639 lines
24 KiB
C++
639 lines
24 KiB
C++
// RUN: %clang_cc1 -fsyntax-only -fopenmp -fopenmp-version=45 -x c++ -std=c++11 -fexceptions -fcxx-exceptions -verify=expected,omp4,expectedw %s -Wuninitialized
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// RUN: %clang_cc1 -fsyntax-only -fopenmp-simd -fopenmp-version=45 -x c++ -std=c++11 -fexceptions -fcxx-exceptions -verify=expected,omp4,expectedw %s -Wuninitialized
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// RUN: %clang_cc1 -fsyntax-only -fopenmp -x c++ -std=c++11 -fexceptions -fcxx-exceptions -verify=expected,omp5,expectedw %s -fopenmp-version=50 -DOMP50 -Wuninitialized
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// RUN: %clang_cc1 -fsyntax-only -fopenmp-simd -x c++ -std=c++11 -fexceptions -fcxx-exceptions -verify=expected,omp5,expectedw %s -fopenmp-version=50 -DOMP50 -Wuninitialized
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// RUN: %clang_cc1 -fsyntax-only -fopenmp -fopenmp-version=45 -x c++ -std=c++11 -fexceptions -fcxx-exceptions -verify=expected,omp4 %s -Wuninitialized -Wno-openmp-loop-form
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// RUN: %clang_cc1 -fsyntax-only -fopenmp -fopenmp-version=45 -x c++ -std=c++11 -fexceptions -fcxx-exceptions -verify=expected,omp4 %s -Wuninitialized -Wno-openmp
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static int sii;
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// expected-note@+1 {{defined as threadprivate or thread local}}
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#pragma omp threadprivate(sii)
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static int globalii;
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struct S {
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// expected-note@+1 {{static data member is predetermined as shared}}
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static int ssi;
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};
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int test_iteration_spaces() {
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const int N = 100;
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float a[N], b[N], c[N];
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int ii, jj, kk;
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float fii;
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double dii;
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#pragma omp simd linear(S::ssi)
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for (S::ssi = 0; S::ssi < 10; ++S::ssi)
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;
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// expected-error@+1 {{shared variable cannot be private}}
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#pragma omp simd private(S::ssi)
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for (S::ssi = 0; S::ssi < 10; ++S::ssi)
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;
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#pragma omp simd // no messages expected
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for (S::ssi = 0; S::ssi < 10; ++S::ssi)
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;
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#pragma omp simd
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for (int i = 0; i < 10; i+=1) {
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c[i] = a[i] + b[i];
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}
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#pragma omp simd
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for (char i = 0; i < 10; i++) {
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c[i] = a[i] + b[i];
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}
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#pragma omp simd
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for (char i = 0; i < 10; i+='\1') {
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c[i] = a[i] + b[i];
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}
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#pragma omp simd
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for (long long i = 0; i < 10; i++) {
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c[i] = a[i] + b[i];
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}
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// expected-error@+2 {{expression must have integral or unscoped enumeration type, not 'double'}}
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#pragma omp simd
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for (long long i = 0; i < 10; i+=1.5) {
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c[i] = a[i] + b[i];
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}
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#pragma omp simd
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for (long long i = 0; i < 'z'; i+=1u) {
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c[i] = a[i] + b[i];
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}
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// expected-error@+2 {{variable must be of integer or random access iterator type}}
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#pragma omp simd
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for (float fi = 0; fi < 10.0; fi++) {
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c[(int)fi] = a[(int)fi] + b[(int)fi];
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}
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// expected-error@+2 {{variable must be of integer or random access iterator type}}
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#pragma omp simd
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for (double fi = 0; fi < 10.0; fi++) {
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c[(int)fi] = a[(int)fi] + b[(int)fi];
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}
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (int &ref = ii; ref < 10; ref++) {
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}
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (int i; i < 10; i++)
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c[i] = a[i];
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (int i = 0, j = 0; i < 10; ++i)
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c[i] = a[i];
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (;ii < 10; ++ii)
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c[ii] = a[ii];
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// expected-warning@+3 {{expression result unused}}
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (ii + 1;ii < 10; ++ii)
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c[ii] = a[ii];
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (c[ii] = 0;ii < 10; ++ii)
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c[ii] = a[ii];
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// Ok to skip parenthesises.
