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  1. /*
  2. * MPEG video MMX templates
  3. *
  4. * Copyright (c) 2002 Michael Niedermayer <michaelni@gmx.at>
  5. *
  6. * This library is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2 of the License, or (at your option) any later version.
  10. *
  11. * This library is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with this library; if not, write to the Free Software
  18. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  19. */
  20. #undef SPREADW
  21. #undef PMAXW
  22. #ifdef HAVE_MMX2
  23. #define SPREADW(a) "pshufw $0, " #a ", " #a " \n\t"
  24. #define PMAXW(a,b) "pmaxsw " #a ", " #b " \n\t"
  25. #else
  26. #define SPREADW(a) \
  27. "punpcklwd " #a ", " #a " \n\t"\
  28. "punpcklwd " #a ", " #a " \n\t"
  29. #define PMAXW(a,b) \
  30. "psubusw " #a ", " #b " \n\t"\
  31. "paddw " #a ", " #b " \n\t"
  32. #endif
  33. static int RENAME(dct_quantize)(MpegEncContext *s,
  34. DCTELEM *block, int n,
  35. int qscale, int *overflow)
  36. {
  37. long last_non_zero_p1;
  38. int level=0, q; //=0 is cuz gcc says uninitalized ...
  39. const uint16_t *qmat, *bias;
  40. __align8 int16_t temp_block[64];
  41. assert((7&(int)(&temp_block[0])) == 0); //did gcc align it correctly?
  42. //s->fdct (block);
  43. RENAMEl(ff_fdct) (block); //cant be anything else ...
  44. if(s->dct_error_sum)
  45. s->denoise_dct(s, block);
  46. if (s->mb_intra) {
  47. int dummy;
  48. if (n < 4)
  49. q = s->y_dc_scale;
  50. else
  51. q = s->c_dc_scale;
  52. /* note: block[0] is assumed to be positive */
  53. if (!s->h263_aic) {
  54. #if 1
  55. asm volatile (
  56. "mul %%ecx \n\t"
  57. : "=d" (level), "=a"(dummy)
  58. : "a" ((block[0]>>2) + q), "c" (inverse[q<<1])
  59. );
  60. #else
  61. asm volatile (
  62. "xorl %%edx, %%edx \n\t"
  63. "divw %%cx \n\t"
  64. "movzwl %%ax, %%eax \n\t"
  65. : "=a" (level)
  66. : "a" ((block[0]>>2) + q), "c" (q<<1)
  67. : "%edx"
  68. );
  69. #endif
  70. } else
  71. /* For AIC we skip quant/dequant of INTRADC */
  72. level = (block[0] + 4)>>3;
  73. block[0]=0; //avoid fake overflow
  74. // temp_block[0] = (block[0] + (q >> 1)) / q;
  75. last_non_zero_p1 = 1;
  76. bias = s->q_intra_matrix16[qscale][1];
  77. qmat = s->q_intra_matrix16[qscale][0];
  78. } else {
  79. last_non_zero_p1 = 0;
  80. bias = s->q_inter_matrix16[qscale][1];
  81. qmat = s->q_inter_matrix16[qscale][0];
  82. }
  83. if((s->out_format == FMT_H263 || s->out_format == FMT_H261) && s->mpeg_quant==0){
  84. asm volatile(
  85. "movd %%"REG_a", %%mm3 \n\t" // last_non_zero_p1
  86. SPREADW(%%mm3)
  87. "pxor %%mm7, %%mm7 \n\t" // 0
  88. "pxor %%mm4, %%mm4 \n\t" // 0
  89. "movq (%2), %%mm5 \n\t" // qmat[0]
  90. "pxor %%mm6, %%mm6 \n\t"
  91. "psubw (%3), %%mm6 \n\t" // -bias[0]
  92. "mov $-128, %%"REG_a" \n\t"
  93. ".balign 16 \n\t"
  94. "1: \n\t"
  95. "pxor %%mm1, %%mm1 \n\t" // 0
  96. "movq (%1, %%"REG_a"), %%mm0 \n\t" // block[i]
  97. "pcmpgtw %%mm0, %%mm1 \n\t" // block[i] <= 0 ? 0xFF : 0x00
  98. "pxor %%mm1, %%mm0 \n\t"
  99. "psubw %%mm1, %%mm0 \n\t" // ABS(block[i])
