forked from OSchip/llvm-project
				
			
		
			
				
	
	
		
			251 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
			
		
		
	
	
			251 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
// RUN: %clang_cc1 -fsyntax-only -verify %s -Wincompatible-pointer-types
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int var __attribute__((overloadable)); // expected-error{{'overloadable' attribute only applies to functions}}
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void params(void) __attribute__((overloadable(12))); // expected-error {{'overloadable' attribute takes no arguments}}
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int *f(int) __attribute__((overloadable)); // expected-note{{previous overload of function is here}}
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float *f(float);
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int *f(int); // expected-error{{redeclaration of 'f' must have the 'overloadable' attribute}} \
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             // expected-note{{previous declaration is here}}
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double *f(double) __attribute__((overloadable)); // okay, new
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// Ensure we don't complain about overloadable on implicitly declared functions.
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int isdigit(int) __attribute__((overloadable));
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void test_f(int iv, float fv, double dv) {
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  int *ip = f(iv);
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  float *fp = f(fv);
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  double *dp = f(dv);
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}
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int *accept_funcptr(int (*)()) __attribute__((overloadable)); //         \
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  // expected-note{{candidate function}}
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float *accept_funcptr(int (*)(int, double)) __attribute__((overloadable)); //  \
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  // expected-note{{candidate function}}
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void test_funcptr(int (*f1)(int, double),
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                  int (*f2)(int, float)) {
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  float *fp = accept_funcptr(f1);
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  accept_funcptr(f2); // expected-error{{call to 'accept_funcptr' is ambiguous}}
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}
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struct X { int x; float y; };
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struct Y { int x; float y; };
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int* accept_struct(struct X x) __attribute__((__overloadable__));
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float* accept_struct(struct Y y) __attribute__((overloadable));
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void test_struct(struct X x, struct Y y) {
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  int *ip = accept_struct(x);
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  float *fp = accept_struct(y);
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}
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double *f(int) __attribute__((overloadable)); // expected-error{{conflicting types for 'f'}}
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double promote(float) __attribute__((__overloadable__)); // expected-note {{candidate}}
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double promote(double) __attribute__((__overloadable__)); // expected-note {{candidate}}
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long double promote(long double) __attribute__((__overloadable__)); // expected-note {{candidate}}
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void promote(...) __attribute__((__overloadable__, __unavailable__)); // \
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    // expected-note{{candidate function}}
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void test_promote(short* sp) {
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  promote(1.0);
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  promote(sp); // expected-error{{call to unavailable function 'promote'}}
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}
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// PR6600
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typedef double Double;
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typedef Double DoubleVec __attribute__((vector_size(16)));
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typedef int Int;
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typedef Int IntVec __attribute__((vector_size(16)));
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double magnitude(DoubleVec) __attribute__((__overloadable__));
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double magnitude(IntVec) __attribute__((__overloadable__));
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double test_p6600(DoubleVec d) {
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  return magnitude(d) * magnitude(d);
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}
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// PR7738
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extern int __attribute__((overloadable)) f0(); // expected-error{{'overloadable' function 'f0' must have a prototype}}
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typedef int f1_type();
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f1_type __attribute__((overloadable)) f1; // expected-error{{'overloadable' function 'f1' must have a prototype}}
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void test() {
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  f0();
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  f1();
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}
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void before_local_1(int) __attribute__((overloadable));
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void before_local_2(int); // expected-note {{here}}
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void before_local_3(int) __attribute__((overloadable));
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void local() {
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  void before_local_1(char);
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  void before_local_2(char); // expected-error {{conflicting types}}
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  void before_local_3(char) __attribute__((overloadable));
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  void after_local_1(char);
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  void after_local_2(char) __attribute__((overloadable));
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  void after_local_3(char) __attribute__((overloadable));
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}
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void after_local_1(int) __attribute__((overloadable));
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void after_local_2(int);
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void after_local_3(int) __attribute__((overloadable));
