forked from OSchip/llvm-project
340 lines
12 KiB
C++
340 lines
12 KiB
C++
// RUN: %clang_cc1 -std=c++11 -emit-llvm %s -o - -triple=i386-pc-win32 -mconstructor-aliases -fexceptions -fcxx-exceptions -fno-rtti | FileCheck -check-prefix WIN32 -check-prefix WIN32-O0 %s
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// RUN: %clang_cc1 -std=c++11 -emit-llvm -O3 -disable-llvm-passes %s -o - -triple=i386-pc-win32 -mconstructor-aliases -fexceptions -fcxx-exceptions -fno-rtti | FileCheck -check-prefix WIN32 -check-prefix WIN32-O3 -check-prefix WIN32-LIFETIME %s
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struct A {
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A();
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~A();
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int a;
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};
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A getA();
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int TakesTwo(A a, A b);
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void HasEHCleanup() {
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TakesTwo(getA(), getA());
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}
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// With exceptions, we need to clean up at least one of these temporaries.
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// WIN32-LABEL: define dso_local void @"?HasEHCleanup@@YAXXZ"() {{.*}} {
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// WIN32: %[[base:.*]] = call i8* @llvm.stacksave()
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// If this call throws, we have to restore the stack.
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// WIN32: call void @"?getA@@YA?AUA@@XZ"(%struct.A* sret align 4 %{{.*}})
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// If this call throws, we have to cleanup the first temporary.
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// WIN32: invoke void @"?getA@@YA?AUA@@XZ"(%struct.A* sret align 4 %{{.*}})
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// If this call throws, we have to cleanup the stacksave.
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// WIN32: call i32 @"?TakesTwo@@YAHUA@@0@Z"
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// WIN32: call void @llvm.stackrestore
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// WIN32: ret void
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//
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// There should be one dtor call for unwinding from the second getA.
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// WIN32: cleanuppad
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// WIN32: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32-NOT: @"??1A@@QAE@XZ"
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// WIN32: }
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void TakeRef(const A &a);
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int HasDeactivatedCleanups() {
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return TakesTwo((TakeRef(A()), A()), (TakeRef(A()), A()));
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}
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// WIN32-LABEL: define dso_local i32 @"?HasDeactivatedCleanups@@YAHXZ"() {{.*}} {
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// WIN32: %[[isactive:.*]] = alloca i1
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// WIN32: call i8* @llvm.stacksave()
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// WIN32: %[[argmem:.*]] = alloca inalloca [[argmem_ty:<{ %struct.A, %struct.A }>]]
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// WIN32: %[[arg1:.*]] = getelementptr inbounds [[argmem_ty]], [[argmem_ty]]* %[[argmem]], i32 0, i32 1
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// WIN32: call x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32: invoke void @"?TakeRef@@YAXABUA@@@Z"
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//
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// WIN32: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"(%struct.A* %[[arg1]])
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// WIN32: store i1 true, i1* %[[isactive]]
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//
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// WIN32: %[[arg0:.*]] = getelementptr inbounds [[argmem_ty]], [[argmem_ty]]* %[[argmem]], i32 0, i32 0
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// WIN32: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32: invoke void @"?TakeRef@@YAXABUA@@@Z"
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// WIN32: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32: store i1 false, i1* %[[isactive]]
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//
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// WIN32: invoke i32 @"?TakesTwo@@YAHUA@@0@Z"([[argmem_ty]]* inalloca %[[argmem]])
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// Destroy the two const ref temporaries.
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// WIN32: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32: ret i32
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//
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// Conditionally destroy arg1.
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// WIN32: %[[cond:.*]] = load i1, i1* %[[isactive]]
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// WIN32: br i1 %[[cond]]
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// WIN32: call x86_thiscallcc void @"??1A@@QAE@XZ"(%struct.A* %[[arg1]])
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// WIN32: }
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// Test putting the cleanups inside a conditional.
