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108 lines
2.7 KiB
108 lines
2.7 KiB
// RUN: %clang_cc1 -analyze -analyzer-checker=core,alpha.deadcode.UnreachableCode,alpha.core.CastSize,unix.Malloc -analyzer-store=region -verify %s
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typedef __typeof(sizeof(int)) size_t;
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void *malloc(size_t);
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void free(void *);
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void *realloc(void *ptr, size_t size);
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void *calloc(size_t nmemb, size_t size);
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char *strdup(const char *s);
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void checkThatMallocCheckerIsRunning() {
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malloc(4);
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} // expected-warning{{leak}}
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// Test for radar://11110132.
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struct Foo {
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mutable void* m_data;
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Foo(void* data) : m_data(data) {}
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};
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Foo aFunction() {
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return malloc(10);
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}
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// Assume that functions which take a function pointer can free memory even if
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// they are defined in system headers and take the const pointer to the
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// allocated memory. (radar://11160612)
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// Test default parameter.
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int const_ptr_and_callback_def_param(int, const char*, int n, void(*)(void*) = free);
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void r11160612_3() {
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char *x = (char*)malloc(12);
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const_ptr_and_callback_def_param(0, x, 12);
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}
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int const_ptr_and_callback_def_param_null(int, const char*, int n, void(*)(void*) = 0);
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void r11160612_no_callback() {
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char *x = (char*)malloc(12);
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const_ptr_and_callback_def_param_null(0, x, 12);
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} // expected-warning{{leak}}
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// Test member function pointer.
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struct CanFreeMemory {
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static void myFree(void*);
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};
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//This is handled because we look at the type of the parameter(not argument).
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void r11160612_3(CanFreeMemory* p) {
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char *x = (char*)malloc(12);
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const_ptr_and_callback_def_param(0, x, 12, p->myFree);
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}
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namespace PR13751 {
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class OwningVector {
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void **storage;
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size_t length;
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public:
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OwningVector();
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~OwningVector();
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void push_back(void *Item) {
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storage[length++] = Item;
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}
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};
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void testDestructors() {
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OwningVector v;
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v.push_back(malloc(4));
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// no leak warning; freed in destructor
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}
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}
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struct X { void *a; };
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struct X get() {
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struct X result;
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result.a = malloc(4);
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return result; // no-warning
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}
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// Ensure that regions accessible through a LazyCompoundVal trigger region escape.
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// Malloc checker used to report leaks for the following two test cases.
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struct Property {
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char* getterName;
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Property(char* n)
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: getterName(n) {}
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};
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void append(Property x);
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void appendWrapper(char *getterName) {
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append(Property(getterName));
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}
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void foo(const char* name) {
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char* getterName = strdup(name);
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appendWrapper(getterName); // no-warning
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}
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struct NestedProperty {
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Property prop;
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NestedProperty(Property p)
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: prop(p) {}
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};
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void appendNested(NestedProperty x);
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void appendWrapperNested(char *getterName) {
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appendNested(NestedProperty(Property(getterName)));
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}
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void fooNested(const char* name) {
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char* getterName = strdup(name);
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appendWrapperNested(getterName); // no-warning
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} |