jdsample-avx2.asm 30 KB

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  1. ;
  2. ; Upsampling (AVX2)
  3. ;
  4. ; Copyright 2009 Pierre Ossman <ossman@cendio.se> for Cendio AB
  5. ; Copyright (C) 2015, Intel Corporation.
  6. ; Copyright (C) 2016, 2024, D. R. Commander.
  7. ;
  8. ; Based on the x86 SIMD extension for IJG JPEG library
  9. ; Copyright (C) 1999-2006, MIYASAKA Masaru.
  10. ; For conditions of distribution and use, see copyright notice in jsimdext.inc
  11. ;
  12. ; This file should be assembled with NASM (Netwide Assembler) or Yasm.
  13. %include "jsimdext.inc"
  14. ; --------------------------------------------------------------------------
  15. SECTION SEG_CONST
  16. ALIGNZ 32
  17. GLOBAL_DATA(jconst_fancy_upsample_avx2)
  18. EXTN(jconst_fancy_upsample_avx2):
  19. PW_ONE times 16 dw 1
  20. PW_TWO times 16 dw 2
  21. PW_THREE times 16 dw 3
  22. PW_SEVEN times 16 dw 7
  23. PW_EIGHT times 16 dw 8
  24. ALIGNZ 32
  25. ; --------------------------------------------------------------------------
  26. SECTION SEG_TEXT
  27. BITS 32
  28. ;
  29. ; Fancy processing for the common case of 2:1 horizontal and 1:1 vertical.
  30. ;
  31. ; The upsampling algorithm is linear interpolation between pixel centers,
  32. ; also known as a "triangle filter". This is a good compromise between
  33. ; speed and visual quality. The centers of the output pixels are 1/4 and 3/4
  34. ; of the way between input pixel centers.
  35. ;
  36. ; GLOBAL(void)
  37. ; jsimd_h2v1_fancy_upsample_avx2(int max_v_samp_factor,
  38. ; JDIMENSION downsampled_width,
  39. ; JSAMPARRAY input_data,
  40. ; JSAMPARRAY *output_data_ptr);
  41. ;
  42. %define max_v_samp(b) (b) + 8 ; int max_v_samp_factor
  43. %define downsamp_width(b) (b) + 12 ; JDIMENSION downsampled_width
  44. %define input_data(b) (b) + 16 ; JSAMPARRAY input_data
  45. %define output_data_ptr(b) (b) + 20 ; JSAMPARRAY *output_data_ptr
  46. align 32
  47. GLOBAL_FUNCTION(jsimd_h2v1_fancy_upsample_avx2)
  48. EXTN(jsimd_h2v1_fancy_upsample_avx2):
  49. push ebp
  50. mov ebp, esp
  51. PUSHPIC ebx
  52. ; push ecx ; need not be preserved
  53. ; push edx ; need not be preserved
  54. push esi
  55. push edi
  56. GET_GOT ebx ; get GOT address
  57. mov eax, JDIMENSION [downsamp_width(ebp)] ; colctr
  58. test eax, eax
  59. jz near .return
  60. mov ecx, INT [max_v_samp(ebp)] ; rowctr
  61. test ecx, ecx
  62. jz near .return
  63. mov esi, JSAMPARRAY [input_data(ebp)] ; input_data
  64. mov edi, POINTER [output_data_ptr(ebp)]
  65. mov edi, JSAMPARRAY [edi] ; output_data
  66. ALIGNX 16, 7
  67. .rowloop:
  68. push eax ; colctr
  69. push edi
  70. push esi
  71. mov esi, JSAMPROW [esi] ; inptr
  72. mov edi, JSAMPROW [edi] ; outptr
  73. test eax, SIZEOF_YMMWORD-1
  74. jz short .skip
  75. mov dl, JSAMPLE [esi+(eax-1)*SIZEOF_JSAMPLE]
  76. mov JSAMPLE [esi+eax*SIZEOF_JSAMPLE], dl ; insert a dummy sample
  77. .skip:
  78. vpxor ymm0, ymm0, ymm0 ; ymm0=(all 0's)
  79. vpcmpeqb xmm7, xmm7, xmm7
  80. vpsrldq xmm7, xmm7, (SIZEOF_XMMWORD-1) ; (ff -- -- -- ... -- --) LSB is ff
  81. vpand ymm7, ymm7, YMMWORD [esi+0*SIZEOF_YMMWORD]
  82. add eax, byte SIZEOF_YMMWORD-1
  83. and eax, byte -SIZEOF_YMMWORD
  84. cmp eax, byte SIZEOF_YMMWORD
  85. ja short .columnloop
  86. ALIGNX 16, 7
  87. .columnloop_last:
  88. vpcmpeqb xmm6, xmm6, xmm6
  89. vpslldq xmm6, xmm6, (SIZEOF_XMMWORD-1)
  90. vperm2i128 ymm6, ymm6, ymm6, 1 ; (---- ---- ... ---- ---- ff) MSB is ff
  91. vpand ymm6, ymm6, YMMWORD [esi+0*SIZEOF_YMMWORD]
  92. jmp short .upsample
  93. ALIGNX 16, 7
  94. .columnloop:
  95. vmovdqu ymm6, YMMWORD [esi+1*SIZEOF_YMMWORD]
