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55 lines
1.9 KiB
55 lines
1.9 KiB
4 months ago
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// RUN: %clang_cc1 -fsyntax-only -pedantic -verify %s
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// Simple form
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int ar1[10];
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// Element type cannot be:
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// - (cv) void
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volatile void ar2[10]; // expected-error {{incomplete element type 'volatile void'}}
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// - a reference
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int& ar3[10]; // expected-error {{array of references}}
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// - a function type
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typedef void Fn();
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Fn ar4[10]; // expected-error {{array of functions}}
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// - an abstract class
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struct Abstract { virtual void fn() = 0; }; // expected-note {{pure virtual}}
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Abstract ar5[10]; // expected-error {{abstract class}}
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// If we have a size, it must be greater than zero.
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int ar6[-1]; // expected-error {{array with a negative size}}
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int ar7[0u]; // expected-warning {{zero size arrays are an extension}}
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// An array with unknown bound is incomplete.
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int ar8[]; // expected-error {{needs an explicit size or an initializer}}
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// So is an array with an incomplete element type.
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struct Incomplete; // expected-note {{forward declaration}}
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Incomplete ar9[10]; // expected-error {{incomplete type}}
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// Neither of which should be a problem in situations where no complete type
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// is required. (PR5048)
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void fun(int p1[], Incomplete p2[10]);
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extern int ear1[];
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extern Incomplete ear2[10];
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// cv migrates to element type
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typedef const int cint;
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extern cint car1[10];
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typedef int intar[10];
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// thus this is a valid redeclaration
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extern const intar car1;
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// Check that instantiation works properly when the element type is a template.
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template <typename T> struct S {
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typename T::type x; // expected-error {{has no members}}
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};
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S<int> ar10[10]; // expected-note {{requested here}}
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// Ensure that negative array size errors include the name of the declared
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// array as this is often used to simulate static_assert with template
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// instantiations, placing the 'error message' in the declarator name.
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int
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user_error_message
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[-1]; // expected-error {{user_error_message}}
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typedef int
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another_user_error_message
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[-1]; // expected-error {{another_user_error_message}}
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