jdcolext-mmx.asm 15 KB

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  1. ;
  2. ; jdcolext.asm - colorspace conversion (MMX)
  3. ;
  4. ; Copyright 2009 Pierre Ossman <ossman@cendio.se> for Cendio AB
  5. ; Copyright (C) 2016, D. R. Commander.
  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_ycc_rgb_convert_mmx(JDIMENSION out_width, JSAMPIMAGE input_buf,
  23. ; JDIMENSION input_row, JSAMPARRAY output_buf,
  24. ; int num_rows)
  25. ;
  26. %define out_width(b) (b) + 8 ; JDIMENSION out_width
  27. %define input_buf(b) (b) + 12 ; JSAMPIMAGE input_buf
  28. %define input_row(b) (b) + 16 ; JDIMENSION input_row
  29. %define output_buf(b) (b) + 20 ; JSAMPARRAY output_buf
  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_MMWORD
  33. ; mmword wk[WK_NUM]
  34. %define WK_NUM 2
  35. %define gotptr wk(0) - SIZEOF_POINTER ; void * gotptr
  36. align 32
  37. GLOBAL_FUNCTION(jsimd_ycc_rgb_convert_mmx)
  38. EXTN(jsimd_ycc_rgb_convert_mmx):
  39. push ebp
  40. mov eax, esp ; eax = original ebp
  41. sub esp, byte 4
  42. and esp, byte (-SIZEOF_MMWORD) ; align to 64 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 [out_width(eax)] ; num_cols
  55. test ecx, ecx
  56. jz near .return
  57. push ecx
  58. mov edi, JSAMPIMAGE [input_buf(eax)]
  59. mov ecx, JDIMENSION [input_row(eax)]
  60. mov esi, JSAMPARRAY [edi+0*SIZEOF_JSAMPARRAY]
  61. mov ebx, JSAMPARRAY [edi+1*SIZEOF_JSAMPARRAY]
  62. mov edx, JSAMPARRAY [edi+2*SIZEOF_JSAMPARRAY]
  63. lea esi, [esi+ecx*SIZEOF_JSAMPROW]
  64. lea ebx, [ebx+ecx*SIZEOF_JSAMPROW]
  65. lea edx, [edx+ecx*SIZEOF_JSAMPROW]
  66. pop ecx
  67. mov edi, JSAMPARRAY [output_buf(eax)]
  68. mov eax, INT [num_rows(eax)]
  69. test eax, eax
  70. jle near .return
  71. alignx 16, 7
  72. .rowloop:
  73. push eax
  74. push edi
  75. push edx
  76. push ebx
  77. push esi
  78. push ecx ; col
  79. mov esi, JSAMPROW [esi] ; inptr0
  80. mov ebx, JSAMPROW [ebx] ; inptr1
  81. mov edx, JSAMPROW [edx] ; inptr2
  82. mov edi, JSAMPROW [edi] ; outptr
  83. movpic eax, POINTER [gotptr] ; load GOT address (eax)
  84. alignx 16, 7
  85. .columnloop:
  86. movq mm5, MMWORD [ebx] ; mm5=Cb(01234567)
  87. movq mm1, MMWORD [edx] ; mm1=Cr(01234567)
  88. pcmpeqw mm4, mm4
  89. pcmpeqw mm7, mm7
  90. psrlw mm4, BYTE_BIT
  91. psllw mm7, 7 ; mm7={0xFF80 0xFF80 0xFF80 0xFF80}
  92. movq mm0, mm4 ; mm0=mm4={0xFF 0x00 0xFF 0x00 ..}
  93. pand mm4, mm5 ; mm4=Cb(0246)=CbE
  94. psrlw mm5, BYTE_BIT ; mm5=Cb(1357)=CbO
