1e1051a39Sopenharmony_ci#! /usr/bin/env perl 2e1051a39Sopenharmony_ci# Copyright 1998-2020 The OpenSSL Project Authors. All Rights Reserved. 3e1051a39Sopenharmony_ci# 4e1051a39Sopenharmony_ci# Licensed under the Apache License 2.0 (the "License"). You may not use 5e1051a39Sopenharmony_ci# this file except in compliance with the License. You can obtain a copy 6e1051a39Sopenharmony_ci# in the file LICENSE in the source distribution or at 7e1051a39Sopenharmony_ci# https://www.openssl.org/source/license.html 8e1051a39Sopenharmony_ci 9e1051a39Sopenharmony_ci 10e1051a39Sopenharmony_ci# ==================================================================== 11e1051a39Sopenharmony_ci# [Re]written by Andy Polyakov <appro@openssl.org> for the OpenSSL 12e1051a39Sopenharmony_ci# project. The module is, however, dual licensed under OpenSSL and 13e1051a39Sopenharmony_ci# CRYPTOGAMS licenses depending on where you obtain it. For further 14e1051a39Sopenharmony_ci# details see http://www.openssl.org/~appro/cryptogams/. 15e1051a39Sopenharmony_ci# ==================================================================== 16e1051a39Sopenharmony_ci 17e1051a39Sopenharmony_ci# "[Re]written" was achieved in two major overhauls. In 2004 BODY_* 18e1051a39Sopenharmony_ci# functions were re-implemented to address P4 performance issue [see 19e1051a39Sopenharmony_ci# commentary below], and in 2006 the rest was rewritten in order to 20e1051a39Sopenharmony_ci# gain freedom to liberate licensing terms. 21e1051a39Sopenharmony_ci 22e1051a39Sopenharmony_ci# January, September 2004. 23e1051a39Sopenharmony_ci# 24e1051a39Sopenharmony_ci# It was noted that Intel IA-32 C compiler generates code which 25e1051a39Sopenharmony_ci# performs ~30% *faster* on P4 CPU than original *hand-coded* 26e1051a39Sopenharmony_ci# SHA1 assembler implementation. To address this problem (and 27e1051a39Sopenharmony_ci# prove that humans are still better than machines:-), the 28e1051a39Sopenharmony_ci# original code was overhauled, which resulted in following 29e1051a39Sopenharmony_ci# performance changes: 30e1051a39Sopenharmony_ci# 31e1051a39Sopenharmony_ci# compared with original compared with Intel cc 32e1051a39Sopenharmony_ci# assembler impl. generated code 33e1051a39Sopenharmony_ci# Pentium -16% +48% 34e1051a39Sopenharmony_ci# PIII/AMD +8% +16% 35e1051a39Sopenharmony_ci# P4 +85%(!) +45% 36e1051a39Sopenharmony_ci# 37e1051a39Sopenharmony_ci# As you can see Pentium came out as looser:-( Yet I reckoned that 38e1051a39Sopenharmony_ci# improvement on P4 outweighs the loss and incorporate this 39e1051a39Sopenharmony_ci# re-tuned code to 0.9.7 and later. 40e1051a39Sopenharmony_ci# ---------------------------------------------------------------- 41e1051a39Sopenharmony_ci 42e1051a39Sopenharmony_ci# August 2009. 43e1051a39Sopenharmony_ci# 44e1051a39Sopenharmony_ci# George Spelvin has tipped that F_40_59(b,c,d) can be rewritten as 45e1051a39Sopenharmony_ci# '(c&d) + (b&(c^d))', which allows to accumulate partial results 46e1051a39Sopenharmony_ci# and lighten "pressure" on scratch registers. This resulted in 47e1051a39Sopenharmony_ci# >12% performance improvement on contemporary AMD cores (with no 48e1051a39Sopenharmony_ci# degradation on other CPUs:-). Also, the code was revised to maximize 49e1051a39Sopenharmony_ci# "distance" between instructions producing input to 'lea' instruction 50e1051a39Sopenharmony_ci# and the 'lea' instruction itself, which is essential for Intel Atom 51e1051a39Sopenharmony_ci# core and resulted in ~15% improvement. 52e1051a39Sopenharmony_ci 53e1051a39Sopenharmony_ci# October 2010. 54e1051a39Sopenharmony_ci# 55e1051a39Sopenharmony_ci# Add SSSE3, Supplemental[!] SSE3, implementation. The idea behind it 56e1051a39Sopenharmony_ci# is to offload message schedule denoted by Wt in NIST specification, 57e1051a39Sopenharmony_ci# or Xupdate in OpenSSL source, to SIMD unit. The idea is not novel, 58e1051a39Sopenharmony_ci# and in SSE2 context was first explored by Dean Gaudet in 2004, see 59e1051a39Sopenharmony_ci# http://arctic.org/~dean/crypto/sha1.html. Since then several things 60e1051a39Sopenharmony_ci# have changed that made it interesting again: 61e1051a39Sopenharmony_ci# 62e1051a39Sopenharmony_ci# a) XMM units became faster and wider; 63e1051a39Sopenharmony_ci# b) instruction set became more versatile; 64e1051a39Sopenharmony_ci# c) an important observation was made by Max Locktykhin, which made 65e1051a39Sopenharmony_ci# it possible to reduce amount of instructions required to perform 66e1051a39Sopenharmony_ci# the operation in question, for further details see 67e1051a39Sopenharmony_ci# http://software.intel.com/en-us/articles/improving-the-performance-of-the-secure-hash-algorithm-1/. 68e1051a39Sopenharmony_ci 69e1051a39Sopenharmony_ci# April 2011. 70e1051a39Sopenharmony_ci# 71e1051a39Sopenharmony_ci# Add AVX code path, probably most controversial... The thing is that 72e1051a39Sopenharmony_ci# switch to AVX alone improves performance by as little as 4% in 73e1051a39Sopenharmony_ci# comparison to SSSE3 code path. But below result doesn't look like 74e1051a39Sopenharmony_ci# 4% improvement... Trouble is that Sandy Bridge decodes 'ro[rl]' as 75e1051a39Sopenharmony_ci# pair of µ-ops, and it's the additional µ-ops, two per round, that 76e1051a39Sopenharmony_ci# make it run slower than Core2 and Westmere. But 'sh[rl]d' is decoded 77e1051a39Sopenharmony_ci# as single µ-op by Sandy Bridge and it's replacing 'ro[rl]' with 78e1051a39Sopenharmony_ci# equivalent 'sh[rl]d' that is responsible for the impressive 5.1 79e1051a39Sopenharmony_ci# cycles per processed byte. But 'sh[rl]d' is not something that used 80e1051a39Sopenharmony_ci# to be fast, nor does it appear to be fast in upcoming Bulldozer 81e1051a39Sopenharmony_ci# [according to its optimization manual]. Which is why AVX code path 82e1051a39Sopenharmony_ci# is guarded by *both* AVX and synthetic bit denoting Intel CPUs. 83e1051a39Sopenharmony_ci# One can argue that it's unfair to AMD, but without 'sh[rl]d' it 84e1051a39Sopenharmony_ci# makes no sense to keep the AVX code path. If somebody feels that 85e1051a39Sopenharmony_ci# strongly, it's probably more appropriate to discuss possibility of 86e1051a39Sopenharmony_ci# using vector rotate XOP on AMD... 87e1051a39Sopenharmony_ci 88e1051a39Sopenharmony_ci# March 2014. 89e1051a39Sopenharmony_ci# 90e1051a39Sopenharmony_ci# Add support for Intel SHA Extensions. 91e1051a39Sopenharmony_ci 92e1051a39Sopenharmony_ci###################################################################### 93e1051a39Sopenharmony_ci# Current performance is summarized in following table. Numbers are 94e1051a39Sopenharmony_ci# CPU clock cycles spent to process single byte (less is better). 95e1051a39Sopenharmony_ci# 96e1051a39Sopenharmony_ci# x86 SSSE3 AVX 97e1051a39Sopenharmony_ci# Pentium 15.7 - 98e1051a39Sopenharmony_ci# PIII 11.5 - 99e1051a39Sopenharmony_ci# P4 10.6 - 100e1051a39Sopenharmony_ci# AMD K8 7.1 - 101e1051a39Sopenharmony_ci# Core2 7.3 6.0/+22% - 102e1051a39Sopenharmony_ci# Westmere 7.3 5.5/+33% - 103e1051a39Sopenharmony_ci# Sandy Bridge 8.8 6.2/+40% 5.1(**)/+73% 104e1051a39Sopenharmony_ci# Ivy Bridge 7.2 4.8/+51% 4.7(**)/+53% 105e1051a39Sopenharmony_ci# Haswell 6.5 4.3/+51% 4.1(**)/+58% 106e1051a39Sopenharmony_ci# Skylake 6.4 4.1/+55% 4.1(**)/+55% 107e1051a39Sopenharmony_ci# Bulldozer 11.6 6.0/+92% 108e1051a39Sopenharmony_ci# VIA Nano 10.6 7.5/+41% 109e1051a39Sopenharmony_ci# Atom 12.5 9.3(*)/+35% 110e1051a39Sopenharmony_ci# Silvermont 14.5 9.9(*)/+46% 111e1051a39Sopenharmony_ci# Goldmont 8.8 6.7/+30% 1.7(***)/+415% 112e1051a39Sopenharmony_ci# 113e1051a39Sopenharmony_ci# (*) Loop is 1056 instructions long and expected result is ~8.25. 114e1051a39Sopenharmony_ci# The discrepancy is because of front-end limitations, so 115e1051a39Sopenharmony_ci# called MS-ROM penalties, and on Silvermont even rotate's 116e1051a39Sopenharmony_ci# limited parallelism. 117e1051a39Sopenharmony_ci# 118e1051a39Sopenharmony_ci# (**) As per above comment, the result is for AVX *plus* sh[rl]d. 119e1051a39Sopenharmony_ci# 120e1051a39Sopenharmony_ci# (***) SHAEXT result 121e1051a39Sopenharmony_ci 122e1051a39Sopenharmony_ci$0 =~ m/(.*[\/\\])[^\/\\]+$/; $dir=$1; 123e1051a39Sopenharmony_cipush(@INC,"${dir}","${dir}../../perlasm"); 124e1051a39Sopenharmony_cirequire "x86asm.pl"; 125e1051a39Sopenharmony_ci 126e1051a39Sopenharmony_ci$output=pop and open STDOUT,">$output"; 127e1051a39Sopenharmony_ci 128e1051a39Sopenharmony_ci&asm_init($ARGV[0],$ARGV[$#ARGV] eq "386"); 129e1051a39Sopenharmony_ci 130e1051a39Sopenharmony_ci$xmm=$ymm=0; 131e1051a39Sopenharmony_cifor (@ARGV) { $xmm=1 if (/-DOPENSSL_IA32_SSE2/); } 132e1051a39Sopenharmony_ci 133e1051a39Sopenharmony_ci$ymm=1 if ($xmm && 134e1051a39Sopenharmony_ci `$ENV{CC} -Wa,-v -c -o /dev/null -x assembler /dev/null 2>&1` 135e1051a39Sopenharmony_ci =~ /GNU assembler version ([2-9]\.[0-9]+)/ && 136e1051a39Sopenharmony_ci $1>=2.19); # first version supporting AVX 137e1051a39Sopenharmony_ci 138e1051a39Sopenharmony_ci$ymm=1 if ($xmm && !$ymm && $ARGV[0] eq "win32n" && 139e1051a39Sopenharmony_ci `nasm -v 2>&1` =~ /NASM version ([2-9]\.[0-9]+)/ && 140e1051a39Sopenharmony_ci $1>=2.03); # first version supporting AVX 141e1051a39Sopenharmony_ci 142e1051a39Sopenharmony_ci$ymm=1 if ($xmm && !$ymm && $ARGV[0] eq "win32" && 143e1051a39Sopenharmony_ci `ml 2>&1` =~ /Version ([0-9]+)\./ && 144e1051a39Sopenharmony_ci $1>=10); # first version supporting AVX 145e1051a39Sopenharmony_ci 146e1051a39Sopenharmony_ci$ymm=1 if ($xmm && !$ymm && `$ENV{CC} -v 2>&1` =~ /((?:clang|LLVM) version|based on LLVM) ([0-9]+\.[0-9]+)/ && 147e1051a39Sopenharmony_ci $2>=3.0); # first version supporting AVX 148e1051a39Sopenharmony_ci 149e1051a39Sopenharmony_ci$shaext=$xmm; ### set to zero if compiling for 1.0.1 150e1051a39Sopenharmony_ci 151e1051a39Sopenharmony_ci&external_label("OPENSSL_ia32cap_P") if ($xmm); 152e1051a39Sopenharmony_ci 153e1051a39Sopenharmony_ci 154e1051a39Sopenharmony_ci$A="eax"; 155e1051a39Sopenharmony_ci$B="ebx"; 156e1051a39Sopenharmony_ci$C="ecx"; 157e1051a39Sopenharmony_ci$D="edx"; 158e1051a39Sopenharmony_ci$E="edi"; 159e1051a39Sopenharmony_ci$T="esi"; 160e1051a39Sopenharmony_ci$tmp1="ebp"; 161e1051a39Sopenharmony_ci 162e1051a39Sopenharmony_ci@V=($A,$B,$C,$D,$E,$T); 163e1051a39Sopenharmony_ci 164e1051a39Sopenharmony_ci$alt=0; # 1 denotes alternative IALU implementation, which performs 165e1051a39Sopenharmony_ci # 8% *worse* on P4, same on Westmere and Atom, 2% better on 166e1051a39Sopenharmony_ci # Sandy Bridge... 