1cde4d5a6SJacques Pienaar //===- ModuleTranslation.cpp - MLIR to LLVM conversion --------------------===//
25d7231d8SStephan Herhut //
330857107SMehdi Amini // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
456222a06SMehdi Amini // See https://llvm.org/LICENSE.txt for license information.
556222a06SMehdi Amini // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
65d7231d8SStephan Herhut //
756222a06SMehdi Amini //===----------------------------------------------------------------------===//
85d7231d8SStephan Herhut //
95d7231d8SStephan Herhut // This file implements the translation between an MLIR LLVM dialect module and
105d7231d8SStephan Herhut // the corresponding LLVMIR module. It only handles core LLVM IR operations.
115d7231d8SStephan Herhut //
125d7231d8SStephan Herhut //===----------------------------------------------------------------------===//
135d7231d8SStephan Herhut 
145d7231d8SStephan Herhut #include "mlir/Target/LLVMIR/ModuleTranslation.h"
155d7231d8SStephan Herhut 
16c33d6970SRiver Riddle #include "DebugTranslation.h"
17ba0fa925SRiver Riddle #include "mlir/Dialect/LLVMIR/LLVMDialect.h"
18ce8f10d6SAlex Zinenko #include "mlir/Dialect/LLVMIR/Transforms/LegalizeForExport.h"
1992a295ebSKiran Chandramohan #include "mlir/Dialect/OpenMP/OpenMPDialect.h"
205d7231d8SStephan Herhut #include "mlir/IR/Attributes.h"
2165fcddffSRiver Riddle #include "mlir/IR/BuiltinOps.h"
2209f7a55fSRiver Riddle #include "mlir/IR/BuiltinTypes.h"
23d4568ed7SGeorge Mitenkov #include "mlir/IR/RegionGraphTraits.h"
245d7231d8SStephan Herhut #include "mlir/Support/LLVM.h"
25b77bac05SAlex Zinenko #include "mlir/Target/LLVMIR/LLVMTranslationInterface.h"
26929189a4SWilliam S. Moses #include "mlir/Target/LLVMIR/TypeToLLVM.h"
27ebf190fcSRiver Riddle #include "llvm/ADT/TypeSwitch.h"
285d7231d8SStephan Herhut 
29d4568ed7SGeorge Mitenkov #include "llvm/ADT/PostOrderIterator.h"
305d7231d8SStephan Herhut #include "llvm/ADT/SetVector.h"
3192a295ebSKiran Chandramohan #include "llvm/Frontend/OpenMP/OMPIRBuilder.h"
325d7231d8SStephan Herhut #include "llvm/IR/BasicBlock.h"
33d9067dcaSKiran Chandramohan #include "llvm/IR/CFG.h"
345d7231d8SStephan Herhut #include "llvm/IR/Constants.h"
355d7231d8SStephan Herhut #include "llvm/IR/DerivedTypes.h"
365d7231d8SStephan Herhut #include "llvm/IR/IRBuilder.h"
37047400edSNicolas Vasilache #include "llvm/IR/InlineAsm.h"
38875eb523SNavdeep Kumar #include "llvm/IR/IntrinsicsNVPTX.h"
395d7231d8SStephan Herhut #include "llvm/IR/LLVMContext.h"
4099d03f03SGeorge Mitenkov #include "llvm/IR/MDBuilder.h"
415d7231d8SStephan Herhut #include "llvm/IR/Module.h"
42ce8f10d6SAlex Zinenko #include "llvm/IR/Verifier.h"
43d9067dcaSKiran Chandramohan #include "llvm/Transforms/Utils/BasicBlockUtils.h"
445d7231d8SStephan Herhut #include "llvm/Transforms/Utils/Cloning.h"
4557b9b296SUday Bondhugula #include "llvm/Transforms/Utils/ModuleUtils.h"
465d7231d8SStephan Herhut 
472666b973SRiver Riddle using namespace mlir;
482666b973SRiver Riddle using namespace mlir::LLVM;
49c33d6970SRiver Riddle using namespace mlir::LLVM::detail;
505d7231d8SStephan Herhut 
51eb67bd78SAlex Zinenko #include "mlir/Dialect/LLVMIR/LLVMConversionEnumsToLLVM.inc"
52eb67bd78SAlex Zinenko 
53a922e231SAlex Zinenko /// Builds a constant of a sequential LLVM type `type`, potentially containing
54a922e231SAlex Zinenko /// other sequential types recursively, from the individual constant values
55a922e231SAlex Zinenko /// provided in `constants`. `shape` contains the number of elements in nested
56a922e231SAlex Zinenko /// sequential types. Reports errors at `loc` and returns nullptr on error.
57a4a42160SAlex Zinenko static llvm::Constant *
58a4a42160SAlex Zinenko buildSequentialConstant(ArrayRef<llvm::Constant *> &constants,
59a4a42160SAlex Zinenko                         ArrayRef<int64_t> shape, llvm::Type *type,
60a4a42160SAlex Zinenko                         Location loc) {
61a4a42160SAlex Zinenko   if (shape.empty()) {
62a4a42160SAlex Zinenko     llvm::Constant *result = constants.front();
63a4a42160SAlex Zinenko     constants = constants.drop_front();
64a4a42160SAlex Zinenko     return result;
65a4a42160SAlex Zinenko   }
66a4a42160SAlex Zinenko 
6768b03aeeSEli Friedman   llvm::Type *elementType;
6868b03aeeSEli Friedman   if (auto *arrayTy = dyn_cast<llvm::ArrayType>(type)) {
6968b03aeeSEli Friedman     elementType = arrayTy->getElementType();
7068b03aeeSEli Friedman   } else if (auto *vectorTy = dyn_cast<llvm::VectorType>(type)) {
7168b03aeeSEli Friedman     elementType = vectorTy->getElementType();
7268b03aeeSEli Friedman   } else {
73a4a42160SAlex Zinenko     emitError(loc) << "expected sequential LLVM types wrapping a scalar";
74a4a42160SAlex Zinenko     return nullptr;
75a4a42160SAlex Zinenko   }
76a4a42160SAlex Zinenko 
77a4a42160SAlex Zinenko   SmallVector<llvm::Constant *, 8> nested;
78a4a42160SAlex Zinenko   nested.reserve(shape.front());
79a4a42160SAlex Zinenko   for (int64_t i = 0; i < shape.front(); ++i) {
80a4a42160SAlex Zinenko     nested.push_back(buildSequentialConstant(constants, shape.drop_front(),
81a4a42160SAlex Zinenko                                              elementType, loc));
82a4a42160SAlex Zinenko     if (!nested.back())
83a4a42160SAlex Zinenko       return nullptr;
84a4a42160SAlex Zinenko   }
85a4a42160SAlex Zinenko 
86a4a42160SAlex Zinenko   if (shape.size() == 1 && type->isVectorTy())
87a4a42160SAlex Zinenko     return llvm::ConstantVector::get(nested);
88a4a42160SAlex Zinenko   return llvm::ConstantArray::get(
89a4a42160SAlex Zinenko       llvm::ArrayType::get(elementType, shape.front()), nested);
90a4a42160SAlex Zinenko }
91a4a42160SAlex Zinenko 
92fc817b09SKazuaki Ishizaki /// Returns the first non-sequential type nested in sequential types.
