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  1. ;*****************************************************************************
  2. ;* MMX/SSE2/AVX-optimized 10-bit H.264 chroma MC code
  3. ;*****************************************************************************
  4. ;* Copyright (C) 2005-2011 x264 project
  5. ;*
  6. ;* Authors: Daniel Kang <daniel.d.kang@gmail.com>
  7. ;*
  8. ;* This file is part of Libav.
  9. ;*
  10. ;* Libav 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. ;* Libav 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
  21. ;* License along with Libav; if not, write to the Free Software
  22. ;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. ;******************************************************************************
  24. %include "libavutil/x86/x86util.asm"
  25. SECTION_RODATA
  26. cextern pw_4
  27. cextern pw_8
  28. cextern pw_32
  29. cextern pw_64
  30. SECTION .text
  31. %macro MV0_PIXELS_MC8 0
  32. lea r4, [r2*3 ]
  33. lea r5, [r2*4 ]
  34. .next4rows:
  35. movu m0, [r1 ]
  36. movu m1, [r1+r2 ]
  37. CHROMAMC_AVG m0, [r0 ]
  38. CHROMAMC_AVG m1, [r0+r2 ]
  39. mova [r0 ], m0
  40. mova [r0+r2 ], m1
  41. movu m0, [r1+r2*2]
  42. movu m1, [r1+r4 ]
  43. CHROMAMC_AVG m0, [r0+r2*2]
  44. CHROMAMC_AVG m1, [r0+r4 ]
  45. mova [r0+r2*2], m0
  46. mova [r0+r4 ], m1
  47. add r1, r5
  48. add r0, r5
  49. sub r3d, 4
  50. jne .next4rows
  51. %endmacro
  52. ;-----------------------------------------------------------------------------
  53. ; void put/avg_h264_chroma_mc8(pixel *dst, pixel *src, int stride, int h, int mx, int my)
  54. ;-----------------------------------------------------------------------------
  55. %macro CHROMA_MC8 1
  56. ; put/avg_h264_chroma_mc8_*(uint8_t *dst /*align 8*/, uint8_t *src /*align 1*/,
  57. ; int stride, int h, int mx, int my)
  58. cglobal %1_h264_chroma_mc8_10, 6,7,8
  59. movsxdifnidn r2, r2d
  60. mov r6d, r5d
  61. or r6d, r4d
  62. jne .at_least_one_non_zero
  63. ; mx == 0 AND my == 0 - no filter needed
  64. MV0_PIXELS_MC8
  65. REP_RET
  66. .at_least_one_non_zero:
  67. mov r6d, 2
  68. test r5d, r5d
  69. je .x_interpolation
  70. mov r6, r2 ; dxy = x ? 1 : stride
  71. test r4d, r4d
  72. jne .xy_interpolation
  73. .x_interpolation:
  74. ; mx == 0 XOR my == 0 - 1 dimensional filter only
  75. or r4d, r5d ; x + y
  76. movd m5, r4d
  77. mova m4, [pw_8]
  78. mova m6, [pw_4] ; mm6 = rnd >> 3
  79. SPLATW m5, m5 ; mm5 = B = x
  80. psubw m4, m5 ; mm4 = A = 8-x
  81. .next1drow:
  82. movu m0, [r1 ] ; mm0 = src[0..7]
  83. movu m2, [r1+r6] ; mm2 = src[1..8]
  84. pmullw m0, m4 ; mm0 = A * src[0..7]
  85. pmullw m2, m5 ; mm2 = B * src[1..8]
  86. paddw m0, m6
  87. paddw m0, m2
  88. psrlw m0, 3
  89. CHROMAMC_AVG m0, [r0]
  90. mova [r0], m0 ; dst[0..7] = (A * src[0..7] + B * src[1..8] + (rnd >> 3)) >> 3
  91. add r0, r2
  92. add r1, r2
  93. dec r3d
  94. jne .next1drow
  95. REP_RET
  96. .xy_interpolation: ; general case, bilinear
  97. movd m4, r4m ; x
  98. movd m6, r5m ; y
  99. SPLATW m4, m4 ; mm4 = x words
  100. SPLATW m6, m6 ; mm6 = y words
  101. psllw m5, m4, 3 ; mm5 = 8x
  102. pmullw m4, m6 ; mm4 = x * y
  103. psllw m6, 3 ; mm6 = 8y
  104. paddw m1, m5, m6 ; mm7 = 8x+8y
  105. mova m7, m4 ; DD = x * y
  106. psubw m5, m4 ; mm5 = B = 8x - xy
  107. psubw m6, m4 ; mm6 = C = 8y - xy
  108. paddw m4, [pw_64]
  109. psubw m4, m1 ; mm4 = A = xy - (8x+8y) + 64
  110. movu m0, [r1 ] ; mm0 = src[0..7]
