jcgryext-avx2.asm 20 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457
  1. ;
  2. ; jcgryext.asm - grayscale colorspace conversion (AVX2)
  3. ;
  4. ; Copyright (C) 2011, 2016, D. R. Commander.
  5. ; Copyright (C) 2015, Intel Corporation.
  6. ;
  7. ; Based on the x86 SIMD extension for IJG JPEG library
  8. ; Copyright (C) 1999-2006, MIYASAKA Masaru.
  9. ; For conditions of distribution and use, see copyright notice in jsimdext.inc
  10. ;
  11. ; This file should be assembled with NASM (Netwide Assembler),
  12. ; can *not* be assembled with Microsoft's MASM or any compatible
  13. ; assembler (including Borland's Turbo Assembler).
  14. ; NASM is available from http://nasm.sourceforge.net/ or
  15. ; http://sourceforge.net/project/showfiles.php?group_id=6208
  16. %include "jcolsamp.inc"
  17. ; --------------------------------------------------------------------------
  18. ;
  19. ; Convert some rows of samples to the output colorspace.
  20. ;
  21. ; GLOBAL(void)
  22. ; jsimd_rgb_gray_convert_avx2(JDIMENSION img_width, JSAMPARRAY input_buf,
  23. ; JSAMPIMAGE output_buf, JDIMENSION output_row,
  24. ; int num_rows);
  25. ;
  26. %define img_width(b) (b) + 8 ; JDIMENSION img_width
  27. %define input_buf(b) (b) + 12 ; JSAMPARRAY input_buf
  28. %define output_buf(b) (b) + 16 ; JSAMPIMAGE output_buf
  29. %define output_row(b) (b) + 20 ; JDIMENSION output_row
  30. %define num_rows(b) (b) + 24 ; int num_rows
  31. %define original_ebp ebp + 0
  32. %define wk(i) ebp - (WK_NUM - (i)) * SIZEOF_YMMWORD
  33. ; ymmword wk[WK_NUM]
  34. %define WK_NUM 2
  35. %define gotptr wk(0) - SIZEOF_POINTER ; void * gotptr
  36. align 32
  37. GLOBAL_FUNCTION(jsimd_rgb_gray_convert_avx2)
  38. EXTN(jsimd_rgb_gray_convert_avx2):
  39. push ebp
  40. mov eax, esp ; eax = original ebp
  41. sub esp, byte 4
  42. and esp, byte (-SIZEOF_YMMWORD) ; align to 256 bits
  43. mov [esp], eax
  44. mov ebp, esp ; ebp = aligned ebp
  45. lea esp, [wk(0)]
  46. pushpic eax ; make a room for GOT address
  47. push ebx
  48. ; push ecx ; need not be preserved
  49. ; push edx ; need not be preserved
  50. push esi
  51. push edi
  52. get_GOT ebx ; get GOT address
  53. movpic POINTER [gotptr], ebx ; save GOT address
  54. mov ecx, JDIMENSION [img_width(eax)]
