annotate src/opus-1.3/celt/tests/test_unit_entropy.c @ 79:91c729825bca pa_catalina

Update build for AUDIO_COMPONENT_FIX
author Chris Cannam
date Wed, 30 Oct 2019 12:40:34 +0000
parents 7aeed7906520
children
rev   line source
Chris@69 1 /* Copyright (c) 2007-2011 Xiph.Org Foundation, Mozilla Corporation,
Chris@69 2 Gregory Maxwell
Chris@69 3 Written by Jean-Marc Valin, Gregory Maxwell, and Timothy B. Terriberry */
Chris@69 4 /*
Chris@69 5 Redistribution and use in source and binary forms, with or without
Chris@69 6 modification, are permitted provided that the following conditions
Chris@69 7 are met:
Chris@69 8
Chris@69 9 - Redistributions of source code must retain the above copyright
Chris@69 10 notice, this list of conditions and the following disclaimer.
Chris@69 11
Chris@69 12 - Redistributions in binary form must reproduce the above copyright
Chris@69 13 notice, this list of conditions and the following disclaimer in the
Chris@69 14 documentation and/or other materials provided with the distribution.
Chris@69 15
Chris@69 16 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
Chris@69 17 ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
Chris@69 18 LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
Chris@69 19 A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER
Chris@69 20 OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
Chris@69 21 EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
Chris@69 22 PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
Chris@69 23 PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
Chris@69 24 LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
Chris@69 25 NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
Chris@69 26 SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
Chris@69 27 */
Chris@69 28
Chris@69 29 #ifdef HAVE_CONFIG_H
Chris@69 30 #include "config.h"
Chris@69 31 #endif
Chris@69 32
Chris@69 33 #include <stdlib.h>
Chris@69 34 #include <stdio.h>
Chris@69 35 #include <math.h>
Chris@69 36 #include <time.h>
Chris@69 37 #define CELT_C
Chris@69 38 #include "entcode.h"
Chris@69 39 #include "entenc.h"
Chris@69 40 #include "entdec.h"
Chris@69 41 #include <string.h>
Chris@69 42
Chris@69 43 #include "entenc.c"
Chris@69 44 #include "entdec.c"
Chris@69 45 #include "entcode.c"
Chris@69 46
Chris@69 47 #ifndef M_LOG2E
Chris@69 48 # define M_LOG2E 1.4426950408889634074
Chris@69 49 #endif
Chris@69 50 #define DATA_SIZE 10000000
Chris@69 51 #define DATA_SIZE2 10000
Chris@69 52
Chris@69 53 int main(int _argc,char **_argv){
Chris@69 54 ec_enc enc;
Chris@69 55 ec_dec dec;
Chris@69 56 long nbits;
Chris@69 57 long nbits2;
Chris@69 58 double entropy;
Chris@69 59 int ft;
Chris@69 60 int ftb;
Chris@69 61 int sz;
Chris@69 62 int i;
Chris@69 63 int ret;
Chris@69 64 unsigned int sym;
Chris@69 65 unsigned int seed;
Chris@69 66 unsigned char *ptr;
Chris@69 67 const char *env_seed;
Chris@69 68 ret=0;
Chris@69 69 entropy=0;
Chris@69 70 if (_argc > 2) {
Chris@69 71 fprintf(stderr, "Usage: %s [<seed>]\n", _argv[0]);
