blob: 065e396b1527c98d3c8af04c144fc5e1f2ef6ebf [file] [log] [blame]
Richard Smith604fb382012-08-07 22:06:48 +00001// RUN: %clang_cc1 -triple i686-linux -Wno-string-plus-int -fsyntax-only -fcxx-exceptions -verify -std=c++11 -pedantic %s -Wno-comment
Richard Smith59efe262011-11-11 04:05:33 +00002
Richard Smith59efe262011-11-11 04:05:33 +00003namespace StaticAssertFoldTest {
4
5int x;
Richard Smith9eed49c2011-12-09 23:00:37 +00006static_assert(++x, "test"); // expected-error {{not an integral constant expression}}
7static_assert(false, "test"); // expected-error {{test}}
Richard Smith59efe262011-11-11 04:05:33 +00008
9}
10
Richard Smith1d238ea2011-12-21 02:55:12 +000011typedef decltype(sizeof(char)) size_t;
12
13template<typename T> constexpr T id(const T &t) { return t; }
14template<typename T> constexpr T min(const T &a, const T &b) {
15 return a < b ? a : b;
16}
17template<typename T> constexpr T max(const T &a, const T &b) {
18 return a < b ? b : a;
19}
20template<typename T, size_t N> constexpr T *begin(T (&xs)[N]) { return xs; }
21template<typename T, size_t N> constexpr T *end(T (&xs)[N]) { return xs + N; }
Richard Smith59efe262011-11-11 04:05:33 +000022
23struct MemberZero {
24 constexpr int zero() { return 0; }
25};
26
27namespace DerivedToVBaseCast {
28
29 struct U { int n; };
30 struct V : U { int n; };
31 struct A : virtual V { int n; };
32 struct Aa { int n; };
33 struct B : virtual A, Aa {};
34 struct C : virtual A, Aa {};
35 struct D : B, C {};
36
37 D d;
38 constexpr B *p = &d;
39 constexpr C *q = &d;
Richard Smithf15fda02012-02-02 01:16:57 +000040
Richard Smith9eed49c2011-12-09 23:00:37 +000041 static_assert((void*)p != (void*)q, "");
42 static_assert((A*)p == (A*)q, "");
43 static_assert((Aa*)p != (Aa*)q, "");
Richard Smith59efe262011-11-11 04:05:33 +000044
45 constexpr B &pp = d;
46 constexpr C &qq = d;
Richard Smith9eed49c2011-12-09 23:00:37 +000047 static_assert((void*)&pp != (void*)&qq, "");
48 static_assert(&(A&)pp == &(A&)qq, "");
49 static_assert(&(Aa&)pp != &(Aa&)qq, "");
Richard Smith59efe262011-11-11 04:05:33 +000050
51 constexpr V *v = p;
52 constexpr V *w = q;
53 constexpr V *x = (A*)p;
Richard Smith9eed49c2011-12-09 23:00:37 +000054 static_assert(v == w, "");
55 static_assert(v == x, "");
Richard Smith59efe262011-11-11 04:05:33 +000056
Richard Smith9eed49c2011-12-09 23:00:37 +000057 static_assert((U*)&d == p, "");
58 static_assert((U*)&d == q, "");
59 static_assert((U*)&d == v, "");
60 static_assert((U*)&d == w, "");
61 static_assert((U*)&d == x, "");
Richard Smith59efe262011-11-11 04:05:33 +000062
63 struct X {};
64 struct Y1 : virtual X {};
65 struct Y2 : X {};
66 struct Z : Y1, Y2 {};
67 Z z;
Richard Smith9eed49c2011-12-09 23:00:37 +000068 static_assert((X*)(Y1*)&z != (X*)(Y2*)&z, "");
Richard Smith59efe262011-11-11 04:05:33 +000069}
70
Richard Smithf64699e2011-11-11 08:28:03 +000071namespace ConstCast {
72
73constexpr int n1 = 0;
74constexpr int n2 = const_cast<int&>(n1);
75constexpr int *n3 = const_cast<int*>(&n1);
76constexpr int n4 = *const_cast<int*>(&n1);
77constexpr const int * const *n5 = const_cast<const int* const*>(&n3);
78constexpr int **n6 = const_cast<int**>(&n3);
79constexpr int n7 = **n5;
80constexpr int n8 = **n6;
81
82}
83
Richard Smith59efe262011-11-11 04:05:33 +000084namespace TemplateArgumentConversion {
85 template<int n> struct IntParam {};
86
87 using IntParam0 = IntParam<0>;
Richard Smith1d238ea2011-12-21 02:55:12 +000088 using IntParam0 = IntParam<id(0)>;
Richard Smith61802452011-12-22 02:22:31 +000089 using IntParam0 = IntParam<MemberZero().zero>; // expected-error {{did you mean to call it with no arguments?}}
Richard Smith59efe262011-11-11 04:05:33 +000090}
91
92namespace CaseStatements {
93 void f(int n) {
94 switch (n) {
Richard Smith8ef7b202012-01-18 23:55:52 +000095 case MemberZero().zero: // expected-error {{did you mean to call it with no arguments?}} expected-note {{previous}}
96 case id(0): // expected-error {{duplicate case value '0'}}
Richard Smith59efe262011-11-11 04:05:33 +000097 return;
98 }
99 }
100}
101
102extern int &Recurse1;
Richard Smith16581332012-03-02 04:14:40 +0000103int &Recurse2 = Recurse1; // expected-note {{declared here}}
104int &Recurse1 = Recurse2;
Richard Smith099e7f62011-12-19 06:19:21 +0000105constexpr int &Recurse3 = Recurse2; // expected-error {{must be initialized by a constant expression}} expected-note {{initializer of 'Recurse2' is not a constant expression}}
106
107extern const int RecurseA;
108const int RecurseB = RecurseA; // expected-note {{declared here}}
109const int RecurseA = 10;
110constexpr int RecurseC = RecurseB; // expected-error {{must be initialized by a constant expression}} expected-note {{initializer of 'RecurseB' is not a constant expression}}
Richard Smith59efe262011-11-11 04:05:33 +0000111
112namespace MemberEnum {
113 struct WithMemberEnum {
114 enum E { A = 42 };
115 } wme;
116
Richard Smith9eed49c2011-12-09 23:00:37 +0000117 static_assert(wme.A == 42, "");
Richard Smith59efe262011-11-11 04:05:33 +0000118}
119
120namespace DefaultArguments {
121
122const int z = int();
123constexpr int Sum(int a = 0, const int &b = 0, const int *c = &z, char d = 0) {
124 return a + b + *c + d;
125}
126const int four = 4;
127constexpr int eight = 8;
128constexpr const int twentyseven = 27;
Richard Smith9eed49c2011-12-09 23:00:37 +0000129static_assert(Sum() == 0, "");
130static_assert(Sum(1) == 1, "");
131static_assert(Sum(1, four) == 5, "");
132static_assert(Sum(1, eight, &twentyseven) == 36, "");
133static_assert(Sum(1, 2, &four, eight) == 15, "");
Richard Smith59efe262011-11-11 04:05:33 +0000134
135}
136
137namespace Ellipsis {
138
139// Note, values passed through an ellipsis can't actually be used.
140constexpr int F(int a, ...) { return a; }
Richard Smith9eed49c2011-12-09 23:00:37 +0000141static_assert(F(0) == 0, "");
142static_assert(F(1, 0) == 1, "");
143static_assert(F(2, "test") == 2, "");
144static_assert(F(3, &F) == 3, "");
Richard Smith7098cbd2011-12-21 05:04:46 +0000145int k = 0; // expected-note {{here}}
146static_assert(F(4, k) == 3, ""); // expected-error {{constant expression}} expected-note {{read of non-const variable 'k'}}
Richard Smith59efe262011-11-11 04:05:33 +0000147
148}
149
150namespace Recursion {
151 constexpr int fib(int n) { return n > 1 ? fib(n-1) + fib(n-2) : n; }
Richard Smith9eed49c2011-12-09 23:00:37 +0000152 static_assert(fib(11) == 89, "");
Richard Smith59efe262011-11-11 04:05:33 +0000153
154 constexpr int gcd_inner(int a, int b) {
155 return b == 0 ? a : gcd_inner(b, a % b);
156 }
157 constexpr int gcd(int a, int b) {
158 return gcd_inner(max(a, b), min(a, b));
159 }
160
Richard Smith9eed49c2011-12-09 23:00:37 +0000161 static_assert(gcd(1749237, 5628959) == 7, "");
Richard Smith59efe262011-11-11 04:05:33 +0000162}
163
164namespace FunctionCast {
165 // When folding, we allow functions to be cast to different types. Such
166 // cast functions cannot be called, even if they're constexpr.
