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  1. ;*****************************************************************************
  2. ;* SSE2-optimized weighted prediction code
  3. ;*****************************************************************************
  4. ;* Copyright (c) 2004-2005 Michael Niedermayer, Loren Merritt
  5. ;* Copyright (C) 2010 Eli Friedman <eli.friedman@gmail.com>
  6. ;*
  7. ;* This file is part of Libav.
  8. ;*
  9. ;* Libav is free software; you can redistribute it and/or
  10. ;* modify it under the terms of the GNU Lesser General Public
  11. ;* License as published by the Free Software Foundation; either
  12. ;* version 2.1 of the License, or (at your option) any later version.
  13. ;*
  14. ;* Libav is distributed in the hope that it will be useful,
  15. ;* but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. ;* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  17. ;* Lesser General Public License for more details.
  18. ;*
  19. ;* You should have received a copy of the GNU Lesser General Public
  20. ;* License along with Libav; if not, write to the Free Software
  21. ;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  22. ;******************************************************************************
  23. %include "libavutil/x86/x86util.asm"
  24. SECTION .text
  25. ;-----------------------------------------------------------------------------
  26. ; biweight pred:
  27. ;
  28. ; void ff_h264_biweight_16_sse2(uint8_t *dst, uint8_t *src, int stride,
  29. ; int height, int log2_denom, int weightd,
  30. ; int weights, int offset);
  31. ; and
  32. ; void ff_h264_weight_16_sse2(uint8_t *dst, int stride, int height,
  33. ; int log2_denom, int weight, int offset);
  34. ;-----------------------------------------------------------------------------
  35. %macro WEIGHT_SETUP 0
  36. add r5, r5
  37. inc r5
  38. movd m3, r4d
  39. movd m5, r5d
  40. movd m6, r3d
  41. pslld m5, m6
  42. psrld m5, 1
  43. %if mmsize == 16
  44. pshuflw m3, m3, 0
  45. pshuflw m5, m5, 0
  46. punpcklqdq m3, m3
  47. punpcklqdq m5, m5
  48. %else
  49. pshufw m3, m3, 0
  50. pshufw m5, m5, 0
  51. %endif
  52. pxor m7, m7
  53. %endmacro
  54. %macro WEIGHT_OP 2
  55. movh m0, [r0+%1]
  56. movh m1, [r0+%2]
  57. punpcklbw m0, m7
  58. punpcklbw m1, m7
  59. pmullw m0, m3
  60. pmullw m1, m3
  61. paddsw m0, m5
  62. paddsw m1, m5
  63. psraw m0, m6
  64. psraw m1, m6
  65. packuswb m0, m1
  66. %endmacro
  67. INIT_MMX mmxext
  68. cglobal h264_weight_16, 6, 6, 0
  69. WEIGHT_SETUP
  70. .nextrow:
  71. WEIGHT_OP 0, 4
  72. mova [r0 ], m0
  73. WEIGHT_OP 8, 12
  74. mova [r0+8], m0
  75. add r0, r1
  76. dec r2d
  77. jnz .nextrow
  78. REP_RET
  79. %macro WEIGHT_FUNC_MM 2
  80. cglobal h264_weight_%1, 6, 6, %2
  81. WEIGHT_SETUP
  82. .nextrow:
  83. WEIGHT_OP 0, mmsize/2
  84. mova [r0], m0
  85. add r0, r1
  86. dec r2d
  87. jnz .nextrow
  88. REP_RET
  89. %endmacro
  90. INIT_MMX mmxext
  91. WEIGHT_FUNC_MM 8, 0
  92. INIT_XMM sse2
  93. WEIGHT_FUNC_MM 16, 8
  94. %macro WEIGHT_FUNC_HALF_MM 2
  95. cglobal h264_weight_%1, 6, 6, %2
  96. WEIGHT_SETUP
  97. sar r2d, 1
  98. lea r3, [r1*2]
  99. .nextrow:
  100. WEIGHT_OP 0, r1
  101. movh [r0], m0
  102. %if mmsize == 16
  103. movhps [r0+r1], m0
  104. %else
  105. psrlq m0, 32
  106. movh [r0+r1], m0
  107. %endif
  108. add r0, r3
  109. dec r2d
  110. jnz .nextrow
  111. REP_RET
  112. %endmacro
  113. INIT_MMX mmxext
  114. WEIGHT_FUNC_HALF_MM 4, 0
  115. INIT_XMM sse2
  116. WEIGHT_FUNC_HALF_MM 8, 8
  117. %macro BIWEIGHT_SETUP 0
  118. %if ARCH_X86_64
  119. %define off_regd r7d
  120. %else
  121. %define off_regd r3d
  122. %endif
