1// Test hlfir.elemental code generation 2// RUN: fir-opt %s --bufferize-hlfir | FileCheck %s 3 4func.func @numeric_type(%arg0: !fir.ref<!fir.array<10x20xi32>>, %arg1: !fir.ref<!fir.array<10x20xi32>>) { 5 %c10 = arith.constant 10 : index 6 %c20 = arith.constant 20 : index 7 %0 = fir.shape %c10, %c20 : (index, index) -> !fir.shape<2> 8 %1 = hlfir.elemental %0 : (!fir.shape<2>) -> !hlfir.expr<10x20xi32> { 9 ^bb0(%arg2: index, %arg3: index): 10 %2 = hlfir.designate %arg0 (%arg2, %arg3) : (!fir.ref<!fir.array<10x20xi32>>, index, index) -> !fir.ref<i32> 11 %3 = hlfir.designate %arg1 (%arg2, %arg3) : (!fir.ref<!fir.array<10x20xi32>>, index, index) -> !fir.ref<i32> 12 %4 = fir.load %2 : !fir.ref<i32> 13 %5 = fir.load %3 : !fir.ref<i32> 14 %6 = arith.addi %4, %5 : i32 15 hlfir.yield_element %6 : i32 16 } 17 return 18} 19// CHECK-LABEL: func.func @numeric_type( 20// CHECK-SAME: %[[VAL_0:[^:]*]]: !fir.ref<!fir.array<10x20xi32>>, 21// CHECK-SAME: %[[VAL_1:.*]]: !fir.ref<!fir.array<10x20xi32>>) { 22// CHECK: %[[VAL_2:.*]] = arith.constant 10 : index 23// CHECK: %[[VAL_3:.*]] = arith.constant 20 : index 24// CHECK: %[[VAL_4:.*]] = fir.shape %[[VAL_2]], %[[VAL_3]] : (index, index) -> !fir.shape<2> 25// CHECK: %[[VAL_5:.*]] = fir.allocmem !fir.array<10x20xi32> {bindc_name = ".tmp.array", uniq_name = ""} 26// CHECK: %[[VAL_6:.*]]:2 = hlfir.declare %[[VAL_5]](%[[VAL_4]]) {uniq_name = ".tmp.array"} : (!fir.heap<!fir.array<10x20xi32>>, !fir.shape<2>) -> (!fir.heap<!fir.array<10x20xi32>>, !fir.heap<!fir.array<10x20xi32>>) 27// CHECK: %[[VAL_7:.*]] = arith.constant true 28// CHECK: %[[VAL_8:.*]] = arith.constant 1 : index 29// CHECK: fir.do_loop %[[VAL_9:.*]] = %[[VAL_8]] to %[[VAL_3]] step %[[VAL_8]] { 30// CHECK: fir.do_loop %[[VAL_10:.*]] = %[[VAL_8]] to %[[VAL_2]] step %[[VAL_8]] { 31// CHECK: %[[VAL_11:.*]] = hlfir.designate %[[VAL_0]] (%[[VAL_10]], %[[VAL_9]]) : (!fir.ref<!fir.array<10x20xi32>>, index, index) -> !fir.ref<i32> 32// CHECK: %[[VAL_12:.*]] = hlfir.designate %[[VAL_1]] (%[[VAL_10]], %[[VAL_9]]) : (!fir.ref<!fir.array<10x20xi32>>, index, index) -> !fir.ref<i32> 33// CHECK: %[[VAL_13:.*]] = fir.load %[[VAL_11]] : !fir.ref<i32> 34// CHECK: %[[VAL_14:.*]] = fir.load %[[VAL_12]] : !fir.ref<i32> 35// CHECK: %[[VAL_15:.*]] = arith.addi %[[VAL_13]], %[[VAL_14]] : i32 36// CHECK: %[[VAL_16:.*]] = hlfir.designate %[[VAL_6]]#0 (%[[VAL_10]], %[[VAL_9]]) : (!fir.heap<!fir.array<10x20xi32>>, index, index) -> !fir.ref<i32> 37// CHECK: hlfir.assign %[[VAL_15]] to %[[VAL_16]] temporary_lhs : i32, !fir.ref<i32> 38// CHECK: } 39// CHECK: } 40// CHECK: %[[VAL_17:.*]] = fir.undefined tuple<!fir.heap<!fir.array<10x20xi32>>, i1> 41// CHECK: %[[VAL_18:.*]] = fir.insert_value %[[VAL_17]], %[[VAL_7]], [1 : index] : (tuple<!fir.heap<!fir.array<10x20xi32>>, i1>, i1) -> tuple<!fir.heap<!fir.array<10x20xi32>>, i1> 42// CHECK: %[[VAL_19:.*]] = fir.insert_value %[[VAL_18]], %[[VAL_6]]#0, [0 : index] : (tuple<!fir.heap<!fir.array<10x20xi32>>, i1>, !fir.heap<!fir.array<10x20xi32>>) -> tuple<!fir.heap<!fir.array<10x20xi32>>, i1> 43 44 45func.func @char_type(%arg0: !fir.box<!fir.array<?x!fir.char<1,?>>>, %arg1: index, %arg2: index, %arg3: index) { 46 %0 = fir.shape %arg1 : (index) -> !fir.shape<1> 47 %1 = hlfir.elemental %0 typeparams %arg2 : (!fir.shape<1>, index) -> !hlfir.expr<?x!fir.char<1,?>> { 48 ^bb0(%arg4: index): 49 %2 = hlfir.designate %arg0 (%arg4) typeparams %arg3 : (!fir.box<!fir.array<?x!fir.char<1,?>>>, index, index) -> !fir.boxchar<1> 50 %3 = hlfir.concat %2, %2 len %arg2 : (!fir.boxchar<1>, !fir.boxchar<1>, index) -> !hlfir.expr<!fir.char<1,?>> 51 hlfir.yield_element %3 : !hlfir.expr<!fir.char<1,?>> 52 } 53 return 54} 55// CHECK-LABEL: func.func @char_type( 56// CHECK-SAME: %[[VAL_0:.*]]: !fir.box<!fir.array<?x!fir.char<1,?>>>, 57// CHECK-SAME: %[[VAL_1:[^:]*]]: index, 58// CHECK-SAME: %[[VAL_2:[^:]*]]: index, 59// CHECK-SAME: %[[VAL_3:[^:]*]]: index) { 60// CHECK: %[[VAL_4:.*]] = fir.shape %[[VAL_1]] : (index) -> !fir.shape<1> 61// CHECK: %[[VAL_5:.*]] = fir.allocmem !fir.array<?x!fir.char<1,?