  96. vperm2i128 ymm6, ymm0, ymm6, 0x20
  97. vpslldq ymm6, ymm6, 15
  98. .upsample:
  99. vmovdqu ymm1, YMMWORD [esi+0*SIZEOF_YMMWORD] ; ymm1=( 0 1 2 ... 29 30 31)
  100. vperm2i128 ymm2, ymm0, ymm1, 0x20
  101. vpalignr ymm2, ymm1, ymm2, 15 ; ymm2=(-- 0 1 ... 28 29 30)
  102. vperm2i128 ymm4, ymm0, ymm1, 0x03
  103. vpalignr ymm3, ymm4, ymm1, 1 ; ymm3=( 1 2 3 ... 30 31 --)
  104. vpor ymm2, ymm2, ymm7 ; ymm2=(-1 0 1 ... 28 29 30)
  105. vpor ymm3, ymm3, ymm6 ; ymm3=( 1 2 3 ... 30 31 32)
  106. vpsrldq ymm7, ymm4, (SIZEOF_XMMWORD-1) ; ymm7=(31 -- -- ... -- -- --)
  107. vpunpckhbw ymm4, ymm1, ymm0 ; ymm4=( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  108. vpunpcklbw ymm5, ymm1, ymm0 ; ymm5=( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  109. vperm2i128 ymm1, ymm5, ymm4, 0x20 ; ymm1=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  110. vperm2i128 ymm4, ymm5, ymm4, 0x31 ; ymm4=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  111. vpunpckhbw ymm5, ymm2, ymm0 ; ymm5=( 7 8 9 10 11 12 13 14 23 24 25 26 27 28 29 30)
  112. vpunpcklbw ymm6, ymm2, ymm0 ; ymm6=(-1 0 1 2 3 4 5 6 15 16 17 18 19 20 21 22)
  113. vperm2i128 ymm2, ymm6, ymm5, 0x20 ; ymm2=(-1 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14)
  114. vperm2i128 ymm5, ymm6, ymm5, 0x31 ; ymm5=(15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30)
  115. vpunpckhbw ymm6, ymm3, ymm0 ; ymm6=( 1 2 3 4 5 6 7 8 17 18 19 20 21 22 23 24)
  116. vpunpcklbw ymm0, ymm3, ymm0 ; ymm0=( 9 10 11 12 13 14 15 16 25 26 27 28 29 30 31 32)
  117. vperm2i128 ymm3, ymm0, ymm6, 0x20 ; ymm3=( 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16)
  118. vperm2i128 ymm6, ymm0, ymm6, 0x31 ; ymm6=(17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32)
  119. vpxor ymm0, ymm0, ymm0 ; ymm0=(all 0's)
  120. vpmullw ymm1, ymm1, [GOTOFF(ebx,PW_THREE)]
  121. vpmullw ymm4, ymm4, [GOTOFF(ebx,PW_THREE)]
  122. vpaddw ymm2, ymm2, [GOTOFF(ebx,PW_ONE)]
  123. vpaddw ymm5, ymm5, [GOTOFF(ebx,PW_ONE)]
  124. vpaddw ymm3, ymm3, [GOTOFF(ebx,PW_TWO)]
  125. vpaddw ymm6, ymm6, [GOTOFF(ebx,PW_TWO)]
  126. vpaddw ymm2, ymm2, ymm1
  127. vpaddw ymm5, ymm5, ymm4
  128. vpsrlw ymm2, ymm2, 2 ; ymm2=OutLE=( 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30)
  129. vpsrlw ymm5, ymm5, 2 ; ymm5=OutHE=(32 34 36 38 40 42 44 46 48 50 52 54 56 58 60 62)
  130. vpaddw ymm3, ymm3, ymm1
  131. vpaddw ymm6, ymm6, ymm4
  132. vpsrlw ymm3, ymm3, 2 ; ymm3=OutLO=( 1 3 5 7 9 11 13 15 17 19 21 23 25 27 29 31)
  133. vpsrlw ymm6, ymm6, 2 ; ymm6=OutHO=(33 35 37 39 41 43 45 47 49 51 53 55 57 59 61 63)
  134. vpsllw ymm3, ymm3, BYTE_BIT
  135. vpsllw ymm6, ymm6, BYTE_BIT
  136. vpor ymm2, ymm2, ymm3 ; ymm2=OutL=( 0 1 2 ... 29 30 31)
  137. vpor ymm5, ymm5, ymm6 ; ymm5=OutH=(32 33 34 ... 61 62 63)
  138. vmovdqu YMMWORD [edi+0*SIZEOF_YMMWORD], ymm2
  139. vmovdqu YMMWORD [edi+1*SIZEOF_YMMWORD], ymm5
  140. sub eax, byte SIZEOF_YMMWORD
  141. add esi, byte 1*SIZEOF_YMMWORD ; inptr
  142. add edi, byte 2*SIZEOF_YMMWORD ; outptr
  143. cmp eax, byte SIZEOF_YMMWORD
  144. ja near .columnloop
  145. test eax, eax
  146. jnz near .columnloop_last
  147. pop esi
  148. pop edi
  149. pop eax
  150. add esi, byte SIZEOF_JSAMPROW ; input_data
  151. add edi, byte SIZEOF_JSAMPROW ; output_data
  152. dec ecx ; rowctr
  153. jg near .rowloop
  154. .return:
  155. vzeroupper
  156. pop edi
  157. pop esi
  158. ; pop edx ; need not be preserved
  159. ; pop ecx ; need not be preserved
  160. POPPIC ebx
  161. pop ebp
  162. ret
  163. ; --------------------------------------------------------------------------
  164. ;
  165. ; Fancy processing for the common case of 2:1 horizontal and 2:1 vertical.