93a4a42160SAlex Zinenko static llvm::Type *getInnermostElementType(llvm::Type *type) {
9468b03aeeSEli Friedman   do {
9568b03aeeSEli Friedman     if (auto *arrayTy = dyn_cast<llvm::ArrayType>(type)) {
9668b03aeeSEli Friedman       type = arrayTy->getElementType();
9768b03aeeSEli Friedman     } else if (auto *vectorTy = dyn_cast<llvm::VectorType>(type)) {
9868b03aeeSEli Friedman       type = vectorTy->getElementType();
9968b03aeeSEli Friedman     } else {
100a4a42160SAlex Zinenko       return type;
101a4a42160SAlex Zinenko     }
1020881a4f1SAlex Zinenko   } while (true);
10368b03aeeSEli Friedman }
104a4a42160SAlex Zinenko 
105f9be7a7aSAlex Zinenko /// Convert a dense elements attribute to an LLVM IR constant using its raw data
106f9be7a7aSAlex Zinenko /// storage if possible. This supports elements attributes of tensor or vector
107f9be7a7aSAlex Zinenko /// type and avoids constructing separate objects for individual values of the
108f9be7a7aSAlex Zinenko /// innermost dimension. Constants for other dimensions are still constructed
109f9be7a7aSAlex Zinenko /// recursively. Returns null if constructing from raw data is not supported for
110f9be7a7aSAlex Zinenko /// this type, e.g., element type is not a power-of-two-sized primitive. Reports
111f9be7a7aSAlex Zinenko /// other errors at `loc`.
112f9be7a7aSAlex Zinenko static llvm::Constant *
113f9be7a7aSAlex Zinenko convertDenseElementsAttr(Location loc, DenseElementsAttr denseElementsAttr,
114f9be7a7aSAlex Zinenko                          llvm::Type *llvmType,
115f9be7a7aSAlex Zinenko                          const ModuleTranslation &moduleTranslation) {
116f9be7a7aSAlex Zinenko   if (!denseElementsAttr)
117f9be7a7aSAlex Zinenko     return nullptr;
118f9be7a7aSAlex Zinenko 
119f9be7a7aSAlex Zinenko   llvm::Type *innermostLLVMType = getInnermostElementType(llvmType);
120f9be7a7aSAlex Zinenko   if (!llvm::ConstantDataSequential::isElementTypeCompatible(innermostLLVMType))
121f9be7a7aSAlex Zinenko     return nullptr;
122f9be7a7aSAlex Zinenko 
123898e8096SBenjamin Kramer   ShapedType type = denseElementsAttr.getType();
124898e8096SBenjamin Kramer   if (type.getNumElements() == 0)
125898e8096SBenjamin Kramer     return nullptr;
126898e8096SBenjamin Kramer 
127f9be7a7aSAlex Zinenko   // Compute the shape of all dimensions but the innermost. Note that the
128f9be7a7aSAlex Zinenko   // innermost dimension may be that of the vector element type.
129f9be7a7aSAlex Zinenko   bool hasVectorElementType = type.getElementType().isa<VectorType>();
130f9be7a7aSAlex Zinenko   unsigned numAggregates =
131f9be7a7aSAlex Zinenko       denseElementsAttr.getNumElements() /
132f9be7a7aSAlex Zinenko       (hasVectorElementType ? 1
133f9be7a7aSAlex Zinenko                             : denseElementsAttr.getType().getShape().back());
134f9be7a7aSAlex Zinenko   ArrayRef<int64_t> outerShape = type.getShape();
135f9be7a7aSAlex Zinenko   if (!hasVectorElementType)
136f9be7a7aSAlex Zinenko     outerShape = outerShape.drop_back();
137f9be7a7aSAlex Zinenko 
138f9be7a7aSAlex Zinenko   // Handle the case of vector splat, LLVM has special support for it.
139f9be7a7aSAlex Zinenko   if (denseElementsAttr.isSplat() &&
140f9be7a7aSAlex Zinenko       (type.isa<VectorType>() || hasVectorElementType)) {
141f9be7a7aSAlex Zinenko     llvm::Constant *splatValue = LLVM::detail::getLLVMConstant(
142937e40a8SRiver Riddle         innermostLLVMType, denseElementsAttr.getSplatValue<Attribute>(), loc,
143f9be7a7aSAlex Zinenko         moduleTranslation, /*isTopLevel=*/false);
144f9be7a7aSAlex Zinenko     llvm::Constant *splatVector =
145f9be7a7aSAlex Zinenko         llvm::ConstantDataVector::getSplat(0, splatValue);
146f9be7a7aSAlex Zinenko     SmallVector<llvm::Constant *> constants(numAggregates, splatVector);
147f9be7a7aSAlex Zinenko     ArrayRef<llvm::Constant *> constantsRef = constants;
148f9be7a7aSAlex Zinenko     return buildSequentialConstant(constantsRef, outerShape, llvmType, loc);
149f9be7a7aSAlex Zinenko   }
150f9be7a7aSAlex Zinenko   if (denseElementsAttr.isSplat())
151f9be7a7aSAlex Zinenko     return nullptr;
152f9be7a7aSAlex Zinenko 
153f9be7a7aSAlex Zinenko   // In case of non-splat, create a constructor for the innermost constant from
154f9be7a7aSAlex Zinenko   // a piece of raw data.
155f9be7a7aSAlex Zinenko   std::function<llvm::Constant *(StringRef)> buildCstData;
156f9be7a7aSAlex Zinenko   if (type.isa<TensorType>()) {
157f9be7a7aSAlex Zinenko     auto vectorElementType = type.getElementType().dyn_cast<VectorType>();
158f9be7a7aSAlex Zinenko     if (vectorElementType && vectorElementType.getRank() == 1) {
159f9be7a7aSAlex Zinenko       buildCstData = [&](StringRef data) {
160f9be7a7aSAlex Zinenko         return llvm::ConstantDataVector::getRaw(
161f9be7a7aSAlex Zinenko             data, vectorElementType.getShape().back(), innermostLLVMType);
162f9be7a7aSAlex Zinenko       };
163f9be7a7aSAlex Zinenko     } else if (!vectorElementType) {
164f9be7a7aSAlex Zinenko       buildCstData = [&](StringRef data) {
165f9be7a7aSAlex Zinenko         return llvm::ConstantDataArray::getRaw(data, type.getShape().back(),
166f9be7a7aSAlex Zinenko                                                innermostLLVMType);
167f9be7a7aSAlex Zinenko       };
168f9be7a7aSAlex Zinenko     }
169f9be7a7aSAlex Zinenko   } else if (type.isa<VectorType>()) {
170f9be7a7aSAlex Zinenko     buildCstData = [&](StringRef data) {
171f9be7a7aSAlex Zinenko       return llvm::ConstantDataVector::getRaw(data, type.getShape().back(),
172f9be7a7aSAlex Zinenko                                               innermostLLVMType);
173f9be7a7aSAlex Zinenko     };
174f9be7a7aSAlex Zinenko   }
175f9be7a7aSAlex Zinenko   if (!buildCstData)
176f9be7a7aSAlex Zinenko     return nullptr;
177f9be7a7aSAlex Zinenko 
178f9be7a7aSAlex Zinenko   // Create innermost constants and defer to the default constant creation
179f9be7a7aSAlex Zinenko   // mechanism for other dimensions.
180f9be7a7aSAlex Zinenko   SmallVector<llvm::Constant *> constants;
181f9be7a7aSAlex Zinenko   unsigned aggregateSize = denseElementsAttr.getType().getShape().back() *
182f9be7a7aSAlex Zinenko                            (innermostLLVMType->getScalarSizeInBits() / 8);
183f9be7a7aSAlex Zinenko   constants.reserve(numAggregates);
184f9be7a7aSAlex Zinenko   for (unsigned i = 0; i < numAggregates; ++i) {
185f9be7a7aSAlex Zinenko     StringRef data(denseElementsAttr.getRawData().data() + i * aggregateSize,
186f9be7a7aSAlex Zinenko                    aggregateSize);
187f9be7a7aSAlex Zinenko     constants.push_back(buildCstData(data));
188f9be7a7aSAlex Zinenko   }
189f9be7a7aSAlex Zinenko 
190f9be7a7aSAlex Zinenko   ArrayRef<llvm::Constant *> constantsRef = constants;
191f9be7a7aSAlex Zinenko   return buildSequentialConstant(constantsRef, outerShape, llvmType, loc);
192f9be7a7aSAlex Zinenko }
193f9be7a7aSAlex Zinenko 
1942666b973SRiver Riddle /// Create an LLVM IR constant of `llvmType` from the MLIR attribute `attr`.
