[flang] Add global and global box initialization tests

This patch addes some global initialization and global
box initialization tests.

This patch is part of the upstreaming effort from fir-dev branch.

Reviewed By: schweitz

Differential Revision: https://reviews.llvm.org/D122881

Co-authored-by: Jean Perier <jperier@nvidia.com>
Co-authored-by: Eric Schweitz <eschweitz@nvidia.com>
This commit is contained in:
Valentin Clement 2022-04-03 15:19:38 +02:00
parent 2fb57d628c
commit e0c782bdc0
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GPG Key ID: 086D54783C928776
4 changed files with 171 additions and 12 deletions

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@ -598,21 +598,30 @@ struct StringLitOpConversion : public FIROpConversion<fir::StringLitOp> {
return success(); return success();
} }
auto arr = attr.cast<mlir::ArrayAttr>();
auto charTy = constop.getType().cast<fir::CharacterType>(); auto charTy = constop.getType().cast<fir::CharacterType>();
unsigned bits = lowerTy().characterBitsize(charTy); unsigned bits = lowerTy().characterBitsize(charTy);
mlir::Type intTy = rewriter.getIntegerType(bits); mlir::Type intTy = rewriter.getIntegerType(bits);
auto attrs = llvm::map_range( mlir::Location loc = constop.getLoc();
arr.getValue(), [intTy, bits](mlir::Attribute attr) -> Attribute { mlir::Value cst = rewriter.create<mlir::LLVM::UndefOp>(loc, ty);
return mlir::IntegerAttr::get( if (auto arr = attr.dyn_cast<mlir::DenseElementsAttr>()) {
intTy, cst = rewriter.create<mlir::LLVM::ConstantOp>(loc, ty, arr);
attr.cast<mlir::IntegerAttr>().getValue().sextOrTrunc(bits)); } else if (auto arr = attr.dyn_cast<mlir::ArrayAttr>()) {
}); for (auto a : llvm::enumerate(arr.getValue())) {
mlir::Type vecType = mlir::VectorType::get(arr.size(), intTy); // convert each character to a precise bitsize
auto denseAttr = mlir::DenseElementsAttr::get( auto elemAttr = mlir::IntegerAttr::get(
vecType.cast<mlir::ShapedType>(), llvm::to_vector<8>(attrs)); intTy,
rewriter.replaceOpWithNewOp<mlir::arith::ConstantOp>(constop, ty, a.value().cast<mlir::IntegerAttr>().getValue().zextOrTrunc(bits));
denseAttr); auto elemCst =
rewriter.create<mlir::LLVM::ConstantOp>(loc, intTy, elemAttr);
auto index = mlir::ArrayAttr::get(
constop.getContext(), rewriter.getI32IntegerAttr(a.index()));
cst = rewriter.create<mlir::LLVM::InsertValueOp>(loc, ty, cst, elemCst,
index);
}
} else {
return failure();
}
rewriter.replaceOp(constop, cst);
return success(); return success();
} }
}; };

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@ -0,0 +1,22 @@
// RUN: tco --target=x86_64-unknown-linux-gnu %s | FileCheck %s
// Test of building and passing boxchar.
func private @callee(%x : !fir.boxchar<1>)
// CHECK-LABEL: define void @get_name
func @get_name() {
%1 = fir.address_of (@name) : !fir.ref<!fir.char<1,9>>
%2 = arith.constant 9 : i64
%3 = fir.convert %1 : (!fir.ref<!fir.char<1,9>>) -> !fir.ref<!fir.char<1,?>>
%4 = fir.emboxchar %3, %2 : (!fir.ref<!fir.char<1,?>>, i64) -> !fir.boxchar<1>
// CHECK: call void @callee(i8* getelementptr inbounds ([9 x i8], [9 x i8]* @name, i32 0, i32 0), i64 9)
fir.call @callee(%4) : (!fir.boxchar<1>) -> ()
return
}
fir.global @name constant : !fir.char<1,9> {
%str = fir.string_lit "Your name"(9) : !fir.char<1,9>
//constant 1
fir.has_value %str : !fir.char<1,9>
}

