/* * Copyright (c) 1983-2023 Trevor Wishart and Composers Desktop Project Ltd * http://www.trevorwishart.co.uk * http://www.composersdesktop.com * This file is part of the CDP System. The CDP System is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. The CDP System is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with the CDP System; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #define CHAN_SRCHRANGE_F (4) #define DEFAULT_FORMANT_BANDS (4) #define MIN_TOOBIG_RATIO (1000.0) #define INANAL0 0 #define INANAL1 1 #define OUTANAL 2 #define SPECENVTOP 3 #define SPECENVFRQ 4 #define SPECENVPCH 5 #define SPECENVAMP 6 #define SPECENVAMP2 7 #define ACCUOCTS 8 #define TOP_OF_LOW_OCTAVE_BANDS 4 #define CHAN_ABOVE_LOW_OCTAVES 8 #ifdef unix #define round lround #endif char errstr[2400]; int anal_infiles = 1; int sloom = 0; int sloombatch = 0; const char* cdp_version = "7.1.0"; /* CDP LIBRARY FUNCTIONS TRANSFERRED HERE */ static int set_param_data(aplptr ap, int special_data,int maxparamcnt,int paramcnt,char *paramlist); static int set_vflgs(aplptr ap,char *optflags,int optcnt,char *optlist, char *varflags,int vflagcnt, int vparamcnt,char *varlist); static int setup_parameter_storage_and_constants(int storage_cnt,dataptr dz); static int initialise_is_int_and_no_brk_constants(int storage_cnt,dataptr dz); static int mark_parameter_types(dataptr dz,aplptr ap); static int establish_application(dataptr dz); static int application_init(dataptr dz); static int initialise_vflags(dataptr dz); static int setup_input_param_defaultval_stores(int tipc,aplptr ap); static int setup_and_init_input_param_activity(dataptr dz,int tipc); static int get_tk_cmdline_word(int *cmdlinecnt,char ***cmdline,char *q); static int assign_file_data_storage(int infilecnt,dataptr dz); /* CDP LIB FUNCTION MODIFIED TO AVOID CALLING setup_particular_application() */ static int parse_sloom_data(int argc,char *argv[],char ***cmdline,int *cmdlinecnt,dataptr dz); /* SIMPLIFICATION OF LIB FUNC TO APPLY TO JUST THIS FUNCTION */ static int parse_infile_and_check_type(char **cmdline,dataptr dz); static int handle_the_outfile(int *cmdlinecnt,char ***cmdline,int is_launched,dataptr dz); static int handle_the_extra_infile(char ***cmdline,int *cmdlinecnt,dataptr dz); static int open_the_outfile(dataptr dz); static int setup_the_application(dataptr dz); static int setup_the_param_ranges_and_defaults(dataptr dz); static int get_the_process_no(char *prog_identifier_from_cmdline,dataptr dz); static int get_the_mode_no(char *str, dataptr dz); static int setup_and_init_input_brktable_constants(dataptr dz,int brkcnt); /* BYPASS LIBRARY GLOBAL FUNCTION TO GO DIRECTLY TO SPECIFIC APPLIC FUNCTIONS */ static int spectwin(dataptr dz); static int allocate_spectwin_buffers(dataptr dz); static int extract_specenv(int bufptr_no,int storeno,dataptr dz); static int set_specenv_frqs(int arraycnt,dataptr dz); static int setup_octaveband_steps(double **interval,dataptr dz); static int setup_low_octave_bands(int arraycnt,dataptr dz); static int getspecenvamp(double *thisamp,float thisfrq,int storeno,dataptr dz); static int check_spectwin_param_validity_and_consistency(dataptr dz); /**************************************** MAIN *********************************************/ int main(int argc,char *argv[]) { int exit_status; dataptr dz = NULL; char **cmdline; int cmdlinecnt; //aplptr ap; int is_launched = FALSE; if(argc==2 && (strcmp(argv[1],"--version") == 0)) { fprintf(stdout,"%s\n",cdp_version); fflush(stdout); return 0; } /* CHECK FOR SOUNDLOOM */ if((sloom = sound_loom_in_use(&argc,&argv)) > 1) { sloom = 0; sloombatch = 1; } if(sflinit("cdp")){ sfperror("cdp: initialisation\n"); return(FAILED); } /* SET UP THE PRINCIPLE DATASTRUCTURE */ if((exit_status = establish_datastructure(&dz))<0) { // CDP LIB print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if(!sloom) { if(argc == 1) { usage1(); return(FAILED); } else if(argc == 2) { usage2(argv[1]); return(FAILED); } if((exit_status = make_initial_cmdline_check(&argc,&argv))<0) { // CDP LIB print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if(argc < 5) { sprintf(errstr,"Too few commandline parameters.\n"); return(FAILED); } cmdline = argv; cmdlinecnt = argc; if((get_the_process_no(argv[0],dz))<0) return(FAILED); cmdline++; cmdlinecnt--; dz->maxmode = 4; if((get_the_mode_no(cmdline[0],dz))<0) { if(!sloom) fprintf(stderr,"%s",errstr); return(FAILED); } cmdline++; cmdlinecnt--; if((exit_status = setup_the_application(dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if((exit_status = count_and_allocate_for_infiles(cmdlinecnt,cmdline,dz))<0) { // CDP LIB print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } } else { //parse_TK_data() = if((exit_status = parse_sloom_data(argc,argv,&cmdline,&cmdlinecnt,dz))<0) { exit_status = print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(exit_status); } } //ap = dz->application; // parse_infile_and_hone_type() = if((exit_status = parse_infile_and_check_type(cmdline,dz))<0) { exit_status = print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } // setup_param_ranges_and_defaults() = if((exit_status = setup_the_param_ranges_and_defaults(dz))<0) { exit_status = print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } // open_first_infile CDP LIB if((exit_status = open_first_infile(cmdline[0],dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } cmdlinecnt--; cmdline++; // handle_extra_infiles() = if((exit_status = handle_the_extra_infile(&cmdline,&cmdlinecnt,dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } // handle_outfile() = if((exit_status = handle_the_outfile(&cmdlinecnt,&cmdline,is_launched,dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } // handle_formants() redundant // handle_formant_quiksearch() redundant // handle_special_data() redundant except if((exit_status = read_parameters_and_flags(&cmdline,&cmdlinecnt,dz))<0) { // CDP LIB print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if((exit_status = check_spectwin_param_validity_and_consistency(dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } dz->extra_bufcnt = 0; dz->bptrcnt = 9; if((exit_status = establish_spec_bufptrs_and_extra_buffers(dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if((exit_status = allocate_spectwin_buffers(dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if((exit_status = open_the_outfile(dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } is_launched = TRUE; //param_preprocess() redundant if((exit_status = spectwin(dz))<0) { print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } if((exit_status = complete_output(dz))<0) { // CDP LIB print_messages_and_close_sndfiles(exit_status,is_launched,dz); return(FAILED); } exit_status = print_messages_and_close_sndfiles(FINISHED,is_launched,dz); // CDP LIB free(dz); return(SUCCEEDED); } /********************************************** REPLACED CDP LIB FUNCTIONS **********************************************/ /************************ HANDLE_THE_EXTRA_INFILE *********************/ int handle_the_extra_infile(char ***cmdline,int *cmdlinecnt,dataptr dz) { /* OPEN ONE EXTRA ANALFILE, CHECK COMPATIBILITY */ int exit_status; char *filename; fileptr fp2; int fileno = 1; double maxamp, maxloc; int maxrep; int getmax = 0, getmaxinfo = 0; infileptr ifp; fileptr fp1 = dz->infile; filename = (*cmdline)[0]; if((dz->ifd[fileno] = sndopenEx(filename,0,CDP_OPEN_RDONLY)) < 0) { sprintf(errstr,"cannot open input file %s to read data.\n",filename); return(DATA_ERROR); } if((ifp = (infileptr)malloc(sizeof(struct filedata)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY to store data on later infile. (1)\n"); return(MEMORY_ERROR); } if((fp2 = (fileptr)malloc(sizeof(struct fileprops)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY to store data on later infile. (2)\n"); return(MEMORY_ERROR); } if((exit_status = readhead(ifp,dz->ifd[1],filename,&maxamp,&maxloc,&maxrep,getmax,getmaxinfo))<0) return(exit_status); copy_to_fileptr(ifp,fp2); if(fp2->filetype != ANALFILE) { sprintf(errstr,"%s is not an analysis file.\n",filename); return(DATA_ERROR); } if(fp2->origstype != fp1->origstype) { sprintf(errstr,"Incompatible original-sample-type in input file %s.\n",filename); return(DATA_ERROR); } if(fp2->origrate != fp1->origrate) { sprintf(errstr,"Incompatible original-sample-rate in input file %s.\n",filename); return(DATA_ERROR); } if(fp2->arate != fp1->arate) { sprintf(errstr,"Incompatible analysis-sample-rate in input file %s.\n",filename); return(DATA_ERROR); } if(fp2->Mlen != fp1->Mlen) { sprintf(errstr,"Incompatible analysis-window-length in input file %s.\n",filename); return(DATA_ERROR); } if(fp2->Dfac != fp1->Dfac) { sprintf(errstr,"Incompatible decimation factor in input file %s.\n",filename); return(DATA_ERROR); } if(fp2->channels != fp1->channels) { sprintf(errstr,"Incompatible channel-count in input file %s.\n",filename); return(DATA_ERROR); } if((dz->insams[fileno] = sndsizeEx(dz->ifd[fileno]))<0) { /* FIND SIZE OF FILE */ sprintf(errstr, "Can't read size of input file %s.\n" "open_checktype_getsize_and_compareheader()\n",filename); return(PROGRAM_ERROR); } if(dz->insams[fileno]==0) { sprintf(errstr, "File %s contains no data.\n",filename); return(DATA_ERROR); } (*cmdline)++; (*cmdlinecnt)--; return(FINISHED); } /****************************** SET_PARAM_DATA *********************************/ int set_param_data(aplptr ap, int special_data,int maxparamcnt,int paramcnt,char *paramlist) { ap->special_data = (char)special_data; ap->param_cnt = (char)paramcnt; ap->max_param_cnt = (char)maxparamcnt; if(ap->max_param_cnt>0) { if((ap->param_list = (char *)malloc((size_t)(ap->max_param_cnt+1)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY: for param_list\n"); return(MEMORY_ERROR); } strcpy(ap->param_list,paramlist); } return(FINISHED); } /****************************** SET_VFLGS *********************************/ int set_vflgs (aplptr ap,char *optflags,int optcnt,char *optlist,char *varflags,int vflagcnt, int vparamcnt,char *varlist) { ap->option_cnt = (char) optcnt; /*RWD added cast */ if(optcnt) { if((ap->option_list = (char *)malloc((size_t)(optcnt+1)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY: for option_list\n"); return(MEMORY_ERROR); } strcpy(ap->option_list,optlist); if((ap->option_flags = (char *)malloc((size_t)(optcnt+1)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY: for option_flags\n"); return(MEMORY_ERROR); } strcpy(ap->option_flags,optflags); } ap->vflag_cnt = (char) vflagcnt; ap->variant_param_cnt = (char) vparamcnt; if(vflagcnt) { if((ap->variant_list = (char *)malloc((size_t)(vflagcnt+1)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY: for variant_list\n"); return(MEMORY_ERROR); } strcpy(ap->variant_list,varlist); if((ap->variant_flags = (char *)malloc((size_t)(vflagcnt+1)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY: for