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  1. ///****************************************************************************
  2. // *
  3. // * XVID MPEG-4 VIDEO CODEC
  4. // * - MMX and XMM forward discrete cosine transform -
  5. // *
  6. // * Copyright(C) 2001 Peter Ross <pross@xvid.org>
  7. // *
  8. // * This file is part of FFmpeg.
  9. // *
  10. // * FFmpeg is free software; you can redistribute it and/or
  11. // * modify it under the terms of the GNU Lesser General Public
  12. // * License as published by the Free Software Foundation; either
  13. // * version 2.1 of the License, or (at your option) any later version.
  14. // *
  15. // * FFmpeg is distributed in the hope that it will be useful,
  16. // * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. // * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. // * Lesser General Public License for more details.
  19. // *
  20. // * You should have received a copy of the GNU Lesser General Public License
  21. // * along with FFmpeg; if not, write to the Free Software Foundation,
  22. // * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. // *
  24. // * $Id$
  25. // *
  26. // ***************************************************************************/
  27. // ****************************************************************************
  28. //
  29. // Originally provided by Intel at AP-922
  30. // http://developer.intel.com/vtune/cbts/strmsimd/922down.htm
  31. // (See more app notes at http://developer.intel.com/vtune/cbts/strmsimd/appnotes.htm)
  32. // but in a limited edition.
  33. // New macro implements a column part for precise iDCT
  34. // The routine precision now satisfies IEEE standard 1180-1990.
  35. //
  36. // Copyright(C) 2000-2001 Peter Gubanov <peter@elecard.net.ru>
  37. // Rounding trick Copyright(C) 2000 Michel Lespinasse <walken@zoy.org>
  38. //
  39. // http://www.elecard.com/peter/idct.html
  40. // http://www.linuxvideo.org/mpeg2dec/
  41. //
  42. // ***************************************************************************/
  43. //
  44. // These examples contain code fragments for first stage iDCT 8x8
  45. // (for rows) and first stage DCT 8x8 (for columns)
  46. //
  47. // conversion to gcc syntax by michael niedermayer
  48. #include <inttypes.h>
  49. #include "../avcodec.h"
  50. //=============================================================================
  51. // Macros and other preprocessor constants
  52. //=============================================================================
  53. #define BITS_INV_ACC 5 // 4 or 5 for IEEE
  54. #define SHIFT_INV_ROW (16 - BITS_INV_ACC) //11
  55. #define SHIFT_INV_COL (1 + BITS_INV_ACC) //6
  56. #define RND_INV_ROW (1024 * (6 - BITS_INV_ACC))
  57. #define RND_INV_COL (16 * (BITS_INV_ACC - 3))
  58. #define RND_INV_CORR (RND_INV_COL - 1)
  59. #define BITS_FRW_ACC 3 // 2 or 3 for accuracy
  60. #define SHIFT_FRW_COL BITS_FRW_ACC
  61. #define SHIFT_FRW_ROW (BITS_FRW_ACC + 17)
  62. #define RND_FRW_ROW (262144*(BITS_FRW_ACC - 1))
  63. //-----------------------------------------------------------------------------