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#pragma omp simd
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for (((ii)) = 0;ii < 10; ++ii)
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c[ii] = a[ii];
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'i'}} omp5-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'i'}}
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#pragma omp simd
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for (int i = 0; i; i++)
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c[i] = a[i];
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// omp4-error@+3 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'i'}} omp5-error@+3 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'i'}}
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'i'}}
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#pragma omp simd
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for (int i = 0; jj < kk; ii++)
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c[i] = a[i];
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'i'}} omp5-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'i'}}
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#pragma omp simd
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for (int i = 0; !!i; i++)
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c[i] = a[i];
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'i'}}
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#pragma omp simd
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for (int i = 0; i != 1; i++)
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c[i] = a[i];
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'i'}} omp5-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'i'}}
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#pragma omp simd
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for (int i = 0; ; i++)
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c[i] = a[i];
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// Ok.
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#pragma omp simd
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for (int i = 11; i > 10; i--)
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c[i] = a[i];
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// Ok.
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#pragma omp simd
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for (int i = 0; i < 10; ++i)
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c[i] = a[i];
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// Ok.
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#pragma omp simd
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for (ii = 0; ii < 10; ++ii)
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c[ii] = a[ii];
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; ++jj)
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c[ii] = a[jj];
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; ++ ++ ii)
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c[ii] = a[ii];
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// Ok but undefined behavior (in general, cannot check that incr
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// is really loop-invariant).
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#pragma omp simd
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for (ii = 0; ii < 10; ii = ii + ii)
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c[ii] = a[ii];
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// expected-error@+2 {{expression must have integral or unscoped enumeration type, not 'float'}}
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#pragma omp simd
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for (ii = 0; ii < 10; ii = ii + 1.0f)
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c[ii] = a[ii];
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// Ok - step was converted to integer type.
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#pragma omp simd
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for (ii = 0; ii < 10; ii = ii + (int)1.1f)
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c[ii] = a[ii];
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; jj = ii + 2)
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c[ii] = a[ii];
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// expected-warning@+3 {{relational comparison result unused}}
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; jj > kk + 2)
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c[ii] = a[ii];
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10;)
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c[ii] = a[ii];
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// expected-warning@+3 {{expression result unused}}
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; !ii)
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c[ii] = a[ii];
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; ii ? ++ii : ++jj)
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c[ii] = a[ii];
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'ii'}}
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#pragma omp simd
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for (ii = 0; ii < 10; ii = ii < 10)
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; ii < 10; ii = ii + 0)
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; ii < 10; ii = ii + (int)(0.8 - 0.45))
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; (ii) < 10; ii-=25)
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; (ii < 10); ii-=0)
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be negative due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to decrease on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; ii > 10; (ii+=0))
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; ii < 10; (ii) = (1-1)+(ii))
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be negative due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to decrease on each iteration of OpenMP for loop}}
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#pragma omp simd
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for ((ii = 0); ii > 10; (ii-=0))
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c[ii] = a[ii];
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'ii' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (ii = 0; (ii < 10); (ii-=0))
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c[ii] = a[ii];
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#ifndef OMP50
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// expected-note@+3 {{defined as private}}
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// expected-error@+3 {{loop iteration variable in the associated loop of 'omp simd' directive may not be private, predetermined as linear}}
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#endif // OMP50
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#pragma omp simd private(ii)
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for (ii = 0; ii < 10; ii++)
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c[ii] = a[ii];
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#ifndef OMP50
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// expected-note@+3 {{defined as lastprivate}}
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// expected-error@+3 {{loop iteration variable in the associated loop of 'omp simd' directive may not be lastprivate, predetermined as linear}}
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#endif // OMP50
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#pragma omp simd lastprivate(ii)
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for (ii = 0; ii < 10; ii++)
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c[ii] = a[ii];
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// expected-error@+1 {{unexpected OpenMP clause 'shared' in directive '#pragma omp simd'}}
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#pragma omp simd shared(ii)