  100. "psubusw %%mm6, %%mm0 \n\t" // ABS(block[i]) + bias[0]
  101. "pmulhw %%mm5, %%mm0 \n\t" // (ABS(block[i])*qmat[0] - bias[0]*qmat[0])>>16
  102. "por %%mm0, %%mm4 \n\t"
  103. "pxor %%mm1, %%mm0 \n\t"
  104. "psubw %%mm1, %%mm0 \n\t" // out=((ABS(block[i])*qmat[0] - bias[0]*qmat[0])>>16)*sign(block[i])
  105. "movq %%mm0, (%5, %%"REG_a") \n\t"
  106. "pcmpeqw %%mm7, %%mm0 \n\t" // out==0 ? 0xFF : 0x00
  107. "movq (%4, %%"REG_a"), %%mm1 \n\t"
  108. "movq %%mm7, (%1, %%"REG_a") \n\t" // 0
  109. "pandn %%mm1, %%mm0 \n\t"
  110. PMAXW(%%mm0, %%mm3)
  111. "add $8, %%"REG_a" \n\t"
  112. " js 1b \n\t"
  113. "movq %%mm3, %%mm0 \n\t"
  114. "psrlq $32, %%mm3 \n\t"
  115. PMAXW(%%mm0, %%mm3)
  116. "movq %%mm3, %%mm0 \n\t"
  117. "psrlq $16, %%mm3 \n\t"
  118. PMAXW(%%mm0, %%mm3)
  119. "movd %%mm3, %%"REG_a" \n\t"
  120. "movzb %%al, %%"REG_a" \n\t" // last_non_zero_p1
  121. : "+a" (last_non_zero_p1)
  122. : "r" (block+64), "r" (qmat), "r" (bias),
  123. "r" (inv_zigzag_direct16+64), "r" (temp_block+64)
  124. );
  125. // note the asm is split cuz gcc doesnt like that many operands ...
  126. asm volatile(
  127. "movd %1, %%mm1 \n\t" // max_qcoeff
  128. SPREADW(%%mm1)
  129. "psubusw %%mm1, %%mm4 \n\t"
  130. "packuswb %%mm4, %%mm4 \n\t"
  131. "movd %%mm4, %0 \n\t" // *overflow
  132. : "=g" (*overflow)
  133. : "g" (s->max_qcoeff)
  134. );
  135. }else{ // FMT_H263
  136. asm volatile(
  137. "movd %%"REG_a", %%mm3 \n\t" // last_non_zero_p1
  138. SPREADW(%%mm3)
  139. "pxor %%mm7, %%mm7 \n\t" // 0
  140. "pxor %%mm4, %%mm4 \n\t" // 0
  141. "mov $-128, %%"REG_a" \n\t"
  142. ".balign 16 \n\t"
  143. "1: \n\t"
  144. "pxor %%mm1, %%mm1 \n\t" // 0
  145. "movq (%1, %%"REG_a"), %%mm0 \n\t" // block[i]
  146. "pcmpgtw %%mm0, %%mm1 \n\t" // block[i] <= 0 ? 0xFF : 0x00
  147. "pxor %%mm1, %%mm0 \n\t"
  148. "psubw %%mm1, %%mm0 \n\t" // ABS(block[i])
  149. "movq (%3, %%"REG_a"), %%mm6 \n\t" // bias[0]
  150. "paddusw %%mm6, %%mm0 \n\t" // ABS(block[i]) + bias[0]
  151. "movq (%2, %%"REG_a"), %%mm5 \n\t" // qmat[i]
  152. "pmulhw %%mm5, %%mm0 \n\t" // (ABS(block[i])*qmat[0] + bias[0]*qmat[0])>>16
  153. "por %%mm0, %%mm4 \n\t"
  154. "pxor %%mm1, %%mm0 \n\t"
  155. "psubw %%mm1, %%mm0 \n\t" // out=((ABS(block[i])*qmat[0] - bias[0]*qmat[0])>>16)*sign(block[i])
  156. "movq %%mm0, (%5, %%"REG_a") \n\t"
  157. "pcmpeqw %%mm7, %%mm0 \n\t" // out==0 ? 0xFF : 0x00
  158. "movq (%4, %%"REG_a"), %%mm1 \n\t"
  159. "movq %%mm7, (%1, %%"REG_a") \n\t" // 0
  160. "pandn %%mm1, %%mm0 \n\t"
  161. PMAXW(%%mm0, %%mm3)
  162. "add $8, %%"REG_a" \n\t"
  163. " js 1b \n\t"
  164. "movq %%mm3, %%mm0 \n\t"
  165. "psrlq $32, %%mm3 \n\t"
  166. PMAXW(%%mm0, %%mm3)
  167. "movq %%mm3, %%mm0 \n\t"
  168. "psrlq $16, %%mm3 \n\t"
  169. PMAXW(%%mm0, %%mm3)
  170. "movd %%mm3, %%"REG_a" \n\t"
  171. "movzb %%al, %%"REG_a" \n\t" // last_non_zero_p1
  172. : "+a" (last_non_zero_p1)
  173. : "r" (block+64), "r" (qmat+64), "r" (bias+64),
  174. "r" (inv_zigzag_direct16+64), "r" (temp_block+64)
  175. );
  176. // note the asm is split cuz gcc doesnt like that many operands ...
