mirror of
https://github.com/cheat/cheat.git
synced 2024-11-23 06:21:35 +01:00
80c91cbdee
Integrate `go-git` into the application, and use it to `git clone` cheatsheets when the installer runs. Previously, the installer required that `git` be installed on the system `PATH`, so this change has to big advantages: 1. It removes that system dependency on `git` 2. It paves the way for implementing the `--update` command Additionally, `cheat` now performs a `--depth=1` clone when installing cheatsheets, which should at least somewhat improve installation times (especially on slow network connections).
351 lines
12 KiB
C
351 lines
12 KiB
C
// This code was imported from https://github.com/armfazh/rfc7748_precomputed
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// CHECK_BMI2ADX triggers bmi2adx if supported,
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// otherwise it fallbacks to legacy code.
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#define CHECK_BMI2ADX(label, legacy, bmi2adx) \
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CMPB ·hasBmi2Adx(SB), $0 \
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JE label \
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bmi2adx \
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RET \
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label: \
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legacy \
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RET
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// cselect is a conditional move
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// if b=1: it copies y into x;
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// if b=0: x remains with the same value;
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// if b<> 0,1: undefined.
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// Uses: AX, DX, FLAGS
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// Instr: x86_64, cmov
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#define cselect(x,y,b) \
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TESTQ b, b \
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MOVQ 0+x, AX; MOVQ 0+y, DX; CMOVQNE DX, AX; MOVQ AX, 0+x; \
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MOVQ 8+x, AX; MOVQ 8+y, DX; CMOVQNE DX, AX; MOVQ AX, 8+x; \
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MOVQ 16+x, AX; MOVQ 16+y, DX; CMOVQNE DX, AX; MOVQ AX, 16+x; \
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MOVQ 24+x, AX; MOVQ 24+y, DX; CMOVQNE DX, AX; MOVQ AX, 24+x;
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// cswap is a conditional swap
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// if b=1: x,y <- y,x;
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// if b=0: x,y remain with the same values;
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// if b<> 0,1: undefined.
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// Uses: AX, DX, R8, FLAGS
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// Instr: x86_64, cmov
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#define cswap(x,y,b) \
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TESTQ b, b \
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MOVQ 0+x, AX; MOVQ AX, R8; MOVQ 0+y, DX; CMOVQNE DX, AX; CMOVQNE R8, DX; MOVQ AX, 0+x; MOVQ DX, 0+y; \
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MOVQ 8+x, AX; MOVQ AX, R8; MOVQ 8+y, DX; CMOVQNE DX, AX; CMOVQNE R8, DX; MOVQ AX, 8+x; MOVQ DX, 8+y; \
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MOVQ 16+x, AX; MOVQ AX, R8; MOVQ 16+y, DX; CMOVQNE DX, AX; CMOVQNE R8, DX; MOVQ AX, 16+x; MOVQ DX, 16+y; \
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MOVQ 24+x, AX; MOVQ AX, R8; MOVQ 24+y, DX; CMOVQNE DX, AX; CMOVQNE R8, DX; MOVQ AX, 24+x; MOVQ DX, 24+y;
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// additionLeg adds x and y and stores in z
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// Uses: AX, DX, R8-R11, FLAGS
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// Instr: x86_64, cmov
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#define additionLeg(z,x,y) \
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MOVL $38, AX; \
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MOVL $0, DX; \
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MOVQ 0+x, R8; ADDQ 0+y, R8; \
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MOVQ 8+x, R9; ADCQ 8+y, R9; \
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MOVQ 16+x, R10; ADCQ 16+y, R10; \
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MOVQ 24+x, R11; ADCQ 24+y, R11; \
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CMOVQCS AX, DX; \
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ADDQ DX, R8; \
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ADCQ $0, R9; MOVQ R9, 8+z; \
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ADCQ $0, R10; MOVQ R10, 16+z; \
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ADCQ $0, R11; MOVQ R11, 24+z; \
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MOVL $0, DX; \
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CMOVQCS AX, DX; \
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ADDQ DX, R8; MOVQ R8, 0+z;
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// additionAdx adds x and y and stores in z
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// Uses: AX, DX, R8-R11, FLAGS
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// Instr: x86_64, cmov, adx
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#define additionAdx(z,x,y) \
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MOVL $38, AX; \
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XORL DX, DX; \
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MOVQ 0+x, R8; ADCXQ 0+y, R8; \
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MOVQ 8+x, R9; ADCXQ 8+y, R9; \