Chris@69 72 return 1;
Chris@69 73 }
Chris@69 74 env_seed = getenv("SEED");
Chris@69 75 if (_argc > 1)
Chris@69 76 seed = atoi(_argv[1]);
Chris@69 77 else if (env_seed)
Chris@69 78 seed = atoi(env_seed);
Chris@69 79 else
Chris@69 80 seed = time(NULL);
Chris@69 81 /*Testing encoding of raw bit values.*/
Chris@69 82 ptr = (unsigned char *)malloc(DATA_SIZE);
Chris@69 83 ec_enc_init(&enc,ptr, DATA_SIZE);
Chris@69 84 for(ft=2;ft<1024;ft++){
Chris@69 85 for(i=0;i<ft;i++){
Chris@69 86 entropy+=log(ft)*M_LOG2E;
Chris@69 87 ec_enc_uint(&enc,i,ft);
Chris@69 88 }
Chris@69 89 }
Chris@69 90 /*Testing encoding of raw bit values.*/
Chris@69 91 for(ftb=1;ftb<16;ftb++){
Chris@69 92 for(i=0;i<(1<<ftb);i++){
Chris@69 93 entropy+=ftb;
Chris@69 94 nbits=ec_tell(&enc);
Chris@69 95 ec_enc_bits(&enc,i,ftb);
Chris@69 96 nbits2=ec_tell(&enc);
Chris@69 97 if(nbits2-nbits!=ftb){
Chris@69 98 fprintf(stderr,"Used %li bits to encode %i bits directly.\n",
Chris@69 99 nbits2-nbits,ftb);
Chris@69 100 ret=-1;
Chris@69 101 }
Chris@69 102 }
Chris@69 103 }
Chris@69 104 nbits=ec_tell_frac(&enc);
Chris@69 105 ec_enc_done(&enc);
Chris@69 106 fprintf(stderr,
Chris@69 107 "Encoded %0.2lf bits of entropy to %0.2lf bits (%0.3lf%% wasted).\n",
Chris@69 108 entropy,ldexp(nbits,-3),100*(nbits-ldexp(entropy,3))/nbits);
Chris@69 109 fprintf(stderr,"Packed to %li bytes.\n",(long)ec_range_bytes(&enc));
Chris@69 110 ec_dec_init(&dec,ptr,DATA_SIZE);
Chris@69 111 for(ft=2;ft<1024;ft++){
Chris@69 112 for(i=0;i<ft;i++){
Chris@69 113 sym=ec_dec_uint(&dec,ft);
Chris@69 114 if(sym!=(unsigned)i){
Chris@69 115 fprintf(stderr,"Decoded %i instead of %i with ft of %i.\n",sym,i,ft);
Chris@69 116 ret=-1;
Chris@69 117 }
Chris@69 118 }
Chris@69 119 }
Chris@69 120 for(ftb=1;ftb<16;ftb++){
Chris@69 121 for(i=0;i<(1<<ftb);i++){
Chris@69 122 sym=ec_dec_bits(&dec,ftb);
Chris@69 123 if(sym!=(unsigned)i){
Chris@69 124 fprintf(stderr,"Decoded %i instead of %i with ftb of %i.\n",sym,i,ftb);
Chris@69 125 ret=-1;
Chris@69 126 }
Chris@69 127 }
Chris@69 128 }
Chris@69 129 nbits2=ec_tell_frac(&dec);
Chris@69 130 if(nbits!=nbits2){
Chris@69 131 fprintf(stderr,
Chris@69 132 "Reported number of bits used was %0.2lf, should be %0.2lf.\n",
Chris@69 133 ldexp(nbits2,-3),ldexp(nbits,-3));
Chris@69 134 ret=-1;
Chris@69 135 }
Chris@69 136 /*Testing an encoder bust prefers range coder data over raw bits.
Chris@69 137 This isn't a general guarantee, will only work for data that is buffered in
Chris@69 138 the encoder state and not yet stored in the user buffer, and should never
Chris@69 139 get used in practice.
Chris@69 140 It's mostly here for code coverage completeness.*/
Chris@69 141 /*Start with a 16-bit buffer.*/
Chris@69 142 ec_enc_init(&enc,ptr,2);
Chris@69 143 /*Write 7 raw bits.*/
Chris@69 144 ec_enc_bits(&enc,0x55,7);
Chris@69 145 /*Write 12.3 bits of range coder data.*/
Chris@69 146 ec_enc_uint(&enc,1,2);
Chris@69 147 ec_enc_uint(&enc,1,3);
Chris@69 148 ec_enc_uint(&enc,1,4);
Chris@69 149 ec_enc_uint(&enc,1,5);
Chris@69 150 ec_enc_uint(&enc,2,6);
