1! Test forall lowering 2 3! RUN: bbc -emit-fir -hlfir=false %s -o - | FileCheck %s 4 5! CHECK-LABEL: func @_QPtest_forall_with_slice( 6! CHECK-SAME: %[[VAL_0:.*]]: !fir.ref<i32>{{.*}}, %[[VAL_1:.*]]: !fir.ref<i32>{{.*}}) { 7! CHECK: %[[VAL_2:.*]] = fir.alloca i32 {adapt.valuebyref, bindc_name = "j"} 8! CHECK: %[[VAL_3:.*]] = fir.alloca i32 {adapt.valuebyref, bindc_name = "i"} 9! CHECK: %[[VAL_4:.*]] = arith.constant 10 : index 10! CHECK: %[[VAL_5:.*]] = arith.constant 10 : index 11! CHECK: %[[VAL_6:.*]] = fir.alloca !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>> {bindc_name = "a", uniq_name = "_QFtest_forall_with_sliceEa"} 12! CHECK: %[[VAL_7:.*]] = arith.constant 1 : i32 13! CHECK: %[[VAL_8:.*]] = fir.convert %[[VAL_7]] : (i32) -> index 14! CHECK: %[[VAL_9:.*]] = arith.constant 5 : i32 15! CHECK: %[[VAL_10:.*]] = fir.convert %[[VAL_9]] : (i32) -> index 16! CHECK: %[[VAL_11:.*]] = arith.constant 1 : index 17! CHECK: %[[VAL_12:.*]] = arith.constant 1 : i32 18! CHECK: %[[VAL_13:.*]] = fir.convert %[[VAL_12]] : (i32) -> index 19! CHECK: %[[VAL_14:.*]] = arith.constant 10 : i32 20! CHECK: %[[VAL_15:.*]] = fir.convert %[[VAL_14]] : (i32) -> index 21! CHECK: %[[VAL_16:.*]] = arith.constant 1 : index 22! CHECK: %[[VAL_17:.*]] = fir.shape %[[VAL_4]], %[[VAL_5]] : (index, index) -> !fir.shape<2> 23! CHECK: %[[VAL_18:.*]] = fir.array_load %[[VAL_6]](%[[VAL_17]]) : (!fir.ref<!fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>>, !fir.shape<2>) -> !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>> 24! CHECK: %[[VAL_19:.*]] = fir.do_loop %[[VAL_20:.*]] = %[[VAL_8]] to %[[VAL_10]] step %[[VAL_11]] unordered iter_args(%[[VAL_21:.*]] = %[[VAL_18]]) -> (!fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>) { 25! CHECK: %[[VAL_22:.*]] = fir.convert %[[VAL_20]] : (index) -> i32 26! CHECK: fir.store %[[VAL_22]] to %[[VAL_3]] : !fir.ref<i32> 27! CHECK: %[[VAL_23:.*]] = fir.do_loop %[[VAL_24:.*]] = %[[VAL_13]] to %[[VAL_15]] step %[[VAL_16]] unordered iter_args(%[[VAL_25:.*]] = %[[VAL_21]]) -> (!fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>) { 28! CHECK: %[[VAL_26:.*]] = fir.convert %[[VAL_24]] : (index) -> i32 29! CHECK: fir.store %[[VAL_26]] to %[[VAL_2]] : !fir.ref<i32> 30! CHECK: %[[VAL_27:.*]] = arith.constant 1 : index 31! CHECK: %[[VAL_28:.*]] = fir.load %[[VAL_3]] : !fir.ref<i32> 32! CHECK: %[[VAL_29:.*]] = fir.convert %[[VAL_28]] : (i32) -> i64 33! CHECK: %[[VAL_30:.*]] = fir.convert %[[VAL_29]] : (i64) -> index 34! CHECK: %[[VAL_31:.*]] = arith.subi %[[VAL_30]], %[[VAL_27]] : index 35! CHECK: %[[VAL_32:.*]] = fir.load %[[VAL_2]] : !fir.ref<i32> 36! CHECK: %[[VAL_33:.*]] = fir.convert %[[VAL_32]] : (i32) -> i64 37! CHECK: %[[VAL_34:.*]] = fir.convert %[[VAL_33]] : (i64) -> index 38! CHECK: %[[VAL_35:.*]] = arith.subi %[[VAL_34]], %[[VAL_27]] : index 39! CHECK: %[[VAL_36:.*]] = fir.field_index arr, !fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}> 40! CHECK: %[[VAL_37:.*]] = arith.constant 1 : index 41! CHECK: %[[VAL_38:.