167 constexpr int f() { return 1; }
168 typedef double (*DoubleFn)();
169 typedef int (*IntFn)();
Richard Smithd7c56e12011-12-29 21:57:33 +0000170 int a[(int)DoubleFn(f)()]; // expected-error {{variable length array}} expected-warning{{C99 feature}}
Richard Smith59efe262011-11-11 04:05:33 +0000171 int b[(int)IntFn(f)()]; // ok
172}
173
174namespace StaticMemberFunction {
175 struct S {
176 static constexpr int k = 42;
177 static constexpr int f(int n) { return n * k + 2; }
178 } s;
179
180 constexpr int n = s.f(19);
Richard Smith9eed49c2011-12-09 23:00:37 +0000181 static_assert(S::f(19) == 800, "");
182 static_assert(s.f(19) == 800, "");
183 static_assert(n == 800, "");
Richard Smith1bf9a9e2011-11-12 22:28:03 +0000184
185 constexpr int (*sf1)(int) = &S::f;
186 constexpr int (*sf2)(int) = &s.f;
187 constexpr const int *sk = &s.k;
Richard Smith59efe262011-11-11 04:05:33 +0000188}
189
190namespace ParameterScopes {
191
192 const int k = 42;
Richard Smith83587db2012-02-15 02:18:13 +0000193 constexpr const int &ObscureTheTruth(const int &a) { return a; }
Richard Smith099e7f62011-12-19 06:19:21 +0000194 constexpr const int &MaybeReturnJunk(bool b, const int a) { // expected-note 2{{declared here}}
Richard Smith83587db2012-02-15 02:18:13 +0000195 return ObscureTheTruth(b ? a : k);
Richard Smith59efe262011-11-11 04:05:33 +0000196 }
Richard Smith9eed49c2011-12-09 23:00:37 +0000197 static_assert(MaybeReturnJunk(false, 0) == 42, ""); // ok
Richard Smith83587db2012-02-15 02:18:13 +0000198 constexpr int a = MaybeReturnJunk(true, 0); // expected-error {{constant expression}} expected-note {{read of variable whose lifetime has ended}}
Richard Smith59efe262011-11-11 04:05:33 +0000199
Richard Smith83587db2012-02-15 02:18:13 +0000200 constexpr const int MaybeReturnNonstaticRef(bool b, const int a) {
201 return ObscureTheTruth(b ? a : k);
Richard Smith59efe262011-11-11 04:05:33 +0000202 }
Richard Smith9eed49c2011-12-09 23:00:37 +0000203 static_assert(MaybeReturnNonstaticRef(false, 0) == 42, ""); // ok
Richard Smith83587db2012-02-15 02:18:13 +0000204 constexpr int b = MaybeReturnNonstaticRef(true, 0); // ok
Richard Smith59efe262011-11-11 04:05:33 +0000205
206 constexpr int InternalReturnJunk(int n) {
Richard Smith83587db2012-02-15 02:18:13 +0000207 return MaybeReturnJunk(true, n); // expected-note {{read of variable whose lifetime has ended}}
Richard Smith59efe262011-11-11 04:05:33 +0000208 }
Richard Smith099e7f62011-12-19 06:19:21 +0000209 constexpr int n3 = InternalReturnJunk(0); // expected-error {{must be initialized by a constant expression}} expected-note {{in call to 'InternalReturnJunk(0)'}}
Richard Smith59efe262011-11-11 04:05:33 +0000210
211 constexpr int LToR(int &n) { return n; }
212 constexpr int GrabCallersArgument(bool which, int a, int b) {
213 return LToR(which ? b : a);
214 }
Richard Smith9eed49c2011-12-09 23:00:37 +0000215 static_assert(GrabCallersArgument(false, 1, 2) == 1, "");
216 static_assert(GrabCallersArgument(true, 4, 8) == 8, "");
Richard Smith59efe262011-11-11 04:05:33 +0000217
218}
219
220namespace Pointers {
221
222 constexpr int f(int n, const int *a, const int *b, const int *c) {
223 return n == 0 ? 0 : *a + f(n-1, b, c, a);
224 }
225
226 const int x = 1, y = 10, z = 100;
Richard Smith9eed49c2011-12-09 23:00:37 +0000227 static_assert(f(23, &x, &y, &z) == 788, "");
Richard Smith59efe262011-11-11 04:05:33 +0000228
229 constexpr int g(int n, int a, int b, int c) {
230 return f(n, &a, &b, &c);
231 }
Richard Smith9eed49c2011-12-09 23:00:37 +0000232 static_assert(g(23, x, y, z) == 788, "");
Richard Smith59efe262011-11-11 04:05:33 +0000233
234}
235
236namespace FunctionPointers {
237
238 constexpr int Double(int n) { return 2 * n; }
239 constexpr int Triple(int n) { return 3 * n; }
240 constexpr int Twice(int (*F)(int), int n) { return F(F(n)); }
241 constexpr int Quadruple(int n) { return Twice(Double, n); }
242 constexpr auto Select(int n) -> int (*)(int) {
243 return n == 2 ? &Double : n == 3 ? &Triple : n == 4 ? &Quadruple : 0;
244 }
Richard Smith099e7f62011-12-19 06:19:21 +0000245 constexpr int Apply(int (*F)(int), int n) { return F(n); } // expected-note {{subexpression}}
Richard Smith59efe262011-11-11 04:05:33 +0000246
Richard Smith9eed49c2011-12-09 23:00:37 +0000247 static_assert(1 + Apply(Select(4), 5) + Apply(Select(3), 7) == 42, "");
Richard Smith59efe262011-11-11 04:05:33 +0000248
Richard Smith099e7f62011-12-19 06:19:21 +0000249 constexpr int Invalid = Apply(Select(0), 0); // expected-error {{must be initialized by a constant expression}} expected-note {{in call to 'Apply(0, 0)'}}
Richard Smith59efe262011-11-11 04:05:33 +0000250
251}
252
253namespace PointerComparison {
254
255int x, y;
Richard Smith9eed49c2011-12-09 23:00:37 +0000256static_assert(&x == &y, "false"); // expected-error {{false}}
257static_assert(&x != &y, "");
Richard Smith59efe262011-11-11 04:05:33 +0000258constexpr bool g1 = &x == &y;
259constexpr bool g2 = &x != &y;
260constexpr bool g3 = &x <= &y; // expected-error {{must be initialized by a constant expression}}
261constexpr bool g4 = &x >= &y; // expected-error {{must be initialized by a constant expression}}
262constexpr bool g5 = &x < &y; // expected-error {{must be initialized by a constant expression}}
263constexpr bool g6 = &x > &y; // expected-error {{must be initialized by a constant expression}}
264
265struct S { int x, y; } s;
Richard Smith9eed49c2011-12-09 23:00:37 +0000266static_assert(&s.x == &s.y, "false"); // expected-error {{false}}
267static_assert(&s.x != &s.y, "");
268static_assert(&s.x <= &s.y, "");
269static_assert(&s.x >= &s.y, "false"); // expected-error {{false}}
270static_assert(&s.x < &s.y, "");
271static_assert(&s.x > &s.y, "false"); // expected-error {{false}}
Richard Smith59efe262011-11-11 04:05:33 +0000272
Richard Smith9eed49c2011-12-09 23:00:37 +0000273static_assert(0 == &y, "false"); // expected-error {{false}}
274static_assert(0 != &y, "");
Richard Smith59efe262011-11-11 04:05:33 +0000275constexpr bool n3 = 0 <= &y; // expected-error {{must be initialized by a constant expression}}
276constexpr bool n4 = 0 >= &y; // expected-error {{must be initialized by a constant expression}}
277constexpr bool n5 = 0 < &y; // expected-error {{must be initialized by a constant expression}}
278constexpr bool n6 = 0 > &y; // expected-error {{must be initialized by a constant expression}}
279
Richard Smith9eed49c2011-12-09 23:00:37 +0000280static_assert(&x == 0, "false"); // expected-error {{false}}
281static_assert(&x != 0, "");
Richard Smith59efe262011-11-11 04:05:33 +0000282constexpr bool n9 = &x <= 0; // expected-error {{must be initialized by a constant expression}}
283constexpr bool n10 = &x >= 0; // expected-error {{must be initialized by a constant expression}}
284constexpr bool n11 = &x < 0; // expected-error {{must be initialized by a constant expression}}
285constexpr bool n12 = &x > 0; // expected-error {{must be initialized by a constant expression}}
286
Richard Smith9eed49c2011-12-09 23:00:37 +0000287static_assert(&x == &x, "");
288static_assert(&x != &x, "false"); // expected-error {{false}}
289static_assert(&x <= &x, "");
290static_assert(&x >= &x, "");
291static_assert(&x < &x, "false"); // expected-error {{false}}
292static_assert(&x > &x, "false"); // expected-error {{false}}
Richard Smith59efe262011-11-11 04:05:33 +0000293
294constexpr S* sptr = &s;
Richard Smith099e7f62011-12-19 06:19:21 +0000295constexpr bool dyncast = sptr == dynamic_cast<S*>(sptr); // expected-error {{constant expression}} expected-note {{dynamic_cast}}
Richard Smith59efe262011-11-11 04:05:33 +0000296
Richard Smith2fd59832012-02-08 08:11:33 +0000297struct U {};
Richard Smithc216a012011-12-12 12:46:16 +0000298struct Str {
Richard Smithc216a012011-12-12 12:46:16 +0000299 int a : dynamic_cast<S*>(sptr) == dynamic_cast<S*>(sptr); // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000300 expected-warning {{not an integral constant expression}} \
Richard Smith4cd9b8f2011-12-12 19:10:03 +0000301 expected-note {{dynamic_cast is not allowed in a constant expression}}
Richard Smithc216a012011-12-12 12:46:16 +0000302 int b : reinterpret_cast<S*>(sptr) == reinterpret_cast<S*>(sptr); // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000303 expected-warning {{not an integral constant expression}} \
Richard Smith4cd9b8f2011-12-12 19:10:03 +0000304 expected-note {{reinterpret_cast is not allowed in a constant expression}}
Richard Smithc216a012011-12-12 12:46:16 +0000305 int c : (S*)(long)(sptr) == (S*)(long)(sptr); // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000306 expected-warning {{not an integral constant expression}} \