167e1051a39Sopenharmony_ci 168e1051a39Sopenharmony_cisub BODY_00_15 169e1051a39Sopenharmony_ci { 170e1051a39Sopenharmony_ci local($n,$a,$b,$c,$d,$e,$f)=@_; 171e1051a39Sopenharmony_ci 172e1051a39Sopenharmony_ci &comment("00_15 $n"); 173e1051a39Sopenharmony_ci 174e1051a39Sopenharmony_ci &mov($f,$c); # f to hold F_00_19(b,c,d) 175e1051a39Sopenharmony_ci if ($n==0) { &mov($tmp1,$a); } 176e1051a39Sopenharmony_ci else { &mov($a,$tmp1); } 177e1051a39Sopenharmony_ci &rotl($tmp1,5); # tmp1=ROTATE(a,5) 178e1051a39Sopenharmony_ci &xor($f,$d); 179e1051a39Sopenharmony_ci &add($tmp1,$e); # tmp1+=e; 180e1051a39Sopenharmony_ci &mov($e,&swtmp($n%16)); # e becomes volatile and is loaded 181e1051a39Sopenharmony_ci # with xi, also note that e becomes 182e1051a39Sopenharmony_ci # f in next round... 183e1051a39Sopenharmony_ci &and($f,$b); 184e1051a39Sopenharmony_ci &rotr($b,2); # b=ROTATE(b,30) 185e1051a39Sopenharmony_ci &xor($f,$d); # f holds F_00_19(b,c,d) 186e1051a39Sopenharmony_ci &lea($tmp1,&DWP(0x5a827999,$tmp1,$e)); # tmp1+=K_00_19+xi 187e1051a39Sopenharmony_ci 188e1051a39Sopenharmony_ci if ($n==15) { &mov($e,&swtmp(($n+1)%16));# pre-fetch f for next round 189e1051a39Sopenharmony_ci &add($f,$tmp1); } # f+=tmp1 190e1051a39Sopenharmony_ci else { &add($tmp1,$f); } # f becomes a in next round 191e1051a39Sopenharmony_ci &mov($tmp1,$a) if ($alt && $n==15); 192e1051a39Sopenharmony_ci } 193e1051a39Sopenharmony_ci 194e1051a39Sopenharmony_cisub BODY_16_19 195e1051a39Sopenharmony_ci { 196e1051a39Sopenharmony_ci local($n,$a,$b,$c,$d,$e,$f)=@_; 197e1051a39Sopenharmony_ci 198e1051a39Sopenharmony_ci &comment("16_19 $n"); 199e1051a39Sopenharmony_ci 200e1051a39Sopenharmony_ciif ($alt) { 201e1051a39Sopenharmony_ci &xor($c,$d); 202e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+2)%16)); # f to hold Xupdate(xi,xa,xb,xc,xd) 203e1051a39Sopenharmony_ci &and($tmp1,$c); # tmp1 to hold F_00_19(b,c,d), b&=c^d 204e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+8)%16)); 205e1051a39Sopenharmony_ci &xor($tmp1,$d); # tmp1=F_00_19(b,c,d) 206e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+13)%16)); # f holds xa^xb^xc^xd 207e1051a39Sopenharmony_ci &rotl($f,1); # f=ROTATE(f,1) 208e1051a39Sopenharmony_ci &add($e,$tmp1); # e+=F_00_19(b,c,d) 209e1051a39Sopenharmony_ci &xor($c,$d); # restore $c 210e1051a39Sopenharmony_ci &mov($tmp1,$a); # b in next round 211e1051a39Sopenharmony_ci &rotr($b,$n==16?2:7); # b=ROTATE(b,30) 212e1051a39Sopenharmony_ci &mov(&swtmp($n%16),$f); # xi=f 213e1051a39Sopenharmony_ci &rotl($a,5); # ROTATE(a,5) 214e1051a39Sopenharmony_ci &lea($f,&DWP(0x5a827999,$f,$e));# f+=F_00_19(b,c,d)+e 215e1051a39Sopenharmony_ci &mov($e,&swtmp(($n+1)%16)); # pre-fetch f for next round 216e1051a39Sopenharmony_ci &add($f,$a); # f+=ROTATE(a,5) 217e1051a39Sopenharmony_ci} else { 218e1051a39Sopenharmony_ci &mov($tmp1,$c); # tmp1 to hold F_00_19(b,c,d) 219e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+2)%16)); # f to hold Xupdate(xi,xa,xb,xc,xd) 220e1051a39Sopenharmony_ci &xor($tmp1,$d); 221e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+8)%16)); 222e1051a39Sopenharmony_ci &and($tmp1,$b); 223e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+13)%16)); # f holds xa^xb^xc^xd 224e1051a39Sopenharmony_ci &rotl($f,1); # f=ROTATE(f,1) 225e1051a39Sopenharmony_ci &xor($tmp1,$d); # tmp1=F_00_19(b,c,d) 226e1051a39Sopenharmony_ci &add($e,$tmp1); # e+=F_00_19(b,c,d) 227e1051a39Sopenharmony_ci &mov($tmp1,$a); 228e1051a39Sopenharmony_ci &rotr($b,2); # b=ROTATE(b,30) 229e1051a39Sopenharmony_ci &mov(&swtmp($n%16),$f); # xi=f 230e1051a39Sopenharmony_ci &rotl($tmp1,5); # ROTATE(a,5) 231e1051a39Sopenharmony_ci &lea($f,&DWP(0x5a827999,$f,$e));# f+=F_00_19(b,c,d)+e 232e1051a39Sopenharmony_ci &mov($e,&swtmp(($n+1)%16)); # pre-fetch f for next round 233e1051a39Sopenharmony_ci &add($f,$tmp1); # f+=ROTATE(a,5) 234e1051a39Sopenharmony_ci} 235e1051a39Sopenharmony_ci } 236e1051a39Sopenharmony_ci 237e1051a39Sopenharmony_cisub BODY_20_39 238e1051a39Sopenharmony_ci { 239e1051a39Sopenharmony_ci local($n,$a,$b,$c,$d,$e,$f)=@_; 240e1051a39Sopenharmony_ci local $K=($n<40)?0x6ed9eba1:0xca62c1d6; 241e1051a39Sopenharmony_ci 242e1051a39Sopenharmony_ci &comment("20_39 $n"); 243e1051a39Sopenharmony_ci 244e1051a39Sopenharmony_ciif ($alt) { 245e1051a39Sopenharmony_ci &xor($tmp1,$c); # tmp1 to hold F_20_39(b,c,d), b^=c 246e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+2)%16)); # f to hold Xupdate(xi,xa,xb,xc,xd) 247e1051a39Sopenharmony_ci &xor($tmp1,$d); # tmp1 holds F_20_39(b,c,d) 248e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+8)%16)); 249e1051a39Sopenharmony_ci &add($e,$tmp1); # e+=F_20_39(b,c,d) 250e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+13)%16)); # f holds xa^xb^xc^xd 251e1051a39Sopenharmony_ci &rotl($f,1); # f=ROTATE(f,1) 252e1051a39Sopenharmony_ci &mov($tmp1,$a); # b in next round 253e1051a39Sopenharmony_ci &rotr($b,7); # b=ROTATE(b,30) 254e1051a39Sopenharmony_ci &mov(&swtmp($n%16),$f) if($n<77);# xi=f 255e1051a39Sopenharmony_ci &rotl($a,5); # ROTATE(a,5) 256e1051a39Sopenharmony_ci &xor($b,$c) if($n==39);# warm up for BODY_40_59 257e1051a39Sopenharmony_ci &and($tmp1,$b) if($n==39); 258e1051a39Sopenharmony_ci &lea($f,&DWP($K,$f,$e)); # f+=e+K_XX_YY 259e1051a39Sopenharmony_ci &mov($e,&swtmp(($n+1)%16)) if($n<79);# pre-fetch f for next round 260e1051a39Sopenharmony_ci &add($f,$a); # f+=ROTATE(a,5) 261e1051a39Sopenharmony_ci &rotr($a,5) if ($n==79); 262e1051a39Sopenharmony_ci} else { 263e1051a39Sopenharmony_ci &mov($tmp1,$b); # tmp1 to hold F_20_39(b,c,d) 264e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+2)%16)); # f to hold Xupdate(xi,xa,xb,xc,xd) 265e1051a39Sopenharmony_ci &xor($tmp1,$c); 266e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+8)%16)); 267e1051a39Sopenharmony_ci &xor($tmp1,$d); # tmp1 holds F_20_39(b,c,d) 268e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+13)%16)); # f holds xa^xb^xc^xd 269e1051a39Sopenharmony_ci &rotl($f,1); # f=ROTATE(f,1) 270e1051a39Sopenharmony_ci &add($e,$tmp1); # e+=F_20_39(b,c,d) 271e1051a39Sopenharmony_ci &rotr($b,2); # b=ROTATE(b,30) 272e1051a39Sopenharmony_ci &mov($tmp1,$a); 273e1051a39Sopenharmony_ci &rotl($tmp1,5); # ROTATE(a,5) 274e1051a39Sopenharmony_ci &mov(&swtmp($n%16),$f) if($n<77);# xi=f 275e1051a39Sopenharmony_ci &lea($f,&DWP($K,$f,$e)); # f+=e+K_XX_YY 276e1051a39Sopenharmony_ci &mov($e,&swtmp(($n+1)%16)) if($n<79);# pre-fetch f for next round 277e1051a39Sopenharmony_ci &add($f,$tmp1); # f+=ROTATE(a,5) 278e1051a39Sopenharmony_ci} 279e1051a39Sopenharmony_ci } 280e1051a39Sopenharmony_ci 281e1051a39Sopenharmony_cisub BODY_40_59 282e1051a39Sopenharmony_ci { 283e1051a39Sopenharmony_ci local($n,$a,$b,$c,$d,$e,$f)=@_; 284e1051a39Sopenharmony_ci 285e1051a39Sopenharmony_ci &comment("40_59 $n"); 286e1051a39Sopenharmony_ci 287e1051a39Sopenharmony_ciif ($alt) { 288e1051a39Sopenharmony_ci &add($e,$tmp1); # e+=b&(c^d) 289e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+2)%16)); # f to hold Xupdate(xi,xa,xb,xc,xd) 290e1051a39Sopenharmony_ci &mov($tmp1,$d); 291e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+8)%16)); 292e1051a39Sopenharmony_ci &xor($c,$d); # restore $c 293e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+13)%16)); # f holds xa^xb^xc^xd 294e1051a39Sopenharmony_ci &rotl($f,1); # f=ROTATE(f,1) 295e1051a39Sopenharmony_ci &and($tmp1,$c); 296e1051a39Sopenharmony_ci &rotr($b,7); # b=ROTATE(b,30) 297e1051a39Sopenharmony_ci &add($e,$tmp1); # e+=c&d 298e1051a39Sopenharmony_ci &mov($tmp1,$a); # b in next round 299e1051a39Sopenharmony_ci &mov(&swtmp($n%16),$f); # xi=f 300e1051a39Sopenharmony_ci &rotl($a,5); # ROTATE(a,5) 301e1051a39Sopenharmony_ci &xor($b,$c) if ($n<59); 302e1051a39Sopenharmony_ci &and($tmp1,$b) if ($n<59);# tmp1 to hold F_40_59(b,c,d) 303e1051a39Sopenharmony_ci &lea($f,&DWP(0x8f1bbcdc,$f,$e));# f+=K_40_59+e+(b&(c^d)) 304e1051a39Sopenharmony_ci &mov($e,&swtmp(($n+1)%16)); # pre-fetch f for next round 305e1051a39Sopenharmony_ci &add($f,$a); # f+=ROTATE(a,5) 306e1051a39Sopenharmony_ci} else { 307e1051a39Sopenharmony_ci &mov($tmp1,$c); # tmp1 to hold F_40_59(b,c,d) 308e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+2)%16)); # f to hold Xupdate(xi,xa,xb,xc,xd) 309e1051a39Sopenharmony_ci &xor($tmp1,$d); 310e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+8)%16)); 311e1051a39Sopenharmony_ci &and($tmp1,$b); 312e1051a39Sopenharmony_ci &xor($f,&swtmp(($n+13)%16)); # f holds xa^xb^xc^xd 313e1051a39Sopenharmony_ci &rotl($f,1); # f=ROTATE(f,1) 314e1051a39Sopenharmony_ci &add($tmp1,$e); # b&(c^d)+=e 315e1051a39Sopenharmony_ci &rotr($b,2); # b=ROTATE(b,30) 316e1051a39Sopenharmony_ci &mov($e,$a); # e becomes volatile 317e1051a39Sopenharmony_ci &rotl($e,5); # ROTATE(a,5) 318e1051a39Sopenharmony_ci &mov(&swtmp($n%16),$f); # xi=f 319e1051a39Sopenharmony_ci &lea($f,&DWP(0x8f1bbcdc,$f,$tmp1));# f+=K_40_59+e+(b&(c^d)) 320e1051a39Sopenharmony_ci &mov($tmp1,$c); 321e1051a39Sopenharmony_ci &add($f,$e); # f+=ROTATE(a,5) 322e1051a39Sopenharmony_ci &and($tmp1,$d); 323e1051a39Sopenharmony_ci &mov($e,&swtmp(($n+1)%16)); # pre-fetch f for next round 324e1051a39Sopenharmony_ci &add($f,$tmp1); # f+=c&d 325e1051a39Sopenharmony_ci} 326e1051a39Sopenharmony_ci } 327e1051a39Sopenharmony_ci 328e1051a39Sopenharmony_ci&function_begin("sha1_block_data_order"); 329e1051a39Sopenharmony_ciif ($xmm) { 330e1051a39Sopenharmony_ci &static_label("shaext_shortcut") if ($shaext); 331e1051a39Sopenharmony_ci &static_label("ssse3_shortcut"); 332e1051a39Sopenharmony_ci &static_label("avx_shortcut") if ($ymm); 333e1051a39Sopenharmony_ci &static_label("K_XX_XX"); 334e1051a39Sopenharmony_ci 335e1051a39Sopenharmony_ci &call (&label("pic_point")); # make it PIC! 336e1051a39Sopenharmony_ci &set_label("pic_point"); 337e1051a39Sopenharmony_ci &blindpop($tmp1); 338e1051a39Sopenharmony_ci &picmeup($T,"OPENSSL_ia32cap_P",$tmp1,&label("pic_point")); 339e1051a39Sopenharmony_ci &lea ($tmp1,&DWP(&label("K_XX_XX")."-".