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int CouldThrow();
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int HasConditionalCleanup(bool cond) {
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return (cond ? TakesTwo(A(), A()) : CouldThrow());
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}
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// WIN32-LABEL: define dso_local i32 @"?HasConditionalCleanup@@YAH_N@Z"(i1 zeroext %{{.*}}) {{.*}} {
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// WIN32: store i1 false
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// WIN32: br i1
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// WIN32: call i8* @llvm.stacksave()
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// WIN32: call x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"(%struct.A* %{{.*}})
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// WIN32: store i1 true
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// WIN32: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"(%struct.A* %{{.*}})
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// WIN32: call i32 @"?TakesTwo@@YAHUA@@0@Z"
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//
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// WIN32: call void @llvm.stackrestore
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//
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// WIN32: call i32 @"?CouldThrow@@YAHXZ"()
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//
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// Only one dtor in the invoke for arg1
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// WIN32: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32-NOT: invoke x86_thiscallcc void @"??1A@@QAE@XZ"
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// WIN32: }
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// Now test both.
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int HasConditionalDeactivatedCleanups(bool cond) {
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return (cond ? TakesTwo((TakeRef(A()), A()), (TakeRef(A()), A())) : CouldThrow());
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}
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// WIN32-O0-LABEL: define dso_local i32 @"?HasConditionalDeactivatedCleanups@@YAH_N@Z"{{.*}} {
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// WIN32-O0: alloca i1
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// WIN32-O0: %[[arg1_cond:.*]] = alloca i1
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// Start all four cleanups as deactivated.
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// WIN32-O0: store i1 false
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// WIN32-O0: store i1 false
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// WIN32-O0: store i1 false
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// WIN32-O0: store i1 false
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// WIN32-O0: br i1
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// True condition.
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// WIN32-O0: call x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O0: store i1 true
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// WIN32-O0: invoke void @"?TakeRef@@YAXABUA@@@Z"
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// WIN32-O0: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O0: store i1 true, i1* %[[arg1_cond]]
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// WIN32-O0: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O0: store i1 true
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// WIN32-O0: invoke void @"?TakeRef@@YAXABUA@@@Z"
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// WIN32-O0: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O0: store i1 true
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// WIN32-O0: store i1 false, i1* %[[arg1_cond]]
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// WIN32-O0: invoke i32 @"?TakesTwo@@YAHUA@@0@Z"
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// False condition.
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// WIN32-O0: invoke i32 @"?CouldThrow@@YAHXZ"()
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// Two normal cleanups for TakeRef args.
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// WIN32-O0: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32-O0-NOT: invoke x86_thiscallcc void @"??1A@@QAE@XZ"
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// WIN32-O0: ret i32
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//
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// Somewhere in the landing pad soup, we conditionally destroy arg1.
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// WIN32-O0: %[[isactive:.*]] = load i1, i1* %[[arg1_cond]]
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// WIN32-O0: br i1 %[[isactive]]
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// WIN32-O0: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32-O0: }
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// WIN32-O3-LABEL: define dso_local i32 @"?HasConditionalDeactivatedCleanups@@YAH_N@Z"{{.*}} {
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// WIN32-O3: alloca i1
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// WIN32-O3: alloca i1
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// WIN32-O3: %[[arg1_cond:.*]] = alloca i1
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// Start all four cleanups as deactivated.
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// WIN32-O3: store i1 false
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// WIN32-O3: store i1 false
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// WIN32-O3: store i1 false
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// WIN32-O3: store i1 false
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// WIN32-O3: store i1 false
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// WIN32-O3: store i1 false
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// WIN32-O3: br i1
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// True condition.
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// WIN32-O3: call x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O3: store i1 true
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// WIN32-O3: invoke void @"?TakeRef@@YAXABUA@@@Z"
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// WIN32-O3: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O3: store i1 true, i1* %[[arg1_cond]]
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// WIN32-O3: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O3: store i1 true
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// WIN32-O3: invoke void @"?TakeRef@@YAXABUA@@@Z"
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// WIN32-O3: invoke x86_thiscallcc %struct.A* @"??0A@@QAE@XZ"
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// WIN32-O3: store i1 true
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// WIN32-O3: store i1 false, i1* %[[arg1_cond]]
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// WIN32-O3: invoke i32 @"?TakesTwo@@YAHUA@@0@Z"
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// False condition.
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// WIN32-O3: invoke i32 @"?CouldThrow@@YAHXZ"()
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// Two normal cleanups for TakeRef args.
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// WIN32-O3: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32-O3-NOT: invoke x86_thiscallcc void @"??1A@@QAE@XZ"
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// WIN32-O3: ret i32
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//
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// Somewhere in the landing pad soup, we conditionally destroy arg1.
