cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
390 lines
11 KiB
C++
390 lines
11 KiB
C++
// RUN: %clang_cc1 -fexperimental-strict-floating-point -DEXCEPT=1 \
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// RUN: -fcxx-exceptions -triple x86_64-linux-gnu -emit-llvm -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-NS %s
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// RUN: %clang_cc1 -fexperimental-strict-floating-point \
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// RUN: -triple x86_64-linux-gnu -emit-llvm -o - %s | FileCheck %s \
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// RUN: -check-prefixes=CHECK-DEFAULT,CHECK-CONST-ARGS
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// RUN: %clang_cc1 -fexperimental-strict-floating-point -DFENV_ON=1 \
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// RUN: -triple x86_64-linux-gnu -emit-llvm -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-FENV %s
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// RUN: %clang_cc1 -fexperimental-strict-floating-point -DNF128 \
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// RUN: -triple %itanium_abi_triple -O3 -emit-llvm -o - %s \
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// RUN: | FileCheck -check-prefix=CHECK-O3 %s
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// RUN: %clang_cc1 -fexperimental-strict-floating-point \
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// RUN: -triple x86_64-linux-gnu -emit-llvm -o - %s -ffp-eval-method=source \
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// RUN: | FileCheck %s -check-prefixes=CHECK-SOURCE,CHECK-CONST-ARGS
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// RUN: %clang_cc1 -fexperimental-strict-floating-point \
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// RUN: -triple x86_64-linux-gnu -emit-llvm -o - %s -ffp-eval-method=double \
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// RUN: | FileCheck %s -check-prefixes=CHECK-DOUBLE,CHECK-CONST-ARGS
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// RUN: %clang_cc1 -fexperimental-strict-floating-point \
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// RUN: -triple x86_64-linux-gnu -emit-llvm -o - %s -ffp-eval-method=extended \
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// RUN: -mlong-double-80 | FileCheck %s \
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// RUN: -check-prefixes=CHECK-EXTENDED,CHECK-CONST-ARGS
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// RUN: %clang_cc1 -fexperimental-strict-floating-point \
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// RUN: -triple i386-linux-gnu -emit-llvm -o - %s -ffp-eval-method=source \
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// RUN: | FileCheck %s -check-prefix=CHECK-SOURCE
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// RUN: %clang_cc1 -fexperimental-strict-floating-point -triple i386-linux-gnu \
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// RUN: -emit-llvm -o - %s -ffp-eval-method=double | FileCheck %s \
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// RUN: -check-prefix=CHECK-DOUBLE
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// RUN: %clang_cc1 -fexperimental-strict-floating-point -triple i386-linux-gnu \
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// RUN: -emit-llvm -o - %s -ffp-eval-method=extended -mlong-double-80 \
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// RUN: | FileCheck %s -check-prefix=CHECK-EXTENDED
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// RUN: %clang_cc1 -triple powerpc-unknown-aix -DNF128 -emit-llvm -o - %s \
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// RUN: | FileCheck %s -check-prefix=CHECK-AIX
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bool f() {
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// CHECK: define {{.*}}f{{.*}}
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return __FLT_EVAL_METHOD__ < 0 &&
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__FLT_EVAL_METHOD__ == -1;
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// CHECK: ret {{.*}} true
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}
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// Verify float_control(precise, off) enables fast math flags on fp operations.
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float fp_precise_1(float a, float b, float c) {
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// CHECK-O3: _Z12fp_precise_1fff
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// CHECK-O3: %[[M:.+]] = fmul fast float{{.*}}
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// CHECK-O3: fadd fast float %[[M]], %c
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#pragma float_control(precise, off)
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return a * b + c;
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}
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// Is float_control state cleared on exiting compound statements?
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float fp_precise_2(float a, float b, float c) {
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// CHECK-O3: _Z12fp_precise_2fff
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// CHECK-O3: %[[M:.+]] = fmul float{{.*}}
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// CHECK-O3: fadd float %[[M]], %c
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{
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#pragma float_control(precise, off)
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}
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return a * b + c;
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}
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// Does float_control survive template instantiation?