  64. // Various memory constants (trigonometric values or rounding values)
  65. //-----------------------------------------------------------------------------
  66. static const int16_t tg_1_16[4*4] attribute_used __attribute__ ((aligned(8))) = {
  67. 13036,13036,13036,13036, // tg * (2<<16) + 0.5
  68. 27146,27146,27146,27146, // tg * (2<<16) + 0.5
  69. -21746,-21746,-21746,-21746, // tg * (2<<16) + 0.5
  70. 23170,23170,23170,23170}; // cos * (2<<15) + 0.5
  71. static const int32_t rounder_0[2*8] attribute_used __attribute__ ((aligned(8))) = {
  72. 65536,65536,
  73. 3597,3597,
  74. 2260,2260,
  75. 1203,1203,
  76. 0,0,
  77. 120,120,
  78. 512,512,
  79. 512,512};
  80. //-----------------------------------------------------------------------------
  81. //
  82. // The first stage iDCT 8x8 - inverse DCTs of rows
  83. //
  84. //-----------------------------------------------------------------------------
  85. // The 8-point inverse DCT direct algorithm
  86. //-----------------------------------------------------------------------------
  87. //
  88. // static const short w[32] = {
  89. // FIX(cos_4_16), FIX(cos_2_16), FIX(cos_4_16), FIX(cos_6_16),
  90. // FIX(cos_4_16), FIX(cos_6_16), -FIX(cos_4_16), -FIX(cos_2_16),
  91. // FIX(cos_4_16), -FIX(cos_6_16), -FIX(cos_4_16), FIX(cos_2_16),
  92. // FIX(cos_4_16), -FIX(cos_2_16), FIX(cos_4_16), -FIX(cos_6_16),
  93. // FIX(cos_1_16), FIX(cos_3_16), FIX(cos_5_16), FIX(cos_7_16),
  94. // FIX(cos_3_16), -FIX(cos_7_16), -FIX(cos_1_16), -FIX(cos_5_16),
  95. // FIX(cos_5_16), -FIX(cos_1_16), FIX(cos_7_16), FIX(cos_3_16),
  96. // FIX(cos_7_16), -FIX(cos_5_16), FIX(cos_3_16), -FIX(cos_1_16) };
  97. //
  98. // #define DCT_8_INV_ROW(x, y)
  99. // {
  100. // int a0, a1, a2, a3, b0, b1, b2, b3;
  101. //
  102. // a0 =x[0]*w[0]+x[2]*w[1]+x[4]*w[2]+x[6]*w[3];
  103. // a1 =x[0]*w[4]+x[2]*w[5]+x[4]*w[6]+x[6]*w[7];
  104. // a2 = x[0] * w[ 8] + x[2] * w[ 9] + x[4] * w[10] + x[6] * w[11];
  105. // a3 = x[0] * w[12] + x[2] * w[13] + x[4] * w[14] + x[6] * w[15];
  106. // b0 = x[1] * w[16] + x[3] * w[17] + x[5] * w[18] + x[7] * w[19];
  107. // b1 = x[1] * w[20] + x[3] * w[21] + x[5] * w[22] + x[7] * w[23];
  108. // b2 = x[1] * w[24] + x[3] * w[25] + x[5] * w[26] + x[7] * w[27];
  109. // b3 = x[1] * w[28] + x[3] * w[29] + x[5] * w[30] + x[7] * w[31];
  110. //
  111. // y[0] = SHIFT_ROUND ( a0 + b0 );
  112. // y[1] = SHIFT_ROUND ( a1 + b1 );
  113. // y[2] = SHIFT_ROUND ( a2 + b2 );
  114. // y[3] = SHIFT_ROUND ( a3 + b3 );
  115. // y[4] = SHIFT_ROUND ( a3 - b3 );
  116. // y[5] = SHIFT_ROUND ( a2 - b2 );
  117. // y[6] = SHIFT_ROUND ( a1 - b1 );
  118. // y[7] = SHIFT_ROUND ( a0 - b0 );
  119. // }
  120. //
  121. //-----------------------------------------------------------------------------
  122. //
  123. // In this implementation the outputs of the iDCT-1D are multiplied
  124. // for rows 0,4 - by cos_4_16,
  125. // for rows 1,7 - by cos_1_16,
  126. // for rows 2,6 - by cos_2_16,
  127. // for rows 3,5 - by cos_3_16
  128. // and are shifted to the left for better accuracy