  55. test ecx, ecx
  56. jz near .return
  57. push ecx
  58. mov esi, JSAMPIMAGE [output_buf(eax)]
  59. mov ecx, JDIMENSION [output_row(eax)]
  60. mov edi, JSAMPARRAY [esi+0*SIZEOF_JSAMPARRAY]
  61. lea edi, [edi+ecx*SIZEOF_JSAMPROW]
  62. pop ecx
  63. mov esi, JSAMPARRAY [input_buf(eax)]
  64. mov eax, INT [num_rows(eax)]
  65. test eax, eax
  66. jle near .return
  67. alignx 16, 7
  68. .rowloop:
  69. pushpic eax
  70. push edi
  71. push esi
  72. push ecx ; col
  73. mov esi, JSAMPROW [esi] ; inptr
  74. mov edi, JSAMPROW [edi] ; outptr0
  75. movpic eax, POINTER [gotptr] ; load GOT address (eax)
  76. cmp ecx, byte SIZEOF_YMMWORD
  77. jae near .columnloop
  78. alignx 16, 7
  79. %if RGB_PIXELSIZE == 3 ; ---------------
  80. .column_ld1:
  81. push eax
  82. push edx
  83. lea ecx, [ecx+ecx*2] ; imul ecx,RGB_PIXELSIZE
  84. test cl, SIZEOF_BYTE
  85. jz short .column_ld2
  86. sub ecx, byte SIZEOF_BYTE
  87. movzx eax, byte [esi+ecx]
  88. .column_ld2:
  89. test cl, SIZEOF_WORD
  90. jz short .column_ld4
  91. sub ecx, byte SIZEOF_WORD
  92. movzx edx, word [esi+ecx]
  93. shl eax, WORD_BIT
  94. or eax, edx
  95. .column_ld4:
  96. vmovd xmmA, eax
  97. pop edx
  98. pop eax
  99. test cl, SIZEOF_DWORD
  100. jz short .column_ld8
  101. sub ecx, byte SIZEOF_DWORD
  102. vmovd xmmF, XMM_DWORD [esi+ecx]
  103. vpslldq xmmA, xmmA, SIZEOF_DWORD
  104. vpor xmmA, xmmA, xmmF
  105. .column_ld8:
  106. test cl, SIZEOF_MMWORD
  107. jz short .column_ld16
  108. sub ecx, byte SIZEOF_MMWORD
  109. vmovq xmmB, XMM_MMWORD [esi+ecx]
  110. vpslldq xmmA, xmmA, SIZEOF_MMWORD
  111. vpor xmmA, xmmA, xmmB
  112. .column_ld16:
  113. test cl, SIZEOF_XMMWORD
  114. jz short .column_ld32
  115. sub ecx, byte SIZEOF_XMMWORD
  116. vmovdqu xmmB, XMM_MMWORD [esi+ecx]
  117. vperm2i128 ymmA, ymmA, ymmA, 1
  118. vpor ymmA, ymmB
  119. .column_ld32:
  120. test cl, SIZEOF_YMMWORD
  121. jz short .column_ld64
  122. sub ecx, byte SIZEOF_YMMWORD
  123. vmovdqa ymmF, ymmA
  124. vmovdqu ymmA, YMMWORD [esi+0*SIZEOF_YMMWORD]
  125. .column_ld64:
  126. test cl, 2*SIZEOF_YMMWORD
  127. mov ecx, SIZEOF_YMMWORD
  128. jz short .rgb_gray_cnv
  129. vmovdqa ymmB, ymmA
  130. vmovdqu ymmA, YMMWORD [esi+0*SIZEOF_YMMWORD]
