2009-04-08 05:16:11 +08:00
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// RUN: clang-cc %s -verify -pedantic -fsyntax-only -fblocks=0
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2008-02-03 04:20:10 +08:00
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// PR1966
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_Complex double test1() {
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return __extension__ 1.0if;
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}
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_Complex double test2() {
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return 1.0if; // expected-warning {{imaginary constants are an extension}}
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}
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2008-07-26 02:07:19 +08:00
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// rdar://6097308
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void test3() {
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int x;
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(__extension__ x) = 10;
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}
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2008-08-22 02:04:13 +08:00
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// rdar://6162726
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void test4() {
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static int var;
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var =+ 5; // expected-warning {{use of unary operator that may be intended as compound assignment (+=)}}
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var =- 5; // expected-warning {{use of unary operator that may be intended as compound assignment (-=)}}
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2009-03-08 14:51:10 +08:00
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var = +5; // no warning when space between the = and +.
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2008-08-22 02:04:13 +08:00
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var = -5;
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2009-03-08 14:51:10 +08:00
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var =+5; // no warning when the subexpr of the unary op has no space before it.
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var =-5;
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2009-03-09 15:11:10 +08:00
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#define FIVE 5
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var=-FIVE; // no warning with macros.
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var=-FIVE;
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2008-08-22 02:04:13 +08:00
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}
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2008-11-18 03:51:54 +08:00
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// rdar://6319320
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void test5(int *X, float *P) {
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(float*)X = P; // expected-error {{assignment to cast is illegal, lvalue casts are not supported}}
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2009-04-15 08:08:05 +08:00
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#define FOO ((float*) X)
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FOO = P; // expected-error {{assignment to cast is illegal, lvalue casts are not supported}}
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2008-11-18 03:51:54 +08:00
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}
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2008-11-22 02:27:34 +08:00
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void test6() {
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int X;
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X(); // expected-error {{called object type 'int' is not a function or function pointer}}
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}
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2008-11-23 03:57:03 +08:00
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void test7(int *P, _Complex float Gamma) {
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P = (P-42) + Gamma*4; // expected-error {{invalid operands to binary expression ('int *' and '_Complex float')}}
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}
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2008-12-12 13:35:08 +08:00
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// rdar://6095061
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int test8(void) {
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int i;
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2008-12-12 13:59:56 +08:00
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__builtin_choose_expr (0, 42, i) = 10; // expected-warning {{extension used}}
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2008-12-12 13:35:08 +08:00
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return i;
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}
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2009-01-25 04:17:12 +08:00
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// PR3386
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struct f { int x : 4; float y[]; };
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int test9(struct f *P) {
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2009-01-25 05:29:22 +08:00
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int R;
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R = __alignof(P->x); // expected-error {{invalid application of '__alignof' to bitfield}} expected-warning {{extension used}}
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R = __alignof(P->y); // ok. expected-warning {{extension used}}
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R = sizeof(P->x); // expected-error {{invalid application of 'sizeof' to bitfield}}
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return R;
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2009-01-25 04:17:12 +08:00
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}
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2009-02-14 06:08:30 +08:00
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// PR3562
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void test10(int n,...) {
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struct S {
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double a[n]; // expected-error {{fields must have a constant size}}
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} s;
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double x = s.a[0]; // should not get another error here.
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}
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2009-02-20 07:45:49 +08:00
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#define MYMAX(A,B) __extension__ ({ __typeof__(A) __a = (A); __typeof__(B) __b = (B); __a < __b ? __b : __a; })
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struct mystruct {int A; };
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2009-03-09 03:39:53 +08:00
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void test11(struct mystruct P, float F) {
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2009-02-20 07:45:49 +08:00
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MYMAX(P, F); // expected-error {{invalid operands to binary expression ('typeof(P)' (aka 'struct mystruct') and 'typeof(F)' (aka 'float'))}}
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}
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2009-03-09 03:39:53 +08:00
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// PR3753
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int test12(const char *X) {
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2009-03-09 03:52:14 +08:00
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return X == "foo"; // expected-warning {{comparison against a string literal is unspecified}}
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2009-03-09 03:39:53 +08:00
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}
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2009-03-27 12:18:06 +08:00
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// rdar://6719156
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void test13(
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void (^P)()) { // expected-error {{blocks support disabled - compile with -fblocks}}
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P();
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P = ^(){}; // expected-error {{blocks support disabled - compile with -fblocks}}
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}
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2009-03-31 15:46:52 +08:00
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// rdar://6326239 - Vector comparisons are not fully trusted yet, until the
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// backend is known to work, just unconditionally reject them.
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void test14() {
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typedef long long __m64 __attribute__((__vector_size__(8))); // expected-warning {{extension used}}
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typedef short __v4hi __attribute__((__vector_size__(8))); // expected-warning {{extension used}}
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__v4hi a;
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__m64 mask = (__m64)((__v4hi)a > // expected-error {{comparison of vector types ('__v4hi' and '__v4hi') not supported yet}}
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(__v4hi)a);
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}
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