322 lines
8.4 KiB
C++
322 lines
8.4 KiB
C++
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// RUN: %clang_cc1 -fsyntax-only -verify %s
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// REQUIRES: LP64
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// ------------ not interpreted as C-style cast ------------
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struct SimpleValueInit {
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int i;
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};
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struct InitViaConstructor {
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InitViaConstructor(int i = 7);
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};
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struct NoValueInit { // expected-note 2 {{candidate constructor (the implicit copy constructor)}}
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NoValueInit(int i, int j); // expected-note 2 {{candidate constructor}}
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};
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void test_cxx_functional_value_init() {
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(void)SimpleValueInit();
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(void)InitViaConstructor();
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(void)NoValueInit(); // expected-error{{no matching constructor for initialization}}
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}
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void test_cxx_function_cast_multi() {
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(void)NoValueInit(0, 0);
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(void)NoValueInit(0, 0, 0); // expected-error{{no matching constructor for initialization}}
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(void)int(1, 2); // expected-error{{excess elements in scalar initializer}}
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}
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// ------------------ everything else --------------------
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struct A {};
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// ----------- const_cast --------------
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typedef char c;
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typedef c *cp;
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typedef cp *cpp;
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typedef cpp *cppp;
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typedef cppp &cpppr;
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typedef const cppp &cpppcr;
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typedef const char cc;
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typedef cc *ccp;
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typedef volatile ccp ccvp;
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typedef ccvp *ccvpp;
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typedef const volatile ccvpp ccvpcvp;
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typedef ccvpcvp *ccvpcvpp;
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typedef int iar[100];
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typedef iar &iarr;
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typedef int (*f)(int);
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void t_cc()
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{
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ccvpcvpp var = 0;
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// Cast away deep consts and volatiles.
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char ***var2 = cppp(var);
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char ***const &var3 = var2;
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// Const reference to reference.
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char ***&var4 = cpppr(var3);
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// Drop reference. Intentionally without qualifier change.
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char *** var5 = cppp(var4);
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const int ar[100] = {0};
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// Array decay. Intentionally without qualifier change.
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typedef int *intp;
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int *pi = intp(ar);
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f fp = 0;
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// Don't misidentify fn** as a function pointer.
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typedef f *fp_t;
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f *fpp = fp_t(&fp);
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int const A::* const A::*icapcap = 0;
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typedef int A::* A::*iapap_t;
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iapap_t iapap = iapap_t(icapcap);
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}
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// ----------- static_cast -------------
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struct B : public A {}; // Single public base.
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struct C1 : public virtual B {}; // Single virtual base.
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struct C2 : public virtual B {};
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struct D : public C1, public C2 {}; // Diamond
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struct E : private A {}; // Single private base.
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struct F : public C1 {}; // Single path to B with virtual.
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struct G1 : public B {};
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struct G2 : public B {};
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struct H : public G1, public G2 {}; // Ambiguous path to B.
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enum Enum { En1, En2 };
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enum Onom { On1, On2 };
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struct Co1 { operator int(); };
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struct Co2 { Co2(int); };
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struct Co3 { };
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struct Co4 { Co4(Co3); operator Co3(); };
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// Explicit implicits
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void t_529_2()
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{
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int i = 1;
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(void)float(i);
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double d = 1.0;
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(void)float(d);
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(void)int(d);
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(void)char(i);
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typedef unsigned long ulong;
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(void)ulong(i);
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(void)int(En1);
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(void)double(En1);
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typedef int &intr;
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(void)intr(i);
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typedef const int &cintr;
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(void)cintr(i);
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int ar[1];
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typedef const int *cintp;
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(void)cintp(ar);
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typedef void (*pfvv)();
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(void)pfvv(t_529_2);
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typedef void *voidp;
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(void)voidp(0);
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(void)voidp((int*)0);
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typedef volatile const void *vcvoidp;
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(void)vcvoidp((const int*)0);
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typedef A *Ap;
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(void)Ap((B*)0);
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typedef A &Ar;
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(void)Ar(*((B*)0));
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typedef const B *cBp;
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(void)cBp((C1*)0);
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typedef B &Br;
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(void)Br(*((C1*)0));
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(void)Ap((D*)0);
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typedef const A &cAr;
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(void)cAr(*((D*)0));
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typedef int B::*Bmp;
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(void)Bmp((int A::*)0);
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typedef void (B::*Bmfp)();
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(void)Bmfp((void (A::*)())0);
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(void)Ap((E*)0); // functional-style cast ignores access control
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(void)voidp((const int*)0); // const_cast appended
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(void)int(Co1());
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(void)Co2(1);
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(void)Co3((Co4)(Co3()));
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// Bad code below
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//(void)(A*)((H*)0); // {{static_cast from 'struct H *' to 'struct A *' is not allowed}}
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}
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// Anything to void
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void t_529_4()
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{
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void(1);
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(void(t_529_4));
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}
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// Static downcasts
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void t_529_5_8()
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{
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typedef B *Bp;
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(void)Bp((A*)0);
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typedef B &Br;
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(void)Br(*((A*)0));
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typedef const G1 *cG1p;
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(void)cG1p((A*)0);
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typedef const G1 &cG1r;
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(void)cG1r(*((A*)0));
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(void)Bp((const A*)0); // const_cast appended
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(void)Br(*((const A*)0)); // const_cast appended
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typedef E *Ep;
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(void)Ep((A*)0); // access control ignored
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typedef E &Er;
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(void)Er(*((A*)0)); // access control ignored
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// Bad code below
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typedef C1 *C1p;
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(void)C1p((A*)0); // expected-error {{cannot cast 'A *' to 'C1p' (aka 'C1 *') via virtual base 'B'}}
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typedef C1 &C1r;
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(void)C1r(*((A*)0)); // expected-error {{cannot cast 'A' to 'C1r' (aka 'C1 &') via virtual base 'B'}}
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typedef D *Dp;
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(void)Dp((A*)0); // expected-error {{cannot cast 'A *' to 'Dp' (aka 'D *') via virtual base 'B'}}
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typedef D &Dr;
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(void)Dr(*((A*)0)); // expected-error {{cannot cast 'A' to 'Dr' (aka 'D &') via virtual base 'B'}}
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typedef H *Hp;
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(void)Hp((A*)0); // expected-error {{ambiguous cast from base 'A' to derived 'H':\n struct A -> struct B -> struct G1 -> struct H\n struct A -> struct B -> struct G2 -> struct H}}
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typedef H &Hr;
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(void)Hr(*((A*)0)); // expected-error {{ambiguous cast from base 'A' to derived 'H':\n struct A -> struct B -> struct G1 -> struct H\n struct A -> struct B -> struct G2 -> struct H}}
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// TODO: Test DR427. This requires user-defined conversions, though.