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// Make sure we allow C-specific conversions in C.
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void conversions() {
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  void foo(char *c) __attribute__((overloadable));
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  void foo(char *c) __attribute__((overloadable, enable_if(c, "nope.jpg")));
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  void *ptr;
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  foo(ptr);
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  void multi_type(unsigned char *c) __attribute__((overloadable));
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  void multi_type(signed char *c) __attribute__((overloadable));
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  unsigned char *c;
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  multi_type(c);
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}
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// Ensure that we allow C-specific type conversions in C
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void fn_type_conversions() {
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  void foo(void *c) __attribute__((overloadable));
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  void foo(char *c) __attribute__((overloadable));
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  void (*ptr1)(void *) = &foo;
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  void (*ptr2)(char *) = &foo;
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  void (*ambiguous)(int *) = &foo; // expected-error{{initializing 'void (*)(int *)' with an expression of incompatible type '<overloaded function type>'}} expected-note@-4{{candidate function}} expected-note@-3{{candidate function}}
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  void *vp_ambiguous = &foo; // expected-error{{initializing 'void *' with an expression of incompatible type '<overloaded function type>'}} expected-note@-5{{candidate function}} expected-note@-4{{candidate function}}
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  void (*specific1)(int *) = (void (*)(void *))&foo; // expected-warning{{incompatible function pointer types initializing 'void (*)(int *)' with an expression of type 'void (*)(void *)'}}
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  void *specific2 = (void (*)(void *))&foo;
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  void disabled(void *c) __attribute__((overloadable, enable_if(0, "")));
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  void disabled(int *c) __attribute__((overloadable, enable_if(c, "")));
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  void disabled(char *c) __attribute__((overloadable, enable_if(1, "The function name lies.")));
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  // To be clear, these should all point to the last overload of 'disabled'
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  void (*dptr1)(char *c) = &disabled;
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  void (*dptr2)(void *c) = &disabled; // expected-warning{{incompatible pointer types initializing 'void (*)(void *)' with an expression of type '<overloaded function type>'}} expected-note@-5{{candidate function made ineligible by enable_if}} expected-note@-4{{candidate function made ineligible by enable_if}} expected-note@-3{{candidate function has type mismatch at 1st parameter (expected 'void *' but has 'char *')}}
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  void (*dptr3)(int *c) = &disabled; // expected-warning{{incompatible pointer types initializing 'void (*)(int *)' with an expression of type '<overloaded function type>'}} expected-note@-6{{candidate function made ineligible by enable_if}} expected-note@-5{{candidate function made ineligible by enable_if}} expected-note@-4{{candidate function has type mismatch at 1st parameter (expected 'int *' but has 'char *')}}
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  void *specific_disabled = &disabled;
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}
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void incompatible_pointer_type_conversions() {
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  char charbuf[1];
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  unsigned char ucharbuf[1];
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  int intbuf[1];
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  void foo(char *c) __attribute__((overloadable));
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  void foo(short *c) __attribute__((overloadable));
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  foo(charbuf);
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  foo(ucharbuf); // expected-error{{call to 'foo' is ambiguous}} expected-note@-3{{candidate function}} expected-note@-2{{candidate function}}
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  foo(intbuf); // expected-error{{call to 'foo' is ambiguous}} expected-note@-4{{candidate function}} expected-note@-3{{candidate function}}
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  void bar(unsigned char *c) __attribute__((overloadable));
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  void bar(signed char *c) __attribute__((overloadable));
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  bar(charbuf); // expected-error{{call to 'bar' is ambiguous}} expected-note@-2{{candidate function}} expected-note@-1{{candidate function}}
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  bar(ucharbuf);
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  bar(intbuf); // expected-error{{call to 'bar' is ambiguous}} expected-note@-4{{candidate function}} expected-note@-3{{candidate function}}
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}
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void dropping_qualifiers_is_incompatible() {
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  const char ccharbuf[1];
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  volatile char vcharbuf[1];
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  void foo(char *c) __attribute__((overloadable));
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  void foo(const volatile unsigned char *c) __attribute__((overloadable));
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  foo(ccharbuf); // expected-error{{call to 'foo' is ambiguous}} expected-note@-3{{candidate function}} expected-note@-2{{candidate function}}
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  foo(vcharbuf); // expected-error{{call to 'foo' is ambiguous}} expected-note@-4{{candidate function}} expected-note@-3{{candidate function}}
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}
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void overloadable_with_global() {
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  void wg_foo(void) __attribute__((overloadable)); // expected-note{{previous}}
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  void wg_foo(int) __attribute__((overloadable));
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}
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int wg_foo; // expected-error{{redefinition of 'wg_foo' as different kind of symbol}}
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#if !__has_extension(overloadable_unmarked)
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#error "We should have unmarked overload support"
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#endif
