extern int omp_default_mem_alloc;
void foo() {
}
bool foobool(int argc) {
return argc;
}
void xxx(int argc) {
int fp; #pragma omp parallel sections firstprivate(fp)
{
for (int i = 0; i < 10; ++i)
;
}
}
struct S1; extern S1 a;
class S2 {
mutable int a;
public:
S2() : a(0) {}
S2(const S2 &s2) : a(s2.a) {}
static float S2s;
static const float S2sc;
};
const float S2::S2sc = 0;
const S2 b;
const S2 ba[5];
class S3 {
int a;
S3 &operator=(const S3 &s3);
public:
S3() : a(0) {}
S3(const S3 &s3) : a(s3.a) {}
};
const S3 c;
const S3 ca[5];
extern const int f;
class S4 {
int a;
S4();
S4(const S4 &s4);
public:
S4(int v) : a(v) {}
};
class S5 {
int a;
S5(const S5 &s5) : a(s5.a) {}
public:
S5() : a(0) {}
S5(int v) : a(v) {}
};
class S6 {
int a;
S6() : a(0) {}
public:
S6(const S6 &s6) : a(s6.a) {}
S6(int v) : a(v) {}
};
S3 h;
#pragma omp threadprivate(h)
template <class I, class C>
int foomain(int argc, char **argv) {
I e(4);
C g(5);
int i, z;
int &j = i;
#pragma omp parallel sections firstprivate
{
foo();
}
#pragma omp parallel sections firstprivate(
{
foo();
}
#pragma omp parallel sections firstprivate()
{
foo();
}
#pragma omp parallel sections firstprivate(argc
{
foo();
}
#pragma omp parallel sections firstprivate(argc,
{
foo();
}
#pragma omp parallel sections firstprivate(argc > 0 ? argv[1] : argv[2])
{
foo();
}
#pragma omp parallel sections firstprivate(argc) allocate , allocate(, allocate(omp_default , allocate(omp_default_mem_alloc, allocate(omp_default_mem_alloc:, allocate(omp_default_mem_alloc: argc, allocate(omp_default_mem_alloc: argv), allocate(argv)
{
foo();
}
#pragma omp parallel sections firstprivate(S1)
{
foo();
}
#pragma omp parallel sections firstprivate(z, a, b)
{
foo();
}
#pragma omp parallel sections firstprivate(argv[1])
{
foo();
}
#pragma omp parallel sections firstprivate(e, g)
{
foo();
}
#pragma omp parallel sections firstprivate(h)
{
foo();
}
#pragma omp parallel sections linear(i)
{
foo();
}
#pragma omp parallel
{
int v = 0;
int i;
#pragma omp parallel sections firstprivate(i)
{
foo();
}
v += i;
}
#pragma omp parallel shared(i)
#pragma omp parallel private(i)
#pragma omp parallel sections firstprivate(j)
{
foo();
}
#pragma omp parallel sections firstprivate(i)
{
foo();
}
#pragma omp parallel sections lastprivate(g) firstprivate(g)
{
foo();
}
#pragma omp parallel private(i)
#pragma omp parallel sections firstprivate(i)
{
foo();
}
#pragma omp parallel reduction(+ : i)
#pragma omp parallel sections firstprivate(i)
{
foo();
}
return 0;
}
namespace A {
double x;
#pragma omp threadprivate(x)
}
namespace B {
using A::x;
}
int main(int argc, char **argv) {
const int d = 5;
const int da[5] = {0};
S4 e(4);
S5 g(5);
S3 m;
S6 n(2);
int i, z;
int &j = i;
#pragma omp parallel sections firstprivate
{
foo();
}
#pragma omp parallel sections firstprivate(
{
foo();
}
#pragma omp parallel sections firstprivate()
{
foo();
}
#pragma omp parallel sections firstprivate(argc
{
foo();
}
#pragma omp parallel sections firstprivate(argc,
{
foo();
}
#pragma omp parallel sections firstprivate(argc > 0 ? argv[1] : argv[2])
{
foo();
}
#pragma omp parallel sections firstprivate(argc, z)
{
foo();
}
#pragma omp parallel sections firstprivate(S1)
{
foo();
}
#pragma omp parallel sections firstprivate(a, b, c, d, f)
{
foo();
}
#pragma omp parallel sections firstprivate(argv[1])
{
foo();
}
#pragma omp parallel sections firstprivate(2 * 2)
{
foo();
}
#pragma omp parallel sections firstprivate(ba)
{
foo();
}
#pragma omp parallel sections firstprivate(ca)
{
foo();
}
#pragma omp parallel sections firstprivate(da)
{
foo();
}
int xa;
#pragma omp parallel sections firstprivate(xa)
{
foo();
}
#pragma omp parallel sections firstprivate(S2::S2s)
{
foo();
}
#pragma omp parallel sections firstprivate(S2::S2sc)
{
foo();
}
#pragma omp parallel sections safelen(5)
{
foo();
}
#pragma omp parallel sections firstprivate(e, g)
{
foo();
}
#pragma omp parallel sections firstprivate(m)
{
foo();
}
#pragma omp parallel sections firstprivate(h, B::x)
{
foo();
}
#pragma omp parallel sections private(xa), firstprivate(xa)
{
foo();
}
#pragma omp parallel shared(xa)
#pragma omp parallel sections firstprivate(xa)
{
foo();
}
#pragma omp parallel sections firstprivate(j)
{
foo();
}
#pragma omp parallel sections lastprivate(g) firstprivate(g)
{
foo();
}
#pragma omp parallel sections lastprivate(n) firstprivate(n)
{
foo();
}
#pragma omp parallel
{
int v = 0;
int i;
#pragma omp parallel sections firstprivate(i)
{
foo();
}
v += i;
}
#pragma omp parallel private(i)
#pragma omp parallel sections firstprivate(i)
{
foo();
}
#pragma omp parallel reduction(+ : i)
#pragma omp parallel sections firstprivate(i)
{
foo();
}
static int r;
#pragma omp parallel sections firstprivate(r)
{
foo();
}
return foomain<S4, S5>(argc, argv); }