1952666b973SRiver Riddle /// This currently supports integer, floating point, splat and dense element
1965ef21506SAdrian Kuegel /// attributes and combinations thereof. Also, an array attribute with two
1975ef21506SAdrian Kuegel /// elements is supported to represent a complex constant.  In case of error,
1985ef21506SAdrian Kuegel /// report it to `loc` and return nullptr.
199176379e0SAlex Zinenko llvm::Constant *mlir::LLVM::detail::getLLVMConstant(
200176379e0SAlex Zinenko     llvm::Type *llvmType, Attribute attr, Location loc,
2015ef21506SAdrian Kuegel     const ModuleTranslation &moduleTranslation, bool isTopLevel) {
20233a3a91bSChristian Sigg   if (!attr)
20333a3a91bSChristian Sigg     return llvm::UndefValue::get(llvmType);
2045ef21506SAdrian Kuegel   if (auto *structType = dyn_cast<::llvm::StructType>(llvmType)) {
2055ef21506SAdrian Kuegel     if (!isTopLevel) {
2065ef21506SAdrian Kuegel       emitError(loc, "nested struct types are not supported in constants");
207a4a42160SAlex Zinenko       return nullptr;
208a4a42160SAlex Zinenko     }
2095ef21506SAdrian Kuegel     auto arrayAttr = attr.cast<ArrayAttr>();
2105ef21506SAdrian Kuegel     llvm::Type *elementType = structType->getElementType(0);
2115ef21506SAdrian Kuegel     llvm::Constant *real = getLLVMConstant(elementType, arrayAttr[0], loc,
2125ef21506SAdrian Kuegel                                            moduleTranslation, false);
2135ef21506SAdrian Kuegel     if (!real)
2145ef21506SAdrian Kuegel       return nullptr;
2155ef21506SAdrian Kuegel     llvm::Constant *imag = getLLVMConstant(elementType, arrayAttr[1], loc,
2165ef21506SAdrian Kuegel                                            moduleTranslation, false);
2175ef21506SAdrian Kuegel     if (!imag)
2185ef21506SAdrian Kuegel       return nullptr;
2195ef21506SAdrian Kuegel     return llvm::ConstantStruct::get(structType, {real, imag});
2205ef21506SAdrian Kuegel   }
221ac9d742bSStephan Herhut   // For integer types, we allow a mismatch in sizes as the index type in
222ac9d742bSStephan Herhut   // MLIR might have a different size than the index type in the LLVM module.
2235d7231d8SStephan Herhut   if (auto intAttr = attr.dyn_cast<IntegerAttr>())
224ac9d742bSStephan Herhut     return llvm::ConstantInt::get(
225ac9d742bSStephan Herhut         llvmType,
226ac9d742bSStephan Herhut         intAttr.getValue().sextOrTrunc(llvmType->getIntegerBitWidth()));
2275ef21506SAdrian Kuegel   if (auto floatAttr = attr.dyn_cast<FloatAttr>()) {
2285ef21506SAdrian Kuegel     if (llvmType !=
2295ef21506SAdrian Kuegel         llvm::Type::getFloatingPointTy(llvmType->getContext(),
2305ef21506SAdrian Kuegel                                        floatAttr.getValue().getSemantics())) {
2315ef21506SAdrian Kuegel       emitError(loc, "FloatAttr does not match expected type of the constant");
2325ef21506SAdrian Kuegel       return nullptr;
2335ef21506SAdrian Kuegel     }
2345d7231d8SStephan Herhut     return llvm::ConstantFP::get(llvmType, floatAttr.getValue());
2355ef21506SAdrian Kuegel   }
2369b9c647cSRiver Riddle   if (auto funcAttr = attr.dyn_cast<FlatSymbolRefAttr>())
237176379e0SAlex Zinenko     return llvm::ConstantExpr::getBitCast(
238176379e0SAlex Zinenko         moduleTranslation.lookupFunction(funcAttr.getValue()), llvmType);
2395d7231d8SStephan Herhut   if (auto splatAttr = attr.dyn_cast<SplatElementsAttr>()) {
24068b03aeeSEli Friedman     llvm::Type *elementType;
24168b03aeeSEli Friedman     uint64_t numElements;
24268b03aeeSEli Friedman     if (auto *arrayTy = dyn_cast<llvm::ArrayType>(llvmType)) {
24368b03aeeSEli Friedman       elementType = arrayTy->getElementType();
24468b03aeeSEli Friedman       numElements = arrayTy->getNumElements();
24502b6fb21SMehdi Amini     } else if (auto *fVectorTy = dyn_cast<llvm::FixedVectorType>(llvmType)) {
246a4830d14SJavier Setoain       elementType = fVectorTy->getElementType();
247a4830d14SJavier Setoain       numElements = fVectorTy->getNumElements();
24802b6fb21SMehdi Amini     } else if (auto *sVectorTy = dyn_cast<llvm::ScalableVectorType>(llvmType)) {
249a4830d14SJavier Setoain       elementType = sVectorTy->getElementType();
250a4830d14SJavier Setoain       numElements = sVectorTy->getMinNumElements();
25168b03aeeSEli Friedman     } else {
252a4830d14SJavier Setoain       llvm_unreachable("unrecognized constant vector type");
25368b03aeeSEli Friedman     }
254d6ea8ff0SAlex Zinenko     // Splat value is a scalar. Extract it only if the element type is not
255d6ea8ff0SAlex Zinenko     // another sequence type. The recursion terminates because each step removes
256d6ea8ff0SAlex Zinenko     // one outer sequential type.
25768b03aeeSEli Friedman     bool elementTypeSequential =
258d891d738SRahul Joshi         isa<llvm::ArrayType, llvm::VectorType>(elementType);
259d6ea8ff0SAlex Zinenko     llvm::Constant *child = getLLVMConstant(
260d6ea8ff0SAlex Zinenko         elementType,
261937e40a8SRiver Riddle         elementTypeSequential ? splatAttr
262937e40a8SRiver Riddle                               : splatAttr.getSplatValue<Attribute>(),
263937e40a8SRiver Riddle         loc, moduleTranslation, false);
264a4a42160SAlex Zinenko     if (!child)
265a4a42160SAlex Zinenko       return nullptr;
2662f13df13SMLIR Team     if (llvmType->isVectorTy())
267396a42d9SRiver Riddle       return llvm::ConstantVector::getSplat(
2680f95e731SAlex Zinenko           llvm::ElementCount::get(numElements, /*Scalable=*/false), child);
2692f13df13SMLIR Team     if (llvmType->isArrayTy()) {
270ac9d742bSStephan Herhut       auto *arrayType = llvm::ArrayType::get(elementType, numElements);
2712f13df13SMLIR Team       SmallVector<llvm::Constant *, 8> constants(numElements, child);
2722f13df13SMLIR Team       return llvm::ConstantArray::get(arrayType, constants);
2732f13df13SMLIR Team     }
2745d7231d8SStephan Herhut   }
275a4a42160SAlex Zinenko 
276f9be7a7aSAlex Zinenko   // Try using raw elements data if possible.
