Add 'libgomp.oacc-fortran/declare-allocatable-1.f90'
libgomp/ * testsuite/libgomp.oacc-fortran/declare-allocatable-1.f90: New. Co-authored-by: Thomas Schwinge <thomas@codesourcery.com>
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libgomp/testsuite/libgomp.oacc-fortran/declare-allocatable-1.f90
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libgomp/testsuite/libgomp.oacc-fortran/declare-allocatable-1.f90
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! Test OpenACC 'declare create' with allocatable arrays.
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! { dg-do run }
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!TODO-OpenACC-declare-allocate
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! Not currently implementing correct '-DACC_MEM_SHARED=0' behavior:
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! Missing support for OpenACC "Changes from Version 2.0 to 2.5":
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! "The 'declare create' directive with a Fortran 'allocatable' has new behavior".
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! { dg-xfail-run-if TODO { *-*-* } { -DACC_MEM_SHARED=0 } }
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!TODO { dg-additional-options -fno-inline } for stable results regarding OpenACC 'routine'.
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! { dg-additional-options -fopt-info-all-omp }
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! { dg-additional-options -foffload=-fopt-info-all-omp }
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! { dg-additional-options --param=openacc-privatization=noisy }
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! { dg-additional-options -foffload=--param=openacc-privatization=noisy }
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! Prune a few: uninteresting, and potentially varying depending on GCC configuration (data types):
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! { dg-prune-output {note: variable '[Di]\.[0-9]+' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} }
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! { dg-additional-options -Wopenacc-parallelism }
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! It's only with Tcl 8.5 (released in 2007) that "the variable 'varName'
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! passed to 'incr' may be unset, and in that case, it will be set to [...]",
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! so to maintain compatibility with earlier Tcl releases, we manually
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! initialize counter variables:
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! { dg-line l_dummy[variable c 0] }
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! { dg-message dummy {} { target iN-VAl-Id } l_dummy } to avoid
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! "WARNING: dg-line var l_dummy defined, but not used".
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module vars
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implicit none
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integer, parameter :: n = 100
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real*8, allocatable :: b(:)
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!$acc declare create (b)
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end module vars
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program test
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use vars
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use openacc
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implicit none
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real*8 :: a
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integer :: i
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interface
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subroutine sub1
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!$acc routine gang
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end subroutine sub1
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subroutine sub2
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end subroutine sub2
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real*8 function fun1 (ix)
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integer ix
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!$acc routine seq
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end function fun1
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real*8 function fun2 (ix)
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integer ix
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!$acc routine seq
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end function fun2
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end interface
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if (allocated (b)) error stop
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! Test local usage of an allocated declared array.
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allocate (b(n))
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if (.not.allocated (b)) error stop
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if (.not.acc_is_present (b)) error stop
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a = 2.0
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!$acc parallel loop ! { dg-line l[incr c] }
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! { dg-note {variable 'i' in 'private' clause is candidate for adjusting OpenACC privatization level} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' ought to be adjusted for OpenACC privatization level: 'vector'} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' adjusted for OpenACC privatization level: 'vector'} {} { target { ! openacc_host_selected } } l$c }
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! { dg-note {variable 'i\.[0-9]+' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} {} { target *-*-* } l$c }
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! { dg-optimized {assigned OpenACC gang vector loop parallelism} {} { target *-*-* } l$c }
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do i = 1, n
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b(i) = i * a
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end do
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if (.not.acc_is_present (b)) error stop
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!$acc update host(b)
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do i = 1, n
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if (b(i) /= i*a) error stop
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end do
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deallocate (b)
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! Test the usage of an allocated declared array inside an acc
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! routine subroutine.
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allocate (b(n))
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if (.not.allocated (b)) error stop
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if (.not.acc_is_present (b)) error stop
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!$acc parallel
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call sub1 ! { dg-line l[incr c] }
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! { dg-optimized {assigned OpenACC gang worker vector loop parallelism} {} { target *-*-* } l$c }
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!$acc end parallel
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if (.not.acc_is_present (b)) error stop
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!$acc update host(b)
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do i = 1, n
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if (b(i) /= i*2) error stop
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end do
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deallocate (b)
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! Test the usage of an allocated declared array inside a host
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! subroutine.
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call sub2
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if (.not.acc_is_present (b)) error stop
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!$acc update host(b)
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do i = 1, n
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if (b(i) /= 1.0) error stop
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end do
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deallocate (b)
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if (allocated (b)) error stop
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! Test the usage of an allocated declared array inside an acc
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! routine function.
