1e4978713SBenjamin Kramer //===-- ComplexToLibm.cpp - conversion from Complex to libm calls ---------===//
2e4978713SBenjamin Kramer //
3e4978713SBenjamin Kramer // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4e4978713SBenjamin Kramer // See https://llvm.org/LICENSE.txt for license information.
5e4978713SBenjamin Kramer // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6e4978713SBenjamin Kramer //
7e4978713SBenjamin Kramer //===----------------------------------------------------------------------===//
8e4978713SBenjamin Kramer 
9e4978713SBenjamin Kramer #include "mlir/Conversion/ComplexToLibm/ComplexToLibm.h"
10e4978713SBenjamin Kramer 
11e4978713SBenjamin Kramer #include "../PassDetail.h"
12e4978713SBenjamin Kramer #include "mlir/Dialect/Complex/IR/Complex.h"
13e4978713SBenjamin Kramer #include "mlir/Dialect/Func/IR/FuncOps.h"
14e4978713SBenjamin Kramer #include "mlir/IR/PatternMatch.h"
15e4978713SBenjamin Kramer 
16e4978713SBenjamin Kramer using namespace mlir;
17e4978713SBenjamin Kramer 
18e4978713SBenjamin Kramer namespace {
19eaba6e0bSlewuathe // Functor to resolve the function name corresponding to the given complex
20eaba6e0bSlewuathe // result type.
21eaba6e0bSlewuathe struct ComplexTypeResolver {
operator ()__anon942d09fb0111::ComplexTypeResolver22eaba6e0bSlewuathe   llvm::Optional<bool> operator()(Type type) const {
23eaba6e0bSlewuathe     auto complexType = type.cast<ComplexType>();
24eaba6e0bSlewuathe     auto elementType = complexType.getElementType();
25eaba6e0bSlewuathe     if (!elementType.isa<Float32Type, Float64Type>())
26eaba6e0bSlewuathe       return {};
27eaba6e0bSlewuathe 
28eaba6e0bSlewuathe     return elementType.getIntOrFloatBitWidth() == 64;
29eaba6e0bSlewuathe   }
30eaba6e0bSlewuathe };
31eaba6e0bSlewuathe 
32eaba6e0bSlewuathe // Functor to resolve the function name corresponding to the given float result
33eaba6e0bSlewuathe // type.
34eaba6e0bSlewuathe struct FloatTypeResolver {
operator ()__anon942d09fb0111::FloatTypeResolver35eaba6e0bSlewuathe   llvm::Optional<bool> operator()(Type type) const {
36eaba6e0bSlewuathe     auto elementType = type.cast<FloatType>();
37eaba6e0bSlewuathe     if (!elementType.isa<Float32Type, Float64Type>())
38eaba6e0bSlewuathe       return {};
39eaba6e0bSlewuathe 
40eaba6e0bSlewuathe     return elementType.getIntOrFloatBitWidth() == 64;
41eaba6e0bSlewuathe   }
42eaba6e0bSlewuathe };
43eaba6e0bSlewuathe 
44e4978713SBenjamin Kramer // Pattern to convert scalar complex operations to calls to libm functions.
45e4978713SBenjamin Kramer // Additionally the libm function signatures are declared.
46eaba6e0bSlewuathe // TypeResolver is a functor returning the libm function name according to the
47eaba6e0bSlewuathe // expected type double or float.