>>(%[[VAL_2]] : index), %[[VAL_1]] {bindc_name = ".tmp.array", uniq_name = ""} 62// CHECK: %[[VAL_6:.*]]:2 = hlfir.declare %[[VAL_5]](%[[VAL_4]]) typeparams %[[VAL_2]] {uniq_name = ".tmp.array"} : (!fir.heap<!fir.array<?x!fir.char<1,?>>>, !fir.shape<1>, index) -> (!fir.box<!fir.array<?x!fir.char<1,?>>>, !fir.heap<!fir.array<?x!fir.char<1,?>>>) 63// CHECK: %[[VAL_7:.*]] = arith.constant true 64// CHECK: %[[VAL_8:.*]] = arith.constant 1 : index 65// CHECK: fir.do_loop %[[VAL_9:.*]] = %[[VAL_8]] to %[[VAL_1]] step %[[VAL_8]] { 66// CHECK: %[[VAL_10:.*]] = hlfir.designate %[[VAL_0]] (%[[VAL_9]]) typeparams %[[VAL_3]] : (!fir.box<!fir.array<?x!fir.char<1,?>>>, index, index) -> !fir.boxchar<1> 67 // concatenation 68// CHECK: %[[VAL_30:.*]]:2 = hlfir.declare %[[VAL_14:.*]] typeparams %[[VAL_13:.*]] {uniq_name = "tmp"} : (!fir.ref<!fir.char<1,?>>, index) -> (!fir.boxchar<1>, !fir.ref<!fir.char<1,?>>) 69// CHECK: %[[VAL_31:.*]] = arith.constant false 70// CHECK: %[[VAL_32:.*]] = fir.undefined tuple<!fir.boxchar<1>, i1> 71// CHECK: %[[VAL_33:.*]] = fir.insert_value %[[VAL_32]], %[[VAL_31]], [1 : index] : (tuple<!fir.boxchar<1>, i1>, i1) -> tuple<!fir.boxchar<1>, i1> 72// CHECK: %[[VAL_34:.*]] = fir.insert_value %[[VAL_33]], %[[VAL_30]]#0, [0 : index] : (tuple<!fir.boxchar<1>, i1>, !fir.boxchar<1>) -> tuple<!fir.boxchar<1>, i1> 73// CHECK: %[[VAL_35:.*]] = hlfir.designate %[[VAL_6]]#0 (%[[VAL_9]]) typeparams %[[VAL_2]] : (!fir.box<!fir.array<?x!fir.char<1,?>>>, index, index) -> !fir.boxchar<1> 74// CHECK: hlfir.assign %[[VAL_30]]#0 to %[[VAL_35]] temporary_lhs : !fir.boxchar<1>, !fir.boxchar<1> 75// CHECK: } 76// CHECK: %[[VAL_36:.*]] = fir.undefined tuple<!fir.box<!fir.array<?x!fir.char<1,?>>>, i1> 77// CHECK: %[[VAL_37:.*]] = fir.insert_value %[[VAL_36]], %[[VAL_7]], [1 : index] : (tuple<!fir.box<!fir.array<?x!fir.char<1,?>>>, i1>, i1) -> tuple<!fir.box<!fir.array<?x!fir.char<1,?>>>, i1> 78// CHECK: %[[VAL_38:.*]] = fir.insert_value %[[VAL_37]], %[[VAL_6]]#0, [0 : index] : (tuple<!fir.box<!fir.array<?x!fir.char<1,?>>>, i1>, !fir.box<!fir.array<?x!fir.char<1,?>>>) -> tuple<!fir.box<!fir.array<?x!fir.char<1,?>>>, i1> 79 80 81func.func @derived_transpose(%arg0: !fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, %arg1: index, %arg2: index) { 82 %0 = fir.shape %arg2, %arg1 : (index, index) -> !fir.shape<2> 83 %1 = hlfir.elemental %0 : (!fir.shape<2>) -> !hlfir.expr<?x?x!fir.type<t{field:f32}>> { 84 ^bb0(%arg4: index, %arg5: index): 85 %2 = hlfir.designate %arg0 (%arg4, %arg5) : (!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, index, index) -> !fir.box<!fir.type<t{field:f32}>> 86 %3 = hlfir.as_expr %2 : (!fir.box<!fir.type<t{field:f32}>>) -> !hlfir.expr<!fir.type<t{field:f32}>> 87 hlfir.yield_element %3 : !hlfir.expr<!fir.type<t{field:f32}>> 88 } 89 return 90} 91// CHECK-LABEL: func.func @derived_transpose( 92// CHECK-SAME: %[[VAL_0:.*]]: !fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, 93// CHECK-SAME: %[[VAL_1:[^:]*]]: index, 94// CHECK-SAME: %[[VAL_2:.*]]: index) { 95// CHECK: %[[VAL_3:.*]] = fir.shape %[[VAL_2]], %[[VAL_1]] : (index, index) -> !fir.shape<2> 96// CHECK: %[[VAL_4:.*]] = fir.allocmem !fir.array<?x?x!fir.type<t{field:f32}>>, %[[VAL_2]], %[[VAL_1]] {bindc_name = ".tmp.array", uniq_name = ""} 97// CHECK: %[[VAL_5:.*]]:2 = hlfir.declare %[[VAL_4]](%[[VAL_3]]) {uniq_name = ".tmp.array"} : (!fir.heap<!fir.array<?x?x!fir.type<t{field:f32}>>>, !fir.shape<2>) -> (!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, !fir.heap<!fir.array<?x?x!fir.type<t{field:f32}>>>) 98// CHECK: %[[VAL_6:.*]] = arith.constant true 99// CHECK: %[[VAL_7:.*]] = arith.constant 1 : index 100// CHECK: fir.do_loop %[[VAL_8:.*]] = %[[VAL_7]] to %[[VAL_1]] step %[[VAL_7]] { 101// CHECK: fir.do_loop %[[VAL_9:.*]] = %[[VAL_7]] to %[[VAL_2]] step %[[VAL_7]] { 102// CHECK: %[[VAL_10:.*]] = hlfir.designate %[[VAL_0]] (%[[VAL_9]], %[[VAL_8]]) : (!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, index, index) -> !fir.box<!fir.type<t{field:f32}>> 103// CHECK: %[[VAL_11:.