Chris@69 151 ec_enc_uint(&enc,6,7);
Chris@69 152 ec_enc_done(&enc);
Chris@69 153 ec_dec_init(&dec,ptr,2);
Chris@69 154 if(!enc.error
Chris@69 155 /*The raw bits should have been overwritten by the range coder data.*/
Chris@69 156 ||ec_dec_bits(&dec,7)!=0x05
Chris@69 157 /*And all the range coder data should have been encoded correctly.*/
Chris@69 158 ||ec_dec_uint(&dec,2)!=1
Chris@69 159 ||ec_dec_uint(&dec,3)!=1
Chris@69 160 ||ec_dec_uint(&dec,4)!=1
Chris@69 161 ||ec_dec_uint(&dec,5)!=1
Chris@69 162 ||ec_dec_uint(&dec,6)!=2
Chris@69 163 ||ec_dec_uint(&dec,7)!=6){
Chris@69 164 fprintf(stderr,"Encoder bust overwrote range coder data with raw bits.\n");
Chris@69 165 ret=-1;
Chris@69 166 }
Chris@69 167 srand(seed);
Chris@69 168 fprintf(stderr,"Testing random streams... Random seed: %u (%.4X)\n", seed, rand() % 65536);
Chris@69 169 for(i=0;i<409600;i++){
Chris@69 170 unsigned *data;
Chris@69 171 unsigned *tell;
Chris@69 172 unsigned tell_bits;
Chris@69 173 int j;
Chris@69 174 int zeros;
Chris@69 175 ft=rand()/((RAND_MAX>>(rand()%11U))+1U)+10;
Chris@69 176 sz=rand()/((RAND_MAX>>(rand()%9U))+1U);
Chris@69 177 data=(unsigned *)malloc(sz*sizeof(*data));
Chris@69 178 tell=(unsigned *)malloc((sz+1)*sizeof(*tell));
Chris@69 179 ec_enc_init(&enc,ptr,DATA_SIZE2);
Chris@69 180 zeros = rand()%13==0;
Chris@69 181 tell[0]=ec_tell_frac(&enc);
Chris@69 182 for(j=0;j<sz;j++){
Chris@69 183 if (zeros)
Chris@69 184 data[j]=0;
Chris@69 185 else
Chris@69 186 data[j]=rand()%ft;
Chris@69 187 ec_enc_uint(&enc,data[j],ft);
Chris@69 188 tell[j+1]=ec_tell_frac(&enc);
Chris@69 189 }
Chris@69 190 if (rand()%2==0)
Chris@69 191 while(ec_tell(&enc)%8 != 0)
Chris@69 192 ec_enc_uint(&enc, rand()%2, 2);
Chris@69 193 tell_bits = ec_tell(&enc);
Chris@69 194 ec_enc_done(&enc);
Chris@69 195 if(tell_bits!=(unsigned)ec_tell(&enc)){
Chris@69 196 fprintf(stderr,"ec_tell() changed after ec_enc_done(): %i instead of %i (Random seed: %u)\n",
Chris@69 197 ec_tell(&enc),tell_bits,seed);
Chris@69 198 ret=-1;
Chris@69 199 }
Chris@69 200 if ((tell_bits+7)/8 < ec_range_bytes(&enc))
Chris@69 201 {
Chris@69 202 fprintf (stderr, "ec_tell() lied, there's %i bytes instead of %d (Random seed: %u)\n",
Chris@69 203 ec_range_bytes(&enc), (tell_bits+7)/8,seed);
Chris@69 204 ret=-1;
Chris@69 205 }
Chris@69 206 ec_dec_init(&dec,ptr,DATA_SIZE2);
Chris@69 207 if(ec_tell_frac(&dec)!=tell[0]){
Chris@69 208 fprintf(stderr,
Chris@69 209 "Tell mismatch between encoder and decoder at symbol %i: %i instead of %i (Random seed: %u).\n",
Chris@69 210 0,ec_tell_frac(&dec),tell[0],seed);
Chris@69 211 }
Chris@69 212 for(j=0;j<sz;j++){
Chris@69 213 sym=ec_dec_uint(&dec,ft);
Chris@69 214 if(sym!=data[j]){
Chris@69 215 fprintf(stderr,
Chris@69 216 "Decoded %i instead of %i with ft of %i at position %i of %i (Random seed: %u).\n",
Chris@69 217 sym,data[j],ft,j,sz,seed);
Chris@69 218 ret=-1;
Chris@69 219 }
Chris@69 220 if(ec_tell_frac(&dec)!=tell[j+1]){
Chris@69 221 fprintf(stderr,
Chris@69 222 "Tell mismatch between encoder and decoder at symbol %i: %i instead of %i (Random seed: %u).\n",