48eaba6e0bSlewuathe template <typename Op, typename TypeResolver = ComplexTypeResolver>
49e4978713SBenjamin Kramer struct ScalarOpToLibmCall : public OpRewritePattern<Op> {
50e4978713SBenjamin Kramer public:
51e4978713SBenjamin Kramer   using OpRewritePattern<Op>::OpRewritePattern;
ScalarOpToLibmCall__anon942d09fb0111::ScalarOpToLibmCall52eaba6e0bSlewuathe   ScalarOpToLibmCall<Op, TypeResolver>(MLIRContext *context,
53eaba6e0bSlewuathe                                        StringRef floatFunc,
54eaba6e0bSlewuathe                                        StringRef doubleFunc,
55eaba6e0bSlewuathe                                        PatternBenefit benefit)
56e4978713SBenjamin Kramer       : OpRewritePattern<Op>(context, benefit), floatFunc(floatFunc),
57e4978713SBenjamin Kramer         doubleFunc(doubleFunc){};
58e4978713SBenjamin Kramer 
59e4978713SBenjamin Kramer   LogicalResult matchAndRewrite(Op op, PatternRewriter &rewriter) const final;
60e4978713SBenjamin Kramer 
61e4978713SBenjamin Kramer private:
62e4978713SBenjamin Kramer   std::string floatFunc, doubleFunc;
63e4978713SBenjamin Kramer };
64e4978713SBenjamin Kramer } // namespace
65e4978713SBenjamin Kramer 
66eaba6e0bSlewuathe template <typename Op, typename TypeResolver>
matchAndRewrite(Op op,PatternRewriter & rewriter) const67eaba6e0bSlewuathe LogicalResult ScalarOpToLibmCall<Op, TypeResolver>::matchAndRewrite(
68eaba6e0bSlewuathe     Op op, PatternRewriter &rewriter) const {
69e4978713SBenjamin Kramer   auto module = SymbolTable::getNearestSymbolTable(op);
70eaba6e0bSlewuathe   auto isDouble = TypeResolver()(op.getType());
71*491d2701SKazu Hirata   if (!isDouble.has_value())
72e4978713SBenjamin Kramer     return failure();
73e4978713SBenjamin Kramer 
74eaba6e0bSlewuathe   auto name = isDouble.value() ? doubleFunc : floatFunc;
75eaba6e0bSlewuathe 
76e4978713SBenjamin Kramer   auto opFunc = dyn_cast_or_null<SymbolOpInterface>(
77e4978713SBenjamin Kramer       SymbolTable::lookupSymbolIn(module, name));
78e4978713SBenjamin Kramer   // Forward declare function if it hasn't already been
79e4978713SBenjamin Kramer   if (!opFunc) {
80e4978713SBenjamin Kramer     OpBuilder::InsertionGuard guard(rewriter);
81e4978713SBenjamin Kramer     rewriter.setInsertionPointToStart(&module->getRegion(0).front());
82e4978713SBenjamin Kramer     auto opFunctionTy = FunctionType::get(
83e4978713SBenjamin Kramer         rewriter.getContext(), op->getOperandTypes(), op->getResultTypes());
84e4978713SBenjamin Kramer     opFunc = rewriter.create<func::FuncOp>(rewriter.getUnknownLoc(), name,
85e4978713SBenjamin Kramer                                            opFunctionTy);
86e4978713SBenjamin Kramer     opFunc.setPrivate();
87e4978713SBenjamin Kramer   }
88e4978713SBenjamin Kramer   assert(isa<FunctionOpInterface>(SymbolTable::lookupSymbolIn(module, name)));
89e4978713SBenjamin Kramer 
90eaba6e0bSlewuathe   rewriter.replaceOpWithNewOp<func::CallOp>(op, name, op.getType(),
91eaba6e0bSlewuathe                                             op->getOperands());
92e4978713SBenjamin Kramer 
93e4978713SBenjamin Kramer   return success();
94e4978713SBenjamin Kramer }
95e4978713SBenjamin Kramer 
populateComplexToLibmConversionPatterns(RewritePatternSet & patterns,PatternBenefit benefit)96e4978713SBenjamin Kramer void mlir::populateComplexToLibmConversionPatterns(RewritePatternSet &patterns,
97e4978713SBenjamin Kramer                                                    PatternBenefit benefit) {