  95. pand mm0, mm1 ; mm0=Cr(0246)=CrE
  96. psrlw mm1, BYTE_BIT ; mm1=Cr(1357)=CrO
  97. paddw mm4, mm7
  98. paddw mm5, mm7
  99. paddw mm0, mm7
  100. paddw mm1, mm7
  101. ; (Original)
  102. ; R = Y + 1.40200 * Cr
  103. ; G = Y - 0.34414 * Cb - 0.71414 * Cr
  104. ; B = Y + 1.77200 * Cb
  105. ;
  106. ; (This implementation)
  107. ; R = Y + 0.40200 * Cr + Cr
  108. ; G = Y - 0.34414 * Cb + 0.28586 * Cr - Cr
  109. ; B = Y - 0.22800 * Cb + Cb + Cb
  110. movq mm2, mm4 ; mm2=CbE
  111. movq mm3, mm5 ; mm3=CbO
  112. paddw mm4, mm4 ; mm4=2*CbE
  113. paddw mm5, mm5 ; mm5=2*CbO
  114. movq mm6, mm0 ; mm6=CrE
  115. movq mm7, mm1 ; mm7=CrO
  116. paddw mm0, mm0 ; mm0=2*CrE
  117. paddw mm1, mm1 ; mm1=2*CrO
  118. pmulhw mm4, [GOTOFF(eax,PW_MF0228)] ; mm4=(2*CbE * -FIX(0.22800))
  119. pmulhw mm5, [GOTOFF(eax,PW_MF0228)] ; mm5=(2*CbO * -FIX(0.22800))
  120. pmulhw mm0, [GOTOFF(eax,PW_F0402)] ; mm0=(2*CrE * FIX(0.40200))
  121. pmulhw mm1, [GOTOFF(eax,PW_F0402)] ; mm1=(2*CrO * FIX(0.40200))
  122. paddw mm4, [GOTOFF(eax,PW_ONE)]
  123. paddw mm5, [GOTOFF(eax,PW_ONE)]
  124. psraw mm4, 1 ; mm4=(CbE * -FIX(0.22800))
  125. psraw mm5, 1 ; mm5=(CbO * -FIX(0.22800))
  126. paddw mm0, [GOTOFF(eax,PW_ONE)]
  127. paddw mm1, [GOTOFF(eax,PW_ONE)]
  128. psraw mm0, 1 ; mm0=(CrE * FIX(0.40200))
  129. psraw mm1, 1 ; mm1=(CrO * FIX(0.40200))
  130. paddw mm4, mm2
  131. paddw mm5, mm3
  132. paddw mm4, mm2 ; mm4=(CbE * FIX(1.77200))=(B-Y)E
  133. paddw mm5, mm3 ; mm5=(CbO * FIX(1.77200))=(B-Y)O
  134. paddw mm0, mm6 ; mm0=(CrE * FIX(1.40200))=(R-Y)E
  135. paddw mm1, mm7 ; mm1=(CrO * FIX(1.40200))=(R-Y)O
  136. movq MMWORD [wk(0)], mm4 ; wk(0)=(B-Y)E
  137. movq MMWORD [wk(1)], mm5 ; wk(1)=(B-Y)O
  138. movq mm4, mm2
  139. movq mm5, mm3
  140. punpcklwd mm2, mm6
  141. punpckhwd mm4, mm6
  142. pmaddwd mm2, [GOTOFF(eax,PW_MF0344_F0285)]
  143. pmaddwd mm4, [GOTOFF(eax,PW_MF0344_F0285)]
  144. punpcklwd mm3, mm7
  145. punpckhwd mm5, mm7
  146. pmaddwd mm3, [GOTOFF(eax,PW_MF0344_F0285)]
  147. pmaddwd mm5, [GOTOFF(eax,PW_MF0344_F0285)]
  148. paddd mm2, [GOTOFF(eax,PD_ONEHALF)]
  149. paddd mm4, [GOTOFF(eax,PD_ONEHALF)]
  150. psrad mm2, SCALEBITS
  151. psrad mm4, SCALEBITS
  152. paddd mm3, [GOTOFF(eax,PD_ONEHALF)]
  153. paddd mm5, [GOTOFF(eax,PD_ONEHALF)]
  154. psrad mm3, SCALEBITS
  155. psrad mm5, SCALEBITS
  156. packssdw mm2, mm4 ; mm2=CbE*-FIX(0.344)+CrE*FIX(0.285)
  157. packssdw mm3, mm5 ; mm3=CbO*-FIX(0.344)+CrO*FIX(0.285)
