forked from OSchip/llvm-project
327 lines
9.1 KiB
LLVM
327 lines
9.1 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc < %s -O2 -mtriple=x86_64-linux-android -mattr=+mmx \
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; RUN: -enable-legalize-types-checking | FileCheck %s
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; RUN: llc < %s -O2 -mtriple=x86_64-linux-gnu -mattr=+mmx \
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; RUN: -enable-legalize-types-checking | FileCheck %s
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; Check all soft floating point library function calls.
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@vf64 = common global double 0.000000e+00, align 8
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@vf128 = common global fp128 0xL00000000000000000000000000000000, align 16
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define void @Test128Add(fp128 %d1, fp128 %d2) {
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; CHECK-LABEL: Test128Add:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq __addtf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%add = fadd fp128 %d1, %d2
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store fp128 %add, fp128* @vf128, align 16
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ret void
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}
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define void @Test128_1Add(fp128 %d1){
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; CHECK-LABEL: Test128_1Add:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: movaps %xmm0, %xmm1
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; CHECK-NEXT: movaps {{.*}}(%rip), %xmm0
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; CHECK-NEXT: callq __addtf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%0 = load fp128, fp128* @vf128, align 16
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%add = fadd fp128 %0, %d1
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store fp128 %add, fp128* @vf128, align 16
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ret void
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}
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define void @Test128Sub(fp128 %d1, fp128 %d2){
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; CHECK-LABEL: Test128Sub:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq __subtf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%sub = fsub fp128 %d1, %d2
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store fp128 %sub, fp128* @vf128, align 16
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ret void
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}
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define void @Test128_1Sub(fp128 %d1){
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; CHECK-LABEL: Test128_1Sub:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: movaps %xmm0, %xmm1
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; CHECK-NEXT: movaps {{.*}}(%rip), %xmm0
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; CHECK-NEXT: callq __subtf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%0 = load fp128, fp128* @vf128, align 16
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%sub = fsub fp128 %0, %d1
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store fp128 %sub, fp128* @vf128, align 16
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ret void
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}
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define void @Test128Mul(fp128 %d1, fp128 %d2){
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; CHECK-LABEL: Test128Mul:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq __multf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%mul = fmul fp128 %d1, %d2
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store fp128 %mul, fp128* @vf128, align 16
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ret void
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}
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define void @Test128_1Mul(fp128 %d1){
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; CHECK-LABEL: Test128_1Mul:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: movaps %xmm0, %xmm1
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; CHECK-NEXT: movaps {{.*}}(%rip), %xmm0
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; CHECK-NEXT: callq __multf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%0 = load fp128, fp128* @vf128, align 16
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%mul = fmul fp128 %0, %d1
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store fp128 %mul, fp128* @vf128, align 16
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ret void
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}
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define void @Test128Div(fp128 %d1, fp128 %d2){
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; CHECK-LABEL: Test128Div:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq __divtf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%div = fdiv fp128 %d1, %d2
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store fp128 %div, fp128* @vf128, align 16
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ret void
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}
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define void @Test128_1Div(fp128 %d1){
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; CHECK-LABEL: Test128_1Div:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: movaps %xmm0, %xmm1
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; CHECK-NEXT: movaps {{.*}}(%rip), %xmm0
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; CHECK-NEXT: callq __divtf3
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%0 = load fp128, fp128* @vf128, align 16
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%div = fdiv fp128 %0, %d1
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store fp128 %div, fp128* @vf128, align 16
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ret void
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}
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define void @Test128Rem(fp128 %d1, fp128 %d2){
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; CHECK-LABEL: Test128Rem:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq fmodl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%div = frem fp128 %d1, %d2
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store fp128 %div, fp128* @vf128, align 16
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ret void
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}
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define void @Test128_1Rem(fp128 %d1){
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; CHECK-LABEL: Test128_1Rem:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: movaps %xmm0, %xmm1
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; CHECK-NEXT: movaps {{.*}}(%rip), %xmm0
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; CHECK-NEXT: callq fmodl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%0 = load fp128, fp128* @vf128, align 16
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%div = frem fp128 %0, %d1
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store fp128 %div, fp128* @vf128, align 16
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ret void
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}
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define void @Test128Sqrt(fp128 %d1){
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; CHECK-LABEL: Test128Sqrt:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq sqrtl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.sqrt.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.sqrt.f128(fp128)
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define void @Test128Sin(fp128 %d1){
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; CHECK-LABEL: Test128Sin:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq sinl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.sin.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.sin.f128(fp128)
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define void @Test128Cos(fp128 %d1){
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; CHECK-LABEL: Test128Cos:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 16
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; CHECK-NEXT: callq cosl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: .cfi_def_cfa_offset 8
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.cos.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.cos.f128(fp128)
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define void @Test128Ceil(fp128 %d1) nounwind {
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; CHECK-LABEL: Test128Ceil:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: callq ceill
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.ceil.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.ceil.f128(fp128)
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define void @Test128Floor(fp128 %d1) nounwind {
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; CHECK-LABEL: Test128Floor:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: callq floorl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.floor.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.floor.f128(fp128)
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define void @Test128Trunc(fp128 %d1) nounwind {
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; CHECK-LABEL: Test128Trunc:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: callq truncl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.trunc.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.trunc.f128(fp128)
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define void @Test128Nearbyint(fp128 %d1) nounwind {
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; CHECK-LABEL: Test128Nearbyint:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: callq nearbyintl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.nearbyint.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.nearbyint.f128(fp128)
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define void @Test128Rint(fp128 %d1) nounwind {
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; CHECK-LABEL: Test128Rint:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: callq rintl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.rint.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.rint.f128(fp128)
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define void @Test128Round(fp128 %d1) nounwind {
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; CHECK-LABEL: Test128Round:
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; CHECK: # %bb.0: # %entry
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; CHECK-NEXT: pushq %rax
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; CHECK-NEXT: callq roundl
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; CHECK-NEXT: movaps %xmm0, {{.*}}(%rip)
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; CHECK-NEXT: popq %rax
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; CHECK-NEXT: retq
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entry:
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%sqrt = call fp128 @llvm.round.f128(fp128 %d1)
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store fp128 %sqrt, fp128* @vf128, align 16
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ret void
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}
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declare fp128 @llvm.round.f128(fp128)
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