gcc/libgomp/testsuite/libgomp.oacc-c-c++-common/loop-gwv-1.c
Thomas Schwinge 087e545747 Strengthen a few OpenACC test cases
Rather than rubber-stamp whatever requested vs. actual device kernel launch
configuration happens, actually (again) verify the requested values (modulo
expected variations).

This better highlights that "AMD GCN has an upper limit of 'num_workers(16)'",
and the deficiency that "AMD GCN uses the autovectorizer for the vector
dimension: the use of a function call in vector-partitioned code [...] is not
currently supported".

And, this removes several instances of race conditions, where variables are
concurrently written to in OpenACC gang-redundant mode.

	libgomp/
	* testsuite/libgomp.oacc-c-c++-common/loop-gwv-1.c: Strengthen.
	* testsuite/libgomp.oacc-c-c++-common/loop-gwv-2.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-red-gwv-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-red-v-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-red-v-2.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-red-w-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-red-w-2.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-red-wv-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-v-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-w-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/loop-wv-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/routine-gwv-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/routine-v-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/routine-w-1.c: Likewise.
	* testsuite/libgomp.oacc-c-c++-common/routine-wv-1.c: Likewise.
2022-01-21 18:45:30 +01:00

89 lines
2.7 KiB
C

/* { dg-additional-options "-fopt-info-note-omp" }
{ dg-additional-options "--param=openacc-privatization=noisy" }
{ dg-additional-options "-foffload=-fopt-info-note-omp" }
{ dg-additional-options "-foffload=--param=openacc-privatization=noisy" }
for testing/documenting aspects of that functionality. */
#include <stdio.h>
#include <openacc.h>
#include <gomp-constants.h>
#define N (32*32*32+17)
int main ()
{
int ary[N];
int ix;
int exit = 0;
int ondev = 0;
int gangsize, workersize, vectorsize;
for (ix = 0; ix < N;ix++)
ary[ix] = -1;
#define NG 32
#define NW 32
#define VL 32
#pragma acc parallel num_gangs(NG) num_workers(NW) vector_length(VL) \
copy(ary) copy(ondev)
/* { dg-note {variable 'ix' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} "" { target *-*-* } .-2 } */
{
#pragma acc loop gang worker vector
/* { dg-note {variable 'ix' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} "" { target *-*-* } .-1 } */
/* { dg-note {variable 'g' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} "" { target *-*-* } .-2 } */
/* { dg-note {variable 'w' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} "" { target *-*-* } .-3 } */
/* { dg-note {variable 'v' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} "" { target *-*-* } .-4 } */
for (unsigned ix = 0; ix < N; ix++)
{
if (acc_on_device (acc_device_not_host))
{
int g, w, v;
g = __builtin_goacc_parlevel_id (GOMP_DIM_GANG);
w = __builtin_goacc_parlevel_id (GOMP_DIM_WORKER);
v = __builtin_goacc_parlevel_id (GOMP_DIM_VECTOR);
ary[ix] = (g << 16) | (w << 8) | v;
ondev = 1;
}
else
ary[ix] = ix;
}
}
gangsize = NG;
workersize = NW;
vectorsize = VL;
#ifdef ACC_DEVICE_TYPE_radeon
/* AMD GCN has an upper limit of 'num_workers(16)'. */
if (workersize > 16)
workersize = 16;
/* AMD GCN uses the autovectorizer for the vector dimension: the use
of a function call in vector-partitioned code in this test is not
currently supported. */
vectorsize = 1;
#endif
for (ix = 0; ix < N; ix++)
{
int expected = ix;
if(ondev)
{
int chunk_size = (N + gangsize * workersize * vectorsize - 1)
/ (gangsize * workersize * vectorsize);
int g = ix / (chunk_size * workersize * vectorsize);
int w = (ix / vectorsize) % workersize;
int v = ix % vectorsize;
expected = (g << 16) | (w << 8) | v;
}
if (ary[ix] != expected)
{
exit = 1;
printf ("ary[%d]=%x expected %x\n", ix, ary[ix], expected);
}
}
return exit;
}