&label("pic_point"),$tmp1)); 340e1051a39Sopenharmony_ci 341e1051a39Sopenharmony_ci &mov ($A,&DWP(0,$T)); 342e1051a39Sopenharmony_ci &mov ($D,&DWP(4,$T)); 343e1051a39Sopenharmony_ci &test ($D,1<<9); # check SSSE3 bit 344e1051a39Sopenharmony_ci &jz (&label("x86")); 345e1051a39Sopenharmony_ci &mov ($C,&DWP(8,$T)); 346e1051a39Sopenharmony_ci &test ($A,1<<24); # check FXSR bit 347e1051a39Sopenharmony_ci &jz (&label("x86")); 348e1051a39Sopenharmony_ci if ($shaext) { 349e1051a39Sopenharmony_ci &test ($C,1<<29); # check SHA bit 350e1051a39Sopenharmony_ci &jnz (&label("shaext_shortcut")); 351e1051a39Sopenharmony_ci } 352e1051a39Sopenharmony_ci if ($ymm) { 353e1051a39Sopenharmony_ci &and ($D,1<<28); # mask AVX bit 354e1051a39Sopenharmony_ci &and ($A,1<<30); # mask "Intel CPU" bit 355e1051a39Sopenharmony_ci &or ($A,$D); 356e1051a39Sopenharmony_ci &cmp ($A,1<<28|1<<30); 357e1051a39Sopenharmony_ci &je (&label("avx_shortcut")); 358e1051a39Sopenharmony_ci } 359e1051a39Sopenharmony_ci &jmp (&label("ssse3_shortcut")); 360e1051a39Sopenharmony_ci &set_label("x86",16); 361e1051a39Sopenharmony_ci} 362e1051a39Sopenharmony_ci &mov($tmp1,&wparam(0)); # SHA_CTX *c 363e1051a39Sopenharmony_ci &mov($T,&wparam(1)); # const void *input 364e1051a39Sopenharmony_ci &mov($A,&wparam(2)); # size_t num 365e1051a39Sopenharmony_ci &stack_push(16+3); # allocate X[16] 366e1051a39Sopenharmony_ci &shl($A,6); 367e1051a39Sopenharmony_ci &add($A,$T); 368e1051a39Sopenharmony_ci &mov(&wparam(2),$A); # pointer beyond the end of input 369e1051a39Sopenharmony_ci &mov($E,&DWP(16,$tmp1));# pre-load E 370e1051a39Sopenharmony_ci &jmp(&label("loop")); 371e1051a39Sopenharmony_ci 372e1051a39Sopenharmony_ci&set_label("loop",16); 373e1051a39Sopenharmony_ci 374e1051a39Sopenharmony_ci # copy input chunk to X, but reversing byte order! 375e1051a39Sopenharmony_ci for ($i=0; $i<16; $i+=4) 376e1051a39Sopenharmony_ci { 377e1051a39Sopenharmony_ci &mov($A,&DWP(4*($i+0),$T)); 378e1051a39Sopenharmony_ci &mov($B,&DWP(4*($i+1),$T)); 379e1051a39Sopenharmony_ci &mov($C,&DWP(4*($i+2),$T)); 380e1051a39Sopenharmony_ci &mov($D,&DWP(4*($i+3),$T)); 381e1051a39Sopenharmony_ci &bswap($A); 382e1051a39Sopenharmony_ci &bswap($B); 383e1051a39Sopenharmony_ci &bswap($C); 384e1051a39Sopenharmony_ci &bswap($D); 385e1051a39Sopenharmony_ci &mov(&swtmp($i+0),$A); 386e1051a39Sopenharmony_ci &mov(&swtmp($i+1),$B); 387e1051a39Sopenharmony_ci &mov(&swtmp($i+2),$C); 388e1051a39Sopenharmony_ci &mov(&swtmp($i+3),$D); 389e1051a39Sopenharmony_ci } 390e1051a39Sopenharmony_ci &mov(&wparam(1),$T); # redundant in 1st spin 391e1051a39Sopenharmony_ci 392e1051a39Sopenharmony_ci &mov($A,&DWP(0,$tmp1)); # load SHA_CTX 393e1051a39Sopenharmony_ci &mov($B,&DWP(4,$tmp1)); 394e1051a39Sopenharmony_ci &mov($C,&DWP(8,$tmp1)); 395e1051a39Sopenharmony_ci &mov($D,&DWP(12,$tmp1)); 396e1051a39Sopenharmony_ci # E is pre-loaded 397e1051a39Sopenharmony_ci 398e1051a39Sopenharmony_ci for($i=0;$i<16;$i++) { &BODY_00_15($i,@V); unshift(@V,pop(@V)); } 399e1051a39Sopenharmony_ci for(;$i<20;$i++) { &BODY_16_19($i,@V); unshift(@V,pop(@V)); } 400e1051a39Sopenharmony_ci for(;$i<40;$i++) { &BODY_20_39($i,@V); unshift(@V,pop(@V)); } 401e1051a39Sopenharmony_ci for(;$i<60;$i++) { &BODY_40_59($i,@V); unshift(@V,pop(@V)); } 402e1051a39Sopenharmony_ci for(;$i<80;$i++) { &BODY_20_39($i,@V); unshift(@V,pop(@V)); } 403e1051a39Sopenharmony_ci 404e1051a39Sopenharmony_ci (($V[5] eq $D) and ($V[0] eq $E)) or die; # double-check 405e1051a39Sopenharmony_ci 406e1051a39Sopenharmony_ci &mov($tmp1,&wparam(0)); # re-load SHA_CTX* 407e1051a39Sopenharmony_ci &mov($D,&wparam(1)); # D is last "T" and is discarded 408e1051a39Sopenharmony_ci 409e1051a39Sopenharmony_ci &add($E,&DWP(0,$tmp1)); # E is last "A"... 410e1051a39Sopenharmony_ci &add($T,&DWP(4,$tmp1)); 411e1051a39Sopenharmony_ci &add($A,&DWP(8,$tmp1)); 412e1051a39Sopenharmony_ci &add($B,&DWP(12,$tmp1)); 413e1051a39Sopenharmony_ci &add($C,&DWP(16,$tmp1)); 414e1051a39Sopenharmony_ci 415e1051a39Sopenharmony_ci &mov(&DWP(0,$tmp1),$E); # update SHA_CTX 416e1051a39Sopenharmony_ci &add($D,64); # advance input pointer 417e1051a39Sopenharmony_ci &mov(&DWP(4,$tmp1),$T); 418e1051a39Sopenharmony_ci &cmp($D,&wparam(2)); # have we reached the end yet? 419e1051a39Sopenharmony_ci &mov(&DWP(8,$tmp1),$A); 420e1051a39Sopenharmony_ci &mov($E,$C); # C is last "E" which needs to be "pre-loaded" 421e1051a39Sopenharmony_ci &mov(&DWP(12,$tmp1),$B); 422e1051a39Sopenharmony_ci &mov($T,$D); # input pointer 423e1051a39Sopenharmony_ci &mov(&DWP(16,$tmp1),$C); 424e1051a39Sopenharmony_ci &jb(&label("loop")); 425e1051a39Sopenharmony_ci 426e1051a39Sopenharmony_ci &stack_pop(16+3); 427e1051a39Sopenharmony_ci&function_end("sha1_block_data_order"); 428e1051a39Sopenharmony_ci 429e1051a39Sopenharmony_ciif ($xmm) { 430e1051a39Sopenharmony_ciif ($shaext) { 431e1051a39Sopenharmony_ci###################################################################### 432e1051a39Sopenharmony_ci# Intel SHA Extensions implementation of SHA1 update function. 433e1051a39Sopenharmony_ci# 434e1051a39Sopenharmony_cimy ($ctx,$inp,$num)=("edi","esi","ecx"); 435e1051a39Sopenharmony_cimy ($ABCD,$E,$E_,$BSWAP)=map("xmm$_",(0..3)); 436e1051a39Sopenharmony_cimy @MSG=map("xmm$_",(4..7)); 437e1051a39Sopenharmony_ci 438e1051a39Sopenharmony_cisub sha1rnds4 { 439e1051a39Sopenharmony_ci my ($dst,$src,$imm)=@_; 440e1051a39Sopenharmony_ci if ("$dst:$src" =~ /xmm([0-7]):xmm([0-7])/) 441e1051a39Sopenharmony_ci { &data_byte(0x0f,0x3a,0xcc,0xc0|($1<<3)|$2,$imm); } 442e1051a39Sopenharmony_ci} 443e1051a39Sopenharmony_cisub sha1op38 { 444e1051a39Sopenharmony_ci my ($opcodelet,$dst,$src)=@_; 445e1051a39Sopenharmony_ci if ("$dst:$src" =~ /xmm([0-7]):xmm([0-7])/) 446e1051a39Sopenharmony_ci { &data_byte(0x0f,0x38,$opcodelet,0xc0|($1<<3)|$2); } 447e1051a39Sopenharmony_ci} 448e1051a39Sopenharmony_cisub sha1nexte { sha1op38(0xc8,@_); } 449e1051a39Sopenharmony_cisub sha1msg1 { sha1op38(0xc9,@_); } 450e1051a39Sopenharmony_cisub sha1msg2 { sha1op38(0xca,@_); } 451e1051a39Sopenharmony_ci 452e1051a39Sopenharmony_ci&function_begin("_sha1_block_data_order_shaext"); 453e1051a39Sopenharmony_ci &call (&label("pic_point")); # make it PIC! 454e1051a39Sopenharmony_ci &set_label("pic_point"); 455e1051a39Sopenharmony_ci &blindpop($tmp1); 456e1051a39Sopenharmony_ci &lea ($tmp1,&DWP(&label("K_XX_XX")."-".&label("pic_point"),$tmp1)); 457e1051a39Sopenharmony_ci&set_label("shaext_shortcut"); 458e1051a39Sopenharmony_ci &mov ($ctx,&wparam(0)); 459e1051a39Sopenharmony_ci &mov ("ebx","esp"); 460e1051a39Sopenharmony_ci &mov ($inp,&wparam(1)); 461e1051a39Sopenharmony_ci &mov ($num,&wparam(2)); 462e1051a39Sopenharmony_ci &sub ("esp",32); 463e1051a39Sopenharmony_ci 464e1051a39Sopenharmony_ci &movdqu ($ABCD,&QWP(0,$ctx)); 465e1051a39Sopenharmony_ci &movd ($E,&DWP(16,$ctx)); 466e1051a39Sopenharmony_ci &and ("esp",-32); 467e1051a39Sopenharmony_ci &movdqa ($BSWAP,&QWP(0x50,$tmp1)); # byte-n-word swap 468e1051a39Sopenharmony_ci 469e1051a39Sopenharmony_ci &movdqu (@MSG[0],&QWP(0,$inp)); 470e1051a39Sopenharmony_ci &pshufd ($ABCD,$ABCD,0b00011011); # flip word order 471e1051a39Sopenharmony_ci &movdqu (@MSG[1],&QWP(0x10,$inp)); 472e1051a39Sopenharmony_ci &pshufd ($E,$E,0b00011011); # flip word order 473e1051a39Sopenharmony_ci &movdqu (@MSG[2],&QWP(0x20,$inp)); 474e1051a39Sopenharmony_ci &pshufb (@MSG[0],$BSWAP); 475e1051a39Sopenharmony_ci &movdqu (@MSG[3],&QWP(0x30,$inp)); 476e1051a39Sopenharmony_ci &pshufb (@MSG[1],$BSWAP); 477e1051a39Sopenharmony_ci &pshufb (@MSG[2],$BSWAP); 478e1051a39Sopenharmony_ci &pshufb (@MSG[3],$BSWAP); 479e1051a39Sopenharmony_ci &jmp (&label("loop_shaext")); 480e1051a39Sopenharmony_ci 481e1051a39Sopenharmony_ci&set_label("loop_shaext",16); 482e1051a39Sopenharmony_ci &dec ($num); 483e1051a39Sopenharmony_ci &lea ("eax",&DWP(0x40,$inp)); 484e1051a39Sopenharmony_ci &movdqa (&QWP(0,"esp"),$E); # offload $E 485e1051a39Sopenharmony_ci &paddd ($E,@MSG[0]); 486e1051a39Sopenharmony_ci &cmovne ($inp,"eax"); 487e1051a39Sopenharmony_ci &movdqa (&QWP(16,"esp"),$ABCD); # offload $ABCD 488e1051a39Sopenharmony_ci 489e1051a39Sopenharmony_cifor($i=0;$i<20-4;$i+=2) { 490e1051a39Sopenharmony_ci &sha1msg1 (@MSG[0],@MSG[1]); 491e1051a39Sopenharmony_ci &movdqa ($E_,$ABCD); 492e1051a39Sopenharmony_ci &sha1rnds4 ($ABCD,$E,int($i/5)); # 0-3... 493e1051a39Sopenharmony_ci &sha1nexte ($E_,@MSG[1]); 494e1051a39Sopenharmony_ci &pxor (@MSG[0],@MSG[2]); 495e1051a39Sopenharmony_ci &sha1msg1 (@MSG[1],@MSG[2]); 496e1051a39Sopenharmony_ci &sha1msg2 (@MSG[0],@MSG[3]); 497e1051a39Sopenharmony_ci 498e1051a39Sopenharmony_ci &movdqa ($E,$ABCD); 499e1051a39Sopenharmony_ci &sha1rnds4 ($ABCD,$E_,int(($i+1)/5)); 500e1051a39Sopenharmony_ci &sha1nexte ($E,@MSG[2]); 501e1051a39Sopenharmony_ci &pxor (@MSG[1],@MSG[3]); 502e1051a39Sopenharmony_ci &sha1msg2 (@MSG[1],@MSG[0]); 503e1051a39Sopenharmony_ci 504e1051a39Sopenharmony_ci push(@MSG,shift(@MSG)); push(@MSG,shift(@MSG)); 505e1051a39Sopenharmony_ci} 506e1051a39Sopenharmony_ci &movdqu (@MSG[0],&QWP(0,$inp)); 507e1051a39Sopenharmony_ci &movdqa ($E_,$ABCD); 508e1051a39Sopenharmony_ci &sha1rnds4 ($ABCD,$E,3); # 64-67 509e1051a39Sopenharmony_ci &sha1nexte ($E_,@MSG[1]); 510e1051a39Sopenharmony_ci &movdqu (@MSG[1],&QWP(0x10,$inp)); 511e1051a39Sopenharmony_ci &pshufb (@MSG[0],$BSWAP); 512e1051a39Sopenharmony_ci 513e1051a39Sopenharmony_ci &movdqa ($E,$ABCD); 514e1051a39Sopenharmony_ci &sha1rnds4 ($ABCD,$E_,3); # 68-71 515e1051a39Sopenharmony_ci &sha1nexte ($E,@MSG[2]); 516e1051a39Sopenharmony_ci &movdqu (@MSG[2],&QWP(0x20,$inp)); 517e1051a39Sopenharmony_ci &pshufb (@MSG[1],$BSWAP); 518e1051a39Sopenharmony_ci 519e1051a39Sopenharmony_ci &movdqa ($E_,$ABCD); 520e1051a39Sopenharmony_ci &sha1rnds4 ($ABCD,$E,3); # 72-75 521e1051a39Sopenharmony_ci &sha1nexte ($E_,@MSG[3]); 522e1051a39Sopenharmony_ci &movdqu (@MSG[3],&QWP(0x30,$inp)); 523e1051a39Sopenharmony_ci &pshufb (@MSG[2],$BSWAP); 524e1051a39Sopenharmony_ci 525e1051a39Sopenharmony_ci &movdqa ($E,$ABCD); 526e1051a39Sopenharmony_ci &sha1rnds4 ($ABCD,$E_,3); # 76-79 527e1051a39Sopenharmony_ci &movdqa ($E_,&QWP(0,"esp")); 528e1051a39Sopenharmony_ci &pshufb (@MSG[3],$BSWAP); 529e1051a39Sopenharmony_ci &sha1nexte ($E,$E_); 530e1051a39Sopenharmony_ci &paddd ($ABCD,&QWP(16,"esp")); 531e1051a39Sopenharmony_ci 532e1051a39Sopenharmony_ci &jnz (&label("loop_shaext")); 533e1051a39Sopenharmony_ci 534e1051a39Sopenharmony_ci &pshufd ($ABCD,$ABCD,0b00011011); 535e1051a39Sopenharmony_ci &pshufd ($E,$E,0b00011011); 536e1051a39Sopenharmony_ci &movdqu (&QWP(0,$ctx),$ABCD) 537e1051a39Sopenharmony_ci &movd (&DWP(16,$ctx),$E); 538e1051a39Sopenharmony_ci &mov ("esp","ebx"); 539e1051a39Sopenharmony_ci&function_end("_sha1_block_data_order_shaext"); 540e1051a39Sopenharmony_ci} 541e1051a39Sopenharmony_ci###################################################################### 542e1051a39Sopenharmony_ci# The SSSE3 implementation. 