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[flang][OpenMP] Support reduction of variables in EQUIVALENCE #130607

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9 changes: 6 additions & 3 deletions flang/lib/Lower/OpenMP/ReductionProcessor.cpp
Original file line number Diff line number Diff line change
Expand Up @@ -617,10 +617,13 @@ void ReductionProcessor::processReductionArguments(
// this isn't the same as the by-val and by-ref passing later in the
// pipeline. Both styles assume that the variable is a reference at
// this point
assert(mlir::isa<fir::ReferenceType>(symVal.getType()) &&
"reduction input var is a reference");
assert(fir::isa_ref_type(symVal.getType()) &&
"reduction input var is passed by reference");
mlir::Type elementType = fir::dyn_cast_ptrEleTy(symVal.getType());
mlir::Type refTy = fir::ReferenceType::get(elementType);

reductionVars.push_back(symVal);
reductionVars.push_back(
builder.createConvert(currentLocation, refTy, symVal));
reduceVarByRef.push_back(doReductionByRef(symVal));
}

Expand Down
48 changes: 48 additions & 0 deletions flang/test/Lower/OpenMP/reduction-equivalence.f90
Original file line number Diff line number Diff line change
@@ -0,0 +1,48 @@
! RUN: bbc -emit-hlfir -fopenmp -o - %s | FileCheck %s
! RUN: %flang_fc1 -emit-hlfir -fopenmp -o - %s | FileCheck %s

! Test that we can reduce variables used in an equivalence statement.
! Unlike POINTER variables these are lowered to an unboxed !fir.ptr<>.

subroutine reduction_equivalence()
integer::va
equivalence (va,vva)
va=1

!$omp parallel reduction(+:va)
va=1
!$omp end parallel
end subroutine reduction_equivalence


! CHECK-LABEL: omp.declare_reduction @add_reduction_i32 : i32 init {
! CHECK: ^bb0(%[[VAL_0:.*]]: i32):
! CHECK: %[[VAL_1:.*]] = arith.constant 0 : i32
! CHECK: omp.yield(%[[VAL_1]] : i32)
! CHECK-LABEL: } combiner {
! CHECK: ^bb0(%[[VAL_0:.*]]: i32, %[[VAL_1:.*]]: i32):
! CHECK: %[[VAL_2:.*]] = arith.addi %[[VAL_0]], %[[VAL_1]] : i32
! CHECK: omp.yield(%[[VAL_2]] : i32)
! CHECK: }

! CHECK-LABEL: func.func @_QPreduction_equivalence() {
! CHECK: %[[VAL_0:.*]] = fir.alloca !fir.array<4xi8> {uniq_name = "_QFreduction_equivalenceEva"}
! CHECK: %[[VAL_1:.*]] = arith.constant 0 : index
! CHECK: %[[VAL_2:.*]] = fir.coordinate_of %[[VAL_0]], %[[VAL_1]] : (!fir.ref<!fir.array<4xi8>>, index) -> !fir.ref<i8>
! CHECK: %[[VAL_3:.*]] = fir.convert %[[VAL_2]] : (!fir.ref<i8>) -> !fir.ptr<i32>
! CHECK: %[[VAL_4:.*]]:2 = hlfir.declare %[[VAL_3]] {uniq_name = "_QFreduction_equivalenceEva"} : (!fir.ptr<i32>) -> (!fir.ptr<i32>, !fir.ptr<i32>)
! CHECK: %[[VAL_5:.*]] = arith.constant 0 : index
! CHECK: %[[VAL_6:.*]] = fir.coordinate_of %[[VAL_0]], %[[VAL_5]] : (!fir.ref<!fir.array<4xi8>>, index) -> !fir.ref<i8>
! CHECK: %[[VAL_7:.*]] = fir.convert %[[VAL_6]] : (!fir.ref<i8>) -> !fir.ptr<f32>
! CHECK: %[[VAL_8:.*]]:2 = hlfir.declare %[[VAL_7]] {uniq_name = "_QFreduction_equivalenceEvva"} : (!fir.ptr<f32>) -> (!fir.ptr<f32>, !fir.ptr<f32>)
! CHECK: %[[VAL_9:.*]] = arith.constant 1 : i32
! CHECK: hlfir.assign %[[VAL_9]] to %[[VAL_4]]#0 : i32, !fir.ptr<i32>
! CHECK: %[[VAL_10:.*]] = fir.convert %[[VAL_4]]#0 : (!fir.ptr<i32>) -> !fir.ref<i32>
! CHECK: omp.parallel reduction(@add_reduction_i32 %[[VAL_10]] -> %[[VAL_11:.*]] : !fir.ref<i32>) {
! CHECK: %[[VAL_12:.*]]:2 = hlfir.declare %[[VAL_11]] {uniq_name = "_QFreduction_equivalenceEva"} : (!fir.ref<i32>) -> (!fir.ref<i32>, !fir.ref<i32>)
! CHECK: %[[VAL_13:.*]] = arith.constant 1 : i32
! CHECK: hlfir.assign %[[VAL_13]] to %[[VAL_12]]#0 : i32, !fir.ref<i32>
! CHECK: omp.terminator
! CHECK: }
! CHECK: return
! CHECK: }