gf_5vect_mad_avx512.asm 8.2 KB

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  1. ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
  2. ; Copyright(c) 2011-2019 Intel Corporation All rights reserved.
  3. ;
  4. ; Redistribution and use in source and binary forms, with or without
  5. ; modification, are permitted provided that the following conditions
  6. ; are met:
  7. ; * Redistributions of source code must retain the above copyright
  8. ; notice, this list of conditions and the following disclaimer.
  9. ; * Redistributions in binary form must reproduce the above copyright
  10. ; notice, this list of conditions and the following disclaimer in
  11. ; the documentation and/or other materials provided with the
  12. ; distribution.
  13. ; * Neither the name of Intel Corporation nor the names of its
  14. ; contributors may be used to endorse or promote products derived
  15. ; from this software without specific prior written permission.
  16. ;
  17. ; THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  18. ; "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  19. ; LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  20. ; A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  21. ; OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  22. ; SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  23. ; LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  24. ; DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  25. ; THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  26. ; (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  27. ; OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  28. ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
  29. ;;;
  30. ;;; gf_5vect_mad_avx512(len, vec, vec_i, mul_array, src, dest);
  31. ;;;
  32. %include "reg_sizes.asm"
  33. %ifdef HAVE_AS_KNOWS_AVX512
  34. %ifidn __OUTPUT_FORMAT__, elf64
  35. %define arg0 rdi
  36. %define arg1 rsi
  37. %define arg2 rdx
  38. %define arg3 rcx
  39. %define arg4 r8
  40. %define arg5 r9
  41. %define tmp r11
  42. %define tmp2 r10
  43. %define return rax
  44. %define func(x) x: endbranch
  45. %define FUNC_SAVE
  46. %define FUNC_RESTORE
  47. %endif
  48. %ifidn __OUTPUT_FORMAT__, win64
  49. %define arg0 rcx
  50. %define arg1 rdx
  51. %define arg2 r8
  52. %define arg3 r9
  53. %define arg4 r12
  54. %define arg5 r15
  55. %define tmp r11
  56. %define tmp2 r10
  57. %define return rax
  58. %define stack_size 16*10 + 3*8
  59. %define arg(x) [rsp + stack_size + PS + PS*x]
  60. %define func(x) proc_frame x
  61. %macro FUNC_SAVE 0
  62. sub rsp, stack_size
  63. vmovdqa [rsp+16*0],xmm6
  64. vmovdqa [rsp+16*1],xmm7
  65. vmovdqa [rsp+16*2],xmm8
  66. vmovdqa [rsp+16*3],xmm9
  67. vmovdqa [rsp+16*4],xmm10
  68. vmovdqa [rsp+16*5],xmm11
  69. vmovdqa [rsp+16*6],xmm12
  70. vmovdqa [rsp+16*7],xmm13
  71. vmovdqa [rsp+16*8],xmm14
  72. vmovdqa [rsp+16*9],xmm15
  73. save_reg r12, 10*16 + 0*8
  74. save_reg r15, 10*16 + 1*8
  75. end_prolog
  76. mov arg4, arg(4)
  77. mov arg5, arg(5)
  78. %endmacro
  79. %macro FUNC_RESTORE 0
  80. vmovdqa xmm6, [rsp+16*0]
  81. vmovdqa xmm7, [rsp+16*1]
