forked from OSchip/llvm-project
[InstCombine] pow(C,x) -> exp2(log2(C)*x)
Summary: Transform pow(C,x) To exp2(log2(C)*x) if C > 0, C != inf, C != NaN (and C is not power of 2, since we have some fold for such case already). log(C) is folded by the compiler and exp2 is much faster to compute than pow. Reviewers: spatel, efriedma, evandro Reviewed By: evandro Subscribers: lebedev.ri, llvm-commits Tags: #llvm Differential Revision: https://reviews.llvm.org/D64099 llvm-svn: 365637
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@ -1235,7 +1235,8 @@ static Value *getPow(Value *InnerChain[33], unsigned Exp, IRBuilder<> &B) {
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}
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/// Use exp{,2}(x * y) for pow(exp{,2}(x), y);
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/// exp2(n * x) for pow(2.0 ** n, x); exp10(x) for pow(10.0, x).
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/// exp2(n * x) for pow(2.0 ** n, x); exp10(x) for pow(10.0, x);
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/// exp2(log2(C)*x) for pow(C,x).
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Value *LibCallSimplifier::replacePowWithExp(CallInst *Pow, IRBuilder<> &B) {
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Value *Base = Pow->getArgOperand(0), *Expo = Pow->getArgOperand(1);
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AttributeList Attrs = Pow->getCalledFunction()->getAttributes();
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@ -1347,6 +1348,28 @@ Value *LibCallSimplifier::replacePowWithExp(CallInst *Pow, IRBuilder<> &B) {
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return emitUnaryFloatFnCall(Expo, TLI, LibFunc_exp10, LibFunc_exp10f,
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LibFunc_exp10l, B, Attrs);
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// pow(C,x) -> exp2(log2(C)*x)
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if (Pow->hasOneUse() && Pow->hasApproxFunc() && Pow->hasNoNaNs() &&
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Pow->hasNoInfs() && BaseF->isNormal() && !BaseF->isNegative()) {
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Value *Log = nullptr;
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if (Ty->isFloatTy())
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Log = ConstantFP::get(Ty, std::log2(BaseF->convertToFloat()));
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else if (Ty->isDoubleTy())
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Log = ConstantFP::get(Ty, std::log2(BaseF->convertToDouble()));
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if (Log) {
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Value *FMul = B.CreateFMul(Log, Expo, "mul");
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if (Pow->doesNotAccessMemory()) {
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return B.CreateCall(Intrinsic::getDeclaration(Mod, Intrinsic::exp2, Ty),
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FMul, "exp2");
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} else {
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if (hasUnaryFloatFn(TLI, Ty, LibFunc_exp2, LibFunc_exp2f,
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LibFunc_exp2l))
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return emitUnaryFloatFnCall(FMul, TLI, LibFunc_exp2, LibFunc_exp2f,
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LibFunc_exp2l, B, Attrs);
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}
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}
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}
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return nullptr;
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}
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@ -205,13 +205,16 @@ define double @function_pointer(double ()* %fptr, double %p1) {
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ret double %pow
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}
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; pow(C,x) -> exp2(log2(C)*x)
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declare void @use_d(double)
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declare void @use_f(float)
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define double @pow_ok_base(double %e) {
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; CHECK-LABEL: @pow_ok_base(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn double @pow(double 0x3FE6666666666666, double [[E:%.*]])
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; CHECK-NEXT: ret double [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn double [[E:%.*]], 0xBFE0776228967D13
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; CHECK-NEXT: [[EXP2:%.*]] = call nnan ninf afn double @exp2(double [[MUL]])
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; CHECK-NEXT: ret double [[EXP2]]
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;
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%call = tail call afn nnan ninf double @pow(double 0x3FE6666666666666, double %e)
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ret double %call
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@ -219,8 +222,9 @@ define double @pow_ok_base(double %e) {
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define double @pow_ok_base_fast(double %e) {
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; CHECK-LABEL: @pow_ok_base_fast(
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; CHECK-NEXT: [[CALL:%.*]] = tail call fast double @pow(double 0x3FE6666666666666, double [[E:%.*]])
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; CHECK-NEXT: ret double [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul fast double [[E:%.*]], 0xBFE0776228967D13
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; CHECK-NEXT: [[EXP2:%.*]] = call fast double @exp2(double [[MUL]])
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; CHECK-NEXT: ret double [[EXP2]]