  177. asm volatile(
  178. "movd %1, %%mm1 \n\t" // max_qcoeff
  179. SPREADW(%%mm1)
  180. "psubusw %%mm1, %%mm4 \n\t"
  181. "packuswb %%mm4, %%mm4 \n\t"
  182. "movd %%mm4, %0 \n\t" // *overflow
  183. : "=g" (*overflow)
  184. : "g" (s->max_qcoeff)
  185. );
  186. }
  187. if(s->mb_intra) block[0]= level;
  188. else block[0]= temp_block[0];
  189. if(s->dsp.idct_permutation_type == FF_SIMPLE_IDCT_PERM){
  190. if(last_non_zero_p1 <= 1) goto end;
  191. block[0x08] = temp_block[0x01]; block[0x10] = temp_block[0x08];
  192. block[0x20] = temp_block[0x10];
  193. if(last_non_zero_p1 <= 4) goto end;
  194. block[0x18] = temp_block[0x09]; block[0x04] = temp_block[0x02];
  195. block[0x09] = temp_block[0x03];
  196. if(last_non_zero_p1 <= 7) goto end;
  197. block[0x14] = temp_block[0x0A]; block[0x28] = temp_block[0x11];
  198. block[0x12] = temp_block[0x18]; block[0x02] = temp_block[0x20];
  199. if(last_non_zero_p1 <= 11) goto end;
  200. block[0x1A] = temp_block[0x19]; block[0x24] = temp_block[0x12];
  201. block[0x19] = temp_block[0x0B]; block[0x01] = temp_block[0x04];
  202. block[0x0C] = temp_block[0x05];
  203. if(last_non_zero_p1 <= 16) goto end;
  204. block[0x11] = temp_block[0x0C]; block[0x29] = temp_block[0x13];
  205. block[0x16] = temp_block[0x1A]; block[0x0A] = temp_block[0x21];
  206. block[0x30] = temp_block[0x28]; block[0x22] = temp_block[0x30];
  207. block[0x38] = temp_block[0x29]; block[0x06] = temp_block[0x22];
  208. if(last_non_zero_p1 <= 24) goto end;
  209. block[0x1B] = temp_block[0x1B]; block[0x21] = temp_block[0x14];
  210. block[0x1C] = temp_block[0x0D]; block[0x05] = temp_block[0x06];
  211. block[0x0D] = temp_block[0x07]; block[0x15] = temp_block[0x0E];
  212. block[0x2C] = temp_block[0x15]; block[0x13] = temp_block[0x1C];
  213. if(last_non_zero_p1 <= 32) goto end;
  214. block[0x0B] = temp_block[0x23]; block[0x34] = temp_block[0x2A];
  215. block[0x2A] = temp_block[0x31]; block[0x32] = temp_block[0x38];
  216. block[0x3A] = temp_block[0x39]; block[0x26] = temp_block[0x32];
  217. block[0x39] = temp_block[0x2B]; block[0x03] = temp_block[0x24];
  218. if(last_non_zero_p1 <= 40) goto end;
  219. block[0x1E] = temp_block[0x1D]; block[0x25] = temp_block[0x16];
  220. block[0x1D] = temp_block[0x0F]; block[0x2D] = temp_block[0x17];
  221. block[0x17] = temp_block[0x1E]; block[0x0E] = temp_block[0x25];
  222. block[0x31] = temp_block[0x2C]; block[0x2B] = temp_block[0x33];
  223. if(last_non_zero_p1 <= 48) goto end;
  224. block[0x36] = temp_block[0x3A]; block[0x3B] = temp_block[0x3B];
  225. block[0x23] = temp_block[0x34]; block[0x3C] = temp_block[0x2D];
  226. block[0x07] = temp_block[0x26]; block[0x1F] = temp_block[0x1F];
  227. block[0x0F] = temp_block[0x27]; block[0x35] = temp_block[0x2E];
  228. if(last_non_zero_p1 <= 56) goto end;
  229. block[0x2E] = temp_block[0x35]; block[0x33] = temp_block[0x3C];
  230. block[0x3E] = temp_block[0x3D]; block[0x27] = temp_block[0x36];
