mirror of
https://github.com/rn10950/RetroZilla.git
synced 2024-11-14 03:30:17 +01:00
390 lines
8.7 KiB
ArmAsm
390 lines
8.7 KiB
ArmAsm
# This Source Code Form is subject to the terms of the Mozilla Public
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# License, v. 2.0. If a copy of the MPL was not distributed with this
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# file, You can obtain one at http://mozilla.org/MPL/2.0/.
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# ------------------------------------------------------------------------
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#
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# Implementation of s_mpv_mul_set_vec which exploits
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# the 64X64->128 bit unsigned multiply instruction.
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#
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# ------------------------------------------------------------------------
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# r = a * digit, r and a are vectors of length len
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# returns the carry digit
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# r and a are 64 bit aligned.
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#
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# uint64_t
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# s_mpv_mul_set_vec64(uint64_t *r, uint64_t *a, int len, uint64_t digit)
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#
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.text; .align 16; .globl s_mpv_mul_set_vec64; .type s_mpv_mul_set_vec64, @function; s_mpv_mul_set_vec64:
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xorq %rax, %rax # if (len == 0) return (0)
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testq %rdx, %rdx
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jz .L17
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movq %rdx, %r8 # Use r8 for len; %rdx is used by mul
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xorq %r9, %r9 # cy = 0
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.L15:
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cmpq $8, %r8 # 8 - len
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jb .L16
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movq 0(%rsi), %rax # rax = a[0]
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movq 8(%rsi), %r11 # prefetch a[1]
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mulq %rcx # p = a[0] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 0(%rdi) # r[0] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 16(%rsi), %r11 # prefetch a[2]
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mulq %rcx # p = a[1] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 8(%rdi) # r[1] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 24(%rsi), %r11 # prefetch a[3]
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mulq %rcx # p = a[2] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 16(%rdi) # r[2] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 32(%rsi), %r11 # prefetch a[4]
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mulq %rcx # p = a[3] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 24(%rdi) # r[3] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 40(%rsi), %r11 # prefetch a[5]
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mulq %rcx # p = a[4] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 32(%rdi) # r[4] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 48(%rsi), %r11 # prefetch a[6]
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mulq %rcx # p = a[5] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 40(%rdi) # r[5] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 56(%rsi), %r11 # prefetch a[7]
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mulq %rcx # p = a[6] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 48(%rdi) # r[6] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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mulq %rcx # p = a[7] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 56(%rdi) # r[7] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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addq $64, %rsi
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addq $64, %rdi
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subq $8, %r8
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jz .L17
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jmp .L15
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.L16:
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movq 0(%rsi), %rax
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mulq %rcx # p = a[0] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 0(%rdi) # r[0] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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movq 8(%rsi), %rax
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mulq %rcx # p = a[1] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 8(%rdi) # r[1] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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movq 16(%rsi), %rax
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mulq %rcx # p = a[2] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 16(%rdi) # r[2] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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movq 24(%rsi), %rax
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mulq %rcx # p = a[3] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 24(%rdi) # r[3] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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movq 32(%rsi), %rax
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mulq %rcx # p = a[4] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 32(%rdi) # r[4] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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movq 40(%rsi), %rax
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mulq %rcx # p = a[5] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 40(%rdi) # r[5] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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movq 48(%rsi), %rax
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mulq %rcx # p = a[6] * digit
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 48(%rdi) # r[6] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L17
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.L17:
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movq %r9, %rax
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ret
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.size s_mpv_mul_set_vec64, .-s_mpv_mul_set_vec64
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# ------------------------------------------------------------------------
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#
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# Implementation of s_mpv_mul_add_vec which exploits
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# the 64X64->128 bit unsigned multiply instruction.
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#
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# ------------------------------------------------------------------------
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# r += a * digit, r and a are vectors of length len
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# returns the carry digit
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# r and a are 64 bit aligned.
