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https://github.com/NationalSecurityAgency/ghidra.git
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193 lines
8.8 KiB
Plaintext
193 lines
8.8 KiB
Plaintext
#66 0F3A CF /r /ib
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#GF2P8AFFINEINVQB xmm1,
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#xmm2/m128, imm8 A V/V
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#GFNI Computes inverse affine transformation in the finite field GF(2^8).
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define pcodeop gf2p8affineinvqb;
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:GF2P8AFFINEINVQB XmmReg1, XmmReg2_m128, imm8 is vexMode=0 & $(PRE_66) & byte=0x0F; byte=0x3A; byte=0xCF; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmReg1 = gf2p8affineinvqb(XmmReg2_m128, XmmReg1, imm8:1 );
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ZmmReg1 = zext(XmmReg1);
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}
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#VEX.128.66.0F3A.W1 CF /r /ib
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#VGF2P8AFFINEINVQB xmm1, xmm2,
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#xmm3/m128, imm8 B V/V
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#AVX GFNI Computes inverse affine transformation in the finite field GF(2^8).
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define pcodeop vgf2p8affineinvqb_avx;
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:VGF2P8AFFINEINVQB XmmReg1, vexVVVV_XmmReg, XmmReg2_m128, imm8 is $(VEX_NONE) & $(VEX_L128) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & vexVVVV_XmmReg; byte=0xCF; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmReg1 = vgf2p8affineinvqb_avx( vexVVVV_XmmReg, XmmReg2_m128, imm8:1 );
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ZmmReg1 = zext(XmmReg1);
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}
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#VEX.256.66.0F3A.W1 CF /r /ib
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#VGF2P8AFFINEINVQB ymm1, ymm2,
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#ymm3/m256, imm8 B V/V AVX
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#GFNI Computes inverse affine transformation in the finite field GF(2^8).
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:VGF2P8AFFINEINVQB YmmReg1, vexVVVV_YmmReg, YmmReg2_m256, imm8 is $(VEX_NONE) & $(VEX_L256) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & vexVVVV_YmmReg; byte=0xCF; (YmmReg1 & ZmmReg1) ... & YmmReg2_m256; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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YmmReg1 = vgf2p8affineinvqb_avx( vexVVVV_YmmReg, YmmReg2_m256, imm8:1 );
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ZmmReg1 = zext(YmmReg1);
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}
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# GF2P8AFFINEINVQB 3-476 PAGE 1046 LINE 56498
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define pcodeop vgf2p8affineinvqb_avx512vl ;
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:VGF2P8AFFINEINVQB XmmReg1 XmmOpMask8, evexV5_XmmReg, XmmReg2_m128_m64bcst, imm8 is $(EVEX_NONE) & $(VEX_L128) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & XmmOpMask8 & evexV5_XmmReg; byte=0xCF; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128_m64bcst; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmResult = vgf2p8affineinvqb_avx512vl( evexV5_XmmReg, XmmReg2_m128_m64bcst, imm8:1 );
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XmmMask = XmmReg1;
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build XmmOpMask8;
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ZmmReg1 = zext(XmmResult);
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}
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# GF2P8AFFINEINVQB 3-476 PAGE 1046 LINE 56501
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:VGF2P8AFFINEINVQB YmmReg1 YmmOpMask8, evexV5_YmmReg, YmmReg2_m256_m64bcst, imm8 is $(EVEX_NONE) & $(VEX_L256) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & YmmOpMask8 & evexV5_YmmReg; byte=0xCF; (YmmReg1 & ZmmReg1) ... & YmmReg2_m256_m64bcst; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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YmmResult = vgf2p8affineinvqb_avx512vl( evexV5_YmmReg, YmmReg2_m256_m64bcst, imm8:1 );
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YmmMask = YmmReg1;
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build YmmOpMask8;
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ZmmReg1 = zext(YmmResult);
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}
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# GF2P8AFFINEINVQB 3-476 PAGE 1046 LINE 56504
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define pcodeop vgf2p8affineinvqb_avx512f ;
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:VGF2P8AFFINEINVQB ZmmReg1 ZmmOpMask8, evexV5_ZmmReg, ZmmReg2_m512_m64bcst, imm8 is $(EVEX_NONE) & $(EVEX_L512) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & ZmmOpMask8 & evexV5_ZmmReg; byte=0xCF; ZmmReg1 ... & ZmmReg2_m512_m64bcst; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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ZmmResult = vgf2p8affineinvqb_avx512f( evexV5_ZmmReg, ZmmReg2_m512_m64bcst, imm8:1 );
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ZmmMask = ZmmReg1;
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build ZmmOpMask8;
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ZmmReg1 = ZmmResult;
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}
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#66 0F3A CE /r /ib
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#GF2P8AFFINEQB xmm1, xmm2/m128, imm8 A V/V GFNI
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#Computes affine transformation in the finite field GF(2^8).