variant_flags\n"); return(MEMORY_ERROR); } strcpy(ap->variant_flags,varflags); } return(FINISHED); } /***************************** APPLICATION_INIT **************************/ int application_init(dataptr dz) { int exit_status; int storage_cnt; int tipc, brkcnt; aplptr ap = dz->application; if(ap->vflag_cnt>0) initialise_vflags(dz); tipc = ap->max_param_cnt + ap->option_cnt + ap->variant_param_cnt; ap->total_input_param_cnt = (char)tipc; if(tipc>0) { if((exit_status = setup_input_param_range_stores(tipc,ap))<0) return(exit_status); if((exit_status = setup_input_param_defaultval_stores(tipc,ap))<0) return(exit_status); if((exit_status = setup_and_init_input_param_activity(dz,tipc))<0) return(exit_status); } brkcnt = tipc; if(brkcnt>0) { if((exit_status = setup_and_init_input_brktable_constants(dz,brkcnt))<0) return(exit_status); } if((storage_cnt = tipc + ap->internal_param_cnt)>0) { if((exit_status = setup_parameter_storage_and_constants(storage_cnt,dz))<0) return(exit_status); if((exit_status = initialise_is_int_and_no_brk_constants(storage_cnt,dz))<0) return(exit_status); } if((exit_status = mark_parameter_types(dz,ap))<0) return(exit_status); // establish_infile_constants() replaced by dz->infilecnt = ONE_NONSND_FILE; //establish_bufptrs_and_extra_buffers(): return(FINISHED); } /******************************** SETUP_AND_INIT_INPUT_BRKTABLE_CONSTANTS ********************************/ int setup_and_init_input_brktable_constants(dataptr dz,int brkcnt) { int n; if((dz->brk = (double **)malloc(brkcnt * sizeof(double *)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 1\n"); return(MEMORY_ERROR); } if((dz->brkptr = (double **)malloc(brkcnt * sizeof(double *)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 6\n"); return(MEMORY_ERROR); } if((dz->brksize = (int *)malloc(brkcnt * sizeof(int)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 2\n"); return(MEMORY_ERROR); } if((dz->firstval = (double *)malloc(brkcnt * sizeof(double)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 3\n"); return(MEMORY_ERROR); } if((dz->lastind = (double *)malloc(brkcnt * sizeof(double)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 4\n"); return(MEMORY_ERROR); } if((dz->lastval = (double *)malloc(brkcnt * sizeof(double)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 5\n"); return(MEMORY_ERROR); } if((dz->brkinit = (int *)malloc(brkcnt * sizeof(int)))==NULL) { sprintf(errstr,"setup_and_init_input_brktable_constants(): 7\n"); return(MEMORY_ERROR); } for(n=0;nbrk[n] = NULL; dz->brkptr[n] = NULL; dz->brkinit[n] = 0; dz->brksize[n] = 0; } return(FINISHED); } /********************** SETUP_PARAMETER_STORAGE_AND_CONSTANTS ********************/ /* RWD mallo changed to calloc; helps debug verison run as release! */ int setup_parameter_storage_and_constants(int storage_cnt,dataptr dz) { if((dz->param = (double *)calloc(storage_cnt, sizeof(double)))==NULL) { sprintf(errstr,"setup_parameter_storage_and_constants(): 1\n"); return(MEMORY_ERROR); } if((dz->iparam = (int *)calloc(storage_cnt, sizeof(int) ))==NULL) { sprintf(errstr,"setup_parameter_storage_and_constants(): 2\n"); return(MEMORY_ERROR); } if((dz->is_int = (char *)calloc(storage_cnt, sizeof(char)))==NULL) { sprintf(errstr,"setup_parameter_storage_and_constants(): 3\n"); return(MEMORY_ERROR); } if((dz->no_brk = (char *)calloc(storage_cnt, sizeof(char)))==NULL) { sprintf(errstr,"setup_parameter_storage_and_constants(): 5\n"); return(MEMORY_ERROR); } return(FINISHED); } /************** INITIALISE_IS_INT_AND_NO_BRK_CONSTANTS *****************/ int initialise_is_int_and_no_brk_constants(int storage_cnt,dataptr dz) { int n; for(n=0;nis_int[n] = (char)0; dz->no_brk[n] = (char)0; } return(FINISHED); } /***************************** MARK_PARAMETER_TYPES **************************/ int mark_parameter_types(dataptr dz,aplptr ap) { int n, m; /* PARAMS */ for(n=0;nmax_param_cnt;n++) { switch(ap->param_list[n]) { case('0'): break; /* dz->is_active[n] = 0 is default */ case('i'): dz->is_active[n] = (char)1; dz->is_int[n] = (char)1;dz->no_brk[n] = (char)1; break; case('I'): dz->is_active[n] = (char)1; dz->is_int[n] = (char)1; break; case('d'): dz->is_active[n] = (char)1; dz->no_brk[n] = (char)1; break; case('D'): dz->is_active[n] = (char)1; /* normal case: double val or brkpnt file */ break; default: sprintf(errstr,"Programming error: invalid parameter type in mark_parameter_types()\n"); return(PROGRAM_ERROR); } } /* OPTIONS */ for(n=0,m=ap->max_param_cnt;noption_cnt;n++,m++) { switch(ap->option_list[n]) { case('i'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; dz->no_brk[m] = (char)1; break; case('I'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; break; case('d'): dz->is_active[m] = (char)1; dz->no_brk[m] = (char)1; break; case('D'): dz->is_active[m] = (char)1; /* normal case: double val or brkpnt file */ break; default: sprintf(errstr,"Programming error: invalid option type in mark_parameter_types()\n"); return(PROGRAM_ERROR); } } /* VARIANTS */ for(n=0,m=ap->max_param_cnt + ap->option_cnt;n < ap->variant_param_cnt; n++, m++) { switch(ap->variant_list[n]) { case('0'): break; case('i'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; dz->no_brk[m] = (char)1; break; case('I'): dz->is_active[m] = (char)1; dz->is_int[m] = (char)1; break; case('d'): dz->is_active[m] = (char)1; dz->no_brk[m] = (char)1; break; case('D'): dz->is_active[m] = (char)1; /* normal case: double val or brkpnt file */ break; default: sprintf(errstr,"Programming error: invalid variant type in mark_parameter_types()\n"); return(PROGRAM_ERROR); } } /* INTERNAL */ for(n=0, m=ap->max_param_cnt + ap->option_cnt + ap->variant_param_cnt; ninternal_param_cnt; n++,m++) { switch(ap->internal_param_list[n]) { case('0'): break; /* dummy variables: variables not used: but important for internal paream numbering!! */ case('i'): dz->is_int[m] = (char)1; dz->no_brk[m] = (char)1; break; case('d'): dz->no_brk[m] = (char)1; break; default: sprintf(errstr,"Programming error: invalid internal param type in mark_parameter_types()\n"); return(PROGRAM_ERROR); } } return(FINISHED); } /***************************** HANDLE_THE_OUTFILE **************************/ int handle_the_outfile(int *cmdlinecnt,char ***cmdline,int is_launched,dataptr dz) { char *filename = (*cmdline)[0], *p; strcpy(dz->outfilename,filename); p = dz->outfilename + strlen(dz->outfilename); p--; while(p > dz->outfilename) { if(*p == '.') { *p = ENDOFSTR; break; } p--; } strcat(dz->outfilename,".ana"); (*cmdline)++; (*cmdlinecnt)--; return(FINISHED); } /***************************** OPEN_THE_OUTFILE **************************/ int open_the_outfile(dataptr dz) { int exit_status; if((exit_status = create_sized_outfile(dz->outfilename,dz))<0) return(exit_status); return(FINISHED); } /***************************** ESTABLISH_APPLICATION **************************/ int establish_application(dataptr dz) { aplptr ap; if((dz->application = (aplptr)malloc(sizeof (struct applic)))==NULL) { sprintf(errstr,"establish_application()\n"); return(MEMORY_ERROR); } ap = dz->application; memset((char *)ap,0,sizeof(struct applic)); return(FINISHED); } /************************* INITIALISE_VFLAGS *************************/ int initialise_vflags(dataptr dz) { int n; if((dz->vflag = (char *)malloc(dz->application->vflag_cnt * sizeof(char)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY: vflag store,\n"); return(MEMORY_ERROR); } for(n=0;napplication->vflag_cnt;n++) dz->vflag[n] = FALSE; return FINISHED; } /************************* SETUP_INPUT_PARAM_DEFAULTVALS *************************/ int setup_input_param_defaultval_stores(int tipc,aplptr ap) { int n; if((ap->default_val = (double *)malloc(tipc * sizeof(double)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY for application default values store\n"); return(MEMORY_ERROR); } for(n=0;ndefault_val[n] = 0.0; return(FINISHED); } /***************************** SETUP_AND_INIT_INPUT_PARAM_ACTIVITY **************************/ int setup_and_init_input_param_activity(dataptr dz,int tipc) { int n; if((dz->is_active = (char *)malloc((size_t)tipc))==NULL) { sprintf(errstr,"setup_and_init_input_param_activity()\n"); return(MEMORY_ERROR); } for(n=0;nis_active[n] = (char)0; return(FINISHED); } /************************* SETUP_THE_APPLICATION *******************/ int setup_the_application(dataptr dz) { int exit_status; aplptr ap; if((exit_status = establish_application(dz))<0) // GLOBAL return(FAILED); ap = dz->application; // SEE parstruct FOR EXPLANATION of next 2 functions if((exit_status = set_param_data(ap,0,0,0,""))<0) return(FAILED); if((exit_status = set_vflgs(ap,"efdsr",5,"DDidd","",0,0,""))<0) return(FAILED); // set_legal_infile_structure --> dz->has_otherfile = FALSE; // assign_process_logic --> dz->input_data_type = TWO_ANALFILES; dz->process_type = MIN_ANALFILE; dz->outfiletype = ANALFILE_OUT; return application_init(dz); //GLOBAL } /************************* PARSE_INFILE_AND_CHECK_TYPE *******************/ int parse_infile_and_check_type(char **cmdline,dataptr dz) { int exit_status; infileptr infile_info; if(!sloom) { if((infile_info = (infileptr)malloc(sizeof(struct filedata)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY for infile structure to test file data."); return(MEMORY_ERROR); } else if((exit_status = cdparse(cmdline[0],infile_info))<0) { sprintf(errstr,"Failed tp parse input file %s\n",cmdline[0]); return(PROGRAM_ERROR); } else if(infile_info->filetype != ANALFILE) { sprintf(errstr,"File %s is not of correct type\n",cmdline[0]); return(DATA_ERROR); } else if((exit_status = copy_parse_info_to_main_structure(infile_info,dz))<0) { sprintf(errstr,"Failed to copy file parsing information\n"); return(PROGRAM_ERROR); } free(infile_info); } dz->clength = dz->wanted / 2; dz->nyquist = dz->infile->origrate/2.0; dz->chwidth = dz->nyquist/(double)(dz->clength-1); dz->halfchwidth = dz->chwidth/2.0; return(FINISHED); } /************************* SETUP_THE_PARAM_RANGES_AND_DEFAULTS *******************/ int setup_the_param_ranges_and_defaults(dataptr dz) { int exit_status; aplptr ap = dz->application; // set_param_ranges() ap->total_input_param_cnt = (char)(ap->max_param_cnt + ap->option_cnt + ap->variant_param_cnt); // NB total_input_param_cnt is > 0 !!!s if((exit_status = setup_input_param_range_stores(ap->total_input_param_cnt,ap))<0) return(FAILED); // get_param_ranges() ap->lo[0] = 0; ap->hi[0] = 1; ap->default_val[0] = 1; ap->lo[1] = 0; ap->hi[1] = 1; ap->default_val[1] = 1; ap->lo[2] = 0; ap->hi[2] = 8; ap->default_val[2] = 0; ap->lo[3] = 0; ap->hi[3] = 48; ap->default_val[3] = 0; ap->lo[4] = 0; ap->hi[4] = 1; ap->default_val[4] = 1; if(!sloom) put_default_vals_in_all_params(dz); return(FINISHED); } /********************************* PARSE_SLOOM_DATA *********************************/ int parse_sloom_data(int argc,char *argv[],char ***cmdline,int *cmdlinecnt,dataptr dz) { int exit_status; int cnt = 1, infilecnt; int filesize, insams, inbrksize; double dummy; int true_cnt = 0; //aplptr ap; while(cnt<=PRE_CMDLINE_DATACNT) { if(cnt > argc) { sprintf(errstr,"Insufficient data sent from TK\n"); return(DATA_ERROR); } switch(cnt) { case(1): if(sscanf(argv[cnt],"%d",&dz->process)!