Chris@69 223 j+1,ec_tell_frac(&dec),tell[j+1],seed);
Chris@69 224 }
Chris@69 225 }
Chris@69 226 free(tell);
Chris@69 227 free(data);
Chris@69 228 }
Chris@69 229 /*Test compatibility between multiple different encode/decode routines.*/
Chris@69 230 for(i=0;i<409600;i++){
Chris@69 231 unsigned *logp1;
Chris@69 232 unsigned *data;
Chris@69 233 unsigned *tell;
Chris@69 234 unsigned *enc_method;
Chris@69 235 int j;
Chris@69 236 sz=rand()/((RAND_MAX>>(rand()%9U))+1U);
Chris@69 237 logp1=(unsigned *)malloc(sz*sizeof(*logp1));
Chris@69 238 data=(unsigned *)malloc(sz*sizeof(*data));
Chris@69 239 tell=(unsigned *)malloc((sz+1)*sizeof(*tell));
Chris@69 240 enc_method=(unsigned *)malloc(sz*sizeof(*enc_method));
Chris@69 241 ec_enc_init(&enc,ptr,DATA_SIZE2);
Chris@69 242 tell[0]=ec_tell_frac(&enc);
Chris@69 243 for(j=0;j<sz;j++){
Chris@69 244 data[j]=rand()/((RAND_MAX>>1)+1);
Chris@69 245 logp1[j]=(rand()%15)+1;
Chris@69 246 enc_method[j]=rand()/((RAND_MAX>>2)+1);
Chris@69 247 switch(enc_method[j]){
Chris@69 248 case 0:{
Chris@69 249 ec_encode(&enc,data[j]?(1<<logp1[j])-1:0,
Chris@69 250 (1<<logp1[j])-(data[j]?0:1),1<<logp1[j]);
Chris@69 251 }break;
Chris@69 252 case 1:{
Chris@69 253 ec_encode_bin(&enc,data[j]?(1<<logp1[j])-1:0,
Chris@69 254 (1<<logp1[j])-(data[j]?0:1),logp1[j]);
Chris@69 255 }break;
Chris@69 256 case 2:{
Chris@69 257 ec_enc_bit_logp(&enc,data[j],logp1[j]);
Chris@69 258 }break;
Chris@69 259 case 3:{
Chris@69 260 unsigned char icdf[2];
Chris@69 261 icdf[0]=1;
Chris@69 262 icdf[1]=0;
Chris@69 263 ec_enc_icdf(&enc,data[j],icdf,logp1[j]);
Chris@69 264 }break;
Chris@69 265 }
Chris@69 266 tell[j+1]=ec_tell_frac(&enc);
Chris@69 267 }
Chris@69 268 ec_enc_done(&enc);
Chris@69 269 if((ec_tell(&enc)+7U)/8U<ec_range_bytes(&enc)){
Chris@69 270 fprintf(stderr,"tell() lied, there's %i bytes instead of %d (Random seed: %u)\n",
Chris@69 271 ec_range_bytes(&enc),(ec_tell(&enc)+7)/8,seed);
Chris@69 272 ret=-1;
Chris@69 273 }
Chris@69 274 ec_dec_init(&dec,ptr,DATA_SIZE2);
Chris@69 275 if(ec_tell_frac(&dec)!=tell[0]){
Chris@69 276 fprintf(stderr,
Chris@69 277 "Tell mismatch between encoder and decoder at symbol %i: %i instead of %i (Random seed: %u).\n",
Chris@69 278 0,ec_tell_frac(&dec),tell[0],seed);
Chris@69 279 }
Chris@69 280 for(j=0;j<sz;j++){
Chris@69 281 int fs;
Chris@69 282 int dec_method;
Chris@69 283 dec_method=rand()/((RAND_MAX>>2)+1);
Chris@69 284 switch(dec_method){
Chris@69 285 case 0:{
Chris@69 286 fs=ec_decode(&dec,1<<logp1[j]);
Chris@69 287 sym=fs>=(1<<logp1[j])-1;
Chris@69 288 ec_dec_update(&dec,sym?(1<<logp1[j])-1:0,
Chris@69 289 (1<<logp1[j])-(sym?0:1),1<<logp1[j]);
Chris@69 290 }break;
Chris@69 291 case 1:{
Chris@69 292 fs=ec_decode_bin(&dec,logp1[j]);
Chris@69 293 sym=fs>=(1<<logp1[j])-1;
Chris@69 294 ec_dec_update(&dec,sym?(1<<logp1[j])-1:0,
Chris@69 295 (1<<logp1[j])-(sym?0:1),1<<logp1[j]);
Chris@69 296 }break;
Chris@69 297 case 2:{
Chris@69 298 sym=ec_dec_bit_logp(&dec,logp1[j]);
Chris@69 299 }break;
Chris@69 300 case 3:{
