. }
  979. static inline ALbyte3 EncodeByte3(ALint val)
  980. {
  981. if(IS_LITTLE_ENDIAN)
  982. {
  983. ALbyte3 ret = {{ val, val>>8, val>>16 }};
  984. return ret;
  985. }
  986. else
  987. {
  988. ALbyte3 ret = {{ val>>16, val>>8, val }};
  989. return ret;
  990. }
  991. }
  992. static inline ALint DecodeUByte3(ALubyte3 val)
  993. {
  994. if(IS_LITTLE_ENDIAN)
  995. return (val.b[2]<<16) | (val.b[1]<<8) | (val.b[0]);
  996. return (val.b[0]<<16) | (val.b[1]<<8) | val.b[2];
  997. }
  998. static inline ALubyte3 EncodeUByte3(ALint val)
  999. {
  1000. if(IS_LITTLE_ENDIAN)
  1001. {
  1002. ALubyte3 ret = {{ val, val>>8, val>>16 }};
  1003. return ret;
  1004. }
  1005. else
  1006. {
  1007. ALubyte3 ret = {{ val>>16, val>>8, val }};
  1008. return ret;
  1009. }
  1010. }
  1011. static inline ALbyte Conv_ALbyte_ALbyte(ALbyte val)
  1012. { return val; }
  1013. static inline ALbyte Conv_ALbyte_ALubyte(ALubyte val)
  1014. { return val-128; }
  1015. static inline ALbyte Conv_ALbyte_ALshort(ALshort val)
  1016. { return val>>8; }
  1017. static inline ALbyte Conv_ALbyte_ALushort(ALushort val)
  1018. { return (val>>8)-128; }
  1019. static inline ALbyte Conv_ALbyte_ALint(ALint val)
  1020. { return val>>24; }
  1021. static inline ALbyte Conv_ALbyte_ALuint(ALuint val)
  1022. { return (val>>24)-128; }
  1023. static inline ALbyte Conv_ALbyte_ALfloat(ALfloat val)
  1024. {
  1025. if(val > 1.0f) return 127;
  1026. if(val < -1.0f) return -128;
  1027. return (ALint)(val * 127.0f);
  1028. }
  1029. static inline ALbyte Conv_ALbyte_ALdouble(ALdouble val)
  1030. {
  1031. if(val > 1.0) return 127;
  1032. if(val < -1.0) return -128;
  1033. return (ALint)(val * 127.0);
  1034. }
  1035. static inline ALbyte Conv_ALbyte_ALmulaw(ALmulaw val)
  1036. { return Conv_ALbyte_ALshort(DecodeMuLaw(val)); }
  1037. static inline ALbyte Conv_ALbyte_ALalaw(ALalaw val)
  1038. { return Conv_ALbyte_ALshort(DecodeALaw(val)); }
  1039. static inline ALbyte Conv_ALbyte_ALbyte3(ALbyte3 val)
  1040. { return DecodeByte3(val)>>16; }
  1041. static inline ALbyte Conv_ALbyte_ALubyte3(ALubyte3 val)
  1042. { return (DecodeUByte3(val)>>16)-128; }
  1043. static inline ALubyte Conv_ALubyte_ALbyte(ALbyte val)
  1044. { return val+128; }
  1045. static inline ALubyte Conv_ALubyte_ALubyte(ALubyte val)
  1046. { return val; }
  1047. static inline ALubyte Conv_ALubyte_ALshort(ALshort val)
  1048. { return (val>>8)+128; }
  1049. static inline ALubyte Conv_ALubyte_ALushort(ALushort val)
  1050. { return val>>8; }
  1051. static inline ALubyte Conv_ALubyte_ALint(ALint val)
  1052. { return (val>>24)+128; }
  1053. static inline ALubyte Conv_ALubyte_ALuint(ALuint val)
  1054. { return val>>24; }
  1055. static inline ALubyte Conv_ALubyte_ALfloat(ALfloat val)
  1056. {
  1057. if(val > 1.0f) return 255;
  1058. if(val < -1.0f) return 0;
  1059. return (ALint)(val * 127.0f) + 128;
  1060. }
  1061. static inline ALubyte Conv_ALubyte_ALdouble(ALdouble val)
  1062. {
  1063. if(val > 1.0) return 255;
  1064. if(val < -1.0) return 0;
  1065. return (ALint)(val * 127.0) + 128;
  1066. }
  1067. static inline ALubyte Conv_ALubyte_ALmulaw(ALmulaw val)
  1068. { return Conv_ALubyte_ALshort(DecodeMuLaw(val)); }
  1069. static inline ALubyte Conv_ALubyte_ALalaw(ALalaw val)
  1070. { return Conv_ALubyte_ALshort(DecodeALaw(val)); }
  1071. static inline ALubyte Conv_ALubyte_ALbyte3(ALbyte3 val)
  1072. { return (DecodeByte3(val)>>16)+128; }
  1073. static inline ALubyte Conv_ALubyte_ALubyte3(ALubyte3 val)
  1074. { return DecodeUByte3(val)>>16; }
  1075. static inline ALshort Conv_ALshort_ALbyte(ALbyte val)
  1076. { return val<<8; }
  1077. static inline ALshort Conv_ALshort_ALubyte(ALubyte val)
  1078. { return (val-128)<<8; }
  1079. static inline ALshort Conv_ALshort_ALshort(ALshort val)
  1080. { return val; }
  1081. static inline ALshort Conv_ALshort_ALushort(ALushort val)
  1082. { return val-32768; }
  1083. static inline ALshort Conv_ALshort_ALint(ALint val)
  1084. { return val>>16; }
  1085. static inline ALshort Conv_ALshort_ALuint(ALuint val)
  1086. { return (val>>16)-32768; }
  1087. static inline ALshort Conv_ALshort_ALfloat(ALfloat val)
  1088. {
  1089. if(val > 1.0f) return 32767;
  1090. if(val < -1.0f) return -32768;
  1091. return (ALint)(val * 32767.0f);
  1092. }
  1093. static inline ALshort Conv_ALshort_ALdouble(ALdouble val)
  1094. {