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// WIN32-O3: %[[isactive:.*]] = load i1, i1* %[[arg1_cond]]
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// WIN32-O3: br i1 %[[isactive]]
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// WIN32-O3: call x86_thiscallcc void @"??1A@@QAE@XZ"({{.*}})
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// WIN32-O3: }
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namespace crash_on_partial_destroy {
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struct A {
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virtual ~A();
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};
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struct B : virtual A {
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// Has an implicit destructor.
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};
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struct C : B {
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C();
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};
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void foo();
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// We used to crash when emitting this.
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C::C() { foo(); }
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// Verify that we don't bother with a vbtable lookup when adjusting the this
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// pointer to call a base destructor from a constructor while unwinding.
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// WIN32-LABEL: define dso_local {{.*}} @"??0C@crash_on_partial_destroy@@QAE@XZ"{{.*}} {
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// WIN32: cleanuppad
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//
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// We shouldn't do any vbptr loads, just constant GEPs.
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// WIN32-NOT: load
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// WIN32: getelementptr i8, i8* %{{.*}}, i32 4
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// WIN32-NOT: load
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// WIN32: bitcast i8* %{{.*}} to %"struct.crash_on_partial_destroy::B"*
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// WIN32: call x86_thiscallcc void @"??1B@crash_on_partial_destroy@@UAE@XZ"
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//
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// WIN32-NOT: load
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// WIN32: bitcast %"struct.crash_on_partial_destroy::C"* %{{.*}} to i8*
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// WIN32-NOT: load
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// WIN32: getelementptr inbounds i8, i8* %{{.*}}, i32 4
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// WIN32-NOT: load
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// WIN32: bitcast i8* %{{.*}} to %"struct.crash_on_partial_destroy::A"*
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// WIN32: call x86_thiscallcc void @"??1A@crash_on_partial_destroy@@UAE@XZ"({{.*}})
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// WIN32: }
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}
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namespace dont_call_terminate {
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struct C {
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~C();
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};
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void g();
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void f() {
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C c;
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g();
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}
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// WIN32-LABEL: define dso_local void @"?f@dont_call_terminate@@YAXXZ"()
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// WIN32: invoke void @"?g@dont_call_terminate@@YAXXZ"()
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// WIN32-NEXT: to label %[[cont:[^ ]*]] unwind label %[[lpad:[^ ]*]]
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//
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// WIN32: [[cont]]
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// WIN32: call x86_thiscallcc void @"??1C@dont_call_terminate@@QAE@XZ"({{.*}})
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//
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// WIN32: [[lpad]]
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// WIN32-NEXT: cleanuppad
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// WIN32: call x86_thiscallcc void @"??1C@dont_call_terminate@@QAE@XZ"({{.*}})
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}
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namespace noexcept_false_dtor {
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struct D {
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~D() noexcept(false);
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};
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void f() {
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D d;
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CouldThrow();
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}
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}
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// WIN32-LABEL: define dso_local void @"?f@noexcept_false_dtor@@YAXXZ"()
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// WIN32: invoke i32 @"?CouldThrow@@YAHXZ"()
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// WIN32: call x86_thiscallcc void @"??1D@noexcept_false_dtor@@QAE@XZ"(%"struct.noexcept_false_dtor::D"* %{{.*}})
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// WIN32: cleanuppad
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// WIN32: call x86_thiscallcc void @"??1D@noexcept_false_dtor@@QAE@XZ"(%"struct.noexcept_false_dtor::D"* %{{.*}})
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// WIN32: cleanupret
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namespace lifetime_marker {
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struct C {
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~C();
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};
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void g();
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void f() {
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C c;
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g();
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}
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// WIN32-LIFETIME-LABEL: define dso_local void @"?f@lifetime_marker@@YAXXZ"()
