annotate src/libvorbis-1.3.3/lib/vorbisenc.c @ 124:e3d5853d5918

Current stable PortAudio source
author Chris Cannam <cannam@all-day-breakfast.com>
date Tue, 18 Oct 2016 13:11:05 +0100
parents 98c1576536ae
children
rev   line source
cannam@86 1 /********************************************************************
cannam@86 2 * *
cannam@86 3 * THIS FILE IS PART OF THE OggVorbis SOFTWARE CODEC SOURCE CODE. *
cannam@86 4 * USE, DISTRIBUTION AND REPRODUCTION OF THIS LIBRARY SOURCE IS *
cannam@86 5 * GOVERNED BY A BSD-STYLE SOURCE LICENSE INCLUDED WITH THIS SOURCE *
cannam@86 6 * IN 'COPYING'. PLEASE READ THESE TERMS BEFORE DISTRIBUTING. *
cannam@86 7 * *
cannam@86 8 * THE OggVorbis SOURCE CODE IS (C) COPYRIGHT 1994-2009 *
cannam@86 9 * by the Xiph.Org Foundation http://www.xiph.org/ *
cannam@86 10 * *
cannam@86 11 ********************************************************************
cannam@86 12
cannam@86 13 function: simple programmatic interface for encoder mode setup
cannam@86 14 last mod: $Id: vorbisenc.c 17028 2010-03-25 05:22:15Z xiphmont $
cannam@86 15
cannam@86 16 ********************************************************************/
cannam@86 17
cannam@86 18 #include <stdlib.h>
cannam@86 19 #include <string.h>
cannam@86 20 #include <math.h>
cannam@86 21
cannam@86 22 #include "vorbis/codec.h"
cannam@86 23 #include "vorbis/vorbisenc.h"
cannam@86 24
cannam@86 25 #include "codec_internal.h"
cannam@86 26
cannam@86 27 #include "os.h"
cannam@86 28 #include "misc.h"
cannam@86 29
cannam@86 30 /* careful with this; it's using static array sizing to make managing
cannam@86 31 all the modes a little less annoying. If we use a residue backend
cannam@86 32 with > 12 partition types, or a different division of iteration,
cannam@86 33 this needs to be updated. */
cannam@86 34 typedef struct {
cannam@86 35 const static_codebook *books[12][4];
cannam@86 36 } static_bookblock;
cannam@86 37
cannam@86 38 typedef struct {
cannam@86 39 int res_type;
cannam@86 40 int limit_type; /* 0 lowpass limited, 1 point stereo limited */
cannam@86 41 int grouping;
cannam@86 42 const vorbis_info_residue0 *res;
cannam@86 43 const static_codebook *book_aux;
cannam@86 44 const static_codebook *book_aux_managed;
cannam@86 45 const static_bookblock *books_base;
cannam@86 46 const static_bookblock *books_base_managed;
cannam@86 47 } vorbis_residue_template;
cannam@86 48
cannam@86 49 typedef struct {
cannam@86 50 const vorbis_info_mapping0 *map;
cannam@86 51 const vorbis_residue_template *res;
cannam@86 52 } vorbis_mapping_template;
cannam@86 53
cannam@86 54 typedef struct vp_adjblock{
cannam@86 55 int block[P_BANDS];
cannam@86 56 } vp_adjblock;
cannam@86 57
cannam@86 58 typedef struct {
cannam@86 59 int data[NOISE_COMPAND_LEVELS];
cannam@86 60 } compandblock;
cannam@86 61
cannam@86 62 /* high level configuration information for setting things up
cannam@86 63 step-by-step with the detailed vorbis_encode_ctl interface.
cannam@86 64 There's a fair amount of redundancy such that interactive setup
cannam@86 65 does not directly deal with any vorbis_info or codec_setup_info
cannam@86 66 initialization; it's all stored (until full init) in this highlevel
cannam@86 67 setup, then flushed out to the real codec setup structs later. */
cannam@86 68
cannam@86 69 typedef struct {
cannam@86 70 int att[P_NOISECURVES];
cannam@86 71 float boost;
cannam@86 72 float decay;
cannam@86 73 } att3;
cannam@86 74 typedef struct { int data[P_NOISECURVES]; } adj3;
cannam@86 75
cannam@86 76 typedef struct {
cannam@86 77 int pre[PACKETBLOBS];
cannam@86 78 int post[PACKETBLOBS];
cannam@86 79 float kHz[PACKETBLOBS];
cannam@86 80 float lowpasskHz[PACKETBLOBS];
cannam@86 81 } adj_stereo;
cannam@86 82
cannam@86 83 typedef struct {
cannam@86 84 int lo;
cannam@86 85 int hi;
cannam@86 86 int fixed;
cannam@86 87 } noiseguard;
cannam@86 88 typedef struct {
cannam@86 89 int data[P_NOISECURVES][17];
cannam@86 90 } noise3;
cannam@86 91
cannam@86 92 typedef struct {
cannam@86 93 int mappings;
cannam@86 94 const double *rate_mapping;
cannam@86 95 const double *quality_mapping;
cannam@86 96 int coupling_restriction;
cannam@86 97 long samplerate_min_restriction;
cannam@86 98 long samplerate_max_restriction;
cannam@86 99
cannam@86 100
cannam@86 101 const int *blocksize_short;
cannam@86 102 const int *blocksize_long;
cannam@86 103
cannam@86 104 const att3 *psy_tone_masteratt;
cannam@86 105 const int *psy_tone_0dB;
cannam@86 106 const int *psy_tone_dBsuppress;
cannam@86 107
cannam@86 108 const vp_adjblock *psy_tone_adj_impulse;
cannam@86 109 const vp_adjblock *psy_tone_adj_long;
cannam@86 110 const vp_adjblock *psy_tone_adj_other;
cannam@86 111
cannam@86 112 const noiseguard *psy_noiseguards;
cannam@86 113 const noise3 *psy_noise_bias_impulse;
cannam@86 114 const noise3 *psy_noise_bias_padding;
cannam@86 115 const noise3 *psy_noise_bias_trans;
cannam@86 116 const noise3 *psy_noise_bias_long;
cannam@86 117 const int *psy_noise_dBsuppress;
cannam@86 118
cannam@86 119 const compandblock *psy_noise_compand;
cannam@86 120 const double *psy_noise_compand_short_mapping;
cannam@86 121 const double *psy_noise_compand_long_mapping;
cannam@86 122
cannam@86 123 const int *psy_noise_normal_start[2];
cannam@86 124 const int *psy_noise_normal_partition[2];
cannam@86 125 const double *psy_noise_normal_thresh;
cannam@86 126
cannam@86 127 const int *psy_ath_float;
cannam@86 128 const int *psy_ath_abs;
cannam@86 129
cannam@86 130 const double *psy_lowpass;
cannam@86 131
cannam@86 132 const vorbis_info_psy_global *global_params;
cannam@86 133 const double *global_mapping;
cannam@86 134 const adj_stereo *stereo_modes;
cannam@86 135
cannam@86 136 const static_codebook *const *const *const floor_books;
cannam@86 137 const vorbis_info_floor1 *floor_params;
cannam@86 138 const int floor_mappings;
cannam@86 139 const int **floor_mapping_list;
cannam@86 140
cannam@86 141 const vorbis_mapping_template *maps;
cannam@86 142 } ve_setup_data_template;
cannam@86 143
cannam@86 144 /* a few static coder conventions */
cannam@86 145 static const vorbis_info_mode _mode_template[2]={
cannam@86 146 {0,0,0,0},
cannam@86 147 {1,0,0,1}
cannam@86 148 };
cannam@86 149
cannam@86 150 static const vorbis_info_mapping0 _map_nominal[2]={
cannam@86 151 {1, {0,0}, {0}, {0}, 1,{0},{1}},
cannam@86 152 {1, {0,0}, {1}, {1}, 1,{0},{1}}
cannam@86 153 };
cannam@86 154
cannam@86 155 #include "modes/setup_44.h"
cannam@86 156 #include "modes/setup_44u.h"
cannam@86 157 #include "modes/setup_44p51.h"
cannam@86 158 #include "modes/setup_32.h"