  166. ; Again a triangle filter; see comments for h2v1 case, above.
  167. ;
  168. ; GLOBAL(void)
  169. ; jsimd_h2v2_fancy_upsample_avx2(int max_v_samp_factor,
  170. ; JDIMENSION downsampled_width,
  171. ; JSAMPARRAY input_data,
  172. ; JSAMPARRAY *output_data_ptr);
  173. ;
  174. %define max_v_samp(b) (b) + 8 ; int max_v_samp_factor
  175. %define downsamp_width(b) (b) + 12 ; JDIMENSION downsampled_width
  176. %define input_data(b) (b) + 16 ; JSAMPARRAY input_data
  177. %define output_data_ptr(b) (b) + 20 ; JSAMPARRAY *output_data_ptr
  178. %define original_ebp ebp + 0
  179. %define wk(i) ebp - (WK_NUM - (i)) * SIZEOF_YMMWORD
  180. ; ymmword wk[WK_NUM]
  181. %define WK_NUM 4
  182. %define gotptr wk(0) - SIZEOF_POINTER ; void *gotptr
  183. align 32
  184. GLOBAL_FUNCTION(jsimd_h2v2_fancy_upsample_avx2)
  185. EXTN(jsimd_h2v2_fancy_upsample_avx2):
  186. push ebp
  187. mov eax, esp ; eax = original ebp
  188. sub esp, byte 4
  189. and esp, byte (-SIZEOF_YMMWORD) ; align to 256 bits
  190. mov [esp], eax
  191. mov ebp, esp ; ebp = aligned ebp
  192. lea esp, [wk(0)]
  193. PUSHPIC eax ; make a room for GOT address
  194. push ebx
  195. ; push ecx ; need not be preserved
  196. ; push edx ; need not be preserved
  197. push esi
  198. push edi
  199. GET_GOT ebx ; get GOT address
  200. MOVPIC POINTER [gotptr], ebx ; save GOT address
  201. mov edx, eax ; edx = original ebp
  202. mov eax, JDIMENSION [downsamp_width(edx)] ; colctr
  203. test eax, eax
  204. jz near .return
  205. mov ecx, INT [max_v_samp(edx)] ; rowctr
  206. test ecx, ecx
  207. jz near .return
  208. mov esi, JSAMPARRAY [input_data(edx)] ; input_data
  209. mov edi, POINTER [output_data_ptr(edx)]
  210. mov edi, JSAMPARRAY [edi] ; output_data
  211. ALIGNX 16, 7
  212. .rowloop:
  213. push eax ; colctr
  214. push ecx
  215. push edi
  216. push esi
  217. mov ecx, JSAMPROW [esi-1*SIZEOF_JSAMPROW] ; inptr1(above)
  218. mov ebx, JSAMPROW [esi+0*SIZEOF_JSAMPROW] ; inptr0
  219. mov esi, JSAMPROW [esi+1*SIZEOF_JSAMPROW] ; inptr1(below)
  220. mov edx, JSAMPROW [edi+0*SIZEOF_JSAMPROW] ; outptr0
  221. mov edi, JSAMPROW [edi+1*SIZEOF_JSAMPROW] ; outptr1
  222. test eax, SIZEOF_YMMWORD-1
  223. jz short .skip
  224. push edx
  225. mov dl, JSAMPLE [ecx+(eax-1)*SIZEOF_JSAMPLE]
  226. mov JSAMPLE [ecx+eax*SIZEOF_JSAMPLE], dl
  227. mov dl, JSAMPLE [ebx+(eax-1)*SIZEOF_JSAMPLE]
  228. mov JSAMPLE [ebx+eax*SIZEOF_JSAMPLE], dl
  229. mov dl, JSAMPLE [esi+(eax-1)*SIZEOF_JSAMPLE]
  230. mov JSAMPLE [esi+eax*SIZEOF_JSAMPLE], dl ; insert a dummy sample
  231. pop edx
  232. .skip:
  233. ; -- process the first column block
  234. vmovdqu ymm0, YMMWORD [ebx+0*SIZEOF_YMMWORD] ; ymm0=row[ 0][0]
  235. vmovdqu ymm1, YMMWORD [ecx+0*SIZEOF_YMMWORD] ; ymm1=row[-1][0]
  236. vmovdqu ymm2, YMMWORD [esi+0*SIZEOF_YMMWORD] ; ymm2=row[+1][0]
  237. PUSHPIC ebx
  238. MOVPIC ebx, POINTER [gotptr] ; load GOT address
  239. vpxor ymm3, ymm3, ymm3 ; ymm3=(all 0's)
  240. vpunpckhbw ymm4, ymm0, ymm3 ; ymm4=row[ 0]( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  241. vpunpcklbw ymm5, ymm0, ymm3 ; ymm5=row[ 0]( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  242. vperm2i128 ymm0, ymm5, ymm4, 0x20 ; ymm0=row[ 0]( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  243. vperm2i128 ymm4, ymm5, ymm4, 0x31 ; ymm4=row[ 0](16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  244. vpunpckhbw ymm5, ymm1, ymm3 ; ymm5=row[-1]( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  245. vpunpcklbw ymm6, ymm1, ymm3 ; ymm6=row[-1]( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  246. vperm2i128 ymm1, ymm6, ymm5, 0x20 ; ymm1=row[-1]( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  