543e1051a39Sopenharmony_ci# 544e1051a39Sopenharmony_ci# %xmm[0-7] are used as ring @X[] buffer containing quadruples of last 545e1051a39Sopenharmony_ci# 32 elements of the message schedule or Xupdate outputs. First 4 546e1051a39Sopenharmony_ci# quadruples are simply byte-swapped input, next 4 are calculated 547e1051a39Sopenharmony_ci# according to method originally suggested by Dean Gaudet (modulo 548e1051a39Sopenharmony_ci# being implemented in SSSE3). Once 8 quadruples or 32 elements are 549e1051a39Sopenharmony_ci# collected, it switches to routine proposed by Max Locktyukhin. 550e1051a39Sopenharmony_ci# 551e1051a39Sopenharmony_ci# Calculations inevitably require temporary registers, and there are 552e1051a39Sopenharmony_ci# no %xmm registers left to spare. For this reason part of the ring 553e1051a39Sopenharmony_ci# buffer, X[2..4] to be specific, is offloaded to 3 quadriples ring 554e1051a39Sopenharmony_ci# buffer on the stack. Keep in mind that X[2] is alias X[-6], X[3] - 555e1051a39Sopenharmony_ci# X[-5], and X[4] - X[-4]... 556e1051a39Sopenharmony_ci# 557e1051a39Sopenharmony_ci# Another notable optimization is aggressive stack frame compression 558e1051a39Sopenharmony_ci# aiming to minimize amount of 9-byte instructions... 559e1051a39Sopenharmony_ci# 560e1051a39Sopenharmony_ci# Yet another notable optimization is "jumping" $B variable. It means 561e1051a39Sopenharmony_ci# that there is no register permanently allocated for $B value. This 562e1051a39Sopenharmony_ci# allowed to eliminate one instruction from body_20_39... 563e1051a39Sopenharmony_ci# 564e1051a39Sopenharmony_cimy $Xi=4; # 4xSIMD Xupdate round, start pre-seeded 565e1051a39Sopenharmony_cimy @X=map("xmm$_",(4..7,0..3)); # pre-seeded for $Xi=4 566e1051a39Sopenharmony_cimy @V=($A,$B,$C,$D,$E); 567e1051a39Sopenharmony_cimy $j=0; # hash round 568e1051a39Sopenharmony_cimy $rx=0; 569e1051a39Sopenharmony_cimy @T=($T,$tmp1); 570e1051a39Sopenharmony_cimy $inp; 571e1051a39Sopenharmony_ci 572e1051a39Sopenharmony_cimy $_rol=sub { &rol(@_) }; 573e1051a39Sopenharmony_cimy $_ror=sub { &ror(@_) }; 574e1051a39Sopenharmony_ci 575e1051a39Sopenharmony_ci&function_begin("_sha1_block_data_order_ssse3"); 576e1051a39Sopenharmony_ci &call (&label("pic_point")); # make it PIC! 577e1051a39Sopenharmony_ci &set_label("pic_point"); 578e1051a39Sopenharmony_ci &blindpop($tmp1); 579e1051a39Sopenharmony_ci &lea ($tmp1,&DWP(&label("K_XX_XX")."-".&label("pic_point"),$tmp1)); 580e1051a39Sopenharmony_ci&set_label("ssse3_shortcut"); 581e1051a39Sopenharmony_ci 582e1051a39Sopenharmony_ci &movdqa (@X[3],&QWP(0,$tmp1)); # K_00_19 583e1051a39Sopenharmony_ci &movdqa (@X[4],&QWP(16,$tmp1)); # K_20_39 584e1051a39Sopenharmony_ci &movdqa (@X[5],&QWP(32,$tmp1)); # K_40_59 585e1051a39Sopenharmony_ci &movdqa (@X[6],&QWP(48,$tmp1)); # K_60_79 586e1051a39Sopenharmony_ci &movdqa (@X[2],&QWP(64,$tmp1)); # pbswap mask 587e1051a39Sopenharmony_ci 588e1051a39Sopenharmony_ci &mov ($E,&wparam(0)); # load argument block 589e1051a39Sopenharmony_ci &mov ($inp=@T[1],&wparam(1)); 590e1051a39Sopenharmony_ci &mov ($D,&wparam(2)); 591e1051a39Sopenharmony_ci &mov (@T[0],"esp"); 592e1051a39Sopenharmony_ci 593e1051a39Sopenharmony_ci # stack frame layout 594e1051a39Sopenharmony_ci # 595e1051a39Sopenharmony_ci # +0 X[0]+K X[1]+K X[2]+K X[3]+K # XMM->IALU xfer area 596e1051a39Sopenharmony_ci # X[4]+K X[5]+K X[6]+K X[7]+K 597e1051a39Sopenharmony_ci # X[8]+K X[9]+K X[10]+K X[11]+K 598e1051a39Sopenharmony_ci # X[12]+K X[13]+K X[14]+K X[15]+K 599e1051a39Sopenharmony_ci # 600e1051a39Sopenharmony_ci # +64 X[0] X[1] X[2] X[3] # XMM->XMM backtrace area 601e1051a39Sopenharmony_ci # X[4] X[5] X[6] X[7] 602e1051a39Sopenharmony_ci # X[8] X[9] X[10] X[11] # even borrowed for K_00_19 603e1051a39Sopenharmony_ci # 604e1051a39Sopenharmony_ci # +112 K_20_39 K_20_39 K_20_39 K_20_39 # constants 605e1051a39Sopenharmony_ci # K_40_59 K_40_59 K_40_59 K_40_59 606e1051a39Sopenharmony_ci # K_60_79 K_60_79 K_60_79 K_60_79 607e1051a39Sopenharmony_ci # K_00_19 K_00_19 K_00_19 K_00_19 608e1051a39Sopenharmony_ci # pbswap mask 609e1051a39Sopenharmony_ci # 610e1051a39Sopenharmony_ci # +192 ctx # argument block 611e1051a39Sopenharmony_ci # +196 inp 612e1051a39Sopenharmony_ci # +200 end 613e1051a39Sopenharmony_ci # +204 esp 614e1051a39Sopenharmony_ci &sub ("esp",208); 615e1051a39Sopenharmony_ci &and ("esp",-64); 616e1051a39Sopenharmony_ci 617e1051a39Sopenharmony_ci &movdqa (&QWP(112+0,"esp"),@X[4]); # copy constants 618e1051a39Sopenharmony_ci &movdqa (&QWP(112+16,"esp"),@X[5]); 619e1051a39Sopenharmony_ci &movdqa (&QWP(112+32,"esp"),@X[6]); 620e1051a39Sopenharmony_ci &shl ($D,6); # len*64 621e1051a39Sopenharmony_ci &movdqa (&QWP(112+48,"esp"),@X[3]); 622e1051a39Sopenharmony_ci &add ($D,$inp); # end of input 623e1051a39Sopenharmony_ci &movdqa (&QWP(112+64,"esp"),@X[2]); 624e1051a39Sopenharmony_ci &add ($inp,64); 625e1051a39Sopenharmony_ci &mov (&DWP(192+0,"esp"),$E); # save argument block 626e1051a39Sopenharmony_ci &mov (&DWP(192+4,"esp"),$inp); 627e1051a39Sopenharmony_ci &mov (&DWP(192+8,"esp"),$D); 628e1051a39Sopenharmony_ci &mov (&DWP(192+12,"esp"),@T[0]); # save original %esp 629e1051a39Sopenharmony_ci 630e1051a39Sopenharmony_ci &mov ($A,&DWP(0,$E)); # load context 631e1051a39Sopenharmony_ci &mov ($B,&DWP(4,$E)); 632e1051a39Sopenharmony_ci &mov ($C,&DWP(8,$E)); 633e1051a39Sopenharmony_ci &mov ($D,&DWP(12,$E)); 634e1051a39Sopenharmony_ci &mov ($E,&DWP(16,$E)); 635e1051a39Sopenharmony_ci &mov (@T[0],$B); # magic seed 636e1051a39Sopenharmony_ci 637e1051a39Sopenharmony_ci &movdqu (@X[-4&7],&QWP(-64,$inp)); # load input to %xmm[0-3] 638e1051a39Sopenharmony_ci &movdqu (@X[-3&7],&QWP(-48,$inp)); 639e1051a39Sopenharmony_ci &movdqu (@X[-2&7],&QWP(-32,$inp)); 640e1051a39Sopenharmony_ci &movdqu (@X[-1&7],&QWP(-16,$inp)); 641e1051a39Sopenharmony_ci &pshufb (@X[-4&7],@X[2]); # byte swap 642e1051a39Sopenharmony_ci &pshufb (@X[-3&7],@X[2]); 643e1051a39Sopenharmony_ci &pshufb (@X[-2&7],@X[2]); 644e1051a39Sopenharmony_ci &movdqa (&QWP(112-16,"esp"),@X[3]); # borrow last backtrace slot 645e1051a39Sopenharmony_ci &pshufb (@X[-1&7],@X[2]); 646e1051a39Sopenharmony_ci &paddd (@X[-4&7],@X[3]); # add K_00_19 647e1051a39Sopenharmony_ci &paddd (@X[-3&7],@X[3]); 648e1051a39Sopenharmony_ci &paddd (@X[-2&7],@X[3]); 649e1051a39Sopenharmony_ci &movdqa (&QWP(0,"esp"),@X[-4&7]); # X[]+K xfer to IALU 650e1051a39Sopenharmony_ci &psubd (@X[-4&7],@X[3]); # restore X[] 651e1051a39Sopenharmony_ci &movdqa (&QWP(0+16,"esp"),@X[-3&7]); 652e1051a39Sopenharmony_ci &psubd (@X[-3&7],@X[3]); 653e1051a39Sopenharmony_ci &movdqa (&QWP(0+32,"esp"),@X[-2&7]); 654e1051a39Sopenharmony_ci &mov (@T[1],$C); 655e1051a39Sopenharmony_ci &psubd (@X[-2&7],@X[3]); 656e1051a39Sopenharmony_ci &xor (@T[1],$D); 657e1051a39Sopenharmony_ci &pshufd (@X[0],@X[-4&7],0xee); # was &movdqa (@X[0],@X[-3&7]); 658e1051a39Sopenharmony_ci &and (@T[0],@T[1]); 659e1051a39Sopenharmony_ci &jmp (&label("loop")); 660e1051a39Sopenharmony_ci 661e1051a39Sopenharmony_ci###################################################################### 662e1051a39Sopenharmony_ci# SSE instruction sequence is first broken to groups of independent 663e1051a39Sopenharmony_ci# instructions, independent in respect to their inputs and shifter 664e1051a39Sopenharmony_ci# (not all architectures have more than one). Then IALU instructions 665e1051a39Sopenharmony_ci# are "knitted in" between the SSE groups. Distance is maintained for 666e1051a39Sopenharmony_ci# SSE latency of 2 in hope that it fits better upcoming AMD Bulldozer 667e1051a39Sopenharmony_ci# [which allegedly also implements SSSE3]... 668e1051a39Sopenharmony_ci# 669e1051a39Sopenharmony_ci# Temporary registers usage. X[2] is volatile at the entry and at the 670e1051a39Sopenharmony_ci# end is restored from backtrace ring buffer. X[3] is expected to 671e1051a39Sopenharmony_ci# contain current K_XX_XX constant and is used to calculate X[-1]+K 672e1051a39Sopenharmony_ci# from previous round, it becomes volatile the moment the value is 673e1051a39Sopenharmony_ci# saved to stack for transfer to IALU. X[4] becomes volatile whenever 674e1051a39Sopenharmony_ci# X[-4] is accumulated and offloaded to backtrace ring buffer, at the 675e1051a39Sopenharmony_ci# end it is loaded with next K_XX_XX [which becomes X[3] in next 676e1051a39Sopenharmony_ci# round]... 677e1051a39Sopenharmony_ci# 678e1051a39Sopenharmony_cisub Xupdate_ssse3_16_31() # recall that $Xi starts with 4 679e1051a39Sopenharmony_ci{ use integer; 680e1051a39Sopenharmony_ci my $body = shift; 681e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 40 instructions 682e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 683e1051a39Sopenharmony_ci 684e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 685e1051a39Sopenharmony_ci eval(shift(@insns)); 686e1051a39Sopenharmony_ci eval(shift(@insns)); 687e1051a39Sopenharmony_ci &punpcklqdq(@X[0],@X[-3&7]); # compose "X[-14]" in "X[0]", was &palignr(@X[0],@X[-4&7],8); 688e1051a39Sopenharmony_ci &movdqa (@X[2],@X[-1&7]); 689e1051a39Sopenharmony_ci eval(shift(@insns)); 690e1051a39Sopenharmony_ci eval(shift(@insns)); 691e1051a39Sopenharmony_ci 692e1051a39Sopenharmony_ci &paddd (@X[3],@X[-1&7]); 693e1051a39Sopenharmony_ci &movdqa (&QWP(64+16*(($Xi-4)%3),"esp"),@X[-4&7]);# save X[] to backtrace buffer 694e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 695e1051a39Sopenharmony_ci eval(shift(@insns)); 696e1051a39Sopenharmony_ci &psrldq (@X[2],4); # "X[-3]", 3 dwords 697e1051a39Sopenharmony_ci eval(shift(@insns)); 698e1051a39Sopenharmony_ci eval(shift(@insns)); 699e1051a39Sopenharmony_ci &pxor (@X[0],@X[-4&7]); # "X[0]"^="X[-16]" 700e1051a39Sopenharmony_ci eval(shift(@insns)); 701e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 702e1051a39Sopenharmony_ci 703e1051a39Sopenharmony_ci &pxor (@X[2],@X[-2&7]); # "X[-3]"^"X[-8]" 704e1051a39Sopenharmony_ci eval(shift(@insns)); 705e1051a39Sopenharmony_ci eval(shift(@insns)); 706e1051a39Sopenharmony_ci eval(shift(@insns)); 707e1051a39Sopenharmony_ci 708e1051a39Sopenharmony_ci &pxor (@X[0],@X[2]); # "X[0]"^="X[-3]"^"X[-8]" 709e1051a39Sopenharmony_ci eval(shift(@insns)); 710e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 711e1051a39Sopenharmony_ci &movdqa (&QWP(0+16*(($Xi-1)&3),"esp"),@X[3]); # X[]+K xfer to IALU 712e1051a39Sopenharmony_ci eval(shift(@insns)); 