  129. //
  130. // For the constants used,
  131. // FIX(float_const) = (short) (float_const * (1<<15) + 0.5)
  132. //
  133. //-----------------------------------------------------------------------------
  134. //-----------------------------------------------------------------------------
  135. // Tables for mmx processors
  136. //-----------------------------------------------------------------------------
  137. // Table for rows 0,4 - constants are multiplied by cos_4_16
  138. static const int16_t tab_i_04_mmx[32*4] attribute_used __attribute__ ((aligned(8))) = {
  139. 16384,16384,16384,-16384, // movq-> w06 w04 w02 w00
  140. 21407,8867,8867,-21407, // w07 w05 w03 w01
  141. 16384,-16384,16384,16384, // w14 w12 w10 w08
  142. -8867,21407,-21407,-8867, // w15 w13 w11 w09
  143. 22725,12873,19266,-22725, // w22 w20 w18 w16
  144. 19266,4520,-4520,-12873, // w23 w21 w19 w17
  145. 12873,4520,4520,19266, // w30 w28 w26 w24
  146. -22725,19266,-12873,-22725, // w31 w29 w27 w25
  147. // Table for rows 1,7 - constants are multiplied by cos_1_16
  148. 22725,22725,22725,-22725, // movq-> w06 w04 w02 w00
  149. 29692,12299,12299,-29692, // w07 w05 w03 w01
  150. 22725,-22725,22725,22725, // w14 w12 w10 w08
  151. -12299,29692,-29692,-12299, // w15 w13 w11 w09
  152. 31521,17855,26722,-31521, // w22 w20 w18 w16
  153. 26722,6270,-6270,-17855, // w23 w21 w19 w17
  154. 17855,6270,6270,26722, // w30 w28 w26 w24
  155. -31521,26722,-17855,-31521, // w31 w29 w27 w25
  156. // Table for rows 2,6 - constants are multiplied by cos_2_16
  157. 21407,21407,21407,-21407, // movq-> w06 w04 w02 w00
  158. 27969,11585,11585,-27969, // w07 w05 w03 w01
  159. 21407,-21407,21407,21407, // w14 w12 w10 w08
  160. -11585,27969,-27969,-11585, // w15 w13 w11 w09
  161. 29692,16819,25172,-29692, // w22 w20 w18 w16
  162. 25172,5906,-5906,-16819, // w23 w21 w19 w17
  163. 16819,5906,5906,25172, // w30 w28 w26 w24
  164. -29692,25172,-16819,-29692, // w31 w29 w27 w25
  165. // Table for rows 3,5 - constants are multiplied by cos_3_16
  166. 19266,19266,19266,-19266, // movq-> w06 w04 w02 w00
  167. 25172,10426,10426,-25172, // w07 w05 w03 w01
  168. 19266,-19266,19266,19266, // w14 w12 w10 w08
  169. -10426,25172,-25172,-10426, // w15 w13 w11 w09
  170. 26722,15137,22654,-26722, // w22 w20 w18 w16
  171. 22654,5315,-5315,-15137, // w23 w21 w19 w17
  172. 15137,5315,5315,22654, // w30 w28 w26 w24
  173. -26722,22654,-15137,-26722, // w31 w29 w27 w25
  174. };
  175. //-----------------------------------------------------------------------------
  176. // Tables for xmm processors
  177. //-----------------------------------------------------------------------------
  178. // %3 for rows 0,4 - constants are multiplied by cos_4_16
  179. static const int16_t tab_i_04_xmm[32*4] attribute_used __attribute__ ((aligned(8))) = {
  180. 16384,21407,16384,8867, // movq-> w05 w04 w01 w00
  181. 16384,8867,-16384,-21407, // w07 w06 w03 w02
  182. 16384,-8867,16384,-21407, // w13 w12 w09 w08
  183. -16384,21407,16384,-8867, // w15 w14 w11 w10
  184. 22725,19266,19266,-4520, // w21 w20 w17 w16