cannam@86 159 #include "modes/setup_8.h"
cannam@86 160 #include "modes/setup_11.h"
cannam@86 161 #include "modes/setup_16.h"
cannam@86 162 #include "modes/setup_22.h"
cannam@86 163 #include "modes/setup_X.h"
cannam@86 164
cannam@86 165 static const ve_setup_data_template *const setup_list[]={
cannam@86 166 &ve_setup_44_stereo,
cannam@86 167 &ve_setup_44_51,
cannam@86 168 &ve_setup_44_uncoupled,
cannam@86 169
cannam@86 170 &ve_setup_32_stereo,
cannam@86 171 &ve_setup_32_uncoupled,
cannam@86 172
cannam@86 173 &ve_setup_22_stereo,
cannam@86 174 &ve_setup_22_uncoupled,
cannam@86 175 &ve_setup_16_stereo,
cannam@86 176 &ve_setup_16_uncoupled,
cannam@86 177
cannam@86 178 &ve_setup_11_stereo,
cannam@86 179 &ve_setup_11_uncoupled,
cannam@86 180 &ve_setup_8_stereo,
cannam@86 181 &ve_setup_8_uncoupled,
cannam@86 182
cannam@86 183 &ve_setup_X_stereo,
cannam@86 184 &ve_setup_X_uncoupled,
cannam@86 185 &ve_setup_XX_stereo,
cannam@86 186 &ve_setup_XX_uncoupled,
cannam@86 187 0
cannam@86 188 };
cannam@86 189
cannam@86 190 static void vorbis_encode_floor_setup(vorbis_info *vi,int s,
cannam@86 191 const static_codebook *const *const *const books,
cannam@86 192 const vorbis_info_floor1 *in,
cannam@86 193 const int *x){
cannam@86 194 int i,k,is=s;
cannam@86 195 vorbis_info_floor1 *f=_ogg_calloc(1,sizeof(*f));
cannam@86 196 codec_setup_info *ci=vi->codec_setup;
cannam@86 197
cannam@86 198 memcpy(f,in+x[is],sizeof(*f));
cannam@86 199
cannam@86 200 /* books */
cannam@86 201 {
cannam@86 202 int partitions=f->partitions;
cannam@86 203 int maxclass=-1;
cannam@86 204 int maxbook=-1;
cannam@86 205 for(i=0;i<partitions;i++)
cannam@86 206 if(f->partitionclass[i]>maxclass)maxclass=f->partitionclass[i];
cannam@86 207 for(i=0;i<=maxclass;i++){
cannam@86 208 if(f->class_book[i]>maxbook)maxbook=f->class_book[i];
cannam@86 209 f->class_book[i]+=ci->books;
cannam@86 210 for(k=0;k<(1<<f->class_subs[i]);k++){
cannam@86 211 if(f->class_subbook[i][k]>maxbook)maxbook=f->class_subbook[i][k];
cannam@86 212 if(f->class_subbook[i][k]>=0)f->class_subbook[i][k]+=ci->books;
cannam@86 213 }
cannam@86 214 }
cannam@86 215
cannam@86 216 for(i=0;i<=maxbook;i++)
cannam@86 217 ci->book_param[ci->books++]=(static_codebook *)books[x[is]][i];
cannam@86 218 }
cannam@86 219
cannam@86 220 /* for now, we're only using floor 1 */
cannam@86 221 ci->floor_type[ci->floors]=1;
cannam@86 222 ci->floor_param[ci->floors]=f;
cannam@86 223 ci->floors++;
cannam@86 224
cannam@86 225 return;
cannam@86 226 }
cannam@86 227
cannam@86 228 static void vorbis_encode_global_psych_setup(vorbis_info *vi,double s,
cannam@86 229 const vorbis_info_psy_global *in,
cannam@86 230 const double *x){
cannam@86 231 int i,is=s;
cannam@86 232 double ds=s-is;
cannam@86 233 codec_setup_info *ci=vi->codec_setup;
cannam@86 234 vorbis_info_psy_global *g=&ci->psy_g_param;
cannam@86 235
cannam@86 236 memcpy(g,in+(int)x[is],sizeof(*g));
cannam@86 237
cannam@86 238 ds=x[is]*(1.-ds)+x[is+1]*ds;
cannam@86 239 is=(int)ds;
cannam@86 240 ds-=is;
cannam@86 241 if(ds==0 && is>0){
cannam@86 242 is--;
cannam@86 243 ds=1.;
cannam@86 244 }
cannam@86 245
cannam@86 246 /* interpolate the trigger threshholds */
cannam@86 247 for(i=0;i<4;i++){
cannam@86 248 g->preecho_thresh[i]=in[is].preecho_thresh[i]*(1.-ds)+in[is+1].preecho_thresh[i]*ds;
cannam@86 249 g->postecho_thresh[i]=in[is].postecho_thresh[i]*(1.-ds)+in[is+1].postecho_thresh[i]*ds;
cannam@86 250 }
cannam@86 251 g->ampmax_att_per_sec=ci->hi.amplitude_track_dBpersec;
cannam@86 252 return;
cannam@86 253 }
cannam@86 254
cannam@86 255 static void vorbis_encode_global_stereo(vorbis_info *vi,
cannam@86 256 const highlevel_encode_setup *const hi,
cannam@86 257 const adj_stereo *p){
cannam@86 258 float s=hi->stereo_point_setting;
cannam@86 259 int i,is=s;
cannam@86 260 double ds=s-is;
cannam@86 261 codec_setup_info *ci=vi->codec_setup;
cannam@86 262 vorbis_info_psy_global *g=&ci->psy_g_param;
cannam@86 263
cannam@86 264 if(p){
cannam@86 265 memcpy(g->coupling_prepointamp,p[is].pre,sizeof(*p[is].pre)*PACKETBLOBS);
cannam@86 266 memcpy(g->coupling_postpointamp,p[is].post,sizeof(*p[is].post)*PACKETBLOBS);
cannam@86 267
cannam@86 268 if(hi->managed){
cannam@86 269 /* interpolate the kHz threshholds */
cannam@86 270 for(i=0;i<PACKETBLOBS;i++){
cannam@86 271 float kHz=p[is].kHz[i]*(1.-ds)+p[is+1].kHz[i]*ds;
cannam@86 272 g->coupling_pointlimit[0][i]=kHz*1000./vi->rate*ci->blocksizes[0];
cannam@86 273 g->coupling_pointlimit[1][i]=kHz*1000./vi->rate*ci->blocksizes[1];
cannam@86 274 g->coupling_pkHz[i]=kHz;
cannam@86 275
cannam@86 276 kHz=p[is].lowpasskHz[i]*(1.-ds)+p[is+1].lowpasskHz[i]*ds;
cannam@86 277 g->sliding_lowpass[0][i]=kHz*1000./vi->rate*ci->blocksizes[0];
cannam@86 278 g->sliding_lowpass[1][i]=kHz*1000./vi->rate*ci->blocksizes[1];
cannam@86 279
cannam@86 280 }
cannam@86 281 }else{
cannam@86 282 float kHz=p[is].kHz[PACKETBLOBS/2]*(1.-ds)+p[is+1].kHz[PACKETBLOBS/2]*ds;
cannam@86 283 for(i=0;i<PACKETBLOBS;i++){
cannam@86 284 g->coupling_pointlimit[0][i]=kHz*1000./vi->rate*ci->blocksizes[0];
cannam@86 285 g->coupling_pointlimit[1][i]=kHz*1000./vi->rate*ci->blocksizes[1];
cannam@86 286 g->coupling_pkHz[i]=kHz;
cannam@86 287 }
cannam@86 288
cannam@86 289 kHz=p[is].lowpasskHz[PACKETBLOBS/2]*(1.-ds)+p[is+1].lowpasskHz[PACKETBLOBS/2]*ds;
cannam@86 290 for(i=0;i<PACKETBLOBS;i++){
cannam@86 291 g->sliding_lowpass[0][i]=kHz*1000./vi->rate*ci->blocksizes[0];
cannam@86 292 g->sliding_lowpass[1][i]=kHz*1000./vi->rate*ci->blocksizes[1];
cannam@86 293 }
cannam@86 294 }
cannam@86 295 }else{
cannam@86 296 for(i=0;i<PACKETBLOBS;i++){
cannam@86 297 g->sliding_lowpass[0][i]=ci->blocksizes[0];
cannam@86 298 g->sliding_lowpass[1][i]=ci->blocksizes[1];
cannam@86 299 }
cannam@86 300 }
cannam@86 301 return;
cannam@86 302 }
cannam@86 303
cannam@86 304 static void vorbis_encode_psyset_setup(vorbis_info *vi,double s,
cannam@86 305 const int *nn_start,
cannam@86 306 const int *nn_partition,
cannam@86 307 const double *nn_thresh,
cannam@86 308 int block){
cannam@86 309 codec_setup_info *ci=vi->codec_setup;
cannam@86 310 vorbis_info_psy *p=ci->psy_param[block];
cannam@86 311 highlevel_encode_setup *hi=&ci->hi;
cannam@86 312 int is=s;
cannam@86 313
cannam@86 314 if(block>=ci->psys)
cannam@86 315 ci->psys=block+1;
cannam@86 316 if(!p){
cannam@86 317 p=_ogg_calloc(1,sizeof(*p));
cannam@86 318 ci->psy_param[block]=p;
cannam@86 319 }
cannam@86 320
cannam@86 321 memcpy(p,&_psy_info_template,sizeof(*p));
cannam@86 322 p->blockflag=block>>1;
cannam@86 323
cannam@86 324 if(hi->noise_normalize_p){