  1095. if(val > 1.0) return 32767;
  1096. if(val < -1.0) return -32768;
  1097. return (ALint)(val * 32767.0);
  1098. }
  1099. static inline ALshort Conv_ALshort_ALmulaw(ALmulaw val)
  1100. { return Conv_ALshort_ALshort(DecodeMuLaw(val)); }
  1101. static inline ALshort Conv_ALshort_ALalaw(ALalaw val)
  1102. { return Conv_ALshort_ALshort(DecodeALaw(val)); }
  1103. static inline ALshort Conv_ALshort_ALbyte3(ALbyte3 val)
  1104. { return DecodeByte3(val)>>8; }
  1105. static inline ALshort Conv_ALshort_ALubyte3(ALubyte3 val)
  1106. { return (DecodeUByte3(val)>>8)-32768; }
  1107. static inline ALushort Conv_ALushort_ALbyte(ALbyte val)
  1108. { return (val+128)<<8; }
  1109. static inline ALushort Conv_ALushort_ALubyte(ALubyte val)
  1110. { return val<<8; }
  1111. static inline ALushort Conv_ALushort_ALshort(ALshort val)
  1112. { return val+32768; }
  1113. static inline ALushort Conv_ALushort_ALushort(ALushort val)
  1114. { return val; }
  1115. static inline ALushort Conv_ALushort_ALint(ALint val)
  1116. { return (val>>16)+32768; }
  1117. static inline ALushort Conv_ALushort_ALuint(ALuint val)
  1118. { return val>>16; }
  1119. static inline ALushort Conv_ALushort_ALfloat(ALfloat val)
  1120. {
  1121. if(val > 1.0f) return 65535;
  1122. if(val < -1.0f) return 0;
  1123. return (ALint)(val * 32767.0f) + 32768;
  1124. }
  1125. static inline ALushort Conv_ALushort_ALdouble(ALdouble val)
  1126. {
  1127. if(val > 1.0) return 65535;
  1128. if(val < -1.0) return 0;
  1129. return (ALint)(val * 32767.0) + 32768;
  1130. }
  1131. static inline ALushort Conv_ALushort_ALmulaw(ALmulaw val)
  1132. { return Conv_ALushort_ALshort(DecodeMuLaw(val)); }
  1133. static inline ALushort Conv_ALushort_ALalaw(ALalaw val)
  1134. { return Conv_ALushort_ALshort(DecodeALaw(val)); }
  1135. static inline ALushort Conv_ALushort_ALbyte3(ALbyte3 val)
  1136. { return (DecodeByte3(val)>>8)+32768; }
  1137. static inline ALushort Conv_ALushort_ALubyte3(ALubyte3 val)
  1138. { return DecodeUByte3(val)>>8; }
  1139. static inline ALint Conv_ALint_ALbyte(ALbyte val)
  1140. { return val<<24; }
  1141. static inline ALint Conv_ALint_ALubyte(ALubyte val)
  1142. { return (val-128)<<24; }
  1143. static inline ALint Conv_ALint_ALshort(ALshort val)
  1144. { return val<<16; }
  1145. static inline ALint Conv_ALint_ALushort(ALushort val)
  1146. { return (val-32768)<<16; }
  1147. static inline ALint Conv_ALint_ALint(ALint val)
  1148. { return val; }
  1149. static inline ALint Conv_ALint_ALuint(ALuint val)
  1150. { return val-2147483648u; }
  1151. static inline ALint Conv_ALint_ALfloat(ALfloat val)
  1152. {
  1153. if(val > 1.0f) return 2147483647;
  1154. if(val < -1.0f) return -2147483647-1;
  1155. return (ALint)(val*16777215.0f) << 7;
  1156. }
  1157. static inline ALint Conv_ALint_ALdouble(ALdouble val)
  1158. {
  1159. if(val > 1.0) return 2147483647;
  1160. if(val < -1.0) return -2147483647-1;
  1161. return (ALint)(val * 2147483647.0);
  1162. }
  1163. static inline ALint Conv_ALint_ALmulaw(ALmulaw val)
  1164. { return Conv_ALint_ALshort(DecodeMuLaw(val)); }
  1165. static inline ALint Conv_ALint_ALalaw(ALalaw val)
  1166. { return Conv_ALint_ALshort(DecodeALaw(val)); }
  1167. static inline ALint Conv_ALint_ALbyte3(ALbyte3 val)
  1168. { return DecodeByte3(val)<<8; }
  1169. static inline ALint Conv_ALint_ALubyte3(ALubyte3 val)
  1170. { return (DecodeUByte3(val)-8388608)<<8; }
  1171. static inline ALuint Conv_ALuint_ALbyte(ALbyte val)
  1172. { return (val+128)<<24; }
  1173. static inline ALuint Conv_ALuint_ALubyte(ALubyte val)
  1174. { return val<<24; }
  1175. static inline ALuint Conv_ALuint_ALshort(ALshort val)
  1176. { return (val+32768)<<16; }
  1177. static inline ALuint Conv_ALuint_ALushort(ALushort val)
  1178. { return val<<16; }
  1179. static inline ALuint Conv_ALuint_ALint(ALint val)
  1180. { return val+2147483648u; }
  1181. static inline ALuint Conv_ALuint_ALuint(ALuint val)
  1182. { return val; }
  1183. static inline ALuint Conv_ALuint_ALfloat(ALfloat val)
  1184. {
  1185. if(val > 1.0f) return 4294967295u;
  1186. if(val < -1.0f) return 0;
  1187. return ((ALint)(val*16777215.0f)<<7) + 2147483648u;
  1188. }
  1189. static inline ALuint Conv_ALuint_ALdouble(ALdouble val)
  1190. {
  1191. if(val > 1.0) return 4294967295u;
  1192. if(val < -1.0) return 0;
  1193. return (ALint)(val * 2147483647.0) + 2147483648u;
  1194. }
