184 lines
4.3 KiB
C++
184 lines
4.3 KiB
C++
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// RUN: %clang_cc1 -analyze -analyzer-checker=debug.DumpCFG -triple x86_64-apple-darwin12 -std=c++11 %s 2>&1 | FileCheck %s
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// CHECK: ENTRY
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// CHECK-NEXT: Succs (1): B1
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// CHECK: [B1]
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// CHECK: Succs (21): B2 B3 B4 B5 B6 B7 B8 B9
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// CHECK: B10 B11 B12 B13 B14 B15 B16 B17 B18 B19
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// CHECK: B20 B21 B0
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// CHECK: [B0 (EXIT)]
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// CHECK-NEXT: Preds (21): B2 B3 B4 B5 B6 B7 B8 B9
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// CHECK-NEXT: B10 B11 B12 B13 B14 B15 B16 B17 B18 B19
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// CHECK-NEXT: B20 B21 B1
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void checkWrap(int i) {
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switch(i) {
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case 0: break;
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case 1: break;
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case 2: break;
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case 3: break;
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case 4: break;
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case 5: break;
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case 6: break;
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case 7: break;
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case 8: break;
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case 9: break;
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case 10: break;
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case 11: break;
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case 12: break;
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case 13: break;
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case 14: break;
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case 15: break;
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case 16: break;
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case 17: break;
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case 18: break;
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case 19: break;
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}
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}
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// CHECK: ENTRY
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// CHECK-NEXT: Succs (1): B1
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// CHECK: [B1]
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// CHECK-NEXT: 1: int i;
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// CHECK-NEXT: 2: int j;
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// CHECK-NEXT: 3: 1
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// CHECK-NEXT: 4: int k = 1;
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// CHECK-NEXT: 5: int l;
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// CHECK-NEXT: 6: 2
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// CHECK-NEXT: 7: int m = 2;
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// CHECK-NEXT: CXXConstructExpr
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// CHECK-NEXT: 9: struct standalone myStandalone;
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// CHECK-NEXT: CXXConstructExpr
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// CHECK-NEXT: 11: struct <anonymous struct at {{.*}}> myAnon;
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// CHECK-NEXT: CXXConstructExpr
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// CHECK-NEXT: 13: struct named myNamed;
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// CHECK-NEXT: Preds (1): B2
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// CHECK-NEXT: Succs (1): B0
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void checkDeclStmts() {
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int i, j;
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int k = 1, l, m = 2;
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struct standalone { int x, y; };
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struct standalone myStandalone;
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struct { int x, y; } myAnon;
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struct named { int x, y; } myNamed;
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static_assert(1, "abc");
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}
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// CHECK: ENTRY
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// CHECK-NEXT: Succs (1): B1
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// CHECK: [B1]
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// CHECK-NEXT: 1: e
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// CHECK-NEXT: 2: [B1.1] (ImplicitCastExpr, LValueToRValue, enum EmptyE)
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// CHECK-NEXT: 3: [B1.2] (ImplicitCastExpr, IntegralCast, int)
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// CHECK-NEXT: T: switch [B1.3]
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// CHECK-NEXT: Preds (1): B2
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// CHECK-NEXT: Succs (1): B0
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// CHECK: [B0 (EXIT)]
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// CHECK-NEXT: Preds (1): B1
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enum EmptyE {};
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void F(EmptyE e) {
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switch (e) {}
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}
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// CHECK: ENTRY
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// CHECK-NEXT: Succs (1): B1
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// CHECK: [B1]
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// CHECK-NEXT: 1: __builtin_object_size
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// CHECK-NEXT: 2: [B1.1] (ImplicitCastExpr, BuiltinFnToFnPtr, unsigned long (*)(const void *, int))
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// CHECK-NEXT: 3: [B1.2](dummy(), 0)
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// CHECK-NEXT: 4: (void)[B1.3] (CStyleCastExpr, ToVoid, void)
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// CHECK-NEXT: Preds (1): B2
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// CHECK-NEXT: Succs (1): B0
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// CHECK: [B0 (EXIT)]
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// CHECK-NEXT: Preds (1): B1
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void testBuiltinSize() {
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extern int *dummy();
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(void)__builtin_object_size(dummy(), 0);
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}
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class A {
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public:
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A() {}
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~A() {}
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};
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// CHECK: [B2 (ENTRY)]
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// CHECK-NEXT: Succs (1): B1
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// CHECK: [B1]
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// CHECK-NEXT: 1: (CXXConstructExpr, class A)
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// CHECK-NEXT: 2: new A([B1.1])
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// CHECK-NEXT: 3: A *a = new A();
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// CHECK-NEXT: 4: a
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// CHECK-NEXT: 5: [B1.4] (ImplicitCastExpr, LValueToRValue, class A *)
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// CHECK-NEXT: 6: [B1.5]->~A() (Implicit destructor)
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// CHECK-NEXT: 7: delete [B1.5]
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// CHECK-NEXT: Preds (1): B2
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// CHECK-NEXT: Succs (1): B0
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// CHECK: [B0 (EXIT)]
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// CHECK-NEXT: Preds (1): B1
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void test_deletedtor() {
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A *a = new A();
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delete a;
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}
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// CHECK: [B2 (ENTRY)]
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// CHECK-NEXT: Succs (1): B1
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// CHECK: [B1]
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// CHECK-NEXT: 1: 5
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// CHECK-NEXT: 2: (CXXConstructExpr, class A)
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// CHECK-NEXT: 3: new A {{\[\[}}B1.1]]
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// CHECK-NEXT: 4: A *a = new A [5];
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// CHECK-NEXT: 5: a
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// CHECK-NEXT: 6: [B1.5] (ImplicitCastExpr, LValueToRValue, class A *)
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// CHECK-NEXT: 7: [B1.6]->~A() (Implicit destructor)
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// CHECK-NEXT: 8: delete [] [B1.6]
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// CHECK-NEXT: Preds (1): B2
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// CHECK-NEXT: Succs (1): B0
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// CHECK: [B0 (EXIT)]
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// CHECK-NEXT: Preds (1): B1
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void test_deleteArraydtor() {
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A *a = new A[5];
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delete[] a;
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}
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namespace NoReturnSingleSuccessor {
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struct A {
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A();
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~A();
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};
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struct B : public A {
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B();
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~B() __attribute__((noreturn));
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};
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// CHECK: ENTRY
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// CHECK: 1: 1
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// CHECK-NEXT: 2: return
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// CHECK-NEXT: ~B() (Implicit destructor)
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// CHECK-NEXT: Preds (1)
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// CHECK-NEXT: Succs (1): B0
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int test1(int *x) {
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B b;
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if (x)
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return 1;
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}
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// CHECK: ENTRY
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// CHECK: 1: 1
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// CHECK-NEXT: 2: return
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// CHECK-NEXT: destructor
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// CHECK-NEXT: Preds (1)
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// CHECK-NEXT: Succs (1): B0
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int test2(int *x) {
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const A& a = B();
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if (x)
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return 1;
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}
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}
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