  131. vmovdqu ymmF, YMMWORD [esi+1*SIZEOF_YMMWORD]
  132. jmp short .rgb_gray_cnv
  133. alignx 16, 7
  134. .columnloop:
  135. vmovdqu ymmA, YMMWORD [esi+0*SIZEOF_YMMWORD]
  136. vmovdqu ymmF, YMMWORD [esi+1*SIZEOF_YMMWORD]
  137. vmovdqu ymmB, YMMWORD [esi+2*SIZEOF_YMMWORD]
  138. .rgb_gray_cnv:
  139. ; ymmA=(00 10 20 01 11 21 02 12 22 03 13 23 04 14 24 05
  140. ; 15 25 06 16 26 07 17 27 08 18 28 09 19 29 0A 1A)
  141. ; ymmF=(2A 0B 1B 2B 0C 1C 2C 0D 1D 2D 0E 1E 2E 0F 1F 2F
  142. ; 0G 1G 2G 0H 1H 2H 0I 1I 2I 0J 1J 2J 0K 1K 2K 0L)
  143. ; ymmB=(1L 2L 0M 1M 2M 0N 1N 2N 0O 1O 2O 0P 1P 2P 0Q 1Q
  144. ; 2Q 0R 1R 2R 0S 1S 2S 0T 1T 2T 0U 1U 2U 0V 1V 2V)
  145. vmovdqu ymmC, ymmA
  146. vinserti128 ymmA, ymmF, xmmA, 0 ; ymmA=(00 10 20 01 11 21 02 12 22 03 13 23 04 14 24 05
  147. ; 0G 1G 2G 0H 1H 2H 0I 1I 2I 0J 1J 2J 0K 1K 2K 0L)
  148. vinserti128 ymmC, ymmC, xmmB, 0 ; ymmC=(1L 2L 0M 1M 2M 0N 1N 2N 0O 1O 2O 0P 1P 2P 0Q 1Q
  149. ; 15 25 06 16 26 07 17 27 08 18 28 09 19 29 0A 1A)
  150. vinserti128 ymmB, ymmB, xmmF, 0 ; ymmB=(2A 0B 1B 2B 0C 1C 2C 0D 1D 2D 0E 1E 2E 0F 1F 2F
  151. ; 2Q 0R 1R 2R 0S 1S 2S 0T 1T 2T 0U 1U 2U 0V 1V 2V)
  152. vperm2i128 ymmF, ymmC, ymmC, 1 ; ymmF=(15 25 06 16 26 07 17 27 08 18 28 09 19 29 0A 1A
  153. ; 1L 2L 0M 1M 2M 0N 1N 2N 0O 1O 2O 0P 1P 2P 0Q 1Q)
  154. vmovdqa ymmG, ymmA
  155. vpslldq ymmA, ymmA, 8 ; ymmA=(-- -- -- -- -- -- -- -- 00 10 20 01 11 21 02 12
  156. ; 22 03 13 23 04 14 24 05 0G 1G 2G 0H 1H 2H 0I 1I)
  157. vpsrldq ymmG, ymmG, 8 ; ymmG=(22 03 13 23 04 14 24 05 0G 1G 2G 0H 1H 2H 0I 1I
  158. ; 2I 0J 1J 2J 0K 1K 2K 0L -- -- -- -- -- -- -- --)
  159. vpunpckhbw ymmA, ymmA, ymmF ; ymmA=(00 08 10 18 20 28 01 09 11 19 21 29 02 0A 12 1A
  160. ; 0G 0O 1G 1O 2G 2O 0H 0P 1H 1P 2H 2P 0I 0Q 1I 1Q)
  161. vpslldq ymmF, ymmF, 8 ; ymmF=(-- -- -- -- -- -- -- -- 15 25 06 16 26 07 17 27
  162. ; 08 18 28 09 19 29 0A 1A 1L 2L 0M 1M 2M 0N 1N 2N)
  163. vpunpcklbw ymmG, ymmG, ymmB ; ymmG=(22 2A 03 0B 13 1B 23 2B 04 0C 14 1C 24 2C 05 0D
  164. ; 2I 2Q 0J 0R 1J 1R 2J 2R 0K 0S 1K 1S 2K 2S 0L 0T)
  165. vpunpckhbw ymmF, ymmF, ymmB ; ymmF=(15 1D 25 2D 06 0E 16 1E 26 2E 07 0F 17 1F 27 2F
  166. ; 1L 1T 2L 2T 0M 0U 1M 1U 2M 2U 0N 0V 1N 1V 2N 2V)
  167. vmovdqa ymmD, ymmA
  168. vpslldq ymmA, ymmA, 8 ; ymmA=(-- -- -- -- -- -- -- -- 00 08 10 18 20 28 01 09