  1195. static inline ALuint Conv_ALuint_ALmulaw(ALmulaw val)
  1196. { return Conv_ALuint_ALshort(DecodeMuLaw(val)); }
  1197. static inline ALuint Conv_ALuint_ALalaw(ALalaw val)
  1198. { return Conv_ALuint_ALshort(DecodeALaw(val)); }
  1199. static inline ALuint Conv_ALuint_ALbyte3(ALbyte3 val)
  1200. { return (DecodeByte3(val)+8388608)<<8; }
  1201. static inline ALuint Conv_ALuint_ALubyte3(ALubyte3 val)
  1202. { return DecodeUByte3(val)<<8; }
  1203. static inline ALfloat Conv_ALfloat_ALbyte(ALbyte val)
  1204. { return val * (1.0f/127.0f); }
  1205. static inline ALfloat Conv_ALfloat_ALubyte(ALubyte val)
  1206. { return (val-128) * (1.0f/127.0f); }
  1207. static inline ALfloat Conv_ALfloat_ALshort(ALshort val)
  1208. { return val * (1.0f/32767.0f); }
  1209. static inline ALfloat Conv_ALfloat_ALushort(ALushort val)
  1210. { return (val-32768) * (1.0f/32767.0f); }
  1211. static inline ALfloat Conv_ALfloat_ALint(ALint val)
  1212. { return (ALfloat)(val * (1.0/2147483647.0)); }
  1213. static inline ALfloat Conv_ALfloat_ALuint(ALuint val)
  1214. { return (ALfloat)((ALint)(val-2147483648u) * (1.0/2147483647.0)); }
  1215. static inline ALfloat Conv_ALfloat_ALfloat(ALfloat val)
  1216. { return (val==val) ? val : 0.0f; }
  1217. static inline ALfloat Conv_ALfloat_ALdouble(ALdouble val)
  1218. { return (val==val) ? (ALfloat)val : 0.0f; }
  1219. static inline ALfloat Conv_ALfloat_ALmulaw(ALmulaw val)
  1220. { return Conv_ALfloat_ALshort(DecodeMuLaw(val)); }
  1221. static inline ALfloat Conv_ALfloat_ALalaw(ALalaw val)
  1222. { return Conv_ALfloat_ALshort(DecodeALaw(val)); }
  1223. static inline ALfloat Conv_ALfloat_ALbyte3(ALbyte3 val)
  1224. { return (ALfloat)(DecodeByte3(val) * (1.0/8388607.0)); }
  1225. static inline ALfloat Conv_ALfloat_ALubyte3(ALubyte3 val)
  1226. { return (ALfloat)((DecodeUByte3(val)-8388608) * (1.0/8388607.0)); }
  1227. static inline ALdouble Conv_ALdouble_ALbyte(ALbyte val)
  1228. { return val * (1.0/127.0); }
  1229. static inline ALdouble Conv_ALdouble_ALubyte(ALubyte val)
  1230. { return (val-128) * (1.0/127.0); }
  1231. static inline ALdouble Conv_ALdouble_ALshort(ALshort val)
  1232. { return val * (1.0/32767.0); }
  1233. static inline ALdouble Conv_ALdouble_ALushort(ALushort val)
  1234. { return (val-32768) * (1.0/32767.0); }
  1235. static inline ALdouble Conv_ALdouble_ALint(ALint val)
  1236. { return val * (1.0/2147483647.0); }
  1237. static inline ALdouble Conv_ALdouble_ALuint(ALuint val)
  1238. { return (ALint)(val-2147483648u) * (1.0/2147483647.0); }
  1239. static inline ALdouble Conv_ALdouble_ALfloat(ALfloat val)
  1240. { return (val==val) ? val : 0.0f; }
  1241. static inline ALdouble Conv_ALdouble_ALdouble(ALdouble val)
  1242. { return (val==val) ? val : 0.0; }
  1243. static inline ALdouble Conv_ALdouble_ALmulaw(ALmulaw val)
  1244. { return Conv_ALdouble_ALshort(DecodeMuLaw(val)); }
  1245. static inline ALdouble Conv_ALdouble_ALalaw(ALalaw val)
  1246. { return Conv_ALdouble_ALshort(DecodeALaw(val)); }
  1247. static inline ALdouble Conv_ALdouble_ALbyte3(ALbyte3 val)
  1248. { return DecodeByte3(val) * (1.0/8388607.0); }
  1249. static inline ALdouble Conv_ALdouble_ALubyte3(ALubyte3 val)
  1250. { return (DecodeUByte3(val)-8388608) * (1.0/8388607.0); }
  1251. #define DECL_TEMPLATE(T) \
  1252. static inline ALmulaw Conv_ALmulaw_##T(T val) \
  1253. { return EncodeMuLaw(Conv_ALshort_##T(val)); }
  1254. DECL_TEMPLATE(ALbyte)
  1255. DECL_TEMPLATE(ALubyte)
  1256. DECL_TEMPLATE(ALshort)
  1257. DECL_TEMPLATE(ALushort)
  1258. DECL_TEMPLATE(ALint)
  1259. DECL_TEMPLATE(ALuint)
  1260. DECL_TEMPLATE(ALfloat)
  1261. DECL_TEMPLATE(ALdouble)
  1262. static inline ALmulaw Conv_ALmulaw_ALmulaw(ALmulaw val)
  1263. { return val; }
  1264. DECL_TEMPLATE(ALalaw)
  1265. DECL_TEMPLATE(ALbyte3)
  1266. DECL_TEMPLATE(ALubyte3)
  1267. #undef DECL_TEMPLATE
  1268. #define DECL_TEMPLATE(T) \
  1269. static inline ALalaw Conv_ALalaw_##T(T val) \
  1270. { return EncodeALaw(Conv_ALshort_##T(val)); }
  1271. DECL_TEMPLATE(ALbyte)
  1272. DECL_TEMPLATE(ALubyte)
  1273. DECL_TEMPLATE(ALshort)
  1274. DECL_TEMPLATE(ALushort)
  1275. DECL_TEMPLATE(ALint)
  1276. DECL_TEMPLATE(ALuint)
  1277. DECL_TEMPLATE(ALfloat)
  1278. DECL_TEMPLATE(ALdouble)
  1279. DECL_TEMPLATE(ALmulaw)
  1280. static inline ALalaw Conv_ALalaw_ALalaw(ALalaw val)
  1281. { return val; }
  1282. DECL_TEMPLATE(ALbyte3)
  1283. DECL_TEMPLATE(ALubyte3)
