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  1. /*
  2. * MMX optimized forward DCT
  3. * The gcc porting is Copyright (c) 2001 Gerard Lantau.
  4. *
  5. * from fdctam32.c - AP922 MMX(3D-Now) forward-DCT
  6. *
  7. * Intel Application Note AP-922 - fast, precise implementation of DCT
  8. * http://developer.intel.com/vtune/cbts/appnotes.htm
  9. */
  10. #include "../common.h"
  11. #include "mmx.h"
  12. #define ATTR_ALIGN(align) __attribute__ ((__aligned__ (align)))
  13. //////////////////////////////////////////////////////////////////////
  14. //
  15. // constants for the forward DCT
  16. // -----------------------------
  17. //
  18. // Be sure to check that your compiler is aligning all constants to QWORD
  19. // (8-byte) memory boundaries! Otherwise the unaligned memory access will
  20. // severely stall MMX execution.
  21. //
  22. //////////////////////////////////////////////////////////////////////
  23. #define BITS_FRW_ACC 3 //; 2 or 3 for accuracy
  24. #define SHIFT_FRW_COL BITS_FRW_ACC
  25. #define SHIFT_FRW_ROW (BITS_FRW_ACC + 17)
  26. //#define RND_FRW_ROW (262144 * (BITS_FRW_ACC - 1)) //; 1 << (SHIFT_FRW_ROW-1)
  27. #define RND_FRW_ROW (1 << (SHIFT_FRW_ROW-1))
  28. //#define RND_FRW_COL (2 * (BITS_FRW_ACC - 1)) //; 1 << (SHIFT_FRW_COL-1)
  29. #define RND_FRW_COL (1 << (SHIFT_FRW_COL-1))
  30. //concatenated table, for forward DCT transformation
  31. const int16_t fdct_tg_all_16[] ATTR_ALIGN(8) = {
  32. 13036, 13036, 13036, 13036, // tg * (2<<16) + 0.5
  33. 27146, 27146, 27146, 27146, // tg * (2<<16) + 0.5
  34. -21746, -21746, -21746, -21746, // tg * (2<<16) + 0.5
  35. };
  36. const int16_t cos_4_16[4] = {
  37. -19195, -19195, -19195, -19195, //cos * (2<<16) + 0.5
  38. };
  39. const int16_t ocos_4_16[4] = {
  40. 23170, 23170, 23170, 23170, //cos * (2<<15) + 0.5
  41. };
  42. const long long fdct_one_corr ATTR_ALIGN(8) = 0x0001000100010001LL;
  43. const long fdct_r_row[2] ATTR_ALIGN(8) = {RND_FRW_ROW, RND_FRW_ROW };
  44. const int16_t tab_frw_01234567[] ATTR_ALIGN(8) = { // forward_dct coeff table
  45. //row0
  46. 16384, 16384, 21407, -8867, // w09 w01 w08 w00
  47. 16384, 16384, 8867, -21407, // w13 w05 w12 w04
  48. 16384, -16384, 8867, 21407, // w11 w03 w10 w02
  49. -16384, 16384, -21407, -8867, // w15 w07 w14 w06
  50. 22725, 12873, 19266, -22725, // w22 w20 w18 w16
  51. 19266, 4520, -4520, -12873, // w23 w21 w19 w17
  52. 12873, 4520, 4520, 19266, // w30 w28 w26 w24
  53. -22725, 19266, -12873, -22725, // w31 w29 w27 w25
  54. //row1
  55. 22725, 22725, 29692, -12299, // w09 w01 w08 w00
  56. 22725, 22725, 12299, -29692, // w13 w05 w12 w04
  57. 22725, -22725, 12299, 29692, // w11 w03 w10 w02