  169. ; 11 19 21 29 02 0A 12 1A 0G 0O 1G 1O 2G 2O 0H 0P)
  170. vpsrldq ymmD, ymmD, 8 ; ymmD=(11 19 21 29 02 0A 12 1A 0G 0O 1G 1O 2G 2O 0H 0P
  171. ; 1H 1P 2H 2P 0I 0Q 1I 1Q -- -- -- -- -- -- -- --)
  172. vpunpckhbw ymmA, ymmA, ymmG ; ymmA=(00 04 08 0C 10 14 18 1C 20 24 28 2C 01 05 09 0D
  173. ; 0G 0K 0O 0S 1G 1K 1O 1S 2G 2K 2O 2S 0H 0L 0P 0T)
  174. vpslldq ymmG, ymmG, 8 ; ymmG=(-- -- -- -- -- -- -- -- 22 2A 03 0B 13 1B 23 2B
  175. ; 04 0C 14 1C 24 2C 05 0D 2I 2Q 0J 0R 1J 1R 2J 2R)
  176. vpunpcklbw ymmD, ymmD, ymmF ; ymmD=(11 15 19 1D 21 25 29 2D 02 06 0A 0E 12 16 1A 1E
  177. ; 1H 1L 1P 1T 2H 2L 2P 2T 0I 0M 0Q 0U 1I 1M 1Q 1U)
  178. vpunpckhbw ymmG, ymmG, ymmF ; ymmG=(22 26 2A 2E 03 07 0B 0F 13 17 1B 1F 23 27 2B 2F
  179. ; 2I 2M 2Q 2U 0J 0N 0R 0V 1J 1N 1R 1V 2J 2N 2R 2V)
  180. vmovdqa ymmE, ymmA
  181. vpslldq ymmA, ymmA, 8 ; ymmA=(-- -- -- -- -- -- -- -- 00 04 08 0C 10 14 18 1C
  182. ; 20 24 28 2C 01 05 09 0D 0G 0K 0O 0S 1G 1K 1O 1S)
  183. vpsrldq ymmE, ymmE, 8 ; ymmE=(20 24 28 2C 01 05 09 0D 0G 0K 0O 0S 1G 1K 1O 1S
  184. ; 2G 2K 2O 2S 0H 0L 0P 0T -- -- -- -- -- -- -- --)
  185. vpunpckhbw ymmA, ymmA, ymmD ; ymmA=(00 02 04 06 08 0A 0C 0E 10 12 14 16 18 1A 1C 1E
  186. ; 0G 0I 0K 0M 0O 0Q 0S 0U 1G 1I 1K 1M 1O 1Q 1S 1U)
  187. vpslldq ymmD, ymmD, 8 ; ymmD=(-- -- -- -- -- -- -- -- 11 15 19 1D 21 25 29 2D
  188. ; 02 06 0A 0E 12 16 1A 1E 1H 1L 1P 1T 2H 2L 2P 2T)
  189. vpunpcklbw ymmE, ymmE, ymmG ; ymmE=(20 22 24 26 28 2A 2C 2E 01 03 05 07 09 0B 0D 0F
  190. ; 2G 2I 2K 2M 2O 2Q 2S 2U 0H 0J 0L 0N 0P 0R 0T 0V)
  191. vpunpckhbw ymmD, ymmD, ymmG ; ymmD=(11 13 15 17 19 1B 1D 1F 21 23 25 27 29 2B 2D 2F
  192. ; 1H 1J 1L 1N 1P 1R 1T 1V 2H 2J 2L 2N 2P 2R 2T 2V)
  193. vpxor ymmH, ymmH, ymmH
  194. vmovdqa ymmC, ymmA
  195. vpunpcklbw ymmA, ymmA, ymmH ; ymmA=(00 02 04 06 08 0A 0C 0E 0G 0I 0K 0M 0O 0Q 0S 0U)
  196. vpunpckhbw ymmC, ymmC, ymmH ; ymmC=(10 12 14 16 18 1A 1C 1E 1G 1I 1K 1M 1O 1Q 1S 1U)
  197. vmovdqa ymmB, ymmE
  198. vpunpcklbw ymmE, ymmE, ymmH ; ymmE=(20 22 24 26 28 2A 2C 2E 2G 2I 2K 2M 2O 2Q 2S 2U)
  199. vpunpckhbw ymmB, ymmB, ymmH ; ymmB=(01 03 05 07 09 0B 0D 0F 0H 0J 0L 0N 0P 0R 0T 0V)
  200. vmovdqa ymmF, ymmD
  201. vpunpcklbw ymmD, ymmD, ymmH ; ymmD=(11 13 15 17 19 1B 1D 1F 1H 1J 1L 1N 1P 1R 1T 1V)