277f9be7a7aSAlex Zinenko   if (llvm::Constant *result =
278f9be7a7aSAlex Zinenko           convertDenseElementsAttr(loc, attr.dyn_cast<DenseElementsAttr>(),
279f9be7a7aSAlex Zinenko                                    llvmType, moduleTranslation)) {
280f9be7a7aSAlex Zinenko     return result;
281f9be7a7aSAlex Zinenko   }
282f9be7a7aSAlex Zinenko 
283f9be7a7aSAlex Zinenko   // Fall back to element-by-element construction otherwise.
284d906f84bSRiver Riddle   if (auto elementsAttr = attr.dyn_cast<ElementsAttr>()) {
285a4a42160SAlex Zinenko     assert(elementsAttr.getType().hasStaticShape());
286a4a42160SAlex Zinenko     assert(!elementsAttr.getType().getShape().empty() &&
287a4a42160SAlex Zinenko            "unexpected empty elements attribute shape");
288a4a42160SAlex Zinenko 
2895d7231d8SStephan Herhut     SmallVector<llvm::Constant *, 8> constants;
290a4a42160SAlex Zinenko     constants.reserve(elementsAttr.getNumElements());
291a4a42160SAlex Zinenko     llvm::Type *innermostType = getInnermostElementType(llvmType);
292d906f84bSRiver Riddle     for (auto n : elementsAttr.getValues<Attribute>()) {
293176379e0SAlex Zinenko       constants.push_back(
2945ef21506SAdrian Kuegel           getLLVMConstant(innermostType, n, loc, moduleTranslation, false));
2955d7231d8SStephan Herhut       if (!constants.back())
2965d7231d8SStephan Herhut         return nullptr;
2975d7231d8SStephan Herhut     }
298a4a42160SAlex Zinenko     ArrayRef<llvm::Constant *> constantsRef = constants;
299a4a42160SAlex Zinenko     llvm::Constant *result = buildSequentialConstant(
300a4a42160SAlex Zinenko         constantsRef, elementsAttr.getType().getShape(), llvmType, loc);
301a4a42160SAlex Zinenko     assert(constantsRef.empty() && "did not consume all elemental constants");
302a4a42160SAlex Zinenko     return result;
3032f13df13SMLIR Team   }
304a4a42160SAlex Zinenko 
305cb348dffSStephan Herhut   if (auto stringAttr = attr.dyn_cast<StringAttr>()) {
306cb348dffSStephan Herhut     return llvm::ConstantDataArray::get(
307176379e0SAlex Zinenko         moduleTranslation.getLLVMContext(),
308176379e0SAlex Zinenko         ArrayRef<char>{stringAttr.getValue().data(),
309cb348dffSStephan Herhut                        stringAttr.getValue().size()});
310cb348dffSStephan Herhut   }
311a4c3a645SRiver Riddle   emitError(loc, "unsupported constant value");
3125d7231d8SStephan Herhut   return nullptr;
3135d7231d8SStephan Herhut }
3145d7231d8SStephan Herhut 
315c33d6970SRiver Riddle ModuleTranslation::ModuleTranslation(Operation *module,
316c33d6970SRiver Riddle                                      std::unique_ptr<llvm::Module> llvmModule)
317c33d6970SRiver Riddle     : mlirModule(module), llvmModule(std::move(llvmModule)),
318c33d6970SRiver Riddle       debugTranslation(
31992a295ebSKiran Chandramohan           std::make_unique<DebugTranslation>(module, *this->llvmModule)),
320b77bac05SAlex Zinenko       typeTranslator(this->llvmModule->getContext()),
321b77bac05SAlex Zinenko       iface(module->getContext()) {
322c33d6970SRiver Riddle   assert(satisfiesLLVMModule(mlirModule) &&
323c33d6970SRiver Riddle          "mlirModule should honor LLVM's module semantics.");
324c33d6970SRiver Riddle }
325d9067dcaSKiran Chandramohan ModuleTranslation::~ModuleTranslation() {
326d9067dcaSKiran Chandramohan   if (ompBuilder)
327d9067dcaSKiran Chandramohan     ompBuilder->finalize();
328d9067dcaSKiran Chandramohan }
329d9067dcaSKiran Chandramohan 
3308647e4c3SAlex Zinenko void ModuleTranslation::forgetMapping(Region &region) {
3318647e4c3SAlex Zinenko   SmallVector<Region *> toProcess;
3328647e4c3SAlex Zinenko   toProcess.push_back(&region);
3338647e4c3SAlex Zinenko   while (!toProcess.empty()) {
3348647e4c3SAlex Zinenko     Region *current = toProcess.pop_back_val();
3358647e4c3SAlex Zinenko     for (Block &block : *current) {
3368647e4c3SAlex Zinenko       blockMapping.erase(&block);
3378647e4c3SAlex Zinenko       for (Value arg : block.getArguments())
3388647e4c3SAlex Zinenko         valueMapping.erase(arg);
3398647e4c3SAlex Zinenko       for (Operation &op : block) {
3408647e4c3SAlex Zinenko         for (Value value : op.getResults())
3418647e4c3SAlex Zinenko           valueMapping.erase(value);
3428647e4c3SAlex Zinenko         if (op.hasSuccessors())
3438647e4c3SAlex Zinenko           branchMapping.erase(&op);
3448647e4c3SAlex Zinenko         if (isa<LLVM::GlobalOp>(op))
3458647e4c3SAlex Zinenko           globalsMapping.erase(&op);
3468647e4c3SAlex Zinenko         accessGroupMetadataMapping.erase(&op);
3478647e4c3SAlex Zinenko         llvm::append_range(
3488647e4c3SAlex Zinenko             toProcess,
3498647e4c3SAlex Zinenko             llvm::map_range(op.getRegions(), [](Region &r) { return &r; }));
3508647e4c3SAlex Zinenko       }
3518647e4c3SAlex Zinenko     }
3528647e4c3SAlex Zinenko   }
3538647e4c3SAlex Zinenko }
3548647e4c3SAlex Zinenko 
355d9067dcaSKiran Chandramohan /// Get the SSA value passed to the current block from the terminator operation
356d9067dcaSKiran Chandramohan /// of its predecessor.
357d9067dcaSKiran Chandramohan static Value getPHISourceValue(Block *current, Block *pred,
358d9067dcaSKiran Chandramohan                                unsigned numArguments, unsigned index) {
359d9067dcaSKiran Chandramohan   Operation &terminator = *pred->getTerminator();
360d9067dcaSKiran Chandramohan   if (isa<LLVM::BrOp>(terminator))
361d9067dcaSKiran Chandramohan     return terminator.getOperand(index);
362d9067dcaSKiran Chandramohan 
36314f24155SBrian Gesiak   SuccessorRange successors = terminator.getSuccessors();
36414f24155SBrian Gesiak   assert(std::adjacent_find(successors.begin(), successors.end()) ==
36514f24155SBrian Gesiak              successors.end() &&
36614f24155SBrian Gesiak          "successors with arguments in LLVM branches must be different blocks");
36758f2b765SChristian Sigg   (void)successors;
368d9067dcaSKiran Chandramohan 
36914f24155SBrian Gesiak   // For instructions that branch based on a condition value, we need to take
37014f24155SBrian Gesiak   // the operands for the branch that was taken.
37114f24155SBrian Gesiak   if (auto condBranchOp = dyn_cast<LLVM::CondBrOp>(terminator)) {
37214f24155SBrian Gesiak     // For conditional branches, we take the operands from either the "true" or
37314f24155SBrian Gesiak     // the "false" branch.
