245 lines
6.8 KiB
LLVM
245 lines
6.8 KiB
LLVM
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; NOTE: Assertions have been autogenerated by utils/update_test_checks.py
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; RUN: opt < %s -instcombine -S | FileCheck %s
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define i1 @oeq_self(double %arg) {
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; CHECK-LABEL: @oeq_self(
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; CHECK-NEXT: [[TMP:%.*]] = fcmp ord double [[ARG:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[TMP]]
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;
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%tmp = fcmp oeq double %arg, %arg
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ret i1 %tmp
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}
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; PR1111 - https://bugs.llvm.org/show_bug.cgi?id=1111
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define i1 @une_self(double %x) {
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; CHECK-LABEL: @une_self(
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; CHECK-NEXT: [[TMP:%.*]] = fcmp uno double [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[TMP]]
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;
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%tmp = fcmp une double %x, %x
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ret i1 %tmp
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}
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; When just checking for a NaN (ORD/UNO), canonicalize constants.
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; Float/double are alternated for additional coverage.
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define i1 @ord_zero(float %x) {
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; CHECK-LABEL: @ord_zero(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord float [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[F]]
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;
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%f = fcmp ord float %x, 0.0
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ret i1 %f
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}
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define i1 @ord_nonzero(double %x) {
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; CHECK-LABEL: @ord_nonzero(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord double [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[F]]
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;
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%f = fcmp ord double %x, 3.0
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ret i1 %f
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}
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define i1 @ord_self(float %x) {
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; CHECK-LABEL: @ord_self(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord float [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[F]]
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;
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%f = fcmp ord float %x, %x
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ret i1 %f
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}
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define i1 @uno_zero(double %x) {
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; CHECK-LABEL: @uno_zero(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno double [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[F]]
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;
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%f = fcmp uno double %x, 0.0
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ret i1 %f
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}
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define i1 @uno_nonzero(float %x) {
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; CHECK-LABEL: @uno_nonzero(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno float [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[F]]
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;
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%f = fcmp uno float %x, 3.0
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ret i1 %f
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}
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define i1 @uno_self(double %x) {
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; CHECK-LABEL: @uno_self(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno double [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[F]]
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;
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%f = fcmp uno double %x, %x
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ret i1 %f
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}
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define <2 x i1> @ord_zero_vec(<2 x double> %x) {
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; CHECK-LABEL: @ord_zero_vec(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord <2 x double> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp ord <2 x double> %x, zeroinitializer
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ret <2 x i1> %f
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}
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define <2 x i1> @ord_nonzero_vec(<2 x float> %x) {
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; CHECK-LABEL: @ord_nonzero_vec(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord <2 x float> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp ord <2 x float> %x, <float 3.0, float 5.0>
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ret <2 x i1> %f
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}
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define <2 x i1> @ord_self_vec(<2 x double> %x) {
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; CHECK-LABEL: @ord_self_vec(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord <2 x double> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp ord <2 x double> %x, %x
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ret <2 x i1> %f
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}
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define <2 x i1> @uno_zero_vec(<2 x float> %x) {
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; CHECK-LABEL: @uno_zero_vec(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno <2 x float> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp uno <2 x float> %x, zeroinitializer
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ret <2 x i1> %f
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}
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define <2 x i1> @uno_nonzero_vec(<2 x double> %x) {
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; CHECK-LABEL: @uno_nonzero_vec(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno <2 x double> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp uno <2 x double> %x, <double 3.0, double 5.0>
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ret <2 x i1> %f
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}
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define <2 x i1> @uno_self_vec(<2 x float> %x) {
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; CHECK-LABEL: @uno_self_vec(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno <2 x float> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp uno <2 x float> %x, %x
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ret <2 x i1> %f
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}
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; If a scalar constant is NaN in any of the above tests, it would have been eliminated by InstSimplify.
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; If a vector has a NaN element, we don't do anything with it.