247. vperm2i128 ymm5, ymm6, ymm5, 0x31 ; ymm5=row[-1](16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  248. vpunpckhbw ymm6, ymm2, ymm3 ; ymm6=row[+1]( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  249. vpunpcklbw ymm3, ymm2, ymm3 ; ymm3=row[+1]( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  250. vperm2i128 ymm2, ymm3, ymm6, 0x20 ; ymm2=row[+1]( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  251. vperm2i128 ymm6, ymm3, ymm6, 0x31 ; ymm6=row[+1](16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  252. vpmullw ymm0, ymm0, [GOTOFF(ebx,PW_THREE)]
  253. vpmullw ymm4, ymm4, [GOTOFF(ebx,PW_THREE)]
  254. vpcmpeqb xmm7, xmm7, xmm7
  255. vpsrldq xmm7, xmm7, (SIZEOF_XMMWORD-2) ; (ffff ---- ---- ... ---- ----) LSB is ffff
  256. vpaddw ymm1, ymm1, ymm0 ; ymm1=Int0L=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  257. vpaddw ymm5, ymm5, ymm4 ; ymm5=Int0H=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  258. vpaddw ymm2, ymm2, ymm0 ; ymm2=Int1L=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  259. vpaddw ymm6, ymm6, ymm4 ; ymm6=Int1H=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  260. vmovdqu YMMWORD [edx+0*SIZEOF_YMMWORD], ymm1 ; temporarily save
  261. vmovdqu YMMWORD [edx+1*SIZEOF_YMMWORD], ymm5 ; the intermediate data
  262. vmovdqu YMMWORD [edi+0*SIZEOF_YMMWORD], ymm2
  263. vmovdqu YMMWORD [edi+1*SIZEOF_YMMWORD], ymm6
  264. vpand ymm1, ymm1, ymm7 ; ymm1=( 0 -- -- -- -- -- -- -- -- -- -- -- -- -- -- --)
  265. vpand ymm2, ymm2, ymm7 ; ymm2=( 0 -- -- -- -- -- -- -- -- -- -- -- -- -- -- --)
  266. vmovdqa YMMWORD [wk(0)], ymm1
  267. vmovdqa YMMWORD [wk(1)], ymm2
  268. POPPIC ebx
  269. add eax, byte SIZEOF_YMMWORD-1
  270. and eax, byte -SIZEOF_YMMWORD
  271. cmp eax, byte SIZEOF_YMMWORD
  272. ja short .columnloop
  273. ALIGNX 16, 7
  274. .columnloop_last:
  275. ; -- process the last column block
  276. PUSHPIC ebx
  277. MOVPIC ebx, POINTER [gotptr] ; load GOT address
  278. vpcmpeqb xmm1, xmm1, xmm1
  279. vpslldq xmm1, xmm1, (SIZEOF_XMMWORD-2)
  280. vperm2i128 ymm1, ymm1, ymm1, 1 ; (---- ---- ... ---- ---- ffff) MSB is ffff
  281. vpand ymm2, ymm1, YMMWORD [edi+1*SIZEOF_YMMWORD]
  282. vpand ymm1, ymm1, YMMWORD [edx+1*SIZEOF_YMMWORD]
  283. vmovdqa YMMWORD [wk(2)], ymm1 ; ymm1=(-- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 31)
  284. vmovdqa YMMWORD [wk(3)], ymm2 ; ymm2=(-- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 31)
  285. jmp near .upsample
  286. ALIGNX 16, 7
  287. .columnloop:
  288. ; -- process the next column block
  289. vmovdqu ymm0, YMMWORD [ebx+1*SIZEOF_YMMWORD] ; ymm0=row[ 0][1]
  290. vmovdqu ymm1, YMMWORD [ecx+1*SIZEOF_YMMWORD] ; ymm1=row[-1][1]
  291. vmovdqu ymm2, YMMWORD [esi+1*SIZEOF_YMMWORD] ; ymm2=row[+1][1]
  292. PUSHPIC ebx
  293. MOVPIC ebx, POINTER [gotptr] ; load GOT address
  294. vpxor ymm3, ymm3, ymm3 ; ymm3=(all 0's)
  295. vpunpckhbw ymm4, ymm0, ymm3 ; ymm4=row[ 0]( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  296. vpunpcklbw ymm5, ymm0, ymm3 ; ymm5=row[ 0]( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  297. vperm2i128 ymm0, ymm5, ymm4, 0x20 ; ymm0=row[ 0]( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  298. vperm2i128 ymm4, ymm5, ymm4, 0x31 ; ymm4=row[ 0](16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  299. vpunpckhbw ymm5, ymm1, ymm3 ; ymm5=row[-1]( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  300. vpunpcklbw ymm6, ymm1, ymm3 ; ymm6=row[-1]( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  301. vperm2i128 ymm1, ymm6, ymm5, 0x20 ; ymm1=row[-1]( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  302. vperm2i128 ymm5, ymm6, ymm5, 0x31 ; ymm5=row[-1](16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  303. vpunpckhbw ymm6, ymm2, ymm3 ; ymm6=row[+1]( 8 9 10 11 12 13 14 15 24 25 26 27 28 29 30 31)
