// RUN: %clang_analyze_cc1 -analyzer-checker=core,debug.ExprInspection %s \
// RUN: -triple x86_64-pc-linux-gnu -verify
void clang_analyzer_eval(int);
#define BINOP(OP) [](auto x, auto y) { return x OP y; }
template <typename BinOp>
void nonloc_OP_loc(int *p, BinOp op) {
long p_as_integer = (long)p;
if (op(12, p_as_integer) != 11)
return;
// Perfectly constrain 'p', thus 'p_as_integer', and trigger a simplification
// of the previously recorded constraint.
if (p) {
// no-crash
}
if (p == (int *)0x1b) {
// no-crash
}
}
// Same as before, but the operands are swapped.
template <typename BinOp>
void loc_OP_nonloc(int *p, BinOp op) {
long p_as_integer = (long)p;
if (op(p_as_integer, 12) != 11)
return;
if (p) {
// no-crash
}
if (p == (int *)0x1b) {
// no-crash
}
}
void instantiate_tests_for_nonloc_OP_loc(int *p) {
// Multiplicative and additive operators:
nonloc_OP_loc(p, BINOP(*));
nonloc_OP_loc(p, BINOP(/)); // no-crash
nonloc_OP_loc(p, BINOP(%)); // no-crash
nonloc_OP_loc(p, BINOP(+));
nonloc_OP_loc(p, BINOP(-)); // no-crash
// Bitwise operators:
nonloc_OP_loc(p, BINOP(<<)); // no-crash
nonloc_OP_loc(p, BINOP(>>)); // no-crash
nonloc_OP_loc(p, BINOP(&));
nonloc_OP_loc(p, BINOP(^));
nonloc_OP_loc(p, BINOP(|));
}
void instantiate_tests_for_loc_OP_nonloc(int *p) {
// Multiplicative and additive operators:
loc_OP_nonloc(p, BINOP(*));
loc_OP_nonloc(p, BINOP(/));
loc_OP_nonloc(p, BINOP(%));
loc_OP_nonloc(p, BINOP(+));
loc_OP_nonloc(p, BINOP(-));
// Bitwise operators:
loc_OP_nonloc(p, BINOP(<<));
loc_OP_nonloc(p, BINOP(>>));
loc_OP_nonloc(p, BINOP(&));
loc_OP_nonloc(p, BINOP(^));
loc_OP_nonloc(p, BINOP(|));
}
// from: nullptr.cpp
void zoo1backwards() {
char **p = nullptr;
// expected-warning@+1 {{Dereference of null pointer [core.NullDereference]}}
*(0 + p) = nullptr; // warn
**(0 + p) = 'a'; // no-warning: this should be unreachable
}
void test_simplified_before_cast_add(long t1) {
long t2 = t1 + 3;
if (!t2) {
int *p = (int *) t2;
clang_analyzer_eval(p == 0); // expected-warning{{TRUE}}
}
}
void test_simplified_before_cast_sub(long t1) {
long t2 = t1 - 3;
if (!t2) {
int *p = (int *) t2;
clang_analyzer_eval(p == 0); // expected-warning{{TRUE}}
}
}
void test_simplified_before_cast_mul(long t1) {
long t2 = t1 * 3;
if (!t2) {
int *p = (int *) t2;
clang_analyzer_eval(p == 0); // expected-warning{{TRUE}}
}
}