*]] = hlfir.designate %[[VAL_5]]#0 (%[[VAL_9]], %[[VAL_8]]) : (!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, index, index) -> !fir.ref<!fir.type<t{field:f32}>> 104// CHECK: hlfir.assign %[[VAL_10]] to %[[VAL_11]] temporary_lhs : !fir.box<!fir.type<t{field:f32}>>, !fir.ref<!fir.type<t{field:f32}>> 105// CHECK: } 106// CHECK: } 107// CHECK: %[[VAL_12:.*]] = fir.undefined tuple<!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, i1> 108// CHECK: %[[VAL_13:.*]] = fir.insert_value %[[VAL_12]], %[[VAL_6]], [1 : index] : (tuple<!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, i1>, i1) -> tuple<!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, i1> 109// CHECK: %[[VAL_14:.*]] = fir.insert_value %[[VAL_13]], %[[VAL_5]]#0, [0 : index] : (tuple<!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, i1>, !fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>) -> tuple<!fir.box<!fir.array<?x?x!fir.type<t{field:f32}>>>, i1> 110 111func.func @unordered() { 112 %c10 = arith.constant 10 : index 113 %c20 = arith.constant 20 : index 114 %0 = fir.shape %c10, %c20 : (index, index) -> !fir.shape<2> 115 %3 = hlfir.elemental %0 unordered : (!fir.shape<2>) -> !hlfir.expr<10x20xi32> { 116 ^bb0(%i: index, %j: index): 117 %c0 = arith.constant 0 : i32 118 hlfir.yield_element %c0 : i32 119 } 120 return 121} 122// CHECK-LABEL: func.func @unordered() { 123// CHECK: %[[VAL_0:.*]] = arith.constant 10 : index 124// CHECK: %[[VAL_1:.*]] = arith.constant 20 : index 125// CHECK: %[[VAL_2:.*]] = fir.shape %[[VAL_0]], %[[VAL_1]] : (index, index) -> !fir.shape<2> 126// CHECK: %[[VAL_3:.*]] = fir.allocmem !fir.array<10x20xi32> {bindc_name = ".tmp.array", uniq_name = ""} 127// CHECK: %[[VAL_4:.*]]:2 = hlfir.declare %[[VAL_3]](%[[VAL_2]]) {uniq_name = ".tmp.array"} : (!fir.heap<!fir.array<10x20xi32>>, !fir.shape<2>) -> (!fir.heap<!fir.array<10x20xi32>>, !fir.heap<!fir.array<10x20xi32>>) 128// CHECK: %[[VAL_5:.*]] = arith.constant true 129// CHECK: %[[VAL_6:.*]] = arith.constant 1 : index 130// CHECK: fir.do_loop %[[VAL_7:.*]] = %[[VAL_6]] to %[[VAL_1]] step %[[VAL_6]] unordered { 131// CHECK: fir.do_loop %[[VAL_8:.*]] = %[[VAL_6]] to %[[VAL_0]] step %[[VAL_6]] unordered { 132// CHECK: %[[VAL_9:.*]] = arith.constant 0 : i32 133// CHECK: %[[VAL_10:.*]] = hlfir.designate %[[VAL_4]]#0 (%[[VAL_8]], %[[VAL_7]]) : (!fir.heap<!fir.array<10x20xi32>>, index, index) -> !fir.ref<i32> 134// CHECK: hlfir.assign %[[VAL_9]] to %[[VAL_10]] temporary_lhs : i32, !fir.ref<i32> 135// CHECK: } 136// CHECK: } 137// CHECK: %[[VAL_11:.*]] = fir.undefined tuple<!fir.heap<!fir.array<10x20xi32>>, i1> 138// CHECK: %[[VAL_12:.*]] = fir.insert_value %[[VAL_11]], %[[VAL_5]], [1 : index] : (tuple<!fir.heap<!fir.array<10x20xi32>>, i1>, i1) -> tuple<!fir.heap<!fir.array<10x20xi32>>, i1> 139// CHECK: %[[VAL_13:.*]] = fir.insert_value %[[VAL_12]], %[[VAL_4]]#0, [0 : index] : (tuple<!fir.heap<!fir.array<10x20xi32>>, i1>, !fir.heap<!fir.array<10x20xi32>>) -> tuple<!fir.heap<!fir.array<10x20xi32>>, i1> 140// CHECK: return 141// CHECK: } 142 143func.func @test_polymorphic(%arg0: !fir.class<!fir.type<_QMtypesTt>> {fir.bindc_name = "x"}, %arg1: !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>> {fir.bindc_name = "y"}, %ex0 : index, %ex1 : index) { 144 %1:2 = hlfir.declare %arg0 {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEx"} : (!fir.class<!fir.type<_QMtypesTt>>) -> (!fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>>) 145 %2:2 = hlfir.declare %arg1 {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEy"} : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) -> (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) 146 %4 = fir.shape %ex0, %ex1 : (index, index) -> !fir.shape<2> 147 %5 = hlfir.elemental %4 mold %1#0 unordered : (!fir.shape<2>, !fir.class<!fir.type<_QMtypesTt>>) -> !hlfir.expr<?x?x!fir.type<_QMtypesTt>?> { 148 ^bb0(%arg3: index, %arg4: index): 149 %6 = hlfir.designate %2#0 (%arg3, %arg4) : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 150 %7 = hlfir.as_expr %6 : (!fir.class<!fir.type<_QMtypesTt>>) -> !hlfir.expr<!fir.type<_QMtypesTt>?