/* { 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 #include #include #include #include #if 0 #define DEBUG(DIM, IDX, VAL) \ fprintf (stderr, "%sdist[%d] = %d\n", (DIM), (IDX), (VAL)) #else #define DEBUG(DIM, IDX, VAL) #endif #define N (32*32*32) int check (const char *dim, int *dist, int dimsize) { int ix; int exit = 0; for (ix = 0; ix < dimsize; ix++) { DEBUG(dim, ix, dist[ix]); if (dist[ix] < (N) / (dimsize + 0.5) || dist[ix] > (N) / (dimsize - 0.5)) { fprintf (stderr, "did not distribute to %ss (%d not between %d " "and %d)\n", dim, dist[ix], (int) ((N) / (dimsize + 0.5)), (int) ((N) / (dimsize - 0.5))); exit |= 1; } } return exit; } int main () { int ary[N]; int ix; int exit = 0; int gangsize, workersize, vectorsize; int *gangdist, *workerdist, *vectordist; 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) /* { 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++) { 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; } } gangsize = NG; workersize = NW; vectorsize = VL; #if defined ACC_DEVICE_TYPE_host gangsize = 1; workersize = 1; vectorsize = 1; #elif defined 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 gangdist = (int *) __builtin_alloca (gangsize * sizeof (int)); workerdist = (int *) __builtin_alloca (workersize * sizeof (int)); vectordist = (int *) __builtin_alloca (vectorsize * sizeof (int)); memset (gangdist, 0, gangsize * sizeof (int)); memset (workerdist, 0, workersize * sizeof (int)); memset (vectordist, 0, vectorsize * sizeof (int)); /* Test that work is shared approximately equally amongst each active gang/worker/vector. */ for (ix = 0; ix < N; ix++) { int g = (ary[ix] >> 16) & 255; int w = (ary[ix] >> 8) & 255; int v = ary[ix] & 255; if (g >= gangsize || w >= workersize || v >= vectorsize) __builtin_abort (); gangdist[g]++; workerdist[w]++; vectordist[v]++; } exit = check ("gang", gangdist, gangsize); exit |= check ("worker", workerdist, workersize); exit |= check ("vector", vectordist, vectorsize); return exit; }