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MOVQ 16+x, R10; ADCXQ 16+y, R10; \
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MOVQ 24+x, R11; ADCXQ 24+y, R11; \
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CMOVQCS AX, DX ; \
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XORL AX, AX; \
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ADCXQ DX, R8; \
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ADCXQ AX, R9; MOVQ R9, 8+z; \
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ADCXQ AX, R10; MOVQ R10, 16+z; \
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ADCXQ AX, R11; MOVQ R11, 24+z; \
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MOVL $38, DX; \
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CMOVQCS DX, AX; \
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ADDQ AX, R8; MOVQ R8, 0+z;
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// subtraction subtracts y from x and stores in z
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// Uses: AX, DX, R8-R11, FLAGS
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// Instr: x86_64, cmov
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#define subtraction(z,x,y) \
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MOVL $38, AX; \
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MOVQ 0+x, R8; SUBQ 0+y, R8; \
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MOVQ 8+x, R9; SBBQ 8+y, R9; \
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MOVQ 16+x, R10; SBBQ 16+y, R10; \
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MOVQ 24+x, R11; SBBQ 24+y, R11; \
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MOVL $0, DX; \
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CMOVQCS AX, DX; \
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SUBQ DX, R8; \
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SBBQ $0, R9; MOVQ R9, 8+z; \
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SBBQ $0, R10; MOVQ R10, 16+z; \
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SBBQ $0, R11; MOVQ R11, 24+z; \
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MOVL $0, DX; \
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CMOVQCS AX, DX; \
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SUBQ DX, R8; MOVQ R8, 0+z;
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// integerMulAdx multiplies x and y and stores in z
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// Uses: AX, DX, R8-R15, FLAGS
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// Instr: x86_64, bmi2, adx
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#define integerMulAdx(z,x,y) \
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MOVQ 0+y, DX; XORL AX, AX; \
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MULXQ 0+x, AX, R8; MOVQ AX, 0+z; \
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MULXQ 8+x, AX, R9; ADCXQ AX, R8; \
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MULXQ 16+x, AX, R10; ADCXQ AX, R9; \
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MULXQ 24+x, AX, R11; ADCXQ AX, R10; \
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MOVL $0, AX;;;;;;;;; ADCXQ AX, R11; \
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MOVQ 8+y, DX; XORL AX, AX; \
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MULXQ 0+x, AX, R12; ADCXQ R8, AX; MOVQ AX, 8+z; \
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MULXQ 8+x, AX, R13; ADCXQ R9, R12; ADOXQ AX, R12; \
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MULXQ 16+x, AX, R14; ADCXQ R10, R13; ADOXQ AX, R13; \
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MULXQ 24+x, AX, R15; ADCXQ R11, R14; ADOXQ AX, R14; \
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MOVL $0, AX;;;;;;;;; ADCXQ AX, R15; ADOXQ AX, R15; \
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MOVQ 16+y, DX; XORL AX, AX; \
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MULXQ 0+x, AX, R8; ADCXQ R12, AX; MOVQ AX, 16+z; \
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MULXQ 8+x, AX, R9; ADCXQ R13, R8; ADOXQ AX, R8; \
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MULXQ 16+x, AX, R10; ADCXQ R14, R9; ADOXQ AX, R9; \
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MULXQ 24+x, AX, R11; ADCXQ R15, R10; ADOXQ AX, R10; \
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MOVL $0, AX;;;;;;;;; ADCXQ AX, R11; ADOXQ AX, R11; \
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MOVQ 24+y, DX; XORL AX, AX; \
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MULXQ 0+x, AX, R12; ADCXQ R8, AX; MOVQ AX, 24+z; \
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MULXQ 8+x, AX, R13; ADCXQ R9, R12; ADOXQ AX, R12; MOVQ R12, 32+z; \
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MULXQ 16+x, AX, R14; ADCXQ R10, R13; ADOXQ AX, R13; MOVQ R13, 40+z; \
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MULXQ 24+x, AX, R15; ADCXQ R11, R14; ADOXQ AX, R14; MOVQ R14, 48+z; \
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MOVL $0, AX;;;;;;;;; ADCXQ AX, R15; ADOXQ AX, R15; MOVQ R15, 56+z;
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// integerMulLeg multiplies x and y and stores in z
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// Uses: AX, DX, R8-R15, FLAGS
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// Instr: x86_64
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#define integerMulLeg(z,x,y) \
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MOVQ 0+y, R8; \
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MOVQ 0+x, AX; MULQ R8; MOVQ AX, 0+z; MOVQ DX, R15; \
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MOVQ 8+x, AX; MULQ R8; MOVQ AX, R13; MOVQ DX, R10; \
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MOVQ 16+x, AX; MULQ R8; MOVQ AX, R14; MOVQ DX, R11; \