  1284. #undef DECL_TEMPLATE
  1285. #define DECL_TEMPLATE(T) \
  1286. static inline ALbyte3 Conv_ALbyte3_##T(T val) \
  1287. { return EncodeByte3(Conv_ALint_##T(val)>>8); }
  1288. DECL_TEMPLATE(ALbyte)
  1289. DECL_TEMPLATE(ALubyte)
  1290. DECL_TEMPLATE(ALshort)
  1291. DECL_TEMPLATE(ALushort)
  1292. DECL_TEMPLATE(ALint)
  1293. DECL_TEMPLATE(ALuint)
  1294. DECL_TEMPLATE(ALfloat)
  1295. DECL_TEMPLATE(ALdouble)
  1296. DECL_TEMPLATE(ALmulaw)
  1297. DECL_TEMPLATE(ALalaw)
  1298. static inline ALbyte3 Conv_ALbyte3_ALbyte3(ALbyte3 val)
  1299. { return val; }
  1300. DECL_TEMPLATE(ALubyte3)
  1301. #undef DECL_TEMPLATE
  1302. #define DECL_TEMPLATE(T) \
  1303. static inline ALubyte3 Conv_ALubyte3_##T(T val) \
  1304. { return EncodeUByte3(Conv_ALuint_##T(val)>>8); }
  1305. DECL_TEMPLATE(ALbyte)
  1306. DECL_TEMPLATE(ALubyte)
  1307. DECL_TEMPLATE(ALshort)
  1308. DECL_TEMPLATE(ALushort)
  1309. DECL_TEMPLATE(ALint)
  1310. DECL_TEMPLATE(ALuint)
  1311. DECL_TEMPLATE(ALfloat)
  1312. DECL_TEMPLATE(ALdouble)
  1313. DECL_TEMPLATE(ALmulaw)
  1314. DECL_TEMPLATE(ALalaw)
  1315. DECL_TEMPLATE(ALbyte3)
  1316. static inline ALubyte3 Conv_ALubyte3_ALubyte3(ALubyte3 val)
  1317. { return val; }
  1318. #undef DECL_TEMPLATE
  1319. #define DECL_TEMPLATE(T1, T2) \
  1320. static void Convert_##T1##_##T2(T1 *dst, const T2 *src, ALuint numchans, \
  1321. ALuint len) \
  1322. { \
  1323. ALuint i, j; \
  1324. for(i = 0;i < len;i++) \
  1325. { \
  1326. for(j = 0;j < numchans;j++) \
  1327. *(dst++) = Conv_##T1##_##T2(*(src++)); \
  1328. } \
  1329. }
  1330. DECL_TEMPLATE(ALbyte, ALbyte)
  1331. DECL_TEMPLATE(ALbyte, ALubyte)
  1332. DECL_TEMPLATE(ALbyte, ALshort)
  1333. DECL_TEMPLATE(ALbyte, ALushort)
  1334. DECL_TEMPLATE(ALbyte, ALint)
  1335. DECL_TEMPLATE(ALbyte, ALuint)
  1336. DECL_TEMPLATE(ALbyte, ALfloat)
  1337. DECL_TEMPLATE(ALbyte, ALdouble)
  1338. DECL_TEMPLATE(ALbyte, ALmulaw)
  1339. DECL_TEMPLATE(ALbyte, ALalaw)
  1340. DECL_TEMPLATE(ALbyte, ALbyte3)
  1341. DECL_TEMPLATE(ALbyte, ALubyte3)
  1342. DECL_TEMPLATE(ALubyte, ALbyte)
  1343. DECL_TEMPLATE(ALubyte, ALubyte)
  1344. DECL_TEMPLATE(ALubyte, ALshort)
  1345. DECL_TEMPLATE(ALubyte, ALushort)
  1346. DECL_TEMPLATE(ALubyte, ALint)
  1347. DECL_TEMPLATE(ALubyte, ALuint)
  1348. DECL_TEMPLATE(ALubyte, ALfloat)
  1349. DECL_TEMPLATE(ALubyte, ALdouble)
  1350. DECL_TEMPLATE(ALubyte, ALmulaw)
  1351. DECL_TEMPLATE(ALubyte, ALalaw)
  1352. DECL_TEMPLATE(ALubyte, ALbyte3)
  1353. DECL_TEMPLATE(ALubyte, ALubyte3)
  1354. DECL_TEMPLATE(ALshort, ALbyte)
  1355. DECL_TEMPLATE(ALshort, ALubyte)
  1356. DECL_TEMPLATE(ALshort, ALshort)
  1357. DECL_TEMPLATE(ALshort, ALushort)
  1358. DECL_TEMPLATE(ALshort, ALint)
  1359. DECL_TEMPLATE(ALshort, ALuint)
  1360. DECL_TEMPLATE(ALshort, ALfloat)
  1361. DECL_TEMPLATE(ALshort, ALdouble)
  1362. DECL_TEMPLATE(ALshort, ALmulaw)
  1363. DECL_TEMPLATE(ALshort, ALalaw)
  1364. DECL_TEMPLATE(ALshort, ALbyte3)
  1365. DECL_TEMPLATE(ALshort, ALubyte3)
  1366. DECL_TEMPLATE(ALushort, ALbyte)
  1367. DECL_TEMPLATE(ALushort, ALubyte)
  1368. DECL_TEMPLATE(ALushort, ALshort)
  1369. DECL_TEMPLATE(ALushort, ALushort)
  1370. DECL_TEMPLATE(ALushort, ALint)
  1371. DECL_TEMPLATE(ALushort, ALuint)
  1372. DECL_TEMPLATE(ALushort, ALfloat)
  1373. DECL_TEMPLATE(ALushort, ALdouble)
  1374. DECL_TEMPLATE(ALushort, ALmulaw)
  1375. DECL_TEMPLATE(ALushort, ALalaw)
  1376. DECL_TEMPLATE(ALushort, ALbyte3)
  1377. DECL_TEMPLATE(ALushort, ALubyte3)
  1378. DECL_TEMPLATE(ALint, ALbyte)
  1379. DECL_TEMPLATE(ALint, ALubyte)
  1380. DECL_TEMPLATE(ALint, ALshort)
  1381. DECL_TEMPLATE(ALint, ALushort)
  1382. DECL_TEMPLATE(ALint, ALint)
  1383. DECL_TEMPLATE(ALint, ALuint)
  1384. DECL_TEMPLATE(ALint, ALfloat)
  1385. DECL_TEMPLATE(ALint, ALdouble)
  1386. DECL_TEMPLATE(ALint, ALmulaw)
  1387. DECL_TEMPLATE(ALint, ALalaw)
  1388. DECL_TEMPLATE(ALint, ALbyte3)
  1389. DECL_TEMPLATE(ALint, ALubyte3)
  1390. DECL_TEMPLATE(ALuint, ALbyte)
  1391. DECL_TEMPLATE(ALuint, ALubyte)
  1392. DECL_TEMPLATE(ALuint, ALshort)
  1393. DECL_TEMPLATE(ALuint, ALushort)
  1394. DECL_TEMPLATE(ALuint, ALint)
  1395. DECL_TEMPLATE(ALuint, ALuint)
  1396. DECL_TEMPLATE(ALuint, ALfloat)
  1397. DECL_TEMPLATE(ALuint, ALdouble)
  1398. DECL_TEMPLATE(ALuint, ALmulaw)
  1399. DECL_TEMPLATE(ALuint, ALalaw)
  1400. DECL_TEMPLATE(ALuint, ALbyte3)
  1401. DECL_TEMPLATE(ALuint, ALubyte3)
  1402. DECL_TEMPLATE(ALfloat, ALbyte)