Richard Smith60f24e72011-12-12 19:33:27 +0000307 expected-note {{cast which performs the conversions of a reinterpret_cast is not allowed in a constant expression}}
Richard Smithc216a012011-12-12 12:46:16 +0000308 int d : (S*)(42) == (S*)(42); // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000309 expected-warning {{not an integral constant expression}} \
Richard Smith60f24e72011-12-12 19:33:27 +0000310 expected-note {{cast which performs the conversions of a reinterpret_cast is not allowed in a constant expression}}
Richard Smithc216a012011-12-12 12:46:16 +0000311 int e : (Str*)(sptr) == (Str*)(sptr); // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000312 expected-warning {{not an integral constant expression}} \
Richard Smith60f24e72011-12-12 19:33:27 +0000313 expected-note {{cast which performs the conversions of a reinterpret_cast is not allowed in a constant expression}}
Richard Smith2fd59832012-02-08 08:11:33 +0000314 int f : &(U&)(*sptr) == &(U&)(*sptr); // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000315 expected-warning {{not an integral constant expression}} \
Richard Smith60f24e72011-12-12 19:33:27 +0000316 expected-note {{cast which performs the conversions of a reinterpret_cast is not allowed in a constant expression}}
Richard Smithc216a012011-12-12 12:46:16 +0000317 int g : (S*)(void*)(sptr) == sptr; // \
Richard Smith244ee7b2012-01-15 03:51:30 +0000318 expected-warning {{not an integral constant expression}} \
Richard Smith4cd9b8f2011-12-12 19:10:03 +0000319 expected-note {{cast from 'void *' is not allowed in a constant expression}}
Richard Smithc216a012011-12-12 12:46:16 +0000320};
321
Richard Smith59efe262011-11-11 04:05:33 +0000322extern char externalvar[];
Richard Smith9eed49c2011-12-09 23:00:37 +0000323constexpr bool constaddress = (void *)externalvar == (void *)0x4000UL; // expected-error {{must be initialized by a constant expression}}
Richard Smith59efe262011-11-11 04:05:33 +0000324constexpr bool litaddress = "foo" == "foo"; // expected-error {{must be initialized by a constant expression}} expected-warning {{unspecified}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000325static_assert(0 != "foo", "");
Richard Smith59efe262011-11-11 04:05:33 +0000326
327}
328
329namespace MaterializeTemporary {
330
331constexpr int f(const int &r) { return r; }
332constexpr int n = f(1);
333
334constexpr bool same(const int &a, const int &b) { return &a == &b; }
335constexpr bool sameTemporary(const int &n) { return same(n, n); }
336
Richard Smith9eed49c2011-12-09 23:00:37 +0000337static_assert(n, "");
338static_assert(!same(4, 4), "");
339static_assert(same(n, n), "");
340static_assert(sameTemporary(9), "");
Richard Smith59efe262011-11-11 04:05:33 +0000341
342}
343
344constexpr int strcmp_ce(const char *p, const char *q) {
345 return (!*p || *p != *q) ? *p - *q : strcmp_ce(p+1, q+1);
346}
347
348namespace StringLiteral {
349
Richard Smith1d238ea2011-12-21 02:55:12 +0000350template<typename Char>
351constexpr int MangleChars(const Char *p) {
Richard Smith59efe262011-11-11 04:05:33 +0000352 return *p + 3 * (*p ? MangleChars(p+1) : 0);
353}
354
Richard Smith9eed49c2011-12-09 23:00:37 +0000355static_assert(MangleChars("constexpr!") == 1768383, "");
Richard Smithec789162012-01-12 18:54:33 +0000356static_assert(MangleChars(u8"constexpr!") == 1768383, "");
357static_assert(MangleChars(L"constexpr!") == 1768383, "");
Richard Smith9eed49c2011-12-09 23:00:37 +0000358static_assert(MangleChars(u"constexpr!") == 1768383, "");
359static_assert(MangleChars(U"constexpr!") == 1768383, "");
Richard Smith59efe262011-11-11 04:05:33 +0000360
361constexpr char c0 = "nought index"[0];
362constexpr char c1 = "nice index"[10];
Richard Smith7098cbd2011-12-21 05:04:46 +0000363constexpr char c2 = "nasty index"[12]; // expected-error {{must be initialized by a constant expression}} expected-warning {{is past the end}} expected-note {{read of dereferenced one-past-the-end pointer}}
Richard Smithb4e85ed2012-01-06 16:39:00 +0000364constexpr char c3 = "negative index"[-1]; // expected-error {{must be initialized by a constant expression}} expected-warning {{is before the beginning}} expected-note {{cannot refer to element -1 of array of 15 elements}}
365constexpr char c4 = ((char*)(int*)"no reinterpret_casts allowed")[14]; // expected-error {{must be initialized by a constant expression}} expected-note {{cast which performs the conversions of a reinterpret_cast}}
Richard Smith59efe262011-11-11 04:05:33 +0000366
367constexpr const char *p = "test" + 2;
Richard Smith9eed49c2011-12-09 23:00:37 +0000368static_assert(*p == 's', "");
Richard Smith59efe262011-11-11 04:05:33 +0000369
370constexpr const char *max_iter(const char *a, const char *b) {
371 return *a < *b ? b : a;
372}
373constexpr const char *max_element(const char *a, const char *b) {
374 return (a+1 >= b) ? a : max_iter(a, max_element(a+1, b));
375}
376
Richard Smith59efe262011-11-11 04:05:33 +0000377constexpr char str[] = "the quick brown fox jumped over the lazy dog";
378constexpr const char *max = max_element(begin(str), end(str));
Richard Smith9eed49c2011-12-09 23:00:37 +0000379static_assert(*max == 'z', "");
380static_assert(max == str + 38, "");
Richard Smith59efe262011-11-11 04:05:33 +0000381
Richard Smith9eed49c2011-12-09 23:00:37 +0000382static_assert(strcmp_ce("hello world", "hello world") == 0, "");
383static_assert(strcmp_ce("hello world", "hello clang") > 0, "");
384static_assert(strcmp_ce("constexpr", "test") < 0, "");
385static_assert(strcmp_ce("", " ") < 0, "");
Richard Smith59efe262011-11-11 04:05:33 +0000386
Richard Smith7098cbd2011-12-21 05:04:46 +0000387struct S {
388 int n : "foo"[4]; // expected-error {{constant expression}} expected-note {{read of dereferenced one-past-the-end pointer is not allowed in a constant expression}}
389};
390
Richard Smith974c5f92011-12-22 01:07:19 +0000391struct T {
392 char c[6];
393 constexpr T() : c{"foo"} {}
394};
395constexpr T t;
396
397static_assert(t.c[0] == 'f', "");
398static_assert(t.c[1] == 'o', "");
399static_assert(t.c[2] == 'o', "");
400static_assert(t.c[3] == 0, "");
401static_assert(t.c[4] == 0, "");
402static_assert(t.c[5] == 0, "");
403static_assert(t.c[6] == 0, ""); // expected-error {{constant expression}} expected-note {{one-past-the-end}}
404
Richard Smithec789162012-01-12 18:54:33 +0000405struct U {
406 wchar_t chars[6];
407 int n;
408} constexpr u = { { L"test" }, 0 };
409static_assert(u.chars[2] == L's', "");
410
Richard Smithf3908f22012-02-17 03:35:37 +0000411struct V {
412 char c[4];
413 constexpr V() : c("hi!") {}
414};
415static_assert(V().c[1] == "i"[0], "");
416
Richard Smith59efe262011-11-11 04:05:33 +0000417}
418
419namespace Array {
420
Richard Smith1d238ea2011-12-21 02:55:12 +0000421template<typename Iter>
422constexpr auto Sum(Iter begin, Iter end) -> decltype(+*begin) {
Richard Smith59efe262011-11-11 04:05:33 +0000423 return begin == end ? 0 : *begin + Sum(begin+1, end);
424}
Richard Smith59efe262011-11-11 04:05:33 +0000425
426constexpr int xs[] = { 1, 2, 3, 4, 5 };
427constexpr int ys[] = { 5, 4, 3, 2, 1 };
428constexpr int sum_xs = Sum(begin(xs), end(xs));
Richard Smith9eed49c2011-12-09 23:00:37 +0000429static_assert(sum_xs == 15, "");
Richard Smith59efe262011-11-11 04:05:33 +0000430
431constexpr int ZipFoldR(int (*F)(int x, int y, int c), int n,
432 const int *xs, const int *ys, int c) {
Richard Smithdaaefc52011-12-14 23:32:26 +0000433 return n ? F(
Richard Smith7098cbd2011-12-21 05:04:46 +0000434 *xs, // expected-note {{read of dereferenced one-past-the-end pointer}}
Richard Smith08d6e032011-12-16 19:06:07 +0000435 *ys,
436 ZipFoldR(F, n-1, xs+1, ys+1, c)) // \
437 expected-note {{in call to 'ZipFoldR(&SubMul, 2, &xs[4], &ys[4], 1)'}} \
438 expected-note {{in call to 'ZipFoldR(&SubMul, 1, &xs[5], &ys[5], 1)'}}
439 : c;
Richard Smith59efe262011-11-11 04:05:33 +0000440}
441constexpr int MulAdd(int x, int y, int c) { return x * y + c; }
442constexpr int InnerProduct = ZipFoldR(MulAdd, 5, xs, ys, 0);
Richard Smith9eed49c2011-12-09 23:00:37 +0000443static_assert(InnerProduct == 35, "");
Richard Smith59efe262011-11-11 04:05:33 +0000444
445constexpr int SubMul(int x, int y, int c) { return (x - y) * c; }
446constexpr int DiffProd = ZipFoldR(SubMul, 2, xs+3, ys+3, 1);
Richard Smith9eed49c2011-12-09 23:00:37 +0000447static_assert(DiffProd == 8, "");
Richard Smith08d6e032011-12-16 19:06:07 +0000448static_assert(ZipFoldR(SubMul, 3, xs+3, ys+3, 1), ""); // \
449 expected-error {{constant expression}} \
450 expected-note {{in call to 'ZipFoldR(&SubMul, 3, &xs[3], &ys[3], 1)'}}