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class Foo {};
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Foo operator+(Foo, Foo);
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template <typename T>
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T template_muladd(T a, T b, T c) {
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#pragma float_control(precise, off)
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return a * b + c;
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}
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float fp_precise_3(float a, float b, float c) {
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// CHECK-O3: _Z12fp_precise_3fff
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// CHECK-O3: %[[M:.+]] = fmul fast float{{.*}}
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// CHECK-O3: fadd fast float %[[M]], %c
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return template_muladd<float>(a, b, c);
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}
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template <typename T>
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class fp_precise_4 {
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float method(float a, float b, float c) {
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#pragma float_control(precise, off)
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return a * b + c;
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}
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};
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template class fp_precise_4<int>;
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// CHECK-O3: _ZN12fp_precise_4IiE6methodEfff
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// CHECK-O3: %[[M:.+]] = fmul fast float{{.*}}
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// CHECK-O3: fadd fast float %[[M]], %c
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// Check file-scoped float_control
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#pragma float_control(push)
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#pragma float_control(precise, off)
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float fp_precise_5(float a, float b, float c) {
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// CHECK-O3: _Z12fp_precise_5fff
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// CHECK-O3: %[[M:.+]] = fmul fast float{{.*}}
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// CHECK-O3: fadd fast float %[[M]], %c
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return a * b + c;
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}
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#pragma float_control(pop)
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float fff(float x, float y) {
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// CHECK-LABEL: define{{.*}} float @_Z3fffff{{.*}}
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// CHECK: entry
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#pragma float_control(except, on)
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float z;
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z = z * z;
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//CHECK: llvm.experimental.constrained.fmul{{.*}}
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{
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z = x * y;
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//CHECK: llvm.experimental.constrained.fmul{{.*}}
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}
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{
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// This pragma has no effect since if there are any fp intrin in the
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// function then all the operations need to be fp intrin
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#pragma float_control(except, off)
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z = z + x * y;
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//CHECK: llvm.experimental.constrained.fmul{{.*}}
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}
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z = z * z;
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//CHECK: llvm.experimental.constrained.fmul{{.*}}
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return z;
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}
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float check_precise(float x, float y) {
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// CHECK-LABEL: define{{.*}} float @_Z13check_preciseff{{.*}}
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float z;
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{
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#pragma float_control(precise, on)
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z = x * y + z;
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//CHECK: llvm.fmuladd{{.*}}
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}
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{
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#pragma float_control(precise, off)
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z = x * y + z;
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//CHECK: fmul fast float
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//CHECK: fadd fast float
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}
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return z;
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}
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float fma_test2(float a, float b, float c) {
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// CHECK-LABEL define{{.*}} float @_Z9fma_test2fff{{.*}}
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#pragma float_control(precise, off)
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float x = a * b + c;
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//CHECK: fmuladd
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return x;
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}
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float fma_test1(float a, float b, float c) {
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// CHECK-LABEL define{{.*}} float @_Z9fma_test1fff{{.*}}
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#pragma float_control(precise, on)
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float x = a * b + c;
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//CHECK: fmuladd
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return x;
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}
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#pragma float_control(push)
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#pragma float_control(precise, on)
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struct Distance {};
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Distance operator+(Distance, Distance);
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template <class T>
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T add(T lhs, T rhs) {
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#pragma float_control(except, on)
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return lhs + rhs;
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}
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#pragma float_control(pop)
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float test_OperatorCall() {
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return add(1.0f, 2.0f);
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//CHECK: llvm.experimental.constrained.fadd{{.*}}fpexcept.strict
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}
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// CHECK-LABEL define{{.*}} float {{.*}}test_OperatorCall{{.*}}
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#if FENV_ON
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#pragma STDC FENV_ACCESS ON
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#endif
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// CHECK-LABEL: define {{.*}}callt{{.*}}
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void callt() {
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volatile float z;
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z = z * z;
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//CHECK-FENV: llvm.experimental.constrained.fmul{{.*}}
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}
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// CHECK-LABEL: define {{.*}}myAdd{{.*}}
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float myAdd(int i, float f) {
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if (i<0)
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return 1.0 + 2.0;
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// Check that floating point constant folding doesn't occur if
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// #pragma STC FENV_ACCESS is enabled.
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//CHECK-FENV: llvm.experimental.constrained.fadd{{.*}}double 1.0{{.*}}double 2.0{{.*}}
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//CHECK: store float 3.0{{.*}}retval{{.*}}
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static double v = 1.0 / 3.0;
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//CHECK-FENV: llvm.experimental.constrained.fptrunc.f32.f64{{.*}}
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//CHECK-NOT: fdiv
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return v;
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}
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#if EXCEPT
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namespace ns {
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// Check that pragma float_control can appear in namespace.
