mirror of
https://github.com/henrydcase/pqc.git
synced 2024-11-24 00:11:27 +00:00
b3f9d4f8d6
* Add McEliece reference implementations * Add Vec implementations of McEliece * Add sse implementations * Add AVX2 implementations * Get rid of stuff not supported by Mac ABI * restrict to two cores * Ditch .data files * Remove .hidden from all .S files * speed up duplicate consistency tests by batching * make cpuinfo more robust * Hope to stabilize macos cpuinfo without ccache * Revert "Hope to stabilize macos cpuinfo without ccache" This reverts commit 6129c3cabe1abbc8b956bc87e902a698e32bf322. * Just hardcode what's available at travis * Fixed-size types in api.h * namespace all header files in mceliece * Ditch operations.h * Get rid of static inline functions * fixup! Ditch operations.h
514 lines
11 KiB
ArmAsm
514 lines
11 KiB
ArmAsm
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# qhasm: int64 input_0
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# qhasm: int64 input_1
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# qhasm: int64 input_2
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# qhasm: int64 input_3
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# qhasm: int64 input_4
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# qhasm: int64 input_5
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# qhasm: stack64 input_6
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# qhasm: stack64 input_7
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# qhasm: int64 caller_r11
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# qhasm: int64 caller_r12
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# qhasm: int64 caller_r13
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# qhasm: int64 caller_r14
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# qhasm: int64 caller_r15
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# qhasm: int64 caller_rbx
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# qhasm: int64 caller_rbp
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# qhasm: int64 t0
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# qhasm: int64 t1
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# qhasm: int64 c
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# qhasm: int64 r
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# qhasm: enter vec_reduce_asm
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.p2align 5
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.global _PQCLEAN_MCELIECE6688128F_SSE_vec_reduce_asm
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.global PQCLEAN_MCELIECE6688128F_SSE_vec_reduce_asm
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_PQCLEAN_MCELIECE6688128F_SSE_vec_reduce_asm:
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PQCLEAN_MCELIECE6688128F_SSE_vec_reduce_asm:
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mov %rsp,%r11
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and $31,%r11
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add $0,%r11
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sub %r11,%rsp
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# qhasm: r = 0
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# asm 1: mov $0,>r=int64#7
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# asm 2: mov $0,>r=%rax
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mov $0,%rax
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# qhasm: t0 = mem64[ input_0 + 192 ]
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# asm 1: movq 192(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 192(<input_0=%rdi),>t0=%rsi
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movq 192(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 200 ]
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# asm 1: movq 200(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 200(<input_0=%rdi),>t1=%rdx
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movq 200(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 176 ]
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# asm 1: movq 176(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 176(<input_0=%rdi),>t0=%rsi
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movq 176(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 184 ]
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# asm 1: movq 184(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 184(<input_0=%rdi),>t1=%rdx
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movq 184(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 160 ]
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# asm 1: movq 160(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 160(<input_0=%rdi),>t0=%rsi
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movq 160(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 168 ]
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# asm 1: movq 168(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 168(<input_0=%rdi),>t1=%rdx
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movq 168(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 144 ]
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# asm 1: movq 144(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 144(<input_0=%rdi),>t0=%rsi
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movq 144(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 152 ]
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# asm 1: movq 152(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 152(<input_0=%rdi),>t1=%rdx
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movq 152(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 128 ]
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# asm 1: movq 128(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 128(<input_0=%rdi),>t0=%rsi
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movq 128(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 136 ]
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# asm 1: movq 136(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 136(<input_0=%rdi),>t1=%rdx
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movq 136(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 112 ]
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# asm 1: movq 112(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 112(<input_0=%rdi),>t0=%rsi
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movq 112(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 120 ]