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MOVQ 24+x, AX; MULQ R8; \
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ADDQ R13, R15; \
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ADCQ R14, R10; MOVQ R10, 16+z; \
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ADCQ AX, R11; MOVQ R11, 24+z; \
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ADCQ $0, DX; MOVQ DX, 32+z; \
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MOVQ 8+y, R8; \
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MOVQ 0+x, AX; MULQ R8; MOVQ AX, R12; MOVQ DX, R9; \
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MOVQ 8+x, AX; MULQ R8; MOVQ AX, R13; MOVQ DX, R10; \
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MOVQ 16+x, AX; MULQ R8; MOVQ AX, R14; MOVQ DX, R11; \
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MOVQ 24+x, AX; MULQ R8; \
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ADDQ R12, R15; MOVQ R15, 8+z; \
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ADCQ R13, R9; \
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ADCQ R14, R10; \
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ADCQ AX, R11; \
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ADCQ $0, DX; \
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ADCQ 16+z, R9; MOVQ R9, R15; \
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ADCQ 24+z, R10; MOVQ R10, 24+z; \
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ADCQ 32+z, R11; MOVQ R11, 32+z; \
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ADCQ $0, DX; MOVQ DX, 40+z; \
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MOVQ 16+y, R8; \
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MOVQ 0+x, AX; MULQ R8; MOVQ AX, R12; MOVQ DX, R9; \
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MOVQ 8+x, AX; MULQ R8; MOVQ AX, R13; MOVQ DX, R10; \
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MOVQ 16+x, AX; MULQ R8; MOVQ AX, R14; MOVQ DX, R11; \
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MOVQ 24+x, AX; MULQ R8; \
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ADDQ R12, R15; MOVQ R15, 16+z; \
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ADCQ R13, R9; \
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ADCQ R14, R10; \
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ADCQ AX, R11; \
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ADCQ $0, DX; \
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ADCQ 24+z, R9; MOVQ R9, R15; \
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ADCQ 32+z, R10; MOVQ R10, 32+z; \
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ADCQ 40+z, R11; MOVQ R11, 40+z; \
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ADCQ $0, DX; MOVQ DX, 48+z; \
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MOVQ 24+y, R8; \
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MOVQ 0+x, AX; MULQ R8; MOVQ AX, R12; MOVQ DX, R9; \
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MOVQ 8+x, AX; MULQ R8; MOVQ AX, R13; MOVQ DX, R10; \
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MOVQ 16+x, AX; MULQ R8; MOVQ AX, R14; MOVQ DX, R11; \
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MOVQ 24+x, AX; MULQ R8; \
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ADDQ R12, R15; MOVQ R15, 24+z; \
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ADCQ R13, R9; \
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ADCQ R14, R10; \
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ADCQ AX, R11; \
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ADCQ $0, DX; \
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ADCQ 32+z, R9; MOVQ R9, 32+z; \
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ADCQ 40+z, R10; MOVQ R10, 40+z; \
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ADCQ 48+z, R11; MOVQ R11, 48+z; \
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ADCQ $0, DX; MOVQ DX, 56+z;
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// integerSqrLeg squares x and stores in z
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// Uses: AX, CX, DX, R8-R15, FLAGS
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// Instr: x86_64
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#define integerSqrLeg(z,x) \
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MOVQ 0+x, R8; \
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MOVQ 8+x, AX; MULQ R8; MOVQ AX, R9; MOVQ DX, R10; /* A[0]*A[1] */ \
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MOVQ 16+x, AX; MULQ R8; MOVQ AX, R14; MOVQ DX, R11; /* A[0]*A[2] */ \
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MOVQ 24+x, AX; MULQ R8; MOVQ AX, R15; MOVQ DX, R12; /* A[0]*A[3] */ \
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MOVQ 24+x, R8; \
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MOVQ 8+x, AX; MULQ R8; MOVQ AX, CX; MOVQ DX, R13; /* A[3]*A[1] */ \
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MOVQ 16+x, AX; MULQ R8; /* A[3]*A[2] */ \
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\
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ADDQ R14, R10;\
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ADCQ R15, R11; MOVL $0, R15;\
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ADCQ CX, R12;\
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ADCQ AX, R13;\
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ADCQ $0, DX; MOVQ DX, R14;\
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MOVQ 8+x, AX; MULQ 16+x;\
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\
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ADDQ AX, R11;\
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ADCQ DX, R12;\
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ADCQ $0, R13;\
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ADCQ $0, R14;\
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ADCQ $0, R15;\
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\