713e1051a39Sopenharmony_ci eval(shift(@insns)); 714e1051a39Sopenharmony_ci 715e1051a39Sopenharmony_ci &movdqa (@X[4],@X[0]); 716e1051a39Sopenharmony_ci eval(shift(@insns)); 717e1051a39Sopenharmony_ci eval(shift(@insns)); 718e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 719e1051a39Sopenharmony_ci &movdqa (@X[2],@X[0]); 720e1051a39Sopenharmony_ci eval(shift(@insns)); 721e1051a39Sopenharmony_ci 722e1051a39Sopenharmony_ci &pslldq (@X[4],12); # "X[0]"<<96, extract one dword 723e1051a39Sopenharmony_ci &paddd (@X[0],@X[0]); 724e1051a39Sopenharmony_ci eval(shift(@insns)); 725e1051a39Sopenharmony_ci eval(shift(@insns)); 726e1051a39Sopenharmony_ci 727e1051a39Sopenharmony_ci &psrld (@X[2],31); 728e1051a39Sopenharmony_ci eval(shift(@insns)); 729e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 730e1051a39Sopenharmony_ci &movdqa (@X[3],@X[4]); 731e1051a39Sopenharmony_ci eval(shift(@insns)); 732e1051a39Sopenharmony_ci eval(shift(@insns)); 733e1051a39Sopenharmony_ci eval(shift(@insns)); 734e1051a39Sopenharmony_ci 735e1051a39Sopenharmony_ci &psrld (@X[4],30); 736e1051a39Sopenharmony_ci eval(shift(@insns)); 737e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 738e1051a39Sopenharmony_ci &por (@X[0],@X[2]); # "X[0]"<<<=1 739e1051a39Sopenharmony_ci eval(shift(@insns)); 740e1051a39Sopenharmony_ci &movdqa (@X[2],&QWP(64+16*(($Xi-6)%3),"esp")) if ($Xi>5); # restore X[] from backtrace buffer 741e1051a39Sopenharmony_ci eval(shift(@insns)); 742e1051a39Sopenharmony_ci eval(shift(@insns)); 743e1051a39Sopenharmony_ci 744e1051a39Sopenharmony_ci &pslld (@X[3],2); 745e1051a39Sopenharmony_ci eval(shift(@insns)); 746e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 747e1051a39Sopenharmony_ci &pxor (@X[0],@X[4]); 748e1051a39Sopenharmony_ci &movdqa (@X[4],&QWP(112-16+16*(($Xi)/5),"esp")); # K_XX_XX 749e1051a39Sopenharmony_ci eval(shift(@insns)); 750e1051a39Sopenharmony_ci eval(shift(@insns)); 751e1051a39Sopenharmony_ci 752e1051a39Sopenharmony_ci &pxor (@X[0],@X[3]); # "X[0]"^=("X[0]"<<96)<<<2 753e1051a39Sopenharmony_ci &pshufd (@X[1],@X[-3&7],0xee) if ($Xi<7); # was &movdqa (@X[1],@X[-2&7]) 754e1051a39Sopenharmony_ci &pshufd (@X[3],@X[-1&7],0xee) if ($Xi==7); 755e1051a39Sopenharmony_ci eval(shift(@insns)); 756e1051a39Sopenharmony_ci eval(shift(@insns)); 757e1051a39Sopenharmony_ci 758e1051a39Sopenharmony_ci foreach (@insns) { eval; } # remaining instructions [if any] 759e1051a39Sopenharmony_ci 760e1051a39Sopenharmony_ci $Xi++; push(@X,shift(@X)); # "rotate" X[] 761e1051a39Sopenharmony_ci} 762e1051a39Sopenharmony_ci 763e1051a39Sopenharmony_cisub Xupdate_ssse3_32_79() 764e1051a39Sopenharmony_ci{ use integer; 765e1051a39Sopenharmony_ci my $body = shift; 766e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 to 44 instructions 767e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 768e1051a39Sopenharmony_ci 769e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 770e1051a39Sopenharmony_ci &pxor (@X[0],@X[-4&7]); # "X[0]"="X[-32]"^"X[-16]" 771e1051a39Sopenharmony_ci &punpcklqdq(@X[2],@X[-1&7]); # compose "X[-6]", was &palignr(@X[2],@X[-2&7],8) 772e1051a39Sopenharmony_ci eval(shift(@insns)); 773e1051a39Sopenharmony_ci eval(shift(@insns)); 774e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 775e1051a39Sopenharmony_ci 776e1051a39Sopenharmony_ci &pxor (@X[0],@X[-7&7]); # "X[0]"^="X[-28]" 777e1051a39Sopenharmony_ci &movdqa (&QWP(64+16*(($Xi-4)%3),"esp"),@X[-4&7]); # save X[] to backtrace buffer 778e1051a39Sopenharmony_ci eval(shift(@insns)); 779e1051a39Sopenharmony_ci eval(shift(@insns)); 780e1051a39Sopenharmony_ci eval(shift(@insns)) if (@insns[0] =~ /_rol/); 781e1051a39Sopenharmony_ci if ($Xi%5) { 782e1051a39Sopenharmony_ci &movdqa (@X[4],@X[3]); # "perpetuate" K_XX_XX... 783e1051a39Sopenharmony_ci } else { # ... or load next one 784e1051a39Sopenharmony_ci &movdqa (@X[4],&QWP(112-16+16*($Xi/5),"esp")); 785e1051a39Sopenharmony_ci } 786e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 787e1051a39Sopenharmony_ci &paddd (@X[3],@X[-1&7]); 788e1051a39Sopenharmony_ci eval(shift(@insns)); 789e1051a39Sopenharmony_ci 790e1051a39Sopenharmony_ci &pxor (@X[0],@X[2]); # "X[0]"^="X[-6]" 791e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 792e1051a39Sopenharmony_ci eval(shift(@insns)); 793e1051a39Sopenharmony_ci eval(shift(@insns)); 794e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 795e1051a39Sopenharmony_ci 796e1051a39Sopenharmony_ci &movdqa (@X[2],@X[0]); 797e1051a39Sopenharmony_ci &movdqa (&QWP(0+16*(($Xi-1)&3),"esp"),@X[3]); # X[]+K xfer to IALU 798e1051a39Sopenharmony_ci eval(shift(@insns)); 799e1051a39Sopenharmony_ci eval(shift(@insns)); 800e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 801e1051a39Sopenharmony_ci eval(shift(@insns)); 802e1051a39Sopenharmony_ci eval(shift(@insns)) if (@insns[0] =~ /_rol/); 803e1051a39Sopenharmony_ci 804e1051a39Sopenharmony_ci &pslld (@X[0],2); 805e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 806e1051a39Sopenharmony_ci eval(shift(@insns)); 807e1051a39Sopenharmony_ci &psrld (@X[2],30); 808e1051a39Sopenharmony_ci eval(shift(@insns)); 809e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 810e1051a39Sopenharmony_ci eval(shift(@insns)); 811e1051a39Sopenharmony_ci eval(shift(@insns)); 812e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 813e1051a39Sopenharmony_ci eval(shift(@insns)); 814e1051a39Sopenharmony_ci eval(shift(@insns)) if (@insns[1] =~ /_rol/); 815e1051a39Sopenharmony_ci eval(shift(@insns)) if (@insns[0] =~ /_rol/); 816e1051a39Sopenharmony_ci 817e1051a39Sopenharmony_ci &por (@X[0],@X[2]); # "X[0]"<<<=2 818e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 819e1051a39Sopenharmony_ci eval(shift(@insns)); 820e1051a39Sopenharmony_ci &movdqa (@X[2],&QWP(64+16*(($Xi-6)%3),"esp")) if($Xi<19); # restore X[] from backtrace buffer 821e1051a39Sopenharmony_ci eval(shift(@insns)); 822e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 823e1051a39Sopenharmony_ci eval(shift(@insns)); 824e1051a39Sopenharmony_ci eval(shift(@insns)); 825e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 826e1051a39Sopenharmony_ci &pshufd (@X[3],@X[-1],0xee) if ($Xi<19); # was &movdqa (@X[3],@X[0]) 827e1051a39Sopenharmony_ci eval(shift(@insns)); 828e1051a39Sopenharmony_ci 829e1051a39Sopenharmony_ci foreach (@insns) { eval; } # remaining instructions 830e1051a39Sopenharmony_ci 831e1051a39Sopenharmony_ci $Xi++; push(@X,shift(@X)); # "rotate" X[] 832e1051a39Sopenharmony_ci} 833e1051a39Sopenharmony_ci 834e1051a39Sopenharmony_cisub Xuplast_ssse3_80() 835e1051a39Sopenharmony_ci{ use integer; 836e1051a39Sopenharmony_ci my $body = shift; 837e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 instructions 838e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 839e1051a39Sopenharmony_ci 840e1051a39Sopenharmony_ci eval(shift(@insns)); 841e1051a39Sopenharmony_ci eval(shift(@insns)); 842e1051a39Sopenharmony_ci eval(shift(@insns)); 843e1051a39Sopenharmony_ci eval(shift(@insns)); 844e1051a39Sopenharmony_ci eval(shift(@insns)); 845e1051a39Sopenharmony_ci eval(shift(@insns)); 846e1051a39Sopenharmony_ci eval(shift(@insns)); 847e1051a39Sopenharmony_ci &paddd (@X[3],@X[-1&7]); 848e1051a39Sopenharmony_ci eval(shift(@insns)); 849e1051a39Sopenharmony_ci eval(shift(@insns)); 850e1051a39Sopenharmony_ci eval(shift(@insns)); 851e1051a39Sopenharmony_ci eval(shift(@insns)); 852e1051a39Sopenharmony_ci 853e1051a39Sopenharmony_ci &movdqa (&QWP(0+16*(($Xi-1)&3),"esp"),@X[3]); # X[]+K xfer IALU 854e1051a39Sopenharmony_ci 855e1051a39Sopenharmony_ci foreach (@insns) { eval; } # remaining instructions 856e1051a39Sopenharmony_ci 857e1051a39Sopenharmony_ci &mov ($inp=@T[1],&DWP(192+4,"esp")); 858e1051a39Sopenharmony_ci &cmp ($inp,&DWP(192+8,"esp")); 859e1051a39Sopenharmony_ci &je (&label("done")); 860e1051a39Sopenharmony_ci 861e1051a39Sopenharmony_ci &movdqa (@X[3],&QWP(112+48,"esp")); # K_00_19 862e1051a39Sopenharmony_ci &movdqa (@X[2],&QWP(112+64,"esp")); # pbswap mask 863e1051a39Sopenharmony_ci &movdqu (@X[-4&7],&QWP(0,$inp)); # load input 864e1051a39Sopenharmony_ci &movdqu (@X[-3&7],&QWP(16,$inp)); 865e1051a39Sopenharmony_ci &movdqu (@X[-2&7],&QWP(32,$inp)); 866e1051a39Sopenharmony_ci &movdqu (@X[-1&7],&QWP(48,$inp)); 867e1051a39Sopenharmony_ci &add ($inp,64); 868e1051a39Sopenharmony_ci &pshufb (@X[-4&7],@X[2]); # byte swap 869e1051a39Sopenharmony_ci &mov (&DWP(192+4,"esp"),$inp); 870e1051a39Sopenharmony_ci &movdqa (&QWP(112-16,"esp"),@X[3]); # borrow last backtrace slot 871e1051a39Sopenharmony_ci 872e1051a39Sopenharmony_ci $Xi=0; 873e1051a39Sopenharmony_ci} 874e1051a39Sopenharmony_ci 875e1051a39Sopenharmony_cisub Xloop_ssse3() 876e1051a39Sopenharmony_ci{ use integer; 877e1051a39Sopenharmony_ci my $body = shift; 878e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 instructions 879e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 880e1051a39Sopenharmony_ci 881e1051a39Sopenharmony_ci eval(shift(@insns)); 882e1051a39Sopenharmony_ci eval(shift(@insns)); 883e1051a39Sopenharmony_ci eval(shift(@insns)); 884e1051a39Sopenharmony_ci eval(shift(@insns)); 885e1051a39Sopenharmony_ci eval(shift(@insns)); 886e1051a39Sopenharmony_ci eval(shift(@insns)); 887e1051a39Sopenharmony_ci eval(shift(@insns)); 888e1051a39Sopenharmony_ci &pshufb (@X[($Xi-3)&7],@X[2]); 889e1051a39Sopenharmony_ci eval(shift(@insns)); 890e1051a39Sopenharmony_ci eval(shift(@insns)); 891e1051a39Sopenharmony_ci eval(shift(@insns)); 892e1051a39Sopenharmony_ci eval(shift(@insns)); 893e1051a39Sopenharmony_ci &paddd (@X[($Xi-4)&7],@X[3]); 894e1051a39Sopenharmony_ci eval(shift(@insns)); 895e1051a39Sopenharmony_ci eval(shift(@insns)); 896e1051a39Sopenharmony_ci eval(shift(@insns)); 897e1051a39Sopenharmony_ci eval(shift(@insns)); 898e1051a39Sopenharmony_ci &movdqa (&QWP(0+16*$Xi,"esp"),@X[($Xi-4)&7]); # X[]+K xfer to IALU 899e1051a39Sopenharmony_ci eval(shift(@insns)); 900e1051a39Sopenharmony_ci eval(shift(@insns)); 901e1051a39Sopenharmony_ci eval(shift(@insns)); 902e1051a39Sopenharmony_ci eval(shift(@insns)); 903e1051a39Sopenharmony_ci &psubd (@X[($Xi-4)&7],@X[3]); 904e1051a39Sopenharmony_ci 905e1051a39Sopenharmony_ci foreach (@insns) { eval; } 906e1051a39Sopenharmony_ci $Xi++; 907e1051a39Sopenharmony_ci} 908e1051a39Sopenharmony_ci 909e1051a39Sopenharmony_cisub Xtail_ssse3() 910e1051a39Sopenharmony_ci{ use integer; 911e1051a39Sopenharmony_ci my $body = shift; 912e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 instructions 913e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 914e1051a39Sopenharmony_ci 915e1051a39Sopenharmony_ci foreach (@insns) { eval; } 916e1051a39Sopenharmony_ci} 917e1051a39Sopenharmony_ci 918e1051a39Sopenharmony_cisub body_00_19 () { # ((c^d)&b)^d 919e1051a39Sopenharmony_ci # on start @T[0]=(c^d)&b 920e1051a39Sopenharmony_ci return &body_20_39() if ($rx==19); $rx++; 921e1051a39Sopenharmony_ci ( 922e1051a39Sopenharmony_ci '($a,$b,$c,$d,$e)=@V;'. 