Richard Smith59efe262011-11-11 04:05:33 +0000451
452constexpr const int *p = xs + 3;
453constexpr int xs4 = p[1]; // ok
Richard Smith7098cbd2011-12-21 05:04:46 +0000454constexpr int xs5 = p[2]; // expected-error {{constant expression}} expected-note {{read of dereferenced one-past-the-end pointer}}
Richard Smithb4e85ed2012-01-06 16:39:00 +0000455constexpr int xs6 = p[3]; // expected-error {{constant expression}} expected-note {{cannot refer to element 6}}
Richard Smith59efe262011-11-11 04:05:33 +0000456constexpr int xs0 = p[-3]; // ok
Richard Smithb4e85ed2012-01-06 16:39:00 +0000457constexpr int xs_1 = p[-4]; // expected-error {{constant expression}} expected-note {{cannot refer to element -1}}
Richard Smith59efe262011-11-11 04:05:33 +0000458
459constexpr int zs[2][2][2][2] = { 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16 };
Richard Smith9eed49c2011-12-09 23:00:37 +0000460static_assert(zs[0][0][0][0] == 1, "");
461static_assert(zs[1][1][1][1] == 16, "");
Richard Smith7098cbd2011-12-21 05:04:46 +0000462static_assert(zs[0][0][0][2] == 3, ""); // expected-error {{constant expression}} expected-note {{read of dereferenced one-past-the-end pointer}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000463static_assert((&zs[0][0][0][2])[-1] == 2, "");
464static_assert(**(**(zs + 1) + 1) == 11, "");
Richard Smithb4e85ed2012-01-06 16:39:00 +0000465static_assert(*(&(&(*(*&(&zs[2] - 1)[0] + 2 - 2))[2])[-1][-1] + 1) == 11, ""); // expected-error {{constant expression}} expected-note {{cannot refer to element -1 of array of 2 elements in a constant expression}}
466static_assert(*(&(&(*(*&(&zs[2] - 1)[0] + 2 - 2))[2])[-1][2] - 2) == 11, "");
467constexpr int err_zs_1_2_0_0 = zs[1][2][0][0]; // expected-error {{constant expression}} expected-note {{cannot access array element of pointer past the end}}
Richard Smith59efe262011-11-11 04:05:33 +0000468
Richard Smith08d6e032011-12-16 19:06:07 +0000469constexpr int fail(const int &p) {
Richard Smithb4e85ed2012-01-06 16:39:00 +0000470 return (&p)[64]; // expected-note {{cannot refer to element 64 of array of 2 elements}}
Richard Smith08d6e032011-12-16 19:06:07 +0000471}
Richard Smithb4e85ed2012-01-06 16:39:00 +0000472static_assert(fail(*(&(&(*(*&(&zs[2] - 1)[0] + 2 - 2))[2])[-1][2] - 2)) == 11, ""); // \
Richard Smith08d6e032011-12-16 19:06:07 +0000473expected-error {{static_assert expression is not an integral constant expression}} \
474expected-note {{in call to 'fail(zs[1][0][1][0])'}}
475
Richard Smithd7c56e12011-12-29 21:57:33 +0000476constexpr int arr[40] = { 1, 2, 3, [8] = 4 }; // expected-warning {{C99 feature}}
Richard Smith59efe262011-11-11 04:05:33 +0000477constexpr int SumNonzero(const int *p) {
478 return *p + (*p ? SumNonzero(p+1) : 0);
479}
480constexpr int CountZero(const int *p, const int *q) {
481 return p == q ? 0 : (*p == 0) + CountZero(p+1, q);
482}
Richard Smith9eed49c2011-12-09 23:00:37 +0000483static_assert(SumNonzero(arr) == 6, "");
484static_assert(CountZero(arr, arr + 40) == 36, "");
Richard Smith59efe262011-11-11 04:05:33 +0000485
Richard Smithe24f5fc2011-11-17 22:56:20 +0000486struct ArrayElem {
487 constexpr ArrayElem() : n(0) {}
488 int n;
489 constexpr int f() { return n; }
490};
491struct ArrayRVal {
492 constexpr ArrayRVal() {}
493 ArrayElem elems[10];
494};
Richard Smith9eed49c2011-12-09 23:00:37 +0000495static_assert(ArrayRVal().elems[3].f() == 0, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000496
Richard Smithde31aa72012-07-07 22:48:24 +0000497constexpr int selfref[2][2][2] = {
498 selfref[1][1][1] + 1, selfref[0][0][0] + 1,
499 selfref[1][0][1] + 1, selfref[0][1][0] + 1,
500 selfref[1][0][0] + 1, selfref[0][1][1] + 1 };
501static_assert(selfref[0][0][0] == 1, "");
502static_assert(selfref[0][0][1] == 2, "");
503static_assert(selfref[0][1][0] == 1, "");
504static_assert(selfref[0][1][1] == 2, "");
505static_assert(selfref[1][0][0] == 1, "");
506static_assert(selfref[1][0][1] == 3, "");
507static_assert(selfref[1][1][0] == 0, "");
508static_assert(selfref[1][1][1] == 0, "");
509
Richard Smitha4334df2012-07-10 22:12:55 +0000510struct TrivialDefCtor { int n; };
511typedef TrivialDefCtor TDCArray[2][2];
512static_assert(TDCArray{}[1][1].n == 0, "");
513
514struct NonAggregateTDC : TrivialDefCtor {};
515typedef NonAggregateTDC NATDCArray[2][2];
516static_assert(NATDCArray{}[1][1].n == 0, "");
517
Richard Smith59efe262011-11-11 04:05:33 +0000518}
519
520namespace DependentValues {
521
522struct I { int n; typedef I V[10]; };
523I::V x, y;
524template<bool B> struct S {
525 int k;
526 void f() {
527 I::V &cells = B ? x : y;
528 I &i = cells[k];
529 switch (i.n) {}
530 }
531};
532
533}
534
535namespace Class {
536
537struct A { constexpr A(int a, int b) : k(a + b) {} int k; };
538constexpr int fn(const A &a) { return a.k; }
Richard Smith9eed49c2011-12-09 23:00:37 +0000539static_assert(fn(A(4,5)) == 9, "");
Richard Smith59efe262011-11-11 04:05:33 +0000540
541struct B { int n; int m; } constexpr b = { 0, b.n }; // expected-warning {{uninitialized}}
542struct C {
543 constexpr C(C *this_) : m(42), n(this_->m) {} // ok
544 int m, n;
545};
546struct D {
547 C c;
548 constexpr D() : c(&c) {}
549};
Richard Smith9eed49c2011-12-09 23:00:37 +0000550static_assert(D().c.n == 42, "");
Richard Smith59efe262011-11-11 04:05:33 +0000551
Richard Smith61802452011-12-22 02:22:31 +0000552struct E {
Richard Smith83587db2012-02-15 02:18:13 +0000553 constexpr E() : p(&p) {}
Richard Smith59efe262011-11-11 04:05:33 +0000554 void *p;
555};
Richard Smith83587db2012-02-15 02:18:13 +0000556constexpr const E &e1 = E(); // expected-error {{constant expression}} expected-note {{reference to temporary is not a constant expression}} expected-note {{temporary created here}}
Richard Smith59efe262011-11-11 04:05:33 +0000557// This is a constant expression if we elide the copy constructor call, and
558// is not a constant expression if we don't! But we do, so it is.
Richard Smith61802452011-12-22 02:22:31 +0000559constexpr E e2 = E();
560static_assert(e2.p == &e2.p, "");
Richard Smith099e7f62011-12-19 06:19:21 +0000561constexpr E e3;
Richard Smith9eed49c2011-12-09 23:00:37 +0000562static_assert(e3.p == &e3.p, "");
Richard Smith59efe262011-11-11 04:05:33 +0000563
564extern const class F f;
565struct F {
566 constexpr F() : p(&f.p) {}
567 const void *p;
568};
Richard Smith099e7f62011-12-19 06:19:21 +0000569constexpr F f;
Richard Smith59efe262011-11-11 04:05:33 +0000570
571struct G {
572 struct T {
573 constexpr T(T *p) : u1(), u2(p) {}
574 union U1 {
575 constexpr U1() {}
576 int a, b = 42;
577 } u1;
578 union U2 {
579 constexpr U2(T *p) : c(p->u1.b) {}
580 int c, d;
581 } u2;
582 } t;
583 constexpr G() : t(&t) {}
584} constexpr g;
585
Richard Smith7098cbd2011-12-21 05:04:46 +0000586static_assert(g.t.u1.a == 42, ""); // expected-error {{constant expression}} expected-note {{read of member 'a' of union with active member 'b'}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000587static_assert(g.t.u1.b == 42, "");
588static_assert(g.t.u2.c == 42, "");
Richard Smith7098cbd2011-12-21 05:04:46 +0000589static_assert(g.t.u2.d == 42, ""); // expected-error {{constant expression}} expected-note {{read of member 'd' of union with active member 'c'}}
Richard Smith59efe262011-11-11 04:05:33 +0000590
591struct S {
592 int a, b;
593 const S *p;
594 double d;
595 const char *q;
596
597 constexpr S(int n, const S *p) : a(5), b(n), p(p), d(n), q("hello") {}
598};
599
600S global(43, &global);
601
Richard Smith9eed49c2011-12-09 23:00:37 +0000602static_assert(S(15, &global).b == 15, "");
Richard Smith59efe262011-11-11 04:05:33 +0000603
604constexpr bool CheckS(const S &s) {
605 return s.a == 5 && s.b == 27 && s.p == &global && s.d == 27. && s.q[3] == 'l';
606}
Richard Smith9eed49c2011-12-09 23:00:37 +0000607static_assert(CheckS(S(27, &global)), "");
Richard Smith59efe262011-11-11 04:05:33 +0000608
609struct Arr {
610 char arr[3];
611 constexpr Arr() : arr{'x', 'y', 'z'} {}
612};
613constexpr int hash(Arr &&a) {
614 return a.arr[0] + a.arr[1] * 0x100 + a.arr[2] * 0x10000;
615}
616constexpr int k = hash(Arr());
Richard Smith9eed49c2011-12-09 23:00:37 +0000617static_assert(k == 0x007a7978, "");
Richard Smith59efe262011-11-11 04:05:33 +0000618
619
620struct AggregateInit {
621 const char &c;
622 int n;
623 double d;
624 int arr[5];
625 void *p;
626};
627
628constexpr AggregateInit agg1 = { "hello"[0] };
629
Richard Smith9eed49c2011-12-09 23:00:37 +0000630static_assert(strcmp_ce(&agg1.c, "hello") == 0, "");
631static_assert(agg1.n == 0, "");
632static_assert(agg1.d == 0.0, "");
