1! RUN: bbc -emit-hlfir -fopenmp -o - %s | FileCheck %s 2! RUN: %flang_fc1 -emit-hlfir -fopenmp -o - %s | FileCheck %s 3 4program reduce_assumed_shape 5real(8), dimension(2) :: r 6r = 0 7call reduce(r) 8print *, r 9 10contains 11subroutine reduce(r) 12 implicit none 13 real(8),intent(inout) :: r(:) 14 integer :: i = 0 15 16 !$omp parallel do reduction(+:r) 17 do i=0,10 18 r(1) = i 19 r(2) = 1 20 enddo 21 !$omp end parallel do 22end subroutine 23end program 24 25! CHECK-LABEL: omp.declare_reduction @add_reduction_byref_box_Uxf64 : !fir.ref<!fir.box<!fir.array<?xf64>>> alloc { 26! CHECK: %[[VAL_8:.*]] = fir.alloca !fir.box<!fir.array<?xf64>> 27! CHECK: omp.yield(%[[VAL_8]] : !fir.ref<!fir.box<!fir.array<?xf64>>>) 28! CHECK-LABEL: } init { 29! CHECK: ^bb0(%[[VAL_0:.*]]: !fir.ref<!fir.box<!fir.array<?xf64>>>, %[[ALLOC:.*]]: !fir.ref<!fir.box<!fir.array<?xf64>>>): 30! CHECK: %[[VAL_1:.*]] = arith.constant 0.000000e+00 : f64 31! CHECK: %[[VAL_2:.*]] = fir.load %[[VAL_0]] : !fir.ref<!fir.box<!fir.array<?xf64>>> 32! CHECK: %[[VAL_3:.*]] = arith.constant 0 : index 33! CHECK: %[[VAL_4:.*]]:3 = fir.box_dims %[[VAL_2]], %[[VAL_3]] : (!fir.box<!fir.array<?xf64>>, index) -> (index, index, index) 34! CHECK: %[[VAL_5:.*]] = fir.shape %[[VAL_4]]#1 : (index) -> !fir.shape<1> 35! CHECK: %[[VAL_6:.*]] = fir.allocmem !fir.array<?xf64>, %[[VAL_4]]#1 {bindc_name = ".tmp", uniq_name = ""} 36! CHECK: %[[TRUE:.*]] = arith.constant true 37! CHECK: %[[VAL_7:.*]]:2 = hlfir.declare %[[VAL_6]](%[[VAL_5]]) {uniq_name = ".tmp"} : (!fir.heap<!fir.array<?xf64>>, !fir.shape<1>) -> (!fir.box<!fir.array<?xf64>>, !fir.heap<!fir.array<?xf64>>) 38! CHECK: %[[C0:.*]] = arith.constant 0 : index 39! CHECK: %[[DIMS:.*]]:3 = fir.box_dims %[[VAL_2]], %[[C0]] : (!fir.box<!fir.array<?xf64>>, index) -> (index, index, index) 40! CHECK: %[[SHIFT:.*]] = fir.shape_shift %[[DIMS]]#0, %[[DIMS]]#1 : (index, index) -> !fir.shapeshift<1> 41! CHECK: %[[REBOX:.*]] = fir.rebox %[[VAL_7]]#0(%[[SHIFT]]) : (!fir.box<!fir.array<?xf64>>, !fir.shapeshift<1>) -> !fir.box<!fir.array<?xf64> 42! CHECK: hlfir.assign %[[VAL_1]] to %[[REBOX]] : f64, !fir.box<!fir.array<?xf64>> 43! CHECK: fir.store %[[REBOX]] to %[[ALLOC]] : !fir.ref<!fir.box<!fir.array<?xf64>>> 44! CHECK: omp.yield(%[[ALLOC]] : !fir.ref<!fir.box<!fir.array<?xf64>>>) 45! CHECK-LABEL: } combiner { 46! CHECK: ^bb0(%[[VAL_0:.*]]: !fir.ref<!fir.box<!fir.array<?xf64>>>, %[[VAL_1:.