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// WIN32-LIFETIME: %[[c:.*]] = alloca %"struct.lifetime_marker::C"
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// WIN32-LIFETIME: %[[bc0:.*]] = bitcast %"struct.lifetime_marker::C"* %c to i8*
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// WIN32-LIFETIME: call void @llvm.lifetime.start.p0i8(i64 1, i8* %[[bc0]])
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// WIN32-LIFETIME: invoke void @"?g@lifetime_marker@@YAXXZ"()
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// WIN32-LIFETIME-NEXT: to label %[[cont:[^ ]*]] unwind label %[[lpad0:[^ ]*]]
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//
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// WIN32-LIFETIME: [[cont]]
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// WIN32-LIFETIME: call x86_thiscallcc void @"??1C@lifetime_marker@@QAE@XZ"({{.*}})
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// WIN32-LIFETIME: %[[bc1:.*]] = bitcast %"struct.lifetime_marker::C"* %[[c]] to i8*
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// WIN32-LIFETIME: call void @llvm.lifetime.end.p0i8(i64 1, i8* %[[bc1]])
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//
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// WIN32-LIFETIME: [[lpad0]]
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// WIN32-LIFETIME-NEXT: cleanuppad
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// WIN32-LIFETIME: call x86_thiscallcc void @"??1C@lifetime_marker@@QAE@XZ"({{.*}})
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// WIN32-LIFETIME: cleanupret {{.*}} unwind label %[[lpad1:[^ ]*]]
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//
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// WIN32-LIFETIME: [[lpad1]]
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// WIN32-LIFETIME-NEXT: cleanuppad
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// WIN32-LIFETIME: %[[bc2:.*]] = bitcast %"struct.lifetime_marker::C"* %[[c]] to i8*
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// WIN32-LIFETIME: call void @llvm.lifetime.end.p0i8(i64 1, i8* %[[bc2]])
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}
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struct class_2 {
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class_2();
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virtual ~class_2();
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};
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struct class_1 : virtual class_2 {
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class_1(){throw "Unhandled exception";}
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virtual ~class_1() {}
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};
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struct class_0 : class_1 {
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class_0() ;
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virtual ~class_0() {}
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};
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class_0::class_0() {
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// WIN32: define dso_local x86_thiscallcc %struct.class_0* @"??0class_0@@QAE@XZ"(%struct.class_0* returned %this, i32 %is_most_derived)
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// WIN32: store i32 %is_most_derived, i32* %[[IS_MOST_DERIVED_VAR:.*]], align 4
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// WIN32: %[[IS_MOST_DERIVED_VAL:.*]] = load i32, i32* %[[IS_MOST_DERIVED_VAR]]
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// WIN32: %[[SHOULD_CALL_VBASE_CTORS:.*]] = icmp ne i32 %[[IS_MOST_DERIVED_VAL]], 0
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// WIN32: br i1 %[[SHOULD_CALL_VBASE_CTORS]], label %[[INIT_VBASES:.*]], label %[[SKIP_VBASES:.*]]
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// WIN32: [[INIT_VBASES]]
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// WIN32: br label %[[SKIP_VBASES]]
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// WIN32: [[SKIP_VBASES]]
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// ehcleanup:
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// WIN32: %[[CLEANUPPAD:.*]] = cleanuppad within none []
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// WIN32-NEXT: bitcast %{{.*}}* %{{.*}} to i8*
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// WIN32-NEXT: getelementptr inbounds i8, i8* %{{.*}}, i{{.*}} {{.}}
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// WIN32-NEXT: bitcast i8* %{{.*}} to %{{.*}}*
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// WIN32-NEXT: %[[SHOULD_CALL_VBASE_DTOR:.*]] = icmp ne i32 %[[IS_MOST_DERIVED_VAL]], 0
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// WIN32-NEXT: br i1 %[[SHOULD_CALL_VBASE_DTOR]], label %[[DTOR_VBASE:.*]], label %[[SKIP_VBASE:.*]]
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// WIN32: [[DTOR_VBASE]]
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// WIN32-NEXT: call x86_thiscallcc void @"??1class_2@@UAE@XZ"
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// WIN32: br label %[[SKIP_VBASE]]
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// WIN32: [[SKIP_VBASE]]
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}
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namespace PR37146 {
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// Check that IRGen doesn't emit calls to synthesized destructors for
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// non-trival C structs.
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// WIN32: define dso_local void @"?test@PR37146@@YAXXZ"()
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// WIN32: call void @llvm.memset.p0i8.i32(
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// WIN32: call i32 @"?getS@PR37146@@YA?AUS@1@XZ"(
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// WIN32: call void @"?func@PR37146@@YAXUS@1@0@Z"(
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// WIN32-NEXT: ret void
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// WIN32-NEXT: {{^}$}}
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struct S {
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int f;
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};
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void func(S, S);
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S getS();
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void test() {
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func(getS(), S());
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}
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}
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