=1) { sprintf(errstr,"Cannot read process no. sent from TK\n"); return(DATA_ERROR); } break; case(2): if(sscanf(argv[cnt],"%d",&dz->mode)!=1) { sprintf(errstr,"Cannot read mode no. sent from TK\n"); return(DATA_ERROR); } if(dz->mode > 0) dz->mode--; //setup_particular_application() = if((exit_status = setup_the_application(dz))<0) return(exit_status); //ap = dz->application; break; case(3): if(sscanf(argv[cnt],"%d",&infilecnt)!=1) { sprintf(errstr,"Cannot read infilecnt sent from TK\n"); return(DATA_ERROR); } if(infilecnt < 1) { true_cnt = cnt + 1; cnt = PRE_CMDLINE_DATACNT; /* force exit from loop after assign_file_data_storage */ } if((exit_status = assign_file_data_storage(infilecnt,dz))<0) return(exit_status); break; case(INPUT_FILETYPE+4): if(sscanf(argv[cnt],"%d",&dz->infile->filetype)!=1) { sprintf(errstr,"Cannot read filetype sent from TK (%s)\n",argv[cnt]); return(DATA_ERROR); } break; case(INPUT_FILESIZE+4): if(sscanf(argv[cnt],"%d",&filesize)!=1) { sprintf(errstr,"Cannot read infilesize sent from TK\n"); return(DATA_ERROR); } dz->insams[0] = filesize; break; case(INPUT_INSAMS+4): if(sscanf(argv[cnt],"%d",&insams)!=1) { sprintf(errstr,"Cannot read insams sent from TK\n"); return(DATA_ERROR); } dz->insams[0] = insams; break; case(INPUT_SRATE+4): if(sscanf(argv[cnt],"%d",&dz->infile->srate)!=1) { sprintf(errstr,"Cannot read srate sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_CHANNELS+4): if(sscanf(argv[cnt],"%d",&dz->infile->channels)!=1) { sprintf(errstr,"Cannot read channels sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_STYPE+4): if(sscanf(argv[cnt],"%d",&dz->infile->stype)!=1) { sprintf(errstr,"Cannot read stype sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_ORIGSTYPE+4): if(sscanf(argv[cnt],"%d",&dz->infile->origstype)!=1) { sprintf(errstr,"Cannot read origstype sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_ORIGRATE+4): if(sscanf(argv[cnt],"%d",&dz->infile->origrate)!=1) { sprintf(errstr,"Cannot read origrate sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_MLEN+4): if(sscanf(argv[cnt],"%d",&dz->infile->Mlen)!=1) { sprintf(errstr,"Cannot read Mlen sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_DFAC+4): if(sscanf(argv[cnt],"%d",&dz->infile->Dfac)!=1) { sprintf(errstr,"Cannot read Dfac sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_ORIGCHANS+4): if(sscanf(argv[cnt],"%d",&dz->infile->origchans)!=1) { sprintf(errstr,"Cannot read origchans sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_SPECENVCNT+4): if(sscanf(argv[cnt],"%d",&dz->infile->specenvcnt)!=1) { sprintf(errstr,"Cannot read specenvcnt sent from TK\n"); return(DATA_ERROR); } dz->specenvcnt = dz->infile->specenvcnt; break; case(INPUT_WANTED+4): if(sscanf(argv[cnt],"%d",&dz->wanted)!=1) { sprintf(errstr,"Cannot read wanted sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_WLENGTH+4): if(sscanf(argv[cnt],"%d",&dz->wlength)!=1) { sprintf(errstr,"Cannot read wlength sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_OUT_CHANS+4): if(sscanf(argv[cnt],"%d",&dz->out_chans)!=1) { sprintf(errstr,"Cannot read out_chans sent from TK\n"); return(DATA_ERROR); } break; /* RWD these chanegs to samps - tk will have to deal with that! */ case(INPUT_DESCRIPTOR_BYTES+4): if(sscanf(argv[cnt],"%d",&dz->descriptor_samps)!=1) { sprintf(errstr,"Cannot read descriptor_samps sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_IS_TRANSPOS+4): if(sscanf(argv[cnt],"%d",&dz->is_transpos)!=1) { sprintf(errstr,"Cannot read is_transpos sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_COULD_BE_TRANSPOS+4): if(sscanf(argv[cnt],"%d",&dz->could_be_transpos)!=1) { sprintf(errstr,"Cannot read could_be_transpos sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_COULD_BE_PITCH+4): if(sscanf(argv[cnt],"%d",&dz->could_be_pitch)!=1) { sprintf(errstr,"Cannot read could_be_pitch sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_DIFFERENT_SRATES+4): if(sscanf(argv[cnt],"%d",&dz->different_srates)!=1) { sprintf(errstr,"Cannot read different_srates sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_DUPLICATE_SNDS+4): if(sscanf(argv[cnt],"%d",&dz->duplicate_snds)!=1) { sprintf(errstr,"Cannot read duplicate_snds sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_BRKSIZE+4): if(sscanf(argv[cnt],"%d",&inbrksize)!=1) { sprintf(errstr,"Cannot read brksize sent from TK\n"); return(DATA_ERROR); } if(inbrksize > 0) { switch(dz->input_data_type) { case(WORDLIST_ONLY): break; case(PITCH_AND_PITCH): case(PITCH_AND_TRANSPOS): case(TRANSPOS_AND_TRANSPOS): dz->tempsize = inbrksize; break; case(BRKFILES_ONLY): case(UNRANGED_BRKFILE_ONLY): case(DB_BRKFILES_ONLY): case(ALL_FILES): case(ANY_NUMBER_OF_ANY_FILES): if(dz->extrabrkno < 0) { sprintf(errstr,"Storage location number for brktable not established by CDP.\n"); return(DATA_ERROR); } if(dz->brksize == NULL) { sprintf(errstr,"CDP has not established storage space for input brktable.\n"); return(PROGRAM_ERROR); } dz->brksize[dz->extrabrkno] = inbrksize; break; default: sprintf(errstr,"TK sent brktablesize > 0 for input_data_type [%d] not using brktables.\n", dz->input_data_type); return(PROGRAM_ERROR); } break; } break; case(INPUT_NUMSIZE+4): if(sscanf(argv[cnt],"%d",&dz->numsize)!