Richard Smithb4e85ed2012-01-06 16:39:00 +0000633static_assert(agg1.arr[-1] == 0, ""); // expected-error {{constant expression}} expected-note {{cannot refer to element -1}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000634static_assert(agg1.arr[0] == 0, "");
635static_assert(agg1.arr[4] == 0, "");
Richard Smith7098cbd2011-12-21 05:04:46 +0000636static_assert(agg1.arr[5] == 0, ""); // expected-error {{constant expression}} expected-note {{read of dereferenced one-past-the-end}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000637static_assert(agg1.p == nullptr, "");
Richard Smith59efe262011-11-11 04:05:33 +0000638
Richard Smithfe587202012-04-15 02:50:59 +0000639static constexpr const unsigned char uc[] = { "foo" };
640static_assert(uc[0] == 'f', "");
641static_assert(uc[3] == 0, "");
642
Richard Smith59efe262011-11-11 04:05:33 +0000643namespace SimpleDerivedClass {
644
645struct B {
646 constexpr B(int n) : a(n) {}
647 int a;
648};
649struct D : B {
650 constexpr D(int n) : B(n) {}
651};
652constexpr D d(3);
Richard Smith9eed49c2011-12-09 23:00:37 +0000653static_assert(d.a == 3, "");
Richard Smith59efe262011-11-11 04:05:33 +0000654
655}
656
Richard Smithe24f5fc2011-11-17 22:56:20 +0000657struct Bottom { constexpr Bottom() {} };
658struct Base : Bottom {
Richard Smith59efe262011-11-11 04:05:33 +0000659 constexpr Base(int a = 42, const char *b = "test") : a(a), b(b) {}
660 int a;
661 const char *b;
662};
Richard Smithe24f5fc2011-11-17 22:56:20 +0000663struct Base2 : Bottom {
Richard Smith59efe262011-11-11 04:05:33 +0000664 constexpr Base2(const int &r) : r(r) {}
665 int q = 123;
Richard Smith099e7f62011-12-19 06:19:21 +0000666 const int &r;
Richard Smith59efe262011-11-11 04:05:33 +0000667};
668struct Derived : Base, Base2 {
669 constexpr Derived() : Base(76), Base2(a) {}
670 int c = r + b[1];
671};
672
673constexpr bool operator==(const Base &a, const Base &b) {
674 return a.a == b.a && strcmp_ce(a.b, b.b) == 0;
675}
676
677constexpr Base base;
678constexpr Base base2(76);
679constexpr Derived derived;
Richard Smith9eed49c2011-12-09 23:00:37 +0000680static_assert(derived.a == 76, "");
681static_assert(derived.b[2] == 's', "");
682static_assert(derived.c == 76 + 'e', "");
683static_assert(derived.q == 123, "");
684static_assert(derived.r == 76, "");
Richard Smith099e7f62011-12-19 06:19:21 +0000685static_assert(&derived.r == &derived.a, "");
Richard Smith59efe262011-11-11 04:05:33 +0000686
Richard Smith9eed49c2011-12-09 23:00:37 +0000687static_assert(!(derived == base), "");
688static_assert(derived == base2, "");
Richard Smith59efe262011-11-11 04:05:33 +0000689
Richard Smithe24f5fc2011-11-17 22:56:20 +0000690constexpr Bottom &bot1 = (Base&)derived;
691constexpr Bottom &bot2 = (Base2&)derived;
Richard Smith9eed49c2011-12-09 23:00:37 +0000692static_assert(&bot1 != &bot2, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000693
694constexpr Bottom *pb1 = (Base*)&derived;
695constexpr Bottom *pb2 = (Base2*)&derived;
Richard Smithf15fda02012-02-02 01:16:57 +0000696static_assert(&pb1 != &pb2, "");
Richard Smith9eed49c2011-12-09 23:00:37 +0000697static_assert(pb1 == &bot1, "");
698static_assert(pb2 == &bot2, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000699
Richard Smithb4e85ed2012-01-06 16:39:00 +0000700constexpr Base2 &fail = (Base2&)bot1; // expected-error {{constant expression}} expected-note {{cannot cast object of dynamic type 'const Class::Derived' to type 'Class::Base2'}}
701constexpr Base &fail2 = (Base&)*pb2; // expected-error {{constant expression}} expected-note {{cannot cast object of dynamic type 'const Class::Derived' to type 'Class::Base'}}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000702constexpr Base2 &ok2 = (Base2&)bot2;
Richard Smith9eed49c2011-12-09 23:00:37 +0000703static_assert(&ok2 == &derived, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000704
Richard Smithb4e85ed2012-01-06 16:39:00 +0000705constexpr Base2 *pfail = (Base2*)pb1; // expected-error {{constant expression}} expected-note {{cannot cast object of dynamic type 'const Class::Derived' to type 'Class::Base2'}}
706constexpr Base *pfail2 = (Base*)&bot2; // expected-error {{constant expression}} expected-note {{cannot cast object of dynamic type 'const Class::Derived' to type 'Class::Base'}}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000707constexpr Base2 *pok2 = (Base2*)pb2;
Richard Smith9eed49c2011-12-09 23:00:37 +0000708static_assert(pok2 == &derived, "");
709static_assert(&ok2 == pok2, "");
710static_assert((Base2*)(Derived*)(Base*)pb1 == pok2, "");
711static_assert((Derived*)(Base*)pb1 == (Derived*)pok2, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000712
David Blaikie50800fc2012-08-08 17:33:31 +0000713constexpr Base *nullB = 42 - 6 * 7; // expected-warning {{expression which evaluates to zero treated as a null pointer constant of type 'Class::Base *const'}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000714static_assert((Bottom*)nullB == 0, "");
715static_assert((Derived*)nullB == 0, "");
716static_assert((void*)(Bottom*)nullB == (void*)(Derived*)nullB, "");
David Blaikie50800fc2012-08-08 17:33:31 +0000717Base * nullB2 = '\0'; // expected-warning {{expression which evaluates to zero treated as a null pointer constant of type 'Class::Base *'}}
718Base * nullB3 = (0);
719// We suppress the warning in unevaluated contexts to workaround some gtest
720// behavior. Once this becomes an error this isn't a problem anymore.
721static_assert(nullB == (1 - 1), "");
722
Richard Smithe24f5fc2011-11-17 22:56:20 +0000723
Richard Smith7d580a42012-01-17 21:17:26 +0000724namespace ConversionOperators {
725
726struct T {
727 constexpr T(int n) : k(5*n - 3) {}
728 constexpr operator int() { return k; }
729 int k;
730};
731
732struct S {
733 constexpr S(int n) : k(2*n + 1) {}
734 constexpr operator int() { return k; }
735 constexpr operator T() { return T(k); }
736 int k;
737};
738
739constexpr bool check(T a, T b) { return a == b.k; }
740
741static_assert(S(5) == 11, "");
742static_assert(check(S(5), 11), "");
743
744}
745
Richard Smithe24f5fc2011-11-17 22:56:20 +0000746}
747
748namespace Temporaries {
749
750struct S {
751 constexpr S() {}
752 constexpr int f();
753};
754struct T : S {
755 constexpr T(int n) : S(), n(n) {}
756 int n;
757};
758constexpr int S::f() {
759 // 'this' must be the postfix-expression in a class member access expression,
760 // so we can't just use
761 // return static_cast<T*>(this)->n;
762 return this->*(int(S::*))&T::n;
763}
764// The T temporary is implicitly cast to an S subobject, but we can recover the
765// T full-object via a base-to-derived cast, or a derived-to-base-casted member
766// pointer.
Richard Smith9eed49c2011-12-09 23:00:37 +0000767static_assert(T(3).f() == 3, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000768
769constexpr int f(const S &s) {
770 return static_cast<const T&>(s).n;
771}
772constexpr int n = f(T(5));
Richard Smith9eed49c2011-12-09 23:00:37 +0000773static_assert(f(T(5)) == 5, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000774
Richard Smithf2e4cd72012-01-26 04:47:34 +0000775constexpr bool b(int n) { return &n; }
776static_assert(b(0), "");
777
Richard Smith59efe262011-11-11 04:05:33 +0000778}
779
780namespace Union {
781
782union U {
783 int a;
784 int b;
785};
786
Richard Smithd7c56e12011-12-29 21:57:33 +0000787constexpr U u[4] = { { .a = 0 }, { .b = 1 }, { .a = 2 }, { .b = 3 } }; // expected-warning 4{{C99 feature}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000788static_assert(u[0].a == 0, "");
Richard Smith7098cbd2011-12-21 05:04:46 +0000789static_assert(u[0].b, ""); // expected-error {{constant expression}} expected-note {{read of member 'b' of union with active member 'a'}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000790static_assert(u[1].b == 1, "");
Richard Smith7098cbd2011-12-21 05:04:46 +0000791static_assert((&u[1].b)[1] == 2, ""); // expected-error {{constant expression}} expected-note {{read of dereferenced one-past-the-end pointer}}
Richard Smithb4e85ed2012-01-06 16:39:00 +0000792static_assert(*(&(u[1].b) + 1 + 1) == 3, ""); // expected-error {{constant expression}} expected-note {{cannot refer to element 2 of non-array object}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000793static_assert((&(u[1]) + 1 + 1)->b == 3, "");
Richard Smith59efe262011-11-11 04:05:33 +0000794
Richard Smithec789162012-01-12 18:54:33 +0000795constexpr U v = {};
796static_assert(v.a == 0, "");
797
798union Empty {};
799constexpr Empty e = {};
800
Richard Smith610a60c2012-01-10 04:32:03 +0000801// Make sure we handle trivial copy constructors for unions.