98e4978713SBenjamin Kramer   patterns.add<ScalarOpToLibmCall<complex::PowOp>>(patterns.getContext(),
99e4978713SBenjamin Kramer                                                    "cpowf", "cpow", benefit);
100e4978713SBenjamin Kramer   patterns.add<ScalarOpToLibmCall<complex::SqrtOp>>(patterns.getContext(),
101e4978713SBenjamin Kramer                                                     "csqrtf", "csqrt", benefit);
102e4978713SBenjamin Kramer   patterns.add<ScalarOpToLibmCall<complex::TanhOp>>(patterns.getContext(),
103e4978713SBenjamin Kramer                                                     "ctanhf", "ctanh", benefit);
1049f0869a6Slewuathe   patterns.add<ScalarOpToLibmCall<complex::CosOp>>(patterns.getContext(),
1059f0869a6Slewuathe                                                    "ccosf", "ccos", benefit);
1069f0869a6Slewuathe   patterns.add<ScalarOpToLibmCall<complex::SinOp>>(patterns.getContext(),
1079f0869a6Slewuathe                                                    "csinf", "csin", benefit);
10872ee11a8Slewuathe   patterns.add<ScalarOpToLibmCall<complex::ConjOp>>(patterns.getContext(),
10972ee11a8Slewuathe                                                     "conjf", "conj", benefit);
1107769505aSKai Sasaki   patterns.add<ScalarOpToLibmCall<complex::LogOp>>(patterns.getContext(),
1117769505aSKai Sasaki                                                    "clogf", "clog", benefit);
112eaba6e0bSlewuathe   patterns.add<ScalarOpToLibmCall<complex::AbsOp, FloatTypeResolver>>(
113eaba6e0bSlewuathe       patterns.getContext(), "cabsf", "cabs", benefit);
114f27deeeeSlewuathe   patterns.add<ScalarOpToLibmCall<complex::AngleOp, FloatTypeResolver>>(
115f27deeeeSlewuathe       patterns.getContext(), "cargf", "carg", benefit);
116e4978713SBenjamin Kramer }
117e4978713SBenjamin Kramer 
118e4978713SBenjamin Kramer namespace {
119e4978713SBenjamin Kramer struct ConvertComplexToLibmPass
120e4978713SBenjamin Kramer     : public ConvertComplexToLibmBase<ConvertComplexToLibmPass> {
121e4978713SBenjamin Kramer   void runOnOperation() override;
122e4978713SBenjamin Kramer };
123e4978713SBenjamin Kramer } // namespace
124e4978713SBenjamin Kramer 
runOnOperation()125e4978713SBenjamin Kramer void ConvertComplexToLibmPass::runOnOperation() {
126e4978713SBenjamin Kramer   auto module = getOperation();
127e4978713SBenjamin Kramer 
128e4978713SBenjamin Kramer   RewritePatternSet patterns(&getContext());
129e4978713SBenjamin Kramer   populateComplexToLibmConversionPatterns(patterns, /*benefit=*/1);
130e4978713SBenjamin Kramer 
131e4978713SBenjamin Kramer   ConversionTarget target(getContext());
132e4978713SBenjamin Kramer   target.addLegalDialect<func::FuncDialect>();
133eaba6e0bSlewuathe   target.addIllegalOp<complex::PowOp, complex::SqrtOp, complex::TanhOp,
134f27deeeeSlewuathe                       complex::AbsOp, complex::AngleOp>();
135e4978713SBenjamin Kramer   if (failed(applyPartialConversion(module, target, std::move(patterns))))
136e4978713SBenjamin Kramer     signalPassFailure();
137e4978713SBenjamin Kramer }
138e4978713SBenjamin Kramer 
139e4978713SBenjamin Kramer std::unique_ptr<OperationPass<ModuleOp>>
createConvertComplexToLibmPass()140e4978713SBenjamin Kramer mlir::createConvertComplexToLibmPass() {
141e4978713SBenjamin Kramer   return std::make_unique<ConvertComplexToLibmPass>();
142e4978713SBenjamin Kramer }
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