=1) { sprintf(errstr,"Cannot read numsize sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_LINECNT+4): if(sscanf(argv[cnt],"%d",&dz->linecnt)!=1) { sprintf(errstr,"Cannot read linecnt sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_ALL_WORDS+4): if(sscanf(argv[cnt],"%d",&dz->all_words)!=1) { sprintf(errstr,"Cannot read all_words sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_ARATE+4): if(sscanf(argv[cnt],"%f",&dz->infile->arate)!=1) { sprintf(errstr,"Cannot read arate sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_FRAMETIME+4): if(sscanf(argv[cnt],"%lf",&dummy)!=1) { sprintf(errstr,"Cannot read frametime sent from TK\n"); return(DATA_ERROR); } dz->frametime = (float)dummy; break; case(INPUT_WINDOW_SIZE+4): if(sscanf(argv[cnt],"%f",&dz->infile->window_size)!=1) { sprintf(errstr,"Cannot read window_size sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_NYQUIST+4): if(sscanf(argv[cnt],"%lf",&dz->nyquist)!=1) { sprintf(errstr,"Cannot read nyquist sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_DURATION+4): if(sscanf(argv[cnt],"%lf",&dz->duration)!=1) { sprintf(errstr,"Cannot read duration sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_MINBRK+4): if(sscanf(argv[cnt],"%lf",&dz->minbrk)!=1) { sprintf(errstr,"Cannot read minbrk sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_MAXBRK+4): if(sscanf(argv[cnt],"%lf",&dz->maxbrk)!=1) { sprintf(errstr,"Cannot read maxbrk sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_MINNUM+4): if(sscanf(argv[cnt],"%lf",&dz->minnum)!=1) { sprintf(errstr,"Cannot read minnum sent from TK\n"); return(DATA_ERROR); } break; case(INPUT_MAXNUM+4): if(sscanf(argv[cnt],"%lf",&dz->maxnum)!=1) { sprintf(errstr,"Cannot read maxnum sent from TK\n"); return(DATA_ERROR); } break; default: sprintf(errstr,"case switch item missing: parse_sloom_data()\n"); return(PROGRAM_ERROR); } cnt++; } if(cnt!=PRE_CMDLINE_DATACNT+1) { sprintf(errstr,"Insufficient pre-cmdline params sent from TK\n"); return(DATA_ERROR); } if(true_cnt) cnt = true_cnt; *cmdlinecnt = 0; while(cnt < argc) { if((exit_status = get_tk_cmdline_word(cmdlinecnt,cmdline,argv[cnt]))<0) return(exit_status); cnt++; } return(FINISHED); } /********************************* GET_TK_CMDLINE_WORD *********************************/ int get_tk_cmdline_word(int *cmdlinecnt,char ***cmdline,char *q) { if(*cmdlinecnt==0) { if((*cmdline = (char **)malloc(sizeof(char *)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY for TK cmdline array.\n"); return(MEMORY_ERROR); } } else { if((*cmdline = (char **)realloc(*cmdline,((*cmdlinecnt)+1) * sizeof(char *)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY for TK cmdline array.\n"); return(MEMORY_ERROR); } } if(((*cmdline)[*cmdlinecnt] = (char *)malloc((strlen(q) + 1) * sizeof(char)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY for TK cmdline item %d.\n",(*cmdlinecnt)+1); return(MEMORY_ERROR); } strcpy((*cmdline)[*cmdlinecnt],q); (*cmdlinecnt)++; return(FINISHED); } /****************************** ASSIGN_FILE_DATA_STORAGE *********************************/ int assign_file_data_storage(int infilecnt,dataptr dz) { int exit_status; int no_sndfile_system_files = FALSE; dz->infilecnt = infilecnt; if((exit_status = allocate_filespace(dz))<0) return(exit_status); if(no_sndfile_system_files) dz->infilecnt = 0; return(FINISHED); } /************************* redundant functions: to ensure libs compile OK *******************/ int assign_process_logic(dataptr dz) { return(FINISHED); } void set_legal_infile_structure(dataptr dz) {} int set_legal_internalparam_structure(int process,int mode,aplptr ap) { return(FINISHED); } int setup_internal_arrays_and_array_pointers(dataptr dz) { return(FINISHED); } int establish_bufptrs_and_extra_buffers(dataptr dz) { return(FINISHED); } int get_process_no(char *prog_identifier_from_cmdline,dataptr dz) { return(FINISHED); } int read_special_data(char *str,dataptr dz) { return(FINISHED); } int inner_loop(int *peakscore,int *descnt,int *in_start_portion,int *least,int *pitchcnt,int windows_in_buf,dataptr dz) { return FINISHED; } /********************************************************************************************/ int get_the_process_no(char *prog_identifier_from_cmdline,dataptr dz) { if (!strcmp(prog_identifier_from_cmdline,"spectwin")) dz->process = SPECTWIN; else { sprintf(errstr,"Unknown program identification string '%s'\n",prog_identifier_from_cmdline); return(USAGE_ONLY); } return(FINISHED); } /******************************** USAGE1 ********************************/ int usage1(void) { return(usage2("spectwin")); } /******************************** USAGE2 ********************************/ int usage2(char *str) { if(!strcmp(str,"spectwin")) { fprintf(stdout, "USAGE: spectwin spectwin\n" " 1-4 inanal1 inanal2 outanal [-ffrqint] [-eenvint] [-ddupl -sstep -rdec]\n" "\n" "FRQINT Dominance of spectral freqs of infile2 (range 0-1: dflt 1.0).\n" "ENVINT Dominance of spectral envelope of infile2 (range 0-1: dflt 1.0).\n" "DUPL Duplicate original sound-1 \"dupl\" times, at higher pitches.\n" "STEP pitchstep (semitones) at each duplication.\n" "DEC Level multiplier from one transposition to next, in duplications.\n" "\n" "MODE 1 Formant envelope of file 1 v Formant envelope of file 2.\n" "MODE 2 Formant envelope of file 1 v Total envelope of file 2.\n" "MODE 3 Total envelope of file 1 v Formant envelope of file 2.