923e1051a39Sopenharmony_ci '&$_ror ($b,$j?7:2);', # $b>>>2 924e1051a39Sopenharmony_ci '&xor (@T[0],$d);', 925e1051a39Sopenharmony_ci '&mov (@T[1],$a);', # $b in next round 926e1051a39Sopenharmony_ci 927e1051a39Sopenharmony_ci '&add ($e,&DWP(4*($j&15),"esp"));', # X[]+K xfer 928e1051a39Sopenharmony_ci '&xor ($b,$c);', # $c^$d for next round 929e1051a39Sopenharmony_ci 930e1051a39Sopenharmony_ci '&$_rol ($a,5);', 931e1051a39Sopenharmony_ci '&add ($e,@T[0]);', 932e1051a39Sopenharmony_ci '&and (@T[1],$b);', # ($b&($c^$d)) for next round 933e1051a39Sopenharmony_ci 934e1051a39Sopenharmony_ci '&xor ($b,$c);', # restore $b 935e1051a39Sopenharmony_ci '&add ($e,$a);' .'$j++; unshift(@V,pop(@V)); unshift(@T,pop(@T));' 936e1051a39Sopenharmony_ci ); 937e1051a39Sopenharmony_ci} 938e1051a39Sopenharmony_ci 939e1051a39Sopenharmony_cisub body_20_39 () { # b^d^c 940e1051a39Sopenharmony_ci # on entry @T[0]=b^d 941e1051a39Sopenharmony_ci return &body_40_59() if ($rx==39); $rx++; 942e1051a39Sopenharmony_ci ( 943e1051a39Sopenharmony_ci '($a,$b,$c,$d,$e)=@V;'. 944e1051a39Sopenharmony_ci '&add ($e,&DWP(4*($j&15),"esp"));', # X[]+K xfer 945e1051a39Sopenharmony_ci '&xor (@T[0],$d) if($j==19);'. 946e1051a39Sopenharmony_ci '&xor (@T[0],$c) if($j> 19);', # ($b^$d^$c) 947e1051a39Sopenharmony_ci '&mov (@T[1],$a);', # $b in next round 948e1051a39Sopenharmony_ci 949e1051a39Sopenharmony_ci '&$_rol ($a,5);', 950e1051a39Sopenharmony_ci '&add ($e,@T[0]);', 951e1051a39Sopenharmony_ci '&xor (@T[1],$c) if ($j< 79);', # $b^$d for next round 952e1051a39Sopenharmony_ci 953e1051a39Sopenharmony_ci '&$_ror ($b,7);', # $b>>>2 954e1051a39Sopenharmony_ci '&add ($e,$a);' .'$j++; unshift(@V,pop(@V)); unshift(@T,pop(@T));' 955e1051a39Sopenharmony_ci ); 956e1051a39Sopenharmony_ci} 957e1051a39Sopenharmony_ci 958e1051a39Sopenharmony_cisub body_40_59 () { # ((b^c)&(c^d))^c 959e1051a39Sopenharmony_ci # on entry @T[0]=(b^c), (c^=d) 960e1051a39Sopenharmony_ci $rx++; 961e1051a39Sopenharmony_ci ( 962e1051a39Sopenharmony_ci '($a,$b,$c,$d,$e)=@V;'. 963e1051a39Sopenharmony_ci '&add ($e,&DWP(4*($j&15),"esp"));', # X[]+K xfer 964e1051a39Sopenharmony_ci '&and (@T[0],$c) if ($j>=40);', # (b^c)&(c^d) 965e1051a39Sopenharmony_ci '&xor ($c,$d) if ($j>=40);', # restore $c 966e1051a39Sopenharmony_ci 967e1051a39Sopenharmony_ci '&$_ror ($b,7);', # $b>>>2 968e1051a39Sopenharmony_ci '&mov (@T[1],$a);', # $b for next round 969e1051a39Sopenharmony_ci '&xor (@T[0],$c);', 970e1051a39Sopenharmony_ci 971e1051a39Sopenharmony_ci '&$_rol ($a,5);', 972e1051a39Sopenharmony_ci '&add ($e,@T[0]);', 973e1051a39Sopenharmony_ci '&xor (@T[1],$c) if ($j==59);'. 974e1051a39Sopenharmony_ci '&xor (@T[1],$b) if ($j< 59);', # b^c for next round 975e1051a39Sopenharmony_ci 976e1051a39Sopenharmony_ci '&xor ($b,$c) if ($j< 59);', # c^d for next round 977e1051a39Sopenharmony_ci '&add ($e,$a);' .'$j++; unshift(@V,pop(@V)); unshift(@T,pop(@T));' 978e1051a39Sopenharmony_ci ); 979e1051a39Sopenharmony_ci} 980e1051a39Sopenharmony_ci###### 981e1051a39Sopenharmony_cisub bodyx_00_19 () { # ((c^d)&b)^d 982e1051a39Sopenharmony_ci # on start @T[0]=(b&c)^(~b&d), $e+=X[]+K 983e1051a39Sopenharmony_ci return &bodyx_20_39() if ($rx==19); $rx++; 984e1051a39Sopenharmony_ci ( 985e1051a39Sopenharmony_ci '($a,$b,$c,$d,$e)=@V;'. 986e1051a39Sopenharmony_ci 987e1051a39Sopenharmony_ci '&rorx ($b,$b,2) if ($j==0);'. # $b>>>2 988e1051a39Sopenharmony_ci '&rorx ($b,@T[1],7) if ($j!=0);', # $b>>>2 989e1051a39Sopenharmony_ci '&lea ($e,&DWP(0,$e,@T[0]));', 990e1051a39Sopenharmony_ci '&rorx (@T[0],$a,5);', 991e1051a39Sopenharmony_ci 992e1051a39Sopenharmony_ci '&andn (@T[1],$a,$c);', 993e1051a39Sopenharmony_ci '&and ($a,$b)', 994e1051a39Sopenharmony_ci '&add ($d,&DWP(4*(($j+1)&15),"esp"));', # X[]+K xfer 995e1051a39Sopenharmony_ci 996e1051a39Sopenharmony_ci '&xor (@T[1],$a)', 997e1051a39Sopenharmony_ci '&add ($e,@T[0]);' .'$j++; unshift(@V,pop(@V)); unshift(@T,pop(@T));' 998e1051a39Sopenharmony_ci ); 999e1051a39Sopenharmony_ci} 1000e1051a39Sopenharmony_ci 1001e1051a39Sopenharmony_cisub bodyx_20_39 () { # b^d^c 1002e1051a39Sopenharmony_ci # on start $b=b^c^d 1003e1051a39Sopenharmony_ci return &bodyx_40_59() if ($rx==39); $rx++; 1004e1051a39Sopenharmony_ci ( 1005e1051a39Sopenharmony_ci '($a,$b,$c,$d,$e)=@V;'. 1006e1051a39Sopenharmony_ci 1007e1051a39Sopenharmony_ci '&add ($e,($j==19?@T[0]:$b))', 1008e1051a39Sopenharmony_ci '&rorx ($b,@T[1],7);', # $b>>>2 1009e1051a39Sopenharmony_ci '&rorx (@T[0],$a,5);', 1010e1051a39Sopenharmony_ci 1011e1051a39Sopenharmony_ci '&xor ($a,$b) if ($j<79);', 1012e1051a39Sopenharmony_ci '&add ($d,&DWP(4*(($j+1)&15),"esp")) if ($j<79);', # X[]+K xfer 1013e1051a39Sopenharmony_ci '&xor ($a,$c) if ($j<79);', 1014e1051a39Sopenharmony_ci '&add ($e,@T[0]);' .'$j++; unshift(@V,pop(@V)); unshift(@T,pop(@T));' 1015e1051a39Sopenharmony_ci ); 1016e1051a39Sopenharmony_ci} 1017e1051a39Sopenharmony_ci 1018e1051a39Sopenharmony_cisub bodyx_40_59 () { # ((b^c)&(c^d))^c 1019e1051a39Sopenharmony_ci # on start $b=((b^c)&(c^d))^c 1020e1051a39Sopenharmony_ci return &bodyx_20_39() if ($rx==59); $rx++; 1021e1051a39Sopenharmony_ci ( 1022e1051a39Sopenharmony_ci '($a,$b,$c,$d,$e)=@V;'. 1023e1051a39Sopenharmony_ci 1024e1051a39Sopenharmony_ci '&rorx (@T[0],$a,5)', 1025e1051a39Sopenharmony_ci '&lea ($e,&DWP(0,$e,$b))', 1026e1051a39Sopenharmony_ci '&rorx ($b,@T[1],7)', # $b>>>2 1027e1051a39Sopenharmony_ci '&add ($d,&DWP(4*(($j+1)&15),"esp"))', # X[]+K xfer 1028e1051a39Sopenharmony_ci 1029e1051a39Sopenharmony_ci '&mov (@T[1],$c)', 1030e1051a39Sopenharmony_ci '&xor ($a,$b)', # b^c for next round 1031e1051a39Sopenharmony_ci '&xor (@T[1],$b)', # c^d for next round 1032e1051a39Sopenharmony_ci 1033e1051a39Sopenharmony_ci '&and ($a,@T[1])', 1034e1051a39Sopenharmony_ci '&add ($e,@T[0])', 1035e1051a39Sopenharmony_ci '&xor ($a,$b)' .'$j++; unshift(@V,pop(@V)); unshift(@T,pop(@T));' 1036e1051a39Sopenharmony_ci ); 1037e1051a39Sopenharmony_ci} 1038e1051a39Sopenharmony_ci 1039e1051a39Sopenharmony_ci&set_label("loop",16); 1040e1051a39Sopenharmony_ci &Xupdate_ssse3_16_31(\&body_00_19); 1041e1051a39Sopenharmony_ci &Xupdate_ssse3_16_31(\&body_00_19); 1042e1051a39Sopenharmony_ci &Xupdate_ssse3_16_31(\&body_00_19); 1043e1051a39Sopenharmony_ci &Xupdate_ssse3_16_31(\&body_00_19); 1044e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_00_19); 1045e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_20_39); 1046e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_20_39); 1047e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_20_39); 1048e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_20_39); 1049e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_20_39); 1050e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_40_59); 1051e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_40_59); 1052e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_40_59); 1053e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_40_59); 1054e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_40_59); 1055e1051a39Sopenharmony_ci &Xupdate_ssse3_32_79(\&body_20_39); 1056e1051a39Sopenharmony_ci &Xuplast_ssse3_80(\&body_20_39); # can jump to "done" 1057e1051a39Sopenharmony_ci 1058e1051a39Sopenharmony_ci $saved_j=$j; @saved_V=@V; 1059e1051a39Sopenharmony_ci 1060e1051a39Sopenharmony_ci &Xloop_ssse3(\&body_20_39); 1061e1051a39Sopenharmony_ci &Xloop_ssse3(\&body_20_39); 1062e1051a39Sopenharmony_ci &Xloop_ssse3(\&body_20_39); 1063e1051a39Sopenharmony_ci 1064e1051a39Sopenharmony_ci &mov (@T[1],&DWP(192,"esp")); # update context 1065e1051a39Sopenharmony_ci &add ($A,&DWP(0,@T[1])); 1066e1051a39Sopenharmony_ci &add (@T[0],&DWP(4,@T[1])); # $b 1067e1051a39Sopenharmony_ci &add ($C,&DWP(8,@T[1])); 1068e1051a39Sopenharmony_ci &mov (&DWP(0,@T[1]),$A); 1069e1051a39Sopenharmony_ci &add ($D,&DWP(12,@T[1])); 1070e1051a39Sopenharmony_ci &mov (&DWP(4,@T[1]),@T[0]); 1071e1051a39Sopenharmony_ci &add ($E,&DWP(16,@T[1])); 1072e1051a39Sopenharmony_ci &mov (&DWP(8,@T[1]),$C); 1073e1051a39Sopenharmony_ci &mov ($B,$C); 1074e1051a39Sopenharmony_ci &mov (&DWP(12,@T[1]),$D); 1075e1051a39Sopenharmony_ci &xor ($B,$D); 1076e1051a39Sopenharmony_ci &mov (&DWP(16,@T[1]),$E); 1077e1051a39Sopenharmony_ci &mov (@T[1],@T[0]); 1078e1051a39Sopenharmony_ci &pshufd (@X[0],@X[-4&7],0xee); # was &movdqa (@X[0],@X[-3&7]); 1079e1051a39Sopenharmony_ci &and (@T[0],$B); 1080e1051a39Sopenharmony_ci &mov ($B,$T[1]); 1081e1051a39Sopenharmony_ci 1082e1051a39Sopenharmony_ci &jmp (&label("loop")); 1083e1051a39Sopenharmony_ci 1084e1051a39Sopenharmony_ci&set_label("done",16); $j=$saved_j; @V=@saved_V; 1085e1051a39Sopenharmony_ci 1086e1051a39Sopenharmony_ci &Xtail_ssse3(\&body_20_39); 1087e1051a39Sopenharmony_ci &Xtail_ssse3(\&body_20_39); 1088e1051a39Sopenharmony_ci &Xtail_ssse3(\&body_20_39); 1089e1051a39Sopenharmony_ci 1090e1051a39Sopenharmony_ci &mov (@T[1],&DWP(192,"esp")); # update context 1091e1051a39Sopenharmony_ci &add ($A,&DWP(0,@T[1])); 1092e1051a39Sopenharmony_ci &mov ("esp",&DWP(192+12,"esp")); # restore %esp 1093e1051a39Sopenharmony_ci &add (@T[0],&DWP(4,@T[1])); # $b 1094e1051a39Sopenharmony_ci &add ($C,&DWP(8,@T[1])); 1095e1051a39Sopenharmony_ci &mov (&DWP(0,@T[1]),$A); 1096e1051a39Sopenharmony_ci &add ($D,&DWP(12,@T[1])); 1097e1051a39Sopenharmony_ci &mov (&DWP(4,@T[1]),@T[0]); 1098e1051a39Sopenharmony_ci &add ($E,&DWP(16,@T[1])); 1099e1051a39Sopenharmony_ci &mov (&DWP(8,@T[1]),$C); 1100e1051a39Sopenharmony_ci &mov (&DWP(12,@T[1]),$D); 1101e1051a39Sopenharmony_ci &mov (&DWP(16,@T[1]),$E); 1102e1051a39Sopenharmony_ci 1103e1051a39Sopenharmony_ci&function_end("_sha1_block_data_order_ssse3"); 1104e1051a39Sopenharmony_ci 1105e1051a39Sopenharmony_ci$rx=0; # reset 1106e1051a39Sopenharmony_ci 1107e1051a39Sopenharmony_ciif ($ymm) { 1108e1051a39Sopenharmony_cimy $Xi=4; # 4xSIMD Xupdate round, start pre-seeded 1109e1051a39Sopenharmony_cimy @X=map("xmm$_",(4..7,0..3)); # pre-seeded for $Xi=4 1110e1051a39Sopenharmony_cimy @V=($A,$B,$C,$D,$E); 1111e1051a39Sopenharmony_cimy $j=0; # hash round 1112e1051a39Sopenharmony_cimy @T=($T,$tmp1); 1113e1051a39Sopenharmony_cimy $inp; 1114e1051a39Sopenharmony_ci 1115e1051a39Sopenharmony_cimy $_rol=sub { &shld(@_[0],@_) }; 1116e1051a39Sopenharmony_cimy $_ror=sub { &shrd(@_[0],@_) }; 1117e1051a39Sopenharmony_ci 1118e1051a39Sopenharmony_ci&function_begin("_sha1_block_data_order_avx"); 1119e1051a39Sopenharmony_ci &call (&label("pic_point")); # make it PIC! 1120e1051a39Sopenharmony_ci &set_label("pic_point"); 1121e1051a39Sopenharmony_ci &blindpop($tmp1); 1122e1051a39Sopenharmony_ci &lea ($tmp1,&DWP(&label("K_XX_XX")."