  82. vmovdqa xmm8, [rsp+16*2]
  83. vmovdqa xmm9, [rsp+16*3]
  84. vmovdqa xmm10, [rsp+16*4]
  85. vmovdqa xmm11, [rsp+16*5]
  86. vmovdqa xmm12, [rsp+16*6]
  87. vmovdqa xmm13, [rsp+16*7]
  88. vmovdqa xmm14, [rsp+16*8]
  89. vmovdqa xmm15, [rsp+16*9]
  90. mov r12, [rsp + 10*16 + 0*8]
  91. mov r15, [rsp + 10*16 + 1*8]
  92. add rsp, stack_size
  93. %endmacro
  94. %endif
  95. %define PS 8
  96. %define len arg0
  97. %define vec arg1
  98. %define vec_i arg2
  99. %define mul_array arg3
  100. %define src arg4
  101. %define dest1 arg5
  102. %define pos return
  103. %define dest2 tmp2
  104. %define dest3 mul_array
  105. %define dest4 vec
  106. %define dest5 vec_i
  107. %ifndef EC_ALIGNED_ADDR
  108. ;;; Use Un-aligned load/store
  109. %define XLDR vmovdqu8
  110. %define XSTR vmovdqu8
  111. %else
  112. ;;; Use Non-temporal load/stor
  113. %ifdef NO_NT_LDST
  114. %define XLDR vmovdqa64
  115. %define XSTR vmovdqa64
  116. %else
  117. %define XLDR vmovntdqa
  118. %define XSTR vmovntdq
  119. %endif
  120. %endif
  121. default rel
  122. [bits 64]
  123. section .text
  124. %define x0 zmm0
  125. %define xtmpa zmm1
  126. %define xtmpl1 zmm2
  127. %define xtmph1 zmm3
  128. %define xtmph2 zmm4
  129. %define xtmph3 zmm5
  130. %define xgft1_hi zmm6
  131. %define xgft1_lo zmm7
  132. %define xgft1_loy ymm7
  133. %define xgft2_hi zmm8
  134. %define xgft2_lo zmm9
  135. %define xgft2_loy ymm9
  136. %define xgft3_hi zmm10
  137. %define xgft3_lo zmm11
  138. %define xgft3_loy ymm11
  139. %define xgft4_hi zmm12
  140. %define xgft4_lo zmm13
  141. %define xgft4_loy ymm13
  142. %define xgft5_hi zmm14
  143. %define xgft5_lo zmm15
  144. %define xgft5_loy ymm15
  145. %define xd1 zmm16
  146. %define xd2 zmm17
  147. %define xd3 zmm18
  148. %define xd4 zmm19
  149. %define xd5 zmm20
  150. %define xmask0f zmm21
  151. %define xtmpl2 zmm22
  152. %define xtmpl3 zmm23
  153. %define xtmpl4 zmm24
  154. %define xtmpl5 zmm25
  155. %define xtmph4 zmm26
  156. %define xtmph5 zmm27
  157. align 16
  158. global gf_5vect_mad_avx512, function
  159. func(gf_5vect_mad_avx512)
  160. FUNC_SAVE
  161. sub len, 64
  162. jl .return_fail
  163. xor pos, pos
  164. mov tmp, 0x0f
  165. vpbroadcastb xmask0f, tmp ;Construct mask 0x0f0f0f...
  166. sal vec_i, 5 ;Multiply by 32
  167. sal vec, 5 ;Multiply by 32
  168. lea tmp, [mul_array + vec_i]
  169. vmovdqu xgft1_loy, [tmp] ;Load array Ax{00}..{0f}, Ax{00}..{f0}
  170. vmovdqu xgft2_loy, [tmp+vec] ;Load array Bx{00}..{0f}, Bx{00}..{f0}
  171. vmovdqu xgft3_loy, [tmp+2*vec] ;Load array Cx{00}..{0f}, Cx{00}..{f0}
  172. vmovdqu xgft5_loy, [tmp+4*vec] ;Load array Ex{00}..{0f}, Ex{00}..{f0}
  173. add tmp, vec
  174. vmovdqu xgft4_loy, [tmp+2*vec] ;Load array Dx{00}..{0f}, Dx{00}..{f0}
  175. vshufi64x2 xgft1_hi, xgft1_lo, xgft1_lo, 0x55
  176. vshufi64x2 xgft1_lo, xgft1_lo, xgft1_lo, 0x00
  177. vshufi64x2 xgft2_hi, xgft2_lo, xgft2_lo, 0x55
  178. vshufi64x2 xgft2_lo, xgft2_lo, xgft2_lo, 0x00
  179. vshufi64x2 xgft3_hi, xgft3_lo, xgft3_lo, 0x55
  180. vshufi64x2 xgft3_lo, xgft3_lo, xgft3_lo, 0x00
  181. vshufi64x2 xgft4_hi, xgft4_lo, xgft4_lo, 0x55
  182. vshufi64x2 xgft4_lo, xgft4_lo, xgft4_lo, 0x00