  1403. DECL_TEMPLATE(ALfloat, ALubyte)
  1404. DECL_TEMPLATE(ALfloat, ALshort)
  1405. DECL_TEMPLATE(ALfloat, ALushort)
  1406. DECL_TEMPLATE(ALfloat, ALint)
  1407. DECL_TEMPLATE(ALfloat, ALuint)
  1408. DECL_TEMPLATE(ALfloat, ALfloat)
  1409. DECL_TEMPLATE(ALfloat, ALdouble)
  1410. DECL_TEMPLATE(ALfloat, ALmulaw)
  1411. DECL_TEMPLATE(ALfloat, ALalaw)
  1412. DECL_TEMPLATE(ALfloat, ALbyte3)
  1413. DECL_TEMPLATE(ALfloat, ALubyte3)
  1414. DECL_TEMPLATE(ALdouble, ALbyte)
  1415. DECL_TEMPLATE(ALdouble, ALubyte)
  1416. DECL_TEMPLATE(ALdouble, ALshort)
  1417. DECL_TEMPLATE(ALdouble, ALushort)
  1418. DECL_TEMPLATE(ALdouble, ALint)
  1419. DECL_TEMPLATE(ALdouble, ALuint)
  1420. DECL_TEMPLATE(ALdouble, ALfloat)
  1421. DECL_TEMPLATE(ALdouble, ALdouble)
  1422. DECL_TEMPLATE(ALdouble, ALmulaw)
  1423. DECL_TEMPLATE(ALdouble, ALalaw)
  1424. DECL_TEMPLATE(ALdouble, ALbyte3)
  1425. DECL_TEMPLATE(ALdouble, ALubyte3)
  1426. DECL_TEMPLATE(ALmulaw, ALbyte)
  1427. DECL_TEMPLATE(ALmulaw, ALubyte)
  1428. DECL_TEMPLATE(ALmulaw, ALshort)
  1429. DECL_TEMPLATE(ALmulaw, ALushort)
  1430. DECL_TEMPLATE(ALmulaw, ALint)
  1431. DECL_TEMPLATE(ALmulaw, ALuint)
  1432. DECL_TEMPLATE(ALmulaw, ALfloat)
  1433. DECL_TEMPLATE(ALmulaw, ALdouble)
  1434. DECL_TEMPLATE(ALmulaw, ALmulaw)
  1435. DECL_TEMPLATE(ALmulaw, ALalaw)
  1436. DECL_TEMPLATE(ALmulaw, ALbyte3)
  1437. DECL_TEMPLATE(ALmulaw, ALubyte3)
  1438. DECL_TEMPLATE(ALalaw, ALbyte)
  1439. DECL_TEMPLATE(ALalaw, ALubyte)
  1440. DECL_TEMPLATE(ALalaw, ALshort)
  1441. DECL_TEMPLATE(ALalaw, ALushort)
  1442. DECL_TEMPLATE(ALalaw, ALint)
  1443. DECL_TEMPLATE(ALalaw, ALuint)
  1444. DECL_TEMPLATE(ALalaw, ALfloat)
  1445. DECL_TEMPLATE(ALalaw, ALdouble)
  1446. DECL_TEMPLATE(ALalaw, ALmulaw)
  1447. DECL_TEMPLATE(ALalaw, ALalaw)
  1448. DECL_TEMPLATE(ALalaw, ALbyte3)
  1449. DECL_TEMPLATE(ALalaw, ALubyte3)
  1450. DECL_TEMPLATE(ALbyte3, ALbyte)
  1451. DECL_TEMPLATE(ALbyte3, ALubyte)
  1452. DECL_TEMPLATE(ALbyte3, ALshort)
  1453. DECL_TEMPLATE(ALbyte3, ALushort)
  1454. DECL_TEMPLATE(ALbyte3, ALint)
  1455. DECL_TEMPLATE(ALbyte3, ALuint)
  1456. DECL_TEMPLATE(ALbyte3, ALfloat)
  1457. DECL_TEMPLATE(ALbyte3, ALdouble)
  1458. DECL_TEMPLATE(ALbyte3, ALmulaw)
  1459. DECL_TEMPLATE(ALbyte3, ALalaw)
  1460. DECL_TEMPLATE(ALbyte3, ALbyte3)
  1461. DECL_TEMPLATE(ALbyte3, ALubyte3)
  1462. DECL_TEMPLATE(ALubyte3, ALbyte)
  1463. DECL_TEMPLATE(ALubyte3, ALubyte)
  1464. DECL_TEMPLATE(ALubyte3, ALshort)
  1465. DECL_TEMPLATE(ALubyte3, ALushort)
  1466. DECL_TEMPLATE(ALubyte3, ALint)
  1467. DECL_TEMPLATE(ALubyte3, ALuint)
  1468. DECL_TEMPLATE(ALubyte3, ALfloat)
  1469. DECL_TEMPLATE(ALubyte3, ALdouble)
  1470. DECL_TEMPLATE(ALubyte3, ALmulaw)
  1471. DECL_TEMPLATE(ALubyte3, ALalaw)
  1472. DECL_TEMPLATE(ALubyte3, ALbyte3)
  1473. DECL_TEMPLATE(ALubyte3, ALubyte3)
  1474. #undef DECL_TEMPLATE
  1475. #define DECL_TEMPLATE(T) \
  1476. static void Convert_##T##_ALima4(T *dst, const ALima4 *src, ALuint numchans, \
  1477. ALuint len) \
  1478. { \
  1479. ALshort tmp[65*MAX_INPUT_CHANNELS]; /* Max samples an IMA4 frame can be */\
  1480. ALuint i, j, k; \
  1481. \
  1482. i = 0; \
  1483. while(i < len) \
  1484. { \
  1485. DecodeIMA4Block(tmp, src, numchans); \
  1486. src += 36*numchans; \
  1487. \
  1488. for(j = 0;j < 65 && i < len;j++,i++) \
  1489. { \
  1490. for(k = 0;k < numchans;k++) \
  1491. *(dst++) = Conv_##T##_ALshort(tmp[j*numchans + k]); \
  1492. } \
  1493. } \
  1494. }
  1495. DECL_TEMPLATE(ALbyte)
  1496. DECL_TEMPLATE(ALubyte)
  1497. DECL_TEMPLATE(ALshort)
  1498. DECL_TEMPLATE(ALushort)
  1499. DECL_TEMPLATE(ALint)
  1500. DECL_TEMPLATE(ALuint)
  1501. DECL_TEMPLATE(ALfloat)
  1502. DECL_TEMPLATE(ALdouble)
  1503. DECL_TEMPLATE(ALmulaw)
  1504. DECL_TEMPLATE(ALalaw)
  1505. DECL_TEMPLATE(ALbyte3)
  1506. DECL_TEMPLATE(ALubyte3)
  1507. #undef DECL_TEMPLATE
  1508. #define DECL_TEMPLATE(T) \
  1509. static void Convert_ALima4_##T(ALima4 *dst, const T *src, ALuint numchans, \
  1510. ALuint len) \
  1511. { \
  1512. ALshort tmp[65*MAX_INPUT_CHANNELS]; /* Max samples an IMA4 frame can be */\
  1513. ALint sample[MaxChannels] = {0,0,0,0,0,0,0,0}; \
  1514. ALint index[MaxChannels] = {0,0,0,0,0,0,0,0}; \
  1515. ALuint i, j; \
  1516. \
  1517. for(i = 0;i < len;i += 65) \
  1518. { \
  1519. for(j = 0;j < 65*numchans;j++) \
  1520. tmp[j] = Conv_ALshort_##T(*(src++)); \