  202. vpunpckhbw ymmF, ymmF, ymmH ; ymmF=(21 23 25 27 29 2B 2D 2F 2H 2J 2L 2N 2P 2R 2T 2V)
  203. %else ; RGB_PIXELSIZE == 4 ; -----------
  204. .column_ld1:
  205. test cl, SIZEOF_XMMWORD/16
  206. jz short .column_ld2
  207. sub ecx, byte SIZEOF_XMMWORD/16
  208. vmovd xmmA, XMM_DWORD [esi+ecx*RGB_PIXELSIZE]
  209. .column_ld2:
  210. test cl, SIZEOF_XMMWORD/8
  211. jz short .column_ld4
  212. sub ecx, byte SIZEOF_XMMWORD/8
  213. vmovq xmmF, XMM_MMWORD [esi+ecx*RGB_PIXELSIZE]
  214. vpslldq xmmA, xmmA, SIZEOF_MMWORD
  215. vpor xmmA, xmmA, xmmF
  216. .column_ld4:
  217. test cl, SIZEOF_XMMWORD/4
  218. jz short .column_ld8
  219. sub ecx, byte SIZEOF_XMMWORD/4
  220. vmovdqa xmmF, xmmA
  221. vperm2i128 ymmF, ymmF, ymmF, 1
  222. vmovdqu xmmA, XMMWORD [esi+ecx*RGB_PIXELSIZE]
  223. vpor ymmA, ymmA, ymmF
  224. .column_ld8:
  225. test cl, SIZEOF_XMMWORD/2
  226. jz short .column_ld16
  227. sub ecx, byte SIZEOF_XMMWORD/2
  228. vmovdqa ymmF, ymmA
  229. vmovdqu ymmA, YMMWORD [esi+ecx*RGB_PIXELSIZE]
  230. .column_ld16:
  231. test cl, SIZEOF_XMMWORD
  232. mov ecx, SIZEOF_YMMWORD
  233. jz short .rgb_gray_cnv
  234. vmovdqa ymmE, ymmA
  235. vmovdqa ymmH, ymmF
  236. vmovdqu ymmA, YMMWORD [esi+0*SIZEOF_YMMWORD]
  237. vmovdqu ymmF, YMMWORD [esi+1*SIZEOF_YMMWORD]
  238. jmp short .rgb_gray_cnv
  239. alignx 16, 7
  240. .columnloop:
  241. vmovdqu ymmA, YMMWORD [esi+0*SIZEOF_YMMWORD]
  242. vmovdqu ymmF, YMMWORD [esi+1*SIZEOF_YMMWORD]
  243. vmovdqu ymmE, YMMWORD [esi+2*SIZEOF_YMMWORD]
  244. vmovdqu ymmH, YMMWORD [esi+3*SIZEOF_YMMWORD]
  245. .rgb_gray_cnv:
  246. ; ymmA=(00 10 20 30 01 11 21 31 02 12 22 32 03 13 23 33
  247. ; 04 14 24 34 05 15 25 35 06 16 26 36 07 17 27 37)
  248. ; ymmF=(08 18 28 38 09 19 29 39 0A 1A 2A 3A 0B 1B 2B 3B
  249. ; 0C 1C 2C 3C 0D 1D 2D 3D 0E 1E 2E 3E 0F 1F 2F 3F)
  250. ; ymmE=(0G 1G 2G 3G 0H 1H 2H 3H 0I 1I 2I 3I 0J 1J 2J 3J
  251. ; 0K 1K 2K 3K 0L 1L 2L 3L 0M 1M 2M 3M 0N 1N 2N 3N)
  252. ; ymmH=(0O 1O 2O 3O 0P 1P 2P 3P 0Q 1Q 2Q 3Q 0R 1R 2R 3R
  253. ; 0S 1S 2S 3S 0T 1T 2T 3T 0U 1U 2U 3U 0V 1V 2V 3V)
  254. vmovdqa ymmB, ymmA
  255. vinserti128 ymmA, ymmA, xmmE, 1 ; ymmA=(00 10 20 30 01 11 21 31 02 12 22 32 03 13 23 33
  256. ; 0G 1G 2G 3G 0H 1H 2H 3H 0I 1I 2I 3I 0J 1J 2J 3J)