  183. vshufi64x2 xgft5_hi, xgft5_lo, xgft5_lo, 0x55
  184. vshufi64x2 xgft5_lo, xgft5_lo, xgft5_lo, 0x00
  185. mov dest2, [dest1+PS]
  186. mov dest3, [dest1+2*PS] ; reuse mul_array
  187. mov dest4, [dest1+3*PS] ; reuse vec
  188. mov dest5, [dest1+4*PS] ; reuse vec_i
  189. mov dest1, [dest1]
  190. mov tmp, -1
  191. kmovq k1, tmp
  192. .loop64:
  193. XLDR x0, [src+pos] ;Get next source vector
  194. XLDR xd1, [dest1+pos] ;Get next dest vector
  195. XLDR xd2, [dest2+pos] ;Get next dest vector
  196. XLDR xd3, [dest3+pos] ;Get next dest vector
  197. XLDR xd4, [dest4+pos] ;reuse xtmpl1. Get next dest vector
  198. XLDR xd5, [dest5+pos] ;Get next dest vector
  199. vpandq xtmpa, x0, xmask0f ;Mask low src nibble in bits 4-0
  200. vpsraw x0, x0, 4 ;Shift to put high nibble into bits 4-0
  201. vpandq x0, x0, xmask0f ;Mask high src nibble in bits 4-0
  202. ; dest1
  203. vpshufb xtmph1 {k1}{z}, xgft1_hi, x0 ;Lookup mul table of high nibble
  204. vpshufb xtmpl1 {k1}{z}, xgft1_lo, xtmpa ;Lookup mul table of low nibble
  205. vpxorq xtmph1, xtmph1, xtmpl1 ;GF add high and low partials
  206. vpxorq xd1, xd1, xtmph1 ;xd1 += partial
  207. ; dest2
  208. vpshufb xtmph2 {k1}{z}, xgft2_hi, x0 ;Lookup mul table of high nibble
  209. vpshufb xtmpl2 {k1}{z}, xgft2_lo, xtmpa ;Lookup mul table of low nibble
  210. vpxorq xtmph2, xtmph2, xtmpl2 ;GF add high and low partials
  211. vpxorq xd2, xd2, xtmph2 ;xd2 += partial
  212. ; dest3
  213. vpshufb xtmph3 {k1}{z}, xgft3_hi, x0 ;Lookup mul table of high nibble
  214. vpshufb xtmpl3 {k1}{z}, xgft3_lo, xtmpa ;Lookup mul table of low nibble
  215. vpxorq xtmph3, xtmph3, xtmpl3 ;GF add high and low partials
  216. vpxorq xd3, xd3, xtmph3 ;xd2 += partial
  217. ; dest4
  218. vpshufb xtmph4 {k1}{z}, xgft4_hi, x0 ;Lookup mul table of high nibble
  219. vpshufb xtmpl4 {k1}{z}, xgft4_lo, xtmpa ;Lookup mul table of low nibble
  220. vpxorq xtmph4, xtmph4, xtmpl4 ;GF add high and low partials
  221. vpxorq xd4, xd4, xtmph4 ;xd2 += partial
  222. ; dest5
  223. vpshufb xtmph5 {k1}{z}, xgft5_hi, x0 ;Lookup mul table of high nibble
  224. vpshufb xtmpl5 {k1}{z}, xgft5_lo, xtmpa ;Lookup mul table of low nibble
  225. vpxorq xtmph5, xtmph5, xtmpl5 ;GF add high and low partials
  226. vpxorq xd5, xd5, xtmph5 ;xd2 += partial
  227. XSTR [dest1+pos], xd1
  228. XSTR [dest2+pos], xd2
  229. XSTR [dest3+pos], xd3
  230. XSTR [dest4+pos], xd4
  231. XSTR [dest5+pos], xd5
  232. add pos, 64 ;Loop on 64 bytes at a time
  233. cmp pos, len
  234. jle .loop64
  235. lea tmp, [len + 64]
  236. cmp pos, tmp
  237. je .return_pass
  238. ;; Tail len
  239. mov pos, (1 << 63)
  240. lea tmp, [len + 64 - 1]
  241. and tmp, 63
  242. sarx pos, pos, tmp
  243. kmovq k1, pos
  244. mov pos, len ;Overlapped offset length-64
  245. jmp .loop64 ;Do one more overlap pass
  246. .return_pass:
  247. mov return, 0
  248. FUNC_RESTORE
  249. ret
  250. .return_fail:
  251. mov return, 1
  252. FUNC_RESTORE
  253. ret
  254. endproc_frame
  255. %else
  256. %ifidn __OUTPUT_FORMAT__, win64
  257. global no_gf_5vect_mad_avx512
  258. no_gf_5vect_mad_avx512:
  259. %endif
  260. %endif ; ifdef HAVE_AS_KNOWS_AVX512