> 151 hlfir.yield_element %7 : !hlfir.expr<!fir.type<_QMtypesTt>?> 152 } 153 return 154} 155// CHECK-LABEL: func.func @test_polymorphic( 156// CHECK-SAME: %[[VAL_0:.*]]: !fir.class<!fir.type<_QMtypesTt>> {fir.bindc_name = "x"}, 157// CHECK-SAME: %[[VAL_1:.*]]: !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>> {fir.bindc_name = "y"}, 158// CHECK-SAME: %[[EX0:.*]]: index, 159// CHECK-SAME: %[[EX1:.*]]: index) { 160// CHECK: %[[VAL_4:.*]] = fir.alloca !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>> 161// CHECK: %[[VAL_5:.*]]:2 = hlfir.declare %[[VAL_0]] {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEx"} : (!fir.class<!fir.type<_QMtypesTt>>) -> (!fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>>) 162// CHECK: %[[VAL_6:.*]]:2 = hlfir.declare %[[VAL_1]] {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEy"} : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) -> (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) 163// CHECK: %[[VAL_7:.*]] = fir.shape %[[EX0]], %[[EX1]] : (index, index) -> !fir.shape<2> 164// CHECK: %[[VAL_8:.*]] = fir.zero_bits !fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>> 165// CHECK: %[[VAL_9:.*]] = arith.constant 0 : index 166// CHECK: %[[VAL_10:.*]] = fir.shape %[[VAL_9]], %[[VAL_9]] : (index, index) -> !fir.shape<2> 167// CHECK: %[[VAL_11:.*]] = fir.embox %[[VAL_8]](%[[VAL_10]]) : (!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.shape<2>) -> !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>> 168// CHECK: fir.store %[[VAL_11]] to %[[VAL_4]] : !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>> 169// CHECK: %[[VAL_12:.*]] = arith.constant true 170// CHECK: %[[VAL_13:.*]]:2 = hlfir.declare %[[VAL_4]] {fortran_attrs = #fir.var_attrs<allocatable>, uniq_name = ".tmp.array"} : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>, !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) 171// CHECK: %[[RANK:.*]] = arith.constant 2 : i32 172// CHECK: %[[VAL_15:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 173// CHECK: %[[VAL_16:.*]] = fir.convert %[[VAL_5]]#1 : (!fir.class<!fir.type<_QMtypesTt>>) -> !fir.box<none> 174// CHECK: fir.call @_FortranAAllocatableApplyMold(%[[VAL_15]], %[[VAL_16]], %[[RANK]]) : (!fir.ref<!fir.box<none>>, !fir.box<none>, i32) -> () 175// CHECK: %[[VAL_18:.*]] = arith.constant 1 : index 176// CHECK: %[[VAL_19:.*]] = arith.constant 0 : index 177// CHECK: %[[VAL_20:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 178// CHECK: %[[VAL_21:.*]] = fir.convert %[[VAL_19]] : (index) -> i32 179// CHECK: %[[VAL_22:.*]] = fir.convert %[[VAL_18]] : (index) -> i64 180// CHECK: %[[VAL_23:.*]] = fir.convert %[[EX0]] : (index) -> i64 181// CHECK: fir.call @_FortranAAllocatableSetBounds(%[[VAL_20]], %[[VAL_21]], %[[VAL_22]], %[[VAL_23]]) : (!fir.ref<!fir.box<none>>, i32, i64, i64) -> () 182// CHECK: %[[VAL_25:.*]] = arith.constant 1 : index 183// CHECK: %[[VAL_26:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 184// CHECK: %[[VAL_27:.*]] = fir.convert %[[VAL_25]] : (index) -> i32 185// CHECK: %[[VAL_28:.*]] = fir.convert %[[VAL_18]] : (index) -> i64 186// CHECK: %[[VAL_29:.*]] = fir.convert %[[EX1]] : (index) -> i64 187// CHECK: fir.call @_FortranAAllocatableSetBounds(%[[VAL_26]], %[[VAL_27]], %[[VAL_28]], %[[VAL_29]]) : (!fir.ref<!fir.box<none>>, i32, i64, i64) -> () 188// CHECK: %[[VAL_31:.*]] = fir.address_of(@_QQclX 189// CHECK: %[[VAL_32:.*]] = arith.constant {{.*}} : index 190// CHECK: %[[VAL_33:.*]] = arith.constant {{.*}} : i32 191// CHECK: %[[VAL_34:.*]] = arith.constant false 192// CHECK: %[[VAL_35:.*]] = fir.absent !fir.box<none> 193// CHECK: %[[VAL_36:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 194// CHECK: %[[VAL_37:.*]] = fir.convert %[[VAL_31]] : (!fir.ref<!fir.char<1,{{.*}}>>) -> !fir.ref<i8> 195// CHECK: %[[VAL_38:.*]] = fir.call @_FortranAAllocatableAllocate(%[[VAL_36]], %[[VAL_34]], %[[VAL_35]], %[[VAL_37]], %[[VAL_33]]) : (!fir.ref<!fir.box<none>>, i1, !fir.box<none>, !fir.ref<i8>, i32) -> i32 196// CHECK: %[[VAL_39:.