  58. -22725, 22725, -29692, -12299, // w15 w07 w14 w06
  59. 31521, 17855, 26722, -31521, // w22 w20 w18 w16
  60. 26722, 6270, -6270, -17855, // w23 w21 w19 w17
  61. 17855, 6270, 6270, 26722, // w30 w28 w26 w24
  62. -31521, 26722, -17855, -31521, // w31 w29 w27 w25
  63. //row2
  64. 21407, 21407, 27969, -11585, // w09 w01 w08 w00
  65. 21407, 21407, 11585, -27969, // w13 w05 w12 w04
  66. 21407, -21407, 11585, 27969, // w11 w03 w10 w02
  67. -21407, 21407, -27969, -11585, // w15 w07 w14 w06
  68. 29692, 16819, 25172, -29692, // w22 w20 w18 w16
  69. 25172, 5906, -5906, -16819, // w23 w21 w19 w17
  70. 16819, 5906, 5906, 25172, // w30 w28 w26 w24
  71. -29692, 25172, -16819, -29692, // w31 w29 w27 w25
  72. //row3
  73. 19266, 19266, 25172, -10426, // w09 w01 w08 w00
  74. 19266, 19266, 10426, -25172, // w13 w05 w12 w04
  75. 19266, -19266, 10426, 25172, // w11 w03 w10 w02
  76. -19266, 19266, -25172, -10426, // w15 w07 w14 w06,
  77. 26722, 15137, 22654, -26722, // w22 w20 w18 w16
  78. 22654, 5315, -5315, -15137, // w23 w21 w19 w17
  79. 15137, 5315, 5315, 22654, // w30 w28 w26 w24
  80. -26722, 22654, -15137, -26722, // w31 w29 w27 w25,
  81. //row4
  82. 16384, 16384, 21407, -8867, // w09 w01 w08 w00
  83. 16384, 16384, 8867, -21407, // w13 w05 w12 w04
  84. 16384, -16384, 8867, 21407, // w11 w03 w10 w02
  85. -16384, 16384, -21407, -8867, // w15 w07 w14 w06
  86. 22725, 12873, 19266, -22725, // w22 w20 w18 w16
  87. 19266, 4520, -4520, -12873, // w23 w21 w19 w17
  88. 12873, 4520, 4520, 19266, // w30 w28 w26 w24
  89. -22725, 19266, -12873, -22725, // w31 w29 w27 w25
  90. //row5
  91. 19266, 19266, 25172, -10426, // w09 w01 w08 w00
  92. 19266, 19266, 10426, -25172, // w13 w05 w12 w04
  93. 19266, -19266, 10426, 25172, // w11 w03 w10 w02
  94. -19266, 19266, -25172, -10426, // w15 w07 w14 w06
  95. 26722, 15137, 22654, -26722, // w22 w20 w18 w16
  96. 22654, 5315, -5315, -15137, // w23 w21 w19 w17
  97. 15137, 5315, 5315, 22654, // w30 w28 w26 w24
  98. -26722, 22654, -15137, -26722, // w31 w29 w27 w25
  99. //row6
  100. 21407, 21407, 27969, -11585, // w09 w01 w08 w00
  101. 21407, 21407, 11585, -27969, // w13 w05 w12 w04
  102. 21407, -21407, 11585, 27969, // w11 w03 w10 w02
  103. -21407, 21407, -27969, -11585, // w15 w07 w14 w06,
  104. 29692, 16819, 25172, -29692, // w22 w20 w18 w16
  105. 25172, 5906, -5906, -16819, // w23 w21 w19 w17
  106. 16819, 5906, 5906, 25172, // w30 w28 w26 w24
  107. -29692, 25172, -16819, -29692, // w31 w29 w27 w25,
  108. //row7
  109. 22725, 22725, 29692, -12299, // w09 w01 w08 w00
  110. 22725, 22725, 12299, -29692, // w13 w05 w12 w04
  111. 22725, -22725, 12299, 29692, // w11 w03 w10 w02
  112. -22725, 22725, -29692, -12299, // w15 w07 w14 w06,