  304. vpunpcklbw ymm7, ymm2, ymm3 ; ymm7=row[+1]( 0 1 2 3 4 5 6 7 16 17 18 19 20 21 22 23)
  305. vperm2i128 ymm2, ymm7, ymm6, 0x20 ; ymm2=row[+1]( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  306. vperm2i128 ymm6, ymm7, ymm6, 0x31 ; ymm6=row[+1](16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  307. vpmullw ymm0, ymm0, [GOTOFF(ebx,PW_THREE)]
  308. vpmullw ymm4, ymm4, [GOTOFF(ebx,PW_THREE)]
  309. vpaddw ymm1, ymm1, ymm0 ; ymm1=Int0L=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  310. vpaddw ymm5, ymm5, ymm4 ; ymm5=Int0H=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  311. vpaddw ymm2, ymm2, ymm0 ; ymm2=Int1L=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  312. vpaddw ymm6, ymm6, ymm4 ; ymm6=Int1H=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  313. vmovdqu YMMWORD [edx+2*SIZEOF_YMMWORD], ymm1 ; temporarily save
  314. vmovdqu YMMWORD [edx+3*SIZEOF_YMMWORD], ymm5 ; the intermediate data
  315. vmovdqu YMMWORD [edi+2*SIZEOF_YMMWORD], ymm2
  316. vmovdqu YMMWORD [edi+3*SIZEOF_YMMWORD], ymm6
  317. vperm2i128 ymm1, ymm3, ymm1, 0x20
  318. vpslldq ymm1, ymm1, 14 ; ymm1=(-- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 0)
  319. vperm2i128 ymm2, ymm3, ymm2, 0x20
  320. vpslldq ymm2, ymm2, 14 ; ymm2=(-- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 0)
  321. vmovdqa YMMWORD [wk(2)], ymm1
  322. vmovdqa YMMWORD [wk(3)], ymm2
  323. .upsample:
  324. ; -- process the upper row
  325. vmovdqu ymm7, YMMWORD [edx+0*SIZEOF_YMMWORD] ; ymm7=Int0L=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  326. vmovdqu ymm3, YMMWORD [edx+1*SIZEOF_YMMWORD] ; ymm3=Int0H=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  327. vpxor ymm1, ymm1, ymm1 ; ymm1=(all 0's)
  328. vperm2i128 ymm0, ymm1, ymm7, 0x03
  329. vpalignr ymm0, ymm0, ymm7, 2 ; ymm0=( 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 --)
  330. vperm2i128 ymm4, ymm1, ymm3, 0x20
  331. vpslldq ymm4, ymm4, 14 ; ymm4=(-- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 16)
  332. vperm2i128 ymm5, ymm1, ymm7, 0x03
  333. vpsrldq ymm5, ymm5, 14 ; ymm5=(15 -- -- -- -- -- -- -- -- -- -- -- -- -- -- --)
  334. vperm2i128 ymm6, ymm1, ymm3, 0x20
  335. vpalignr ymm6, ymm3, ymm6, 14 ; ymm6=(-- 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30)
  336. vpor ymm0, ymm0, ymm4 ; ymm0=( 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16)
  337. vpor ymm5, ymm5, ymm6 ; ymm5=(15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30)
  338. vperm2i128 ymm2, ymm1, ymm3, 0x03
  339. vpalignr ymm2, ymm2, ymm3, 2 ; ymm2=(17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 --)
  340. vperm2i128 ymm4, ymm1, ymm3, 0x03
  341. vpsrldq ymm4, ymm4, 14 ; ymm4=(31 -- -- -- -- -- -- -- -- -- -- -- -- -- -- --)
  342. vperm2i128 ymm1, ymm1, ymm7, 0x20
  343. vpalignr ymm1, ymm7, ymm1, 14 ; ymm1=(-- 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14)
  344. vpor ymm1, ymm1, YMMWORD [wk(0)] ; ymm1=(-1 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14)
  345. vpor ymm2, ymm2, YMMWORD [wk(2)] ; ymm2=(17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32)
  346. vmovdqa YMMWORD [wk(0)], ymm4
  347. vpmullw ymm7, ymm7, [GOTOFF(ebx,PW_THREE)]
  348. vpmullw ymm3, ymm3, [GOTOFF(ebx,PW_THREE)]
  349. vpaddw ymm1, ymm1, [GOTOFF(ebx,PW_EIGHT)]
  350. vpaddw ymm5, ymm5, [GOTOFF(ebx,PW_EIGHT)]
  351. vpaddw ymm0, ymm0, [GOTOFF(ebx,PW_SEVEN)]
  352. vpaddw ymm2, [GOTOFF(ebx,PW_SEVEN)]
  353. vpaddw ymm1, ymm1, ymm7
  354. vpaddw ymm5, ymm5, ymm3