  1521. EncodeIMA4Block(dst, tmp, sample, index, numchans); \
  1522. dst += 36*numchans; \
  1523. } \
  1524. }
  1525. DECL_TEMPLATE(ALbyte)
  1526. DECL_TEMPLATE(ALubyte)
  1527. DECL_TEMPLATE(ALshort)
  1528. DECL_TEMPLATE(ALushort)
  1529. DECL_TEMPLATE(ALint)
  1530. DECL_TEMPLATE(ALuint)
  1531. DECL_TEMPLATE(ALfloat)
  1532. DECL_TEMPLATE(ALdouble)
  1533. DECL_TEMPLATE(ALmulaw)
  1534. DECL_TEMPLATE(ALalaw)
  1535. static void Convert_ALima4_ALima4(ALima4 *dst, const ALima4 *src,
  1536. ALuint numchans, ALuint numblocks)
  1537. { memcpy(dst, src, numblocks*36*numchans); }
  1538. DECL_TEMPLATE(ALbyte3)
  1539. DECL_TEMPLATE(ALubyte3)
  1540. #undef DECL_TEMPLATE
  1541. #define DECL_TEMPLATE(T) \
  1542. static void Convert_##T(T *dst, const ALvoid *src, enum UserFmtType srcType, \
  1543. ALsizei numchans, ALsizei len) \
  1544. { \
  1545. switch(srcType) \
  1546. { \
  1547. case UserFmtByte: \
  1548. Convert_##T##_ALbyte(dst, src, numchans, len); \
  1549. break; \
  1550. case UserFmtUByte: \
  1551. Convert_##T##_ALubyte(dst, src, numchans, len); \
  1552. break; \
  1553. case UserFmtShort: \
  1554. Convert_##T##_ALshort(dst, src, numchans, len); \
  1555. break; \
  1556. case UserFmtUShort: \
  1557. Convert_##T##_ALushort(dst, src, numchans, len); \
  1558. break; \
  1559. case UserFmtInt: \
  1560. Convert_##T##_ALint(dst, src, numchans, len); \
  1561. break; \
  1562. case UserFmtUInt: \
  1563. Convert_##T##_ALuint(dst, src, numchans, len); \
  1564. break; \
  1565. case UserFmtFloat: \
  1566. Convert_##T##_ALfloat(dst, src, numchans, len); \
  1567. break; \
  1568. case UserFmtDouble: \
  1569. Convert_##T##_ALdouble(dst, src, numchans, len); \
  1570. break; \
  1571. case UserFmtMulaw: \
  1572. Convert_##T##_ALmulaw(dst, src, numchans, len); \
  1573. break; \
  1574. case UserFmtAlaw: \
  1575. Convert_##T##_ALalaw(dst, src, numchans, len); \
  1576. break; \
  1577. case UserFmtIMA4: \
  1578. Convert_##T##_ALima4(dst, src, numchans, len); \
  1579. break; \
  1580. case UserFmtByte3: \
  1581. Convert_##T##_ALbyte3(dst, src, numchans, len); \
  1582. break; \
  1583. case UserFmtUByte3: \
  1584. Convert_##T##_ALubyte3(dst, src, numchans, len); \
  1585. break; \
  1586. } \
  1587. }
  1588. DECL_TEMPLATE(ALbyte)
  1589. DECL_TEMPLATE(ALubyte)
  1590. DECL_TEMPLATE(ALshort)
  1591. DECL_TEMPLATE(ALushort)
  1592. DECL_TEMPLATE(ALint)
  1593. DECL_TEMPLATE(ALuint)
  1594. DECL_TEMPLATE(ALfloat)
  1595. DECL_TEMPLATE(ALdouble)
  1596. DECL_TEMPLATE(ALmulaw)
  1597. DECL_TEMPLATE(ALalaw)
  1598. DECL_TEMPLATE(ALima4)
  1599. DECL_TEMPLATE(ALbyte3)
  1600. DECL_TEMPLATE(ALubyte3)
  1601. #undef DECL_TEMPLATE
  1602. static void ConvertData(ALvoid *dst, enum UserFmtType dstType, const ALvoid *src, enum UserFmtType srcType, ALsizei numchans, ALsizei len)
  1603. {
  1604. switch(dstType)
  1605. {
  1606. case UserFmtByte:
  1607. Convert_ALbyte(dst, src, srcType, numchans, len);
  1608. break;
  1609. case UserFmtUByte:
  1610. Convert_ALubyte(dst, src, srcType, numchans, len);
  1611. break;
  1612. case UserFmtShort:
  1613. Convert_ALshort(dst, src, srcType, numchans, len);
  1614. break;
  1615. case UserFmtUShort:
  1616. Convert_ALushort(dst, src, srcType, numchans, len);
  1617. break;
  1618. case UserFmtInt:
  1619. Convert_ALint(dst, src, srcType, numchans, len);
  1620. break;
  1621. case UserFmtUInt:
  1622. Convert_ALuint(dst, src, srcType, numchans, len);
  1623. break;
  1624. case UserFmtFloat:
  1625. Convert_ALfloat(dst, src, srcType, numchans, len);
  1626. break;
  1627. case UserFmtDouble:
  1628. Convert_ALdouble(dst, src, srcType, numchans, len);
  1629. break;
  1630. case UserFmtMulaw:
  1631. Convert_ALmulaw(dst, src, srcType, numchans, len);
  1632. break;
  1633. case UserFmtAlaw:
  1634. Convert_ALalaw(dst, src, srcType, numchans, len);
  1635. break;
  1636. case UserFmtIMA4:
  1637. Convert_ALima4(dst, src, srcType, numchans, len);
  1638. break;
  1639. case UserFmtByte3:
  1640. Convert_ALbyte3(dst, src, srcType, numchans, len);
  1641. break;
  1642. case UserFmtUByte3:
  1643. Convert_ALubyte3(dst, src, srcType, numchans, len);
  1644. break;
  1645. }
  1646. }
  1647. /*
  1648. * LoadData
  1649. *
  1650. * Loads the specified data into the buffer, using the specified formats.
  1651. * Currently, the new format must have the same channel configuration as the
  1652. * original format.
