llvm-project/clang/test/OpenMP/assumes_template_print.cpp
Sirraide c44fa3e8a9
[Clang] Refactor __attribute__((assume)) (#84934)
This is a followup to #81014 and #84582: Before this patch, Clang 
would accept `__attribute__((assume))` and `[[clang::assume]]` as 
nonstandard spellings for the `[[omp::assume]]` attribute; this 
resulted in a potentially very confusing name clash with C++23’s 
`[[assume]]` attribute (and GCC’s `assume` attribute with the same
semantics).

This pr replaces every usage of `__attribute__((assume))`  with 
`[[omp::assume]]` and makes `__attribute__((assume))` and 
`[[clang::assume]]` alternative spellings for C++23’s `[[assume]]`; 
this shouldn’t cause any problems due to differences in appertainment
and because almost no-one was using this variant spelling to begin
with (a use in libclc has already been changed to use a different
attribute).
2024-05-22 17:58:48 +02:00

92 lines
2.8 KiB
C++

// RUN: %clang_cc1 -verify -fopenmp -ast-print %s | FileCheck %s
// RUN: %clang_cc1 -fopenmp -x c++ -std=c++11 -emit-pch -o %t %s
// RUN: %clang_cc1 -fopenmp -std=c++11 -include-pch %t -verify %s -ast-print | FileCheck %s
// RUN: %clang_cc1 -verify -fopenmp-simd -ast-print %s | FileCheck %s
// RUN: %clang_cc1 -fopenmp-simd -x c++ -std=c++11 -emit-pch -o %t %s
// RUN: %clang_cc1 -fopenmp-simd -std=c++11 -include-pch %t -verify %s -ast-print | FileCheck %s
// expected-no-diagnostics
// It is unclear if we want to annotate the template instantiations, e.g., S<int>::foo, or not in the two
// situations shown below. Since it is always fair to drop assumptions, we do that for now.
#ifndef HEADER
#define HEADER
template <typename T>
struct S {
int a;
// CHECK: template <typename T> struct S {
// CHECK{LITERAL}: void foo() [[omp::assume("ompx_global_assumption")]] {
void foo() {
#pragma omp parallel
{}
}
};
// CHECK: template<> struct S<int> {
// CHECK{LITERAL}: void foo() [[omp::assume("ompx_global_assumption")]] {
#pragma omp begin assumes no_openmp
// CHECK{LITERAL}: [[omp::assume("omp_no_openmp")]] void S_with_assumes_no_call() [[omp::assume("ompx_global_assumption")]] {
void S_with_assumes_no_call() {
S<int> s;
s.a = 0;
}
// CHECK{LITERAL}: [[omp::assume("omp_no_openmp")]] void S_with_assumes_call() [[omp::assume("ompx_global_assumption")]] {
void S_with_assumes_call() {
S<int> s;
s.a = 0;
// If this is executed we have UB!
s.foo();
}
#pragma omp end assumes
// CHECK{LITERAL}: void S_without_assumes() [[omp::assume("ompx_global_assumption")]] {
void S_without_assumes() {
S<int> s;
s.foo();
}
#pragma omp assumes ext_global_assumption
// Same as the struct S above but the order in which we instantiate P is different, first outside of an assumes.
template <typename T>
struct P {
// CHECK: template <typename T> struct P {
// CHECK{LITERAL}: [[omp::assume("ompx_global_assumption")]] void foo() {
int a;
void foo() {
#pragma omp parallel
{}
}
};
// TODO: Avoid the duplication here:
// CHECK: template<> struct P<int> {
// CHECK{LITERAL}: [[omp::assume("ompx_global_assumption")]] [[omp::assume("ompx_global_assumption")]] void foo() {
// CHECK{LITERAL}: [[omp::assume("ompx_global_assumption")]] void P_without_assumes() {
void P_without_assumes() {
P<int> p;
p.foo();
}
#pragma omp begin assumes no_openmp
// CHECK{LITERAL}: [[omp::assume("omp_no_openmp")]] [[omp::assume("ompx_global_assumption")]] void P_with_assumes_no_call() {
void P_with_assumes_no_call() {
P<int> p;
p.a = 0;
}
// CHECK{LITERAL}: [[omp::assume("omp_no_openmp")]] [[omp::assume("ompx_global_assumption")]] void P_with_assumes_call() {
void P_with_assumes_call() {
P<int> p;
p.a = 0;
// If this is executed we have UB!
p.foo();
}
#pragma omp end assumes
#endif