cannam@86 325 p->normal_p=1;
cannam@86 326 p->normal_start=nn_start[is];
cannam@86 327 p->normal_partition=nn_partition[is];
cannam@86 328 p->normal_thresh=nn_thresh[is];
cannam@86 329 }
cannam@86 330
cannam@86 331 return;
cannam@86 332 }
cannam@86 333
cannam@86 334 static void vorbis_encode_tonemask_setup(vorbis_info *vi,double s,int block,
cannam@86 335 const att3 *att,
cannam@86 336 const int *max,
cannam@86 337 const vp_adjblock *in){
cannam@86 338 int i,is=s;
cannam@86 339 double ds=s-is;
cannam@86 340 codec_setup_info *ci=vi->codec_setup;
cannam@86 341 vorbis_info_psy *p=ci->psy_param[block];
cannam@86 342
cannam@86 343 /* 0 and 2 are only used by bitmanagement, but there's no harm to always
cannam@86 344 filling the values in here */
cannam@86 345 p->tone_masteratt[0]=att[is].att[0]*(1.-ds)+att[is+1].att[0]*ds;
cannam@86 346 p->tone_masteratt[1]=att[is].att[1]*(1.-ds)+att[is+1].att[1]*ds;
cannam@86 347 p->tone_masteratt[2]=att[is].att[2]*(1.-ds)+att[is+1].att[2]*ds;
cannam@86 348 p->tone_centerboost=att[is].boost*(1.-ds)+att[is+1].boost*ds;
cannam@86 349 p->tone_decay=att[is].decay*(1.-ds)+att[is+1].decay*ds;
cannam@86 350
cannam@86 351 p->max_curve_dB=max[is]*(1.-ds)+max[is+1]*ds;
cannam@86 352
cannam@86 353 for(i=0;i<P_BANDS;i++)
cannam@86 354 p->toneatt[i]=in[is].block[i]*(1.-ds)+in[is+1].block[i]*ds;
cannam@86 355 return;
cannam@86 356 }
cannam@86 357
cannam@86 358
cannam@86 359 static void vorbis_encode_compand_setup(vorbis_info *vi,double s,int block,
cannam@86 360 const compandblock *in,
cannam@86 361 const double *x){
cannam@86 362 int i,is=s;
cannam@86 363 double ds=s-is;
cannam@86 364 codec_setup_info *ci=vi->codec_setup;
cannam@86 365 vorbis_info_psy *p=ci->psy_param[block];
cannam@86 366
cannam@86 367 ds=x[is]*(1.-ds)+x[is+1]*ds;
cannam@86 368 is=(int)ds;
cannam@86 369 ds-=is;
cannam@86 370 if(ds==0 && is>0){
cannam@86 371 is--;
cannam@86 372 ds=1.;
cannam@86 373 }
cannam@86 374
cannam@86 375 /* interpolate the compander settings */
cannam@86 376 for(i=0;i<NOISE_COMPAND_LEVELS;i++)
cannam@86 377 p->noisecompand[i]=in[is].data[i]*(1.-ds)+in[is+1].data[i]*ds;
cannam@86 378 return;
cannam@86 379 }
cannam@86 380
cannam@86 381 static void vorbis_encode_peak_setup(vorbis_info *vi,double s,int block,
cannam@86 382 const int *suppress){
cannam@86 383 int is=s;
cannam@86 384 double ds=s-is;
cannam@86 385 codec_setup_info *ci=vi->codec_setup;
cannam@86 386 vorbis_info_psy *p=ci->psy_param[block];
cannam@86 387
cannam@86 388 p->tone_abs_limit=suppress[is]*(1.-ds)+suppress[is+1]*ds;
cannam@86 389
cannam@86 390 return;
cannam@86 391 }
cannam@86 392
cannam@86 393 static void vorbis_encode_noisebias_setup(vorbis_info *vi,double s,int block,
cannam@86 394 const int *suppress,
cannam@86 395 const noise3 *in,
cannam@86 396 const noiseguard *guard,
cannam@86 397 double userbias){
cannam@86 398 int i,is=s,j;
cannam@86 399 double ds=s-is;
cannam@86 400 codec_setup_info *ci=vi->codec_setup;
cannam@86 401 vorbis_info_psy *p=ci->psy_param[block];
cannam@86 402
cannam@86 403 p->noisemaxsupp=suppress[is]*(1.-ds)+suppress[is+1]*ds;
cannam@86 404 p->noisewindowlomin=guard[block].lo;
cannam@86 405 p->noisewindowhimin=guard[block].hi;
cannam@86 406 p->noisewindowfixed=guard[block].fixed;
cannam@86 407
cannam@86 408 for(j=0;j<P_NOISECURVES;j++)
cannam@86 409 for(i=0;i<P_BANDS;i++)
cannam@86 410 p->noiseoff[j][i]=in[is].data[j][i]*(1.-ds)+in[is+1].data[j][i]*ds;
cannam@86 411
cannam@86 412 /* impulse blocks may take a user specified bias to boost the
cannam@86 413 nominal/high noise encoding depth */
cannam@86 414 for(j=0;j<P_NOISECURVES;j++){
cannam@86 415 float min=p->noiseoff[j][0]+6; /* the lowest it can go */
cannam@86 416 for(i=0;i<P_BANDS;i++){
cannam@86 417 p->noiseoff[j][i]+=userbias;
cannam@86 418 if(p->noiseoff[j][i]<min)p->noiseoff[j][i]=min;
cannam@86 419 }
cannam@86 420 }
cannam@86 421
cannam@86 422 return;
cannam@86 423 }
cannam@86 424
cannam@86 425 static void vorbis_encode_ath_setup(vorbis_info *vi,int block){
cannam@86 426 codec_setup_info *ci=vi->codec_setup;
cannam@86 427 vorbis_info_psy *p=ci->psy_param[block];
cannam@86 428
cannam@86 429 p->ath_adjatt=ci->hi.ath_floating_dB;
cannam@86 430 p->ath_maxatt=ci->hi.ath_absolute_dB;
cannam@86 431 return;
cannam@86 432 }
cannam@86 433
cannam@86 434
cannam@86 435 static int book_dup_or_new(codec_setup_info *ci,const static_codebook *book){
cannam@86 436 int i;
cannam@86 437 for(i=0;i<ci->books;i++)
cannam@86 438 if(ci->book_param[i]==book)return(i);
cannam@86 439
cannam@86 440 return(ci->books++);
cannam@86 441 }
cannam@86 442
cannam@86 443 static void vorbis_encode_blocksize_setup(vorbis_info *vi,double s,
cannam@86 444 const int *shortb,const int *longb){
cannam@86 445
cannam@86 446 codec_setup_info *ci=vi->codec_setup;
cannam@86 447 int is=s;
cannam@86 448
cannam@86 449 int blockshort=shortb[is];
cannam@86 450 int blocklong=longb[is];
cannam@86 451 ci->blocksizes[0]=blockshort;
cannam@86 452 ci->blocksizes[1]=blocklong;
cannam@86 453
cannam@86 454 }
cannam@86 455
cannam@86 456 static void vorbis_encode_residue_setup(vorbis_info *vi,
cannam@86 457 int number, int block,
cannam@86 458 const vorbis_residue_template *res){
cannam@86 459
cannam@86 460 codec_setup_info *ci=vi->codec_setup;
cannam@86 461 int i;
cannam@86 462
cannam@86 463 vorbis_info_residue0 *r=ci->residue_param[number]=
cannam@86 464 _ogg_malloc(sizeof(*r));
cannam@86 465
cannam@86 466 memcpy(r,res->res,sizeof(*r));
cannam@86 467 if(ci->residues<=number)ci->residues=number+1;
cannam@86 468
cannam@86 469 r->grouping=res->grouping;
cannam@86 470 ci->residue_type[number]=res->res_type;
cannam@86 471
cannam@86 472 /* fill in all the books */
cannam@86 473 {
cannam@86 474 int booklist=0,k;
cannam@86 475
cannam@86 476 if(ci->hi.managed){
cannam@86 477 for(i=0;i<r->partitions;i++)
cannam@86 478 for(k=0;k<4;k++)
cannam@86 479 if(res->books_base_managed->books[i][k])
cannam@86 480 r->secondstages[i]|=(1<<k);
cannam@86 481
cannam@86 482 r->groupbook=book_dup_or_new(ci,res->book_aux_managed);
cannam@86 483 ci->book_param[r->groupbook]=(static_codebook *)res->book_aux_managed;
cannam@86 484
cannam@86 485 for(i=0;i<r->partitions;i++){
cannam@86 486 for(k=0;k<4;k++){
cannam@86 487 if(res->books_base_managed->books[i][k]){
cannam@86 488 int bookid=book_dup_or_new(ci,res->books_base_managed->books[i][k]);
cannam@86 489 r->booklist[booklist++]=bookid;
cannam@86 490 ci->book_param[bookid]=(static_codebook *)res->books_base_managed->books[i][k];
cannam@86 491 }
cannam@86 492 }
cannam@86 493 }