  185. 12873,4520,-22725,-12873, // w23 w22 w19 w18
  186. 12873,-22725,4520,-12873, // w29 w28 w25 w24
  187. 4520,19266,19266,-22725, // w31 w30 w27 w26
  188. // %3 for rows 1,7 - constants are multiplied by cos_1_16
  189. 22725,29692,22725,12299, // movq-> w05 w04 w01 w00
  190. 22725,12299,-22725,-29692, // w07 w06 w03 w02
  191. 22725,-12299,22725,-29692, // w13 w12 w09 w08
  192. -22725,29692,22725,-12299, // w15 w14 w11 w10
  193. 31521,26722,26722,-6270, // w21 w20 w17 w16
  194. 17855,6270,-31521,-17855, // w23 w22 w19 w18
  195. 17855,-31521,6270,-17855, // w29 w28 w25 w24
  196. 6270,26722,26722,-31521, // w31 w30 w27 w26
  197. // %3 for rows 2,6 - constants are multiplied by cos_2_16
  198. 21407,27969,21407,11585, // movq-> w05 w04 w01 w00
  199. 21407,11585,-21407,-27969, // w07 w06 w03 w02
  200. 21407,-11585,21407,-27969, // w13 w12 w09 w08
  201. -21407,27969,21407,-11585, // w15 w14 w11 w10
  202. 29692,25172,25172,-5906, // w21 w20 w17 w16
  203. 16819,5906,-29692,-16819, // w23 w22 w19 w18
  204. 16819,-29692,5906,-16819, // w29 w28 w25 w24
  205. 5906,25172,25172,-29692, // w31 w30 w27 w26
  206. // %3 for rows 3,5 - constants are multiplied by cos_3_16
  207. 19266,25172,19266,10426, // movq-> w05 w04 w01 w00
  208. 19266,10426,-19266,-25172, // w07 w06 w03 w02
  209. 19266,-10426,19266,-25172, // w13 w12 w09 w08
  210. -19266,25172,19266,-10426, // w15 w14 w11 w10
  211. 26722,22654,22654,-5315, // w21 w20 w17 w16
  212. 15137,5315,-26722,-15137, // w23 w22 w19 w18
  213. 15137,-26722,5315,-15137, // w29 w28 w25 w24
  214. 5315,22654,22654,-26722, // w31 w30 w27 w26
  215. };
  216. //=============================================================================
  217. // Helper macros for the code
  218. //=============================================================================
  219. //-----------------------------------------------------------------------------
  220. // DCT_8_INV_ROW_MMX( INP, OUT, TABLE, ROUNDER
  221. //-----------------------------------------------------------------------------
  222. #define DCT_8_INV_ROW_MMX(A1,A2,A3,A4)\
  223. "movq " #A1 ",%%mm0 \n\t"/* 0 ; x3 x2 x1 x0*/\
  224. "movq 8+" #A1 ",%%mm1 \n\t"/* 1 ; x7 x6 x5 x4*/\
  225. "movq %%mm0,%%mm2 \n\t"/* 2 ; x3 x2 x1 x0*/\
  226. "movq " #A3 ",%%mm3 \n\t"/* 3 ; w06 w04 w02 w00*/\
  227. "punpcklwd %%mm1,%%mm0 \n\t"/* x5 x1 x4 x0*/\
  228. "movq %%mm0,%%mm5 \n\t"/* 5 ; x5 x1 x4 x0*/\
  229. "punpckldq %%mm0,%%mm0 \n\t"/* x4 x0 x4 x0*/\
  230. "movq 8+" #A3 ",%%mm4 \n\t"/* 4 ; w07 w05 w03 w01*/\
  231. "punpckhwd %%mm1,%%mm2 \n\t"/* 1 ; x7 x3 x6 x2*/\
  232. "pmaddwd %%mm0,%%mm3 \n\t"/* x4*w06+x0*w04 x4*w02+x0*w00*/\
  233. "movq %%mm2,%%mm6 \n\t"/* 6 ; x7 x3 x6 x2*/\
  234. "movq 32+" #A3 ",%%mm1 \n\t"/* 1 ; w22 w20 w18 w16*/\
  235. "punpckldq %%mm2,%%mm2 \n\t"/* x6 x2 x6 x2*/\
  236. "pmaddwd %%mm2,%%mm4 \n\t"/* x6*w07+x2*w05 x6*w03+x2*w01*/\
  237. "punpckhdq %%mm5,%%mm5 \n\t"/* x5 x1 x5 x1*/\
  238. "pmaddwd 16+" #A3 ",%%mm0 \n\t"/* x4*w14+x0*w12 x4*w10+x0*w08*/\
  239. "punpckhdq %%mm6,%%mm6 \n\t"/* x7 x3 x7 x3*/\
  240. "movq 40+" #A3 ",%%mm7 \n\t"/* 7 ; w23 w21 w19 w17*/\