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;
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%call = tail call fast double @pow(double 0x3FE6666666666666, double %e)
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ret double %call
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@ -228,8 +232,9 @@ define double @pow_ok_base_fast(double %e) {
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define double @pow_ok_base2(double %e) {
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; CHECK-LABEL: @pow_ok_base2(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn double @pow(double 1.770000e+01, double [[E:%.*]])
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; CHECK-NEXT: ret double [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn double [[E:%.*]], 0x4010952C788751AC
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; CHECK-NEXT: [[EXP2:%.*]] = call nnan ninf afn double @exp2(double [[MUL]])
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; CHECK-NEXT: ret double [[EXP2]]
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;
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%call = tail call afn nnan ninf double @pow(double 1.770000e+01, double %e)
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ret double %call
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@ -237,8 +242,9 @@ define double @pow_ok_base2(double %e) {
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define double @pow_ok_base3(double %e) {
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; CHECK-LABEL: @pow_ok_base3(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn double @pow(double 1.010000e+01, double [[E:%.*]])
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; CHECK-NEXT: ret double [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn double [[E:%.*]], 0x400AB0B5584886CD
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; CHECK-NEXT: [[EXP2:%.*]] = call nnan ninf afn double @exp2(double [[MUL]])
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; CHECK-NEXT: ret double [[EXP2]]
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;
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%call = tail call afn nnan ninf double @pow(double 1.010000e+01, double %e)
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ret double %call
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@ -246,8 +252,9 @@ define double @pow_ok_base3(double %e) {
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define double @pow_ok_ten_base(double %e) {
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; CHECK-LABEL: @pow_ok_ten_base(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn double @pow(double 1.000000e+01, double [[E:%.*]])
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; CHECK-NEXT: ret double [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn double [[E:%.*]], 0x400A934F0979A371
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; CHECK-NEXT: [[EXP2:%.*]] = call nnan ninf afn double @exp2(double [[MUL]])
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; CHECK-NEXT: ret double [[EXP2]]
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;
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%call = tail call afn nnan ninf double @pow(double 1.000000e+01, double %e)
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ret double %call
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@ -255,8 +262,9 @@ define double @pow_ok_ten_base(double %e) {
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define float @powf_ok_base(float %e) {
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; CHECK-LABEL: @powf_ok_base(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn float @powf(float 0x3FE6666660000000, float [[E:%.*]])
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; CHECK-NEXT: ret float [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn float [[E:%.*]], 0xBFE0776240000000
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; CHECK-NEXT: [[EXP2F:%.*]] = call nnan ninf afn float @exp2f(float [[MUL]])
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; CHECK-NEXT: ret float [[EXP2F]]
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;
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%call = tail call afn nnan ninf float @powf(float 0x3FE6666660000000, float %e)
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ret float %call
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@ -264,8 +272,9 @@ define float @powf_ok_base(float %e) {
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define float @powf_ok_base2(float %e) {
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; CHECK-LABEL: @powf_ok_base2(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn float @powf(float 0x4031B33340000000, float [[E:%.*]])
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; CHECK-NEXT: ret float [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn float [[E:%.*]], 0x4010952C80000000
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; CHECK-NEXT: [[EXP2F:%.*]] = call nnan ninf afn float @exp2f(float [[MUL]])
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; CHECK-NEXT: ret float [[EXP2F]]
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;
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%call = tail call afn nnan ninf float @powf(float 0x4031B33340000000, float %e)
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ret float %call
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@ -273,8 +282,9 @@ define float @powf_ok_base2(float %e) {
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define float @powf_ok_base3(float %e) {
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; CHECK-LABEL: @powf_ok_base3(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn float @powf(float 0x4024333340000000, float [[E:%.*]])
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; CHECK-NEXT: ret float [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn float [[E:%.*]], 0x400AB0B560000000