cannam@86 494
cannam@86 495 }else{
cannam@86 496
cannam@86 497 for(i=0;i<r->partitions;i++)
cannam@86 498 for(k=0;k<4;k++)
cannam@86 499 if(res->books_base->books[i][k])
cannam@86 500 r->secondstages[i]|=(1<<k);
cannam@86 501
cannam@86 502 r->groupbook=book_dup_or_new(ci,res->book_aux);
cannam@86 503 ci->book_param[r->groupbook]=(static_codebook *)res->book_aux;
cannam@86 504
cannam@86 505 for(i=0;i<r->partitions;i++){
cannam@86 506 for(k=0;k<4;k++){
cannam@86 507 if(res->books_base->books[i][k]){
cannam@86 508 int bookid=book_dup_or_new(ci,res->books_base->books[i][k]);
cannam@86 509 r->booklist[booklist++]=bookid;
cannam@86 510 ci->book_param[bookid]=(static_codebook *)res->books_base->books[i][k];
cannam@86 511 }
cannam@86 512 }
cannam@86 513 }
cannam@86 514 }
cannam@86 515 }
cannam@86 516
cannam@86 517 /* lowpass setup/pointlimit */
cannam@86 518 {
cannam@86 519 double freq=ci->hi.lowpass_kHz*1000.;
cannam@86 520 vorbis_info_floor1 *f=ci->floor_param[block]; /* by convention */
cannam@86 521 double nyq=vi->rate/2.;
cannam@86 522 long blocksize=ci->blocksizes[block]>>1;
cannam@86 523
cannam@86 524 /* lowpass needs to be set in the floor and the residue. */
cannam@86 525 if(freq>nyq)freq=nyq;
cannam@86 526 /* in the floor, the granularity can be very fine; it doesn't alter
cannam@86 527 the encoding structure, only the samples used to fit the floor
cannam@86 528 approximation */
cannam@86 529 f->n=freq/nyq*blocksize;
cannam@86 530
cannam@86 531 /* this res may by limited by the maximum pointlimit of the mode,
cannam@86 532 not the lowpass. the floor is always lowpass limited. */
cannam@86 533 switch(res->limit_type){
cannam@86 534 case 1: /* point stereo limited */
cannam@86 535 if(ci->hi.managed)
cannam@86 536 freq=ci->psy_g_param.coupling_pkHz[PACKETBLOBS-1]*1000.;
cannam@86 537 else
cannam@86 538 freq=ci->psy_g_param.coupling_pkHz[PACKETBLOBS/2]*1000.;
cannam@86 539 if(freq>nyq)freq=nyq;
cannam@86 540 break;
cannam@86 541 case 2: /* LFE channel; lowpass at ~ 250Hz */
cannam@86 542 freq=250;
cannam@86 543 break;
cannam@86 544 default:
cannam@86 545 /* already set */
cannam@86 546 break;
cannam@86 547 }
cannam@86 548
cannam@86 549 /* in the residue, we're constrained, physically, by partition
cannam@86 550 boundaries. We still lowpass 'wherever', but we have to round up
cannam@86 551 here to next boundary, or the vorbis spec will round it *down* to
cannam@86 552 previous boundary in encode/decode */
cannam@86 553 if(ci->residue_type[number]==2){
cannam@86 554 /* residue 2 bundles together multiple channels; used by stereo
cannam@86 555 and surround. Count the channels in use */
cannam@86 556 /* Multiple maps/submaps can point to the same residue. In the case
cannam@86 557 of residue 2, they all better have the same number of
cannam@86 558 channels/samples. */
cannam@86 559 int j,k,ch=0;
cannam@86 560 for(i=0;i<ci->maps&&ch==0;i++){
cannam@86 561 vorbis_info_mapping0 *mi=(vorbis_info_mapping0 *)ci->map_param[i];
cannam@86 562 for(j=0;j<mi->submaps && ch==0;j++)
cannam@86 563 if(mi->residuesubmap[j]==number) /* we found a submap referencing theis residue backend */
cannam@86 564 for(k=0;k<vi->channels;k++)
cannam@86 565 if(mi->chmuxlist[k]==j) /* this channel belongs to the submap */
cannam@86 566 ch++;
cannam@86 567 }
cannam@86 568
cannam@86 569 r->end=(int)((freq/nyq*blocksize*ch)/r->grouping+.9)* /* round up only if we're well past */
cannam@86 570 r->grouping;
cannam@86 571 /* the blocksize and grouping may disagree at the end */
cannam@86 572 if(r->end>blocksize*ch)r->end=blocksize*ch/r->grouping*r->grouping;
cannam@86 573
cannam@86 574 }else{
cannam@86 575
cannam@86 576 r->end=(int)((freq/nyq*blocksize)/r->grouping+.9)* /* round up only if we're well past */
cannam@86 577 r->grouping;
cannam@86 578 /* the blocksize and grouping may disagree at the end */
cannam@86 579 if(r->end>blocksize)r->end=blocksize/r->grouping*r->grouping;
cannam@86 580
cannam@86 581 }
cannam@86 582
cannam@86 583 if(r->end==0)r->end=r->grouping; /* LFE channel */
cannam@86 584
cannam@86 585 }
cannam@86 586 }
cannam@86 587
cannam@86 588 /* we assume two maps in this encoder */
cannam@86 589 static void vorbis_encode_map_n_res_setup(vorbis_info *vi,double s,
cannam@86 590 const vorbis_mapping_template *maps){
cannam@86 591
cannam@86 592 codec_setup_info *ci=vi->codec_setup;
cannam@86 593 int i,j,is=s,modes=2;
cannam@86 594 const vorbis_info_mapping0 *map=maps[is].map;
cannam@86 595 const vorbis_info_mode *mode=_mode_template;
cannam@86 596 const vorbis_residue_template *res=maps[is].res;
cannam@86 597
cannam@86 598 if(ci->blocksizes[0]==ci->blocksizes[1])modes=1;
cannam@86 599
cannam@86 600 for(i=0;i<modes;i++){
cannam@86 601
cannam@86 602 ci->map_param[i]=_ogg_calloc(1,sizeof(*map));
cannam@86 603 ci->mode_param[i]=_ogg_calloc(1,sizeof(*mode));
cannam@86 604
cannam@86 605 memcpy(ci->mode_param[i],mode+i,sizeof(*_mode_template));
cannam@86 606 if(i>=ci->modes)ci->modes=i+1;
cannam@86 607
cannam@86 608 ci->map_type[i]=0;
cannam@86 609 memcpy(ci->map_param[i],map+i,sizeof(*map));
cannam@86 610 if(i>=ci->maps)ci->maps=i+1;
cannam@86 611
cannam@86 612 for(j=0;j<map[i].submaps;j++)
cannam@86 613 vorbis_encode_residue_setup(vi,map[i].residuesubmap[j],i
cannam@86 614 ,res+map[i].residuesubmap[j]);
cannam@86 615 }
cannam@86 616 }
cannam@86 617
cannam@86 618 static double setting_to_approx_bitrate(vorbis_info *vi){
cannam@86 619 codec_setup_info *ci=vi->codec_setup;
cannam@86 620 highlevel_encode_setup *hi=&ci->hi;
cannam@86 621 ve_setup_data_template *setup=(ve_setup_data_template *)hi->setup;
cannam@86 622 int is=hi->base_setting;
cannam@86 623 double ds=hi->base_setting-is;
cannam@86 624 int ch=vi->channels;
cannam@86 625 const double *r=setup->rate_mapping;
cannam@86 626
cannam@86 627 if(r==NULL)
cannam@86 628 return(-1);
cannam@86 629
cannam@86 630 return((r[is]*(1.-ds)+r[is+1]*ds)*ch);
cannam@86 631 }
cannam@86 632
cannam@86 633 static const void *get_setup_template(long ch,long srate,
cannam@86 634 double req,int q_or_bitrate,
cannam@86 635 double *base_setting){
cannam@86 636 int i=0,j;
cannam@86 637 if(q_or_bitrate)req/=ch;
cannam@86 638
cannam@86 639 while(setup_list[i]){
cannam@86 640 if(setup_list[i]->coupling_restriction==-1 ||
cannam@86 641 setup_list[i]->coupling_restriction==ch){
cannam@86 642 if(srate>=setup_list[i]->samplerate_min_restriction &&
cannam@86 643 srate<=setup_list[i]->samplerate_max_restriction){
cannam@86 644 int mappings=setup_list[i]->mappings;
cannam@86 645 const double *map=(q_or_bitrate?
