overload-call.cpp revision 258b203b853e1c684c290fccd0088d1f340c137f
1// RUN: %clang_cc1 -fsyntax-only -pedantic -verify %s
2int* f(int) { return 0; }
3float* f(float) { return 0; }
4void f();
5
6void test_f(int iv, float fv) {
7  float* fp = f(fv);
8  int* ip = f(iv);
9}
10
11int* g(int, float, int); // expected-note {{ candidate function }}
12float* g(int, int, int); // expected-note {{ candidate function }}
13double* g(int, float, float); // expected-note {{ candidate function }}
14char* g(int, float, ...); // expected-note {{ candidate function }}
15void g();
16
17void test_g(int iv, float fv) {
18  int* ip1 = g(iv, fv, 0);
19  float* fp1 = g(iv, iv, 0);
20  double* dp1 = g(iv, fv, fv);
21  char* cp1 = g(0, 0);
22  char* cp2 = g(0, 0, 0, iv, fv);
23
24  double* dp2 = g(0, fv, 1.5); // expected-error {{ call to 'g' is ambiguous; candidates are: }}
25}
26
27double* h(double f);
28int* h(int);
29
30void test_h(float fv, unsigned char cv) {
31  double* dp = h(fv);
32  int* ip = h(cv);
33}
34
35int* i(int);
36double* i(long);
37
38void test_i(short sv, int iv, long lv, unsigned char ucv) {
39  int* ip1 = i(sv);
40  int* ip2 = i(iv);
41  int* ip3 = i(ucv);
42  double* dp1 = i(lv);
43}
44
45int* j(void*);
46double* j(bool);
47
48void test_j(int* ip) {
49  int* ip1 = j(ip);
50}
51
52int* k(char*);
53double* k(bool);
54
55void test_k() {
56  int* ip1 = k("foo");
57  double* dp1 = k(L"foo");
58}
59
60int* l(wchar_t*);
61double* l(bool);
62
63void test_l() {
64  int* ip1 = l(L"foo");
65  double* dp1 = l("foo");
66}
67
68int* m(const char*);
69double* m(char*);
70
71void test_m() {
72  int* ip = m("foo");
73}
74
75int* n(char*);
76double* n(void*);
77class E;
78
79void test_n(E* e) {
80  char ca[7];
81  int* ip1 = n(ca);
82  int* ip2 = n("foo");
83
84  float fa[7];
85  double* dp1 = n(fa);
86
87  double* dp2 = n(e);
88}
89
90enum PromotesToInt {
91  PromotesToIntValue = -1
92};
93
94enum PromotesToUnsignedInt {
95  PromotesToUnsignedIntValue = __INT_MAX__ * 2U
96};
97
98int* o(int);
99double* o(unsigned int);
100float* o(long);
101
102void test_o() {
103  int* ip1 = o(PromotesToIntValue);
104  double* dp1 = o(PromotesToUnsignedIntValue);
105}
106
107int* p(int);
108double* p(double);
109
110void test_p() {
111  int* ip = p((short)1);
112  double* dp = p(1.0f);
113}
114
115struct Bits {
116  signed short int_bitfield : 5;
117  unsigned int uint_bitfield : 8;
118};
119
120int* bitfields(int, int);
121float* bitfields(unsigned int, int);
122
123void test_bitfield(Bits bits, int x) {
124  int* ip = bitfields(bits.int_bitfield, 0);
125  float* fp = bitfields(bits.uint_bitfield, 0u);
126}
127
128int* multiparm(long, int, long); // expected-note {{ candidate function }}
129float* multiparm(int, int, int); // expected-note {{ candidate function }}
130double* multiparm(int, int, short); // expected-note {{ candidate function }}
131
132void test_multiparm(long lv, short sv, int iv) {
133  int* ip1 = multiparm(lv, iv, lv);
134  int* ip2 = multiparm(lv, sv, lv);
135  float* fp1 = multiparm(iv, iv, iv);
136  float* fp2 = multiparm(sv, iv, iv);
137  double* dp1 = multiparm(sv, sv, sv);
138  double* dp2 = multiparm(iv, sv, sv);
139  multiparm(sv, sv, lv); // expected-error {{ call to 'multiparm' is ambiguous; candidates are: }}
140}
141
142// Test overloading based on qualification vs. no qualification
143// conversion.
144int* quals1(int const * p);
145char* quals1(int * p);
146
147int* quals2(int const * const * pp);
148char* quals2(int * * pp);
149
150int* quals3(int const * * const * ppp);
151char* quals3(int *** ppp);
152
153void test_quals(int * p, int * * pp, int * * * ppp) {
154  char* q1 = quals1(p);
155  char* q2 = quals2(pp);
156  char* q3 = quals3(ppp);
157}
158
159// Test overloading based on qualification ranking (C++ 13.3.2)p3.
