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  1. /*
  2. * H.26L/H.264/AVC/JVT/14496-10/... encoder/decoder
  3. * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
  4. *
  5. * This library is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU Lesser General Public
  7. * License as published by the Free Software Foundation; either
  8. * version 2 of the License, or (at your option) any later version.
  9. *
  10. * This library is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  13. * Lesser General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU Lesser General Public
  16. * License along with this library; if not, write to the Free Software
  17. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  18. *
  19. */
  20. /**
  21. * @file cabac.c
  22. * Context Adaptive Binary Arithmetic Coder.
  23. */
  24. #include <string.h>
  25. #include "common.h"
  26. #include "cabac.h"
  27. const uint8_t ff_h264_lps_range[64][4]= {
  28. {128,176,208,240}, {128,167,197,227}, {128,158,187,216}, {123,150,178,205},
  29. {116,142,169,195}, {111,135,160,185}, {105,128,152,175}, {100,122,144,166},
  30. { 95,116,137,158}, { 90,110,130,150}, { 85,104,123,142}, { 81, 99,117,135},
  31. { 77, 94,111,128}, { 73, 89,105,122}, { 69, 85,100,116}, { 66, 80, 95,110},
  32. { 62, 76, 90,104}, { 59, 72, 86, 99}, { 56, 69, 81, 94}, { 53, 65, 77, 89},
  33. { 51, 62, 73, 85}, { 48, 59, 69, 80}, { 46, 56, 66, 76}, { 43, 53, 63, 72},
  34. { 41, 50, 59, 69}, { 39, 48, 56, 65}, { 37, 45, 54, 62}, { 35, 43, 51, 59},
  35. { 33, 41, 48, 56}, { 32, 39, 46, 53}, { 30, 37, 43, 50}, { 29, 35, 41, 48},
  36. { 27, 33, 39, 45}, { 26, 31, 37, 43}, { 24, 30, 35, 41}, { 23, 28, 33, 39},
  37. { 22, 27, 32, 37}, { 21, 26, 30, 35}, { 20, 24, 29, 33}, { 19, 23, 27, 31},
  38. { 18, 22, 26, 30}, { 17, 21, 25, 28}, { 16, 20, 23, 27}, { 15, 19, 22, 25},
  39. { 14, 18, 21, 24}, { 14, 17, 20, 23}, { 13, 16, 19, 22}, { 12, 15, 18, 21},
  40. { 12, 14, 17, 20}, { 11, 14, 16, 19}, { 11, 13, 15, 18}, { 10, 12, 15, 17},
  41. { 10, 12, 14, 16}, { 9, 11, 13, 15}, { 9, 11, 12, 14}, { 8, 10, 12, 14},
  42. { 8, 9, 11, 13}, { 7, 9, 11, 12}, { 7, 9, 10, 12}, { 7, 8, 10, 11},
  43. { 6, 8, 9, 11}, { 6, 7, 9, 10}, { 6, 7, 8, 9}, { 2, 2, 2, 2},
  44. };
  45. const uint8_t ff_h264_mps_state[64]= {
  46. 1, 2, 3, 4, 5, 6, 7, 8,
  47. 9,10,11,12,13,14,15,16,
  48. 17,18,19,20,21,22,23,24,
  49. 25,26,27,28,29,30,31,32,
  50. 33,34,35,36,37,38,39,40,
  51. 41,42,43,44,45,46,47,48,
  52. 49,50,51,52,53,54,55,56,
  53. 57,58,59,60,61,62,62,63,
  54. };
  55. const uint8_t ff_h264_lps_state[64]= {
  56. 0, 0, 1, 2, 2, 4, 4, 5,
  57. 6, 7, 8, 9, 9,11,11,12,
  58. 13,13,15,15,16,16,18,18,
  59. 19,19,21,21,22,22,23,24,
  60. 24,25,26,26,27,27,28,29,
  61. 29,30,30,30,31,32,32,33,
  62. 33,33,34,34,35,35,35,36,
  63. 36,36,37,37,37,38,38,63,
  64. };
  65. const uint8_t ff_h264_norm_shift[256]= {
  66. 8,7,6,6,5,5,5,5,4,4,4,4,4,4,4,4,
  67. 3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,
  68. 2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,
  69. 2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,
  70. 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
  71. 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
  72. 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
  73. 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
  74. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  75. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  76. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  77. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  78. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  79. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  80. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  81. 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,