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@ -0,0 +1,69 @@
// RUN: tco --fir-to-llvm-ir %s | FileCheck %s
fir.global internal @_QEmask : !fir.array<32xi32> {
%c0_i32 = arith.constant 1 : i32
%0 = fir.undefined !fir.array<32xi32>
%2 = fir.insert_on_range %0, %c0_i32 from (0) to (31) : (!fir.array<32xi32>, i32) -> !fir.array<32xi32>
fir.has_value %2 : !fir.array<32xi32>
}
// CHECK: llvm.mlir.global internal @_QEmask() : !llvm.array<32 x i32> {
// CHECK: [[VAL0:%.*]] = llvm.mlir.constant(1 : i32) : i32
// CHECK: [[VAL1:%.*]] = llvm.mlir.undef : !llvm.array<32 x i32>
// CHECK: [[VAL2:%.*]] = llvm.mlir.constant(dense<1> : vector<32xi32>) : !llvm.array<32 x i32>
// CHECK: llvm.return [[VAL2]] : !llvm.array<32 x i32>
// CHECK: }
fir.global internal @_QEmultiarray : !fir.array<32x32xi32> {
%c0_i32 = arith.constant 1 : i32
%0 = fir.undefined !fir.array<32x32xi32>
%2 = fir.insert_on_range %0, %c0_i32 from (0,0) to (31,31) : (!fir.array<32x32xi32>, i32) -> !fir.array<32x32xi32>
fir.has_value %2 : !fir.array<32x32xi32>
}
// CHECK: llvm.mlir.global internal @_QEmultiarray() : !llvm.array<32 x array<32 x i32>> {
// CHECK: [[VAL0:%.*]] = llvm.mlir.constant(1 : i32) : i32
// CHECK: [[VAL1:%.*]] = llvm.mlir.undef : !llvm.array<32 x array<32 x i32>>
// CHECK: [[VAL2:%.*]] = llvm.mlir.constant(dense<1> : vector<32x32xi32>) : !llvm.array<32 x array<32 x i32>>
// CHECK: llvm.return [[VAL2]] : !llvm.array<32 x array<32 x i32>>
// CHECK: }
fir.global internal @_QEmasklogical : !fir.array<32768x!fir.logical<4>> {
%true = arith.constant true
%0 = fir.undefined !fir.array<32768x!fir.logical<4>>
%1 = fir.convert %true : (i1) -> !fir.logical<4>
%2 = fir.insert_on_range %0, %1 from (0) to (32767) : (!fir.array<32768x!fir.logical<4>>, !fir.logical<4>) -> !fir.array<32768x!fir.logical<4>>
fir.has_value %2 : !fir.array<32768x!fir.logical<4>>
}
// CHECK: llvm.mlir.global internal @_QEmasklogical() : !llvm.array<32768 x i32> {
// CHECK: [[VAL0:%.*]] = llvm.mlir.constant(true) : i1
// CHECK: [[VAL1:%.*]] = llvm.mlir.undef : !llvm.array<32768 x i32>
// CHECK: [[VAL2:%.*]] = llvm.zext [[VAL0]] : i1 to i32
// CHECK: [[VAL3:%.*]] = llvm.mlir.constant(dense<true> : vector<32768xi1>) : !llvm.array<32768 x i32>
// CHECK: llvm.return [[VAL3]] : !llvm.array<32768 x i32>
// CHECK: }
fir.global internal @_QElookforme : !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}> {
%c2_i32 = arith.constant 2 : i32
%c52_i32 = arith.constant 52 : i32
%0 = fir.undefined !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>
%1 = fir.undefined !fir.array<500xi32>
%2 = fir.insert_on_range %1, %c2_i32 from (0) to (499) : (!fir.array<500xi32>, i32) -> !fir.array<500xi32>
%3 = fir.insert_value %0, %2, ["i", !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>] :(!fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>, !fir.array<500xi32>) -> !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>
%4 = fir.insert_on_range %1, %c52_i32 from (0) to (499) : (!fir.array<500xi32>, i32) -> !fir.array<500xi32>
%5 = fir.insert_value %3, %4, ["j", !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>] : (!fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>, !fir.array<500xi32>) -> !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>
fir.has_value %5 : !fir.type<_QTt{i:!fir.array<500xi32>,j:!fir.array<500xi32>}>
}
// CHECK: llvm.mlir.global internal @_QElookforme() : !llvm.struct<"_QTt", (array<500 x i32>, array<500 x i32>)> {
// CHECK: [[CST0:%.*]] = llvm.mlir.constant(2 : i32) : i32
// CHECK: [[CST1:%.*]] = llvm.mlir.constant(52 : i32) : i32
// CHECK: [[STRUCT:%.*]] = llvm.mlir.undef : !llvm.struct<"_QTt", (array<500 x i32>, array<500 x i32>)>
// CHECK: [[ARR1:%.*]] = llvm.mlir.undef : !llvm.array<500 x i32>
// CHECK: [[DENSE1:%.*]] = llvm.mlir.constant(dense<2> : vector<500xi32>) : !llvm.array<500 x i32>
// CHECK: [[STRUCT1:%.*]] = llvm.insertvalue [[DENSE1]], [[STRUCT]][0 : i32] : !llvm.struct<"_QTt", (array<500 x i32>, array<500 x i32>)>
// CHECK: [[DENSE2:%.*]] = llvm.mlir.constant(dense<52> : vector<500xi32>) : !llvm.array<500 x i32>
// CHECK: [[STRUCT2:%.*]] = llvm.insertvalue [[DENSE2]], [[STRUCT1]][1 : i32] : !llvm.struct<"_QTt", (array<500 x i32>, array<500 x i32>)>
// CHECK: llvm.return [[STRUCT2]] : !llvm.struct<"_QTt", (array<500 x i32>, array<500 x i32>)>
// CHECK: }