374d9067dcaSKiran Chandramohan     return condBranchOp.getSuccessor(0) == current
375cfb72fd3SJacques Pienaar                ? condBranchOp.getTrueDestOperands()[index]
376cfb72fd3SJacques Pienaar                : condBranchOp.getFalseDestOperands()[index];
3770881a4f1SAlex Zinenko   }
3780881a4f1SAlex Zinenko 
3790881a4f1SAlex Zinenko   if (auto switchOp = dyn_cast<LLVM::SwitchOp>(terminator)) {
38014f24155SBrian Gesiak     // For switches, we take the operands from either the default case, or from
38114f24155SBrian Gesiak     // the case branch that was taken.
382dde96363SJacques Pienaar     if (switchOp.getDefaultDestination() == current)
383dde96363SJacques Pienaar       return switchOp.getDefaultOperands()[index];
384e4853be2SMehdi Amini     for (const auto &i : llvm::enumerate(switchOp.getCaseDestinations()))
38514f24155SBrian Gesiak       if (i.value() == current)
38614f24155SBrian Gesiak         return switchOp.getCaseOperands(i.index())[index];
38714f24155SBrian Gesiak   }
38814f24155SBrian Gesiak 
38956097205SMarkus Böck   if (auto invokeOp = dyn_cast<LLVM::InvokeOp>(terminator)) {
39056097205SMarkus Böck     return invokeOp.getNormalDest() == current
39156097205SMarkus Böck                ? invokeOp.getNormalDestOperands()[index]
39256097205SMarkus Böck                : invokeOp.getUnwindDestOperands()[index];
39356097205SMarkus Böck   }
39456097205SMarkus Böck 
39556097205SMarkus Böck   llvm_unreachable(
39656097205SMarkus Böck       "only branch, switch or invoke operations can be terminators "
39756097205SMarkus Böck       "of a block that has successors");
398d9067dcaSKiran Chandramohan }
399d9067dcaSKiran Chandramohan 
400d9067dcaSKiran Chandramohan /// Connect the PHI nodes to the results of preceding blocks.
40166900b3eSAlex Zinenko void mlir::LLVM::detail::connectPHINodes(Region &region,
40266900b3eSAlex Zinenko                                          const ModuleTranslation &state) {
403d9067dcaSKiran Chandramohan   // Skip the first block, it cannot be branched to and its arguments correspond
404d9067dcaSKiran Chandramohan   // to the arguments of the LLVM function.
40566900b3eSAlex Zinenko   for (auto it = std::next(region.begin()), eit = region.end(); it != eit;
40666900b3eSAlex Zinenko        ++it) {
407d9067dcaSKiran Chandramohan     Block *bb = &*it;
4080881a4f1SAlex Zinenko     llvm::BasicBlock *llvmBB = state.lookupBlock(bb);
409d9067dcaSKiran Chandramohan     auto phis = llvmBB->phis();
410d9067dcaSKiran Chandramohan     auto numArguments = bb->getNumArguments();
411d9067dcaSKiran Chandramohan     assert(numArguments == std::distance(phis.begin(), phis.end()));
412d9067dcaSKiran Chandramohan     for (auto &numberedPhiNode : llvm::enumerate(phis)) {
413d9067dcaSKiran Chandramohan       auto &phiNode = numberedPhiNode.value();
414d9067dcaSKiran Chandramohan       unsigned index = numberedPhiNode.index();
415d9067dcaSKiran Chandramohan       for (auto *pred : bb->getPredecessors()) {
416db884dafSAlex Zinenko         // Find the LLVM IR block that contains the converted terminator
417db884dafSAlex Zinenko         // instruction and use it in the PHI node. Note that this block is not
4180881a4f1SAlex Zinenko         // necessarily the same as state.lookupBlock(pred), some operations
419db884dafSAlex Zinenko         // (in particular, OpenMP operations using OpenMPIRBuilder) may have
420db884dafSAlex Zinenko         // split the blocks.
421db884dafSAlex Zinenko         llvm::Instruction *terminator =
4220881a4f1SAlex Zinenko             state.lookupBranch(pred->getTerminator());
423db884dafSAlex Zinenko         assert(terminator && "missing the mapping for a terminator");
4240881a4f1SAlex Zinenko         phiNode.addIncoming(
4250881a4f1SAlex Zinenko             state.lookupValue(getPHISourceValue(bb, pred, numArguments, index)),
426db884dafSAlex Zinenko             terminator->getParent());
427d9067dcaSKiran Chandramohan       }
428d9067dcaSKiran Chandramohan     }
429d9067dcaSKiran Chandramohan   }
430d9067dcaSKiran Chandramohan }
431d9067dcaSKiran Chandramohan 
432d9067dcaSKiran Chandramohan /// Sort function blocks topologically.
4334efb7754SRiver Riddle SetVector<Block *>
43466900b3eSAlex Zinenko mlir::LLVM::detail::getTopologicallySortedBlocks(Region &region) {
435d4568ed7SGeorge Mitenkov   // For each block that has not been visited yet (i.e. that has no
436d4568ed7SGeorge Mitenkov   // predecessors), add it to the list as well as its successors.
4374efb7754SRiver Riddle   SetVector<Block *> blocks;
43866900b3eSAlex Zinenko   for (Block &b : region) {
439d4568ed7SGeorge Mitenkov     if (blocks.count(&b) == 0) {
440d4568ed7SGeorge Mitenkov       llvm::ReversePostOrderTraversal<Block *> traversal(&b);
441d4568ed7SGeorge Mitenkov       blocks.insert(traversal.begin(), traversal.end());
442d4568ed7SGeorge Mitenkov     }
443d9067dcaSKiran Chandramohan   }
44466900b3eSAlex Zinenko   assert(blocks.size() == region.getBlocks().size() &&
44566900b3eSAlex Zinenko          "some blocks are not sorted");
446d9067dcaSKiran Chandramohan 
447d9067dcaSKiran Chandramohan   return blocks;
448d9067dcaSKiran Chandramohan }
449d9067dcaSKiran Chandramohan 
450176379e0SAlex Zinenko llvm::Value *mlir::LLVM::detail::createIntrinsicCall(
451176379e0SAlex Zinenko     llvm::IRBuilderBase &builder, llvm::Intrinsic::ID intrinsic,
452176379e0SAlex Zinenko     ArrayRef<llvm::Value *> args, ArrayRef<llvm::Type *> tys) {
453176379e0SAlex Zinenko   llvm::Module *module = builder.GetInsertBlock()->getModule();
454176379e0SAlex Zinenko   llvm::Function *fn = llvm::Intrinsic::getDeclaration(module, intrinsic, tys);
455176379e0SAlex Zinenko   return builder.CreateCall(fn, args);
456176379e0SAlex Zinenko }
457176379e0SAlex Zinenko 
4582666b973SRiver Riddle /// Given a single MLIR operation, create the corresponding LLVM IR operation
459176379e0SAlex Zinenko /// using the `builder`.