  82. };
  83. /**
  84. *
  85. * @param buf_size size of buf in bits
  86. */
  87. void ff_init_cabac_encoder(CABACContext *c, uint8_t *buf, int buf_size){
  88. init_put_bits(&c->pb, buf, buf_size);
  89. c->low= 0;
  90. c->range= 0x1FE;
  91. c->outstanding_count= 0;
  92. #ifdef STRICT_LIMITS
  93. c->sym_count =0;
  94. #endif
  95. c->pb.bit_left++; //avoids firstBitFlag
  96. }
  97. /**
  98. *
  99. * @param buf_size size of buf in bits
  100. */
  101. void ff_init_cabac_decoder(CABACContext *c, const uint8_t *buf, int buf_size){
  102. c->bytestream_start=
  103. c->bytestream= buf;
  104. c->bytestream_end= buf + buf_size;
  105. #if CABAC_BITS == 16
  106. c->low = (*c->bytestream++)<<18;
  107. c->low+= (*c->bytestream++)<<10;
  108. #else
  109. c->low = (*c->bytestream++)<<10;
  110. #endif
  111. c->low+= ((*c->bytestream++)<<2) + 2;
  112. c->range= 0x1FE<<(CABAC_BITS + 1);
  113. }
  114. void ff_init_cabac_states(CABACContext *c, uint8_t const (*lps_range)[4],
  115. uint8_t const *mps_state, uint8_t const *lps_state, int state_count){
  116. int i, j;
  117. for(i=0; i<state_count; i++){
  118. for(j=0; j<4; j++){ //FIXME check if this is worth the 1 shift we save
  119. c->lps_range[2*i+0][j+4]=
  120. c->lps_range[2*i+1][j+4]= lps_range[i][j];
  121. }
  122. c->mps_state[2*i+0]= 2*mps_state[i];
  123. c->mps_state[2*i+1]= 2*mps_state[i]+1;
  124. if( i ){
  125. c->lps_state[2*i+0]= 2*lps_state[i];
  126. c->lps_state[2*i+1]= 2*lps_state[i]+1;
  127. }else{
  128. c->lps_state[2*i+0]= 1;
  129. c->lps_state[2*i+1]= 0;
  130. }
  131. }
  132. }
  133. #if 0 //selftest
  134. #define SIZE 10240
  135. int main(){
  136. CABACContext c;
  137. uint8_t b[9*SIZE];
  138. uint8_t r[9*SIZE];
  139. int i;
  140. uint8_t state[10]= {0};
  141. ff_init_cabac_encoder(&c, b, SIZE);
  142. ff_init_cabac_states(&c, ff_h264_lps_range, ff_h264_mps_state, ff_h264_lps_state, 64);
  143. for(i=0; i<SIZE; i++){
  144. r[i]= random()%7;
  145. }
  146. for(i=0; i<SIZE; i++){
  147. START_TIMER
  148. put_cabac_bypass(&c, r[i]&1);
  149. STOP_TIMER("put_cabac_bypass")
  150. }
  151. for(i=0; i<SIZE; i++){
  152. START_TIMER
  153. put_cabac(&c, state, r[i]&1);
  154. STOP_TIMER("put_cabac")
  155. }
  156. for(i=0; i<SIZE; i++){
  157. START_TIMER
  158. put_cabac_u(&c, state, r[i], 6, 3, i&1);
  159. STOP_TIMER("put_cabac_u")
  160. }
  161. for(i=0; i<SIZE; i++){
  162. START_TIMER
  163. put_cabac_ueg(&c, state, r[i], 3, 0, 1, 2);
  164. STOP_TIMER("put_cabac_ueg")
  165. }
  166. put_cabac_terminate(&c, 1);
  167. ff_init_cabac_decoder(&c, b, SIZE);
  168. memset(state, 0, sizeof(state));
  169. for(i=0; i<SIZE; i++){
  170. START_TIMER
  171. if( (r[i]&1) != get_cabac_bypass(&c) )
  172. printf("CABAC bypass failure at %d\n", i);
  173. STOP_TIMER("get_cabac_bypass")
  174. }
  175. for(i=0; i<SIZE; i++){
  176. START_TIMER
  177. if( (r[i]&1) != get_cabac(&c, state) )
  178. printf("CABAC failure at %d\n", i);
  179. STOP_TIMER("get_cabac")
  180. }
  181. for(i=0; i<SIZE; i++){
  182. START_TIMER
  183. if( r[i] != get_cabac_u(&c, state, (i&1) ? 6 : 7, 3, i&1) )
  184. printf("CABAC unary (truncated) binarization failure at %d\n", i);
  185. STOP_TIMER("get_cabac_u")
  186. }
  187. for(i=0; i<SIZE; i++){
  188. START_TIMER
  189. if( r[i] != get_cabac_ueg(&c, state, 3, 0, 1, 2))
  190. printf("CABAC unary (truncated) binarization failure at %d\n", i);
  191. STOP_TIMER("get_cabac_ueg")
  192. }
  193. if(!get_cabac_terminate(&c))
  194. printf("where's the Terminator?\n");
  195. return 0;
  196. }
  197. #endif