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define pcodeop gf2p8affineqb;
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:GF2P8AFFINEQB XmmReg1, XmmReg2_m128, imm8 is vexMode=0 & $(PRE_66) & byte=0x0F; byte=0x3A; byte=0xCE; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmReg1 = gf2p8affineqb(XmmReg2_m128, XmmReg1, imm8:1 );
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ZmmReg1 = zext(XmmReg1);
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}
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#VEX.128.66.0F3A.W1 CE /r /ib
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#VGF2P8AFFINEQB xmm1, xmm2, xmm3/m128, imm8 B V/V AVX
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#GFNI Computes affine transformation in the finite field GF(2^8).
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define pcodeop vgf2p8affineqb_avx;
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:VGF2P8AFFINEQB XmmReg1, vexVVVV_XmmReg, XmmReg2_m128, imm8 is $(VEX_NONE) & $(VEX_L128) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & vexVVVV_XmmReg; byte=0xCE; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmReg1 = vgf2p8affineqb_avx( vexVVVV_XmmReg, XmmReg2_m128, imm8:1 );
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ZmmReg1 = zext(XmmReg1);
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}
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#VEX.256.66.0F3A.W1 CE /r /ib
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#VGF2P8AFFINEQB ymm1, ymm2, ymm3/m256, imm8 B V/V AVX
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#GFNI Computes affine transformation in the finite field GF(2^8).
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:VGF2P8AFFINEQB YmmReg1, vexVVVV_YmmReg, YmmReg2_m256, imm8 is $(VEX_NONE) & $(VEX_L256) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & vexVVVV_YmmReg; byte=0xCE; (YmmReg1 & ZmmReg1) ... & YmmReg2_m256; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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YmmReg1 = vgf2p8affineqb_avx( vexVVVV_YmmReg, YmmReg2_m256, imm8:1 );
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ZmmReg1 = zext(YmmReg1);
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}
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# GF2P8AFFINEQB 3-479 PAGE 1049 LINE 56642
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define pcodeop vgf2p8affineqb_avx512vl ;
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:VGF2P8AFFINEQB XmmReg1 XmmOpMask8, evexV5_XmmReg, XmmReg2_m128_m64bcst, imm8 is $(EVEX_NONE) & $(VEX_L128) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & XmmOpMask8 & evexV5_XmmReg; byte=0xCE; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128_m64bcst; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmResult = vgf2p8affineqb_avx512vl( evexV5_XmmReg, XmmReg2_m128_m64bcst, imm8:1 );
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XmmMask = XmmReg1;
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build XmmOpMask8;
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ZmmReg1 = zext(XmmResult);
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}
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# GF2P8AFFINEQB 3-479 PAGE 1049 LINE 56645
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:VGF2P8AFFINEQB YmmReg1 YmmOpMask8, evexV5_YmmReg, YmmReg2_m256_m64bcst, imm8 is $(EVEX_NONE) & $(VEX_L256) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & YmmOpMask8 & evexV5_YmmReg; byte=0xCE; (YmmReg1 & ZmmReg1) ... & YmmReg2_m256_m64bcst; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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YmmResult = vgf2p8affineqb_avx512vl( evexV5_YmmReg, YmmReg2_m256_m64bcst, imm8:1 );
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YmmMask = YmmReg1;
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build YmmOpMask8;
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ZmmReg1 = zext(YmmResult);
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}
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# GF2P8AFFINEQB 3-479 PAGE 1049 LINE 56648
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define pcodeop vgf2p8affineqb_avx512f ;
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:VGF2P8AFFINEQB ZmmReg1 ZmmOpMask8, evexV5_ZmmReg, ZmmReg2_m512_m64bcst, imm8 is $(EVEX_NONE) & $(EVEX_L512) & $(VEX_PRE_66) & $(VEX_0F3A) & $(VEX_W1) & ZmmOpMask8 & evexV5_ZmmReg; byte=0xCE; ZmmReg1 ... & ZmmReg2_m512_m64bcst; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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ZmmResult = vgf2p8affineqb_avx512f( evexV5_ZmmReg, ZmmReg2_m512_m64bcst, imm8:1 );
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ZmmMask = ZmmReg1;
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build ZmmOpMask8;
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ZmmReg1 = ZmmResult;
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}
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#66 0F38 CF /r
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#GF2P8MULB xmm1, xmm2/m128 A V/V
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#GFNI Multiplies elements in the finite field GF(2^8).