\n" "MODE 4 Total envelope of file 1 v total envelope of file 2.\n" "\n"); } else fprintf(stdout,"Unknown option '%s'\n",str); return(USAGE_ONLY); } int usage3(char *str1,char *str2) { fprintf(stderr,"Insufficient parameters on command line.\n"); return(USAGE_ONLY); } /************************ SPECTWIN *********************/ int spectwin(dataptr dz) { int exit_status, cc, vc, n, chan, newcc; double fi = dz->param[TWIN_FRQINTP], ei = dz->param[TWIN_ENVINTP]; float *ibuf0 = dz->flbufptr[INANAL0], *ibuf1 = dz->flbufptr[INANAL1], *obuf = dz->flbufptr[OUTANAL]; float *accu = dz->flbufptr[ACCUOCTS]; double thisamp0, thisamp1, rolloff, frqmult; float amp, frq; int sampsread0, sampsread1; int OK = 1; dz->total_windows = 0; if(sloom) dz->total_samps_read = 0L; dz->time = 0.0f; while(OK) { if((sampsread0 = fgetfbufEx(ibuf0, dz->buflen,dz->ifd[0],0)) < 0) { sprintf(errstr,"Can't read samples from input soundfile 1.\n"); return(SYSTEM_ERROR); } rectify_window(ibuf0,dz); if(dz->iparam[2] > 0) { memcpy((char *)accu,(char *)ibuf0,dz->buflen * sizeof(float)); for(cc=0,vc=0;cc clength;cc++,vc+=2) { amp = ibuf0[AMPP]; rolloff = dz->param[4]; for(n = 1;n <= dz->iparam[2];n++) { frqmult = pow(2.0,((dz->param[3] * n)/SEMITONES_PER_OCTAVE)); frq = (float)(ibuf0[FREQ] * frqmult); if(frq >= dz->nyquist) break; chan = (int)floor(frq/dz->chwidth); newcc = chan * 2; if(amp * rolloff > accu[newcc]) { accu[newcc] = amp; accu[newcc+1] = frq; } rolloff *= dz->param[4]; } } memcpy((char *)ibuf0,(char *)accu,dz->buflen * sizeof(float)); } if((sampsread1 = fgetfbufEx(ibuf1, dz->buflen,dz->ifd[1],0)) < 0) { sprintf(errstr,"Can't read samples from input soundfile 2.\n"); return(SYSTEM_ERROR); } dz->ssampsread = min(sampsread0,sampsread1); dz->samps_left -= dz->ssampsread; dz->total_samps_read += dz->ssampsread; if(dz->ssampsread <= 0) break; rectify_window(ibuf1,dz); if(dz->total_windows==0) memset((char *)obuf,0,dz->buflen * sizeof(float)); else { if((exit_status = read_values_from_all_existing_brktables(dz->time,dz))<0) return(exit_status); switch(dz->mode) { case(0): if((exit_status = extract_specenv(0,0,dz))<0) return exit_status; if((exit_status = extract_specenv(1,1,dz))<0) return exit_status; for(cc=0,vc=0;cc clength;cc++,vc+=2) { if((exit_status= getspecenvamp(&thisamp0,ibuf0[FREQ],0,dz)) < 0) return exit_status; if((exit_status= getspecenvamp(&thisamp1,ibuf1[FREQ],1,dz)) < 0) return exit_status; obuf[AMPP] = (float)((thisamp0 * (1-ei)) + (thisamp1 * ei)); obuf[FREQ] = (float)((ibuf0[FREQ] * (1-fi)) + (ibuf1[FREQ] * fi)); } break; case(1): if((exit_status = extract_specenv(0,0,dz))<0) return exit_status; for(cc=0,vc=0;cc clength;cc++,vc+=2) { if((exit_status= getspecenvamp(&thisamp0,ibuf0[FREQ],0,dz)) < 0) return exit_status; obuf[AMPP] = (float)((thisamp0 * (1-ei)) + (ibuf1[AMPP] * ei)); obuf[FREQ] = (float)((ibuf0[FREQ] * (1-fi)) + (ibuf1[FREQ] * fi)); } break; case(2): if((exit_status = extract_specenv(1,1,dz))<0) return exit_status; for(cc=0,vc=0;cc clength;cc++,vc+=2) { if((exit_status= getspecenvamp(&thisamp1,ibuf1[FREQ],1,dz)) < 0) return exit_status; obuf[AMPP] = (float)((ibuf0[AMPP] * (1-ei)) + (thisamp1 * ei)); obuf[FREQ] = (float)((ibuf0[FREQ] * (1-fi)) + (ibuf1[FREQ] * fi)); } break; case(3): for(cc=0,vc=0;cc clength;cc++,vc+=2) { obuf[AMPP] = (float)((ibuf0[AMPP] * (1-ei)) + (ibuf1[AMPP] * ei)); obuf[FREQ] = (float)((ibuf0[FREQ] * (1-fi)) + (ibuf1[FREQ] * fi)); } break; } } if((exit_status = write_samps(obuf,dz->buflen,dz))<0) return(exit_status); dz->total_windows++; dz->time = (float)(dz->time + dz->frametime); } return(FINISHED); } /************************ GET_THE_MODE_NO *********************/ int get_the_mode_no(char *str, dataptr dz) { if(sscanf(str,"%d",&dz->mode)!=1) { sprintf(errstr,"Cannot read mode of program.\n"); return(USAGE_ONLY); } if(dz->mode <= 0 || dz->mode > dz->maxmode) { sprintf(errstr,"Program mode value [%d] is out of range [1 - %d].\n",dz->mode,dz->maxmode); return(USAGE_ONLY); } dz->mode--; /* CHANGE TO INTERNAL REPRESENTATION OF MODE NO */ return(FINISHED); } /********************** EXTRACT_SPECENV *******************/ int extract_specenv(int bufptr_no,int storeno,dataptr dz) /* bufptr_no = flbufptr number (usually 0) */ { int n, cc, vc, specenvcnt_less_one; int botchan, topchan; double botfreq, topfreq; double bwidth_in_chans; float *ampstore; switch(storeno) { case(0): ampstore = dz->specenvamp; break; case(1): ampstore = dz->specenvamp2; break; default: sprintf(errstr,"Unknown storenumber in extract_specenv()\n"); return(PROGRAM_ERROR); } specenvcnt_less_one = dz->infile->specenvcnt - 1; vc = 0; for(n=0;nbuflen;n++) ampstore[n] = (float)0.0; topfreq = 0.0f; n = 0; while(n < specenvcnt_less_one) { botfreq = topfreq; botchan = (int)((botfreq + dz->halfchwidth)/dz->chwidth); /* TRUNCATE */ botchan -= CHAN_SRCHRANGE_F; botchan = max(botchan,0); topfreq = dz->specenvtop[n]; topchan = (int)((topfreq + dz->halfchwidth)/dz->chwidth); /* TRUNCATE */ topchan += CHAN_SRCHRANGE_F; topchan = min(topchan,dz->clength); for(cc = botchan,vc = botchan * 2; cc < topchan; cc++,vc += 2) { if(dz->flbufptr[bufptr_no][FREQ] >= botfreq && dz->flbufptr[bufptr_no][FREQ] < topfreq) ampstore[n] = (float)(ampstore[n] + dz->flbufptr[bufptr_no][AMPP]); } bwidth_in_chans = (double)(topfreq - botfreq)/dz->chwidth; ampstore[n] = (float)(ampstore[n]/bwidth_in_chans); n++; } return(FINISHED); } /*************************** ALLOCATE_ANALDATA_PLUS_FORMANTDATA_BUFFER ****************************/ int allocate_spectwin_buffers(dataptr dz) { int exit_status, n; /*int cnt = 0;*/ if(dz->bptrcnt < 9) { sprintf(errstr,"Insufficient bufptrs established in allocate_analdata_plus_formantdata_buffer()\n"); return(PROGRAM_ERROR); } dz->buflen = dz->wanted; if((dz->bigfbuf = (float*)malloc(dz->buflen * dz->bptrcnt * sizeof(float)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY for sound buffers.