Currently checks for active data-sharing attributes for variables are performed for found var decls. Instead these checks must be performed for canonical decls of these variables to avoid possible troubles with with the differently qualified re-declarations of the same variable, for example:
namespace A { int x; }
namespace B { using A::x; }
Both A::x and B::x actually reference the same object A::x and this fact must be taken into account during data-sharing attributes analysis.
llvm-svn: 235096
90 lines
3.6 KiB
C++
90 lines
3.6 KiB
C++
// RUN: %clang_cc1 -verify -fopenmp=libiomp5 -ferror-limit 100 %s
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void foo() {
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}
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bool foobool(int argc) {
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return argc;
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}
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struct S1; // expected-note {{declared here}} expected-note{{forward declaration of 'S1'}}
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extern S1 a;
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class S2 {
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mutable int a;
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public:
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S2():a(0) { }
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static float S2s;
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};
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const S2 b;
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const S2 ba[5];
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class S3 {
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int a;
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public:
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S3():a(0) { }
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};
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const S3 c; // expected-note {{global variable is predetermined as shared}}
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const S3 ca[5]; // expected-note {{global variable is predetermined as shared}}
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extern const int f; // expected-note {{global variable is predetermined as shared}}
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class S4 {
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int a;
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S4(); // expected-note {{implicitly declared private here}}
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public:
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S4(int v):a(v) { }
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};
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class S5 {
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int a;
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S5():a(0) {} // expected-note {{implicitly declared private here}}
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public:
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S5(int v):a(v) { }
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};
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int threadvar;
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#pragma omp threadprivate(threadvar) // expected-note {{defined as threadprivate or thread local}}
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namespace A {
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double x;
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#pragma omp threadprivate(x) // expected-note {{defined as threadprivate or thread local}}
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}
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namespace B {
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using A::x;
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}
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int main(int argc, char **argv) {
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const int d = 5; // expected-note {{constant variable is predetermined as shared}}
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const int da[5] = { 0 }; // expected-note {{constant variable is predetermined as shared}}
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S4 e(4);
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S5 g[] = {5, 6};
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int i;
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int &j = i; // expected-note {{'j' defined here}}
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#pragma omp parallel private // expected-error {{expected '(' after 'private'}}
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#pragma omp parallel private ( // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
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#pragma omp parallel private () // expected-error {{expected expression}}
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#pragma omp parallel private (argc // expected-error {{expected ')'}} expected-note {{to match this '('}}
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#pragma omp parallel private (argc, // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
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#pragma omp parallel private (argc > 0 ? argv[1] : argv[2]) // expected-error {{expected variable name}}
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#pragma omp parallel private (argc argv) // expected-error {{expected ',' or ')' in 'private' clause}}
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#pragma omp parallel private (S1) // expected-error {{'S1' does not refer to a value}}
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#pragma omp parallel private (a, b, c, d, f) // expected-error {{a private variable with incomplete type 'S1'}} expected-error 3 {{shared variable cannot be private}}
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#pragma omp parallel private (argv[1]) // expected-error {{expected variable name}}
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#pragma omp parallel private(ba)
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#pragma omp parallel private(ca) // expected-error {{shared variable cannot be private}}
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#pragma omp parallel private(da) // expected-error {{shared variable cannot be private}}
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#pragma omp parallel private(S2::S2s)
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#pragma omp parallel private(e, g) // expected-error {{calling a private constructor of class 'S4'}} expected-error {{calling a private constructor of class 'S5'}}
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#pragma omp parallel private(threadvar, B::x) // expected-error 2 {{threadprivate or thread local variable cannot be private}}
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#pragma omp parallel shared(i), private(i) // expected-error {{shared variable cannot be private}} expected-note {{defined as shared}}
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foo();
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#pragma omp parallel firstprivate(i) private(i) // expected-error {{firstprivate variable cannot be private}} expected-note {{defined as firstprivate}}
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foo();
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#pragma omp parallel private(i)
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#pragma omp parallel private(j) // expected-error {{arguments of OpenMP clause 'private' cannot be of reference type 'int &'}}
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foo();
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#pragma omp parallel firstprivate(i)
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for (int k = 0; k < 10; ++k) {
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#pragma omp parallel private(i)
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foo();
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}
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return 0;
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}
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