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define <2 x i1> @uno_vec_with_nan(<2 x double> %x) {
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; CHECK-LABEL: @uno_vec_with_nan(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno <2 x double> [[X:%.*]], <double 3.000000e+00, double 0x7FF00000FFFFFFFF>
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp uno <2 x double> %x, <double 3.0, double 0x7FF00000FFFFFFFF>
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ret <2 x i1> %f
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}
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define <2 x i1> @uno_vec_with_undef(<2 x double> %x) {
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; CHECK-LABEL: @uno_vec_with_undef(
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; CHECK-NEXT: [[F:%.*]] = fcmp uno <2 x double> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp uno <2 x double> %x, <double 3.0, double undef>
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ret <2 x i1> %f
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}
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define <2 x i1> @ord_vec_with_undef(<2 x double> %x) {
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; CHECK-LABEL: @ord_vec_with_undef(
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; CHECK-NEXT: [[F:%.*]] = fcmp ord <2 x double> [[X:%.*]], <double 0.000000e+00, double undef>
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; CHECK-NEXT: ret <2 x i1> [[F]]
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;
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%f = fcmp ord <2 x double> %x, <double 0.0, double undef>
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ret <2 x i1> %f
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}
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; TODO: This could be handled in InstSimplify.
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define i1 @nnan_ops_to_fcmp_ord(float %x, float %y) {
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; CHECK-LABEL: @nnan_ops_to_fcmp_ord(
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; CHECK-NEXT: ret i1 true
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;
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%mul = fmul nnan float %x, %y
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%div = fdiv nnan float %x, %y
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%cmp = fcmp ord float %mul, %div
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ret i1 %cmp
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}
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; TODO: This could be handled in InstSimplify.
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define i1 @nnan_ops_to_fcmp_uno(float %x, float %y) {
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; CHECK-LABEL: @nnan_ops_to_fcmp_uno(
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; CHECK-NEXT: ret i1 false
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;
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%mul = fmul nnan float %x, %y
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%div = fdiv nnan float %x, %y
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%cmp = fcmp uno float %mul, %div
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ret i1 %cmp
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}
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; TODO: For any predicate/type/FMF, comparison to -0.0 is the same as comparison to +0.0.
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define i1 @negative_zero_oeq(float %x) {
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; CHECK-LABEL: @negative_zero_oeq(
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; CHECK-NEXT: [[R:%.*]] = fcmp oeq float [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[R]]
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;
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%r = fcmp oeq float %x, -0.0
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ret i1 %r
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}
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define i1 @negative_zero_oge(double %x) {
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; CHECK-LABEL: @negative_zero_oge(
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; CHECK-NEXT: [[R:%.*]] = fcmp nnan oge double [[X:%.*]], 0.000000e+00
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; CHECK-NEXT: ret i1 [[R]]
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;
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%r = fcmp nnan oge double %x, -0.0
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ret i1 %r
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}
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define i1 @negative_zero_uge(half %x) {
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; CHECK-LABEL: @negative_zero_uge(
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; CHECK-NEXT: [[R:%.*]] = fcmp fast uge half [[X:%.*]], 0xH0000
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; CHECK-NEXT: ret i1 [[R]]
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;
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%r = fcmp fast uge half %x, -0.0
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ret i1 %r
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}
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define <2 x i1> @negative_zero_olt_vec(<2 x float> %x) {
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; CHECK-LABEL: @negative_zero_olt_vec(
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; CHECK-NEXT: [[R:%.*]] = fcmp reassoc ninf olt <2 x float> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[R]]
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;
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%r = fcmp reassoc ninf olt <2 x float> %x, <float -0.0, float -0.0>
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ret <2 x i1> %r
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}
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define <2 x i1> @negative_zero_une_vec_undef(<2 x double> %x) {
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; CHECK-LABEL: @negative_zero_une_vec_undef(
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; CHECK-NEXT: [[R:%.*]] = fcmp nnan une <2 x double> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[R]]
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;
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%r = fcmp nnan une <2 x double> %x, <double -0.0, double undef>
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ret <2 x i1> %r
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}
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define <2 x i1> @negative_zero_ule_vec_mixed(<2 x float> %x) {
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; CHECK-LABEL: @negative_zero_ule_vec_mixed(
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; CHECK-NEXT: [[R:%.*]] = fcmp ule <2 x float> [[X:%.*]], zeroinitializer
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; CHECK-NEXT: ret <2 x i1> [[R]]
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;
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%r = fcmp ule <2 x float> %x, <float 0.0, float -0.0>
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ret <2 x i1> %r
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}
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