  355. vpsrlw ymm1, ymm1, 4 ; ymm1=Out0LE=( 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30)
  356. vpsrlw ymm5, ymm5, 4 ; ymm5=Out0HE=(32 34 36 38 40 42 44 46 48 50 52 54 56 58 60 62)
  357. vpaddw ymm0, ymm0, ymm7
  358. vpaddw ymm2, ymm2, ymm3
  359. vpsrlw ymm0, ymm0, 4 ; ymm0=Out0LO=( 1 3 5 7 9 11 13 15 17 19 21 23 25 27 29 31)
  360. vpsrlw ymm2, ymm2, 4 ; ymm2=Out0HO=(33 35 37 39 41 43 45 47 49 51 53 55 57 59 61 63)
  361. vpsllw ymm0, ymm0, BYTE_BIT
  362. vpsllw ymm2, ymm2, BYTE_BIT
  363. vpor ymm1, ymm1, ymm0 ; ymm1=Out0L=( 0 1 2 ... 29 30 31)
  364. vpor ymm5, ymm5, ymm2 ; ymm5=Out0H=(32 33 34 ... 61 62 63)
  365. vmovdqu YMMWORD [edx+0*SIZEOF_YMMWORD], ymm1
  366. vmovdqu YMMWORD [edx+1*SIZEOF_YMMWORD], ymm5
  367. ; -- process the lower row
  368. vmovdqu ymm6, YMMWORD [edi+0*SIZEOF_YMMWORD] ; ymm6=Int1L=( 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15)
  369. vmovdqu ymm4, YMMWORD [edi+1*SIZEOF_YMMWORD] ; ymm4=Int1H=(16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31)
  370. vpxor ymm1, ymm1, ymm1 ; ymm1=(all 0's)
  371. vperm2i128 ymm7, ymm1, ymm6, 0x03
  372. vpalignr ymm7, ymm7, ymm6, 2 ; ymm7=( 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 --)
  373. vperm2i128 ymm3, ymm1, ymm4, 0x20
  374. vpslldq ymm3, ymm3, 14 ; ymm3=(-- -- -- -- -- -- -- -- -- -- -- -- -- -- -- 16)
  375. vperm2i128 ymm0, ymm1, ymm6, 0x03
  376. vpsrldq ymm0, ymm0, 14 ; ymm0=(15 -- -- -- -- -- -- -- -- -- -- -- -- -- -- --)
  377. vperm2i128 ymm2, ymm1, ymm4, 0x20
  378. vpalignr ymm2, ymm4, ymm2, 14 ; ymm2=(-- 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30)
  379. vpor ymm7, ymm7, ymm3 ; ymm7=( 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16)
  380. vpor ymm0, ymm0, ymm2 ; ymm0=(15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30)
  381. vperm2i128 ymm5, ymm1, ymm4, 0x03
  382. vpalignr ymm5, ymm5, ymm4, 2 ; ymm5=(17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 --)
  383. vperm2i128 ymm3, ymm1, ymm4, 0x03
  384. vpsrldq ymm3, ymm3, 14 ; ymm3=(31 -- -- -- -- -- -- -- -- -- -- -- -- -- -- --)
  385. vperm2i128 ymm1, ymm1, ymm6, 0x20
  386. vpalignr ymm1, ymm6, ymm1, 14 ; ymm1=(-- 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14)
  387. vpor ymm1, ymm1, YMMWORD [wk(1)] ; ymm1=(-1 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14)
  388. vpor ymm5, ymm5, YMMWORD [wk(3)] ; ymm5=(17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32)
  389. vmovdqa YMMWORD [wk(1)], ymm3
  390. vpmullw ymm6, ymm6, [GOTOFF(ebx,PW_THREE)]
  391. vpmullw ymm4, ymm4, [GOTOFF(ebx,PW_THREE)]
  392. vpaddw ymm1, ymm1, [GOTOFF(ebx,PW_EIGHT)]
  393. vpaddw ymm0, ymm0, [GOTOFF(ebx,PW_EIGHT)]
  394. vpaddw ymm7, ymm7, [GOTOFF(ebx,PW_SEVEN)]
  395. vpaddw ymm5, ymm5, [GOTOFF(ebx,PW_SEVEN)]
  396. vpaddw ymm1, ymm1, ymm6
  397. vpaddw ymm0, ymm0, ymm4
  398. vpsrlw ymm1, ymm1, 4 ; ymm1=Out1LE=( 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30)
  399. vpsrlw ymm0, ymm0, 4 ; ymm0=Out1HE=(32 34 36 38 40 42 44 46 48 50 52 54 56 58 60 62)
  400. vpaddw ymm7, ymm7, ymm6
  401. vpaddw ymm5, ymm5, ymm4
  402. vpsrlw ymm7, ymm7, 4 ; ymm7=Out1LO=( 1 3 5 7 9 11 13 15 17 19 21 23 25 27 29 31)
  403. vpsrlw ymm5, ymm5, 4 ; ymm5=Out1HO=(33 35 37 39 41 43 45 47 49 51 53 55 57 59 61 63)
  404. vpsllw ymm7, ymm7, BYTE_BIT
  405. vpsllw ymm5, ymm5, BYTE_BIT
  406. vpor ymm1, ymm1, ymm7 ; ymm1=Out1L=( 0 1 2 ... 29 30 31)
  407. vpor ymm0, ymm0, ymm5 ; ymm0=Out1H=(32 33 34 ... 61 62 63)
  408. vmovdqu YMMWORD [edi+0*SIZEOF_YMMWORD], ymm1
  409. vmovdqu YMMWORD [edi+1*SIZEOF_YMMWORD], ymm0
  410. POPPIC ebx
  411. sub eax, byte SIZEOF_YMMWORD
  412. add ecx, byte 1*SIZEOF_YMMWORD ; inptr1(above)