160int* quals_rank1(int const * p);
161float* quals_rank1(int const volatile *p);
162char* quals_rank1(char*);
163double* quals_rank1(const char*);
164
165int* quals_rank2(int const * const * pp);
166float* quals_rank2(int * const * pp);
167
168void quals_rank3(int const * const * const volatile * p); // expected-note{{candidate function}}
169void quals_rank3(int const * const volatile * const * p); // expected-note{{candidate function}}
170
171void quals_rank3(int const *); // expected-note{{candidate function}}
172void quals_rank3(int volatile *); // expected-note{{candidate function}}
173
174void test_quals_ranking(int * p, int volatile *pq, int * * pp, int * * * ppp) {
175  int* q1 = quals_rank1(p);
176  float* q2 = quals_rank1(pq);
177  double* q3 = quals_rank1("string literal");
178  char a[17];
179  const char* ap = a;
180  char* q4 = quals_rank1(a);
181  double* q5 = quals_rank1(ap);
182
183  float* q6 = quals_rank2(pp);
184
185  quals_rank3(ppp); // expected-error {{call to 'quals_rank3' is ambiguous; candidates are:}}
186
187  quals_rank3(p); // expected-error {{call to 'quals_rank3' is ambiguous; candidates are:}}
188  quals_rank3(pq);
189}
190
191// Test overloading based on derived-to-base conversions
192class A { };
193class B : public A { };
194class C : public B { };
195class D : public C { };
196
197int* derived1(A*);
198char* derived1(const A*);
199float* derived1(void*);
200
201int* derived2(A*);
202float* derived2(B*);
203
204int* derived3(A*);
205float* derived3(const B*);
206char* derived3(C*);
207
208void test_derived(B* b, B const* bc, C* c, const C* cc, void* v, D* d) {
209  int* d1 = derived1(b);
210  char* d2 = derived1(bc);
211  int* d3 = derived1(c);
212  char* d4 = derived1(cc);
213  float* d5 = derived1(v);
214
215  float* d6 = derived2(b);
216  float* d7 = derived2(c);
217
218  char* d8 = derived3(d);
219}
220
221// Test overloading of references.
222// (FIXME: tests binding to determine candidate sets, not overload
223//  resolution per se).
224int* intref(int&);
225float* intref(const int&);
226
227void intref_test() {
228  float* ir1 = intref(5);
229  float* ir2 = intref(5.5);
230}
231
232// Test reference binding vs. standard conversions.
233int& bind_vs_conv(const double&);
234float& bind_vs_conv(int);
235
236void bind_vs_conv_test()
237{
238  int& i1 = bind_vs_conv(1.0f);
239  float& f1 = bind_vs_conv((short)1);
240}
241
242// Test that cv-qualifiers get subsumed in the reference binding.
243struct X { };
244struct Y { };
245struct Z : X, Y { };
246
247int& cvqual_subsume(X&); // expected-note{{candidate function}}
248float& cvqual_subsume(const Y&); // expected-note{{candidate function}}
249
250int& cvqual_subsume2(const X&);
251float& cvqual_subsume2(const volatile Y&);
252
253Z get_Z();
254
255void cvqual_subsume_test(Z z) {
256  cvqual_subsume(z); // expected-error{{call to 'cvqual_subsume' is ambiguous; candidates are:}}
257  int& x = cvqual_subsume2(get_Z()); // okay: only binds to the first one
258}
259
260// Test overloading with cv-qualification differences in reference
261// binding.
262int& cvqual_diff(X&);
263float& cvqual_diff(const X&);
264
265void cvqual_diff_test(X x, Z z) {
266  int& i1 = cvqual_diff(x);
267  int& i2 = cvqual_diff(z);
268}
269
270// Test overloading with derived-to-base differences in reference
271// binding.
272struct Z2 : Z { };
273
274int& db_rebind(X&);
275long& db_rebind(Y&);
276float& db_rebind(Z&);
277
278void db_rebind_test(Z2 z2) {
279  float& f1 = db_rebind(z2);
280}
281
282class string { };
283class opt : public string { };
284
285struct SR {
286  SR(const string&);
287};
288
289void f(SR) { }
290
291void g(opt o) {
292  f(o);
293}
294
295
296namespace PR5756 {
297  int &a(void*, int);
298  float &a(void*, float);
299  void b() {
300    int &ir = a(0,0);
301    (void)ir;
302  }
303}
304
305// Tests the exact text used to note the candidates
306namespace test1 {
307  template <class T> void foo(T t, unsigned N); // expected-note {{candidate function [with T = int] not viable: no known conversion from 'char const [6]' to 'unsigned int' for 2nd argument}}
308  void foo(int n, char N); // expected-note {{candidate function not viable: no known conversion from 'char const [6]' to 'char' for 2nd argument}}
309  void foo(int n); // expected-note {{candidate function not viable: requires 1 argument, but 2 were provided}}
310  void foo(unsigned n = 10); // expected-note {{candidate function not viable: requires at most 1 argument, but 2 were provided}}
311  void foo(int n, const char *s, int t); // expected-note {{candidate function not viable: requires 3 arguments, but 2 were provided}}
312  void foo(int n, const char *s, int t, ...); // expected-note {{candidate function not viable: requires at least 3 arguments, but 2 were provided}}
313  void foo(int n, const char *s, int t, int u = 0); // expected-note {{candidate function not viable: requires at least 3 arguments, but 2 were provided}}
314
315  void test() {
316    foo(4, "hello"); //expected-error {{no matching function for call to 'foo'}}
317  }
318}
319
320// PR 6014
321namespace test2 {
322  struct QFixed {
323    QFixed(int i);
324    QFixed(long i);
325  };
326
327  bool operator==(const QFixed &f, int i);
328
329  class qrgb666 {
330    inline operator unsigned int () const;
331
332    inline bool operator==(const qrgb666 &v) const;
333    inline bool operator!=(const qrgb666 &v) const { return !(*this == v); }
334  };
335}
336
337// PR 6117
338namespace test3 {
339  struct Base {};
340  struct Incomplete;
341
342  void foo(Base *); // expected-note 2 {{cannot convert argument of incomplete type}}
343  void foo(Base &); // expected-note 2 {{cannot convert argument of incomplete type}}
344
345  void test(Incomplete *P) {
346    foo(P); // expected-error {{no matching function for call to 'foo'}}
347    foo(*P); // expected-error {{no matching function for call to 'foo'}}
348  }
349}
350