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These two constructs are very simple and similar, and only support 3 different clauses, two of which are already implemented. This patch adds AST nodes for both constructs, and leaves the device_num clause unimplemented, but enables the other two.
134 lines
4.0 KiB
C++
134 lines
4.0 KiB
C++
// RUN: %clang_cc1 %s -fopenacc -verify
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struct NotConvertible{} NC;
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struct Incomplete *SomeIncomplete; // #INCOMPLETE
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enum E{} SomeE;
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enum class E2{} SomeE2;
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struct CorrectConvert {
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operator int();
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} Convert;
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struct ExplicitConvertOnly {
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explicit operator int() const; // #EXPL_CONV
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} Explicit;
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struct AmbiguousConvert{
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operator int(); // #AMBIG_INT
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operator short(); // #AMBIG_SHORT
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operator float();
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} Ambiguous;
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void Test() {
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#pragma acc parallel num_workers(1)
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while(1);
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#pragma acc kernels num_workers(1)
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while(1);
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// expected-error@+1{{OpenACC clause 'num_workers' requires expression of integer type ('struct NotConvertible' invalid}}
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#pragma acc parallel num_workers(NC)
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while(1);
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// expected-error@+2{{OpenACC integer expression has incomplete class type 'struct Incomplete'}}
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// expected-note@#INCOMPLETE{{forward declaration of 'Incomplete'}}
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#pragma acc kernels num_workers(*SomeIncomplete)
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while(1);
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#pragma acc parallel num_workers(SomeE)
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while(1);
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// expected-error@+1{{OpenACC clause 'num_workers' requires expression of integer type ('enum E2' invalid}}
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#pragma acc kernels num_workers(SomeE2)
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while(1);
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#pragma acc parallel num_workers(Convert)
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while(1);
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// expected-error@+2{{OpenACC integer expression requires explicit conversion from 'struct ExplicitConvertOnly' to 'int'}}
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// expected-note@#EXPL_CONV{{conversion to integral type 'int'}}
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#pragma acc kernels num_workers(Explicit)
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while(1);
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// expected-error@+3{{multiple conversions from expression type 'struct AmbiguousConvert' to an integral type}}
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// expected-note@#AMBIG_INT{{conversion to integral type 'int'}}
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// expected-note@#AMBIG_SHORT{{conversion to integral type 'short'}}
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#pragma acc parallel num_workers(Ambiguous)
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while(1);
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}
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struct HasInt {
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using IntTy = int;
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using ShortTy = short;
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static constexpr int value = 1;
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static constexpr AmbiguousConvert ACValue;
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static constexpr ExplicitConvertOnly EXValue;
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operator char();
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};
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template<typename T>
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void TestInst() {
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// expected-error@+1{{no member named 'Invalid' in 'HasInt'}}
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#pragma acc parallel num_workers(HasInt::Invalid)
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while (1);
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// expected-error@+2{{no member named 'Invalid' in 'HasInt'}}
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// expected-note@#INST{{in instantiation of function template specialization 'TestInst<HasInt>' requested here}}
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#pragma acc kernels num_workers(T::Invalid)
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while (1);
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// expected-error@+3{{multiple conversions from expression type 'const AmbiguousConvert' to an integral type}}
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// expected-note@#AMBIG_INT{{conversion to integral type 'int'}}
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// expected-note@#AMBIG_SHORT{{conversion to integral type 'short'}}
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#pragma acc parallel num_workers(HasInt::ACValue)
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while (1);
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// expected-error@+3{{multiple conversions from expression type 'const AmbiguousConvert' to an integral type}}
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// expected-note@#AMBIG_INT{{conversion to integral type 'int'}}
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// expected-note@#AMBIG_SHORT{{conversion to integral type 'short'}}
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#pragma acc kernels num_workers(T::ACValue)
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while (1);
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// expected-error@+2{{OpenACC integer expression requires explicit conversion from 'const ExplicitConvertOnly' to 'int'}}
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// expected-note@#EXPL_CONV{{conversion to integral type 'int'}}
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#pragma acc parallel num_workers(HasInt::EXValue)
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while (1);
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// expected-error@+2{{OpenACC integer expression requires explicit conversion from 'const ExplicitConvertOnly' to 'int'}}
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// expected-note@#EXPL_CONV{{conversion to integral type 'int'}}
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#pragma acc kernels num_workers(T::EXValue)
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while (1);
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#pragma acc parallel num_workers(HasInt::value)
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while (1);
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#pragma acc kernels num_workers(T::value)
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while (1);
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#pragma acc parallel num_workers(HasInt::IntTy{})
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while (1);
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#pragma acc kernels num_workers(typename T::ShortTy{})
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while (1);
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#pragma acc parallel num_workers(HasInt::IntTy{})
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while (1);
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#pragma acc kernels num_workers(typename T::ShortTy{})
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while (1);
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HasInt HI{};
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T MyT{};
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#pragma acc parallel num_workers(HI)
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while (1);
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#pragma acc kernels num_workers(MyT)
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while (1);
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}
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void Inst() {
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TestInst<HasInt>(); // #INST
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}
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