blob: c3c0100f052d1039095427ab043edc1bb9dac9f2 [file] [log] [blame]
/* { dg-do run } */
#ifndef MONOTONIC_TYPE
#include <omp.h>
#include <stdlib.h>
#define MONOTONIC_TYPE int
#define MONOTONIC_UNDEF -1
#define MONOTONIC_END(n) n
#endif
int
main ()
{
MONOTONIC_TYPE i;
#pragma omp parallel
{
int cnt = omp_get_num_threads ();
int thr = omp_get_thread_num ();
MONOTONIC_TYPE l = MONOTONIC_UNDEF;
int c = 0;
int n = 0;
#pragma omp for nowait schedule(static, 5)
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
{
if (l >= i)
abort ();
if (cnt == 1)
abort ();
if (n != 5)
abort ();
n = 1;
c++;
}
if (n == 1)
{
if ((i % 5) != 0)
abort ();
if ((i / 5) % cnt != thr)
abort ();
}
l = i;
}
if (cnt == 1)
{
if (n != 73 || l != 73 - 1 || c != 1)
abort ();
}
else if (thr > 73 / 5)
{
if (l != MONOTONIC_UNDEF || c != 0 || n != 0)
abort ();
}
else if (thr == 73 / 5)
{
if (l != 73 - 1 || c != 1 || n != 73 % 5)
abort ();
}
else if (c == 0)
abort ();
else if (l == 73 - 1)
{
if (thr != (73 / 5) % cnt || n != 73 % 5)
abort ();
}
else if ((n % 5) != 0)
abort ();
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for schedule( monotonic: static, 7) nowait
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
{
if (l >= i)
abort ();
if (cnt == 1)
abort ();
if (n != 7)
abort ();
n = 1;
c++;
}
if (n == 1)
{
if ((i % 7) != 0)
abort ();
if ((i / 7) % cnt != thr)
abort ();
}
l = i;
}
if (cnt == 1)
{
if (n != 73 || l != 73 - 1 || c != 1)
abort ();
}
else if (thr > 73 / 7)
{
if (l != MONOTONIC_UNDEF || c != 0 || n != 0)
abort ();
}
else if (thr == 73 / 7)
{
if (l != 73 - 1 || c != 1 || n != 73 % 7)
abort ();
}
else if (c == 0)
abort ();
else if (l == 73 - 1)
{
if (thr != (73 / 7) % cnt || n != 73 % 7)
abort ();
}
else if ((n % 7) != 0)
abort ();
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for nowait schedule(static)
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
abort ();
l = i;
}
if (c > 1)
abort ();
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for nowait schedule(monotonic,simd:static)
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
abort ();
l = i;
}
if (c > 1)
abort ();
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for schedule(monotonic : dynamic, 5) nowait
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
{
if (l >= i)
abort ();
if ((n % 5) != 0 || n == 0)
abort ();
n = 1;
c++;
}
l = i;
}
if (l == 73 - 1)
{
if (n % 5 != 73 % 5)
abort ();
}
else if (l == MONOTONIC_UNDEF)
{
if (n != 0 || c != 0)
abort ();
}
else if ((n % 5) != 0 || n == 0)
abort ();
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for nowait schedule(dynamic, 7) ordered(1)
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
{
if (l >= i)
abort ();
if ((n % 7) != 0 || n == 0)
abort ();
n = 1;
c++;
}
#pragma omp ordered depend(source)
if (MONOTONIC_UNDEF > 0)
{
#pragma omp ordered depend(sink: i)
}
else
{
#pragma omp ordered depend(sink: i - 1)
}
l = i;
}
if (l == 73 - 1)
{
if (n % 7 != 73 % 7)
abort ();
}
else if (l == MONOTONIC_UNDEF)
{
if (n != 0 || c != 0)
abort ();
}
else if ((n % 7) != 0 || n == 0)
abort ();
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for schedule (monotonic :guided , 7) nowait
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
{
if (l >= i)
abort ();
if (n < 7)
abort ();
n = 1;
c++;
}
l = i;
}
l = MONOTONIC_UNDEF;
c = 0;
n = 0;
#pragma omp for nowait schedule(guided, 7) ordered
for (i = 0; i < MONOTONIC_END (73); i++)
{
if (l == MONOTONIC_UNDEF)
{
n = 1;
c++;
}
else if (l == i - 1)
n++;
else
{
if (l >= i)
abort ();
if (n < 7)
abort ();
n = 1;
c++;
}
#pragma omp ordered
l = i;
}
}
return 0;
}