  1653. */
  1654. static ALenum LoadData(ALbuffer *ALBuf, ALuint freq, ALenum NewFormat, ALsizei frames, enum UserFmtChannels SrcChannels, enum UserFmtType SrcType, const ALvoid *data, ALboolean storesrc)
  1655. {
  1656. ALuint NewChannels, NewBytes;
  1657. enum FmtChannels DstChannels;
  1658. enum FmtType DstType;
  1659. ALuint64 newsize;
  1660. ALvoid *temp;
  1661. if(DecomposeFormat(NewFormat, &DstChannels, &DstType) == AL_FALSE ||
  1662. (long)SrcChannels != (long)DstChannels)
  1663. return AL_INVALID_ENUM;
  1664. NewChannels = ChannelsFromFmt(DstChannels);
  1665. NewBytes = BytesFromFmt(DstType);
  1666. newsize = frames;
  1667. newsize *= NewBytes;
  1668. newsize *= NewChannels;
  1669. if(newsize > INT_MAX)
  1670. return AL_OUT_OF_MEMORY;
  1671. WriteLock(&ALBuf->lock);
  1672. if(ALBuf->ref != 0)
  1673. {
  1674. WriteUnlock(&ALBuf->lock);
  1675. return AL_INVALID_OPERATION;
  1676. }
  1677. temp = realloc(ALBuf->data, (size_t)newsize);
  1678. if(!temp && newsize)
  1679. {
  1680. WriteUnlock(&ALBuf->lock);
  1681. return AL_OUT_OF_MEMORY;
  1682. }
  1683. ALBuf->data = temp;
  1684. if(data != NULL)
  1685. ConvertData(ALBuf->data, (enum UserFmtType)DstType, data, SrcType, NewChannels, frames);
  1686. if(storesrc)
  1687. {
  1688. ALBuf->OriginalChannels = SrcChannels;
  1689. ALBuf->OriginalType = SrcType;
  1690. if(SrcType == UserFmtIMA4)
  1691. ALBuf->OriginalSize = frames / 65 * 36 * ChannelsFromUserFmt(SrcChannels);
  1692. else
  1693. ALBuf->OriginalSize = frames * FrameSizeFromUserFmt(SrcChannels, SrcType);
  1694. }
  1695. else
  1696. {
  1697. ALBuf->OriginalChannels = (enum UserFmtChannels)DstChannels;
  1698. ALBuf->OriginalType = (enum UserFmtType)DstType;
  1699. ALBuf->OriginalSize = frames * NewBytes * NewChannels;
  1700. }
  1701. ALBuf->Frequency = freq;
  1702. ALBuf->FmtChannels = DstChannels;
  1703. ALBuf->FmtType = DstType;
  1704. ALBuf->Format = NewFormat;
  1705. ALBuf->SampleLen = frames;
  1706. ALBuf->LoopStart = 0;
  1707. ALBuf->LoopEnd = ALBuf->SampleLen;
  1708. WriteUnlock(&ALBuf->lock);
  1709. return AL_NO_ERROR;
  1710. }
  1711. ALuint BytesFromUserFmt(enum UserFmtType type)
  1712. {
  1713. switch(type)
  1714. {
  1715. case UserFmtByte: return sizeof(ALbyte);
  1716. case UserFmtUByte: return sizeof(ALubyte);
  1717. case UserFmtShort: return sizeof(ALshort);
  1718. case UserFmtUShort: return sizeof(ALushort);
  1719. case UserFmtInt: return sizeof(ALint);
  1720. case UserFmtUInt: return sizeof(ALuint);
  1721. case UserFmtFloat: return sizeof(ALfloat);
  1722. case UserFmtDouble: return sizeof(ALdouble);
  1723. case UserFmtByte3: return sizeof(ALbyte3);
  1724. case UserFmtUByte3: return sizeof(ALubyte3);
  1725. case UserFmtMulaw: return sizeof(ALubyte);
  1726. case UserFmtAlaw: return sizeof(ALubyte);
  1727. case UserFmtIMA4: break; /* not handled here */
  1728. }
  1729. return 0;
  1730. }
  1731. ALuint ChannelsFromUserFmt(enum UserFmtChannels chans)
  1732. {
  1733. switch(chans)
  1734. {
  1735. case UserFmtMono: return 1;
  1736. case UserFmtStereo: return 2;
  1737. case UserFmtRear: return 2;
  1738. case UserFmtQuad: return 4;
  1739. case UserFmtX51: return 6;
  1740. case UserFmtX61: return 7;
  1741. case UserFmtX71: return 8;
  1742. }
  1743. return 0;
  1744. }
  1745. static ALboolean DecomposeUserFormat(ALenum format, enum UserFmtChannels *chans,
  1746. enum UserFmtType *type)
  1747. {
  1748. static const struct {
  1749. ALenum format;
  1750. enum UserFmtChannels channels;
  1751. enum UserFmtType type;
  1752. } list[] = {
  1753. { AL_FORMAT_MONO8, UserFmtMono, UserFmtUByte },
  1754. { AL_FORMAT_MONO16, UserFmtMono, UserFmtShort },
  1755. { AL_FORMAT_MONO_FLOAT32, UserFmtMono, UserFmtFloat },
  1756. { AL_FORMAT_MONO_DOUBLE_EXT, UserFmtMono, UserFmtDouble },
  1757. { AL_FORMAT_MONO_IMA4, UserFmtMono, UserFmtIMA4 },
  1758. { AL_FORMAT_MONO_MULAW, UserFmtMono, UserFmtMulaw },
  1759. { AL_FORMAT_MONO_ALAW_EXT, UserFmtMono, UserFmtAlaw },
  1760. { AL_FORMAT_STEREO8, UserFmtStereo, UserFmtUByte },
  1761. { AL_FORMAT_STEREO16, UserFmtStereo, UserFmtShort },
  1762. { AL_FORMAT_STEREO_FLOAT32, UserFmtStereo, UserFmtFloat },
  1763. { AL_FORMAT_STEREO_DOUBLE_EXT, UserFmtStereo, UserFmtDouble },
  1764. { AL_FORMAT_STEREO_IMA4, UserFmtStereo, UserFmtIMA4 },
  1765. { AL_FORMAT_STEREO_MULAW, UserFmtStereo, UserFmtMulaw },
  1766. { AL_FORMAT_STEREO_ALAW_EXT, UserFmtStereo, UserFmtAlaw },
  1767. { AL_FORMAT_REAR8, UserFmtRear, UserFmtUByte },
  1768. { AL_FORMAT_REAR16, UserFmtRear, UserFmtShort },
  1769. { AL_FORMAT_REAR32, UserFmtRear, UserFmtFloat },
  1770. { AL_FORMAT_REAR_MULAW, UserFmtRear, UserFmtMulaw },
  1771. { AL_FORMAT_QUAD8_LOKI, UserFmtQuad, UserFmtUByte },
  1772. { AL_FORMAT_QUAD16_LOKI, UserFmtQuad, UserFmtShort },