460ce8f10d6SAlex Zinenko LogicalResult
46138b106f6SMehdi Amini ModuleTranslation::convertOperation(Operation &op,
462ce8f10d6SAlex Zinenko                                     llvm::IRBuilderBase &builder) {
46338b106f6SMehdi Amini   const LLVMTranslationDialectInterface *opIface = iface.getInterfaceFor(&op);
46438b106f6SMehdi Amini   if (!opIface)
46538b106f6SMehdi Amini     return op.emitError("cannot be converted to LLVM IR: missing "
46638b106f6SMehdi Amini                         "`LLVMTranslationDialectInterface` registration for "
46738b106f6SMehdi Amini                         "dialect for op: ")
46838b106f6SMehdi Amini            << op.getName();
469176379e0SAlex Zinenko 
47038b106f6SMehdi Amini   if (failed(opIface->convertOperation(&op, builder, *this)))
47138b106f6SMehdi Amini     return op.emitError("LLVM Translation failed for operation: ")
47238b106f6SMehdi Amini            << op.getName();
47338b106f6SMehdi Amini 
47438b106f6SMehdi Amini   return convertDialectAttributes(&op);
4755d7231d8SStephan Herhut }
4765d7231d8SStephan Herhut 
4772666b973SRiver Riddle /// Convert block to LLVM IR.  Unless `ignoreArguments` is set, emit PHI nodes
4782666b973SRiver Riddle /// to define values corresponding to the MLIR block arguments.  These nodes
47910164a2eSAlex Zinenko /// are not connected to the source basic blocks, which may not exist yet.  Uses
48010164a2eSAlex Zinenko /// `builder` to construct the LLVM IR. Expects the LLVM IR basic block to have
48110164a2eSAlex Zinenko /// been created for `bb` and included in the block mapping.  Inserts new
48210164a2eSAlex Zinenko /// instructions at the end of the block and leaves `builder` in a state
48310164a2eSAlex Zinenko /// suitable for further insertion into the end of the block.
48410164a2eSAlex Zinenko LogicalResult ModuleTranslation::convertBlock(Block &bb, bool ignoreArguments,
485ce8f10d6SAlex Zinenko                                               llvm::IRBuilderBase &builder) {
4860881a4f1SAlex Zinenko   builder.SetInsertPoint(lookupBlock(&bb));
487c33d6970SRiver Riddle   auto *subprogram = builder.GetInsertBlock()->getParent()->getSubprogram();
4885d7231d8SStephan Herhut 
4895d7231d8SStephan Herhut   // Before traversing operations, make block arguments available through
4905d7231d8SStephan Herhut   // value remapping and PHI nodes, but do not add incoming edges for the PHI
4915d7231d8SStephan Herhut   // nodes just yet: those values may be defined by this or following blocks.
4925d7231d8SStephan Herhut   // This step is omitted if "ignoreArguments" is set.  The arguments of the
4935d7231d8SStephan Herhut   // first block have been already made available through the remapping of
4945d7231d8SStephan Herhut   // LLVM function arguments.
4955d7231d8SStephan Herhut   if (!ignoreArguments) {
4965d7231d8SStephan Herhut     auto predecessors = bb.getPredecessors();
4975d7231d8SStephan Herhut     unsigned numPredecessors =
4985d7231d8SStephan Herhut         std::distance(predecessors.begin(), predecessors.end());
49935807bc4SRiver Riddle     for (auto arg : bb.getArguments()) {
500c69c9e0fSAlex Zinenko       auto wrappedType = arg.getType();
501c69c9e0fSAlex Zinenko       if (!isCompatibleType(wrappedType))
502baa1ec22SAlex Zinenko         return emitError(bb.front().getLoc(),
503a4c3a645SRiver Riddle                          "block argument does not have an LLVM type");
504aec38c61SAlex Zinenko       llvm::Type *type = convertType(wrappedType);
5055d7231d8SStephan Herhut       llvm::PHINode *phi = builder.CreatePHI(type, numPredecessors);
5060881a4f1SAlex Zinenko       mapValue(arg, phi);
5075d7231d8SStephan Herhut     }
5085d7231d8SStephan Herhut   }
5095d7231d8SStephan Herhut 
5105d7231d8SStephan Herhut   // Traverse operations.
5115d7231d8SStephan Herhut   for (auto &op : bb) {
512c33d6970SRiver Riddle     // Set the current debug location within the builder.
513c33d6970SRiver Riddle     builder.SetCurrentDebugLocation(
514c33d6970SRiver Riddle         debugTranslation->translateLoc(op.getLoc(), subprogram));
515c33d6970SRiver Riddle 
516baa1ec22SAlex Zinenko     if (failed(convertOperation(op, builder)))
517baa1ec22SAlex Zinenko       return failure();
5185d7231d8SStephan Herhut   }
5195d7231d8SStephan Herhut 
520baa1ec22SAlex Zinenko   return success();
5215d7231d8SStephan Herhut }
5225d7231d8SStephan Herhut 
523ce8f10d6SAlex Zinenko /// A helper method to get the single Block in an operation honoring LLVM's
524ce8f10d6SAlex Zinenko /// module requirements.
525ce8f10d6SAlex Zinenko static Block &getModuleBody(Operation *module) {
526ce8f10d6SAlex Zinenko   return module->getRegion(0).front();
527ce8f10d6SAlex Zinenko }
528ce8f10d6SAlex Zinenko 
529ffa455d4SJean Perier /// A helper method to decide if a constant must not be set as a global variable
530d4df3825SAlex Zinenko /// initializer. For an external linkage variable, the variable with an
531d4df3825SAlex Zinenko /// initializer is considered externally visible and defined in this module, the
532d4df3825SAlex Zinenko /// variable without an initializer is externally available and is defined
533d4df3825SAlex Zinenko /// elsewhere.
534ffa455d4SJean Perier static bool shouldDropGlobalInitializer(llvm::GlobalValue::LinkageTypes linkage,
535ffa455d4SJean Perier                                         llvm::Constant *cst) {
536d4df3825SAlex Zinenko   return (linkage == llvm::GlobalVariable::ExternalLinkage && !cst) ||
537ffa455d4SJean Perier          linkage == llvm::GlobalVariable::ExternalWeakLinkage;
538ffa455d4SJean Perier }
539ffa455d4SJean Perier 
5408ca04b05SFelipe de Azevedo Piovezan /// Sets the runtime preemption specifier of `gv` to dso_local if
5418ca04b05SFelipe de Azevedo Piovezan /// `dsoLocalRequested` is true, otherwise it is left unchanged.
5428ca04b05SFelipe de Azevedo Piovezan static void addRuntimePreemptionSpecifier(bool dsoLocalRequested,
5438ca04b05SFelipe de Azevedo Piovezan                                           llvm::GlobalValue *gv) {
5448ca04b05SFelipe de Azevedo Piovezan   if (dsoLocalRequested)
5458ca04b05SFelipe de Azevedo Piovezan     gv->setDSOLocal(true);
5468ca04b05SFelipe de Azevedo Piovezan }
5478ca04b05SFelipe de Azevedo Piovezan 
5482666b973SRiver Riddle /// Create named global variables that correspond to llvm.mlir.global
54957b9b296SUday Bondhugula /// definitions. Convert llvm.global_ctors and global_dtors ops.
550efa2d533SAlex Zinenko LogicalResult ModuleTranslation::convertGlobals() {
55144fc7d72STres Popp   for (auto op : getModuleBody(mlirModule).getOps<LLVM::GlobalOp>()) {
552aec38c61SAlex Zinenko     llvm::Type *type = convertType(op.getType());
553d4df3825SAlex Zinenko     llvm::Constant *cst = nullptr;
554250a11aeSJames Molloy     if (op.getValueOrNull()) {
55568451df2SAlex Zinenko       // String attributes are treated separately because they cannot appear as
55668451df2SAlex Zinenko       // in-function constants and are thus not supported by getLLVMConstant.
55733a3a91bSChristian Sigg       if (auto strAttr = op.getValueOrNull().dyn_cast_or_null<StringAttr>()) {
5582dd38b09SAlex Zinenko         cst = llvm::ConstantDataArray::getString(
55968451df2SAlex Zinenko             llvmModule->getContext(), strAttr.getValue(), /*AddNull=*/false);
5602dd38b09SAlex Zinenko         type = cst->getType();
561176379e0SAlex Zinenko       } else if (!(cst = getLLVMConstant(type, op.getValueOrNull(), op.getLoc(),
562176379e0SAlex Zinenko                                          *this))) {
563efa2d533SAlex Zinenko         return failure();
56468451df2SAlex Zinenko       }
565ffa455d4SJean Perier     }
566ffa455d4SJean Perier 
567cfb72fd3SJacques Pienaar     auto linkage = convertLinkageToLLVM(op.getLinkage());
568cfb72fd3SJacques Pienaar     auto addrSpace = op.getAddrSpace();
569d4df3825SAlex Zinenko 
570d4df3825SAlex Zinenko     // LLVM IR requires constant with linkage other than external or weak
571d4df3825SAlex Zinenko     // external to have initializers. If MLIR does not provide an initializer,
572d4df3825SAlex Zinenko     // default to undef.