*]] = fir.load %[[VAL_13]]#0 : !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>> 197// CHECK: %[[VAL_40:.*]] = arith.constant 1 : index 198// CHECK: fir.do_loop %[[VAL_41:.*]] = %[[VAL_40]] to %[[EX1]] step %[[VAL_40]] unordered { 199// CHECK: fir.do_loop %[[VAL_42:.*]] = %[[VAL_40]] to %[[EX0]] step %[[VAL_40]] unordered { 200// CHECK: %[[VAL_43:.*]] = hlfir.designate %[[VAL_6]]#0 (%[[VAL_42]], %[[VAL_41]]) : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 201// CHECK: %[[VAL_44:.*]] = arith.constant 0 : index 202// CHECK: %[[VAL_45:.*]]:3 = fir.box_dims %[[VAL_39]], %[[VAL_44]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index) -> (index, index, index) 203// CHECK: %[[VAL_46:.*]] = arith.constant 1 : index 204// CHECK: %[[VAL_47:.*]]:3 = fir.box_dims %[[VAL_39]], %[[VAL_46]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index) -> (index, index, index) 205// CHECK: %[[VAL_48:.*]] = arith.constant 1 : index 206// CHECK: %[[VAL_49:.*]] = arith.subi %[[VAL_45]]#0, %[[VAL_48]] : index 207// CHECK: %[[VAL_50:.*]] = arith.addi %[[VAL_42]], %[[VAL_49]] : index 208// CHECK: %[[VAL_51:.*]] = arith.subi %[[VAL_47]]#0, %[[VAL_48]] : index 209// CHECK: %[[VAL_52:.*]] = arith.addi %[[VAL_41]], %[[VAL_51]] : index 210// CHECK: %[[VAL_53:.*]] = hlfir.designate %[[VAL_39]] (%[[VAL_50]], %[[VAL_52]]) : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 211// CHECK: hlfir.assign %[[VAL_43]] to %[[VAL_53]] temporary_lhs : !fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>> 212// CHECK: } 213// CHECK: } 214// CHECK: %[[VAL_54:.*]] = fir.undefined tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 215// CHECK: %[[VAL_55:.*]] = fir.insert_value %[[VAL_54]], %[[VAL_12]], [1 : index] : (tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1>, i1) -> tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 216// CHECK: %[[VAL_56:.*]] = fir.insert_value %[[VAL_55]], %[[VAL_39]], [0 : index] : (tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1>, !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>) -> tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 217// CHECK: return 218// CHECK: } 219 220// Test that hlfir.expr mold is properly applied for the second hlfir.elemental. 221func.func @test_polymorphic_expr(%arg0: !fir.class<!fir.type<_QMtypesTt>> {fir.bindc_name = "x"}, %arg1: !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>> {fir.bindc_name = "y"}, %ex0 : index, %ex1 : index) { 222 %1:2 = hlfir.declare %arg0 {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEx"} : (!fir.class<!fir.type<_QMtypesTt>>) -> (!fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>>) 223 %2:2 = hlfir.declare %arg1 {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEy"} : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) -> (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) 224 %4 = fir.shape %ex0, %ex1 : (index, index) -> !fir.shape<2> 225 %5 = hlfir.elemental %4 mold %1#0 unordered : (!fir.shape<2>, !fir.class<!fir.type<_QMtypesTt>>) -> !hlfir.expr<?x?x!fir.type<_QMtypesTt>?> { 226 ^bb0(%arg3: index, %arg4: index): 227 %6 = hlfir.designate %2#0 (%arg3, %arg4) : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 228 %7 = hlfir.as_expr %6 : (!fir.class<!fir.type<_QMtypesTt>>) -> !hlfir.expr<!fir.type<_QMtypesTt>?> 229 hlfir.yield_element %7 : !hlfir.expr<!fir.type<_QMtypesTt>?> 230 } 231 %8 = hlfir.elemental %4 mold %5 unordered : (!fir.shape<2>, !hlfir.expr<?x?x!fir.type<_QMtypesTt>?>) -> !hlfir.expr<?x?x!fir.type<_QMtypesTt>?> { 232 ^bb0(%arg3: index, %arg4: index): 233 %9 = hlfir.apply %5, %arg3, %arg4 : (!hlfir.expr<?x?x!fir.type<_QMtypesTt>?>, index, index) -> !hlfir.expr<!fir.type<_QMtypesTt>?> 234 hlfir.yield_element %9 : !hlfir.expr<!fir.type<_QMtypesTt>?> 235 } 236 return 237} 238// CHECK-LABEL: func.func @test_polymorphic_expr( 239// CHECK-SAME: %[[VAL_0:.*]]: !fir.class<!fir.type<_QMtypesTt>> {fir.bindc_name = "x"}, 240// CHECK-SAME: %[[VAL_1:.