cannam@86 646 setup_list[i]->rate_mapping:
cannam@86 647 setup_list[i]->quality_mapping);
cannam@86 648
cannam@86 649 /* the template matches. Does the requested quality mode
cannam@86 650 fall within this template's modes? */
cannam@86 651 if(req<map[0]){++i;continue;}
cannam@86 652 if(req>map[setup_list[i]->mappings]){++i;continue;}
cannam@86 653 for(j=0;j<mappings;j++)
cannam@86 654 if(req>=map[j] && req<map[j+1])break;
cannam@86 655 /* an all-points match */
cannam@86 656 if(j==mappings)
cannam@86 657 *base_setting=j-.001;
cannam@86 658 else{
cannam@86 659 float low=map[j];
cannam@86 660 float high=map[j+1];
cannam@86 661 float del=(req-low)/(high-low);
cannam@86 662 *base_setting=j+del;
cannam@86 663 }
cannam@86 664
cannam@86 665 return(setup_list[i]);
cannam@86 666 }
cannam@86 667 }
cannam@86 668 i++;
cannam@86 669 }
cannam@86 670
cannam@86 671 return NULL;
cannam@86 672 }
cannam@86 673
cannam@86 674 /* encoders will need to use vorbis_info_init beforehand and call
cannam@86 675 vorbis_info clear when all done */
cannam@86 676
cannam@86 677 /* two interfaces; this, more detailed one, and later a convenience
cannam@86 678 layer on top */
cannam@86 679
cannam@86 680 /* the final setup call */
cannam@86 681 int vorbis_encode_setup_init(vorbis_info *vi){
cannam@86 682 int i,i0=0,singleblock=0;
cannam@86 683 codec_setup_info *ci=vi->codec_setup;
cannam@86 684 ve_setup_data_template *setup=NULL;
cannam@86 685 highlevel_encode_setup *hi=&ci->hi;
cannam@86 686
cannam@86 687 if(ci==NULL)return(OV_EINVAL);
cannam@86 688 if(!hi->impulse_block_p)i0=1;
cannam@86 689
cannam@86 690 /* too low/high an ATH floater is nonsensical, but doesn't break anything */
cannam@86 691 if(hi->ath_floating_dB>-80)hi->ath_floating_dB=-80;
cannam@86 692 if(hi->ath_floating_dB<-200)hi->ath_floating_dB=-200;
cannam@86 693
cannam@86 694 /* again, bound this to avoid the app shooting itself int he foot
cannam@86 695 too badly */
cannam@86 696 if(hi->amplitude_track_dBpersec>0.)hi->amplitude_track_dBpersec=0.;
cannam@86 697 if(hi->amplitude_track_dBpersec<-99999.)hi->amplitude_track_dBpersec=-99999.;
cannam@86 698
cannam@86 699 /* get the appropriate setup template; matches the fetch in previous
cannam@86 700 stages */
cannam@86 701 setup=(ve_setup_data_template *)hi->setup;
cannam@86 702 if(setup==NULL)return(OV_EINVAL);
cannam@86 703
cannam@86 704 hi->set_in_stone=1;
cannam@86 705 /* choose block sizes from configured sizes as well as paying
cannam@86 706 attention to long_block_p and short_block_p. If the configured
cannam@86 707 short and long blocks are the same length, we set long_block_p
cannam@86 708 and unset short_block_p */
cannam@86 709 vorbis_encode_blocksize_setup(vi,hi->base_setting,
cannam@86 710 setup->blocksize_short,
cannam@86 711 setup->blocksize_long);
cannam@86 712 if(ci->blocksizes[0]==ci->blocksizes[1])singleblock=1;
cannam@86 713
cannam@86 714 /* floor setup; choose proper floor params. Allocated on the floor
cannam@86 715 stack in order; if we alloc only a single long floor, it's 0 */
cannam@86 716 for(i=0;i<setup->floor_mappings;i++)
cannam@86 717 vorbis_encode_floor_setup(vi,hi->base_setting,
cannam@86 718 setup->floor_books,
cannam@86 719 setup->floor_params,
cannam@86 720 setup->floor_mapping_list[i]);
cannam@86 721
cannam@86 722 /* setup of [mostly] short block detection and stereo*/
cannam@86 723 vorbis_encode_global_psych_setup(vi,hi->trigger_setting,
cannam@86 724 setup->global_params,
cannam@86 725 setup->global_mapping);
cannam@86 726 vorbis_encode_global_stereo(vi,hi,setup->stereo_modes);
cannam@86 727
cannam@86 728 /* basic psych setup and noise normalization */
cannam@86 729 vorbis_encode_psyset_setup(vi,hi->base_setting,
cannam@86 730 setup->psy_noise_normal_start[0],
cannam@86 731 setup->psy_noise_normal_partition[0],
cannam@86 732 setup->psy_noise_normal_thresh,
cannam@86 733 0);
cannam@86 734 vorbis_encode_psyset_setup(vi,hi->base_setting,
cannam@86 735 setup->psy_noise_normal_start[0],
cannam@86 736 setup->psy_noise_normal_partition[0],
cannam@86 737 setup->psy_noise_normal_thresh,
cannam@86 738 1);
cannam@86 739 if(!singleblock){
cannam@86 740 vorbis_encode_psyset_setup(vi,hi->base_setting,
cannam@86 741 setup->psy_noise_normal_start[1],
cannam@86 742 setup->psy_noise_normal_partition[1],
cannam@86 743 setup->psy_noise_normal_thresh,
cannam@86 744 2);
cannam@86 745 vorbis_encode_psyset_setup(vi,hi->base_setting,
cannam@86 746 setup->psy_noise_normal_start[1],
cannam@86 747 setup->psy_noise_normal_partition[1],
cannam@86 748 setup->psy_noise_normal_thresh,
cannam@86 749 3);
cannam@86 750 }
cannam@86 751
cannam@86 752 /* tone masking setup */
cannam@86 753 vorbis_encode_tonemask_setup(vi,hi->block[i0].tone_mask_setting,0,
cannam@86 754 setup->psy_tone_masteratt,
cannam@86 755 setup->psy_tone_0dB,
cannam@86 756 setup->psy_tone_adj_impulse);
cannam@86 757 vorbis_encode_tonemask_setup(vi,hi->block[1].tone_mask_setting,1,
cannam@86 758 setup->psy_tone_masteratt,
cannam@86 759 setup->psy_tone_0dB,
cannam@86 760 setup->psy_tone_adj_other);
cannam@86 761 if(!singleblock){
cannam@86 762 vorbis_encode_tonemask_setup(vi,hi->block[2].tone_mask_setting,2,
cannam@86 763 setup->psy_tone_masteratt,
cannam@86 764 setup->psy_tone_0dB,
cannam@86 765 setup->psy_tone_adj_other);
cannam@86 766 vorbis_encode_tonemask_setup(vi,hi->block[3].tone_mask_setting,3,
cannam@86 767 setup->psy_tone_masteratt,
cannam@86 768 setup->psy_tone_0dB,
cannam@86 769 setup->psy_tone_adj_long);
cannam@86 770 }
cannam@86 771
cannam@86 772 /* noise companding setup */
cannam@86 773 vorbis_encode_compand_setup(vi,hi->block[i0].noise_compand_setting,0,
cannam@86 774 setup->psy_noise_compand,
cannam@86 775 setup->psy_noise_compand_short_mapping);
cannam@86 776 vorbis_encode_compand_setup(vi,hi->block[1].noise_compand_setting,1,
cannam@86 777 setup->psy_noise_compand,
cannam@86 778 setup->psy_noise_compand_short_mapping);
cannam@86 779 if(!singleblock){
cannam@86 780 vorbis_encode_compand_setup(vi,hi->block[2].noise_compand_setting,2,
cannam@86 781 setup->psy_noise_compand,
cannam@86 782 setup->psy_noise_compand_long_mapping);
cannam@86 783 vorbis_encode_compand_setup(vi,hi->block[3].noise_compand_setting,3,
cannam@86 784 setup->psy_noise_compand,
cannam@86 785 setup->psy_noise_compand_long_mapping);
cannam@86 786 }
cannam@86 787