  158. psubw mm2, mm6 ; mm2=CbE*-FIX(0.344)+CrE*-FIX(0.714)=(G-Y)E
  159. psubw mm3, mm7 ; mm3=CbO*-FIX(0.344)+CrO*-FIX(0.714)=(G-Y)O
  160. movq mm5, MMWORD [esi] ; mm5=Y(01234567)
  161. pcmpeqw mm4, mm4
  162. psrlw mm4, BYTE_BIT ; mm4={0xFF 0x00 0xFF 0x00 ..}
  163. pand mm4, mm5 ; mm4=Y(0246)=YE
  164. psrlw mm5, BYTE_BIT ; mm5=Y(1357)=YO
  165. paddw mm0, mm4 ; mm0=((R-Y)E+YE)=RE=(R0 R2 R4 R6)
  166. paddw mm1, mm5 ; mm1=((R-Y)O+YO)=RO=(R1 R3 R5 R7)
  167. packuswb mm0, mm0 ; mm0=(R0 R2 R4 R6 ** ** ** **)
  168. packuswb mm1, mm1 ; mm1=(R1 R3 R5 R7 ** ** ** **)
  169. paddw mm2, mm4 ; mm2=((G-Y)E+YE)=GE=(G0 G2 G4 G6)
  170. paddw mm3, mm5 ; mm3=((G-Y)O+YO)=GO=(G1 G3 G5 G7)
  171. packuswb mm2, mm2 ; mm2=(G0 G2 G4 G6 ** ** ** **)
  172. packuswb mm3, mm3 ; mm3=(G1 G3 G5 G7 ** ** ** **)
  173. paddw mm4, MMWORD [wk(0)] ; mm4=(YE+(B-Y)E)=BE=(B0 B2 B4 B6)
  174. paddw mm5, MMWORD [wk(1)] ; mm5=(YO+(B-Y)O)=BO=(B1 B3 B5 B7)
  175. packuswb mm4, mm4 ; mm4=(B0 B2 B4 B6 ** ** ** **)
  176. packuswb mm5, mm5 ; mm5=(B1 B3 B5 B7 ** ** ** **)
  177. %if RGB_PIXELSIZE == 3 ; ---------------
  178. ; mmA=(00 02 04 06 ** ** ** **), mmB=(01 03 05 07 ** ** ** **)
  179. ; mmC=(10 12 14 16 ** ** ** **), mmD=(11 13 15 17 ** ** ** **)
  180. ; mmE=(20 22 24 26 ** ** ** **), mmF=(21 23 25 27 ** ** ** **)
  181. ; mmG=(** ** ** ** ** ** ** **), mmH=(** ** ** ** ** ** ** **)
  182. punpcklbw mmA, mmC ; mmA=(00 10 02 12 04 14 06 16)
  183. punpcklbw mmE, mmB ; mmE=(20 01 22 03 24 05 26 07)
  184. punpcklbw mmD, mmF ; mmD=(11 21 13 23 15 25 17 27)
  185. movq mmG, mmA
  186. movq mmH, mmA
  187. punpcklwd mmA, mmE ; mmA=(00 10 20 01 02 12 22 03)
  188. punpckhwd mmG, mmE ; mmG=(04 14 24 05 06 16 26 07)
  189. psrlq mmH, 2*BYTE_BIT ; mmH=(02 12 04 14 06 16 -- --)
  190. psrlq mmE, 2*BYTE_BIT ; mmE=(22 03 24 05 26 07 -- --)
  191. movq mmC, mmD
  192. movq mmB, mmD
  193. punpcklwd mmD, mmH ; mmD=(11 21 02 12 13 23 04 14)
  194. punpckhwd mmC, mmH ; mmC=(15 25 06 16 17 27 -- --)
  195. psrlq mmB, 2*BYTE_BIT ; mmB=(13 23 15 25 17 27 -- --)
  196. movq mmF, mmE
  197. punpcklwd mmE, mmB ; mmE=(22 03 13 23 24 05 15 25)
  198. punpckhwd mmF, mmB ; mmF=(26 07 17 27 -- -- -- --)
  199. punpckldq mmA, mmD ; mmA=(00 10 20 01 11 21 02 12)
  200. punpckldq mmE, mmG ; mmE=(22 03 13 23 04 14 24 05)
  201. punpckldq mmC, mmF ; mmC=(15 25 06 16 26 07 17 27)
  202. cmp ecx, byte SIZEOF_MMWORD
  203. jb short .column_st16
  204. movq MMWORD [edi+0*SIZEOF_MMWORD], mmA