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SHLQ $1, R14, R15; MOVQ R15, 56+z;\
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SHLQ $1, R13, R14; MOVQ R14, 48+z;\
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SHLQ $1, R12, R13; MOVQ R13, 40+z;\
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SHLQ $1, R11, R12; MOVQ R12, 32+z;\
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SHLQ $1, R10, R11; MOVQ R11, 24+z;\
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SHLQ $1, R9, R10; MOVQ R10, 16+z;\
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SHLQ $1, R9; MOVQ R9, 8+z;\
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\
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MOVQ 0+x,AX; MULQ AX; MOVQ AX, 0+z; MOVQ DX, R9;\
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MOVQ 8+x,AX; MULQ AX; MOVQ AX, R10; MOVQ DX, R11;\
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MOVQ 16+x,AX; MULQ AX; MOVQ AX, R12; MOVQ DX, R13;\
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MOVQ 24+x,AX; MULQ AX; MOVQ AX, R14; MOVQ DX, R15;\
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\
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ADDQ 8+z, R9; MOVQ R9, 8+z;\
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ADCQ 16+z, R10; MOVQ R10, 16+z;\
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ADCQ 24+z, R11; MOVQ R11, 24+z;\
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ADCQ 32+z, R12; MOVQ R12, 32+z;\
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ADCQ 40+z, R13; MOVQ R13, 40+z;\
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ADCQ 48+z, R14; MOVQ R14, 48+z;\
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ADCQ 56+z, R15; MOVQ R15, 56+z;
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// integerSqrAdx squares x and stores in z
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// Uses: AX, CX, DX, R8-R15, FLAGS
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// Instr: x86_64, bmi2, adx
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#define integerSqrAdx(z,x) \
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MOVQ 0+x, DX; /* A[0] */ \
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MULXQ 8+x, R8, R14; /* A[1]*A[0] */ XORL R15, R15; \
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MULXQ 16+x, R9, R10; /* A[2]*A[0] */ ADCXQ R14, R9; \
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MULXQ 24+x, AX, CX; /* A[3]*A[0] */ ADCXQ AX, R10; \
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MOVQ 24+x, DX; /* A[3] */ \
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MULXQ 8+x, R11, R12; /* A[1]*A[3] */ ADCXQ CX, R11; \
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MULXQ 16+x, AX, R13; /* A[2]*A[3] */ ADCXQ AX, R12; \
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MOVQ 8+x, DX; /* A[1] */ ADCXQ R15, R13; \
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MULXQ 16+x, AX, CX; /* A[2]*A[1] */ MOVL $0, R14; \
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ADCXQ R15, R14; \
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XORL R15, R15; \
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ADOXQ AX, R10; ADCXQ R8, R8; \
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ADOXQ CX, R11; ADCXQ R9, R9; \
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ADOXQ R15, R12; ADCXQ R10, R10; \
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ADOXQ R15, R13; ADCXQ R11, R11; \
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ADOXQ R15, R14; ADCXQ R12, R12; \
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;;;;;;;;;;;;;;; ADCXQ R13, R13; \
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;;;;;;;;;;;;;;; ADCXQ R14, R14; \
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MOVQ 0+x, DX; MULXQ DX, AX, CX; /* A[0]^2 */ \
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;;;;;;;;;;;;;;; MOVQ AX, 0+z; \
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ADDQ CX, R8; MOVQ R8, 8+z; \
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MOVQ 8+x, DX; MULXQ DX, AX, CX; /* A[1]^2 */ \
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ADCQ AX, R9; MOVQ R9, 16+z; \
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ADCQ CX, R10; MOVQ R10, 24+z; \
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MOVQ 16+x, DX; MULXQ DX, AX, CX; /* A[2]^2 */ \
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ADCQ AX, R11; MOVQ R11, 32+z; \
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ADCQ CX, R12; MOVQ R12, 40+z; \
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MOVQ 24+x, DX; MULXQ DX, AX, CX; /* A[3]^2 */ \
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ADCQ AX, R13; MOVQ R13, 48+z; \
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ADCQ CX, R14; MOVQ R14, 56+z;
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// reduceFromDouble finds z congruent to x modulo p such that 0<z<2^256
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// Uses: AX, DX, R8-R13, FLAGS
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// Instr: x86_64
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#define reduceFromDoubleLeg(z,x) \
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/* 2*C = 38 = 2^256 */ \
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MOVL $38, AX; MULQ 32+x; MOVQ AX, R8; MOVQ DX, R9; /* C*C[4] */ \
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MOVL $38, AX; MULQ 40+x; MOVQ AX, R12; MOVQ DX, R10; /* C*C[5] */ \
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MOVL $38, AX; MULQ 48+x; MOVQ AX, R13; MOVQ DX, R11; /* C*C[6] */ \
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MOVL $38, AX; MULQ 56+x; /* C*C[7] */ \
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ADDQ R12, R9; \
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ADCQ R13, R10; \