  1773. { AL_FORMAT_QUAD8, UserFmtQuad, UserFmtUByte },
  1774. { AL_FORMAT_QUAD16, UserFmtQuad, UserFmtShort },
  1775. { AL_FORMAT_QUAD32, UserFmtQuad, UserFmtFloat },
  1776. { AL_FORMAT_QUAD_MULAW, UserFmtQuad, UserFmtMulaw },
  1777. { AL_FORMAT_51CHN8, UserFmtX51, UserFmtUByte },
  1778. { AL_FORMAT_51CHN16, UserFmtX51, UserFmtShort },
  1779. { AL_FORMAT_51CHN32, UserFmtX51, UserFmtFloat },
  1780. { AL_FORMAT_51CHN_MULAW, UserFmtX51, UserFmtMulaw },
  1781. { AL_FORMAT_61CHN8, UserFmtX61, UserFmtUByte },
  1782. { AL_FORMAT_61CHN16, UserFmtX61, UserFmtShort },
  1783. { AL_FORMAT_61CHN32, UserFmtX61, UserFmtFloat },
  1784. { AL_FORMAT_61CHN_MULAW, UserFmtX61, UserFmtMulaw },
  1785. { AL_FORMAT_71CHN8, UserFmtX71, UserFmtUByte },
  1786. { AL_FORMAT_71CHN16, UserFmtX71, UserFmtShort },
  1787. { AL_FORMAT_71CHN32, UserFmtX71, UserFmtFloat },
  1788. { AL_FORMAT_71CHN_MULAW, UserFmtX71, UserFmtMulaw },
  1789. };
  1790. ALuint i;
  1791. for(i = 0;i < COUNTOF(list);i++)
  1792. {
  1793. if(list[i].format == format)
  1794. {
  1795. *chans = list[i].channels;
  1796. *type = list[i].type;
  1797. return AL_TRUE;
  1798. }
  1799. }
  1800. return AL_FALSE;
  1801. }
  1802. ALuint BytesFromFmt(enum FmtType type)
  1803. {
  1804. switch(type)
  1805. {
  1806. case FmtByte: return sizeof(ALbyte);
  1807. case FmtShort: return sizeof(ALshort);
  1808. case FmtFloat: return sizeof(ALfloat);
  1809. }
  1810. return 0;
  1811. }
  1812. ALuint ChannelsFromFmt(enum FmtChannels chans)
  1813. {
  1814. switch(chans)
  1815. {
  1816. case FmtMono: return 1;
  1817. case FmtStereo: return 2;
  1818. case FmtRear: return 2;
  1819. case FmtQuad: return 4;
  1820. case FmtX51: return 6;
  1821. case FmtX61: return 7;
  1822. case FmtX71: return 8;
  1823. }
  1824. return 0;
  1825. }
  1826. static ALboolean DecomposeFormat(ALenum format, enum FmtChannels *chans, enum FmtType *type)
  1827. {
  1828. static const struct {
  1829. ALenum format;
  1830. enum FmtChannels channels;
  1831. enum FmtType type;
  1832. } list[] = {
  1833. { AL_MONO8_SOFT, FmtMono, FmtByte },
  1834. { AL_MONO16_SOFT, FmtMono, FmtShort },
  1835. { AL_MONO32F_SOFT, FmtMono, FmtFloat },
  1836. { AL_STEREO8_SOFT, FmtStereo, FmtByte },
  1837. { AL_STEREO16_SOFT, FmtStereo, FmtShort },
  1838. { AL_STEREO32F_SOFT, FmtStereo, FmtFloat },
  1839. { AL_REAR8_SOFT, FmtRear, FmtByte },
  1840. { AL_REAR16_SOFT, FmtRear, FmtShort },
  1841. { AL_REAR32F_SOFT, FmtRear, FmtFloat },
  1842. { AL_FORMAT_QUAD8_LOKI, FmtQuad, FmtByte },
  1843. { AL_FORMAT_QUAD16_LOKI, FmtQuad, FmtShort },
  1844. { AL_QUAD8_SOFT, FmtQuad, FmtByte },
  1845. { AL_QUAD16_SOFT, FmtQuad, FmtShort },
  1846. { AL_QUAD32F_SOFT, FmtQuad, FmtFloat },
  1847. { AL_5POINT1_8_SOFT, FmtX51, FmtByte },
  1848. { AL_5POINT1_16_SOFT, FmtX51, FmtShort },
  1849. { AL_5POINT1_32F_SOFT, FmtX51, FmtFloat },
  1850. { AL_6POINT1_8_SOFT, FmtX61, FmtByte },
  1851. { AL_6POINT1_16_SOFT, FmtX61, FmtShort },
  1852. { AL_6POINT1_32F_SOFT, FmtX61, FmtFloat },
  1853. { AL_7POINT1_8_SOFT, FmtX71, FmtByte },
  1854. { AL_7POINT1_16_SOFT, FmtX71, FmtShort },
  1855. { AL_7POINT1_32F_SOFT, FmtX71, FmtFloat },
  1856. };
  1857. ALuint i;
  1858. for(i = 0;i < COUNTOF(list);i++)
  1859. {
  1860. if(list[i].format == format)
  1861. {
  1862. *chans = list[i].channels;
  1863. *type = list[i].type;
  1864. return AL_TRUE;
  1865. }
  1866. }
  1867. return AL_FALSE;
  1868. }
  1869. static ALboolean IsValidType(ALenum type)
  1870. {
  1871. switch(type)
  1872. {
  1873. case AL_BYTE_SOFT:
  1874. case AL_UNSIGNED_BYTE_SOFT:
  1875. case AL_SHORT_SOFT:
  1876. case AL_UNSIGNED_SHORT_SOFT:
  1877. case AL_INT_SOFT:
  1878. case AL_UNSIGNED_INT_SOFT:
  1879. case AL_FLOAT_SOFT:
  1880. case AL_DOUBLE_SOFT:
  1881. case AL_BYTE3_SOFT:
  1882. case AL_UNSIGNED_BYTE3_SOFT:
  1883. return AL_TRUE;
  1884. }
  1885. return AL_FALSE;
  1886. }
  1887. static ALboolean IsValidChannels(ALenum channels)
  1888. {
  1889. switch(channels)
  1890. {
  1891. case AL_MONO_SOFT:
  1892. case AL_STEREO_SOFT:
  1893. case AL_REAR_SOFT:
  1894. case AL_QUAD_SOFT:
  1895. case AL_5POINT1_SOFT:
  1896. case AL_6POINT1_SOFT:
  1897. case AL_7POINT1_SOFT:
  1898. return AL_TRUE;
  1899. }
  1900. return AL_FALSE;
  1901. }
  1902. /*
  1903. * ReleaseALBuffers()
  1904. *
  1905. * INTERNAL: Called to destroy any buffers that still exist on the device
  1906. */
  1907. ALvoid ReleaseALBuffers(ALCdevice *device)
  1908. {
  1909. ALsizei i;
  1910. for(i = 0;i < device->BufferMap.size;i++)
  1911. {
  1912. ALbuffer *temp = device->BufferMap.array[i].value;
  1913. device->BufferMap.array[i].value = NULL;
  1914. free(temp->data);
  1915. FreeThunkEntry(temp->id);
  1916. memset(temp, 0, sizeof(ALbuffer));
  1917. free(temp);
  1918. }
  1919. }