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#pragma float_control(except, on, push)
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float exc_on(double x, float zero) {
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// CHECK-NS: define {{.*}}exc_on{{.*}}
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{} try {
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x = 1.0 / zero; /* division by zero, the result unused */
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//CHECK-NS: llvm.experimental.constrained.fdiv{{.*}}
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} catch (...) {}
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return zero;
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}
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}
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// Check pragma is still effective after namespace closes
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float exc_still_on(double x, float zero) {
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// CHECK-NS: define {{.*}}exc_still_on{{.*}}
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{} try {
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x = 1.0 / zero; /* division by zero, the result unused */
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//CHECK-NS: llvm.experimental.constrained.fdiv{{.*}}
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} catch (...) {}
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return zero;
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}
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#pragma float_control(pop)
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float exc_off(double x, float zero) {
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// CHECK-NS: define {{.*}}exc_off{{.*}}
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{} try {
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x = 1.0 / zero; /* division by zero, the result unused */
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//CHECK-NS: fdiv double
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} catch (...) {}
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return zero;
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}
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namespace fc_template_namespace {
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#pragma float_control(except, on, push)
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template <class T>
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T exc_on(double x, T zero) {
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// CHECK-NS: define {{.*}}fc_template_namespace{{.*}}
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{} try {
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x = 1.0 / zero; /* division by zero, the result unused */
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//CHECK-NS: llvm.experimental.constrained.fdiv{{.*}}
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} catch (...) {}
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return zero;
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}
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}
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#pragma float_control(pop)
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float xx(double x, float z) {
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return fc_template_namespace::exc_on<float>(x, z);
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}
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#endif // EXCEPT
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float try_lam(float x, unsigned n) {
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// CHECK: define {{.*}}try_lam{{.*}}class.anon{{.*}}
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float result;
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auto t =
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// Lambda expression begins
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[](float a, float b) {
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#pragma float_control( except, on)
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return a * b;
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//CHECK: llvm.experimental.constrained.fmul{{.*}}fpexcept.strict
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} // end of lambda expression
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(1.0f,2.0f);
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result = x + t;
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return result;
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}
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float mySub(float x, float y) {
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// CHECK: define {{.*}}float {{.*}}mySub{{.*}}
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// CHECK-NS: fsub float
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// CHECK-SOURCE: fsub float
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// CHECK-DOUBLE: fpext float
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// CHECK-DOUBLE: fpext float
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// CHECK-DOUBLE: fsub double
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// CHECK-DOUBLE: fptrunc double {{.*}} to float
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// CHECK-EXTENDED: fpext float
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// CHECK-EXTENDED: fpext float
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// CHECK-EXTENDED: fsub double
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// CHECK-EXTENDED: fptrunc double {{.*}} to float
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return x - y;
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}
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float mySubSource(float x, float y) {
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// CHECK: define {{.*}}float {{.*}}mySubSource{{.*}}
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#pragma clang fp eval_method(source)
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return x - y;
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// CHECK: fsub float
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}
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float mySubExtended(float x, float y) {
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// CHECK: define {{.*}}float {{.*}}mySubExtended{{.*}}
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#pragma clang fp eval_method(extended)
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return x - y;
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// CHECK: fpext float
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// CHECK: fpext float
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// CHECK: fsub x86_fp80
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// CHECK: fptrunc x86_fp80 {{.*}} to float
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// CHECK-AIX: fsub double
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// CHECK-AIX: fptrunc double
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}
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float mySubDouble(float x, float y) {
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// CHECK: define {{.*}}float {{.*}}mySubDouble{{.*}}
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#pragma clang fp eval_method(double)
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return x - y;
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// CHECK: fpext float
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// CHECK: fpext float
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// CHECK: fsub double
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// CHECK: fptrunc double {{.*}} to float
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}
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#ifndef NF128
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__float128 mySub128(__float128 x, __float128 y) {
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// CHECK: define {{.*}}mySub128{{.*}}
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// Expect no fpext since fp128 is already widest
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// CHECK: load fp128
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// CHECK-NEXT: load fp128
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// CHECK-NEXT: fsub fp128
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// CHECK-NEXT: ret fp128
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return x - y;
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}
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#endif
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void mySubfp16(__fp16 *res, __fp16 *x, __fp16 *y) {
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// CHECK: define {{.*}}mySubfp16{{.*}}
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*res = *x - *y;
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// CHECK: load half
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// CHECK-NEXT: load half
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// CHECK-NEXT: fpext half{{.*}}
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// CHECK-NEXT: load half
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// CHECK-NEXT: load half
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// CHECK-NS: fpext half{{.*}} to float
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// CHECK-DEFAULT: fpext half{{.*}} to float
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// CHECK-DOUBLE: fpext half{{.*}} to float
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// CHECK-EXTENDED: fpext half{{.*}} to float
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// CHECK-NEXT: fsub
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// CHECK-NEXT: fptrunc {{.*}}to half
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// CHECK-NS: fptrunc float {{.*}} to half
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// CHECK-DOUBLE: fptrunc float {{.*}} to half
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// CHECK-EXTENDED: fptrunc float {{.*}} to half
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}
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float Div(float x, float y, float z) {
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// CHECK: define{{.*}}float {{.*}}Div{{.*}}
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// CHECK-CONST-ARGS: fdiv float
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return x / (y / z);
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}
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float DivExtended(float x, float y, float z) {
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// CHECK: define{{.*}}float {{.*}}DivExtended{{.*}}
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#pragma clang fp eval_method(extended)
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// CHECK-CONST-ARGS: fdiv x86_fp80
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// CHECK-CONST-ARGS: fptrunc x86_fp80
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return x / (y / z);
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}
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float DivDouble(float x, float y, float z) {
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// CHECK: define{{.*}}float {{.*}}DivDouble{{.*}}
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#pragma clang fp eval_method(double)
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// CHECK-CONST-ARGS: fdiv double
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// CHECK-CONST-ARGS: fptrunc double
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return x / (y / z);
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}
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float DivSource(float x, float y, float z) {
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// CHECK: define{{.*}}float {{.*}}DivSource{{.*}}
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#pragma clang fp eval_method(source)
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// CHECK-CONST-ARGS: fdiv float
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return x / (y / z);
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}
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int main() {
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float f = Div(4.2f, 1.0f, 3.0f);
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float fextended = DivExtended(4.2f, 1.0f, 3.0f);
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float fdouble = DivDouble(4.2f, 1.0f, 3.0f);
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float fsource = DivSource(4.2f, 1.0f, 3.0f);
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// CHECK: store float
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}
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