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ADCQ AX, R11; \
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ADCQ $0, DX; \
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ADDQ 0+x, R8; \
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ADCQ 8+x, R9; \
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ADCQ 16+x, R10; \
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ADCQ 24+x, R11; \
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ADCQ $0, DX; \
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MOVL $38, AX; \
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IMULQ AX, DX; /* C*C[4], CF=0, OF=0 */ \
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ADDQ DX, R8; \
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ADCQ $0, R9; MOVQ R9, 8+z; \
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ADCQ $0, R10; MOVQ R10, 16+z; \
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ADCQ $0, R11; MOVQ R11, 24+z; \
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MOVL $0, DX; \
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CMOVQCS AX, DX; \
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ADDQ DX, R8; MOVQ R8, 0+z;
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// reduceFromDoubleAdx finds z congruent to x modulo p such that 0<z<2^256
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// Uses: AX, DX, R8-R13, FLAGS
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// Instr: x86_64, bmi2, adx
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#define reduceFromDoubleAdx(z,x) \
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MOVL $38, DX; /* 2*C = 38 = 2^256 */ \
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MULXQ 32+x, R8, R10; /* C*C[4] */ XORL AX, AX; ADOXQ 0+x, R8; \
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MULXQ 40+x, R9, R11; /* C*C[5] */ ADCXQ R10, R9; ADOXQ 8+x, R9; \
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MULXQ 48+x, R10, R13; /* C*C[6] */ ADCXQ R11, R10; ADOXQ 16+x, R10; \
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MULXQ 56+x, R11, R12; /* C*C[7] */ ADCXQ R13, R11; ADOXQ 24+x, R11; \
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ADCXQ AX, R12; ADOXQ AX, R12; \
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IMULQ DX, R12; /* C*C[4], CF=0, OF=0 */ \
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ADCXQ R12, R8; \
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ADCXQ AX, R9; MOVQ R9, 8+z; \
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ADCXQ AX, R10; MOVQ R10, 16+z; \
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ADCXQ AX, R11; MOVQ R11, 24+z; \
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MOVL $0, R12; \
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CMOVQCS DX, R12; \
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ADDQ R12, R8; MOVQ R8, 0+z;
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// addSub calculates two operations: x,y = x+y,x-y
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// Uses: AX, DX, R8-R15, FLAGS
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#define addSub(x,y) \
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MOVL $38, AX; \
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XORL DX, DX; \
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MOVQ 0+x, R8; MOVQ R8, R12; ADDQ 0+y, R8; \
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MOVQ 8+x, R9; MOVQ R9, R13; ADCQ 8+y, R9; \
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MOVQ 16+x, R10; MOVQ R10, R14; ADCQ 16+y, R10; \
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MOVQ 24+x, R11; MOVQ R11, R15; ADCQ 24+y, R11; \
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CMOVQCS AX, DX; \
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XORL AX, AX; \
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ADDQ DX, R8; \
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ADCQ $0, R9; \
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ADCQ $0, R10; \
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ADCQ $0, R11; \
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MOVL $38, DX; \
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CMOVQCS DX, AX; \
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ADDQ AX, R8; \
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MOVL $38, AX; \
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SUBQ 0+y, R12; \
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SBBQ 8+y, R13; \
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SBBQ 16+y, R14; \
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SBBQ 24+y, R15; \
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MOVL $0, DX; \
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CMOVQCS AX, DX; \
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SUBQ DX, R12; \
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SBBQ $0, R13; \
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SBBQ $0, R14; \
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SBBQ $0, R15; \
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MOVL $0, DX; \
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CMOVQCS AX, DX; \
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SUBQ DX, R12; \
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MOVQ R8, 0+x; \
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MOVQ R9, 8+x; \
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MOVQ R10, 16+x; \
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MOVQ R11, 24+x; \
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MOVQ R12, 0+y; \
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MOVQ R13, 8+y; \
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MOVQ R14, 16+y; \
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MOVQ R15, 24+y;
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