59
flang/test/Fir/global.fir Normal file
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@ -0,0 +1,59 @@
// RUN: tco %s | FileCheck %s
// CHECK: @g_i0 = global i32 0
fir.global @g_i0 : i32 {
%1 = arith.constant 0 : i32
fir.has_value %1 : i32
}
// CHECK: @g_i2 = global i32 2
fir.global @g_i2 : i32 {
%1 = arith.constant 2 : i32
fir.has_value %1 : i32
}
// CHECK: @g_ci5 = constant i32 5
fir.global @g_ci5 constant : i32 {
%c = arith.constant 5 : i32
fir.has_value %c : i32
}
// CHECK: @i_i515 = internal global i32 515
fir.global internal @i_i515 (515:i32) : i32
// CHECK: @C_i511 = common global i32 0
fir.global common @C_i511 (0:i32) : i32
// CHECK: @w_i86 = weak global i32 86
fir.global weak @w_i86 (86:i32) : i32
// CHECK: @str1 = global [6 x i8] c"Hello!"
fir.global @str1 : !fir.char<1,6> {
%1 = fir.string_lit "Hello!"(6) : !fir.char<1,6>
fir.has_value %1 : !fir.char<1,6>
}
// CHECK: @_QEmask = internal global [32 x i32] [i32 1, i32 1
fir.global internal @_QEmask : !fir.array<32xi32> {
%c0_i32 = arith.constant 1 : i32
%0 = fir.undefined !fir.array<32xi32>
%2 = fir.insert_on_range %0, %c0_i32 from (0) to (31) : (!fir.array<32xi32>, i32) -> !fir.array<32xi32>
fir.has_value %2 : !fir.array<32xi32>
}
// CHECK: @_QEmultiarray = internal global [32 x [32 x i32]]
fir.global internal @_QEmultiarray : !fir.array<32x32xi32> {
%c0_i32 = arith.constant 1 : i32
%0 = fir.undefined !fir.array<32x32xi32>
%2 = fir.insert_on_range %0, %c0_i32 from (0,0) to (31,31) : (!fir.array<32x32xi32>, i32) -> !fir.array<32x32xi32>
fir.has_value %2 : !fir.array<32x32xi32>
}
// CHECK: @_QEmasklogical = internal global [32768 x i32] [i32 -1, i32 -1,
fir.global internal @_QEmasklogical : !fir.array<32768x!fir.logical<4>> {
%true = arith.constant true
%0 = fir.undefined !fir.array<32768x!fir.logical<4>>
%1 = fir.convert %true : (i1) -> !fir.logical<4>
%2 = fir.insert_on_range %0, %1 from (0) to (32767) : (!fir.array<32768x!fir.logical<4>>, !fir.logical<4>) -> !fir.array<32768x!fir.logical<4>>
fir.has_value %2 : !fir.array<32768x!fir.logical<4>>
}