  241. "pmaddwd %%mm5,%%mm1 \n\t"/* x5*w22+x1*w20 x5*w18+x1*w16*/\
  242. "paddd " #A4 ",%%mm3 \n\t"/* +%4*/\
  243. "pmaddwd %%mm6,%%mm7 \n\t"/* x7*w23+x3*w21 x7*w19+x3*w17*/\
  244. "pmaddwd 24+" #A3 ",%%mm2 \n\t"/* x6*w15+x2*w13 x6*w11+x2*w09*/\
  245. "paddd %%mm4,%%mm3 \n\t"/* 4 ; a1=sum(even1) a0=sum(even0)*/\
  246. "pmaddwd 48+" #A3 ",%%mm5 \n\t"/* x5*w30+x1*w28 x5*w26+x1*w24*/\
  247. "movq %%mm3,%%mm4 \n\t"/* 4 ; a1 a0*/\
  248. "pmaddwd 56+" #A3 ",%%mm6 \n\t"/* x7*w31+x3*w29 x7*w27+x3*w25*/\
  249. "paddd %%mm7,%%mm1 \n\t"/* 7 ; b1=sum(odd1) b0=sum(odd0)*/\
  250. "paddd " #A4 ",%%mm0 \n\t"/* +%4*/\
  251. "psubd %%mm1,%%mm3 \n\t"/* a1-b1 a0-b0*/\
  252. "psrad $11,%%mm3 \n\t"/* y6=a1-b1 y7=a0-b0*/\
  253. "paddd %%mm4,%%mm1 \n\t"/* 4 ; a1+b1 a0+b0*/\
  254. "paddd %%mm2,%%mm0 \n\t"/* 2 ; a3=sum(even3) a2=sum(even2)*/\
  255. "psrad $11,%%mm1 \n\t"/* y1=a1+b1 y0=a0+b0*/\
  256. "paddd %%mm6,%%mm5 \n\t"/* 6 ; b3=sum(odd3) b2=sum(odd2)*/\
  257. "movq %%mm0,%%mm4 \n\t"/* 4 ; a3 a2*/\
  258. "paddd %%mm5,%%mm0 \n\t"/* a3+b3 a2+b2*/\
  259. "psubd %%mm5,%%mm4 \n\t"/* 5 ; a3-b3 a2-b2*/\
  260. "psrad $11,%%mm0 \n\t"/* y3=a3+b3 y2=a2+b2*/\
  261. "psrad $11,%%mm4 \n\t"/* y4=a3-b3 y5=a2-b2*/\
  262. "packssdw %%mm0,%%mm1 \n\t"/* 0 ; y3 y2 y1 y0*/\
  263. "packssdw %%mm3,%%mm4 \n\t"/* 3 ; y6 y7 y4 y5*/\
  264. "movq %%mm4,%%mm7 \n\t"/* 7 ; y6 y7 y4 y5*/\
  265. "psrld $16,%%mm4 \n\t"/* 0 y6 0 y4*/\
  266. "pslld $16,%%mm7 \n\t"/* y7 0 y5 0*/\
  267. "movq %%mm1," #A2 " \n\t"/* 1 ; save y3 y2 y1 y0*/\
  268. "por %%mm4,%%mm7 \n\t"/* 4 ; y7 y6 y5 y4*/\
  269. "movq %%mm7,8 +" #A2 "\n\t"/* 7 ; save y7 y6 y5 y4*/\
  270. //-----------------------------------------------------------------------------
  271. // DCT_8_INV_ROW_XMM( INP, OUT, TABLE, ROUNDER
  272. //-----------------------------------------------------------------------------
  273. #define DCT_8_INV_ROW_XMM(A1,A2,A3,A4)\
  274. "movq " #A1 ",%%mm0 \n\t"/* 0 ; x3 x2 x1 x0*/\
  275. "movq 8+" #A1 ",%%mm1 \n\t"/* 1 ; x7 x6 x5 x4*/\
  276. "movq %%mm0,%%mm2 \n\t"/* 2 ; x3 x2 x1 x0*/\
  277. "movq " #A3 ",%%mm3 \n\t"/* 3 ; w05 w04 w01 w00*/\
  278. "pshufw $0x88,%%mm0,%%mm0 \n\t"/* x2 x0 x2 x0*/\
  279. "movq 8+" #A3 ",%%mm4 \n\t"/* 4 ; w07 w06 w03 w02*/\
  280. "movq %%mm1,%%mm5 \n\t"/* 5 ; x7 x6 x5 x4*/\
  281. "pmaddwd %%mm0,%%mm3 \n\t"/* x2*w05+x0*w04 x2*w01+x0*w00*/\
  282. "movq 32+" #A3 ",%%mm6 \n\t"/* 6 ; w21 w20 w17 w16*/\
  283. "pshufw $0x88,%%mm1,%%mm1 \n\t"/* x6 x4 x6 x4*/\
  284. "pmaddwd %%mm1,%%mm4 \n\t"/* x6*w07+x4*w06 x6*w03+x4*w02*/\
  285. "movq 40+" #A3 ",%%mm7 \n\t"/* 7 ; w23 w22 w19 w18*/\
  286. "pshufw $0xdd,%%mm2,%%mm2 \n\t"/* x3 x1 x3 x1*/\
  287. "pmaddwd %%mm2,%%mm6 \n\t"/* x3*w21+x1*w20 x3*w17+x1*w16*/\
  288. "pshufw $0xdd,%%mm5,%%mm5 \n\t"/* x7 x5 x7 x5*/\
  289. "pmaddwd %%mm5,%%mm7 \n\t"/* x7*w23+x5*w22 x7*w19+x5*w18*/\
  290. "paddd " #A4 ",%%mm3 \n\t"/* +%4*/\
  291. "pmaddwd 16+" #A3 ",%%mm0 \n\t"/* x2*w13+x0*w12 x2*w09+x0*w08*/\
  292. "paddd %%mm4,%%mm3 \n\t"/* 4 ; a1=sum(even1) a0=sum(even0)*/\
  293. "pmaddwd 24+" #A3 ",%%mm1 \n\t"/* x6*w15+x4*w14 x6*w11+x4*w10*/\