*]]: !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>> {fir.bindc_name = "y"}, 241// CHECK-SAME: %[[VAL_2:.*]]: index, 242// CHECK-SAME: %[[VAL_3:.*]]: index) { 243// CHECK: %[[VAL_4:.*]] = fir.alloca !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>> 244// CHECK: %[[VAL_5:.*]] = fir.alloca !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>> 245// CHECK: %[[VAL_6:.*]]:2 = hlfir.declare %[[VAL_0]] {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEx"} : (!fir.class<!fir.type<_QMtypesTt>>) -> (!fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>>) 246// CHECK: %[[VAL_7:.*]]:2 = hlfir.declare %[[VAL_1]] {fortran_attrs = #fir.var_attrs<intent_in>, uniq_name = "_QFtestEy"} : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) -> (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>) 247// CHECK: %[[VAL_8:.*]] = fir.shape %[[VAL_2]], %[[VAL_3]] : (index, index) -> !fir.shape<2> 248// CHECK: %[[VAL_9:.*]] = fir.zero_bits !fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>> 249// CHECK: %[[VAL_10:.*]] = arith.constant 0 : index 250// CHECK: %[[VAL_11:.*]] = fir.shape %[[VAL_10]], %[[VAL_10]] : (index, index) -> !fir.shape<2> 251// CHECK: %[[VAL_12:.*]] = fir.embox %[[VAL_9]](%[[VAL_11]]) : (!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.shape<2>) -> !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>> 252// CHECK: fir.store %[[VAL_12]] to %[[VAL_5]] : !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>> 253// CHECK: %[[VAL_13:.*]] = arith.constant true 254// CHECK: %[[VAL_14:.*]]:2 = hlfir.declare %[[VAL_5]] {fortran_attrs = #fir.var_attrs<allocatable>, uniq_name = ".tmp.array"} : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>, !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) 255// CHECK: %[[VAL_15:.*]] = arith.constant 2 : i32 256// CHECK: %[[VAL_16:.*]] = fir.convert %[[VAL_5]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 257// CHECK: %[[VAL_17:.*]] = fir.convert %[[VAL_6]]#1 : (!fir.class<!fir.type<_QMtypesTt>>) -> !fir.box<none> 258// CHECK: fir.call @_FortranAAllocatableApplyMold(%[[VAL_16]], %[[VAL_17]], %[[VAL_15]]) : (!fir.ref<!fir.box<none>>, !fir.box<none>, i32) -> () 259// CHECK: %[[VAL_19:.*]] = arith.constant 1 : index 260// CHECK: %[[VAL_20:.*]] = arith.constant 0 : index 261// CHECK: %[[VAL_21:.*]] = fir.convert %[[VAL_5]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 262// CHECK: %[[VAL_22:.*]] = fir.convert %[[VAL_20]] : (index) -> i32 263// CHECK: %[[VAL_23:.*]] = fir.convert %[[VAL_19]] : (index) -> i64 264// CHECK: %[[VAL_24:.*]] = fir.convert %[[VAL_2]] : (index) -> i64 265// CHECK: fir.call @_FortranAAllocatableSetBounds(%[[VAL_21]], %[[VAL_22]], %[[VAL_23]], %[[VAL_24]]) : (!fir.ref<!fir.box<none>>, i32, i64, i64) -> () 266// CHECK: %[[VAL_26:.*]] = arith.constant 1 : index 267// CHECK: %[[VAL_27:.*]] = fir.convert %[[VAL_5]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 268// CHECK: %[[VAL_28:.*]] = fir.convert %[[VAL_26]] : (index) -> i32 269// CHECK: %[[VAL_29:.*]] = fir.convert %[[VAL_19]] : (index) -> i64 270// CHECK: %[[VAL_30:.*]] = fir.convert %[[VAL_3]] : (index) -> i64 271// CHECK: fir.call @_FortranAAllocatableSetBounds(%[[VAL_27]], %[[VAL_28]], %[[VAL_29]], %[[VAL_30]]) : (!fir.ref<!fir.box<none>>, i32, i64, i64) -> () 272// CHECK: %[[VAL_32:.*]] = fir.address_of(@_QQcl 273// CHECK: %[[VAL_33:.*]] = arith.constant {{.*}} : index 274// CHECK: %[[VAL_34:.*]] = arith.constant {{.*}} : i32 275// CHECK: %[[VAL_35:.*]] = arith.constant false 276// CHECK: %[[VAL_36:.*]] = fir.absent !fir.box<none> 277// CHECK: %[[VAL_37:.*]] = fir.convert %[[VAL_5]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 278// CHECK: %[[VAL_38:.*]] = fir.convert %[[VAL_32]] : (!fir.ref<!fir.char<1,{{.*}}>>) -> !fir.ref<i8> 279// CHECK: %[[VAL_39:.*]] = fir.call @_FortranAAllocatableAllocate(%[[VAL_37]], %[[VAL_35]], %[[VAL_36]], %[[VAL_38]], %[[VAL_34]]) : (!fir.ref<!fir.box<none>>, i1, !fir.box<none>, !fir.ref<i8>, i32) -> i32 280// CHECK: %[[VAL_40:.