  123. mov off_regd, r7m
  124. add off_regd, 1
  125. or off_regd, 1
  126. add r4, 1
  127. %if cpuflag(ssse3)
  128. movd m4, r5d
  129. movd m0, r6d
  130. %else
  131. movd m3, r5d
  132. movd m4, r6d
  133. %endif
  134. movd m5, off_regd
  135. movd m6, r4d
  136. pslld m5, m6
  137. psrld m5, 1
  138. %if cpuflag(ssse3)
  139. punpcklbw m4, m0
  140. pshuflw m4, m4, 0
  141. pshuflw m5, m5, 0
  142. punpcklqdq m4, m4
  143. punpcklqdq m5, m5
  144. %else
  145. %if mmsize == 16
  146. pshuflw m3, m3, 0
  147. pshuflw m4, m4, 0
  148. pshuflw m5, m5, 0
  149. punpcklqdq m3, m3
  150. punpcklqdq m4, m4
  151. punpcklqdq m5, m5
  152. %else
  153. pshufw m3, m3, 0
  154. pshufw m4, m4, 0
  155. pshufw m5, m5, 0
  156. %endif
  157. pxor m7, m7
  158. %endif
  159. %endmacro
  160. %macro BIWEIGHT_STEPA 3
  161. movh m%1, [r0+%3]
  162. movh m%2, [r1+%3]
  163. punpcklbw m%1, m7
  164. punpcklbw m%2, m7
  165. pmullw m%1, m3
  166. pmullw m%2, m4
  167. paddsw m%1, m%2
  168. %endmacro
  169. %macro BIWEIGHT_STEPB 0
  170. paddsw m0, m5
  171. paddsw m1, m5
  172. psraw m0, m6
  173. psraw m1, m6
  174. packuswb m0, m1
  175. %endmacro
  176. INIT_MMX mmxext
  177. cglobal h264_biweight_16, 7, 8, 0
  178. BIWEIGHT_SETUP
  179. movifnidn r3d, r3m
  180. .nextrow:
  181. BIWEIGHT_STEPA 0, 1, 0
  182. BIWEIGHT_STEPA 1, 2, 4
  183. BIWEIGHT_STEPB
  184. mova [r0], m0
  185. BIWEIGHT_STEPA 0, 1, 8
  186. BIWEIGHT_STEPA 1, 2, 12
  187. BIWEIGHT_STEPB
  188. mova [r0+8], m0
  189. add r0, r2
  190. add r1, r2
  191. dec r3d
  192. jnz .nextrow
  193. REP_RET
  194. %macro BIWEIGHT_FUNC_MM 2
  195. cglobal h264_biweight_%1, 7, 8, %2
  196. BIWEIGHT_SETUP
  197. movifnidn r3d, r3m
  198. .nextrow:
  199. BIWEIGHT_STEPA 0, 1, 0
  200. BIWEIGHT_STEPA 1, 2, mmsize/2
  201. BIWEIGHT_STEPB
  202. mova [r0], m0
  203. add r0, r2
  204. add r1, r2
  205. dec r3d
  206. jnz .nextrow
  207. REP_RET
  208. %endmacro
  209. INIT_MMX mmxext
  210. BIWEIGHT_FUNC_MM 8, 0
  211. INIT_XMM sse2
  212. BIWEIGHT_FUNC_MM 16, 8
  213. %macro BIWEIGHT_FUNC_HALF_MM 2
  214. cglobal h264_biweight_%1, 7, 8, %2
  215. BIWEIGHT_SETUP
  216. movifnidn r3d, r3m
  217. sar r3, 1
  218. lea r4, [r2*2]
  219. .nextrow:
  220. BIWEIGHT_STEPA 0, 1, 0
  221. BIWEIGHT_STEPA 1, 2, r2
  222. BIWEIGHT_STEPB
  223. movh [r0], m0
  224. %if mmsize == 16
  225. movhps [r0+r2], m0
  226. %else
  227. psrlq m0, 32
  228. movh [r0+r2], m0
  229. %endif
  230. add r0, r4
  231. add r1, r4
  232. dec r3d
  233. jnz .nextrow
  234. REP_RET
  235. %endmacro
  236. INIT_MMX mmxext
  237. BIWEIGHT_FUNC_HALF_MM 4, 0
  238. INIT_XMM sse2
  239. BIWEIGHT_FUNC_HALF_MM 8, 8
  240. %macro BIWEIGHT_SSSE3_OP 0
  241. pmaddubsw m0, m4
  242. pmaddubsw m2, m4
  243. paddsw m0, m5
  244. paddsw m2, m5
  245. psraw m0, m6
  246. psraw m2, m6
  247. packuswb m0, m2
  248. %endmacro
  249. INIT_XMM ssse3
  250. cglobal h264_biweight_16, 7, 8, 8
  251. BIWEIGHT_SETUP
  252. movifnidn r3d, r3m
  253. .nextrow:
  254. movh m0, [r0]
  255. movh m2, [r0+8]
  256. movh m3, [r1+8]
  257. punpcklbw m0, [r1]
  258. punpcklbw m2, m3
  259. BIWEIGHT_SSSE3_OP
  260. mova [r0], m0
  261. add r0, r2
  262. add r1, r2
  263. dec r3d
  264. jnz .nextrow
  265. REP_RET
  266. INIT_XMM ssse3
  267. cglobal h264_biweight_8, 7, 8, 8
  268. BIWEIGHT_SETUP
  269. movifnidn r3d, r3m
  270. sar r3, 1
  271. lea r4, [r2*2]
  272. .nextrow:
  273. movh m0, [r0]
  274. movh m1, [r1]
  275. movh m2, [r0+r2]
  276. movh m3, [r1+r2]
  277. punpcklbw m0, m1
  278. punpcklbw m2, m3
  279. BIWEIGHT_SSSE3_OP
  280. movh [r0], m0
  281. movhps [r0+r2], m0
  282. add r0, r4
  283. add r1, r4
  284. dec r3d
  285. jnz .nextrow
  286. REP_RET