1f51a89d39
These were ignored by git accidentally. We want ALL OF THEM since they all came in the llvm/clang source distribution.
179 lines
3.3 KiB
C
179 lines
3.3 KiB
C
// RUN: %clang_cc1 -analyze -analyzer-checker=core,experimental.core.CastToStruct -analyzer-store=region -analyzer-constraints=basic -verify %s
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// RUN: %clang_cc1 -analyze -analyzer-checker=core,experimental.core.CastToStruct -analyzer-store=region -analyzer-constraints=range -verify %s
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struct s {
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int data;
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int data_array[10];
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};
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typedef struct {
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int data;
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} STYPE;
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void g(char *p);
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void g1(struct s* p);
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// Array to pointer conversion. Array in the struct field.
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void f(void) {
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int a[10];
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int (*p)[10];
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p = &a;
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(*p)[3] = 1;
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struct s d;
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struct s *q;
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q = &d;
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q->data = 3;
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d.data_array[9] = 17;
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}
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// StringLiteral in lvalue context and pointer to array type.
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// p: ElementRegion, q: StringRegion
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void f2() {
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char *p = "/usr/local";
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char (*q)[4];
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q = &"abc";
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}
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// Typedef'ed struct definition.
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void f3() {
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STYPE s;
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}
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// Initialize array with InitExprList.
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void f4() {
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int a[] = { 1, 2, 3};
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int b[3] = { 1, 2 };
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struct s c[] = {{1,{1}}};
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}
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// Struct variable in lvalue context.
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// Assign UnknownVal to the whole struct.
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void f5() {
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struct s data;
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g1(&data);
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}
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// AllocaRegion test.
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void f6() {
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char *p;
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p = __builtin_alloca(10);
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g(p);
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char c = *p;
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p[1] = 'a';
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// Test if RegionStore::EvalBinOp converts the alloca region to element
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// region.
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p += 2;
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}
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struct s2;
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void g2(struct s2 *p);
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// Incomplete struct pointer used as function argument.
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void f7() {
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struct s2 *p = __builtin_alloca(10);
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g2(p);
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}
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// sizeof() is unsigned while -1 is signed in array index.
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void f8() {
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int a[10];
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a[sizeof(a)/sizeof(int) - 1] = 1; // no-warning
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}
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// Initialization of struct array elements.
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void f9() {
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struct s a[10];
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}
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// Initializing array with string literal.
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void f10() {
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char a1[4] = "abc";
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char a3[6] = "abc";
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}
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// Retrieve the default value of element/field region.
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void f11() {
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struct s a;
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g1(&a);
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if (a.data == 0) // no-warning
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a.data = 1;
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}
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// Convert unsigned offset to signed when creating ElementRegion from
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// SymbolicRegion.
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void f12(int *list) {
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unsigned i = 0;
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list[i] = 1;
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}
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struct s1 {
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struct s2 {
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int d;
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} e;
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};
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// The binding of a.e.d should not be removed. Test recursive subregion map
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// building: a->e, e->d. Only then 'a' could be added to live region roots.
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void f13(double timeout) {
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struct s1 a;
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a.e.d = (int) timeout;
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if (a.e.d == 10)
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a.e.d = 4;
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}
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struct s3 {
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int a[2];
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};
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static struct s3 opt;
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// Test if the embedded array is retrieved correctly.
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void f14() {
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struct s3 my_opt = opt;
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}
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void bar(int*);
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// Test if the array is correctly invalidated.
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void f15() {
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int a[10];
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bar(a);
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if (a[1]) // no-warning
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(void)1;
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}
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struct s3 p[1];
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// Code from postgresql.
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// Current cast logic of region store mistakenly leaves the final result region
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// an ElementRegion of type 'char'. Then load a nonloc::SymbolVal from it and
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// assigns to 'a'.
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void f16(struct s3 *p) {
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struct s3 a = *((struct s3*) ((char*) &p[0])); // expected-warning{{Casting a non-structure type to a structure type and accessing a field can lead to memory access errors or data corruption.}}
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}
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void inv(struct s1 *);
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// Invalidate the struct field.
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void f17() {
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struct s1 t;
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int x;
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inv(&t);
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if (t.e.d)
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x = 1;
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}
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void read(char*);
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void f18() {
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char *q;
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char *p = (char *) __builtin_alloca(10);
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read(p);
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q = p;
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q++;
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if (*q) { // no-warning
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}
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}
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