*]]: !fir.ref<!fir.box<!fir.array<?xf64>>>): 47! CHECK: %[[VAL_2:.*]] = fir.load %[[VAL_0]] : !fir.ref<!fir.box<!fir.array<?xf64>>> 48! CHECK: %[[VAL_3:.*]] = fir.load %[[VAL_1]] : !fir.ref<!fir.box<!fir.array<?xf64>>> 49! CHECK: %[[VAL_4:.*]] = arith.constant 0 : index 50! CHECK: %[[VAL_5:.*]]:3 = fir.box_dims %[[VAL_2]], %[[VAL_4]] : (!fir.box<!fir.array<?xf64>>, index) -> (index, index, index) 51! CHECK: %[[VAL_6:.*]] = fir.shape_shift %[[VAL_5]]#0, %[[VAL_5]]#1 : (index, index) -> !fir.shapeshift<1> 52! CHECK: %[[VAL_7:.*]] = arith.constant 1 : index 53! CHECK: fir.do_loop %[[VAL_8:.*]] = %[[VAL_7]] to %[[VAL_5]]#1 step %[[VAL_7]] unordered { 54! CHECK: %[[VAL_9:.*]] = fir.array_coor %[[VAL_2]](%[[VAL_6]]) %[[VAL_8]] : (!fir.box<!fir.array<?xf64>>, !fir.shapeshift<1>, index) -> !fir.ref<f64> 55! CHECK: %[[VAL_10:.*]] = fir.array_coor %[[VAL_3]](%[[VAL_6]]) %[[VAL_8]] : (!fir.box<!fir.array<?xf64>>, !fir.shapeshift<1>, index) -> !fir.ref<f64> 56! CHECK: %[[VAL_11:.*]] = fir.load %[[VAL_9]] : !fir.ref<f64> 57! CHECK: %[[VAL_12:.*]] = fir.load %[[VAL_10]] : !fir.ref<f64> 58! CHECK: %[[VAL_13:.*]] = arith.addf %[[VAL_11]], %[[VAL_12]] fastmath<contract> : f64 59! CHECK: fir.store %[[VAL_13]] to %[[VAL_9]] : !fir.ref<f64> 60! CHECK: } 61! CHECK: omp.yield(%[[VAL_0]] : !fir.ref<!fir.box<!fir.array<?xf64>>>) 62! CHECK: } cleanup { 63! CHECK: ^bb0(%[[VAL_0:.*]]: !fir.ref<!fir.box<!fir.array<?xf64>>>): 64! CHECK: %[[VAL_1:.*]] = fir.load %[[VAL_0]] : !fir.ref<!fir.box<!fir.array<?xf64>>> 65! CHECK: %[[VAL_2:.*]] = fir.box_addr %[[VAL_1]] : (!fir.box<!fir.array<?xf64>>) -> !fir.ref<!fir.array<?xf64>> 66! CHECK: %[[VAL_3:.*]] = fir.convert %[[VAL_2]] : (!fir.ref<!fir.array<?xf64>>) -> i64 67! CHECK: %[[VAL_4:.*]] = arith.constant 0 : i64 68! CHECK: %[[VAL_5:.*]] = arith.cmpi ne, %[[VAL_3]], %[[VAL_4]] : i64 69! CHECK: fir.if %[[VAL_5]] { 70! CHECK: %[[VAL_6:.*]] = fir.convert %[[VAL_2]] : (!fir.ref<!fir.array<?xf64>>) -> !fir.heap<!fir.array<?xf64>> 71! CHECK: fir.freemem %[[VAL_6]] : !fir.heap<!fir.array<?xf64>> 72! CHECK: } 73! CHECK: omp.yield 74! CHECK: } 75 76! CHECK-LABEL: func.func private @_QFPreduce( 77! CHECK-SAME: %[[VAL_0:.*]]: !fir.box<!fir.array<?xf64>> {fir.bindc_name = "r"}) attributes {{.*}} { 78! CHECK: %[[VAL_1:.*]] = fir.address_of(@_QFFreduceEi) : !fir.ref<i32> 79! CHECK: %[[VAL_2:.