  111. movu m1, [r1+2] ; mm1 = src[1..8]
  112. .next2drow:
  113. add r1, r2
  114. pmullw m2, m0, m4
  115. pmullw m1, m5
  116. paddw m2, m1 ; mm2 = A * src[0..7] + B * src[1..8]
  117. movu m0, [r1]
  118. movu m1, [r1+2]
  119. pmullw m3, m0, m6
  120. paddw m2, m3 ; mm2 += C * src[0..7+strde]
  121. pmullw m3, m1, m7
  122. paddw m2, m3 ; mm2 += D * src[1..8+strde]
  123. paddw m2, [pw_32]
  124. psrlw m2, 6
  125. CHROMAMC_AVG m2, [r0]
  126. mova [r0], m2 ; dst[0..7] = (mm2 + 32) >> 6
  127. add r0, r2
  128. dec r3d
  129. jne .next2drow
  130. REP_RET
  131. %endmacro
  132. ;-----------------------------------------------------------------------------
  133. ; void put/avg_h264_chroma_mc4(pixel *dst, pixel *src, int stride, int h, int mx, int my)
  134. ;-----------------------------------------------------------------------------
  135. ;TODO: xmm mc4
  136. %macro MC4_OP 2
  137. movq %1, [r1 ]
  138. movq m1, [r1+2]
  139. add r1, r2
  140. pmullw %1, m4
  141. pmullw m1, m2
  142. paddw m1, %1
  143. mova %1, m1
  144. pmullw %2, m5
  145. pmullw m1, m3
  146. paddw %2, [pw_32]
  147. paddw m1, %2
  148. psrlw m1, 6
  149. CHROMAMC_AVG m1, %2, [r0]
  150. movq [r0], m1
  151. add r0, r2
  152. %endmacro
  153. %macro CHROMA_MC4 1
  154. cglobal %1_h264_chroma_mc4_10, 6,6,7
  155. movsxdifnidn r2, r2d
  156. movd m2, r4m ; x
  157. movd m3, r5m ; y
  158. mova m4, [pw_8]
  159. mova m5, m4
  160. SPLATW m2, m2
  161. SPLATW m3, m3
  162. psubw m4, m2
  163. psubw m5, m3
  164. movq m0, [r1 ]
  165. movq m6, [r1+2]
  166. add r1, r2
  167. pmullw m0, m4
  168. pmullw m6, m2
  169. paddw m6, m0
  170. .next2rows:
  171. MC4_OP m0, m6
  172. MC4_OP m6, m0
  173. sub r3d, 2
  174. jnz .next2rows
  175. REP_RET
  176. %endmacro
  177. ;-----------------------------------------------------------------------------
  178. ; void put/avg_h264_chroma_mc2(pixel *dst, pixel *src, int stride, int h, int mx, int my)
  179. ;-----------------------------------------------------------------------------
  180. %macro CHROMA_MC2 1
  181. cglobal %1_h264_chroma_mc2_10, 6,7
  182. movsxdifnidn r2, r2d
  183. mov r6d, r4d
  184. shl r4d, 16
  185. sub r4d, r6d
  186. add r4d, 8
  187. imul r5d, r4d ; x*y<<16 | y*(8-x)
  188. shl r4d, 3
  189. sub r4d, r5d ; x*(8-y)<<16 | (8-x)*(8-y)
  190. movd m5, r4d
  191. movd m6, r5d
  192. punpckldq m5, m5 ; mm5 = {A,B,A,B}
  193. punpckldq m6, m6 ; mm6 = {C,D,C,D}
  194. pxor m7, m7
  195. pshufw m2, [r1], 0x94 ; mm0 = src[0,1,1,2]
  196. .nextrow:
  197. add r1, r2
  198. movq m1, m2
  199. pmaddwd m1, m5 ; mm1 = A * src[0,1] + B * src[1,2]
  200. pshufw m0, [r1], 0x94 ; mm0 = src[0,1,1,2]
  201. movq m2, m0
  202. pmaddwd m0, m6
  203. paddw m1, [pw_32]
  204. paddw m1, m0 ; mm1 += C * src[0,1] + D * src[1,2]
  205. psrlw m1, 6
  206. packssdw m1, m7
  207. CHROMAMC_AVG m1, m3, [r0]
  208. movd [r0], m1
  209. add r0, r2
  210. dec r3d
  211. jnz .nextrow
  212. REP_RET
  213. %endmacro
  214. %macro NOTHING 2-3
  215. %endmacro
  216. %macro AVG 2-3
  217. %if %0==3
  218. movq %2, %3
  219. %endif
  220. pavgw %1, %2
  221. %endmacro
  222. %define CHROMAMC_AVG NOTHING
  223. INIT_XMM sse2
  224. CHROMA_MC8 put
  225. INIT_XMM avx
  226. CHROMA_MC8 put
  227. INIT_MMX mmxext
  228. CHROMA_MC4 put
  229. CHROMA_MC2 put
  230. %define CHROMAMC_AVG AVG
  231. INIT_XMM sse2
  232. CHROMA_MC8 avg
  233. INIT_XMM avx
  234. CHROMA_MC8 avg
  235. INIT_MMX mmxext
  236. CHROMA_MC4 avg
  237. CHROMA_MC2 avg