  257. vperm2i128 ymmE, ymmB, ymmE, 0x31 ; ymmE=(04 14 24 34 05 15 25 35 06 16 26 36 07 17 27 37
  258. ; 0K 1K 2K 3K 0L 1L 2L 3L 0M 1M 2M 3M 0N 1N 2N 3N)
  259. vmovdqa ymmB, ymmF
  260. vinserti128 ymmF, ymmF, xmmH, 1 ; ymmF=(08 18 28 38 09 19 29 39 0A 1A 2A 3A 0B 1B 2B 3B
  261. ; 0O 1O 2O 3O 0P 1P 2P 3P 0Q 1Q 2Q 3Q 0R 1R 2R 3R)
  262. vperm2i128 ymmH, ymmB, ymmH, 0x31 ; ymmH=(0C 1C 2C 3C 0D 1D 2D 3D 0E 1E 2E 3E 0F 1F 2F 3F
  263. ; 0S 1S 2S 3S 0T 1T 2T 3T 0U 1U 2U 3U 0V 1V 2V 3V)
  264. vmovdqa ymmD, ymmA
  265. vpunpcklbw ymmA, ymmA, ymmE ; ymmA=(00 04 10 14 20 24 30 34 01 05 11 15 21 25 31 35
  266. ; 0G 0K 1G 1K 2G 2K 3G 3K 0H 0L 1H 1L 2H 2L 3H 3L)
  267. vpunpckhbw ymmD, ymmD, ymmE ; ymmD=(02 06 12 16 22 26 32 36 03 07 13 17 23 27 33 37
  268. ; 0I 0M 1I 1M 2I 2M 3I 3M 0J 0N 1J 1N 2J 2N 3J 3N)
  269. vmovdqa ymmC, ymmF
  270. vpunpcklbw ymmF, ymmF, ymmH ; ymmF=(08 0C 18 1C 28 2C 38 3C 09 0D 19 1D 29 2D 39 3D
  271. ; 0O 0S 1O 1S 2O 2S 3O 3S 0P 0T 1P 1T 2P 2T 3P 3T)
  272. vpunpckhbw ymmC, ymmC, ymmH ; ymmC=(0A 0E 1A 1E 2A 2E 3A 3E 0B 0F 1B 1F 2B 2F 3B 3F
  273. ; 0Q 0U 1Q 1U 2Q 2U 3Q 3U 0R 0V 1R 1V 2R 2V 3R 3V)
  274. vmovdqa ymmB, ymmA
  275. vpunpcklwd ymmA, ymmA, ymmF ; ymmA=(00 04 08 0C 10 14 18 1C 20 24 28 2C 30 34 38 3C
  276. ; 0G 0K 0O 0S 1G 1K 1O 1S 2G 2K 2O 2S 3G 3K 3O 3S)
  277. vpunpckhwd ymmB, ymmB, ymmF ; ymmB=(01 05 09 0D 11 15 19 1D 21 25 29 2D 31 35 39 3D
  278. ; 0H 0L 0P 0T 1H 1L 1P 1T 2H 2L 2P 2T 3H 3L 3P 3T)
  279. vmovdqa ymmG, ymmD
  280. vpunpcklwd ymmD, ymmD, ymmC ; ymmD=(02 06 0A 0E 12 16 1A 1E 22 26 2A 2E 32 36 3A 3E
  281. ; 0I 0M 0Q 0U 1I 1M 1Q 1U 2I 2M 2Q 2U 3I 3M 3Q 3U)
  282. vpunpckhwd ymmG, ymmG, ymmC ; ymmG=(03 07 0B 0F 13 17 1B 1F 23 27 2B 2F 33 37 3B 3F
  283. ; 0J 0N 0R 0V 1J 1N 1R 1V 2J 2N 2R 2V 3J 3N 3R 3V)
  284. vmovdqa ymmE, ymmA
  285. vpunpcklbw ymmA, ymmA, ymmD ; ymmA=(00 02 04 06 08 0A 0C 0E 10 12 14 16 18 1A 1C 1E
  286. ; 0G 0I 0K 0M 0O 0Q 0S 0U 1G 1I 1K 1M 1O 1Q 1S 1U)
  287. vpunpckhbw ymmE, ymmE, ymmD ; ymmE=(20 22 24 26 28 2A 2C 2E 30 32 34 36 38 3A 3C 3E
  288. ; 2G 2I 2K 2M 2O 2Q 2S 2U 3G 3I 3K 3M 3O 3Q 3S 3U)
  289. vmovdqa ymmH, ymmB
  290. vpunpcklbw ymmB, ymmB, ymmG ; ymmB=(01 03 05 07 09 0B 0D 0F 11 13 15 17 19 1B 1D 1F
  291. ; 0H 0J 0L 0N 0P 0R 0T 0V 1H 1J 1L 1N 1P 1R 1T 1V)