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; CHECK-NEXT: [[EXP2F:%.*]] = call nnan ninf afn float @exp2f(float [[MUL]])
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; CHECK-NEXT: ret float [[EXP2F]]
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;
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%call = tail call afn nnan ninf float @powf(float 0x4024333340000000, float %e)
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ret float %call
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@ -282,13 +292,16 @@ define float @powf_ok_base3(float %e) {
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define float @powf_ok_ten_base(float %e) {
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; CHECK-LABEL: @powf_ok_ten_base(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn float @powf(float 1.000000e+01, float [[E:%.*]])
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; CHECK-NEXT: ret float [[CALL]]
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; CHECK-NEXT: [[MUL:%.*]] = fmul nnan ninf afn float [[E:%.*]], 0x400A934F00000000
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; CHECK-NEXT: [[EXP2F:%.*]] = call nnan ninf afn float @exp2f(float [[MUL]])
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; CHECK-NEXT: ret float [[EXP2F]]
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;
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%call = tail call afn nnan ninf float @powf(float 1.000000e+01, float %e)
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ret float %call
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}
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; Negative tests
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define double @pow_zero_base(double %e) {
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; CHECK-LABEL: @pow_zero_base(
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; CHECK-NEXT: [[CALL:%.*]] = tail call nnan ninf afn double @pow(double 0.000000e+00, double [[E:%.*]])
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@ -196,8 +196,9 @@ define double @powf_exp_const2_int_fast(double %base) {
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define double @pow_uitofp_const_base_fast_i32(i32 %x) {
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; CHECK-LABEL: @pow_uitofp_const_base_fast_i32(
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; CHECK-NEXT: [[SUBFP:%.*]] = uitofp i32 [[X:%.*]] to float
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; CHECK-NEXT: [[POW:%.*]] = tail call fast float @llvm.pow.f32(float 7.000000e+00, float [[SUBFP]])
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; CHECK-NEXT: [[RES:%.*]] = fpext float [[POW]] to double
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; CHECK-NEXT: [[MUL:%.*]] = fmul fast float [[SUBFP]], 0x4006757680000000
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; CHECK-NEXT: [[EXP2:%.*]] = call fast float @llvm.exp2.f32(float [[MUL]])
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; CHECK-NEXT: [[RES:%.*]] = fpext float [[EXP2]] to double
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; CHECK-NEXT: ret double [[RES]]
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;
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%subfp = uitofp i32 %x to float
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@ -247,8 +248,9 @@ define double @pow_uitofp_double_base_fast_i32(double %base, i32 %x) {
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define double @pow_sitofp_const_base_fast_i64(i64 %x) {
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; CHECK-LABEL: @pow_sitofp_const_base_fast_i64(
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; CHECK-NEXT: [[SUBFP:%.*]] = sitofp i64 [[X:%.*]] to float
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; CHECK-NEXT: [[POW:%.*]] = tail call fast float @llvm.pow.f32(float 7.000000e+00, float [[SUBFP]])
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; CHECK-NEXT: [[RES:%.*]] = fpext float [[POW]] to double
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; CHECK-NEXT: [[MUL:%.*]] = fmul fast float [[SUBFP]], 0x4006757680000000
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; CHECK-NEXT: [[EXP2:%.*]] = call fast float @llvm.exp2.f32(float [[MUL]])
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; CHECK-NEXT: [[RES:%.*]] = fpext float [[EXP2]] to double
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; CHECK-NEXT: ret double [[RES]]
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;
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%subfp = sitofp i64 %x to float
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@ -260,8 +262,9 @@ define double @pow_sitofp_const_base_fast_i64(i64 %x) {
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define double @pow_uitofp_const_base_fast_i64(i64 %x) {
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; CHECK-LABEL: @pow_uitofp_const_base_fast_i64(
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; CHECK-NEXT: [[SUBFP:%.*]] = uitofp i64 [[X:%.*]] to float
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; CHECK-NEXT: [[POW:%.*]] = tail call fast float @llvm.pow.f32(float 7.000000e+00, float [[SUBFP]])
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; CHECK-NEXT: [[RES:%.*]] = fpext float [[POW]] to double
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; CHECK-NEXT: [[MUL:%.*]] = fmul fast float [[SUBFP]], 0x4006757680000000
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; CHECK-NEXT: [[EXP2:%.*]] = call fast float @llvm.exp2.f32(float [[MUL]])
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; CHECK-NEXT: [[RES:%.*]] = fpext float [[EXP2]] to double
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; CHECK-NEXT: ret double [[RES]]
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;
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%subfp = uitofp i64 %x to float
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