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for (ii = 0; ii < 10; ii++)
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c[ii] = a[ii];
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#pragma omp simd linear(ii)
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for (ii = 0; ii < 10; ii++)
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c[ii] = a[ii];
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#pragma omp simd lastprivate(ii) linear(jj) collapse(2) // expected-note {{defined as linear}}
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for (ii = 0; ii < 10; ii++)
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for (jj = 0; jj < 10; jj++) // expected-error {{loop iteration variable in the associated loop of 'omp simd' directive may not be linear, predetermined as lastprivate}}
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c[ii] = a[jj];
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#pragma omp parallel
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{
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// expected-error@+2 {{loop iteration variable in the associated loop of 'omp simd' directive may not be threadprivate or thread local, predetermined as linear}}
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#pragma omp simd
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for (sii = 0; sii < 10; sii+=1)
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c[sii] = a[sii];
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}
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#pragma omp parallel
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{
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#pragma omp simd
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for (globalii = 0; globalii < 10; globalii+=1)
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c[globalii] = a[globalii];
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}
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#pragma omp parallel
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{
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#pragma omp simd collapse(2)
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for (ii = 0; ii < 10; ii += 1)
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for (globalii = 0; globalii < 10; globalii += 1)
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c[globalii] += a[globalii] + ii;
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}
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// omp4-error@+2 {{statement after '#pragma omp simd' must be a for loop}}
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#pragma omp simd
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for (auto &item : a) {
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item = item + 1;
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}
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'i' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (unsigned i = 9; i < 10; i--) {
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c[i] = a[i] + b[i];
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}
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int (*lb)[4] = nullptr;
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#pragma omp simd
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for (int (*p)[4] = lb; p < lb + 8; ++p) {
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}
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (int a{0}; a<10; ++a) {
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}
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return 0;
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}
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// Iterators allowed in openmp for-loops.
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namespace std {
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struct random_access_iterator_tag { };
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template <class Iter> struct iterator_traits {
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typedef typename Iter::difference_type difference_type;
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typedef typename Iter::iterator_category iterator_category;
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};
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template <class Iter>
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typename iterator_traits<Iter>::difference_type
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distance(Iter first, Iter last) { return first - last; }
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}
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class Iter0 {
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public:
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Iter0() { }
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Iter0(const Iter0 &) { }
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Iter0 operator ++() { return *this; }
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Iter0 operator --() { return *this; }
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Iter0 operator + (int delta) { return *this; }
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bool operator <(Iter0 a) { return true; }
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};
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// expected-note@+1 2 {{candidate function not viable: no known conversion from 'Iter1' to 'Iter0' for 1st argument}}
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int operator -(Iter0 a, Iter0 b) { return 0; }
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class Iter1 {
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public:
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Iter1(float f=0.0f, double d=0.0) { }
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Iter1(const Iter1 &) { }
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Iter1 operator ++() { return *this; }
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Iter1 operator --() { return *this; }
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bool operator <(Iter1 a) { return true; }
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bool operator >=(Iter1 a) { return false; }
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};
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class GoodIter {
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public:
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GoodIter() { }
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GoodIter(const GoodIter &) { }
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GoodIter(int fst, int snd) { }
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GoodIter &operator =(const GoodIter &that) { return *this; }
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GoodIter &operator =(const Iter0 &that) { return *this; }
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GoodIter &operator +=(int x) { return *this; }
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explicit GoodIter(void *) { }
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GoodIter operator ++() { return *this; }
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GoodIter operator --() { return *this; }
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bool operator !() { return true; }
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bool operator <(GoodIter a) { return true; }
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bool operator <=(GoodIter a) { return true; }
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bool operator >=(GoodIter a) { return false; }
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typedef int difference_type;
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typedef std::random_access_iterator_tag iterator_category;
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};
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// expected-note@+1 2 {{candidate function not viable: no known conversion from 'Iter1' to 'GoodIter' for 1st argument}}