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# asm 1: movq 120(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 120(<input_0=%rdi),>t1=%rdx
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movq 120(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 96 ]
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# asm 1: movq 96(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 96(<input_0=%rdi),>t0=%rsi
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movq 96(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 104 ]
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# asm 1: movq 104(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 104(<input_0=%rdi),>t1=%rdx
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movq 104(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 80 ]
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# asm 1: movq 80(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 80(<input_0=%rdi),>t0=%rsi
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movq 80(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 88 ]
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# asm 1: movq 88(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 88(<input_0=%rdi),>t1=%rdx
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movq 88(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 64 ]
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# asm 1: movq 64(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 64(<input_0=%rdi),>t0=%rsi
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movq 64(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 72 ]
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# asm 1: movq 72(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 72(<input_0=%rdi),>t1=%rdx
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movq 72(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 48 ]
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# asm 1: movq 48(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 48(<input_0=%rdi),>t0=%rsi
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movq 48(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 56 ]
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# asm 1: movq 56(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 56(<input_0=%rdi),>t1=%rdx
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movq 56(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 32 ]
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# asm 1: movq 32(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 32(<input_0=%rdi),>t0=%rsi
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movq 32(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 40 ]
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# asm 1: movq 40(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 40(<input_0=%rdi),>t1=%rdx
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movq 40(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 16 ]
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# asm 1: movq 16(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 16(<input_0=%rdi),>t0=%rsi
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movq 16(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 24 ]
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# asm 1: movq 24(<input_0=int64#1),>t1=int64#3
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# asm 2: movq 24(<input_0=%rdi),>t1=%rdx
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movq 24(%rdi),%rdx
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#3,<t0=int64#2
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# asm 2: xor <t1=%rdx,<t0=%rsi
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xor %rdx,%rsi
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#2
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# asm 2: popcnt <t0=%rsi, >c=%rsi
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popcnt %rsi, %rsi
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# qhasm: (uint32) c &= 1
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# asm 1: and $1,<c=int64#2d
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# asm 2: and $1,<c=%esi
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and $1,%esi
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# qhasm: r <<= 1
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# asm 1: shl $1,<r=int64#7
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# asm 2: shl $1,<r=%rax
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shl $1,%rax
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# qhasm: r |= c
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# asm 1: or <c=int64#2,<r=int64#7
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# asm 2: or <c=%rsi,<r=%rax
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or %rsi,%rax
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# qhasm: t0 = mem64[ input_0 + 0 ]
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# asm 1: movq 0(<input_0=int64#1),>t0=int64#2
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# asm 2: movq 0(<input_0=%rdi),>t0=%rsi
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movq 0(%rdi),%rsi
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# qhasm: t1 = mem64[ input_0 + 8 ]
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# asm 1: movq 8(<input_0=int64#1),>t1=int64#1
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# asm 2: movq 8(<input_0=%rdi),>t1=%rdi
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movq 8(%rdi),%rdi
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# qhasm: t0 ^= t1
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# asm 1: xor <t1=int64#1,<t0=int64#2
|
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# asm 2: xor <t1=%rdi,<t0=%rsi
|
|
xor %rdi,%rsi
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|
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# qhasm: c = count(t0)
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# asm 1: popcnt <t0=int64#2, >c=int64#1
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|
# asm 2: popcnt <t0=%rsi, >c=%rdi
|
|
popcnt %rsi, %rdi
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|
|
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# qhasm: (uint32) c &= 1
|
|
# asm 1: and $1,<c=int64#1d
|
|
# asm 2: and $1,<c=%edi
|
|
and $1,%edi
|
|
|
|
# qhasm: r <<= 1
|
|
# asm 1: shl $1,<r=int64#7
|
|
# asm 2: shl $1,<r=%rax
|
|
shl $1,%rax
|
|
|
|
# qhasm: r |= c
|
|
# asm 1: or <c=int64#1,<r=int64#7
|
|
# asm 2: or <c=%rdi,<r=%rax
|
|
or %rdi,%rax
|
|
|
|
# qhasm: return r
|
|
add %r11,%rsp
|
|
ret
|