  113. 31521, 17855, 26722, -31521, // w22 w20 w18 w16
  114. 26722, 6270, -6270, -17855, // w23 w21 w19 w17
  115. 17855, 6270, 6270, 26722, // w30 w28 w26 w24
  116. -31521, 26722, -17855, -31521 // w31 w29 w27 w25
  117. };
  118. static inline void fdct_col(const int16_t *in, int16_t *out, int offset)
  119. {
  120. movq_m2r(*(in + offset + 1 * 8), mm0);
  121. movq_m2r(*(in + offset + 6 * 8), mm1);
  122. movq_r2r(mm0, mm2);
  123. movq_m2r(*(in + offset + 2 * 8), mm3);
  124. paddsw_r2r(mm1, mm0);
  125. movq_m2r(*(in + offset + 5 * 8), mm4);
  126. psllw_i2r(SHIFT_FRW_COL, mm0);
  127. movq_m2r(*(in + offset + 0 * 8), mm5);
  128. paddsw_r2r(mm3, mm4);
  129. paddsw_m2r(*(in + offset + 7 * 8), mm5);
  130. psllw_i2r(SHIFT_FRW_COL, mm4);
  131. movq_r2r(mm0, mm6);
  132. psubsw_r2r(mm1, mm2);
  133. movq_m2r(*(fdct_tg_all_16 + 4), mm1);
  134. psubsw_r2r(mm4, mm0);
  135. movq_m2r(*(in + offset + 3 * 8), mm7);
  136. pmulhw_r2r(mm0, mm1);
  137. paddsw_m2r(*(in + offset + 4 * 8), mm7);
  138. psllw_i2r(SHIFT_FRW_COL, mm5);
  139. paddsw_r2r(mm4, mm6);
  140. psllw_i2r(SHIFT_FRW_COL, mm7);
  141. movq_r2r(mm5, mm4);
  142. psubsw_r2r(mm7, mm5);
  143. paddsw_r2r(mm5, mm1);
  144. paddsw_r2r(mm7, mm4);
  145. por_m2r(fdct_one_corr, mm1);
  146. psllw_i2r(SHIFT_FRW_COL + 1, mm2);
  147. pmulhw_m2r(*(fdct_tg_all_16 + 4), mm5);
  148. movq_r2r(mm4, mm7);
  149. psubsw_m2r(*(in + offset + 5 * 8), mm3);
  150. psubsw_r2r(mm6, mm4);
  151. movq_r2m(mm1, *(out + offset + 2 * 8));
  152. paddsw_r2r(mm6, mm7);
  153. movq_m2r(*(in + offset + 3 * 8), mm1);
  154. psllw_i2r(SHIFT_FRW_COL + 1, mm3);
  155. psubsw_m2r(*(in + offset + 4 * 8), mm1);
  156. movq_r2r(mm2, mm6);
  157. movq_r2m(mm4, *(out + offset + 4 * 8));
  158. paddsw_r2r(mm3, mm2);
  159. pmulhw_m2r(*ocos_4_16, mm2);
  160. psubsw_r2r(mm3, mm6);
  161. pmulhw_m2r(*ocos_4_16, mm6);
  162. psubsw_r2r(mm0, mm5);
  163. por_m2r(fdct_one_corr, mm5);
  164. psllw_i2r(SHIFT_FRW_COL, mm1);
  165. por_m2r(fdct_one_corr, mm2);
  166. movq_r2r(mm1, mm4);
  167. movq_m2r(*(in + offset + 0 * 8), mm3);
  168. paddsw_r2r(mm6, mm1);
  169. psubsw_m2r(*(in + offset + 7 * 8), mm3);
  170. psubsw_r2r(mm6, mm4);
  171. movq_m2r(*(fdct_tg_all_16 + 0), mm0);
  172. psllw_i2r(SHIFT_FRW_COL, mm3);
  173. movq_m2r(*(fdct_tg_all_16 + 8), mm6);
  174. pmulhw_r2r(mm1, mm0);
  175. movq_r2m(mm7, *(out + offset + 0 * 8));
  176. pmulhw_r2r(mm4, mm6);
  177. movq_r2m(mm5, *(out + offset + 6 * 8));
  178. movq_r2r(mm3, mm7);
  179. movq_m2r(*(fdct_tg_all_16 + 8), mm5);
  180. psubsw_r2r(mm2, mm7);
  181. paddsw_r2r(mm2, mm3);
  182. pmulhw_r2r(mm7, mm5);
  183. paddsw_r2r(mm3, mm0);
  184. paddsw_r2r(mm4, mm6);
  185. pmulhw_m2r(*(fdct_tg_all_16 + 0), mm3);
