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Change math intrinsic attributes from readonly to readnone. These
are operations that do not access memory but may be sensitive to floating-point environment changes. LLVM does not attempt to model FP environment changes, so this was unnecessarily conservative and was getting on the way of some optimizations, in particular SLP vectorization. llvm-svn: 203037
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@ -285,10 +285,17 @@ def int_memset : Intrinsic<[],
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llvm_i32_ty, llvm_i1_ty],
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[IntrReadWriteArgMem, NoCapture<0>]>;
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// These functions do not actually read memory, but they are sensitive to the
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// rounding mode. This needs to be modelled separately; in the meantime
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// declaring them as reading memory is conservatively correct.
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let Properties = [IntrReadMem] in {
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let Properties = [IntrNoMem] in {
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def int_fma : Intrinsic<[llvm_anyfloat_ty],
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[LLVMMatchType<0>, LLVMMatchType<0>,
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LLVMMatchType<0>]>;
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def int_fmuladd : Intrinsic<[llvm_anyfloat_ty],
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[LLVMMatchType<0>, LLVMMatchType<0>,
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LLVMMatchType<0>]>;
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// These functions do not read memory, but are sensitive to the
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// rounding mode. LLVM purposely does not model changes to the FP
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// environment so they can be treated as readnone.
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def int_sqrt : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
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def int_powi : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>, llvm_i32_ty]>;
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def int_sin : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
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@ -311,16 +318,6 @@ let Properties = [IntrReadMem] in {
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def int_round : Intrinsic<[llvm_anyfloat_ty], [LLVMMatchType<0>]>;
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}
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let Properties = [IntrNoMem] in {
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def int_fma : Intrinsic<[llvm_anyfloat_ty],
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[LLVMMatchType<0>, LLVMMatchType<0>,
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LLVMMatchType<0>]>;
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def int_fmuladd : Intrinsic<[llvm_anyfloat_ty],
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[LLVMMatchType<0>, LLVMMatchType<0>,
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LLVMMatchType<0>]>;
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}
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// NOTE: these are internal interfaces.
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def int_setjmp : Intrinsic<[llvm_i32_ty], [llvm_ptr_ty]>;
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def int_longjmp : Intrinsic<[], [llvm_ptr_ty, llvm_i32_ty], [IntrNoReturn]>;
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@ -61,7 +61,7 @@ define void @libm() {
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; FIXME: test ALL the intrinsics in this file.
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; rdar://11542750
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; CHECK: declare void @llvm.trap() #2
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; CHECK: declare void @llvm.trap() #1
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declare void @llvm.trap()
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define void @trap() {
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@ -70,5 +70,4 @@ define void @trap() {
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}
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; CHECK: attributes #0 = { nounwind readnone }
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; CHECK: attributes #1 = { nounwind readonly }
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; CHECK: attributes #2 = { noreturn nounwind }
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; CHECK: attributes #1 = { noreturn nounwind }
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@ -126,8 +126,7 @@ define double @test4(double %A1, double %A2, double %B1, double %B2, i32 %P) {
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; CHECK: declare <2 x double> @llvm.fma.v2f64(<2 x double>, <2 x double>, <2 x double>) #0
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; CHECK: declare <2 x double> @llvm.fmuladd.v2f64(<2 x double>, <2 x double>, <2 x double>) #0
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; CHECK: declare <2 x double> @llvm.cos.v2f64(<2 x double>) #1
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; CHECK: declare <2 x double> @llvm.powi.v2f64(<2 x double>, i32) #1
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; CHECK: declare <2 x double> @llvm.cos.v2f64(<2 x double>) #0
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; CHECK: declare <2 x double> @llvm.powi.v2f64(<2 x double>, i32) #0
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; CHECK: attributes #0 = { nounwind readnone }
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; CHECK: attributes #1 = { nounwind readonly }
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@ -160,8 +160,8 @@ declare double @llvm.pow.f64(double %Val, double %Power)
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define double @test_simplify17(double %x) {
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; CHECK-LABEL: @test_simplify17(
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%retval = call double @llvm.pow.f64(double %x, double 0.5)
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; CHECK-NEXT: [[SQRT:%[a-z0-9]+]] = call double @sqrt(double %x) [[NUW_RO]]
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; CHECK-NEXT: [[FABS:%[a-z0-9]+]] = call double @fabs(double [[SQRT]]) [[NUW_RO]]
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; CHECK-NEXT: [[SQRT:%[a-z0-9]+]] = call double @sqrt(double %x)
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; CHECK-NEXT: [[FABS:%[a-z0-9]+]] = call double @fabs(double [[SQRT]])
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; CHECK-NEXT: [[FCMP:%[a-z0-9]+]] = fcmp oeq double %x, 0xFFF0000000000000
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; CHECK-NEXT: [[SELECT:%[a-z0-9]+]] = select i1 [[FCMP]], double 0x7FF0000000000000, double [[FABS]]
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ret double %retval
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