  292. vpunpckhbw ymmH, ymmH, ymmG ; ymmH=(21 23 25 27 29 2B 2D 2F 31 33 35 37 39 3B 3D 3F
  293. ; 2H 2J 2L 2N 2P 2R 2T 2V 3H 3J 3L 3N 3P 3R 3T 3V)
  294. vpxor ymmF, ymmF, ymmF
  295. vmovdqa ymmC, ymmA
  296. vpunpcklbw ymmA, ymmA, ymmF ; ymmA=(00 02 04 06 08 0A 0C 0E 0G 0I 0K 0M 0O 0Q 0S 0U)
  297. vpunpckhbw ymmC, ymmC, ymmF ; ymmC=(10 12 14 16 18 1A 1C 1E 1G 1I 1K 1M 1O 1Q 1S 1U)
  298. vmovdqa ymmD, ymmB
  299. vpunpcklbw ymmB, ymmB, ymmF ; ymmB=(01 03 05 07 09 0B 0D 0F 0H 0J 0L 0N 0P 0R 0T 0V)
  300. vpunpckhbw ymmD, ymmD, ymmF ; ymmD=(11 13 15 17 19 1B 1D 1F 1H 1J 1L 1N 1P 1R 1T 1V)
  301. vmovdqa ymmG, ymmE
  302. vpunpcklbw ymmE, ymmE, ymmF ; ymmE=(20 22 24 26 28 2A 2C 2E 2G 2I 2K 2M 2O 2Q 2S 2U)
  303. vpunpckhbw ymmG, ymmG, ymmF ; ymmG=(30 32 34 36 38 3A 3C 3E 3G 3I 3K 3M 3O 3Q 3S 3U)
  304. vpunpcklbw ymmF, ymmF, ymmH
  305. vpunpckhbw ymmH, ymmH, ymmH
  306. vpsrlw ymmF, ymmF, BYTE_BIT ; ymmF=(21 23 25 27 29 2B 2D 2F 2H 2J 2L 2N 2P 2R 2T 2V)
  307. vpsrlw ymmH, ymmH, BYTE_BIT ; ymmH=(31 33 35 37 39 3B 3D 3F 3H 3J 3L 3N 3P 3R 3T 3V)
  308. %endif ; RGB_PIXELSIZE ; ---------------
  309. ; ymm0=R(02468ACEGIKMOQSU)=RE, ymm2=G(02468ACEGIKMOQSU)=GE, ymm4=B(02468ACEGIKMOQSU)=BE
  310. ; ymm1=R(13579BDFHJLNPRTV)=RO, ymm3=G(13579BDFHJLNPRTV)=GO, ymm5=B(13579BDFHJLNPRTV)=BO
  311. ; (Original)
  312. ; Y = 0.29900 * R + 0.58700 * G + 0.11400 * B
  313. ;
  314. ; (This implementation)
  315. ; Y = 0.29900 * R + 0.33700 * G + 0.11400 * B + 0.25000 * G
  316. vmovdqa ymm6, ymm1
  317. vpunpcklwd ymm1, ymm1, ymm3
  318. vpunpckhwd ymm6, ymm6, ymm3
  319. vpmaddwd ymm1, ymm1, [GOTOFF(eax,PW_F0299_F0337)] ; ymm1=ROL*FIX(0.299)+GOL*FIX(0.337)
  320. vpmaddwd ymm6, ymm6, [GOTOFF(eax,PW_F0299_F0337)] ; ymm6=ROH*FIX(0.299)+GOH*FIX(0.337)
  321. vmovdqa ymm7, ymm6 ; ymm7=ROH*FIX(0.299)+GOH*FIX(0.337)
  322. vmovdqa ymm6, ymm0
  323. vpunpcklwd ymm0, ymm0, ymm2
  324. vpunpckhwd ymm6, ymm6, ymm2
  325. vpmaddwd ymm0, ymm0, [GOTOFF(eax,PW_F0299_F0337)] ; ymm0=REL*FIX(0.299)+GEL*FIX(0.337)
  326. vpmaddwd ymm6, ymm6, [GOTOFF(eax,PW_F0299_F0337)] ; ymm6=REH*FIX(0.299)+GEH*FIX(0.337)
  327. vmovdqa YMMWORD [wk(0)], ymm0 ; wk(0)=REL*FIX(0.299)+GEL*FIX(0.337)
  328. vmovdqa YMMWORD [wk(1)], ymm6 ; wk(1)=REH*FIX(0.299)+GEH*FIX(0.337)