802constexpr U x = {42};
803constexpr U y = x;
804static_assert(y.a == 42, "");
805static_assert(y.b == 42, ""); // expected-error {{constant expression}} expected-note {{'b' of union with active member 'a'}}
806
Richard Smith59efe262011-11-11 04:05:33 +0000807}
808
Richard Smithe24f5fc2011-11-17 22:56:20 +0000809namespace MemberPointer {
810 struct A {
811 constexpr A(int n) : n(n) {}
812 int n;
813 constexpr int f() { return n + 3; }
814 };
815 constexpr A a(7);
Richard Smith9eed49c2011-12-09 23:00:37 +0000816 static_assert(A(5).*&A::n == 5, "");
817 static_assert((&a)->*&A::n == 7, "");
818 static_assert((A(8).*&A::f)() == 11, "");
819 static_assert(((&a)->*&A::f)() == 10, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000820
821 struct B : A {
822 constexpr B(int n, int m) : A(n), m(m) {}
823 int m;
824 constexpr int g() { return n + m + 1; }
825 };
826 constexpr B b(9, 13);
Richard Smith9eed49c2011-12-09 23:00:37 +0000827 static_assert(B(4, 11).*&A::n == 4, "");
828 static_assert(B(4, 11).*&B::m == 11, "");
829 static_assert(B(4, 11).*(int(A::*))&B::m == 11, "");
830 static_assert((&b)->*&A::n == 9, "");
831 static_assert((&b)->*&B::m == 13, "");
832 static_assert((&b)->*(int(A::*))&B::m == 13, "");
833 static_assert((B(4, 11).*&A::f)() == 7, "");
834 static_assert((B(4, 11).*&B::g)() == 16, "");
835 static_assert((B(4, 11).*(int(A::*)()const)&B::g)() == 16, "");
836 static_assert(((&b)->*&A::f)() == 12, "");
837 static_assert(((&b)->*&B::g)() == 23, "");
838 static_assert(((&b)->*(int(A::*)()const)&B::g)() == 23, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000839
840 struct S {
841 constexpr S(int m, int n, int (S::*pf)() const, int S::*pn) :
842 m(m), n(n), pf(pf), pn(pn) {}
843 constexpr S() : m(), n(), pf(&S::f), pn(&S::n) {}
844
845 constexpr int f() { return this->*pn; }
846 virtual int g() const;
847
848 int m, n;
849 int (S::*pf)() const;
850 int S::*pn;
851 };
852
853 constexpr int S::*pm = &S::m;
854 constexpr int S::*pn = &S::n;
855 constexpr int (S::*pf)() const = &S::f;
856 constexpr int (S::*pg)() const = &S::g;
857
858 constexpr S s(2, 5, &S::f, &S::m);
859
Richard Smith9eed49c2011-12-09 23:00:37 +0000860 static_assert((s.*&S::f)() == 2, "");
861 static_assert((s.*s.pf)() == 2, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000862
Richard Smithb02e4622012-02-01 01:42:44 +0000863 static_assert(pf == &S::f, "");
864 static_assert(pf == s.*&S::pf, "");
865 static_assert(pm == &S::m, "");
866 static_assert(pm != pn, "");
867 static_assert(s.pn != pn, "");
868 static_assert(s.pn == pm, "");
869 static_assert(pg != nullptr, "");
870 static_assert(pf != nullptr, "");
871 static_assert((int S::*)nullptr == nullptr, "");
872 static_assert(pg == pg, ""); // expected-error {{constant expression}} expected-note {{comparison of pointer to virtual member function 'g' has unspecified value}}
873 static_assert(pf != pg, ""); // expected-error {{constant expression}} expected-note {{comparison of pointer to virtual member function 'g' has unspecified value}}
874
Richard Smithe24f5fc2011-11-17 22:56:20 +0000875 template<int n> struct T : T<n-1> {};
876 template<> struct T<0> { int n; };
877 template<> struct T<30> : T<29> { int m; };
878
879 T<17> t17;
880 T<30> t30;
881
882 constexpr int (T<10>::*deepn) = &T<0>::n;
Richard Smith9eed49c2011-12-09 23:00:37 +0000883 static_assert(&(t17.*deepn) == &t17.n, "");
Richard Smithb02e4622012-02-01 01:42:44 +0000884 static_assert(deepn == &T<2>::n, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000885
886 constexpr int (T<15>::*deepm) = (int(T<10>::*))&T<30>::m;
887 constexpr int *pbad = &(t17.*deepm); // expected-error {{constant expression}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000888 static_assert(&(t30.*deepm) == &t30.m, "");
Richard Smithb02e4622012-02-01 01:42:44 +0000889 static_assert(deepm == &T<50>::m, "");
890 static_assert(deepm != deepn, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000891
892 constexpr T<5> *p17_5 = &t17;
893 constexpr T<13> *p17_13 = (T<13>*)p17_5;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000894 constexpr T<23> *p17_23 = (T<23>*)p17_13; // expected-error {{constant expression}} expected-note {{cannot cast object of dynamic type 'T<17>' to type 'T<23>'}}
Richard Smith9eed49c2011-12-09 23:00:37 +0000895 static_assert(&(p17_5->*(int(T<3>::*))deepn) == &t17.n, "");
896 static_assert(&(p17_13->*deepn) == &t17.n, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000897 constexpr int *pbad2 = &(p17_13->*(int(T<9>::*))deepm); // expected-error {{constant expression}}
898
899 constexpr T<5> *p30_5 = &t30;
900 constexpr T<23> *p30_23 = (T<23>*)p30_5;
901 constexpr T<13> *p30_13 = p30_23;
Richard Smith9eed49c2011-12-09 23:00:37 +0000902 static_assert(&(p30_5->*(int(T<3>::*))deepn) == &t30.n, "");
903 static_assert(&(p30_13->*deepn) == &t30.n, "");
904 static_assert(&(p30_23->*deepn) == &t30.n, "");
905 static_assert(&(p30_5->*(int(T<2>::*))deepm) == &t30.m, "");
906 static_assert(&(((T<17>*)p30_13)->*deepm) == &t30.m, "");
907 static_assert(&(p30_23->*deepm) == &t30.m, "");
Richard Smithb02e4622012-02-01 01:42:44 +0000908
909 struct Base { int n; };
910 template<int N> struct Mid : Base {};
911 struct Derived : Mid<0>, Mid<1> {};
912 static_assert(&Mid<0>::n == &Mid<1>::n, "");
913 static_assert((int Derived::*)(int Mid<0>::*)&Mid<0>::n !=
914 (int Derived::*)(int Mid<1>::*)&Mid<1>::n, "");
915 static_assert(&Mid<0>::n == (int Mid<0>::*)&Base::n, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000916}
917
918namespace ArrayBaseDerived {
919
920 struct Base {
921 constexpr Base() {}
922 int n = 0;
923 };
924 struct Derived : Base {
925 constexpr Derived() {}
926 constexpr const int *f() { return &n; }
927 };
928
929 constexpr Derived a[10];
930 constexpr Derived *pd3 = const_cast<Derived*>(&a[3]);
931 constexpr Base *pb3 = const_cast<Derived*>(&a[3]);
Richard Smith9eed49c2011-12-09 23:00:37 +0000932 static_assert(pb3 == pd3, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000933
934 // pb3 does not point to an array element.
935 constexpr Base *pb4 = pb3 + 1; // ok, one-past-the-end pointer.
Richard Smithb4e85ed2012-01-06 16:39:00 +0000936 constexpr int pb4n = pb4->n; // expected-error {{constant expression}} expected-note {{cannot access field of pointer past the end}}
937 constexpr Base *err_pb5 = pb3 + 2; // expected-error {{constant expression}} expected-note {{cannot refer to element 2}} expected-note {{here}}
938 constexpr int err_pb5n = err_pb5->n; // expected-error {{constant expression}} expected-note {{initializer of 'err_pb5' is not a constant expression}}
939 constexpr Base *err_pb2 = pb3 - 1; // expected-error {{constant expression}} expected-note {{cannot refer to element -1}} expected-note {{here}}
940 constexpr int err_pb2n = err_pb2->n; // expected-error {{constant expression}} expected-note {{initializer of 'err_pb2'}}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000941 constexpr Base *pb3a = pb4 - 1;
942
943 // pb4 does not point to a Derived.
Richard Smithb4e85ed2012-01-06 16:39:00 +0000944 constexpr Derived *err_pd4 = (Derived*)pb4; // expected-error {{constant expression}} expected-note {{cannot access derived class of pointer past the end}}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000945 constexpr Derived *pd3a = (Derived*)pb3a;
946 constexpr int pd3n = pd3a->n;
947
948 // pd3a still points to the Derived array.
949 constexpr Derived *pd6 = pd3a + 3;
Richard Smith9eed49c2011-12-09 23:00:37 +0000950 static_assert(pd6 == &a[6], "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000951 constexpr Derived *pd9 = pd6 + 3;
952 constexpr Derived *pd10 = pd6 + 4;
953 constexpr int pd9n = pd9->n; // ok
Richard Smithb4e85ed2012-01-06 16:39:00 +0000954 constexpr int err_pd10n = pd10->n; // expected-error {{constant expression}} expected-note {{cannot access base class of pointer past the end}}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000955 constexpr int pd0n = pd10[-10].n;
Richard Smithb4e85ed2012-01-06 16:39:00 +0000956 constexpr int err_pdminus1n = pd10[-11].n; // expected-error {{constant expression}} expected-note {{cannot refer to element -1 of}}
Richard Smithe24f5fc2011-11-17 22:56:20 +0000957
958 constexpr Base *pb9 = pd9;
959 constexpr const int *(Base::*pfb)() const =
960 static_cast<const int *(Base::*)() const>(&Derived::f);
Richard Smith9eed49c2011-12-09 23:00:37 +0000961 static_assert((pb9->*pfb)() == &a[9].n, "");
Richard Smithe24f5fc2011-11-17 22:56:20 +0000962}
963
Richard Smith59efe262011-11-11 04:05:33 +0000964namespace Complex {
965
966class complex {
967 int re, im;
968public:
969 constexpr complex(int re = 0, int im = 0) : re(re), im(im) {}
970 constexpr complex(const complex &o) : re(o.re), im(o.im) {}
971 constexpr complex operator-() const { return complex(-re, -im); }
972 friend constexpr complex operator+(const complex &l, const complex &r) {
973 return complex(l.re + r.re, l.im + r.im);
974 }
975 friend constexpr complex operator-(const complex &l, const complex &r) {
976 return l + -r;
977 }
978 friend constexpr complex operator*(const complex &l, const complex &r) {
979 return complex(l.re * r.re - l.im * r.im, l.re * r.im + l.im * r.re);
980 }
981 friend constexpr bool operator==(const complex &l, const complex &r) {
982 return l.re == r.re && l.im == r.im;
983 }
984 constexpr bool operator!=(const complex &r) const {
985 return re != r.re || im != r.im;
986 }
987 constexpr int real() const { return re; }
988 constexpr int imag() const { return im; }
989};
990
991constexpr complex i = complex(0, 1);
992constexpr complex k = (3 + 4*i) * (6 - 4*i);
Richard Smith9eed49c2011-12-09 23:00:37 +0000993static_assert(complex(1,0).real() == 1, "");
994static_assert(complex(1,0).imag() == 0, "");
995static_assert(((complex)1).imag() == 0, "");
996static_assert(k.real() == 34, "");
997static_assert(k.imag() == 12, "");
998static_assert(k - 34 == 12*i, "");
999static_assert((complex)1 == complex(1), "");