\n"); return(MEMORY_ERROR); } dz->big_fsize = dz->buflen; dz->flbufptr[0] = dz->bigfbuf; for(n = 1;n < 9; n++) dz->flbufptr[n] = dz->flbufptr[n-1] + dz->buflen; dz->specenvtop = dz->flbufptr[SPECENVTOP]; dz->specenvfrq = dz->flbufptr[SPECENVFRQ]; dz->specenvpch = dz->flbufptr[SPECENVPCH]; dz->specenvamp = dz->flbufptr[SPECENVAMP]; dz->specenvamp2 = dz->flbufptr[SPECENVAMP2]; memset((char *)dz->specenvpch, 0,dz->buflen * sizeof(float)); memset((char *)dz->specenvfrq, 0,dz->buflen * sizeof(float)); memset((char *)dz->specenvtop, 0,dz->buflen * sizeof(float)); memset((char *)dz->specenvamp, 0,dz->buflen * sizeof(float)); memset((char *)dz->specenvamp2,0,dz->buflen * sizeof(float)); dz->clength = dz->infile->channels/2; if((exit_status = set_specenv_frqs(dz->clength + 1,dz))<0) return(exit_status); return(FINISHED); } /************************ SET_SPECENV_FRQS ************************ * * FREQWISE BANDS = number of channels for each specenv point * PICHWISE BANDS = number of points per octave */ int set_specenv_frqs(int arraycnt,dataptr dz) { int exit_status; double bandbot, *interval; int m, n, k = 0, cc; dz->formant_bands = DEFAULT_FORMANT_BANDS; if((exit_status = setup_octaveband_steps(&interval,dz))<0) return(exit_status); if((exit_status = setup_low_octave_bands(arraycnt,dz))<0) return(exit_status); k = TOP_OF_LOW_OCTAVE_BANDS; cc = CHAN_ABOVE_LOW_OCTAVES; while(cc <= dz->clength) { m = 0; if((bandbot = dz->chwidth * (double)cc) >= dz->nyquist) break; for(n=0;nformant_bands;n++) { if(k >= arraycnt) { sprintf(errstr,"Formant array too small: set_specenv_frqs()\n"); return(PROGRAM_ERROR); } dz->specenvfrq[k] = (float)(bandbot * interval[m++]); dz->specenvpch[k] = (float)log10(dz->specenvfrq[k]); dz->specenvtop[k++] = (float)(bandbot * interval[m++]); } cc *= 2; /* 8-16: 16-32: 32-64 etc as 8vas, then split into bands */ } dz->specenvfrq[k] = (float)dz->nyquist; dz->specenvpch[k] = (float)log10(dz->nyquist); dz->specenvtop[k] = (float)dz->nyquist; k++; dz->infile->specenvcnt = k; return(FINISHED); } /************************* SETUP_OCTAVEBAND_STEPS ************************/ int setup_octaveband_steps(double **interval,dataptr dz) { double octave_step; int n = 1, m = 0, halfbands_per_octave = dz->formant_bands * 2; if((*interval = (double *)malloc(halfbands_per_octave * sizeof(double)))==NULL) { sprintf(errstr,"INSUFFICIENT MEMORY establishing interval array for formants.\n"); return(MEMORY_ERROR); } while(n < halfbands_per_octave) { octave_step = (double)n++/(double)halfbands_per_octave; (*interval)[m++] = pow(2.0,octave_step); } (*interval)[m] = 2.0; return(FINISHED); } /************************ SETUP_LOW_OCTAVE_BANDS *********************** * * Lowest PVOC channels span larger freq steps and therefore we must * group them in octave bands, rather than in anything smaller. */ int setup_low_octave_bands(int arraycnt,dataptr dz) { if(arraycnt < LOW_OCTAVE_BANDS) { sprintf(errstr,"Insufficient array space for low_octave_bands\n"); return(PROGRAM_ERROR); } dz->specenvfrq[0] = (float)1.0; /* frq whose log is 0 */ dz->specenvpch[0] = (float)0.0; dz->specenvtop[0] = (float)dz->chwidth; /* 8VA wide bands */ dz->specenvfrq[1] = (float)(dz->chwidth * 1.5); /* Centre Chs 1-2 */ dz->specenvpch[1] = (float)log10(dz->specenvfrq[1]); dz->specenvtop[1] = (float)(dz->chwidth * 2.0); dz->specenvfrq[2] = (float)(dz->chwidth * 3.0); /* Centre Chs 2-4 */ dz->specenvpch[2] = (float)log10(dz->specenvfrq[2]); dz->specenvtop[2] = (float)(dz->chwidth * 4.0); dz->specenvfrq[3] = (float)(dz->chwidth * 6.0); /* Centre Chs 4-8 */ dz->specenvpch[3] = (float)log10(dz->specenvfrq[3]); dz->specenvtop[3] = (float)(dz->chwidth * 8.0); return(FINISHED); } /**************************** GETSPECENVAMP *************************/ int getspecenvamp(double *thisamp,float thisfrq,int storeno,dataptr dz) { double pp, ratio, ampdiff; float *ampstore; int z = 1; if(thisfrq<0.0) { /* NOT SURE THIS IS CORRECT */ *thisamp = 0.0; /* SHOULD WE PHASE INVERT & RETURN A -ve AMP ?? */ return(FINISHED); } if(thisfrq<=1.0) pp = 0.0; else pp = log10(thisfrq); while( dz->specenvpch[z] < pp){ z++; /*RWD may need to trap on size of array? */ if(z == dz->infile->specenvcnt -1) break; } switch(storeno) { case(0): ampstore = dz->specenvamp; break; case(1): ampstore = dz->specenvamp2; break; default: sprintf(errstr,"Unknown storenumber in getspecenvamp()\n"); return(PROGRAM_ERROR); } ratio = (pp - dz->specenvpch[z-1])/(dz->specenvpch[z] - dz->specenvpch[z-1]); ampdiff = ampstore[z] - ampstore[z-1]; *thisamp = ampstore[z-1] + (ampdiff * ratio); *thisamp = max(0.0,*thisamp); return(FINISHED); } int check_spectwin_param_validity_and_consistency(dataptr dz) { int n; double frqmult; for(n = 1;n <= dz->iparam[2];n++) { frqmult = pow(2.0,((dz->param[3] * n)/SEMITONES_PER_OCTAVE)); if(frqmult > 65536.0) { sprintf(errstr,"Transposition of %d * %lf semitones ( = %lf octaves) too great.\n",n,dz->param[3],(dz->param[3] * n)/SEMITONES_PER_OCTAVE); return(DATA_ERROR); } } return FINISHED; }