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}
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// Enum conversions
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void t_529_7()
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{
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(void)Enum(1);
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(void)Enum(1.0);
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(void)Onom(En1);
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// Bad code below
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(void)Enum((int*)0); // expected-error {{functional-style cast from 'int *' to 'Enum' is not allowed}}
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}
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// Void pointer to object pointer
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void t_529_10()
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{
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typedef int *intp;
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(void)intp((void*)0);
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typedef const A *cAp;
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(void)cAp((void*)0);
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(void)intp((const void*)0); // const_cast appended
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}
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// Member pointer upcast.
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void t_529_9()
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{
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typedef int A::*Amp;
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(void)Amp((int B::*)0);
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// Bad code below
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(void)Amp((int H::*)0); // expected-error {{ambiguous conversion from pointer to member of derived class 'H' to pointer to member of base class 'A':}}
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(void)Amp((int F::*)0); // expected-error {{conversion from pointer to member of class 'F' to pointer to member of class 'A' via virtual base 'B' is not allowed}}
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}
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// -------- reinterpret_cast -----------
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enum test { testval = 1 };
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struct structure { int m; };
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typedef void (*fnptr)();
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// Test conversion between pointer and integral types, as in p3 and p4.
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void integral_conversion()
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{
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typedef void *voidp;
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void *vp = voidp(testval);
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long l = long(vp);
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typedef float *floatp;
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(void)floatp(l);
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fnptr fnp = fnptr(l);
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(void)char(fnp); // expected-error {{cast from pointer to smaller type 'char' loses information}}
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(void)long(fnp);
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}
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void pointer_conversion()
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{
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int *p1 = 0;
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typedef float *floatp;
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float *p2 = floatp(p1);
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typedef structure *structurep;
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structure *p3 = structurep(p2);
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typedef int **ppint;
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typedef ppint *pppint;
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ppint *deep = pppint(p3);
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typedef fnptr fnptrp;
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(void)fnptrp(deep);
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}
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void constness()
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{
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int ***const ipppc = 0;
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typedef int const *icp_t;
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int const *icp = icp_t(ipppc);
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typedef int *intp;
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(void)intp(icp); // const_cast appended
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typedef int const *const ** intcpcpp;
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intcpcpp icpcpp = intcpcpp(ipppc); // const_cast appended
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int *ip = intp(icpcpp);
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(void)icp_t(ip);
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typedef int const *const *const *intcpcpcp;
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(void)intcpcpcp(ipppc);
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}
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void fnptrs()
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{
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typedef int (*fnptr2)(int);
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fnptr fp = 0;
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(void)fnptr2(fp);
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typedef void *voidp;
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void *vp = voidp(fp);
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(void)fnptr(vp);
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}
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void refs()
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{
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long l = 0;
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typedef char &charr;
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char &c = charr(l);
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// Bad: from rvalue
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typedef int &intr;
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(void)intr(&c); // expected-error {{functional-style cast from rvalue to reference type 'intr' (aka 'int &')}}
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}
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void memptrs()
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{
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const int structure::*psi = 0;
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typedef const float structure::*structurecfmp;
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(void)structurecfmp(psi);
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typedef int structure::*structureimp;
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(void)structureimp(psi); // const_cast appended
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void (structure::*psf)() = 0;
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typedef int (structure::*structureimfp)();
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(void)structureimfp(psf);
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typedef void (structure::*structurevmfp)();
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(void)structurevmfp(psi); // expected-error {{functional-style cast from 'const int structure::*' to 'structurevmfp' (aka 'void (structure::*)()') is not allowed}}
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(void)structureimp(psf); // expected-error {{functional-style cast from 'void (structure::*)()' to 'structureimp' (aka 'int structure::*') is not allowed}}
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}
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// ---------------- misc ------------------
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void crash_on_invalid_1()
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{
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typedef itn Typo; // expected-error {{unknown type name 'itn'}}
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(void)Typo(1); // used to crash
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typedef int &int_ref;
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(void)int_ref(); // expected-error {{reference to type 'int' requires an initializer}}
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}
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