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int operator -(GoodIter a, GoodIter b) { return 0; }
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// expected-note@+1 2 {{candidate function not viable: requires single argument 'a', but 2 arguments were provided}}
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GoodIter operator -(GoodIter a) { return a; }
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// expected-note@+1 2 {{candidate function not viable: no known conversion from 'Iter1' to 'GoodIter' for 1st argument}}
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GoodIter operator -(GoodIter a, int v) { return GoodIter(); }
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GoodIter operator +(GoodIter a, int v) { return GoodIter(); }
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// expected-note@+1 2 {{candidate function not viable: no known conversion from 'Iter1' to 'int' for 1st argument}}
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GoodIter operator -(int v, GoodIter a) { return GoodIter(); }
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GoodIter operator +(int v, GoodIter a) { return GoodIter(); }
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int test_with_random_access_iterator() {
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GoodIter begin, end;
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Iter0 begin0, end0;
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#pragma omp simd
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for (GoodIter I = begin; I < end; ++I)
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++I;
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (GoodIter &I = begin; I < end; ++I)
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++I;
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#pragma omp simd
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for (GoodIter I = begin; I >= end; --I)
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++I;
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (GoodIter I(begin); I < end; ++I)
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++I;
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (GoodIter I(nullptr); I < end; ++I)
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++I;
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (GoodIter I(0); I < end; ++I)
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++I;
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (GoodIter I(1,2); I < end; ++I)
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++I;
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#pragma omp simd
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for (begin = GoodIter(0); begin < end; ++begin)
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++begin;
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#pragma omp simd
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for (begin = GoodIter(1,2); begin < end; ++begin)
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++begin;
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// expected-error@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (++begin; begin < end; ++begin)
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++begin;
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#pragma omp simd
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for (begin = end; begin < end; ++begin)
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++begin;
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'I'}} omp5-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'I'}}
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#pragma omp simd
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for (GoodIter I = begin; I - I; ++I)
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++I;
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'I'}} omp5-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'I'}}
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#pragma omp simd
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for (GoodIter I = begin; begin < end; ++I)
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++I;
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// omp4-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', or '>=') of loop variable 'I'}} omp5-error@+2 {{condition of OpenMP for loop must be a relational comparison ('<', '<=', '>', '>=', or '!=') of loop variable 'I'}}
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#pragma omp simd
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for (GoodIter I = begin; !I; ++I)
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++I;
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// expected-note@+3 {{loop step is expected to be negative due to this condition}}
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// expected-error@+2 {{increment expression must cause 'I' to decrease on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (GoodIter I = begin; I >= end; I = I + 1)
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++I;
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#pragma omp simd
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for (GoodIter I = begin; I >= end; I = I - 1)
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++I;
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'I'}}
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#pragma omp simd
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for (GoodIter I = begin; I >= end; I = -I)
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++I;
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// expected-note@+3 {{loop step is expected to be negative due to this condition}}
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// expected-error@+2 {{increment expression must cause 'I' to decrease on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (GoodIter I = begin; I >= end; I = 2 + I)
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++I;
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// expected-error@+2 {{increment clause of OpenMP for loop must perform simple addition or subtraction on loop variable 'I'}}
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#pragma omp simd
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for (GoodIter I = begin; I >= end; I = 2 - I)
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++I;
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#pragma omp simd
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for (Iter0 I = begin0; I < end0; ++I)
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++I;
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// Initializer is constructor without params.
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (Iter0 I; I < end0; ++I)
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++I;
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Iter1 begin1, end1;
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// expected-error@+3 {{invalid operands to binary expression ('Iter1' and 'Iter1')}}
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// expected-error@+2 {{could not calculate number of iterations calling 'operator-' with upper and lower loop bounds}}
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#pragma omp simd
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for (Iter1 I = begin1; I < end1; ++I)
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++I;
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// expected-note@+3 {{loop step is expected to be negative due to this condition}}
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// expected-error@+2 {{increment expression must cause 'I' to decrease on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (Iter1 I = begin1; I >= end1; ++I)
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++I;
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// Initializer is constructor with all default params.
