This implementation takes quite a bit from the OMP implementation of array sections, but only has to enforce the rules as applicable to OpenACC. Additionally, it does its best to create an AST node (with the assistance of RecoveryExprs) with as much checking done as soon as possible in the case of instantiations.
209 lines
7.8 KiB
C++
209 lines
7.8 KiB
C++
// RUN: %clang_cc1 %s -verify -fopenacc
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struct Incomplete; // #INCOMPLETE
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struct NotConvertible{} NC;
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struct CorrectConvert {
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operator int();
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} Convert;
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constexpr int returns_3() { return 3; }
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using FuncPtrTy = void (*)();
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FuncPtrTy FuncPtrTyArray[2];
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void Func(int i, int j) {
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int array[5];
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int VLA[i];
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int *ptr;
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void *void_ptr;
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// Follows int-expr rules, so only convertible to int.
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// expected-error@+1{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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#pragma acc parallel private(array[NC:])
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while (true);
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// expected-error@+1{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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#pragma acc parallel private(array[:NC])
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while (true);
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// expected-error@+2{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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// expected-error@+1{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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#pragma acc parallel private(array[NC:NC])
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while (true);
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// expected-error@+2{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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// expected-error@+1{{OpenACC sub-array length is unspecified and cannot be inferred because the subscripted value is not an array}}
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#pragma acc parallel private(ptr[NC:])
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while (true);
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// expected-error@+1{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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#pragma acc parallel private(ptr[:NC])
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while (true);
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// expected-error@+2{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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// expected-error@+1{{OpenACC sub-array bound requires expression of integer type ('struct NotConvertible' invalid}}
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#pragma acc parallel private(ptr[NC:NC])
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while (true);
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// These are convertible, so they work.
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#pragma acc parallel private(array[Convert:Convert])
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while (true);
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#pragma acc parallel private(ptr[Convert:Convert])
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while (true);
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// The length for "dynamically" allocated dimensions of an array must be
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// explicitly specified.
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// expected-error@+1{{OpenACC sub-array length is unspecified and cannot be inferred because the subscripted value is not an array}}
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#pragma acc parallel private(ptr[3:])
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while (true);
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// expected-error@+1{{OpenACC sub-array length is unspecified and cannot be inferred because the subscripted value is an array of unknown bound}}
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#pragma acc parallel private(VLA[3:])
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while (true);
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#pragma acc parallel private(ptr[:3])
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while (true);
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#pragma acc parallel private(VLA[:3])
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while (true);
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// Error if the length of the array + the initializer is bigger the the array
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// with known bounds.
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// expected-error@+1{{OpenACC sub-array length evaluated to a value (6) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(array[i:returns_3() + 3])
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while (true);
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// expected-error@+1{{OpenACC sub-array length evaluated to a value (6) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(array[:returns_3() + 3])
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while (true);
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#pragma acc parallel private(array[:returns_3()])
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while (true);
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// expected-error@+1{{OpenACC sub-array specified range [3:3] would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(array[returns_3():returns_3()])
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while (true);
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// expected-error@+1{{OpenACC sub-array lower bound evaluated to a value (6) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(array[returns_3() + 3:])
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while (true);
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// expected-error@+1{{OpenACC sub-array lower bound evaluated to a value (6) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(array[returns_3() + 3:1])
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while (true);
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// Standard doesn't specify this, but negative values are likely not
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// permitted, so disallow them here until we come up with a good reason to do
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// otherwise.
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// expected-error@+1{{OpenACC sub-array lower bound evaluated to negative value -1}}
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#pragma acc parallel private(array[returns_3() - 4 : ])
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while (true);
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// expected-error@+1{{OpenACC sub-array length evaluated to negative value -1}}
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#pragma acc parallel private(array[: -1])
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while (true);
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Incomplete *IncompletePtr;
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// expected-error@+2{{OpenACC sub-array base is of incomplete type 'Incomplete'}}
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// expected-note@#INCOMPLETE{{forward declaration of 'Incomplete'}}
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#pragma acc parallel private(IncompletePtr[0 :1])
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while (true);
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// expected-error@+1{{OpenACC sub-array base is of incomplete type 'void'}}
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#pragma acc parallel private(void_ptr[0:1])
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while (true);
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// OK: these are function pointers.
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#pragma acc parallel private(FuncPtrTyArray[0 :1])
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while (true);
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// expected-error@+1{{OpenACC sub-array cannot be of function type 'void ()'}}
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#pragma acc parallel private(FuncPtrTyArray[0][0 :1])
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while (true);
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// expected-error@+1{{OpenACC sub-array subscripted value is not an array or pointer}}
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#pragma acc parallel private(i[0:1])
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while (true);
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}
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template<typename T, typename U, typename V, unsigned I, auto &CEArray>
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void Templ(int i){
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T array[I];
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T VLA[i];
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T *ptr;
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U NC;
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V Conv;
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// Convertible:
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// expected-error@+2{{OpenACC sub-array bound requires expression of integer type ('NotConvertible' invalid}}
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// expected-note@#INST{{in instantiation of function template specialization}}
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#pragma acc parallel private(array[NC:])
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while (true);
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// expected-error@+1{{OpenACC sub-array bound requires expression of integer type ('NotConvertible' invalid}}
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#pragma acc parallel private(array[:NC])
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while (true);
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#pragma acc parallel private(array[Conv:])
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while (true);
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#pragma acc parallel private(array[:Conv])
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while (true);
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// Need a length for unknown size.
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// expected-error@+1{{OpenACC sub-array length is unspecified and cannot be inferred because the subscripted value is not an array}}
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#pragma acc parallel private(ptr[Conv:])
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while (true);
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// expected-error@+1{{OpenACC sub-array length is unspecified and cannot be inferred because the subscripted value is an array of unknown bound}}
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#pragma acc parallel private(VLA[Conv:])
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while (true);
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#pragma acc parallel private(ptr[:Conv])
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while (true);
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#pragma acc parallel private(VLA[:Conv])
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while (true);
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// Out of bounds.
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// expected-error@+1{{OpenACC sub-array lower bound evaluated to a value (2) that would be out of the range of the subscripted array size of 2}}
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#pragma acc parallel private(array[I:])
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while (true);
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// OK, don't know the value.
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#pragma acc parallel private(array[i:])
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while (true);
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// expected-error@+1{{OpenACC sub-array length evaluated to a value (3) that would be out of the range of the subscripted array size of 2}}
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#pragma acc parallel private(array[:I + 1])
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while (true);
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// expected-error@+1{{OpenACC sub-array lower bound evaluated to a value (5) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(CEArray[5:])
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while (true);
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// expected-error@+1{{OpenACC sub-array length evaluated to a value (6) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(CEArray[:2 + I + I])
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while (true);
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// expected-error@+1{{OpenACC sub-array length evaluated to a value (4294967295) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(CEArray[:1 - I])
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while (true);
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// expected-error@+1{{OpenACC sub-array lower bound evaluated to a value (4294967295) that would be out of the range of the subscripted array size of 5}}
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#pragma acc parallel private(CEArray[1 - I:])
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while (true);
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T not_ptr;
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// expected-error@+1{{OpenACC sub-array subscripted value is not an array or pointer}}
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#pragma acc parallel private(not_ptr[0:1])
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while (true);
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}
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void inst() {
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static constexpr int CEArray[5]={1,2,3,4,5};
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Templ<int, NotConvertible, CorrectConvert, 2, CEArray>(5); // #INST
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}
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