gcc/libgomp/testsuite/libgomp.oacc-fortran/kernels-private-vars-loop-worker-4.f90
Tobias Burnus ffbdd78a4a Fortran] OpenACC – libgomp/testsuite – use 'stop' and 'dg-do run'
* testsuite/libgomp.oacc-fortran/abort-1.f90: Add 'dg-do run'.
        * testsuite/libgomp.oacc-fortran/abort-2.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/acc_on_device-1-1.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/acc_on_device-1-2.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/acc_on_device-1-3.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/lib-1.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/common-block-1.f90:
        Use 'stop' not abort().
        * testsuite/libgomp.oacc-fortran/common-block-2.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/common-block-3.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/data-1.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/data-2.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/data-5.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/dummy-array.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/gemm-2.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/gemm.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/host_data-2.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/host_data-3.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/host_data-4.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-collapse-3.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-collapse-4.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-independent.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-loop-1.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-map-1.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-parallel-loop-data-enter-exit.f95:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-loop-gang-1.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-loop-gang-2.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-loop-gang-3.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-loop-gang-6.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-vector-1.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-vector-2.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-1.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-2.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-3.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-4.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-5.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-6.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-private-vars-worker-7.f90:
        Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-reduction-1.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/lib-12.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/lib-13.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/lib-14.f90: Ditto.
        * testsuite/libgomp.oacc-fortran/kernels-acc-loop-reduction-2.f90:
        Likewise and also add 'dg-do run'.
        * testsuite/libgomp.oacc-fortran/kernels-acc-loop-reduction.f90:
        Ditto.

From-SVN: r277503
2019-10-28 08:39:26 +01:00

46 lines
1.0 KiB
Fortran

! Test of worker-private variables declared on a loop directive, broadcasting
! to vector-partitioned mode. Successive vector loops. */
! { dg-do run }
program main
integer :: x, i, j, k, idx, arr(0:32*32*32)
do i = 0, 32*32*32-1
arr(i) = i
end do
!$acc kernels copy(arr)
!$acc loop gang(num:32)
do i = 0, 31
!$acc loop worker(num:8) private(x)
do j = 0, 31
x = ieor(i, j * 3)
!$acc loop vector(length:32)
do k = 0, 31
arr(i * 1024 + j * 32 + k) = arr(i * 1024 + j * 32 + k) + x * k
end do
x = ior(i, j * 5)
!$acc loop vector(length:32)
do k = 0, 31
arr(i * 1024 + j * 32 + k) = arr(i * 1024 + j * 32 + k) + x * k
end do
end do
end do
!$acc end kernels
do i = 0, 32 - 1
do j = 0, 32 -1
do k = 0, 32 - 1
idx = i * 1024 + j * 32 + k
if (arr(idx) .ne. idx + ieor(i, j * 3) * k + ior(i, j * 5) * k) then
stop 1
end if
end do
end do
end do
end program main