1000static_assert((complex)1 != complex(0, 1), "");
1001static_assert(complex(1) == complex(1), "");
1002static_assert(complex(1) != complex(0, 1), "");
Richard Smith59efe262011-11-11 04:05:33 +00001003constexpr complex makeComplex(int re, int im) { return complex(re, im); }
Richard Smith9eed49c2011-12-09 23:00:37 +00001004static_assert(makeComplex(1,0) == complex(1), "");
1005static_assert(makeComplex(1,0) != complex(0, 1), "");
Richard Smith59efe262011-11-11 04:05:33 +00001006
1007class complex_wrap : public complex {
1008public:
1009 constexpr complex_wrap(int re, int im = 0) : complex(re, im) {}
1010 constexpr complex_wrap(const complex_wrap &o) : complex(o) {}
1011};
1012
Richard Smith9eed49c2011-12-09 23:00:37 +00001013static_assert((complex_wrap)1 == complex(1), "");
1014static_assert((complex)1 != complex_wrap(0, 1), "");
1015static_assert(complex(1) == complex_wrap(1), "");
1016static_assert(complex_wrap(1) != complex(0, 1), "");
Richard Smith59efe262011-11-11 04:05:33 +00001017constexpr complex_wrap makeComplexWrap(int re, int im) {
1018 return complex_wrap(re, im);
1019}
Richard Smith9eed49c2011-12-09 23:00:37 +00001020static_assert(makeComplexWrap(1,0) == complex(1), "");
1021static_assert(makeComplexWrap(1,0) != complex(0, 1), "");
Richard Smith59efe262011-11-11 04:05:33 +00001022
1023}
Eli Friedmanf59ff8c2011-12-17 02:24:21 +00001024
1025namespace PR11595 {
1026 struct A { constexpr bool operator==(int x) { return true; } };
Richard Smithaf2c7a12011-12-19 22:01:37 +00001027 struct B { B(); A& x; };
1028 static_assert(B().x == 3, ""); // expected-error {{constant expression}} expected-note {{non-literal type 'PR11595::B' cannot be used in a constant expression}}
1029
Richard Smith745f5142012-01-27 01:14:48 +00001030 constexpr bool f(int k) { // expected-error {{constexpr function never produces a constant expression}}
Richard Smithaf2c7a12011-12-19 22:01:37 +00001031 return B().x == k; // expected-note {{non-literal type 'PR11595::B' cannot be used in a constant expression}}
1032 }
Eli Friedmanf59ff8c2011-12-17 02:24:21 +00001033}
Richard Smithbc6abe92011-12-19 22:12:41 +00001034
1035namespace ExprWithCleanups {
1036 struct A { A(); ~A(); int get(); };
1037 constexpr int get(bool FromA) { return FromA ? A().get() : 1; }
1038 constexpr int n = get(false);
1039}
Richard Smith7098cbd2011-12-21 05:04:46 +00001040
1041namespace Volatile {
1042
1043volatile constexpr int n1 = 0; // expected-note {{here}}
1044volatile const int n2 = 0; // expected-note {{here}}
1045int n3 = 37; // expected-note {{declared here}}
1046
Richard Smith9ec71972012-02-05 01:23:16 +00001047constexpr int m1 = n1; // expected-error {{constant expression}} expected-note {{read of volatile-qualified type 'const volatile int'}}
1048constexpr int m2 = n2; // expected-error {{constant expression}} expected-note {{read of volatile-qualified type 'const volatile int'}}
1049constexpr int m1b = const_cast<const int&>(n1); // expected-error {{constant expression}} expected-note {{read of volatile object 'n1'}}
1050constexpr int m2b = const_cast<const int&>(n2); // expected-error {{constant expression}} expected-note {{read of volatile object 'n2'}}
Richard Smith7098cbd2011-12-21 05:04:46 +00001051
1052struct T { int n; };
1053const T t = { 42 }; // expected-note {{declared here}}
1054
1055constexpr int f(volatile int &&r) {
Richard Smith9ec71972012-02-05 01:23:16 +00001056 return r; // expected-note {{read of volatile-qualified type 'volatile int'}}
1057}
1058constexpr int g(volatile int &&r) {
1059 return const_cast<int&>(r); // expected-note {{read of volatile temporary is not allowed in a constant expression}}
Richard Smith7098cbd2011-12-21 05:04:46 +00001060}
1061struct S {
Richard Smith9ec71972012-02-05 01:23:16 +00001062 int j : f(0); // expected-error {{constant expression}} expected-note {{in call to 'f(0)'}}
1063 int k : g(0); // expected-error {{constant expression}} expected-note {{temporary created here}} expected-note {{in call to 'g(0)'}}
Richard Smith7098cbd2011-12-21 05:04:46 +00001064 int l : n3; // expected-error {{constant expression}} expected-note {{read of non-const variable}}
1065 int m : t.n; // expected-error {{constant expression}} expected-note {{read of non-constexpr variable}}
1066};
1067
1068}
Richard Smithdd4b3502011-12-25 21:17:58 +00001069
1070namespace ExternConstexpr {
1071 extern constexpr int n = 0;
1072 extern constexpr int m; // expected-error {{constexpr variable declaration must be a definition}}
1073 void f() {
1074 extern constexpr int i; // expected-error {{constexpr variable declaration must be a definition}}
1075 constexpr int j = 0;
1076 constexpr int k; // expected-error {{default initialization of an object of const type}}
1077 }
1078}
Eli Friedman7ead5c72012-01-10 04:58:17 +00001079
1080namespace ComplexConstexpr {
1081 constexpr _Complex float test1 = {};
1082 constexpr _Complex float test2 = {1};
1083 constexpr _Complex double test3 = {1,2};
1084 constexpr _Complex int test4 = {4};
1085 constexpr _Complex int test5 = 4;
1086 constexpr _Complex int test6 = {5,6};
Eli Friedmanf6c17a42012-01-13 23:34:56 +00001087 typedef _Complex float fcomplex;
1088 constexpr fcomplex test7 = fcomplex();
Richard Smith86024012012-02-18 22:04:06 +00001089
1090 constexpr const double &t2r = __real test3;
1091 constexpr const double &t2i = __imag test3;
1092 static_assert(&t2r + 1 == &t2i, "");
1093 static_assert(t2r == 1.0, "");
1094 static_assert(t2i == 2.0, "");
1095 constexpr const double *t2p = &t2r;
1096 static_assert(t2p[-1] == 0.0, ""); // expected-error {{constant expr}} expected-note {{cannot refer to element -1 of array of 2 elements}}
1097 static_assert(t2p[0] == 1.0, "");
1098 static_assert(t2p[1] == 2.0, "");
1099 static_assert(t2p[2] == 0.0, ""); // expected-error {{constant expr}} expected-note {{one-past-the-end pointer}}
1100 static_assert(t2p[3] == 0.0, ""); // expected-error {{constant expr}} expected-note {{cannot refer to element 3 of array of 2 elements}}
1101 constexpr _Complex float *p = 0;
1102 constexpr float pr = __real *p; // expected-error {{constant expr}} expected-note {{cannot access real component of null}}
1103 constexpr float pi = __imag *p; // expected-error {{constant expr}} expected-note {{cannot access imaginary component of null}}
1104 constexpr const _Complex double *q = &test3 + 1;
1105 constexpr double qr = __real *q; // expected-error {{constant expr}} expected-note {{cannot access real component of pointer past the end}}
1106 constexpr double qi = __imag *q; // expected-error {{constant expr}} expected-note {{cannot access imaginary component of pointer past the end}}
1107
1108 static_assert(__real test6 == 5, "");
1109 static_assert(__imag test6 == 6, "");
1110 static_assert(&__imag test6 == &__real test6 + 1, "");
Eli Friedman7ead5c72012-01-10 04:58:17 +00001111}
Eli Friedman6b3014b2012-01-18 02:54:10 +00001112
1113namespace InstantiateCaseStmt {
1114 template<int x> constexpr int f() { return x; }
1115 template<int x> int g(int c) { switch(c) { case f<x>(): return 1; } return 0; }
1116 int gg(int c) { return g<4>(c); }
1117}
Richard Smith495f42a2012-01-24 05:40:50 +00001118
1119namespace ConvertedConstantExpr {
1120 extern int &m;
1121 extern int &n;
1122
1123 constexpr int k = 4;
1124 int &m = const_cast<int&>(k);
1125
1126 // If we have nothing more interesting to say, ensure we don't produce a
1127 // useless note and instead just point to the non-constant subexpression.
1128 enum class E {
1129 em = m,
1130 en = n, // expected-error {{not a constant expression}}
1131 eo = (m +
1132 n // expected-error {{not a constant expression}}
1133 ),
1134 eq = reinterpret_cast<int>((int*)0) // expected-error {{not a constant expression}} expected-note {{reinterpret_cast}}
1135 };
1136}
Richard Smithd9b02e72012-01-25 22:15:11 +00001137
1138namespace IndirectField {
1139 struct S {
1140 struct { // expected-warning {{GNU extension}}
1141 union {
1142 struct { // expected-warning {{GNU extension}}
1143 int a;
1144 int b;
1145 };
1146 int c;
1147 };
1148 int d;
1149 };
1150 union {
1151 int e;
1152 int f;
1153 };
1154 constexpr S(int a, int b, int d, int e) : a(a), b(b), d(d), e(e) {}
1155 constexpr S(int c, int d, int f) : c(c), d(d), f(f) {}
1156 };
1157
1158 constexpr S s1(1, 2, 3, 4);
1159 constexpr S s2(5, 6, 7);
1160
1161 // FIXME: The diagnostics here do a very poor job of explaining which unnamed
1162 // member is active and which is requested.
1163 static_assert(s1.a == 1, "");
1164 static_assert(s1.b == 2, "");
1165 static_assert(s1.c == 0, ""); // expected-error {{constant expression}} expected-note {{union with active member}}
1166 static_assert(s1.d == 3, "");
1167 static_assert(s1.e == 4, "");
1168 static_assert(s1.f == 0, ""); // expected-error {{constant expression}} expected-note {{union with active member}}
1169
1170 static_assert(s2.a == 0, ""); // expected-error {{constant expression}} expected-note {{union with active member}}
1171 static_assert(s2.b == 0, ""); // expected-error {{constant expression}} expected-note {{union with active member}}
1172 static_assert(s2.c == 5, "");
1173 static_assert(s2.d == 6, "");
1174 static_assert(s2.e == 0, ""); // expected-error {{constant expression}} expected-note {{union with active member}}
1175 static_assert(s2.f == 7, "");
1176}
Richard Smithf15fda02012-02-02 01:16:57 +00001177
Richard Smithb4e5e282012-02-09 03:29:58 +00001178// DR1405: don't allow reading mutable members in constant expressions.
1179namespace MutableMembers {
1180 struct MM {
1181 mutable int n; // expected-note 3{{declared here}}
1182 } constexpr mm = { 4 };
1183 constexpr int mmn = mm.n; // expected-error {{constant expression}} expected-note {{read of mutable member 'n' is not allowed in a constant expression}}
1184 int x = (mm.n = 1, 3);
1185 constexpr int mmn2 = mm.n; // expected-error {{constant expression}} expected-note {{read of mutable member 'n' is not allowed in a constant expression}}
1186
1187 // Here's one reason why allowing this would be a disaster...