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define pcodeop gf2p8mulb;
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:GF2P8MULB XmmReg1, XmmReg2_m128, imm8 is vexMode=0 & $(PRE_66) & byte=0x0F; byte=0x38; byte=0xCF; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmReg1 = gf2p8mulb(XmmReg2_m128, XmmReg1, imm8:1 );
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ZmmReg1 = zext(XmmReg1);
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}
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#VEX.128.66.0F38.W0 CF /r
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#VGF2P8MULB xmm1, xmm2, xmm3/m128 B V/V AVX
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#GFNI Multiplies elements in the finite field GF(2^8).
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define pcodeop vgf2p8mulb_avx;
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:VGF2P8MULB XmmReg1, vexVVVV_XmmReg, XmmReg2_m128, imm8 is $(VEX_NONE) & $(VEX_L128) & $(VEX_PRE_66) & $(VEX_0F38) & $(VEX_W0) & vexVVVV_XmmReg; byte=0xCF; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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XmmReg1 = vgf2p8affineqb_avx( vexVVVV_XmmReg, XmmReg2_m128, imm8:1 );
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ZmmReg1 = zext(XmmReg1);
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}
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#VEX.256.66.0F38.W0 CF /r
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#VGF2P8MULB ymm1, ymm2, ymm3/m256 B V/V AVX
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#GFNI Multiplies elements in the finite field GF(2^8).
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:VGF2P8MULB YmmReg1, vexVVVV_YmmReg, YmmReg2_m256, imm8 is $(VEX_NONE) & $(VEX_L256) & $(VEX_PRE_66) & $(VEX_0F38) & $(VEX_W0) & vexVVVV_YmmReg; byte=0xCF; (YmmReg1 & ZmmReg1) ... & YmmReg2_m256; imm8
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[ evexD8Type = 0; evexTType = 0; ] # (TupleType Full)
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{
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YmmReg1 = vgf2p8mulb_avx( vexVVVV_YmmReg, YmmReg2_m256, imm8:1 );
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ZmmReg1 = zext(YmmReg1);
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}
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# GF2P8MULB 3-481 PAGE 1051 LINE 56754
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define pcodeop vgf2p8mulb_avx512vl ;
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:VGF2P8MULB XmmReg1 XmmOpMask8, evexV5_XmmReg, XmmReg2_m128 is $(EVEX_NONE) & $(VEX_L128) & $(VEX_PRE_66) & $(VEX_0F38) & $(VEX_W0) & XmmOpMask8 & evexV5_XmmReg; byte=0xCF; (XmmReg1 & ZmmReg1) ... & XmmReg2_m128
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[ evexD8Type = 1; evexTType = 0; ] # (TupleType Full Mem)
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{
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XmmResult = vgf2p8mulb_avx512vl( evexV5_XmmReg, XmmReg2_m128 );
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XmmMask = XmmReg1;
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build XmmOpMask8;
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ZmmReg1 = zext(XmmResult);
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}
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# GF2P8MULB 3-481 PAGE 1051 LINE 56757
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:VGF2P8MULB YmmReg1 YmmOpMask8, evexV5_YmmReg, YmmReg2_m256 is $(EVEX_NONE) & $(VEX_L256) & $(VEX_PRE_66) & $(VEX_0F38) & $(VEX_W0) & YmmOpMask8 & evexV5_YmmReg; byte=0xCF; (YmmReg1 & ZmmReg1) ... & YmmReg2_m256
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[ evexD8Type = 1; evexTType = 0; ] # (TupleType Full Mem)
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{
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YmmResult = vgf2p8mulb_avx512vl( evexV5_YmmReg, YmmReg2_m256 );
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YmmMask = YmmReg1;
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build YmmOpMask8;
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ZmmReg1 = zext(YmmResult);
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}
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# GF2P8MULB 3-481 PAGE 1051 LINE 56760
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define pcodeop vgf2p8mulb_avx512f ;
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:VGF2P8MULB ZmmReg1 ZmmOpMask8, evexV5_ZmmReg, ZmmReg2_m512 is $(EVEX_NONE) & $(EVEX_L512) & $(VEX_PRE_66) & $(VEX_0F38) & $(VEX_W0) & ZmmOpMask8 & evexV5_ZmmReg; byte=0xCF; ZmmReg1 ... & ZmmReg2_m512
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[ evexD8Type = 1; evexTType = 0; ] # (TupleType Full Mem)
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{
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ZmmResult = vgf2p8mulb_avx512f( evexV5_ZmmReg, ZmmReg2_m512 );
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ZmmMask = ZmmReg1;
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build ZmmOpMask8;
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ZmmReg1 = ZmmResult;
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} |