cannam@86 788 /* peak guarding setup */
cannam@86 789 vorbis_encode_peak_setup(vi,hi->block[i0].tone_peaklimit_setting,0,
cannam@86 790 setup->psy_tone_dBsuppress);
cannam@86 791 vorbis_encode_peak_setup(vi,hi->block[1].tone_peaklimit_setting,1,
cannam@86 792 setup->psy_tone_dBsuppress);
cannam@86 793 if(!singleblock){
cannam@86 794 vorbis_encode_peak_setup(vi,hi->block[2].tone_peaklimit_setting,2,
cannam@86 795 setup->psy_tone_dBsuppress);
cannam@86 796 vorbis_encode_peak_setup(vi,hi->block[3].tone_peaklimit_setting,3,
cannam@86 797 setup->psy_tone_dBsuppress);
cannam@86 798 }
cannam@86 799
cannam@86 800 /* noise bias setup */
cannam@86 801 vorbis_encode_noisebias_setup(vi,hi->block[i0].noise_bias_setting,0,
cannam@86 802 setup->psy_noise_dBsuppress,
cannam@86 803 setup->psy_noise_bias_impulse,
cannam@86 804 setup->psy_noiseguards,
cannam@86 805 (i0==0?hi->impulse_noisetune:0.));
cannam@86 806 vorbis_encode_noisebias_setup(vi,hi->block[1].noise_bias_setting,1,
cannam@86 807 setup->psy_noise_dBsuppress,
cannam@86 808 setup->psy_noise_bias_padding,
cannam@86 809 setup->psy_noiseguards,0.);
cannam@86 810 if(!singleblock){
cannam@86 811 vorbis_encode_noisebias_setup(vi,hi->block[2].noise_bias_setting,2,
cannam@86 812 setup->psy_noise_dBsuppress,
cannam@86 813 setup->psy_noise_bias_trans,
cannam@86 814 setup->psy_noiseguards,0.);
cannam@86 815 vorbis_encode_noisebias_setup(vi,hi->block[3].noise_bias_setting,3,
cannam@86 816 setup->psy_noise_dBsuppress,
cannam@86 817 setup->psy_noise_bias_long,
cannam@86 818 setup->psy_noiseguards,0.);
cannam@86 819 }
cannam@86 820
cannam@86 821 vorbis_encode_ath_setup(vi,0);
cannam@86 822 vorbis_encode_ath_setup(vi,1);
cannam@86 823 if(!singleblock){
cannam@86 824 vorbis_encode_ath_setup(vi,2);
cannam@86 825 vorbis_encode_ath_setup(vi,3);
cannam@86 826 }
cannam@86 827
cannam@86 828 vorbis_encode_map_n_res_setup(vi,hi->base_setting,setup->maps);
cannam@86 829
cannam@86 830 /* set bitrate readonlies and management */
cannam@86 831 if(hi->bitrate_av>0)
cannam@86 832 vi->bitrate_nominal=hi->bitrate_av;
cannam@86 833 else{
cannam@86 834 vi->bitrate_nominal=setting_to_approx_bitrate(vi);
cannam@86 835 }
cannam@86 836
cannam@86 837 vi->bitrate_lower=hi->bitrate_min;
cannam@86 838 vi->bitrate_upper=hi->bitrate_max;
cannam@86 839 if(hi->bitrate_av)
cannam@86 840 vi->bitrate_window=(double)hi->bitrate_reservoir/hi->bitrate_av;
cannam@86 841 else
cannam@86 842 vi->bitrate_window=0.;
cannam@86 843
cannam@86 844 if(hi->managed){
cannam@86 845 ci->bi.avg_rate=hi->bitrate_av;
cannam@86 846 ci->bi.min_rate=hi->bitrate_min;
cannam@86 847 ci->bi.max_rate=hi->bitrate_max;
cannam@86 848
cannam@86 849 ci->bi.reservoir_bits=hi->bitrate_reservoir;
cannam@86 850 ci->bi.reservoir_bias=
cannam@86 851 hi->bitrate_reservoir_bias;
cannam@86 852
cannam@86 853 ci->bi.slew_damp=hi->bitrate_av_damp;
cannam@86 854
cannam@86 855 }
cannam@86 856
cannam@86 857 return(0);
cannam@86 858
cannam@86 859 }
cannam@86 860
cannam@86 861 static void vorbis_encode_setup_setting(vorbis_info *vi,
cannam@86 862 long channels,
cannam@86 863 long rate){
cannam@86 864 int i,is;
cannam@86 865 codec_setup_info *ci=vi->codec_setup;
cannam@86 866 highlevel_encode_setup *hi=&ci->hi;
cannam@86 867 const ve_setup_data_template *setup=hi->setup;
cannam@86 868 double ds;
cannam@86 869
cannam@86 870 vi->version=0;
cannam@86 871 vi->channels=channels;
cannam@86 872 vi->rate=rate;
cannam@86 873
cannam@86 874 hi->impulse_block_p=1;
cannam@86 875 hi->noise_normalize_p=1;
cannam@86 876
cannam@86 877 is=hi->base_setting;
cannam@86 878 ds=hi->base_setting-is;
cannam@86 879
cannam@86 880 hi->stereo_point_setting=hi->base_setting;
cannam@86 881
cannam@86 882 if(!hi->lowpass_altered)
cannam@86 883 hi->lowpass_kHz=
cannam@86 884 setup->psy_lowpass[is]*(1.-ds)+setup->psy_lowpass[is+1]*ds;
cannam@86 885
cannam@86 886 hi->ath_floating_dB=setup->psy_ath_float[is]*(1.-ds)+
cannam@86 887 setup->psy_ath_float[is+1]*ds;
cannam@86 888 hi->ath_absolute_dB=setup->psy_ath_abs[is]*(1.-ds)+
cannam@86 889 setup->psy_ath_abs[is+1]*ds;
cannam@86 890
cannam@86 891 hi->amplitude_track_dBpersec=-6.;
cannam@86 892 hi->trigger_setting=hi->base_setting;
cannam@86 893
cannam@86 894 for(i=0;i<4;i++){
cannam@86 895 hi->block[i].tone_mask_setting=hi->base_setting;
cannam@86 896 hi->block[i].tone_peaklimit_setting=hi->base_setting;
cannam@86 897 hi->block[i].noise_bias_setting=hi->base_setting;
cannam@86 898 hi->block[i].noise_compand_setting=hi->base_setting;
cannam@86 899 }
cannam@86 900 }
cannam@86 901
cannam@86 902 int vorbis_encode_setup_vbr(vorbis_info *vi,
cannam@86 903 long channels,
cannam@86 904 long rate,
cannam@86 905 float quality){
cannam@86 906 codec_setup_info *ci=vi->codec_setup;
cannam@86 907 highlevel_encode_setup *hi=&ci->hi;
cannam@86 908
cannam@86 909 quality+=.0000001;
cannam@86 910 if(quality>=1.)quality=.9999;
cannam@86 911
cannam@86 912 hi->req=quality;
cannam@86 913 hi->setup=get_setup_template(channels,rate,quality,0,&hi->base_setting);
cannam@86 914 if(!hi->setup)return OV_EIMPL;
cannam@86 915
cannam@86 916 vorbis_encode_setup_setting(vi,channels,rate);
cannam@86 917 hi->managed=0;
cannam@86 918 hi->coupling_p=1;
cannam@86 919
cannam@86 920 return 0;
cannam@86 921 }
cannam@86 922
cannam@86 923 int vorbis_encode_init_vbr(vorbis_info *vi,
cannam@86 924 long channels,
cannam@86 925 long rate,
cannam@86 926
cannam@86 927 float base_quality /* 0. to 1. */
cannam@86 928 ){
cannam@86 929 int ret=0;
cannam@86 930
cannam@86 931 ret=vorbis_encode_setup_vbr(vi,channels,rate,base_quality);
cannam@86 932
cannam@86 933 if(ret){
cannam@86 934 vorbis_info_clear(vi);
cannam@86 935 return ret;
cannam@86 936 }
cannam@86 937 ret=vorbis_encode_setup_init(vi);
cannam@86 938 if(ret)
cannam@86 939 vorbis_info_clear(vi);
cannam@86 940 return(ret);
cannam@86 941 }
cannam@86 942
cannam@86 943 int vorbis_encode_setup_managed(vorbis_info *vi,
cannam@86 944 long channels,
cannam@86 945 long rate,
cannam@86 946
cannam@86 947 long max_bitrate,
cannam@86 948 long nominal_bitrate,
cannam@86 949 long min_bitrate){
cannam@86 950
cannam@86 951 codec_setup_info *ci=vi->codec_setup;
cannam@86 952 highlevel_encode_setup *hi=&ci->hi;
cannam@86 953 double tnominal=nominal_bitrate;
cannam@86 954
cannam@86 955 if(nominal_bitrate<=0.){
cannam@86 956 if(max_bitrate>0.){
cannam@86 957 if(min_bitrate>0.)