  205. movq MMWORD [edi+1*SIZEOF_MMWORD], mmE
  206. movq MMWORD [edi+2*SIZEOF_MMWORD], mmC
  207. sub ecx, byte SIZEOF_MMWORD
  208. jz short .nextrow
  209. add esi, byte SIZEOF_MMWORD ; inptr0
  210. add ebx, byte SIZEOF_MMWORD ; inptr1
  211. add edx, byte SIZEOF_MMWORD ; inptr2
  212. add edi, byte RGB_PIXELSIZE*SIZEOF_MMWORD ; outptr
  213. jmp near .columnloop
  214. alignx 16, 7
  215. .column_st16:
  216. lea ecx, [ecx+ecx*2] ; imul ecx, RGB_PIXELSIZE
  217. cmp ecx, byte 2*SIZEOF_MMWORD
  218. jb short .column_st8
  219. movq MMWORD [edi+0*SIZEOF_MMWORD], mmA
  220. movq MMWORD [edi+1*SIZEOF_MMWORD], mmE
  221. movq mmA, mmC
  222. sub ecx, byte 2*SIZEOF_MMWORD
  223. add edi, byte 2*SIZEOF_MMWORD
  224. jmp short .column_st4
  225. .column_st8:
  226. cmp ecx, byte SIZEOF_MMWORD
  227. jb short .column_st4
  228. movq MMWORD [edi+0*SIZEOF_MMWORD], mmA
  229. movq mmA, mmE
  230. sub ecx, byte SIZEOF_MMWORD
  231. add edi, byte SIZEOF_MMWORD
  232. .column_st4:
  233. movd eax, mmA
  234. cmp ecx, byte SIZEOF_DWORD
  235. jb short .column_st2
  236. mov dword [edi+0*SIZEOF_DWORD], eax
  237. psrlq mmA, DWORD_BIT
  238. movd eax, mmA
  239. sub ecx, byte SIZEOF_DWORD
  240. add edi, byte SIZEOF_DWORD
  241. .column_st2:
  242. cmp ecx, byte SIZEOF_WORD
  243. jb short .column_st1
  244. mov word [edi+0*SIZEOF_WORD], ax
  245. shr eax, WORD_BIT
  246. sub ecx, byte SIZEOF_WORD
  247. add edi, byte SIZEOF_WORD
  248. .column_st1:
  249. cmp ecx, byte SIZEOF_BYTE
  250. jb short .nextrow
  251. mov byte [edi+0*SIZEOF_BYTE], al
  252. %else ; RGB_PIXELSIZE == 4 ; -----------
  253. %ifdef RGBX_FILLER_0XFF
  254. pcmpeqb mm6, mm6 ; mm6=(X0 X2 X4 X6 ** ** ** **)
  255. pcmpeqb mm7, mm7 ; mm7=(X1 X3 X5 X7 ** ** ** **)
  256. %else
  257. pxor mm6, mm6 ; mm6=(X0 X2 X4 X6 ** ** ** **)
  258. pxor mm7, mm7 ; mm7=(X1 X3 X5 X7 ** ** ** **)
  259. %endif
  260. ; mmA=(00 02 04 06 ** ** ** **), mmB=(01 03 05 07 ** ** ** **)
  261. ; mmC=(10 12 14 16 ** ** ** **), mmD=(11 13 15 17 ** ** ** **)
  262. ; mmE=(20 22 24 26 ** ** ** **), mmF=(21 23 25 27 ** ** ** **)
  263. ; mmG=(30 32 34 36 ** ** ** **), mmH=(31 33 35 37 ** ** ** **)
  264. punpcklbw mmA, mmC ; mmA=(00 10 02 12 04 14 06 16)
  265. punpcklbw mmE, mmG ; mmE=(20 30 22 32 24 34 26 36)
  266. punpcklbw mmB, mmD ; mmB=(01 11 03 13 05 15 07 17)
  267. punpcklbw mmF, mmH ; mmF=(21 31 23 33 25 35 27 37)
  268. movq mmC, mmA
  269. punpcklwd mmA, mmE ; mmA=(00 10 20 30 02 12 22 32)