  413. add ebx, byte 1*SIZEOF_YMMWORD ; inptr0
  414. add esi, byte 1*SIZEOF_YMMWORD ; inptr1(below)
  415. add edx, byte 2*SIZEOF_YMMWORD ; outptr0
  416. add edi, byte 2*SIZEOF_YMMWORD ; outptr1
  417. cmp eax, byte SIZEOF_YMMWORD
  418. ja near .columnloop
  419. test eax, eax
  420. jnz near .columnloop_last
  421. pop esi
  422. pop edi
  423. pop ecx
  424. pop eax
  425. add esi, byte 1*SIZEOF_JSAMPROW ; input_data
  426. add edi, byte 2*SIZEOF_JSAMPROW ; output_data
  427. sub ecx, byte 2 ; rowctr
  428. jg near .rowloop
  429. .return:
  430. vzeroupper
  431. pop edi
  432. pop esi
  433. ; pop edx ; need not be preserved
  434. ; pop ecx ; need not be preserved
  435. pop ebx
  436. mov esp, ebp ; esp <- aligned ebp
  437. pop esp ; esp <- original ebp
  438. pop ebp
  439. ret
  440. ; --------------------------------------------------------------------------
  441. ;
  442. ; Fast processing for the common case of 2:1 horizontal and 1:1 vertical.
  443. ; It's still a box filter.
  444. ;
  445. ; GLOBAL(void)
  446. ; jsimd_h2v1_upsample_avx2(int max_v_samp_factor, JDIMENSION output_width,
  447. ; JSAMPARRAY input_data, JSAMPARRAY *output_data_ptr);
  448. ;
  449. %define max_v_samp(b) (b) + 8 ; int max_v_samp_factor
  450. %define output_width(b) (b) + 12 ; JDIMENSION output_width
  451. %define input_data(b) (b) + 16 ; JSAMPARRAY input_data
  452. %define output_data_ptr(b) (b) + 20 ; JSAMPARRAY *output_data_ptr
  453. align 32
  454. GLOBAL_FUNCTION(jsimd_h2v1_upsample_avx2)
  455. EXTN(jsimd_h2v1_upsample_avx2):
  456. push ebp
  457. mov ebp, esp
  458. ; push ebx ; unused
  459. ; push ecx ; need not be preserved
  460. ; push edx ; need not be preserved
  461. push esi
  462. push edi
  463. mov edx, JDIMENSION [output_width(ebp)]
  464. add edx, byte (SIZEOF_YMMWORD-1)
  465. and edx, -SIZEOF_YMMWORD
  466. jz short .return
  467. mov ecx, INT [max_v_samp(ebp)] ; rowctr
  468. test ecx, ecx
  469. jz short .return
  470. mov esi, JSAMPARRAY [input_data(ebp)] ; input_data
  471. mov edi, POINTER [output_data_ptr(ebp)]
  472. mov edi, JSAMPARRAY [edi] ; output_data
  473. ALIGNX 16, 7
  474. .rowloop:
  475. push edi
  476. push esi
  477. mov esi, JSAMPROW [esi] ; inptr
  478. mov edi, JSAMPROW [edi] ; outptr
  479. mov eax, edx ; colctr
  480. ALIGNX 16, 7
  481. .columnloop:
  482. cmp eax, byte SIZEOF_YMMWORD
  483. ja near .above_16
  484. vmovdqu xmm0, XMMWORD [esi+0*SIZEOF_YMMWORD]
  485. vpunpckhbw xmm1, xmm0, xmm0
  486. vpunpcklbw xmm0, xmm0, xmm0
  487. vmovdqu XMMWORD [edi+0*SIZEOF_XMMWORD], xmm0
  488. vmovdqu XMMWORD [edi+1*SIZEOF_XMMWORD], xmm1
  489. jmp short .nextrow
  490. .above_16:
  491. vmovdqu ymm0, YMMWORD [esi+0*SIZEOF_YMMWORD]
  492. vpermq ymm0, ymm0, 0xd8
  493. vpunpckhbw ymm1, ymm0, ymm0
  494. vpunpcklbw ymm0, ymm0, ymm0
  495. vmovdqu YMMWORD [edi+0*SIZEOF_YMMWORD], ymm0
  496. vmovdqu YMMWORD [edi+1*SIZEOF_YMMWORD], ymm1
  497. sub eax, byte 2*SIZEOF_YMMWORD
  498. jz short .nextrow
  499. add esi, byte SIZEOF_YMMWORD ; inptr
  500. add edi, byte 2*SIZEOF_YMMWORD ; outptr
  501. jmp short .columnloop
  502. ALIGNX 16, 7
  503. .nextrow:
  504. pop esi
  505. pop edi
  506. add esi, byte SIZEOF_JSAMPROW ; input_data
  507. add edi, byte SIZEOF_JSAMPROW ; output_data
  508. dec ecx ; rowctr
  509. jg short .rowloop
  510. .return:
  511. vzeroupper
  512. pop edi
  513. pop esi
  514. ; pop edx ; need not be preserved
  515. ; pop ecx ; need not be preserved
  516. ; pop ebx ; unused
  517. pop ebp
  518. ret
  519. ; --------------------------------------------------------------------------
  520. ;
  521. ; Fast processing for the common case of 2:1 horizontal and 2:1 vertical.