  329. vmovdqa ymm0, ymm5 ; ymm0=BO
  330. vmovdqa ymm6, ymm4 ; ymm6=BE
  331. vmovdqa ymm4, ymm0
  332. vpunpcklwd ymm0, ymm0, ymm3
  333. vpunpckhwd ymm4, ymm4, ymm3
  334. vpmaddwd ymm0, ymm0, [GOTOFF(eax,PW_F0114_F0250)] ; ymm0=BOL*FIX(0.114)+GOL*FIX(0.250)
  335. vpmaddwd ymm4, ymm4, [GOTOFF(eax,PW_F0114_F0250)] ; ymm4=BOH*FIX(0.114)+GOH*FIX(0.250)
  336. vmovdqa ymm3, [GOTOFF(eax,PD_ONEHALF)] ; ymm3=[PD_ONEHALF]
  337. vpaddd ymm0, ymm0, ymm1
  338. vpaddd ymm4, ymm4, ymm7
  339. vpaddd ymm0, ymm0, ymm3
  340. vpaddd ymm4, ymm4, ymm3
  341. vpsrld ymm0, ymm0, SCALEBITS ; ymm0=YOL
  342. vpsrld ymm4, ymm4, SCALEBITS ; ymm4=YOH
  343. vpackssdw ymm0, ymm0, ymm4 ; ymm0=YO
  344. vmovdqa ymm4, ymm6
  345. vpunpcklwd ymm6, ymm6, ymm2
  346. vpunpckhwd ymm4, ymm4, ymm2
  347. vpmaddwd ymm6, ymm6, [GOTOFF(eax,PW_F0114_F0250)] ; ymm6=BEL*FIX(0.114)+GEL*FIX(0.250)
  348. vpmaddwd ymm4, ymm4, [GOTOFF(eax,PW_F0114_F0250)] ; ymm4=BEH*FIX(0.114)+GEH*FIX(0.250)
  349. vmovdqa ymm2, [GOTOFF(eax,PD_ONEHALF)] ; ymm2=[PD_ONEHALF]
  350. vpaddd ymm6, ymm6, YMMWORD [wk(0)]
  351. vpaddd ymm4, ymm4, YMMWORD [wk(1)]
  352. vpaddd ymm6, ymm6, ymm2
  353. vpaddd ymm4, ymm4, ymm2
  354. vpsrld ymm6, ymm6, SCALEBITS ; ymm6=YEL
  355. vpsrld ymm4, ymm4, SCALEBITS ; ymm4=YEH
  356. vpackssdw ymm6, ymm6, ymm4 ; ymm6=YE
  357. vpsllw ymm0, ymm0, BYTE_BIT
  358. vpor ymm6, ymm6, ymm0 ; ymm6=Y
  359. vmovdqu YMMWORD [edi], ymm6 ; Save Y
  360. sub ecx, byte SIZEOF_YMMWORD
  361. add esi, RGB_PIXELSIZE*SIZEOF_YMMWORD ; inptr
  362. add edi, byte SIZEOF_YMMWORD ; outptr0
  363. cmp ecx, byte SIZEOF_YMMWORD
  364. jae near .columnloop
  365. test ecx, ecx
  366. jnz near .column_ld1
  367. pop ecx ; col
  368. pop esi
  369. pop edi
  370. poppic eax
  371. add esi, byte SIZEOF_JSAMPROW ; input_buf
  372. add edi, byte SIZEOF_JSAMPROW
  373. dec eax ; num_rows
  374. jg near .rowloop
  375. .return:
  376. vzeroupper
  377. pop edi
  378. pop esi
  379. ; pop edx ; need not be preserved
  380. ; pop ecx ; need not be preserved
  381. pop ebx
  382. mov esp, ebp ; esp <- aligned ebp
  383. pop esp ; esp <- original ebp
  384. pop ebp
  385. ret
  386. ; For some reason, the OS X linker does not honor the request to align the
  387. ; segment unless we do this.
  388. align 32