  270. punpckhwd mmC, mmE ; mmC=(04 14 24 34 06 16 26 36)
  271. movq mmG, mmB
  272. punpcklwd mmB, mmF ; mmB=(01 11 21 31 03 13 23 33)
  273. punpckhwd mmG, mmF ; mmG=(05 15 25 35 07 17 27 37)
  274. movq mmD, mmA
  275. punpckldq mmA, mmB ; mmA=(00 10 20 30 01 11 21 31)
  276. punpckhdq mmD, mmB ; mmD=(02 12 22 32 03 13 23 33)
  277. movq mmH, mmC
  278. punpckldq mmC, mmG ; mmC=(04 14 24 34 05 15 25 35)
  279. punpckhdq mmH, mmG ; mmH=(06 16 26 36 07 17 27 37)
  280. cmp ecx, byte SIZEOF_MMWORD
  281. jb short .column_st16
  282. movq MMWORD [edi+0*SIZEOF_MMWORD], mmA
  283. movq MMWORD [edi+1*SIZEOF_MMWORD], mmD
  284. movq MMWORD [edi+2*SIZEOF_MMWORD], mmC
  285. movq MMWORD [edi+3*SIZEOF_MMWORD], mmH
  286. sub ecx, byte SIZEOF_MMWORD
  287. jz short .nextrow
  288. add esi, byte SIZEOF_MMWORD ; inptr0
  289. add ebx, byte SIZEOF_MMWORD ; inptr1
  290. add edx, byte SIZEOF_MMWORD ; inptr2
  291. add edi, byte RGB_PIXELSIZE*SIZEOF_MMWORD ; outptr
  292. jmp near .columnloop
  293. alignx 16, 7
  294. .column_st16:
  295. cmp ecx, byte SIZEOF_MMWORD/2
  296. jb short .column_st8
  297. movq MMWORD [edi+0*SIZEOF_MMWORD], mmA
  298. movq MMWORD [edi+1*SIZEOF_MMWORD], mmD
  299. movq mmA, mmC
  300. movq mmD, mmH
  301. sub ecx, byte SIZEOF_MMWORD/2
  302. add edi, byte 2*SIZEOF_MMWORD
  303. .column_st8:
  304. cmp ecx, byte SIZEOF_MMWORD/4
  305. jb short .column_st4
  306. movq MMWORD [edi+0*SIZEOF_MMWORD], mmA
  307. movq mmA, mmD
  308. sub ecx, byte SIZEOF_MMWORD/4
  309. add edi, byte 1*SIZEOF_MMWORD
  310. .column_st4:
  311. cmp ecx, byte SIZEOF_MMWORD/8
  312. jb short .nextrow
  313. movd dword [edi+0*SIZEOF_DWORD], mmA
  314. %endif ; RGB_PIXELSIZE ; ---------------
  315. alignx 16, 7
  316. .nextrow:
  317. pop ecx
  318. pop esi
  319. pop ebx
  320. pop edx
  321. pop edi
  322. pop eax
  323. add esi, byte SIZEOF_JSAMPROW
  324. add ebx, byte SIZEOF_JSAMPROW
  325. add edx, byte SIZEOF_JSAMPROW
  326. add edi, byte SIZEOF_JSAMPROW ; output_buf
  327. dec eax ; num_rows
  328. jg near .rowloop
  329. emms ; empty MMX state
  330. .return:
  331. pop edi
  332. pop esi
  333. ; pop edx ; need not be preserved
  334. ; pop ecx ; need not be preserved
  335. pop ebx
  336. mov esp, ebp ; esp <- aligned ebp
  337. pop esp ; esp <- original ebp
  338. pop ebp
  339. ret
  340. ; For some reason, the OS X linker does not honor the request to align the
  341. ; segment unless we do this.
  342. align 32