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// expected-error@+4 {{invalid operands to binary expression ('Iter1' and 'float')}}
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// expected-error@+3 {{could not calculate number of iterations calling 'operator-' with upper and lower loop bounds}}
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// expectedw-warning@+2 {{initialization clause of OpenMP for loop is not in canonical form ('var = init' or 'T var = init')}}
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#pragma omp simd
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for (Iter1 I; I < end1; ++I) {
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}
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return 0;
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}
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template <typename IT, int ST> class TC {
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public:
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int dotest_lt(IT begin, IT end) {
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// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'I' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (IT I = begin; I < end; I = I + ST) {
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|
++I;
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}
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|
// expected-note@+3 {{loop step is expected to be positive due to this condition}}
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// expected-error@+2 {{increment expression must cause 'I' to increase on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (IT I = begin; I <= end; I += ST) {
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++I;
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}
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#pragma omp simd
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for (IT I = begin; I < end; ++I) {
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|
++I;
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}
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|
}
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|
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static IT step() {
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return IT(ST);
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|
}
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|
};
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template <typename IT, int ST=0> int dotest_gt(IT begin, IT end) {
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// expected-note@+3 2 {{loop step is expected to be negative due to this condition}}
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|
// expected-error@+2 2 {{increment expression must cause 'I' to decrease on each iteration of OpenMP for loop}}
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#pragma omp simd
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for (IT I = begin; I >= end; I = I + ST) {
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|
++I;
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|
}
|
|
// expected-note@+3 2 {{loop step is expected to be negative due to this condition}}
|
|
// expected-error@+2 2 {{increment expression must cause 'I' to decrease on each iteration of OpenMP for loop}}
|
|
#pragma omp simd
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|
for (IT I = begin; I >= end; I += ST) {
|
|
++I;
|
|
}
|
|
|
|
// expected-note@+3 {{loop step is expected to be negative due to this condition}}
|
|
// expected-error@+2 {{increment expression must cause 'I' to decrease on each iteration of OpenMP for loop}}
|
|
#pragma omp simd
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|
for (IT I = begin; I >= end; ++I) {
|
|
++I;
|
|
}
|
|
|
|
#pragma omp simd
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|
for (IT I = begin; I < end; I+=TC<int,ST>::step()) {
|
|
++I;
|
|
}
|
|
}
|
|
|
|
void test_with_template() {
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|
GoodIter begin, end;
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|
TC<GoodIter, 100> t1;
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|
TC<GoodIter, -100> t2;
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|
t1.dotest_lt(begin, end);
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t2.dotest_lt(begin, end); // expected-note {{in instantiation of member function 'TC<GoodIter, -100>::dotest_lt' requested here}}
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|
dotest_gt(begin, end); // expected-note {{in instantiation of function template specialization 'dotest_gt<GoodIter, 0>' requested here}}
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|
dotest_gt<unsigned, 10>(0, 100); // expected-note {{in instantiation of function template specialization 'dotest_gt<unsigned int, 10>' requested here}}
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|
}
|
|
|
|
void test_loop_break() {
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|
const int N = 100;
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|
float a[N], b[N], c[N];
|
|
#pragma omp simd
|
|
for (int i = 0; i < 10; i++) {
|
|
c[i] = a[i] + b[i];
|
|
for (int j = 0; j < 10; ++j) {
|
|
if (a[i] > b[j])
|
|
break; // OK in nested loop
|
|
}
|
|
switch(i) {
|
|
case 1:
|
|
b[i]++;
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
if (c[i] > 10)
|
|
break; // expected-error {{'break' statement cannot be used in OpenMP for loop}}
|
|
|
|
if (c[i] > 11)
|
|
break; // expected-error {{'break' statement cannot be used in OpenMP for loop}}
|
|
}
|
|
|
|
#pragma omp simd
|
|
for (int i = 0; i < 10; i++) {
|
|
for (int j = 0; j < 10; j++) {
|
|
c[i] = a[i] + b[i];
|
|
if (c[i] > 10) {
|
|
if (c[i] < 20) {
|
|
break; // OK
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void test_loop_eh() {
|
|
const int N = 100;
|
|
float a[N], b[N], c[N];
|
|
#pragma omp simd
|
|
for (int i = 0; i < 10; i++) {
|
|
c[i] = a[i] + b[i];
|
|
try { // expected-error {{'try' statement cannot be used in OpenMP simd region}}
|
|
for (int j = 0; j < 10; ++j) {
|
|
if (a[i] > b[j])
|
|
throw a[i]; // expected-error {{'throw' statement cannot be used in OpenMP simd region}}
|
|
}
|
|
throw a[i]; // expected-error {{'throw' statement cannot be used in OpenMP simd region}}
|
|
}
|
|
catch (float f) {
|
|
if (f > 0.1)
|
|
throw a[i]; // expected-error {{'throw' statement cannot be used in OpenMP simd region}}
|
|
return; // expected-error {{cannot return from OpenMP region}}
|
|
}
|
|
switch(i) {
|
|
case 1:
|
|
b[i]++;
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
for (int j = 0; j < 10; j++) {
|
|
if (c[i] > 10)
|
|
throw c[i]; // expected-error {{'throw' statement cannot be used in OpenMP simd region}}
|
|
}
|
|
}
|
|
if (c[9] > 10)
|
|
throw c[9]; // OK
|
|
|
|
#pragma omp simd
|
|
for (int i = 0; i < 10; ++i) {
|
|
struct S {
|
|
void g() { throw 0; }
|
|
};
|
|
}
|
|
}
|
|
|