*]] = fir.load %[[VAL_14]]#0 : !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>> 281// CHECK: %[[VAL_41:.*]] = arith.constant 1 : index 282// CHECK: fir.do_loop %[[VAL_42:.*]] = %[[VAL_41]] to %[[VAL_3]] step %[[VAL_41]] unordered { 283// CHECK: fir.do_loop %[[VAL_43:.*]] = %[[VAL_41]] to %[[VAL_2]] step %[[VAL_41]] unordered { 284// CHECK: %[[VAL_44:.*]] = hlfir.designate %[[VAL_7]]#0 (%[[VAL_43]], %[[VAL_42]]) : (!fir.class<!fir.array<?x?x!fir.type<_QMtypesTt>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 285// CHECK: %[[VAL_45:.*]] = arith.constant 0 : index 286// CHECK: %[[VAL_46:.*]]:3 = fir.box_dims %[[VAL_40]], %[[VAL_45]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index) -> (index, index, index) 287// CHECK: %[[VAL_47:.*]] = arith.constant 1 : index 288// CHECK: %[[VAL_48:.*]]:3 = fir.box_dims %[[VAL_40]], %[[VAL_47]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index) -> (index, index, index) 289// CHECK: %[[VAL_49:.*]] = arith.constant 1 : index 290// CHECK: %[[VAL_50:.*]] = arith.subi %[[VAL_46]]#0, %[[VAL_49]] : index 291// CHECK: %[[VAL_51:.*]] = arith.addi %[[VAL_43]], %[[VAL_50]] : index 292// CHECK: %[[VAL_52:.*]] = arith.subi %[[VAL_48]]#0, %[[VAL_49]] : index 293// CHECK: %[[VAL_53:.*]] = arith.addi %[[VAL_42]], %[[VAL_52]] : index 294// CHECK: %[[VAL_54:.*]] = hlfir.designate %[[VAL_40]] (%[[VAL_51]], %[[VAL_53]]) : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 295// CHECK: hlfir.assign %[[VAL_44]] to %[[VAL_54]] temporary_lhs : !fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>> 296// CHECK: } 297// CHECK: } 298// CHECK: %[[VAL_55:.*]] = fir.undefined tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 299// CHECK: %[[VAL_56:.*]] = fir.insert_value %[[VAL_55]], %[[VAL_13]], [1 : index] : (tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1>, i1) -> tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 300// CHECK: %[[VAL_57:.*]] = fir.insert_value %[[VAL_56]], %[[VAL_40]], [0 : index] : (tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1>, !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>) -> tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 301// CHECK: %[[VAL_58:.*]] = fir.zero_bits !fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>> 302// CHECK: %[[VAL_59:.*]] = arith.constant 0 : index 303// CHECK: %[[VAL_60:.*]] = fir.shape %[[VAL_59]], %[[VAL_59]] : (index, index) -> !fir.shape<2> 304// CHECK: %[[VAL_61:.*]] = fir.embox %[[VAL_58]](%[[VAL_60]]) : (!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>, !fir.shape<2>) -> !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>> 305// CHECK: fir.store %[[VAL_61]] to %[[VAL_4]] : !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>> 306// CHECK: %[[VAL_62:.*]] = arith.constant true 307// CHECK: %[[VAL_63:.*]]:2 = hlfir.declare %[[VAL_4]] {fortran_attrs = #fir.var_attrs<allocatable>, uniq_name = ".tmp.array"} : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>, !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) 308// CHECK: %[[VAL_64:.*]] = arith.constant 2 : i32 309// CHECK: %[[VAL_65:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 310// CHECK: %[[VAL_66:.*]] = fir.convert %[[VAL_40]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>) -> !fir.box<none> 311// CHECK: fir.call @_FortranAAllocatableApplyMold(%[[VAL_65]], %[[VAL_66]], %[[VAL_64]]) : (!fir.ref<!fir.box<none>>, !fir.box<none>, i32) -> () 312// CHECK: %[[VAL_68:.*]] = arith.constant 1 : index 313// CHECK: %[[VAL_69:.*]] = arith.constant 0 : index 314// CHECK: %[[VAL_70:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 315// CHECK: %[[VAL_71:.*]] = fir.convert %[[VAL_69]] : (index) -> i32 316// CHECK: %[[VAL_72:.*]] = fir.convert %[[VAL_68]] : (index) -> i64 317// CHECK: %[[VAL_73:.*]] = fir.convert %[[VAL_2]] : (index) -> i64 318// CHECK: fir.call @_FortranAAllocatableSetBounds(%[[VAL_70]], %[[VAL_71]], %[[VAL_72]], %[[VAL_73]]) : (!fir.ref<!fir.box<none>>, i32, i64, i64) -> () 319// CHECK: %[[VAL_75:.