forked from OSchip/llvm-project
223 lines
7.7 KiB
LLVM
223 lines
7.7 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc < %s -mtriple=i686-unknown-unknown | FileCheck %s --check-prefixes=X86,X86-NOBMI
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; RUN: llc < %s -mtriple=i686-unknown-unknown -mattr=+bmi2 | FileCheck %s --check-prefixes=X86,X86-BMI
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown | FileCheck %s --check-prefixes=X64,X64-NOBMI
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; RUN: llc < %s -mtriple=x86_64-unknown-unknown -mattr=+bmi2 | FileCheck %s --check-prefixes=X64,X64-BMI
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; PR1198
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define i64 @foo(i64 %x, i64 %y) nounwind {
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; X86-LABEL: foo:
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; X86: # %bb.0:
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; X86-NEXT: pushl %ebp
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; X86-NEXT: pushl %ebx
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; X86-NEXT: pushl %edi
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; X86-NEXT: pushl %esi
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ecx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %esi
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ebp
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; X86-NEXT: movl {{[0-9]+}}(%esp), %edi
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; X86-NEXT: movl %ecx, %eax
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; X86-NEXT: mull %ebp
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; X86-NEXT: movl %edx, %ebx
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; X86-NEXT: movl %esi, %eax
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; X86-NEXT: mull %ebp
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; X86-NEXT: movl %edx, %ebp
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; X86-NEXT: movl %eax, %esi
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; X86-NEXT: addl %ebx, %esi
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; X86-NEXT: adcl $0, %ebp
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; X86-NEXT: movl %ecx, %eax
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; X86-NEXT: mull %edi
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; X86-NEXT: movl %edx, %ebx
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; X86-NEXT: addl %esi, %eax
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; X86-NEXT: adcl %ebp, %ebx
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; X86-NEXT: setb %al
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; X86-NEXT: movzbl %al, %ecx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X86-NEXT: mull %edi
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; X86-NEXT: movl %edx, %esi
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; X86-NEXT: movl %eax, %ebp
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; X86-NEXT: addl %ebx, %ebp
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; X86-NEXT: adcl %ecx, %esi
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; X86-NEXT: xorl %ecx, %ecx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X86-NEXT: mull %ecx
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; X86-NEXT: movl %edx, %edi
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; X86-NEXT: movl %eax, %ebx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X86-NEXT: mull %ecx
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; X86-NEXT: addl %ebx, %eax
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; X86-NEXT: adcl %edi, %edx
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; X86-NEXT: addl %ebp, %eax
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; X86-NEXT: adcl %esi, %edx
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; X86-NEXT: popl %esi
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; X86-NEXT: popl %edi
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; X86-NEXT: popl %ebx
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; X86-NEXT: popl %ebp
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; X86-NEXT: retl
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;
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; X64-LABEL: foo:
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; X64: # %bb.0:
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; X64-NEXT: movq %rdi, %rax
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; X64-NEXT: mulq %rsi
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; X64-NEXT: movq %rdx, %rax
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; X64-NEXT: retq
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%tmp0 = zext i64 %x to i128
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%tmp1 = zext i64 %y to i128
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%tmp2 = mul i128 %tmp0, %tmp1
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%tmp7 = zext i32 64 to i128
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%tmp3 = lshr i128 %tmp2, %tmp7
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%tmp4 = trunc i128 %tmp3 to i64
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ret i64 %tmp4
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}
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; <rdar://problem/14096009> superfluous multiply by high part of
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; zero-extended value.
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define i64 @mul1(i64 %n, i64* nocapture %z, i64* nocapture %x, i64 %y) nounwind {
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; X86-LABEL: mul1:
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; X86: # %bb.0: # %entry
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; X86-NEXT: pushl %ebp
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; X86-NEXT: pushl %ebx
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; X86-NEXT: pushl %edi
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; X86-NEXT: pushl %esi
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; X86-NEXT: subl $28, %esp
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ecx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X86-NEXT: orl %ecx, %eax
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; X86-NEXT: je .LBB1_3
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; X86-NEXT: # %bb.1: # %for.body.preheader
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; X86-NEXT: xorl %eax, %eax
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; X86-NEXT: xorl %edx, %edx
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; X86-NEXT: xorl %ebx, %ebx
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; X86-NEXT: movl $0, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Folded Spill
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; X86-NEXT: .p2align 4, 0x90
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; X86-NEXT: .LBB1_2: # %for.body
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; X86-NEXT: # =>This Inner Loop Header: Depth=1
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; X86-NEXT: movl %edx, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: movl %eax, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X86-NEXT: movl %eax, %ecx
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; X86-NEXT: movl (%eax,%ebx,8), %ebp
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; X86-NEXT: movl 4(%eax,%ebx,8), %esi
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; X86-NEXT: movl %esi, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: movl %ebp, %eax
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; X86-NEXT: movl %ebp, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ecx
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; X86-NEXT: mull %ecx
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; X86-NEXT: movl %edx, %edi
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; X86-NEXT: movl %eax, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: movl %esi, %eax
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; X86-NEXT: mull %ecx
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; X86-NEXT: movl %edx, %ecx
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; X86-NEXT: movl %eax, %esi
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; X86-NEXT: addl %edi, %esi
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; X86-NEXT: adcl $0, %ecx
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; X86-NEXT: movl %ebp, %eax
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; X86-NEXT: movl {{[0-9]+}}(%esp), %edx
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; X86-NEXT: mull %edx