*]] = fir.load %[[VAL_3]] : !fir.ref<i32> 42! CHECK: %[[VAL_39:.*]] = fir.convert %[[VAL_38]] : (i32) -> i64 43! CHECK: %[[VAL_40:.*]] = fir.convert %[[VAL_39]] : (i64) -> index 44! CHECK: %[[VAL_41:.*]] = fir.load %[[VAL_1]] : !fir.ref<i32> 45! CHECK: %[[VAL_42:.*]] = fir.convert %[[VAL_41]] : (i32) -> i64 46! CHECK: %[[VAL_43:.*]] = fir.convert %[[VAL_42]] : (i64) -> index 47! CHECK: %[[VAL_44:.*]] = fir.load %[[VAL_0]] : !fir.ref<i32> 48! CHECK: %[[VAL_45:.*]] = fir.convert %[[VAL_44]] : (i32) -> i64 49! CHECK: %[[VAL_46:.*]] = fir.convert %[[VAL_45]] : (i64) -> index 50! CHECK: %[[VAL_47:.*]] = arith.constant 0 : index 51! CHECK: %[[VAL_48:.*]] = arith.subi %[[VAL_46]], %[[VAL_40]] : index 52! CHECK: %[[VAL_49:.*]] = arith.addi %[[VAL_48]], %[[VAL_43]] : index 53! CHECK: %[[VAL_50:.*]] = arith.divsi %[[VAL_49]], %[[VAL_43]] : index 54! CHECK: %[[VAL_51:.*]] = arith.cmpi sgt, %[[VAL_50]], %[[VAL_47]] : index 55! CHECK: %[[VAL_52:.*]] = arith.select %[[VAL_51]], %[[VAL_50]], %[[VAL_47]] : index 56! CHECK: %[[VAL_59:.*]] = fir.call @_QPf(%[[VAL_3]]) {{.*}}: (!fir.ref<i32>) -> i32 57! CHECK: %[[VAL_53:.*]] = arith.constant 1 : index 58! CHECK: %[[VAL_54:.*]] = arith.constant 0 : index 59! CHECK: %[[VAL_55:.*]] = arith.subi %[[VAL_52]], %[[VAL_53]] : index 60! CHECK: %[[VAL_56:.*]] = fir.do_loop %[[VAL_57:.*]] = %[[VAL_54]] to %[[VAL_55]] step %[[VAL_53]] unordered iter_args(%[[VAL_58:.*]] = %[[VAL_25]]) -> (!fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>) { 61! CHECK: %[[VAL_60:.*]] = arith.subi %[[VAL_40]], %[[VAL_37]] : index 62! CHECK: %[[VAL_61:.*]] = arith.muli %[[VAL_57]], %[[VAL_43]] : index 63! CHECK: %[[VAL_62:.*]] = arith.addi %[[VAL_60]], %[[VAL_61]] : index 64! CHECK: %[[VAL_63:.*]] = fir.array_update %[[VAL_58]], %[[VAL_59]], %[[VAL_31]], %[[VAL_35]], %[[VAL_36]], %[[VAL_62]] : (!fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>, i32, index, index, !fir.field, index) -> !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>> 65! CHECK: fir.result %[[VAL_63]] : !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>> 66! CHECK: } 67! CHECK: fir.result %[[VAL_64:.*]] : !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>> 68! CHECK: } 69! CHECK: fir.result %[[VAL_65:.*]] : !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>> 70! CHECK: } 71! CHECK: fir.array_merge_store %[[VAL_18]], %[[VAL_66:.*]] to %[[VAL_6]] : !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>, !fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>, !fir.ref<!fir.array<10x10x!fir.type<_QFtest_forall_with_sliceTt{arr:!fir.array<11xi32>}>>> 72! CHECK: return 73! CHECK: } 74 75subroutine test_forall_with_slice(i1,i2) 76 interface 77 pure integer function f(i) 78 integer i 79 intent(in) i 80 end function f 81 end interface 82 type t 83 !integer :: arr(5:15) 84 integer :: arr(11) 85 end type t 86 type(t) :: a(10,10) 87 88 forall (i=1:5, j=1:10) 89 a(i,j)%arr(i:i1:i2) = f(i) 90 end forall 91end subroutine test_forall_with_slice 92