cannam@86 958 nominal_bitrate=(max_bitrate+min_bitrate)*.5;
cannam@86 959 else
cannam@86 960 nominal_bitrate=max_bitrate*.875;
cannam@86 961 }else{
cannam@86 962 if(min_bitrate>0.){
cannam@86 963 nominal_bitrate=min_bitrate;
cannam@86 964 }else{
cannam@86 965 return(OV_EINVAL);
cannam@86 966 }
cannam@86 967 }
cannam@86 968 }
cannam@86 969
cannam@86 970 hi->req=nominal_bitrate;
cannam@86 971 hi->setup=get_setup_template(channels,rate,nominal_bitrate,1,&hi->base_setting);
cannam@86 972 if(!hi->setup)return OV_EIMPL;
cannam@86 973
cannam@86 974 vorbis_encode_setup_setting(vi,channels,rate);
cannam@86 975
cannam@86 976 /* initialize management with sane defaults */
cannam@86 977 hi->coupling_p=1;
cannam@86 978 hi->managed=1;
cannam@86 979 hi->bitrate_min=min_bitrate;
cannam@86 980 hi->bitrate_max=max_bitrate;
cannam@86 981 hi->bitrate_av=tnominal;
cannam@86 982 hi->bitrate_av_damp=1.5f; /* full range in no less than 1.5 second */
cannam@86 983 hi->bitrate_reservoir=nominal_bitrate*2;
cannam@86 984 hi->bitrate_reservoir_bias=.1; /* bias toward hoarding bits */
cannam@86 985
cannam@86 986 return(0);
cannam@86 987
cannam@86 988 }
cannam@86 989
cannam@86 990 int vorbis_encode_init(vorbis_info *vi,
cannam@86 991 long channels,
cannam@86 992 long rate,
cannam@86 993
cannam@86 994 long max_bitrate,
cannam@86 995 long nominal_bitrate,
cannam@86 996 long min_bitrate){
cannam@86 997
cannam@86 998 int ret=vorbis_encode_setup_managed(vi,channels,rate,
cannam@86 999 max_bitrate,
cannam@86 1000 nominal_bitrate,
cannam@86 1001 min_bitrate);
cannam@86 1002 if(ret){
cannam@86 1003 vorbis_info_clear(vi);
cannam@86 1004 return(ret);
cannam@86 1005 }
cannam@86 1006
cannam@86 1007 ret=vorbis_encode_setup_init(vi);
cannam@86 1008 if(ret)
cannam@86 1009 vorbis_info_clear(vi);
cannam@86 1010 return(ret);
cannam@86 1011 }
cannam@86 1012
cannam@86 1013 int vorbis_encode_ctl(vorbis_info *vi,int number,void *arg){
cannam@86 1014 if(vi){
cannam@86 1015 codec_setup_info *ci=vi->codec_setup;
cannam@86 1016 highlevel_encode_setup *hi=&ci->hi;
cannam@86 1017 int setp=(number&0xf); /* a read request has a low nibble of 0 */
cannam@86 1018
cannam@86 1019 if(setp && hi->set_in_stone)return(OV_EINVAL);
cannam@86 1020
cannam@86 1021 switch(number){
cannam@86 1022
cannam@86 1023 /* now deprecated *****************/
cannam@86 1024 case OV_ECTL_RATEMANAGE_GET:
cannam@86 1025 {
cannam@86 1026
cannam@86 1027 struct ovectl_ratemanage_arg *ai=
cannam@86 1028 (struct ovectl_ratemanage_arg *)arg;
cannam@86 1029
cannam@86 1030 ai->management_active=hi->managed;
cannam@86 1031 ai->bitrate_hard_window=ai->bitrate_av_window=
cannam@86 1032 (double)hi->bitrate_reservoir/vi->rate;
cannam@86 1033 ai->bitrate_av_window_center=1.;
cannam@86 1034 ai->bitrate_hard_min=hi->bitrate_min;
cannam@86 1035 ai->bitrate_hard_max=hi->bitrate_max;
cannam@86 1036 ai->bitrate_av_lo=hi->bitrate_av;
cannam@86 1037 ai->bitrate_av_hi=hi->bitrate_av;
cannam@86 1038
cannam@86 1039 }
cannam@86 1040 return(0);
cannam@86 1041
cannam@86 1042 /* now deprecated *****************/
cannam@86 1043 case OV_ECTL_RATEMANAGE_SET:
cannam@86 1044 {
cannam@86 1045 struct ovectl_ratemanage_arg *ai=
cannam@86 1046 (struct ovectl_ratemanage_arg *)arg;
cannam@86 1047 if(ai==NULL){
cannam@86 1048 hi->managed=0;
cannam@86 1049 }else{
cannam@86 1050 hi->managed=ai->management_active;
cannam@86 1051 vorbis_encode_ctl(vi,OV_ECTL_RATEMANAGE_AVG,arg);
cannam@86 1052 vorbis_encode_ctl(vi,OV_ECTL_RATEMANAGE_HARD,arg);
cannam@86 1053 }
cannam@86 1054 }
cannam@86 1055 return 0;
cannam@86 1056
cannam@86 1057 /* now deprecated *****************/
cannam@86 1058 case OV_ECTL_RATEMANAGE_AVG:
cannam@86 1059 {
cannam@86 1060 struct ovectl_ratemanage_arg *ai=
cannam@86 1061 (struct ovectl_ratemanage_arg *)arg;
cannam@86 1062 if(ai==NULL){
cannam@86 1063 hi->bitrate_av=0;
cannam@86 1064 }else{
cannam@86 1065 hi->bitrate_av=(ai->bitrate_av_lo+ai->bitrate_av_hi)*.5;
cannam@86 1066 }
cannam@86 1067 }
cannam@86 1068 return(0);
cannam@86 1069 /* now deprecated *****************/
cannam@86 1070 case OV_ECTL_RATEMANAGE_HARD:
cannam@86 1071 {
cannam@86 1072 struct ovectl_ratemanage_arg *ai=
cannam@86 1073 (struct ovectl_ratemanage_arg *)arg;
cannam@86 1074 if(ai==NULL){
cannam@86 1075 hi->bitrate_min=0;
cannam@86 1076 hi->bitrate_max=0;
cannam@86 1077 }else{
cannam@86 1078 hi->bitrate_min=ai->bitrate_hard_min;
cannam@86 1079 hi->bitrate_max=ai->bitrate_hard_max;
cannam@86 1080 hi->bitrate_reservoir=ai->bitrate_hard_window*
cannam@86 1081 (hi->bitrate_max+hi->bitrate_min)*.5;
cannam@86 1082 }
cannam@86 1083 if(hi->bitrate_reservoir<128.)