*]]:2 = hlfir.declare %[[VAL_1]] {uniq_name = "_QFFreduceEi"} : (!fir.ref<i32>) -> (!fir.ref<i32>, !fir.ref<i32>) 80! CHECK: %[[VAL_3:.*]]:2 = hlfir.declare %[[VAL_0]] dummy_scope %{{[0-9]+}} {fortran_attrs = {{.*}}, uniq_name = "_QFFreduceEr"} : (!fir.box<!fir.array<?xf64>>, !fir.dscope) -> (!fir.box<!fir.array<?xf64>>, !fir.box<!fir.array<?xf64>>) 81! CHECK: omp.parallel { 82! CHECK: %[[VAL_4:.*]] = fir.alloca !fir.box<!fir.array<?xf64>> 83! CHECK: fir.store %[[VAL_3]]#1 to %[[VAL_4]] : !fir.ref<!fir.box<!fir.array<?xf64>>> 84! CHECK: %[[VAL_5:.*]] = fir.alloca i32 {bindc_name = "i", pinned, {{.*}}} 85! CHECK: %[[VAL_6:.*]]:2 = hlfir.declare %[[VAL_5]] {uniq_name = "_QFFreduceEi"} : (!fir.ref<i32>) -> (!fir.ref<i32>, !fir.ref<i32>) 86! CHECK: %[[VAL_7:.*]] = arith.constant 0 : i32 87! CHECK: %[[VAL_8:.*]] = arith.constant 10 : i32 88! CHECK: %[[VAL_9:.*]] = arith.constant 1 : i32 89! CHECK: omp.wsloop reduction(byref @add_reduction_byref_box_Uxf64 %[[VAL_4]] -> %[[VAL_10:.*]] : !fir.ref<!fir.box<!fir.array<?xf64>>>) { 90! CHECK-NEXT: omp.loop_nest (%[[VAL_11:.*]]) : i32 = (%[[VAL_7]]) to (%[[VAL_8]]) inclusive step (%[[VAL_9]]) { 91! CHECK: %[[VAL_12:.*]]:2 = hlfir.declare %[[VAL_10]] {fortran_attrs = {{.*}}, uniq_name = "_QFFreduceEr"} : (!fir.ref<!fir.box<!fir.array<?xf64>>>) -> (!fir.ref<!fir.box<!fir.array<?xf64>>>, !fir.ref<!fir.box<!fir.array<?xf64>>>) 92! CHECK: fir.store %[[VAL_11]] to %[[VAL_6]]#1 : !fir.ref<i32> 93! CHECK: %[[VAL_13:.*]] = fir.load %[[VAL_6]]#0 : !fir.ref<i32> 94! CHECK: %[[VAL_14:.*]] = fir.convert %[[VAL_13]] : (i32) -> f64 95! CHECK: %[[VAL_15:.*]] = fir.load %[[VAL_12]]#0 : !fir.ref<!fir.box<!fir.array<?xf64>>> 96! CHECK: %[[VAL_16:.*]] = arith.constant 1 : index 97! CHECK: %[[VAL_17:.*]] = hlfir.designate %[[VAL_15]] (%[[VAL_16]]) : (!fir.box<!fir.array<?xf64>>, index) -> !fir.ref<f64> 98! CHECK: hlfir.assign %[[VAL_14]] to %[[VAL_17]] : f64, !fir.ref<f64> 99! CHECK: %[[VAL_18:.*]] = arith.constant 1.000000e+00 : f64 100! CHECK: %[[VAL_19:.*]] = fir.load %[[VAL_12]]#0 : !fir.ref<!fir.box<!fir.array<?xf64>>> 101! CHECK: %[[VAL_20:.*]] = arith.constant 2 : index 102! CHECK: %[[VAL_21:.*]] = hlfir.designate %[[VAL_19]] (%[[VAL_20]]) : (!fir.box<!fir.array<?xf64>>, index) -> !fir.ref<f64> 103! CHECK: hlfir.assign %[[VAL_18]] to %[[VAL_21]] : f64, !fir.ref<f64> 104! CHECK: omp.yield 105! CHECK: } 106! CHECK: } 107! CHECK: omp.terminator 108! CHECK: } 109! CHECK: return 110! CHECK: } 111