*]] = arith.constant 1 : index 320// CHECK: %[[VAL_76:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 321// CHECK: %[[VAL_77:.*]] = fir.convert %[[VAL_75]] : (index) -> i32 322// CHECK: %[[VAL_78:.*]] = fir.convert %[[VAL_68]] : (index) -> i64 323// CHECK: %[[VAL_79:.*]] = fir.convert %[[VAL_3]] : (index) -> i64 324// CHECK: fir.call @_FortranAAllocatableSetBounds(%[[VAL_76]], %[[VAL_77]], %[[VAL_78]], %[[VAL_79]]) : (!fir.ref<!fir.box<none>>, i32, i64, i64) -> () 325// CHECK: %[[VAL_81:.*]] = fir.address_of(@_QQcl 326// CHECK: %[[VAL_82:.*]] = arith.constant {{.*}} : index 327// CHECK: %[[VAL_83:.*]] = arith.constant {{.*}} : i32 328// CHECK: %[[VAL_84:.*]] = arith.constant false 329// CHECK: %[[VAL_85:.*]] = fir.absent !fir.box<none> 330// CHECK: %[[VAL_86:.*]] = fir.convert %[[VAL_4]] : (!fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>>) -> !fir.ref<!fir.box<none>> 331// CHECK: %[[VAL_87:.*]] = fir.convert %[[VAL_81]] : (!fir.ref<!fir.char<1,{{.*}}>>) -> !fir.ref<i8> 332// CHECK: %[[VAL_88:.*]] = fir.call @_FortranAAllocatableAllocate(%[[VAL_86]], %[[VAL_84]], %[[VAL_85]], %[[VAL_87]], %[[VAL_83]]) : (!fir.ref<!fir.box<none>>, i1, !fir.box<none>, !fir.ref<i8>, i32) -> i32 333// CHECK: %[[VAL_89:.*]] = fir.load %[[VAL_63]]#0 : !fir.ref<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>> 334// CHECK: %[[VAL_90:.*]] = arith.constant 1 : index 335// CHECK: fir.do_loop %[[VAL_91:.*]] = %[[VAL_90]] to %[[VAL_3]] step %[[VAL_90]] unordered { 336// CHECK: fir.do_loop %[[VAL_92:.*]] = %[[VAL_90]] to %[[VAL_2]] step %[[VAL_90]] unordered { 337// CHECK: %[[VAL_93:.*]] = hlfir.designate %[[VAL_40]] (%[[VAL_92]], %[[VAL_91]]) : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 338// CHECK: %[[VAL_94:.*]] = arith.constant false 339// CHECK: %[[VAL_95:.*]] = fir.undefined tuple<!fir.class<!fir.type<_QMtypesTt>>, i1> 340// CHECK: %[[VAL_96:.*]] = fir.insert_value %[[VAL_95]], %[[VAL_94]], [1 : index] : (tuple<!fir.class<!fir.type<_QMtypesTt>>, i1>, i1) -> tuple<!fir.class<!fir.type<_QMtypesTt>>, i1> 341// CHECK: %[[VAL_97:.*]] = fir.insert_value %[[VAL_96]], %[[VAL_93]], [0 : index] : (tuple<!fir.class<!fir.type<_QMtypesTt>>, i1>, !fir.class<!fir.type<_QMtypesTt>>) -> tuple<!fir.class<!fir.type<_QMtypesTt>>, i1> 342// CHECK: %[[VAL_98:.*]] = arith.constant 0 : index 343// CHECK: %[[VAL_99:.*]]:3 = fir.box_dims %[[VAL_89]], %[[VAL_98]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index) -> (index, index, index) 344// CHECK: %[[VAL_100:.*]] = arith.constant 1 : index 345// CHECK: %[[VAL_101:.*]]:3 = fir.box_dims %[[VAL_89]], %[[VAL_100]] : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index) -> (index, index, index) 346// CHECK: %[[VAL_102:.*]] = arith.constant 1 : index 347// CHECK: %[[VAL_103:.*]] = arith.subi %[[VAL_99]]#0, %[[VAL_102]] : index 348// CHECK: %[[VAL_104:.*]] = arith.addi %[[VAL_92]], %[[VAL_103]] : index 349// CHECK: %[[VAL_105:.*]] = arith.subi %[[VAL_101]]#0, %[[VAL_102]] : index 350// CHECK: %[[VAL_106:.*]] = arith.addi %[[VAL_91]], %[[VAL_105]] : index 351// CHECK: %[[VAL_107:.*]] = hlfir.designate %[[VAL_89]] (%[[VAL_104]], %[[VAL_106]]) : (!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, index, index) -> !fir.class<!fir.type<_QMtypesTt>> 352// CHECK: hlfir.assign %[[VAL_93]] to %[[VAL_107]] temporary_lhs : !fir.class<!fir.type<_QMtypesTt>>, !fir.class<!fir.type<_QMtypesTt>> 353// CHECK: } 354// CHECK: } 355// CHECK: %[[VAL_108:.*]] = fir.undefined tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 356// CHECK: %[[VAL_109:.*]] = fir.insert_value %[[VAL_108]], %[[VAL_62]], [1 : index] : (tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1>, i1) -> tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 357// CHECK: %[[VAL_110:.*]] = fir.insert_value %[[VAL_109]], %[[VAL_89]], [0 : index] : (tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1>, !fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>) -> tuple<!fir.class<!fir.heap<!fir.array<?x?x!fir.type<_QMtypesTt>>>>, i1> 358// CHECK: return 359// CHECK: } 360