1188 template<int n> struct Id { int k = n; };
1189 int f() {
1190 constexpr MM m = { 0 };
1191 ++m.n;
1192 return Id<m.n>().k; // expected-error {{not a constant expression}} expected-note {{read of mutable member 'n' is not allowed in a constant expression}}
1193 }
1194
1195 struct A { int n; };
1196 struct B { mutable A a; }; // expected-note {{here}}
1197 struct C { B b; };
1198 constexpr C c[3] = {};
1199 constexpr int k = c[1].b.a.n; // expected-error {{constant expression}} expected-note {{mutable}}
1200}
1201
Richard Smithf15fda02012-02-02 01:16:57 +00001202namespace Fold {
1203
1204 // This macro forces its argument to be constant-folded, even if it's not
1205 // otherwise a constant expression.
1206 #define fold(x) (__builtin_constant_p(x) ? (x) : (x))
1207
1208 constexpr int n = (int)(char*)123; // expected-error {{constant expression}} expected-note {{reinterpret_cast}}
1209 constexpr int m = fold((int)(char*)123); // ok
1210 static_assert(m == 123, "");
1211
1212 #undef fold
1213
1214}
Richard Smith83587db2012-02-15 02:18:13 +00001215
1216namespace DR1454 {
1217
1218constexpr const int &f(const int &n) { return n; }
1219constexpr int k1 = f(0); // ok
1220
1221struct Wrap {
1222 const int &value;
1223};
1224constexpr const Wrap &g(const Wrap &w) { return w; }
1225constexpr int k2 = g({0}).value; // ok
1226
1227constexpr const int &i = 0; // expected-error {{constant expression}} expected-note {{temporary}} expected-note 2{{here}}
1228constexpr const int j = i; // expected-error {{constant expression}} expected-note {{initializer of 'i' is not a constant expression}}
1229
1230}
Richard Smith74e1ad92012-02-16 02:46:34 +00001231
1232namespace RecursiveOpaqueExpr {
1233 template<typename Iter>
1234 constexpr auto LastNonzero(Iter p, Iter q) -> decltype(+*p) {
1235 return p != q ? (LastNonzero(p+1, q) ?: *p) : 0; // expected-warning {{GNU}}
1236 }
1237
1238 constexpr int arr1[] = { 1, 0, 0, 3, 0, 2, 0, 4, 0, 0 };
1239 static_assert(LastNonzero(begin(arr1), end(arr1)) == 4, "");
1240
1241 constexpr int arr2[] = { 1, 0, 0, 3, 0, 2, 0, 4, 0, 5 };
1242 static_assert(LastNonzero(begin(arr2), end(arr2)) == 5, "");
Richard Smithe92b1f42012-06-26 08:12:11 +00001243
1244 constexpr int arr3[] = {
1245 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1246 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1247 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1248 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1249 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1250 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1251 1, 0, 0, 1, 0, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0,
1252 2, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
1253 static_assert(LastNonzero(begin(arr3), end(arr3)) == 2, "");
Richard Smith74e1ad92012-02-16 02:46:34 +00001254}
1255
1256namespace VLASizeof {
1257
1258 void f(int k) {
1259 int arr[k]; // expected-warning {{C99}}
1260 constexpr int n = 1 +
1261 sizeof(arr) // expected-error {{constant expression}}
1262 * 3;
1263 }
1264}
Richard Smithb78ae972012-02-18 04:58:18 +00001265
1266namespace CompoundLiteral {
1267 // FIXME:
1268 // We don't model the semantics of this correctly: the compound literal is
1269 // represented as a prvalue in the AST, but actually behaves like an lvalue.
1270 // We treat the compound literal as a temporary and refuse to produce a
1271 // pointer to it. This is OK: we're not required to treat this as a constant
1272 // in C++, and in C we model compound literals as lvalues.
1273 constexpr int *p = (int*)(int[1]){0}; // expected-warning {{C99}} expected-error {{constant expression}} expected-note 2{{temporary}}
1274}
Richard Smith4b1f6842012-03-13 20:58:32 +00001275
1276namespace Vector {
1277 typedef int __attribute__((vector_size(16))) VI4;
1278 constexpr VI4 f(int n) {
1279 return VI4 { n * 3, n + 4, n - 5, n / 6 };
1280 }
1281 constexpr auto v1 = f(10);
1282
1283 typedef double __attribute__((vector_size(32))) VD4;
1284 constexpr VD4 g(int n) {
1285 return (VD4) { n / 2.0, n + 1.5, n - 5.4, n * 0.9 }; // expected-warning {{C99}}
1286 }
1287 constexpr auto v2 = g(4);
1288}
John McCall8d59dee2012-05-01 00:38:49 +00001289
1290// PR12626, redux
1291namespace InvalidClasses {
1292 void test0() {
1293 struct X; // expected-note {{forward declaration}}
1294 struct Y { bool b; X x; }; // expected-error {{field has incomplete type}}
1295 Y y;
1296 auto& b = y.b;
1297 }
1298}
Richard Smithdbbeccc2012-05-15 05:04:02 +00001299
Richard Smith622da852012-07-02 06:15:40 +00001300// Constructors can be implicitly constexpr, even for a non-literal type.
1301namespace ImplicitConstexpr {
1302 struct Q { Q() = default; Q(const Q&) = default; Q(Q&&) = default; ~Q(); }; // expected-note 3{{here}}
Richard Smith604fb382012-08-07 22:06:48 +00001303 struct R { constexpr R() noexcept; constexpr R(const R&) noexcept; constexpr R(R&&) noexcept; ~R() noexcept; };
Richard Smith622da852012-07-02 06:15:40 +00001304 struct S { R r; }; // expected-note 3{{here}}
Richard Smith604fb382012-08-07 22:06:48 +00001305 struct T { T(const T&) noexcept; T(T &&) noexcept; ~T() noexcept; };
Richard Smith622da852012-07-02 06:15:40 +00001306 struct U { T t; }; // expected-note 3{{here}}
1307 static_assert(!__is_literal_type(Q), "");
1308 static_assert(!__is_literal_type(R), "");
1309 static_assert(!__is_literal_type(S), "");
1310 static_assert(!__is_literal_type(T), "");
1311 static_assert(!__is_literal_type(U), "");
1312 struct Test {
1313 friend Q::Q() noexcept; // expected-error {{follows constexpr}}
1314 friend Q::Q(Q&&) noexcept; // expected-error {{follows constexpr}}
1315 friend Q::Q(const Q&) noexcept; // expected-error {{follows constexpr}}
1316 friend S::S() noexcept; // expected-error {{follows constexpr}}
1317 friend S::S(S&&) noexcept; // expected-error {{follows constexpr}}
1318 friend S::S(const S&) noexcept; // expected-error {{follows constexpr}}
1319 friend constexpr U::U() noexcept; // expected-error {{follows non-constexpr}}
1320 friend constexpr U::U(U&&) noexcept; // expected-error {{follows non-constexpr}}
1321 friend constexpr U::U(const U&) noexcept; // expected-error {{follows non-constexpr}}
1322 };
1323}
1324
Richard Smithdbbeccc2012-05-15 05:04:02 +00001325// Indirectly test that an implicit lvalue to xvalue conversion performed for
1326// an NRVO move operation isn't implemented as CK_LValueToRValue.
1327namespace PR12826 {
1328 struct Foo {};
1329 constexpr Foo id(Foo x) { return x; }
1330 constexpr Foo res(id(Foo()));
1331}
Richard Smithf4bb8d02012-07-05 08:39:21 +00001332
1333namespace PR13273 {
1334 struct U {
1335 int t;
1336 U() = default;
1337 };
1338
1339 struct S : U {
1340 S() = default;
1341 };
1342
1343 // S's default constructor isn't constexpr, because U's default constructor
1344 // doesn't initialize 't', but it's trivial, so value-initialization doesn't
1345 // actually call it.
1346 static_assert(S{}.t == 0, "");
1347}
Richard Smith20599392012-07-07 08:35:56 +00001348
1349namespace PR12670 {
1350 struct S {
1351 constexpr S(int a0) : m(a0) {}
1352 constexpr S() : m(6) {}
1353 int m;
1354 };
1355 constexpr S x[3] = { {4}, 5 };
1356 static_assert(x[0].m == 4, "");
1357 static_assert(x[1].m == 5, "");
1358 static_assert(x[2].m == 6, "");
1359}
Richard Smith604fb382012-08-07 22:06:48 +00001360
1361// Indirectly test that an implicit lvalue-to-rvalue conversion is performed
1362// when a conditional operator has one argument of type void and where the other
1363// is a glvalue of class type.
1364namespace ConditionalLValToRVal {
1365 struct A {
1366 constexpr A(int a) : v(a) {}
1367 int v;
1368 };
1369
1370 constexpr A f(const A &a) {
1371 return a.v == 0 ? throw a : a;
1372 }
1373
1374 constexpr A a(4);
1375 static_assert(f(a).v == 4, "");
1376}
Hans Wennborg29f431b2012-08-29 09:17:34 +00001377
1378namespace TLS {
1379 __thread int n;
Hans Wennborg48def652012-08-29 18:27:29 +00001380 int m;
1381
1382 constexpr bool b = &n == &n;
1383
1384 constexpr int *p = &n; // expected-error{{constexpr variable 'p' must be initialized by a constant expression}}
1385
1386 constexpr int *f() { return &n; }
1387 constexpr int *q = f(); // expected-error{{constexpr variable 'q' must be initialized by a constant expression}}
1388 constexpr bool c = f() == f();
1389
1390 constexpr int *g() { return &m; }
1391 constexpr int *r = g();
Hans Wennborg29f431b2012-08-29 09:17:34 +00001392}
Richard Smith01cad022012-10-01 20:36:17 +00001393
1394namespace Void {
1395 constexpr void f() { return; } // expected-error{{constexpr function's return type 'void' is not a literal type}}
1396
1397 void assert_failed(const char *msg, const char *file, int line); // expected-note {{declared here}}
1398#define ASSERT(expr) ((expr) ? static_cast<void>(0) : assert_failed(#expr, __FILE__, __LINE__))
1399 template<typename T, size_t S>
1400 constexpr T get(T (&a)[S], size_t k) {
1401 return ASSERT(k > 0 && k < S), a[k]; // expected-note{{non-constexpr function 'assert_failed'}}
1402 }
1403#undef ASSERT
1404 template int get(int (&a)[4], size_t);
1405 constexpr int arr[] = { 4, 1, 2, 3, 4 };
1406 static_assert(get(arr, 1) == 1, "");
1407 static_assert(get(arr, 4) == 4, "");
1408 static_assert(get(arr, 0) == 4, ""); // expected-error{{not an integral constant expression}} \
1409 // expected-note{{in call to 'get(arr, 0)'}}
1410}