  294. "movq %%mm3,%%mm4 \n\t"/* 4 ; a1 a0*/\
  295. "pmaddwd 48+" #A3 ",%%mm2 \n\t"/* x3*w29+x1*w28 x3*w25+x1*w24*/\
  296. "paddd %%mm7,%%mm6 \n\t"/* 7 ; b1=sum(odd1) b0=sum(odd0)*/\
  297. "pmaddwd 56+" #A3 ",%%mm5 \n\t"/* x7*w31+x5*w30 x7*w27+x5*w26*/\
  298. "paddd %%mm6,%%mm3 \n\t"/* a1+b1 a0+b0*/\
  299. "paddd " #A4 ",%%mm0 \n\t"/* +%4*/\
  300. "psrad $11,%%mm3 \n\t"/* y1=a1+b1 y0=a0+b0*/\
  301. "paddd %%mm1,%%mm0 \n\t"/* 1 ; a3=sum(even3) a2=sum(even2)*/\
  302. "psubd %%mm6,%%mm4 \n\t"/* 6 ; a1-b1 a0-b0*/\
  303. "movq %%mm0,%%mm7 \n\t"/* 7 ; a3 a2*/\
  304. "paddd %%mm5,%%mm2 \n\t"/* 5 ; b3=sum(odd3) b2=sum(odd2)*/\
  305. "paddd %%mm2,%%mm0 \n\t"/* a3+b3 a2+b2*/\
  306. "psrad $11,%%mm4 \n\t"/* y6=a1-b1 y7=a0-b0*/\
  307. "psubd %%mm2,%%mm7 \n\t"/* 2 ; a3-b3 a2-b2*/\
  308. "psrad $11,%%mm0 \n\t"/* y3=a3+b3 y2=a2+b2*/\
  309. "psrad $11,%%mm7 \n\t"/* y4=a3-b3 y5=a2-b2*/\
  310. "packssdw %%mm0,%%mm3 \n\t"/* 0 ; y3 y2 y1 y0*/\
  311. "packssdw %%mm4,%%mm7 \n\t"/* 4 ; y6 y7 y4 y5*/\
  312. "movq %%mm3, " #A2 " \n\t"/* 3 ; save y3 y2 y1 y0*/\
  313. "pshufw $0xb1,%%mm7,%%mm7 \n\t"/* y7 y6 y5 y4*/\
  314. "movq %%mm7,8 +" #A2 "\n\t"/* 7 ; save y7 y6 y5 y4*/\
  315. //-----------------------------------------------------------------------------
  316. //
  317. // The first stage DCT 8x8 - forward DCTs of columns
  318. //
  319. // The %2puts are multiplied
  320. // for rows 0,4 - on cos_4_16,
  321. // for rows 1,7 - on cos_1_16,
  322. // for rows 2,6 - on cos_2_16,
  323. // for rows 3,5 - on cos_3_16
  324. // and are shifted to the left for rise of accuracy
  325. //
  326. //-----------------------------------------------------------------------------
  327. //
  328. // The 8-point scaled forward DCT algorithm (26a8m)
  329. //
  330. //-----------------------------------------------------------------------------
  331. //
  332. // #define DCT_8_FRW_COL(x, y)
  333. //{
  334. // short t0, t1, t2, t3, t4, t5, t6, t7;
  335. // short tp03, tm03, tp12, tm12, tp65, tm65;
  336. // short tp465, tm465, tp765, tm765;
  337. //
  338. // t0 = LEFT_SHIFT ( x[0] + x[7] );
  339. // t1 = LEFT_SHIFT ( x[1] + x[6] );
  340. // t2 = LEFT_SHIFT ( x[2] + x[5] );
  341. // t3 = LEFT_SHIFT ( x[3] + x[4] );
  342. // t4 = LEFT_SHIFT ( x[3] - x[4] );
  343. // t5 = LEFT_SHIFT ( x[2] - x[5] );
  344. // t6 = LEFT_SHIFT ( x[1] - x[6] );
  345. // t7 = LEFT_SHIFT ( x[0] - x[7] );
  346. //
  347. // tp03 = t0 + t3;
  348. // tm03 = t0 - t3;
  349. // tp12 = t1 + t2;
  350. // tm12 = t1 - t2;
  351. //
  352. // y[0] = tp03 + tp12;
  353. // y[4] = tp03 - tp12;
  354. //
  355. // y[2] = tm03 + tm12 * tg_2_16;
  356. // y[6] = tm03 * tg_2_16 - tm12;
  357. //
  358. // tp65 =(t6 +t5 )*cos_4_16;
  359. // tm65 =(t6 -t5 )*cos_4_16;
  360. //
  361. // tp765 = t7 + tp65;
  362. // tm765 = t7 - tp65;
  363. // tp465 = t4 + tm65;
  364. // tm465 = t4 - tm65;
  365. //
  366. // y[1] = tp765 + tp465 * tg_1_16;
  367. // y[7] = tp765 * tg_1_16 - tp465;
  368. // y[5] = tm765 * tg_3_16 + tm465;
  369. // y[3] = tm765 - tm465 * tg_3_16;
  370. //}
  371. //