  186. por_m2r(fdct_one_corr, mm0);
  187. paddsw_r2r(mm7, mm5);
  188. psubsw_r2r(mm6, mm7);
  189. movq_r2m(mm0, *(out + offset + 1 * 8));
  190. paddsw_r2r(mm4, mm5);
  191. movq_r2m(mm7, *(out + offset + 3 * 8));
  192. psubsw_r2r(mm1, mm3);
  193. movq_r2m(mm5, *(out + offset + 5 * 8));
  194. movq_r2m(mm3, *(out + offset + 7 * 8));
  195. }
  196. static inline void fdct_row(const int16_t *in, int16_t *out, const int16_t *table)
  197. {
  198. movd_m2r(*(in + 6), mm5);
  199. punpcklwd_m2r(*(in + 4), mm5);
  200. movq_r2r(mm5, mm2);
  201. psrlq_i2r(0x20, mm5);
  202. movq_m2r(*(in + 0), mm0);
  203. punpcklwd_r2r(mm2, mm5);
  204. movq_r2r(mm0, mm1);
  205. paddsw_r2r(mm5, mm0);
  206. psubsw_r2r(mm5, mm1);
  207. movq_r2r(mm0, mm2);
  208. punpcklwd_r2r(mm1, mm0);
  209. punpckhwd_r2r(mm1, mm2);
  210. movq_r2r(mm2, mm1);
  211. movq_r2r(mm0, mm2);
  212. movq_m2r(*(table + 0), mm3);
  213. punpcklwd_r2r(mm1, mm0);
  214. movq_r2r(mm0, mm5);
  215. punpckldq_r2r(mm0, mm0);
  216. movq_m2r(*(table + 4), mm4);
  217. punpckhwd_r2r(mm1, mm2);
  218. pmaddwd_r2r(mm0, mm3);
  219. movq_r2r(mm2, mm6);
  220. movq_m2r(*(table + 16), mm1);
  221. punpckldq_r2r(mm2, mm2);
  222. pmaddwd_r2r(mm2, mm4);
  223. punpckhdq_r2r(mm5, mm5);
  224. pmaddwd_m2r(*(table + 8), mm0);
  225. punpckhdq_r2r(mm6, mm6);
  226. movq_m2r(*(table + 20), mm7);
  227. pmaddwd_r2r(mm5, mm1);
  228. paddd_m2r(*fdct_r_row, mm3);
  229. pmaddwd_r2r(mm6, mm7);
  230. pmaddwd_m2r(*(table + 12), mm2);
  231. paddd_r2r(mm4, mm3);
  232. pmaddwd_m2r(*(table + 24), mm5);
  233. pmaddwd_m2r(*(table + 28), mm6);
  234. paddd_r2r(mm7, mm1);
  235. paddd_m2r(*fdct_r_row, mm0);
  236. psrad_i2r(SHIFT_FRW_ROW, mm3);
  237. paddd_m2r(*fdct_r_row, mm1);
  238. paddd_r2r(mm2, mm0);
  239. paddd_m2r(*fdct_r_row, mm5);
  240. psrad_i2r(SHIFT_FRW_ROW, mm1);
  241. paddd_r2r(mm6, mm5);
  242. psrad_i2r(SHIFT_FRW_ROW, mm0);
  243. psrad_i2r(SHIFT_FRW_ROW, mm5);
  244. packssdw_r2r(mm0, mm3);
  245. packssdw_r2r(mm5, mm1);
  246. movq_r2r(mm3, mm6);
  247. punpcklwd_r2r(mm1, mm3);
  248. punpckhwd_r2r(mm1, mm6);
  249. movq_r2m(mm3, *(out + 0));
  250. movq_r2m(mm6, *(out + 4));
  251. }
  252. void fdct_mmx(int16_t *block)
  253. {
  254. /* XXX: not thread safe */
  255. static int16_t block_tmp[64] ATTR_ALIGN(8);
  256. int16_t *block1, *out;
  257. const int16_t *table;
  258. int i;
  259. block1 = block_tmp;
  260. fdct_col(block, block1, 0);
  261. fdct_col(block, block1, 4);
  262. block1 = block_tmp;
  263. table = tab_frw_01234567;
  264. out = block;
  265. for(i=8;i>0;i--) {
  266. fdct_row(block1, out, table);
  267. block1 += 8;
  268. table += 32;
  269. out += 8;
  270. }
  271. }