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#
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# uint64_t
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# s_mpv_mul_add_vec64(uint64_t *r, uint64_t *a, int len, uint64_t digit)
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#
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.text; .align 16; .globl s_mpv_mul_add_vec64; .type s_mpv_mul_add_vec64, @function; s_mpv_mul_add_vec64:
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xorq %rax, %rax # if (len == 0) return (0)
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testq %rdx, %rdx
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jz .L27
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movq %rdx, %r8 # Use r8 for len; %rdx is used by mul
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xorq %r9, %r9 # cy = 0
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.L25:
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cmpq $8, %r8 # 8 - len
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jb .L26
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movq 0(%rsi), %rax # rax = a[0]
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movq 0(%rdi), %r10 # r10 = r[0]
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movq 8(%rsi), %r11 # prefetch a[1]
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mulq %rcx # p = a[0] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[0]
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movq 8(%rdi), %r10 # prefetch r[1]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 0(%rdi) # r[0] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 16(%rsi), %r11 # prefetch a[2]
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mulq %rcx # p = a[1] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[1]
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movq 16(%rdi), %r10 # prefetch r[2]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 8(%rdi) # r[1] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 24(%rsi), %r11 # prefetch a[3]
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mulq %rcx # p = a[2] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[2]
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movq 24(%rdi), %r10 # prefetch r[3]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 16(%rdi) # r[2] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 32(%rsi), %r11 # prefetch a[4]
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mulq %rcx # p = a[3] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[3]
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movq 32(%rdi), %r10 # prefetch r[4]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 24(%rdi) # r[3] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 40(%rsi), %r11 # prefetch a[5]
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mulq %rcx # p = a[4] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[4]
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movq 40(%rdi), %r10 # prefetch r[5]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 32(%rdi) # r[4] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 48(%rsi), %r11 # prefetch a[6]
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mulq %rcx # p = a[5] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[5]
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movq 48(%rdi), %r10 # prefetch r[6]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 40(%rdi) # r[5] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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movq 56(%rsi), %r11 # prefetch a[7]
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mulq %rcx # p = a[6] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[6]
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movq 56(%rdi), %r10 # prefetch r[7]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 48(%rdi) # r[6] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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movq %r11, %rax
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mulq %rcx # p = a[7] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[7]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 56(%rdi) # r[7] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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addq $64, %rsi
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addq $64, %rdi
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subq $8, %r8
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jz .L27
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jmp .L25
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.L26:
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movq 0(%rsi), %rax
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movq 0(%rdi), %r10
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mulq %rcx # p = a[0] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[0]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 0(%rdi) # r[0] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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movq 8(%rsi), %rax
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movq 8(%rdi), %r10
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mulq %rcx # p = a[1] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[1]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 8(%rdi) # r[1] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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movq 16(%rsi), %rax
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movq 16(%rdi), %r10
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mulq %rcx # p = a[2] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[2]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 16(%rdi) # r[2] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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movq 24(%rsi), %rax
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movq 24(%rdi), %r10
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mulq %rcx # p = a[3] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[3]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 24(%rdi) # r[3] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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movq 32(%rsi), %rax
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movq 32(%rdi), %r10
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mulq %rcx # p = a[4] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[4]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 32(%rdi) # r[4] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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movq 40(%rsi), %rax
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movq 40(%rdi), %r10
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mulq %rcx # p = a[5] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[5]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 40(%rdi) # r[5] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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movq 48(%rsi), %rax
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movq 48(%rdi), %r10
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mulq %rcx # p = a[6] * digit
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addq %r10, %rax
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adcq $0, %rdx # p += r[6]
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addq %r9, %rax
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adcq $0, %rdx # p += cy
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movq %rax, 48(%rdi) # r[6] = lo(p)
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movq %rdx, %r9 # cy = hi(p)
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decq %r8
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jz .L27
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.L27:
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movq %r9, %rax
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ret
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.size s_mpv_mul_add_vec64, .-s_mpv_mul_add_vec64
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# Magic indicating no need for an executable stack
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.section .note.GNU-stack, "", @progbits
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.previous
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