  372. //-----------------------------------------------------------------------------
  373. //-----------------------------------------------------------------------------
  374. // DCT_8_INV_COL_4 INP,OUT
  375. //-----------------------------------------------------------------------------
  376. #define DCT_8_INV_COL(A1,A2)\
  377. "movq 2*8(%3),%%mm0\n\t"\
  378. "movq 16*3+" #A1 ",%%mm3\n\t"\
  379. "movq %%mm0,%%mm1 \n\t"/* tg_3_16*/\
  380. "movq 16*5+" #A1 ",%%mm5\n\t"\
  381. "pmulhw %%mm3,%%mm0 \n\t"/* x3*(tg_3_16-1)*/\
  382. "movq (%3),%%mm4\n\t"\
  383. "pmulhw %%mm5,%%mm1 \n\t"/* x5*(tg_3_16-1)*/\
  384. "movq 16*7+" #A1 ",%%mm7\n\t"\
  385. "movq %%mm4,%%mm2 \n\t"/* tg_1_16*/\
  386. "movq 16*1+" #A1 ",%%mm6\n\t"\
  387. "pmulhw %%mm7,%%mm4 \n\t"/* x7*tg_1_16*/\
  388. "paddsw %%mm3,%%mm0 \n\t"/* x3*tg_3_16*/\
  389. "pmulhw %%mm6,%%mm2 \n\t"/* x1*tg_1_16*/\
  390. "paddsw %%mm3,%%mm1 \n\t"/* x3+x5*(tg_3_16-1)*/\
  391. "psubsw %%mm5,%%mm0 \n\t"/* x3*tg_3_16-x5 = tm35*/\
  392. "movq 3*8(%3),%%mm3\n\t"\
  393. "paddsw %%mm5,%%mm1 \n\t"/* x3+x5*tg_3_16 = tp35*/\
  394. "paddsw %%mm6,%%mm4 \n\t"/* x1+tg_1_16*x7 = tp17*/\
  395. "psubsw %%mm7,%%mm2 \n\t"/* x1*tg_1_16-x7 = tm17*/\
  396. "movq %%mm4,%%mm5 \n\t"/* tp17*/\
  397. "movq %%mm2,%%mm6 \n\t"/* tm17*/\
  398. "paddsw %%mm1,%%mm5 \n\t"/* tp17+tp35 = b0*/\
  399. "psubsw %%mm0,%%mm6 \n\t"/* tm17-tm35 = b3*/\
  400. "psubsw %%mm1,%%mm4 \n\t"/* tp17-tp35 = t1*/\
  401. "paddsw %%mm0,%%mm2 \n\t"/* tm17+tm35 = t2*/\
  402. "movq 1*8(%3),%%mm7\n\t"\
  403. "movq %%mm4,%%mm1 \n\t"/* t1*/\
  404. "movq %%mm5,3*16 +" #A2 "\n\t"/* save b0*/\
  405. "paddsw %%mm2,%%mm1 \n\t"/* t1+t2*/\
  406. "movq %%mm6,5*16 +" #A2 "\n\t"/* save b3*/\
  407. "psubsw %%mm2,%%mm4 \n\t"/* t1-t2*/\
  408. "movq 2*16+" #A1 ",%%mm5\n\t"\
  409. "movq %%mm7,%%mm0 \n\t"/* tg_2_16*/\
  410. "movq 6*16+" #A1 ",%%mm6\n\t"\
  411. "pmulhw %%mm5,%%mm0 \n\t"/* x2*tg_2_16*/\
  412. "pmulhw %%mm6,%%mm7 \n\t"/* x6*tg_2_16*/\
  413. "pmulhw %%mm3,%%mm1 \n\t"/* ocos_4_16*(t1+t2) = b1/2*/\
  414. "movq 0*16+" #A1 ",%%mm2\n\t"\
  415. "pmulhw %%mm3,%%mm4 \n\t"/* ocos_4_16*(t1-t2) = b2/2*/\
  416. "psubsw %%mm6,%%mm0 \n\t"/* t2*tg_2_16-x6 = tm26*/\
  417. "movq %%mm2,%%mm3 \n\t"/* x0*/\
  418. "movq 4*16+" #A1 ",%%mm6\n\t"\
  419. "paddsw %%mm5,%%mm7 \n\t"/* x2+x6*tg_2_16 = tp26*/\
  420. "paddsw %%mm6,%%mm2 \n\t"/* x0+x4 = tp04*/\
  421. "psubsw %%mm6,%%mm3 \n\t"/* x0-x4 = tm04*/\
  422. "movq %%mm2,%%mm5 \n\t"/* tp04*/\
  423. "movq %%mm3,%%mm6 \n\t"/* tm04*/\
  424. "psubsw %%mm7,%%mm2 \n\t"/* tp04-tp26 = a3*/\
  425. "paddsw %%mm0,%%mm3 \n\t"/* tm04+tm26 = a1*/\
  426. "paddsw %%mm1,%%mm1 \n\t"/* b1*/\
  427. "paddsw %%mm4,%%mm4 \n\t"/* b2*/\
  428. "paddsw %%mm7,%%mm5 \n\t"/* tp04+tp26 = a0*/\
  429. "psubsw %%mm0,%%mm6 \n\t"/* tm04-tm26 = a2*/\
  430. "movq %%mm3,%%mm7 \n\t"/* a1*/\
  431. "movq %%mm6,%%mm0 \n\t"/* a2*/\
  432. "paddsw %%mm1,%%mm3 \n\t"/* a1+b1*/\
  433. "paddsw %%mm4,%%mm6 \n\t"/* a2+b2*/\
  434. "psraw $6,%%mm3 \n\t"/* dst1*/\
  435. "psubsw %%mm1,%%mm7 \n\t"/* a1-b1*/\
  436. "psraw $6,%%mm6 \n\t"/* dst2*/\
  437. "psubsw %%mm4,%%mm0 \n\t"/* a2-b2*/\