  522. ; It's still a box filter.
  523. ;
  524. ; GLOBAL(void)
  525. ; jsimd_h2v2_upsample_avx2(int max_v_samp_factor, JDIMENSION output_width,
  526. ; JSAMPARRAY input_data, JSAMPARRAY *output_data_ptr);
  527. ;
  528. %define max_v_samp(b) (b) + 8 ; int max_v_samp_factor
  529. %define output_width(b) (b) + 12 ; JDIMENSION output_width
  530. %define input_data(b) (b) + 16 ; JSAMPARRAY input_data
  531. %define output_data_ptr(b) (b) + 20 ; JSAMPARRAY *output_data_ptr
  532. align 32
  533. GLOBAL_FUNCTION(jsimd_h2v2_upsample_avx2)
  534. EXTN(jsimd_h2v2_upsample_avx2):
  535. push ebp
  536. mov ebp, esp
  537. push ebx
  538. ; push ecx ; need not be preserved
  539. ; push edx ; need not be preserved
  540. push esi
  541. push edi
  542. mov edx, JDIMENSION [output_width(ebp)]
  543. add edx, byte (SIZEOF_YMMWORD-1)
  544. and edx, -SIZEOF_YMMWORD
  545. jz near .return
  546. mov ecx, INT [max_v_samp(ebp)] ; rowctr
  547. test ecx, ecx
  548. jz near .return
  549. mov esi, JSAMPARRAY [input_data(ebp)] ; input_data
  550. mov edi, POINTER [output_data_ptr(ebp)]
  551. mov edi, JSAMPARRAY [edi] ; output_data
  552. ALIGNX 16, 7
  553. .rowloop:
  554. push edi
  555. push esi
  556. mov esi, JSAMPROW [esi] ; inptr
  557. mov ebx, JSAMPROW [edi+0*SIZEOF_JSAMPROW] ; outptr0
  558. mov edi, JSAMPROW [edi+1*SIZEOF_JSAMPROW] ; outptr1
  559. mov eax, edx ; colctr
  560. ALIGNX 16, 7
  561. .columnloop:
  562. cmp eax, byte SIZEOF_YMMWORD
  563. ja short .above_16
  564. vmovdqu xmm0, XMMWORD [esi+0*SIZEOF_XMMWORD]
  565. vpunpckhbw xmm1, xmm0, xmm0
  566. vpunpcklbw xmm0, xmm0, xmm0
  567. vmovdqu XMMWORD [ebx+0*SIZEOF_XMMWORD], xmm0
  568. vmovdqu XMMWORD [ebx+1*SIZEOF_XMMWORD], xmm1
  569. vmovdqu XMMWORD [edi+0*SIZEOF_XMMWORD], xmm0
  570. vmovdqu XMMWORD [edi+1*SIZEOF_XMMWORD], xmm1
  571. jmp near .nextrow
  572. .above_16:
  573. vmovdqu ymm0, YMMWORD [esi+0*SIZEOF_YMMWORD]
  574. vpermq ymm0, ymm0, 0xd8
  575. vpunpckhbw ymm1, ymm0, ymm0
  576. vpunpcklbw ymm0, ymm0, ymm0
  577. vmovdqu YMMWORD [ebx+0*SIZEOF_YMMWORD], ymm0
  578. vmovdqu YMMWORD [ebx+1*SIZEOF_YMMWORD], ymm1
  579. vmovdqu YMMWORD [edi+0*SIZEOF_YMMWORD], ymm0
  580. vmovdqu YMMWORD [edi+1*SIZEOF_YMMWORD], ymm1
  581. sub eax, byte 2*SIZEOF_YMMWORD
  582. jz short .nextrow
  583. add esi, byte SIZEOF_YMMWORD ; inptr
  584. add ebx, 2*SIZEOF_YMMWORD ; outptr0
  585. add edi, 2*SIZEOF_YMMWORD ; outptr1
  586. jmp short .columnloop
  587. ALIGNX 16, 7
  588. .nextrow:
  589. pop esi
  590. pop edi
  591. add esi, byte 1*SIZEOF_JSAMPROW ; input_data
  592. add edi, byte 2*SIZEOF_JSAMPROW ; output_data
  593. sub ecx, byte 2 ; rowctr
  594. jg near .rowloop
  595. .return:
  596. vzeroupper
  597. pop edi
  598. pop esi
  599. ; pop edx ; need not be preserved
  600. ; pop ecx ; need not be preserved
  601. pop ebx
  602. pop ebp
  603. ret
  604. ; For some reason, the OS X linker does not honor the request to align the
  605. ; segment unless we do this.
  606. align 32