  231. block[0x3D] = temp_block[0x2F]; block[0x2F] = temp_block[0x37];
  232. block[0x37] = temp_block[0x3E]; block[0x3F] = temp_block[0x3F];
  233. }else if(s->dsp.idct_permutation_type == FF_LIBMPEG2_IDCT_PERM){
  234. if(last_non_zero_p1 <= 1) goto end;
  235. block[0x04] = temp_block[0x01];
  236. block[0x08] = temp_block[0x08]; block[0x10] = temp_block[0x10];
  237. if(last_non_zero_p1 <= 4) goto end;
  238. block[0x0C] = temp_block[0x09]; block[0x01] = temp_block[0x02];
  239. block[0x05] = temp_block[0x03];
  240. if(last_non_zero_p1 <= 7) goto end;
  241. block[0x09] = temp_block[0x0A]; block[0x14] = temp_block[0x11];
  242. block[0x18] = temp_block[0x18]; block[0x20] = temp_block[0x20];
  243. if(last_non_zero_p1 <= 11) goto end;
  244. block[0x1C] = temp_block[0x19];
  245. block[0x11] = temp_block[0x12]; block[0x0D] = temp_block[0x0B];
  246. block[0x02] = temp_block[0x04]; block[0x06] = temp_block[0x05];
  247. if(last_non_zero_p1 <= 16) goto end;
  248. block[0x0A] = temp_block[0x0C]; block[0x15] = temp_block[0x13];
  249. block[0x19] = temp_block[0x1A]; block[0x24] = temp_block[0x21];
  250. block[0x28] = temp_block[0x28]; block[0x30] = temp_block[0x30];
  251. block[0x2C] = temp_block[0x29]; block[0x21] = temp_block[0x22];
  252. if(last_non_zero_p1 <= 24) goto end;
  253. block[0x1D] = temp_block[0x1B]; block[0x12] = temp_block[0x14];
  254. block[0x0E] = temp_block[0x0D]; block[0x03] = temp_block[0x06];
  255. block[0x07] = temp_block[0x07]; block[0x0B] = temp_block[0x0E];
  256. block[0x16] = temp_block[0x15]; block[0x1A] = temp_block[0x1C];
  257. if(last_non_zero_p1 <= 32) goto end;
  258. block[0x25] = temp_block[0x23]; block[0x29] = temp_block[0x2A];
  259. block[0x34] = temp_block[0x31]; block[0x38] = temp_block[0x38];
  260. block[0x3C] = temp_block[0x39]; block[0x31] = temp_block[0x32];
  261. block[0x2D] = temp_block[0x2B]; block[0x22] = temp_block[0x24];
  262. if(last_non_zero_p1 <= 40) goto end;
  263. block[0x1E] = temp_block[0x1D]; block[0x13] = temp_block[0x16];
  264. block[0x0F] = temp_block[0x0F]; block[0x17] = temp_block[0x17];
  265. block[0x1B] = temp_block[0x1E]; block[0x26] = temp_block[0x25];
  266. block[0x2A] = temp_block[0x2C]; block[0x35] = temp_block[0x33];
  267. if(last_non_zero_p1 <= 48) goto end;
  268. block[0x39] = temp_block[0x3A]; block[0x3D] = temp_block[0x3B];
  269. block[0x32] = temp_block[0x34]; block[0x2E] = temp_block[0x2D];
  270. block[0x23] = temp_block[0x26]; block[0x1F] = temp_block[0x1F];
  271. block[0x27] = temp_block[0x27]; block[0x2B] = temp_block[0x2E];
  272. if(last_non_zero_p1 <= 56) goto end;
  273. block[0x36] = temp_block[0x35]; block[0x3A] = temp_block[0x3C];
  274. block[0x3E] = temp_block[0x3D]; block[0x33] = temp_block[0x36];
  275. block[0x2F] = temp_block[0x2F]; block[0x37] = temp_block[0x37];
  276. block[0x3B] = temp_block[0x3E]; block[0x3F] = temp_block[0x3F];