  438. "movq 3*16+" #A2 ",%%mm1 \n\t"/* load b0*/\
  439. "psraw $6,%%mm7 \n\t"/* dst6*/\
  440. "movq %%mm5,%%mm4 \n\t"/* a0*/\
  441. "psraw $6,%%mm0 \n\t"/* dst5*/\
  442. "movq %%mm3,1*16+" #A2 "\n\t"\
  443. "paddsw %%mm1,%%mm5 \n\t"/* a0+b0*/\
  444. "movq %%mm6,2*16+" #A2 "\n\t"\
  445. "psubsw %%mm1,%%mm4 \n\t"/* a0-b0*/\
  446. "movq 5*16+" #A2 ",%%mm3 \n\t"/* load b3*/\
  447. "psraw $6,%%mm5 \n\t"/* dst0*/\
  448. "movq %%mm2,%%mm6 \n\t"/* a3*/\
  449. "psraw $6,%%mm4 \n\t"/* dst7*/\
  450. "movq %%mm0,5*16+" #A2 "\n\t"\
  451. "paddsw %%mm3,%%mm2 \n\t"/* a3+b3*/\
  452. "movq %%mm7,6*16+" #A2 "\n\t"\
  453. "psubsw %%mm3,%%mm6 \n\t"/* a3-b3*/\
  454. "movq %%mm5,0*16+" #A2 "\n\t"\
  455. "psraw $6,%%mm2 \n\t"/* dst3*/\
  456. "movq %%mm4,7*16+" #A2 "\n\t"\
  457. "psraw $6,%%mm6 \n\t"/* dst4*/\
  458. "movq %%mm2,3*16+" #A2 "\n\t"\
  459. "movq %%mm6,4*16+" #A2 "\n\t"
  460. //=============================================================================
  461. // Code
  462. //=============================================================================
  463. //-----------------------------------------------------------------------------
  464. // void idct_mmx(uint16_t block[64]);
  465. //-----------------------------------------------------------------------------
  466. void ff_idct_xvid_mmx(short *block){
  467. asm volatile(
  468. //# Process each row
  469. DCT_8_INV_ROW_MMX(0*16(%0), 0*16(%0), 64*0(%2), 8*0(%1))
  470. DCT_8_INV_ROW_MMX(1*16(%0), 1*16(%0), 64*1(%2), 8*1(%1))
  471. DCT_8_INV_ROW_MMX(2*16(%0), 2*16(%0), 64*2(%2), 8*2(%1))
  472. DCT_8_INV_ROW_MMX(3*16(%0), 3*16(%0), 64*3(%2), 8*3(%1))
  473. DCT_8_INV_ROW_MMX(4*16(%0), 4*16(%0), 64*0(%2), 8*4(%1))
  474. DCT_8_INV_ROW_MMX(5*16(%0), 5*16(%0), 64*3(%2), 8*5(%1))
  475. DCT_8_INV_ROW_MMX(6*16(%0), 6*16(%0), 64*2(%2), 8*6(%1))
  476. DCT_8_INV_ROW_MMX(7*16(%0), 7*16(%0), 64*1(%2), 8*7(%1))
  477. //# Process the columns (4 at a time)
  478. DCT_8_INV_COL(0(%0), 0(%0))
  479. DCT_8_INV_COL(8(%0), 8(%0))
  480. :: "r"(block), "r"(rounder_0), "r"(tab_i_04_mmx), "r"(tg_1_16));
  481. }
  482. //-----------------------------------------------------------------------------
  483. // void idct_xmm(uint16_t block[64]);
  484. //-----------------------------------------------------------------------------
  485. void ff_idct_xvid_mmx2(short *block){
  486. asm volatile(
  487. //# Process each row
  488. DCT_8_INV_ROW_XMM(0*16(%0), 0*16(%0), 64*0(%2), 8*0(%1))
  489. DCT_8_INV_ROW_XMM(1*16(%0), 1*16(%0), 64*1(%2), 8*1(%1))
  490. DCT_8_INV_ROW_XMM(2*16(%0), 2*16(%0), 64*2(%2), 8*2(%1))
  491. DCT_8_INV_ROW_XMM(3*16(%0), 3*16(%0), 64*3(%2), 8*3(%1))
  492. DCT_8_INV_ROW_XMM(4*16(%0), 4*16(%0), 64*0(%2), 8*4(%1))
  493. DCT_8_INV_ROW_XMM(5*16(%0), 5*16(%0), 64*3(%2), 8*5(%1))
  494. DCT_8_INV_ROW_XMM(6*16(%0), 6*16(%0), 64*2(%2), 8*6(%1))
  495. DCT_8_INV_ROW_XMM(7*16(%0), 7*16(%0), 64*1(%2), 8*7(%1))
  496. //# Process the columns (4 at a time)
  497. DCT_8_INV_COL(0(%0), 0(%0))
  498. DCT_8_INV_COL(8(%0), 8(%0))
  499. :: "r"(block), "r"(rounder_0), "r"(tab_i_04_xmm), "r"(tg_1_16));
  500. }