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allocate (b(n))
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if (.not.allocated (b)) error stop
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if (.not.acc_is_present (b)) error stop
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!$acc parallel loop ! { dg-line l[incr c] }
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! { dg-note {variable 'i' in 'private' clause is candidate for adjusting OpenACC privatization level} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' ought to be adjusted for OpenACC privatization level: 'vector'} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' adjusted for OpenACC privatization level: 'vector'} {} { target { ! openacc_host_selected } } l$c }
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! { dg-note {variable 'i\.[0-9]+' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} {} { target *-*-* } l$c }
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! { dg-optimized {assigned OpenACC gang vector loop parallelism} {} { target *-*-* } l$c }
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do i = 1, n
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b(i) = 1.0
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end do
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!$acc parallel loop ! { dg-line l[incr c] }
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! { dg-note {variable 'i' in 'private' clause is candidate for adjusting OpenACC privatization level} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' ought to be adjusted for OpenACC privatization level: 'vector'} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' adjusted for OpenACC privatization level: 'vector'} {} { target { ! openacc_host_selected } } l$c }
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! { dg-note {variable 'i\.[0-9]+' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} {} { target *-*-* } l$c }
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! { dg-optimized {assigned OpenACC gang vector loop parallelism} {} { target *-*-* } l$c }
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do i = 1, n
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b(i) = fun1 (i) ! { dg-line l[incr c] }
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! { dg-optimized {assigned OpenACC seq loop parallelism} {} { target *-*-* } l$c }
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end do
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if (.not.acc_is_present (b)) error stop
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!$acc update host(b)
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do i = 1, n
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if (b(i) /= i) error stop
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end do
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deallocate (b)
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! Test the usage of an allocated declared array inside a host
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! function.
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allocate (b(n))
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if (.not.allocated (b)) error stop
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if (.not.acc_is_present (b)) error stop
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!$acc parallel loop ! { dg-line l[incr c] }
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! { dg-note {variable 'i' in 'private' clause is candidate for adjusting OpenACC privatization level} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' ought to be adjusted for OpenACC privatization level: 'vector'} {} { target *-*-* } l$c }
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! { dg-note {variable 'i' adjusted for OpenACC privatization level: 'vector'} {} { target { ! openacc_host_selected } } l$c }
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! { dg-note {variable 'i\.[0-9]+' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} {} { target *-*-* } l$c }
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! { dg-optimized {assigned OpenACC gang vector loop parallelism} {} { target *-*-* } l$c }
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do i = 1, n
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b(i) = 1.0
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end do
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!$acc update host(b)
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do i = 1, n
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b(i) = fun2 (i)
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end do
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if (.not.acc_is_present (b)) error stop
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do i = 1, n
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if (b(i) /= i*i) error stop
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end do
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deallocate (b)
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end program test ! { dg-line l[incr c] }
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! { dg-bogus {note: variable 'overflow\.[0-9]+' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} {TODO n/a} { xfail *-*-* } l$c }
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! { dg-bogus {note: variable 'not_prev_allocated\.[0-9]+' declared in block isn't candidate for adjusting OpenACC privatization level: not addressable} {TODO n/a} { xfail *-*-* } l$c }
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! { dg-bogus {note: variable 'parm\.[0-9]+' declared in block isn't candidate for adjusting OpenACC privatization level: artificial} {TODO n/a} { xfail *-*-* } l$c }
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! Set each element in array 'b' at index i to i*2.
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subroutine sub1 ! { dg-line subroutine_sub1 }
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use vars
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implicit none
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integer i
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!$acc routine gang
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! { dg-bogus {[Ww]arning: region is worker partitioned but does not contain worker partitioned code} {TODO default 'gang' 'vector'} { xfail *-*-* } subroutine_sub1 }
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!$acc loop ! { dg-line l[incr c] }
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! { dg-note {variable 'i' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} {} { target *-*-* } l$c }
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! { dg-optimized {assigned OpenACC gang vector loop parallelism} {} { target *-*-* } l$c }
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do i = 1, n
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b(i) = i*2
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end do
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end subroutine sub1
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! Allocate array 'b', and set it to all 1.0.
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subroutine sub2
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use vars
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use openacc
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implicit none
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integer i
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allocate (b(n))
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if (.not.allocated (b)) error stop
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if (.not.acc_is_present (b)) error stop
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!$acc parallel loop ! { dg-line l[incr c] }
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! { dg-note {variable 'i' in 'private' clause isn't candidate for adjusting OpenACC privatization level: not addressable} {} { target *-*-* } l$c }
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! { dg-optimized {assigned OpenACC gang vector loop parallelism} {} { target *-*-* } l$c }
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do i = 1, n
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b(i) = 1.0
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end do
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end subroutine sub2
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! Return b(i) * i;
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real*8 function fun1 (i)
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use vars
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implicit none
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integer i
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!$acc routine seq
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fun1 = b(i) * i
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end function fun1
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! Return b(i) * i * i;
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real*8 function fun2 (i)
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use vars
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implicit none
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integer i
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fun2 = b(i) * i * i
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end function fun2
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