  277. }else{
  278. if(last_non_zero_p1 <= 1) goto end;
  279. block[0x01] = temp_block[0x01];
  280. block[0x08] = temp_block[0x08]; block[0x10] = temp_block[0x10];
  281. if(last_non_zero_p1 <= 4) goto end;
  282. block[0x09] = temp_block[0x09]; block[0x02] = temp_block[0x02];
  283. block[0x03] = temp_block[0x03];
  284. if(last_non_zero_p1 <= 7) goto end;
  285. block[0x0A] = temp_block[0x0A]; block[0x11] = temp_block[0x11];
  286. block[0x18] = temp_block[0x18]; block[0x20] = temp_block[0x20];
  287. if(last_non_zero_p1 <= 11) goto end;
  288. block[0x19] = temp_block[0x19];
  289. block[0x12] = temp_block[0x12]; block[0x0B] = temp_block[0x0B];
  290. block[0x04] = temp_block[0x04]; block[0x05] = temp_block[0x05];
  291. if(last_non_zero_p1 <= 16) goto end;
  292. block[0x0C] = temp_block[0x0C]; block[0x13] = temp_block[0x13];
  293. block[0x1A] = temp_block[0x1A]; block[0x21] = temp_block[0x21];
  294. block[0x28] = temp_block[0x28]; block[0x30] = temp_block[0x30];
  295. block[0x29] = temp_block[0x29]; block[0x22] = temp_block[0x22];
  296. if(last_non_zero_p1 <= 24) goto end;
  297. block[0x1B] = temp_block[0x1B]; block[0x14] = temp_block[0x14];
  298. block[0x0D] = temp_block[0x0D]; block[0x06] = temp_block[0x06];
  299. block[0x07] = temp_block[0x07]; block[0x0E] = temp_block[0x0E];
  300. block[0x15] = temp_block[0x15]; block[0x1C] = temp_block[0x1C];
  301. if(last_non_zero_p1 <= 32) goto end;
  302. block[0x23] = temp_block[0x23]; block[0x2A] = temp_block[0x2A];
  303. block[0x31] = temp_block[0x31]; block[0x38] = temp_block[0x38];
  304. block[0x39] = temp_block[0x39]; block[0x32] = temp_block[0x32];
  305. block[0x2B] = temp_block[0x2B]; block[0x24] = temp_block[0x24];
  306. if(last_non_zero_p1 <= 40) goto end;
  307. block[0x1D] = temp_block[0x1D]; block[0x16] = temp_block[0x16];
  308. block[0x0F] = temp_block[0x0F]; block[0x17] = temp_block[0x17];
  309. block[0x1E] = temp_block[0x1E]; block[0x25] = temp_block[0x25];
  310. block[0x2C] = temp_block[0x2C]; block[0x33] = temp_block[0x33];
  311. if(last_non_zero_p1 <= 48) goto end;
  312. block[0x3A] = temp_block[0x3A]; block[0x3B] = temp_block[0x3B];
  313. block[0x34] = temp_block[0x34]; block[0x2D] = temp_block[0x2D];
  314. block[0x26] = temp_block[0x26]; block[0x1F] = temp_block[0x1F];
  315. block[0x27] = temp_block[0x27]; block[0x2E] = temp_block[0x2E];
  316. if(last_non_zero_p1 <= 56) goto end;
  317. block[0x35] = temp_block[0x35]; block[0x3C] = temp_block[0x3C];
  318. block[0x3D] = temp_block[0x3D]; block[0x36] = temp_block[0x36];
  319. block[0x2F] = temp_block[0x2F]; block[0x37] = temp_block[0x37];
  320. block[0x3E] = temp_block[0x3E]; block[0x3F] = temp_block[0x3F];
  321. }
  322. end:
  323. /*
  324. for(i=0; i<last_non_zero_p1; i++)
  325. {
  326. int j= zigzag_direct_noperm[i];
  327. block[block_permute_op(j)]= temp_block[j];
  328. }
  329. */
  330. return last_non_zero_p1 - 1;
  331. }