-".&label("pic_point"),$tmp1)); 1123e1051a39Sopenharmony_ci&set_label("avx_shortcut"); 1124e1051a39Sopenharmony_ci &vzeroall(); 1125e1051a39Sopenharmony_ci 1126e1051a39Sopenharmony_ci &vmovdqa(@X[3],&QWP(0,$tmp1)); # K_00_19 1127e1051a39Sopenharmony_ci &vmovdqa(@X[4],&QWP(16,$tmp1)); # K_20_39 1128e1051a39Sopenharmony_ci &vmovdqa(@X[5],&QWP(32,$tmp1)); # K_40_59 1129e1051a39Sopenharmony_ci &vmovdqa(@X[6],&QWP(48,$tmp1)); # K_60_79 1130e1051a39Sopenharmony_ci &vmovdqa(@X[2],&QWP(64,$tmp1)); # pbswap mask 1131e1051a39Sopenharmony_ci 1132e1051a39Sopenharmony_ci &mov ($E,&wparam(0)); # load argument block 1133e1051a39Sopenharmony_ci &mov ($inp=@T[1],&wparam(1)); 1134e1051a39Sopenharmony_ci &mov ($D,&wparam(2)); 1135e1051a39Sopenharmony_ci &mov (@T[0],"esp"); 1136e1051a39Sopenharmony_ci 1137e1051a39Sopenharmony_ci # stack frame layout 1138e1051a39Sopenharmony_ci # 1139e1051a39Sopenharmony_ci # +0 X[0]+K X[1]+K X[2]+K X[3]+K # XMM->IALU xfer area 1140e1051a39Sopenharmony_ci # X[4]+K X[5]+K X[6]+K X[7]+K 1141e1051a39Sopenharmony_ci # X[8]+K X[9]+K X[10]+K X[11]+K 1142e1051a39Sopenharmony_ci # X[12]+K X[13]+K X[14]+K X[15]+K 1143e1051a39Sopenharmony_ci # 1144e1051a39Sopenharmony_ci # +64 X[0] X[1] X[2] X[3] # XMM->XMM backtrace area 1145e1051a39Sopenharmony_ci # X[4] X[5] X[6] X[7] 1146e1051a39Sopenharmony_ci # X[8] X[9] X[10] X[11] # even borrowed for K_00_19 1147e1051a39Sopenharmony_ci # 1148e1051a39Sopenharmony_ci # +112 K_20_39 K_20_39 K_20_39 K_20_39 # constants 1149e1051a39Sopenharmony_ci # K_40_59 K_40_59 K_40_59 K_40_59 1150e1051a39Sopenharmony_ci # K_60_79 K_60_79 K_60_79 K_60_79 1151e1051a39Sopenharmony_ci # K_00_19 K_00_19 K_00_19 K_00_19 1152e1051a39Sopenharmony_ci # pbswap mask 1153e1051a39Sopenharmony_ci # 1154e1051a39Sopenharmony_ci # +192 ctx # argument block 1155e1051a39Sopenharmony_ci # +196 inp 1156e1051a39Sopenharmony_ci # +200 end 1157e1051a39Sopenharmony_ci # +204 esp 1158e1051a39Sopenharmony_ci &sub ("esp",208); 1159e1051a39Sopenharmony_ci &and ("esp",-64); 1160e1051a39Sopenharmony_ci 1161e1051a39Sopenharmony_ci &vmovdqa(&QWP(112+0,"esp"),@X[4]); # copy constants 1162e1051a39Sopenharmony_ci &vmovdqa(&QWP(112+16,"esp"),@X[5]); 1163e1051a39Sopenharmony_ci &vmovdqa(&QWP(112+32,"esp"),@X[6]); 1164e1051a39Sopenharmony_ci &shl ($D,6); # len*64 1165e1051a39Sopenharmony_ci &vmovdqa(&QWP(112+48,"esp"),@X[3]); 1166e1051a39Sopenharmony_ci &add ($D,$inp); # end of input 1167e1051a39Sopenharmony_ci &vmovdqa(&QWP(112+64,"esp"),@X[2]); 1168e1051a39Sopenharmony_ci &add ($inp,64); 1169e1051a39Sopenharmony_ci &mov (&DWP(192+0,"esp"),$E); # save argument block 1170e1051a39Sopenharmony_ci &mov (&DWP(192+4,"esp"),$inp); 1171e1051a39Sopenharmony_ci &mov (&DWP(192+8,"esp"),$D); 1172e1051a39Sopenharmony_ci &mov (&DWP(192+12,"esp"),@T[0]); # save original %esp 1173e1051a39Sopenharmony_ci 1174e1051a39Sopenharmony_ci &mov ($A,&DWP(0,$E)); # load context 1175e1051a39Sopenharmony_ci &mov ($B,&DWP(4,$E)); 1176e1051a39Sopenharmony_ci &mov ($C,&DWP(8,$E)); 1177e1051a39Sopenharmony_ci &mov ($D,&DWP(12,$E)); 1178e1051a39Sopenharmony_ci &mov ($E,&DWP(16,$E)); 1179e1051a39Sopenharmony_ci &mov (@T[0],$B); # magic seed 1180e1051a39Sopenharmony_ci 1181e1051a39Sopenharmony_ci &vmovdqu(@X[-4&7],&QWP(-64,$inp)); # load input to %xmm[0-3] 1182e1051a39Sopenharmony_ci &vmovdqu(@X[-3&7],&QWP(-48,$inp)); 1183e1051a39Sopenharmony_ci &vmovdqu(@X[-2&7],&QWP(-32,$inp)); 1184e1051a39Sopenharmony_ci &vmovdqu(@X[-1&7],&QWP(-16,$inp)); 1185e1051a39Sopenharmony_ci &vpshufb(@X[-4&7],@X[-4&7],@X[2]); # byte swap 1186e1051a39Sopenharmony_ci &vpshufb(@X[-3&7],@X[-3&7],@X[2]); 1187e1051a39Sopenharmony_ci &vpshufb(@X[-2&7],@X[-2&7],@X[2]); 1188e1051a39Sopenharmony_ci &vmovdqa(&QWP(112-16,"esp"),@X[3]); # borrow last backtrace slot 1189e1051a39Sopenharmony_ci &vpshufb(@X[-1&7],@X[-1&7],@X[2]); 1190e1051a39Sopenharmony_ci &vpaddd (@X[0],@X[-4&7],@X[3]); # add K_00_19 1191e1051a39Sopenharmony_ci &vpaddd (@X[1],@X[-3&7],@X[3]); 1192e1051a39Sopenharmony_ci &vpaddd (@X[2],@X[-2&7],@X[3]); 1193e1051a39Sopenharmony_ci &vmovdqa(&QWP(0,"esp"),@X[0]); # X[]+K xfer to IALU 1194e1051a39Sopenharmony_ci &mov (@T[1],$C); 1195e1051a39Sopenharmony_ci &vmovdqa(&QWP(0+16,"esp"),@X[1]); 1196e1051a39Sopenharmony_ci &xor (@T[1],$D); 1197e1051a39Sopenharmony_ci &vmovdqa(&QWP(0+32,"esp"),@X[2]); 1198e1051a39Sopenharmony_ci &and (@T[0],@T[1]); 1199e1051a39Sopenharmony_ci &jmp (&label("loop")); 1200e1051a39Sopenharmony_ci 1201e1051a39Sopenharmony_cisub Xupdate_avx_16_31() # recall that $Xi starts with 4 1202e1051a39Sopenharmony_ci{ use integer; 1203e1051a39Sopenharmony_ci my $body = shift; 1204e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 40 instructions 1205e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 1206e1051a39Sopenharmony_ci 1207e1051a39Sopenharmony_ci eval(shift(@insns)); 1208e1051a39Sopenharmony_ci eval(shift(@insns)); 1209e1051a39Sopenharmony_ci &vpalignr(@X[0],@X[-3&7],@X[-4&7],8); # compose "X[-14]" in "X[0]" 1210e1051a39Sopenharmony_ci eval(shift(@insns)); 1211e1051a39Sopenharmony_ci eval(shift(@insns)); 1212e1051a39Sopenharmony_ci 1213e1051a39Sopenharmony_ci &vpaddd (@X[3],@X[3],@X[-1&7]); 1214e1051a39Sopenharmony_ci &vmovdqa (&QWP(64+16*(($Xi-4)%3),"esp"),@X[-4&7]);# save X[] to backtrace buffer 1215e1051a39Sopenharmony_ci eval(shift(@insns)); 1216e1051a39Sopenharmony_ci eval(shift(@insns)); 1217e1051a39Sopenharmony_ci &vpsrldq(@X[2],@X[-1&7],4); # "X[-3]", 3 dwords 1218e1051a39Sopenharmony_ci eval(shift(@insns)); 1219e1051a39Sopenharmony_ci eval(shift(@insns)); 1220e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[-4&7]); # "X[0]"^="X[-16]" 1221e1051a39Sopenharmony_ci eval(shift(@insns)); 1222e1051a39Sopenharmony_ci eval(shift(@insns)); 1223e1051a39Sopenharmony_ci 1224e1051a39Sopenharmony_ci &vpxor (@X[2],@X[2],@X[-2&7]); # "X[-3]"^"X[-8]" 1225e1051a39Sopenharmony_ci eval(shift(@insns)); 1226e1051a39Sopenharmony_ci eval(shift(@insns)); 1227e1051a39Sopenharmony_ci &vmovdqa (&QWP(0+16*(($Xi-1)&3),"esp"),@X[3]); # X[]+K xfer to IALU 1228e1051a39Sopenharmony_ci eval(shift(@insns)); 1229e1051a39Sopenharmony_ci eval(shift(@insns)); 1230e1051a39Sopenharmony_ci 1231e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[2]); # "X[0]"^="X[-3]"^"X[-8]" 1232e1051a39Sopenharmony_ci eval(shift(@insns)); 1233e1051a39Sopenharmony_ci eval(shift(@insns)); 1234e1051a39Sopenharmony_ci eval(shift(@insns)); 1235e1051a39Sopenharmony_ci eval(shift(@insns)); 1236e1051a39Sopenharmony_ci 1237e1051a39Sopenharmony_ci &vpsrld (@X[2],@X[0],31); 1238e1051a39Sopenharmony_ci eval(shift(@insns)); 1239e1051a39Sopenharmony_ci eval(shift(@insns)); 1240e1051a39Sopenharmony_ci eval(shift(@insns)); 1241e1051a39Sopenharmony_ci eval(shift(@insns)); 1242e1051a39Sopenharmony_ci 1243e1051a39Sopenharmony_ci &vpslldq(@X[4],@X[0],12); # "X[0]"<<96, extract one dword 1244e1051a39Sopenharmony_ci &vpaddd (@X[0],@X[0],@X[0]); 1245e1051a39Sopenharmony_ci eval(shift(@insns)); 1246e1051a39Sopenharmony_ci eval(shift(@insns)); 1247e1051a39Sopenharmony_ci eval(shift(@insns)); 1248e1051a39Sopenharmony_ci eval(shift(@insns)); 1249e1051a39Sopenharmony_ci 1250e1051a39Sopenharmony_ci &vpsrld (@X[3],@X[4],30); 1251e1051a39Sopenharmony_ci &vpor (@X[0],@X[0],@X[2]); # "X[0]"<<<=1 1252e1051a39Sopenharmony_ci eval(shift(@insns)); 1253e1051a39Sopenharmony_ci eval(shift(@insns)); 1254e1051a39Sopenharmony_ci eval(shift(@insns)); 1255e1051a39Sopenharmony_ci eval(shift(@insns)); 1256e1051a39Sopenharmony_ci 1257e1051a39Sopenharmony_ci &vpslld (@X[4],@X[4],2); 1258e1051a39Sopenharmony_ci &vmovdqa (@X[2],&QWP(64+16*(($Xi-6)%3),"esp")) if ($Xi>5); # restore X[] from backtrace buffer 1259e1051a39Sopenharmony_ci eval(shift(@insns)); 1260e1051a39Sopenharmony_ci eval(shift(@insns)); 1261e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[3]); 1262e1051a39Sopenharmony_ci eval(shift(@insns)); 1263e1051a39Sopenharmony_ci eval(shift(@insns)); 1264e1051a39Sopenharmony_ci eval(shift(@insns)); 1265e1051a39Sopenharmony_ci eval(shift(@insns)); 1266e1051a39Sopenharmony_ci 1267e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[4]); # "X[0]"^=("X[0]"<<96)<<<2 1268e1051a39Sopenharmony_ci eval(shift(@insns)); 1269e1051a39Sopenharmony_ci eval(shift(@insns)); 1270e1051a39Sopenharmony_ci &vmovdqa (@X[4],&QWP(112-16+16*(($Xi)/5),"esp")); # K_XX_XX 1271e1051a39Sopenharmony_ci eval(shift(@insns)); 1272e1051a39Sopenharmony_ci eval(shift(@insns)); 1273e1051a39Sopenharmony_ci 1274e1051a39Sopenharmony_ci foreach (@insns) { eval; } # remaining instructions [if any] 1275e1051a39Sopenharmony_ci 1276e1051a39Sopenharmony_ci $Xi++; push(@X,shift(@X)); # "rotate" X[] 1277e1051a39Sopenharmony_ci} 1278e1051a39Sopenharmony_ci 1279e1051a39Sopenharmony_cisub Xupdate_avx_32_79() 1280e1051a39Sopenharmony_ci{ use integer; 1281e1051a39Sopenharmony_ci my $body = shift; 1282e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 to 44 instructions 1283e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 1284e1051a39Sopenharmony_ci 1285e1051a39Sopenharmony_ci &vpalignr(@X[2],@X[-1&7],@X[-2&7],8); # compose "X[-6]" 1286e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[-4&7]); # "X[0]"="X[-32]"^"X[-16]" 1287e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 1288e1051a39Sopenharmony_ci eval(shift(@insns)); 1289e1051a39Sopenharmony_ci eval(shift(@insns)); 1290e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 1291e1051a39Sopenharmony_ci 1292e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[-7&7]); # "X[0]"^="X[-28]" 1293e1051a39Sopenharmony_ci &vmovdqa (&QWP(64+16*(($Xi-4)%3),"esp"),@X[-4&7]); # save X[] to backtrace buffer 1294e1051a39Sopenharmony_ci eval(shift(@insns)); 1295e1051a39Sopenharmony_ci eval(shift(@insns)); 1296e1051a39Sopenharmony_ci if ($Xi%5) { 1297e1051a39Sopenharmony_ci &vmovdqa (@X[4],@X[3]); # "perpetuate" K_XX_XX... 1298e1051a39Sopenharmony_ci } else { # ... or load next one 1299e1051a39Sopenharmony_ci &vmovdqa (@X[4],&QWP(112-16+16*($Xi/5),"esp")); 1300e1051a39Sopenharmony_ci } 1301e1051a39Sopenharmony_ci &vpaddd (@X[3],@X[3],@X[-1&7]); 1302e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 1303e1051a39Sopenharmony_ci eval(shift(@insns)); 1304e1051a39Sopenharmony_ci 1305e1051a39Sopenharmony_ci &vpxor (@X[0],@X[0],@X[2]); # "X[0]"^="X[-6]" 1306e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 1307e1051a39Sopenharmony_ci eval(shift(@insns)); 1308e1051a39Sopenharmony_ci eval(shift(@insns)); 1309e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 1310e1051a39Sopenharmony_ci 1311e1051a39Sopenharmony_ci &vpsrld (@X[2],@X[0],30); 1312e1051a39Sopenharmony_ci &vmovdqa (&QWP(0+16*(($Xi-1)&3),"esp"),@X[3]); # X[]+K xfer to IALU 1313e1051a39Sopenharmony_ci eval(shift(@insns)); 1314e1051a39Sopenharmony_ci eval(shift(@insns)); 1315e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 1316e1051a39Sopenharmony_ci eval(shift(@insns)); 1317e1051a39Sopenharmony_ci 1318e1051a39Sopenharmony_ci &vpslld (@X[0],@X[0],2); 1319e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 1320e1051a39Sopenharmony_ci eval(shift(@insns)); 1321e1051a39Sopenharmony_ci eval(shift(@insns)); 1322e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 1323e1051a39Sopenharmony_ci eval(shift(@insns)); 1324e1051a39Sopenharmony_ci eval(shift(@insns)); 1325e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 1326e1051a39Sopenharmony_ci eval(shift(@insns)); 1327e1051a39Sopenharmony_ci 1328e1051a39Sopenharmony_ci &vpor (@X[0],@X[0],@X[2]); # "X[0]"<<<=2 1329e1051a39Sopenharmony_ci eval(shift(@insns)); # body_20_39 1330e1051a39Sopenharmony_ci eval(shift(@insns)); 1331e1051a39Sopenharmony_ci &vmovdqa (@X[2],&QWP(64+16*(($Xi-6)%3),"esp")) if($Xi<19); # restore X[] from backtrace buffer 1332e1051a39Sopenharmony_ci eval(shift(@insns)); 1333e1051a39Sopenharmony_ci eval(shift(@insns)); # rol 1334e1051a39Sopenharmony_ci eval(shift(@insns)); 1335e1051a39Sopenharmony_ci eval(shift(@insns)); 1336e1051a39Sopenharmony_ci eval(shift(@insns)); # ror 1337e1051a39Sopenharmony_ci eval(shift(@insns)); 1338e1051a39Sopenharmony_ci 1339e1051a39Sopenharmony_ci foreach (@insns) { eval; } # remaining instructions 1340e1051a39Sopenharmony_ci 1341e1051a39Sopenharmony_ci $Xi++; push(@X,shift(@X)); # "rotate" X[] 1342e1051a39Sopenharmony_ci} 1343e1051a39Sopenharmony_ci 1344e1051a39Sopenharmony_cisub Xuplast_avx_80() 1345e1051a39Sopenharmony_ci{ use integer; 1346e1051a39Sopenharmony_ci my $body = shift; 1347e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 instructions 1348e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 1349e1051a39Sopenharmony_ci 1350e1051a39Sopenharmony_ci eval(shift(@insns)); 1351e1051a39Sopenharmony_ci &vpaddd (@X[3],@X[3],@X[-1&7]); 1352e1051a39Sopenharmony_ci eval(shift(@insns)); 1353e1051a39Sopenharmony_ci eval(shift(@insns)); 1354e1051a39Sopenharmony_ci eval(shift(@insns)); 1355e1051a39Sopenharmony_ci eval(shift(@insns)); 1356e1051a39Sopenharmony_ci 1357e1051a39Sopenharmony_ci &vmovdqa (&QWP(0+16*(($Xi-1)&3),"esp"),@X[3]); # X[]+K xfer IALU 1358e1051a39Sopenharmony_ci 1359e1051a39Sopenharmony_ci foreach (@insns) { eval; } # remaining instructions 1360e1051a39Sopenharmony_ci 1361e1051a39Sopenharmony_ci &mov ($inp=@T[1],&DWP(192+4,"esp")); 1362e1051a39Sopenharmony_ci &cmp ($inp,&DWP(192+8,"esp")); 1363e1051a39Sopenharmony_ci &je (&label("done")); 1364e1051a39Sopenharmony_ci 1365e1051a39Sopenharmony_ci &vmovdqa(@X[3],&QWP(112+48,"esp")); # K_00_19 1366e1051a39Sopenharmony_ci &vmovdqa(@X[2],&QWP(112+64,"esp")); # pbswap mask 1367e1051a39Sopenharmony_ci &vmovdqu(@X[-4&7],&QWP(0,$inp)); # load input 1368e1051a39Sopenharmony_ci &vmovdqu(@X[-3&7],&QWP(16,$inp)); 1369e1051a39Sopenharmony_ci &vmovdqu(@X[-2&7],&QWP(32,$inp)); 1370e1051a39Sopenharmony_ci &vmovdqu(@X[-1&7],&QWP(48,$inp)); 1371e1051a39Sopenharmony_ci &add ($inp,64); 1372e1051a39Sopenharmony_ci &vpshufb(@X[-4&7],@X[-4&7],@X[2]); # byte swap 1373e1051a39Sopenharmony_ci &mov (&DWP(192+4,"esp"),$inp); 1374e1051a39Sopenharmony_ci &vmovdqa(&QWP(112-16,"esp"),@X[3]); # borrow last backtrace slot 1375e1051a39Sopenharmony_ci 1376e1051a39Sopenharmony_ci $Xi=0; 1377e1051a39Sopenharmony_ci} 1378e1051a39Sopenharmony_ci 1379e1051a39Sopenharmony_cisub Xloop_avx() 1380e1051a39Sopenharmony_ci{ use integer; 1381e1051a39Sopenharmony_ci my $body = shift; 1382e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 instructions 1383e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 1384e1051a39Sopenharmony_ci 1385e1051a39Sopenharmony_ci eval(shift(@insns)); 1386e1051a39Sopenharmony_ci eval(shift(@insns)); 1387e1051a39Sopenharmony_ci &vpshufb (@X[($Xi-3)&7],@X[($Xi-3)&7],@X[2]); 1388e1051a39Sopenharmony_ci eval(shift(@insns)); 1389e1051a39Sopenharmony_ci eval(shift(@insns)); 1390e1051a39Sopenharmony_ci &vpaddd (@X[$Xi&7],@X[($Xi-4)&7],@X[3]); 1391e1051a39Sopenharmony_ci eval(shift(@insns)); 1392e1051a39Sopenharmony_ci eval(shift(@insns)); 1393e1051a39Sopenharmony_ci eval(shift(@insns)); 1394e1051a39Sopenharmony_ci eval(shift(@insns)); 1395e1051a39Sopenharmony_ci &vmovdqa (&QWP(0+16*$Xi,"esp"),@X[$Xi&7]); # X[]+K xfer to IALU 1396e1051a39Sopenharmony_ci eval(shift(@insns)); 1397e1051a39Sopenharmony_ci eval(shift(@insns)); 1398e1051a39Sopenharmony_ci 1399e1051a39Sopenharmony_ci foreach (@insns) { eval; } 1400e1051a39Sopenharmony_ci $Xi++; 1401e1051a39Sopenharmony_ci} 1402e1051a39Sopenharmony_ci 1403e1051a39Sopenharmony_cisub Xtail_avx() 1404e1051a39Sopenharmony_ci{ use integer; 1405e1051a39Sopenharmony_ci my $body = shift; 1406e1051a39Sopenharmony_ci my @insns = (&$body,&$body,&$body,&$body); # 32 instructions 1407e1051a39Sopenharmony_ci my ($a,$b,$c,$d,$e); 1408e1051a39Sopenharmony_ci 1409e1051a39Sopenharmony_ci foreach (@insns) { eval; } 1410e1051a39Sopenharmony_ci} 1411e1051a39Sopenharmony_ci 1412e1051a39Sopenharmony_ci&set_label("loop",16); 1413e1051a39Sopenharmony_ci &Xupdate_avx_16_31(\&body_00_19); 1414e1051a39Sopenharmony_ci &Xupdate_avx_16_31(\&body_00_19); 1415e1051a39Sopenharmony_ci &Xupdate_avx_16_31(\&body_00_19); 1416e1051a39Sopenharmony_ci &Xupdate_avx_16_31(\&body_00_19); 1417e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_00_19); 1418e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_20_39); 1419e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_20_39); 1420e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_20_39); 1421e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_20_39); 1422e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_20_39); 1423e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_40_59); 1424e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_40_59); 1425e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_40_59); 1426e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_40_59); 1427e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_40_59); 1428e1051a39Sopenharmony_ci &Xupdate_avx_32_79(\&body_20_39); 1429e1051a39Sopenharmony_ci &Xuplast_avx_80(\&body_20_39); # can jump to "done" 1430e1051a39Sopenharmony_ci 1431e1051a39Sopenharmony_ci $saved_j=$j; @saved_V=@V; 1432e1051a39Sopenharmony_ci 1433e1051a39Sopenharmony_ci &Xloop_avx(\&body_20_39); 1434e1051a39Sopenharmony_ci &Xloop_avx(\&body_20_39); 1435e1051a39Sopenharmony_ci &Xloop_avx(\&body_20_39); 1436e1051a39Sopenharmony_ci 1437e1051a39Sopenharmony_ci &mov (@T[1],&DWP(192,"esp")); # update context 1438e1051a39Sopenharmony_ci &add ($A,&DWP(0,@T[1])); 1439e1051a39Sopenharmony_ci &add (@T[0],&DWP(4,@T[1])); # $b 1440e1051a39Sopenharmony_ci &add ($C,&DWP(8,@T[1])); 1441e1051a39Sopenharmony_ci &mov (&DWP(0,@T[1]),$A); 1442e1051a39Sopenharmony_ci &add ($D,&DWP(12,@T[1])); 1443e1051a39Sopenharmony_ci &mov (&DWP(4,@T[1]),@T[0]); 1444e1051a39Sopenharmony_ci &add ($E,&DWP(16,@T[1])); 1445e1051a39Sopenharmony_ci &mov ($B,$C); 1446e1051a39Sopenharmony_ci &mov (&DWP(8,@T[1]),$C); 1447e1051a39Sopenharmony_ci &xor ($B,$D); 1448e1051a39Sopenharmony_ci &mov (&DWP(12,@T[1]),$D); 1449e1051a39Sopenharmony_ci &mov (&DWP(16,@T[1]),$E); 1450e1051a39Sopenharmony_ci &mov (@T[1],@T[0]); 1451e1051a39Sopenharmony_ci &and (@T[0],$B); 1452e1051a39Sopenharmony_ci &mov ($B,@T[1]); 1453e1051a39Sopenharmony_ci 1454e1051a39Sopenharmony_ci &jmp (&label("loop")); 1455e1051a39Sopenharmony_ci 1456e1051a39Sopenharmony_ci&set_label("done",16); $j=$saved_j; @V=@saved_V; 1457e1051a39Sopenharmony_ci 1458e1051a39Sopenharmony_ci &Xtail_avx(\&body_20_39); 1459e1051a39Sopenharmony_ci &Xtail_avx(\&body_20_39); 1460e1051a39Sopenharmony_ci &Xtail_avx(\&body_20_39); 1461e1051a39Sopenharmony_ci 1462e1051a39Sopenharmony_ci &vzeroall(); 1463e1051a39Sopenharmony_ci 1464e1051a39Sopenharmony_ci &mov (@T[1],&DWP(192,"esp")); # update context 1465e1051a39Sopenharmony_ci &add ($A,&DWP(0,@T[1])); 1466e1051a39Sopenharmony_ci &mov ("esp",&DWP(192+12,"esp")); # restore %esp 1467e1051a39Sopenharmony_ci &add (@T[0],&DWP(4,@T[1])); # $b 1468e1051a39Sopenharmony_ci &add ($C,&DWP(8,@T[1])); 1469e1051a39Sopenharmony_ci &mov (&DWP(0,@T[1]),$A); 1470e1051a39Sopenharmony_ci &add ($D,&DWP(12,@T[1])); 1471e1051a39Sopenharmony_ci &mov (&DWP(4,@T[1]),@T[0]); 1472e1051a39Sopenharmony_ci &add ($E,&DWP(16,@T[1])); 1473e1051a39Sopenharmony_ci &mov (&DWP(8,@T[1]),$C); 1474e1051a39Sopenharmony_ci &mov (&DWP(12,@T[1]),$D); 1475e1051a39Sopenharmony_ci &mov (&DWP(16,@T[1]),$E); 1476e1051a39Sopenharmony_ci&function_end("_sha1_block_data_order_avx"); 1477e1051a39Sopenharmony_ci} 1478e1051a39Sopenharmony_ci&set_label("K_XX_XX",64); 1479e1051a39Sopenharmony_ci&data_word(0x5a827999,0x5a827999,0x5a827999,0x5a827999); # K_00_19 1480e1051a39Sopenharmony_ci&data_word(0x6ed9eba1,0x6ed9eba1,0x6ed9eba1,0x6ed9eba1); # K_20_39 1481e1051a39Sopenharmony_ci&data_word(0x8f1bbcdc,0x8f1bbcdc,0x8f1bbcdc,0x8f1bbcdc); # K_40_59 1482e1051a39Sopenharmony_ci&data_word(0xca62c1d6,0xca62c1d6,0xca62c1d6,0xca62c1d6); # K_60_79 1483e1051a39Sopenharmony_ci&data_word(0x00010203,0x04050607,0x08090a0b,0x0c0d0e0f); # pbswap mask 1484e1051a39Sopenharmony_ci&data_byte(0xf,0xe,0xd,0xc,0xb,0xa,0x9,0x8,0x7,0x6,0x5,0x4,0x3,0x2,0x1,0x0); 1485e1051a39Sopenharmony_ci} 1486e1051a39Sopenharmony_ci&asciz("SHA1 block transform for x86, CRYPTOGAMS by <appro\@openssl.org>"); 1487e1051a39Sopenharmony_ci 1488e1051a39Sopenharmony_ci&asm_finish(); 1489e1051a39Sopenharmony_ci 1490e1051a39Sopenharmony_ciclose STDOUT or die "error closing STDOUT: $!"; 1491