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; X86-NEXT: movl %edx, %ebp
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; X86-NEXT: movl %eax, %edi
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; X86-NEXT: addl %esi, %edi
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; X86-NEXT: adcl %ecx, %ebp
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; X86-NEXT: setb {{[-0-9]+}}(%e{{[sb]}}p) # 1-byte Folded Spill
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; X86-NEXT: movl {{[-0-9]+}}(%e{{[sb]}}p), %eax # 4-byte Reload
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; X86-NEXT: mull {{[0-9]+}}(%esp)
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; X86-NEXT: movl %edx, %ecx
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; X86-NEXT: movl %eax, %esi
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; X86-NEXT: addl %ebp, %esi
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; X86-NEXT: movzbl {{[-0-9]+}}(%e{{[sb]}}p), %eax # 1-byte Folded Reload
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; X86-NEXT: adcl %eax, %ecx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %eax
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; X86-NEXT: xorl %edx, %edx
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; X86-NEXT: mull %edx
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; X86-NEXT: movl %edx, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: movl %eax, %ebp
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; X86-NEXT: movl {{[-0-9]+}}(%e{{[sb]}}p), %eax # 4-byte Reload
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; X86-NEXT: xorl %edx, %edx
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; X86-NEXT: mull %edx
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; X86-NEXT: addl %ebp, %eax
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ebp
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; X86-NEXT: adcl {{[-0-9]+}}(%e{{[sb]}}p), %edx # 4-byte Folded Reload
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; X86-NEXT: addl %esi, %eax
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; X86-NEXT: adcl %ecx, %edx
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; X86-NEXT: movl {{[-0-9]+}}(%e{{[sb]}}p), %esi # 4-byte Reload
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; X86-NEXT: addl {{[-0-9]+}}(%e{{[sb]}}p), %esi # 4-byte Folded Reload
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; X86-NEXT: adcl {{[-0-9]+}}(%e{{[sb]}}p), %edi # 4-byte Folded Reload
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; X86-NEXT: adcl $0, %eax
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; X86-NEXT: adcl $0, %edx
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ecx
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; X86-NEXT: movl %esi, (%ecx,%ebx,8)
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; X86-NEXT: movl %edi, 4(%ecx,%ebx,8)
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; X86-NEXT: movl {{[0-9]+}}(%esp), %ecx
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; X86-NEXT: movl %ecx, %edi
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; X86-NEXT: addl $1, %ebx
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; X86-NEXT: movl {{[-0-9]+}}(%e{{[sb]}}p), %esi # 4-byte Reload
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; X86-NEXT: adcl $0, %esi
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; X86-NEXT: movl %ebx, %ecx
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; X86-NEXT: xorl %ebp, %ecx
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; X86-NEXT: movl %esi, {{[-0-9]+}}(%e{{[sb]}}p) # 4-byte Spill
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; X86-NEXT: xorl %edi, %esi
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; X86-NEXT: orl %ecx, %esi
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; X86-NEXT: jne .LBB1_2
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; X86-NEXT: .LBB1_3: # %for.end
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; X86-NEXT: xorl %eax, %eax
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; X86-NEXT: xorl %edx, %edx
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; X86-NEXT: addl $28, %esp
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; X86-NEXT: popl %esi
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; X86-NEXT: popl %edi
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; X86-NEXT: popl %ebx
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; X86-NEXT: popl %ebp
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; X86-NEXT: retl
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;
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; X64-LABEL: mul1:
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; X64: # %bb.0: # %entry
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; X64-NEXT: testq %rdi, %rdi
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; X64-NEXT: je .LBB1_3
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; X64-NEXT: # %bb.1: # %for.body.preheader
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; X64-NEXT: movq %rcx, %r8
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; X64-NEXT: movq %rdx, %r9
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; X64-NEXT: xorl %r10d, %r10d
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; X64-NEXT: xorl %ecx, %ecx
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; X64-NEXT: .p2align 4, 0x90
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; X64-NEXT: .LBB1_2: # %for.body
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; X64-NEXT: # =>This Inner Loop Header: Depth=1
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; X64-NEXT: movq %r8, %rax
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; X64-NEXT: mulq (%r9,%rcx,8)
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; X64-NEXT: addq %r10, %rax
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; X64-NEXT: adcq $0, %rdx
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; X64-NEXT: movq %rax, (%rsi,%rcx,8)
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; X64-NEXT: incq %rcx
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; X64-NEXT: cmpq %rcx, %rdi
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; X64-NEXT: movq %rdx, %r10
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; X64-NEXT: jne .LBB1_2
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; X64-NEXT: .LBB1_3: # %for.end
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; X64-NEXT: xorl %eax, %eax
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; X64-NEXT: retq
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entry:
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%conv = zext i64 %y to i128
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%cmp11 = icmp eq i64 %n, 0
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br i1 %cmp11, label %for.end, label %for.body
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for.body: ; preds = %entry, %for.body
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%carry.013 = phi i64 [ %conv6, %for.body ], [ 0, %entry ]
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%i.012 = phi i64 [ %inc, %for.body ], [ 0, %entry ]
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%arrayidx = getelementptr inbounds i64, i64* %x, i64 %i.012
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%0 = load i64, i64* %arrayidx, align 8
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%conv2 = zext i64 %0 to i128
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%mul = mul i128 %conv2, %conv
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%conv3 = zext i64 %carry.013 to i128
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%add = add i128 %mul, %conv3
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%conv4 = trunc i128 %add to i64
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%arrayidx5 = getelementptr inbounds i64, i64* %z, i64 %i.012
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store i64 %conv4, i64* %arrayidx5, align 8
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%shr = lshr i128 %add, 64
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%conv6 = trunc i128 %shr to i64
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%inc = add i64 %i.012, 1
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%exitcond = icmp eq i64 %inc, %n
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br i1 %exitcond, label %for.end, label %for.body
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for.end: ; preds = %for.body, %entry
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ret i64 0
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}
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