cannam@86 1084 hi->bitrate_reservoir=128.;
cannam@86 1085 }
cannam@86 1086 return(0);
cannam@86 1087
cannam@86 1088 /* replacement ratemanage interface */
cannam@86 1089 case OV_ECTL_RATEMANAGE2_GET:
cannam@86 1090 {
cannam@86 1091 struct ovectl_ratemanage2_arg *ai=
cannam@86 1092 (struct ovectl_ratemanage2_arg *)arg;
cannam@86 1093 if(ai==NULL)return OV_EINVAL;
cannam@86 1094
cannam@86 1095 ai->management_active=hi->managed;
cannam@86 1096 ai->bitrate_limit_min_kbps=hi->bitrate_min/1000;
cannam@86 1097 ai->bitrate_limit_max_kbps=hi->bitrate_max/1000;
cannam@86 1098 ai->bitrate_average_kbps=hi->bitrate_av/1000;
cannam@86 1099 ai->bitrate_average_damping=hi->bitrate_av_damp;
cannam@86 1100 ai->bitrate_limit_reservoir_bits=hi->bitrate_reservoir;
cannam@86 1101 ai->bitrate_limit_reservoir_bias=hi->bitrate_reservoir_bias;
cannam@86 1102 }
cannam@86 1103 return (0);
cannam@86 1104 case OV_ECTL_RATEMANAGE2_SET:
cannam@86 1105 {
cannam@86 1106 struct ovectl_ratemanage2_arg *ai=
cannam@86 1107 (struct ovectl_ratemanage2_arg *)arg;
cannam@86 1108 if(ai==NULL){
cannam@86 1109 hi->managed=0;
cannam@86 1110 }else{
cannam@86 1111 /* sanity check; only catch invariant violations */
cannam@86 1112 if(ai->bitrate_limit_min_kbps>0 &&
cannam@86 1113 ai->bitrate_average_kbps>0 &&
cannam@86 1114 ai->bitrate_limit_min_kbps>ai->bitrate_average_kbps)
cannam@86 1115 return OV_EINVAL;
cannam@86 1116
cannam@86 1117 if(ai->bitrate_limit_max_kbps>0 &&
cannam@86 1118 ai->bitrate_average_kbps>0 &&
cannam@86 1119 ai->bitrate_limit_max_kbps<ai->bitrate_average_kbps)
cannam@86 1120 return OV_EINVAL;
cannam@86 1121
cannam@86 1122 if(ai->bitrate_limit_min_kbps>0 &&
cannam@86 1123 ai->bitrate_limit_max_kbps>0 &&
cannam@86 1124 ai->bitrate_limit_min_kbps>ai->bitrate_limit_max_kbps)
cannam@86 1125 return OV_EINVAL;
cannam@86 1126
cannam@86 1127 if(ai->bitrate_average_damping <= 0.)
cannam@86 1128 return OV_EINVAL;
cannam@86 1129
cannam@86 1130 if(ai->bitrate_limit_reservoir_bits < 0)
cannam@86 1131 return OV_EINVAL;
cannam@86 1132
cannam@86 1133 if(ai->bitrate_limit_reservoir_bias < 0.)
cannam@86 1134 return OV_EINVAL;
cannam@86 1135
cannam@86 1136 if(ai->bitrate_limit_reservoir_bias > 1.)
cannam@86 1137 return OV_EINVAL;
cannam@86 1138
cannam@86 1139 hi->managed=ai->management_active;
cannam@86 1140 hi->bitrate_min=ai->bitrate_limit_min_kbps * 1000;
cannam@86 1141 hi->bitrate_max=ai->bitrate_limit_max_kbps * 1000;
cannam@86 1142 hi->bitrate_av=ai->bitrate_average_kbps * 1000;
cannam@86 1143 hi->bitrate_av_damp=ai->bitrate_average_damping;
cannam@86 1144 hi->bitrate_reservoir=ai->bitrate_limit_reservoir_bits;
cannam@86 1145 hi->bitrate_reservoir_bias=ai->bitrate_limit_reservoir_bias;
cannam@86 1146 }
cannam@86 1147 }
cannam@86 1148 return 0;
cannam@86 1149
cannam@86 1150 case OV_ECTL_LOWPASS_GET:
cannam@86 1151 {
cannam@86 1152 double *farg=(double *)arg;
cannam@86 1153 *farg=hi->lowpass_kHz;
cannam@86 1154 }
cannam@86 1155 return(0);
cannam@86 1156 case OV_ECTL_LOWPASS_SET:
cannam@86 1157 {
cannam@86 1158 double *farg=(double *)arg;
cannam@86 1159 hi->lowpass_kHz=*farg;
cannam@86 1160
cannam@86 1161 if(hi->lowpass_kHz<2.)hi->lowpass_kHz=2.;
cannam@86 1162 if(hi->lowpass_kHz>99.)hi->lowpass_kHz=99.;
cannam@86 1163 hi->lowpass_altered=1;
cannam@86 1164 }
cannam@86 1165 return(0);
cannam@86 1166 case OV_ECTL_IBLOCK_GET:
cannam@86 1167 {
cannam@86 1168 double *farg=(double *)arg;
cannam@86 1169 *farg=hi->impulse_noisetune;
cannam@86 1170 }
cannam@86 1171 return(0);
cannam@86 1172 case OV_ECTL_IBLOCK_SET:
cannam@86 1173 {
cannam@86 1174 double *farg=(double *)arg;
cannam@86 1175 hi->impulse_noisetune=*farg;
cannam@86 1176
cannam@86 1177 if(hi->impulse_noisetune>0.)hi->impulse_noisetune=0.;
cannam@86 1178 if(hi->impulse_noisetune<-15.)hi->impulse_noisetune=-15.;
cannam@86 1179 }
cannam@86 1180 return(0);
cannam@86 1181 case OV_ECTL_COUPLING_GET:
cannam@86 1182 {
cannam@86 1183 int *iarg=(int *)arg;
cannam@86 1184 *iarg=hi->coupling_p;
cannam@86 1185 }
cannam@86 1186 return(0);
cannam@86 1187 case OV_ECTL_COUPLING_SET:
cannam@86 1188 {
cannam@86 1189 const void *new_template;
cannam@86 1190 double new_base=0.;
cannam@86 1191 int *iarg=(int *)arg;
cannam@86 1192 hi->coupling_p=((*iarg)!=0);
cannam@86 1193
cannam@86 1194 /* Fetching a new template can alter the base_setting, which
cannam@86 1195 many other parameters are based on. Right now, the only
cannam@86 1196 parameter drawn from the base_setting that can be altered
cannam@86 1197 by an encctl is the lowpass, so that is explictly flagged
cannam@86 1198 to not be overwritten when we fetch a new template and
cannam@86 1199 recompute the dependant settings */
cannam@86 1200 new_template = get_setup_template(hi->coupling_p?vi->channels:-1,
cannam@86 1201 vi->rate,
cannam@86 1202 hi->req,
cannam@86 1203 hi->managed,
cannam@86 1204 &new_base);
cannam@86 1205 if(!hi->setup)return OV_EIMPL;
cannam@86 1206 hi->setup=new_template;
cannam@86 1207 hi->base_setting=new_base;
cannam@86 1208 vorbis_encode_setup_setting(vi,vi->channels,vi->rate);
cannam@86 1209 }
cannam@86 1210 return(0);
cannam@86 1211 }
cannam@86 1212 return(OV_EIMPL);
cannam@86 1213 }
cannam@86 1214 return(OV_EINVAL);
cannam@86 1215 }