Chris@69 301 unsigned char icdf[2];
Chris@69 302 icdf[0]=1;
Chris@69 303 icdf[1]=0;
Chris@69 304 sym=ec_dec_icdf(&dec,icdf,logp1[j]);
Chris@69 305 }break;
Chris@69 306 }
Chris@69 307 if(sym!=data[j]){
Chris@69 308 fprintf(stderr,
Chris@69 309 "Decoded %i instead of %i with logp1 of %i at position %i of %i (Random seed: %u).\n",
Chris@69 310 sym,data[j],logp1[j],j,sz,seed);
Chris@69 311 fprintf(stderr,"Encoding method: %i, decoding method: %i\n",
Chris@69 312 enc_method[j],dec_method);
Chris@69 313 ret=-1;
Chris@69 314 }
Chris@69 315 if(ec_tell_frac(&dec)!=tell[j+1]){
Chris@69 316 fprintf(stderr,
Chris@69 317 "Tell mismatch between encoder and decoder at symbol %i: %i instead of %i (Random seed: %u).\n",
Chris@69 318 j+1,ec_tell_frac(&dec),tell[j+1],seed);
Chris@69 319 }
Chris@69 320 }
Chris@69 321 free(enc_method);
Chris@69 322 free(tell);
Chris@69 323 free(data);
Chris@69 324 free(logp1);
Chris@69 325 }
Chris@69 326 ec_enc_init(&enc,ptr,DATA_SIZE2);
Chris@69 327 ec_enc_bit_logp(&enc,0,1);
Chris@69 328 ec_enc_bit_logp(&enc,0,1);
Chris@69 329 ec_enc_bit_logp(&enc,0,1);
Chris@69 330 ec_enc_bit_logp(&enc,0,1);
Chris@69 331 ec_enc_bit_logp(&enc,0,2);
Chris@69 332 ec_enc_patch_initial_bits(&enc,3,2);
Chris@69 333 if(enc.error){
Chris@69 334 fprintf(stderr,"patch_initial_bits failed");
Chris@69 335 ret=-1;
Chris@69 336 }
Chris@69 337 ec_enc_patch_initial_bits(&enc,0,5);
Chris@69 338 if(!enc.error){
Chris@69 339 fprintf(stderr,"patch_initial_bits didn't fail when it should have");
Chris@69 340 ret=-1;
Chris@69 341 }
Chris@69 342 ec_enc_done(&enc);
Chris@69 343 if(ec_range_bytes(&enc)!=1||ptr[0]!=192){
Chris@69 344 fprintf(stderr,"Got %d when expecting 192 for patch_initial_bits",ptr[0]);
Chris@69 345 ret=-1;
Chris@69 346 }
Chris@69 347 ec_enc_init(&enc,ptr,DATA_SIZE2);
Chris@69 348 ec_enc_bit_logp(&enc,0,1);
Chris@69 349 ec_enc_bit_logp(&enc,0,1);
Chris@69 350 ec_enc_bit_logp(&enc,1,6);
Chris@69 351 ec_enc_bit_logp(&enc,0,2);
Chris@69 352 ec_enc_patch_initial_bits(&enc,0,2);
Chris@69 353 if(enc.error){
Chris@69 354 fprintf(stderr,"patch_initial_bits failed");
Chris@69 355 ret=-1;
Chris@69 356 }
Chris@69 357 ec_enc_done(&enc);
Chris@69 358 if(ec_range_bytes(&enc)!=2||ptr[0]!=63){
Chris@69 359 fprintf(stderr,"Got %d when expecting 63 for patch_initial_bits",ptr[0]);
Chris@69 360 ret=-1;
Chris@69 361 }
Chris@69 362 ec_enc_init(&enc,ptr,2);
Chris@69 363 ec_enc_bit_logp(&enc,0,2);
Chris@69 364 for(i=0;i<48;i++){
Chris@69 365 ec_enc_bits(&enc,0,1);
Chris@69 366 }
Chris@69 367 ec_enc_done(&enc);
Chris@69 368 if(!enc.error){
Chris@69 369 fprintf(stderr,"Raw bits overfill didn't fail when it should have");
Chris@69 370 ret=-1;
Chris@69 371 }
Chris@69 372 ec_enc_init(&enc,ptr,2);
Chris@69 373 for(i=0;i<17;i++){
Chris@69 374 ec_enc_bits(&enc,0,1);
Chris@69 375 }
Chris@69 376 ec_enc_done(&enc);
Chris@69 377 if(!enc.error){
Chris@69 378 fprintf(stderr,"17 raw bits encoded in two bytes");
Chris@69 379 ret=-1;
Chris@69 380 }
Chris@69 381 free(ptr);
Chris@69 382 return ret;
Chris@69 383 }