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void to_foo0(int);
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void to_foo0(double) __attribute__((overloadable)); // expected-note{{previous overload}}
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void to_foo0(int);
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void to_foo0(double); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo0(int);
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void to_foo1(int) __attribute__((overloadable)); // expected-note 2{{previous overload}}
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void to_foo1(double);
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void to_foo1(int); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo1(double);
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void to_foo1(int); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo2(int); // expected-note{{previous unmarked overload}}
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void to_foo2(double) __attribute__((overloadable)); // expected-note 2{{previous overload}}
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void to_foo2(int) __attribute__((overloadable)); // expected-error {{must not have the 'overloadable' attribute}}
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void to_foo2(double); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo2(int);
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void to_foo2(double); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo2(int);
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void to_foo3(int);
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void to_foo3(double) __attribute__((overloadable)); // expected-note{{previous overload}}
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void to_foo3(int);
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void to_foo3(double); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo4(int) __attribute__((overloadable)); // expected-note{{previous overload}}
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void to_foo4(int); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo4(double) __attribute__((overloadable));
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void to_foo5(int);
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void to_foo5(int); // expected-note 3{{previous unmarked overload}}
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void to_foo5(float) __attribute__((overloadable));
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void to_foo5(double); // expected-error{{at most one overload for a given name may lack the 'overloadable' attribute}}
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void to_foo5(float) __attribute__((overloadable));
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void to_foo5(short); // expected-error{{at most one overload for a given name may lack the 'overloadable' attribute}}
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void to_foo5(long); // expected-error{{at most one overload for a given name may lack the 'overloadable' attribute}}
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void to_foo5(double) __attribute__((overloadable));
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void to_foo6(int) __attribute__((enable_if(1, ""), overloadable)); // expected-note{{previous overload}}
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void to_foo6(int) __attribute__((enable_if(1, ""))); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo6(int) __attribute__((enable_if(1, ""), overloadable));
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void to_foo7(int) __attribute__((enable_if(1, ""))); // expected-note{{previous unmarked overload}}
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void to_foo7(int) __attribute__((enable_if(1, ""), overloadable)); // expected-error{{must not have the 'overloadable' attribute}}
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void to_foo7(int) __attribute__((enable_if(1, "")));
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void to_foo8(char *__attribute__((pass_object_size(0))))
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  __attribute__((enable_if(1, "")));
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void to_foo8(char *__attribute__((pass_object_size(0))))
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  __attribute__((overloadable));
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void to_foo9(int); // expected-note{{previous unmarked overload}}
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// FIXME: It would be nice if we did better with the "previous unmarked
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// overload" diag.
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void to_foo9(int) __attribute__((overloadable)); // expected-error{{must not have the 'overloadable' attribute}} expected-note{{previous declaration}} expected-note{{previous unmarked overload}}
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void to_foo9(float); // expected-error{{conflicting types for 'to_foo9'}}
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void to_foo9(float) __attribute__((overloadable));
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void to_foo9(double); // expected-error{{at most one overload for a given name may lack the 'overloadable' attribute}}
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void to_foo9(double) __attribute__((overloadable));
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void to_foo10(int) __attribute__((overloadable));
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void to_foo10(double); // expected-note{{previous unmarked overload}}
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// no "note: previous redecl" if no previous decl has `overloadable`
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// spelled out
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void to_foo10(float); // expected-error{{at most one overload for a given name may lack the 'overloadable' attribute}}
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void to_foo10(float); // expected-error{{must have the 'overloadable' attribute}}
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void to_foo10(float); // expected-error{{must have the 'overloadable' attribute}}
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// Bug: we used to treat `__typeof__(foo)` as though it was `__typeof__(&foo)`
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// if `foo` was overloaded with only one function that could have its address
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// taken.
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void typeof_function_is_not_a_pointer() {
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  void not_a_pointer(void *) __attribute__((overloadable));
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  void not_a_pointer(char *__attribute__((pass_object_size(1))))
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    __attribute__((overloadable));
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  __typeof__(not_a_pointer) *fn;
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  void take_fn(void (*)(void *));
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  // if take_fn is passed a void (**)(void *), we'll get a warning.
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  take_fn(fn);
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}
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