573d4df3825SAlex Zinenko     bool dropInitializer = shouldDropGlobalInitializer(linkage, cst);
574d4df3825SAlex Zinenko     if (!dropInitializer && !cst)
575d4df3825SAlex Zinenko       cst = llvm::UndefValue::get(type);
576d4df3825SAlex Zinenko     else if (dropInitializer && cst)
577d4df3825SAlex Zinenko       cst = nullptr;
578d4df3825SAlex Zinenko 
579ffa455d4SJean Perier     auto *var = new llvm::GlobalVariable(
580cfb72fd3SJacques Pienaar         *llvmModule, type, op.getConstant(), linkage, cst, op.getSymName(),
581ffa455d4SJean Perier         /*InsertBefore=*/nullptr, llvm::GlobalValue::NotThreadLocal, addrSpace);
582ffa455d4SJean Perier 
583cfb72fd3SJacques Pienaar     if (op.getUnnamedAddr().hasValue())
584cfb72fd3SJacques Pienaar       var->setUnnamedAddr(convertUnnamedAddrToLLVM(*op.getUnnamedAddr()));
585c46a8862Sclementval 
586cfb72fd3SJacques Pienaar     if (op.getSection().hasValue())
587cfb72fd3SJacques Pienaar       var->setSection(*op.getSection());
588b65472d6SRanjith Kumar H 
589cfb72fd3SJacques Pienaar     addRuntimePreemptionSpecifier(op.getDsoLocal(), var);
5908ca04b05SFelipe de Azevedo Piovezan 
591cfb72fd3SJacques Pienaar     Optional<uint64_t> alignment = op.getAlignment();
5929a0ea599SDumitru Potop     if (alignment.hasValue())
5939a0ea599SDumitru Potop       var->setAlignment(llvm::MaybeAlign(alignment.getValue()));
5949a0ea599SDumitru Potop 
595ffa455d4SJean Perier     globalsMapping.try_emplace(op, var);
596ffa455d4SJean Perier   }
597ffa455d4SJean Perier 
598ffa455d4SJean Perier   // Convert global variable bodies. This is done after all global variables
599ffa455d4SJean Perier   // have been created in LLVM IR because a global body may refer to another
600ffa455d4SJean Perier   // global or itself. So all global variables need to be mapped first.
601ffa455d4SJean Perier   for (auto op : getModuleBody(mlirModule).getOps<LLVM::GlobalOp>()) {
602ffa455d4SJean Perier     if (Block *initializer = op.getInitializerBlock()) {
603250a11aeSJames Molloy       llvm::IRBuilder<> builder(llvmModule->getContext());
604250a11aeSJames Molloy       for (auto &op : initializer->without_terminator()) {
605250a11aeSJames Molloy         if (failed(convertOperation(op, builder)) ||
6060881a4f1SAlex Zinenko             !isa<llvm::Constant>(lookupValue(op.getResult(0))))
607efa2d533SAlex Zinenko           return emitError(op.getLoc(), "unemittable constant value");
608250a11aeSJames Molloy       }
609250a11aeSJames Molloy       ReturnOp ret = cast<ReturnOp>(initializer->getTerminator());
610ffa455d4SJean Perier       llvm::Constant *cst =
611ffa455d4SJean Perier           cast<llvm::Constant>(lookupValue(ret.getOperand(0)));
612ffa455d4SJean Perier       auto *global = cast<llvm::GlobalVariable>(lookupGlobal(op));
613ffa455d4SJean Perier       if (!shouldDropGlobalInitializer(global->getLinkage(), cst))
614ffa455d4SJean Perier         global->setInitializer(cst);
615250a11aeSJames Molloy     }
616b9ff2dd8SAlex Zinenko   }
617efa2d533SAlex Zinenko 
61857b9b296SUday Bondhugula   // Convert llvm.mlir.global_ctors and dtors.
61957b9b296SUday Bondhugula   for (Operation &op : getModuleBody(mlirModule)) {
62057b9b296SUday Bondhugula     auto ctorOp = dyn_cast<GlobalCtorsOp>(op);
62157b9b296SUday Bondhugula     auto dtorOp = dyn_cast<GlobalDtorsOp>(op);
62257b9b296SUday Bondhugula     if (!ctorOp && !dtorOp)
62357b9b296SUday Bondhugula       continue;
62462fea88bSJacques Pienaar     auto range = ctorOp ? llvm::zip(ctorOp.getCtors(), ctorOp.getPriorities())
62562fea88bSJacques Pienaar                         : llvm::zip(dtorOp.getDtors(), dtorOp.getPriorities());
62657b9b296SUday Bondhugula     auto appendGlobalFn =
62757b9b296SUday Bondhugula         ctorOp ? llvm::appendToGlobalCtors : llvm::appendToGlobalDtors;
62857b9b296SUday Bondhugula     for (auto symbolAndPriority : range) {
62957b9b296SUday Bondhugula       llvm::Function *f = lookupFunction(
63057b9b296SUday Bondhugula           std::get<0>(symbolAndPriority).cast<FlatSymbolRefAttr>().getValue());
63157b9b296SUday Bondhugula       appendGlobalFn(
63218eb6818SMehdi Amini           *llvmModule, f,
63357b9b296SUday Bondhugula           std::get<1>(symbolAndPriority).cast<IntegerAttr>().getInt(),
63457b9b296SUday Bondhugula           /*Data=*/nullptr);
63557b9b296SUday Bondhugula     }
63657b9b296SUday Bondhugula   }
63757b9b296SUday Bondhugula 
638efa2d533SAlex Zinenko   return success();
639b9ff2dd8SAlex Zinenko }
640b9ff2dd8SAlex Zinenko 
6410a2131b7SAlex Zinenko /// Attempts to add an attribute identified by `key`, optionally with the given
6420a2131b7SAlex Zinenko /// `value` to LLVM function `llvmFunc`. Reports errors at `loc` if any. If the
6430a2131b7SAlex Zinenko /// attribute has a kind known to LLVM IR, create the attribute of this kind,
6440a2131b7SAlex Zinenko /// otherwise keep it as a string attribute. Performs additional checks for
6450a2131b7SAlex Zinenko /// attributes known to have or not have a value in order to avoid assertions
6460a2131b7SAlex Zinenko /// inside LLVM upon construction.
6470a2131b7SAlex Zinenko static LogicalResult checkedAddLLVMFnAttribute(Location loc,
6480a2131b7SAlex Zinenko                                                llvm::Function *llvmFunc,
6490a2131b7SAlex Zinenko                                                StringRef key,
6500a2131b7SAlex Zinenko                                                StringRef value = StringRef()) {
6510a2131b7SAlex Zinenko   auto kind = llvm::Attribute::getAttrKindFromName(key);
6520a2131b7SAlex Zinenko   if (kind == llvm::Attribute::None) {
6530a2131b7SAlex Zinenko     llvmFunc->addFnAttr(key, value);
6540a2131b7SAlex Zinenko     return success();
6550a2131b7SAlex Zinenko   }
6560a2131b7SAlex Zinenko 
6576ac32872SNikita Popov   if (llvm::Attribute::isIntAttrKind(kind)) {
6580a2131b7SAlex Zinenko     if (value.empty())
6590a2131b7SAlex Zinenko       return emitError(loc) << "LLVM attribute '" << key << "' expects a value";
6600a2131b7SAlex Zinenko 
6610a2131b7SAlex Zinenko     int result;
6620a2131b7SAlex Zinenko     if (!value.getAsInteger(/*Radix=*/0, result))
6630a2131b7SAlex Zinenko       llvmFunc->addFnAttr(
6640a2131b7SAlex Zinenko           llvm::Attribute::get(llvmFunc->getContext(), kind, result));
6650a2131b7SAlex Zinenko     else
6660a2131b7SAlex Zinenko       llvmFunc->addFnAttr(key, value);
6670a2131b7SAlex Zinenko     return success();
6680a2131b7SAlex Zinenko   }
6690a2131b7SAlex Zinenko 
6700a2131b7SAlex Zinenko   if (!value.empty())
6710a2131b7SAlex Zinenko     return emitError(loc) << "LLVM attribute '" << key
6720a2131b7SAlex Zinenko                           << "' does not expect a value, found '" << value
6730a2131b7SAlex Zinenko                           << "'";
6740a2131b7SAlex Zinenko 
6750a2131b7SAlex Zinenko   llvmFunc->addFnAttr(kind);
6760a2131b7SAlex Zinenko   return success();
6770a2131b7SAlex Zinenko }
6780a2131b7SAlex Zinenko 
6790a2131b7SAlex Zinenko /// Attaches the attributes listed in the given array attribute to `llvmFunc`.
6800a2131b7SAlex Zinenko /// Reports error to `loc` if any and returns immediately. Expects `attributes`
6810a2131b7SAlex Zinenko /// to be an array attribute containing either string attributes, treated as
6820a2131b7SAlex Zinenko /// value-less LLVM attributes, or array attributes containing two string
6830a2131b7SAlex Zinenko /// attributes, with the first string being the name of the corresponding LLVM
6840a2131b7SAlex Zinenko /// attribute and the second string beings its value. Note that even integer
6850a2131b7SAlex Zinenko /// attributes are expected to have their values expressed as strings.
6860a2131b7SAlex Zinenko static LogicalResult
6870a2131b7SAlex Zinenko forwardPassthroughAttributes(Location loc, Optional<ArrayAttr> attributes,
6880a2131b7SAlex Zinenko                              llvm::Function *llvmFunc) {
6890a2131b7SAlex Zinenko   if (!attributes)
6900a2131b7SAlex Zinenko     return success();
6910a2131b7SAlex Zinenko 
6920a2131b7SAlex Zinenko   for (Attribute attr : *attributes) {
6930a2131b7SAlex Zinenko     if (auto stringAttr = attr.dyn_cast<StringAttr>()) {
6940a2131b7SAlex Zinenko       if (failed(
6950a2131b7SAlex Zinenko               checkedAddLLVMFnAttribute(loc, llvmFunc, stringAttr.getValue())))
6960a2131b7SAlex Zinenko         return failure();
6970a2131b7SAlex Zinenko       continue;
6980a2131b7SAlex Zinenko     }
6990a2131b7SAlex Zinenko 
7000a2131b7SAlex Zinenko     auto arrayAttr = attr.dyn_cast<ArrayAttr>();
7010a2131b7SAlex Zinenko     if (!arrayAttr || arrayAttr.size() != 2)
7020a2131b7SAlex Zinenko       return emitError(loc)
7030a2131b7SAlex Zinenko              << "expected 'passthrough' to contain string or array attributes";
7040a2131b7SAlex Zinenko 
7050a2131b7SAlex Zinenko     auto keyAttr = arrayAttr[0].dyn_cast<StringAttr>();
7060a2131b7SAlex Zinenko     auto valueAttr = arrayAttr[1].dyn_cast<StringAttr>();
7070a2131b7SAlex Zinenko     if (!keyAttr || !valueAttr)
7080a2131b7SAlex Zinenko       return emitError(loc)
7090a2131b7SAlex Zinenko              << "expected arrays within 'passthrough' to contain two strings";
7100a2131b7SAlex Zinenko 
7110a2131b7SAlex Zinenko     if (failed(checkedAddLLVMFnAttribute(loc, llvmFunc, keyAttr.getValue(),
7120a2131b7SAlex Zinenko                                          valueAttr.getValue())))
7130a2131b7SAlex Zinenko       return failure();
7140a2131b7SAlex Zinenko   }
7150a2131b7SAlex Zinenko   return success();
7160a2131b7SAlex Zinenko }
7170a2131b7SAlex Zinenko 
7185e7959a3SAlex Zinenko LogicalResult ModuleTranslation::convertOneFunction(LLVMFuncOp func) {
719db884dafSAlex Zinenko   // Clear the block, branch value mappings, they are only relevant within one
7205d7231d8SStephan Herhut   // function.
7215d7231d8SStephan Herhut   blockMapping.clear();
7225d7231d8SStephan Herhut   valueMapping.clear();
723db884dafSAlex Zinenko   branchMapping.clear();
7240881a4f1SAlex Zinenko   llvm::Function *llvmFunc = lookupFunction(func.getName());
725c33d6970SRiver Riddle 
726c33d6970SRiver Riddle   // Translate the debug information for this function.
727c33d6970SRiver Riddle   debugTranslation->translate(func, *llvmFunc);
728c33d6970SRiver Riddle 
7295d7231d8SStephan Herhut   // Add function arguments to the value remapping table.
7305d7231d8SStephan Herhut   // If there was noalias info then we decorate each argument accordingly.
7315d7231d8SStephan Herhut   unsigned int argIdx = 0;
732eeef50b1SFangrui Song   for (auto kvp : llvm::zip(func.getArguments(), llvmFunc->args())) {
7335d7231d8SStephan Herhut     llvm::Argument &llvmArg = std::get<1>(kvp);
734e62a6956SRiver Riddle     BlockArgument mlirArg = std::get<0>(kvp);
7355d7231d8SStephan Herhut 
7361c777ab4SUday Bondhugula     if (auto attr = func.getArgAttrOfType<UnitAttr>(
73767cc5cecSStephan Herhut             argIdx, LLVMDialect::getNoAliasAttrName())) {
7385d7231d8SStephan Herhut       // NB: Attribute already verified to be boolean, so check if we can indeed
7395d7231d8SStephan Herhut       // attach the attribute to this argument, based on its type.
740c69c9e0fSAlex Zinenko       auto argTy = mlirArg.getType();
7418de43b92SAlex Zinenko       if (!argTy.isa<LLVM::LLVMPointerType>())
742baa1ec22SAlex Zinenko         return func.emitError(
7435d7231d8SStephan Herhut             "llvm.noalias attribute attached to LLVM non-pointer argument");
7445d7231d8SStephan Herhut       llvmArg.addAttr(llvm::Attribute::AttrKind::NoAlias);
7455d7231d8SStephan Herhut     }
7462416e28cSStephan Herhut 
74767cc5cecSStephan Herhut     if (auto attr = func.getArgAttrOfType<IntegerAttr>(
74867cc5cecSStephan Herhut             argIdx, LLVMDialect::getAlignAttrName())) {
7492416e28cSStephan Herhut       // NB: Attribute already verified to be int, so check if we can indeed
7502416e28cSStephan Herhut       // attach the attribute to this argument, based on its type.
751c69c9e0fSAlex Zinenko       auto argTy = mlirArg.getType();
7528de43b92SAlex Zinenko       if (!argTy.isa<LLVM::LLVMPointerType>())
7532416e28cSStephan Herhut         return func.emitError(
7542416e28cSStephan Herhut             "llvm.align attribute attached to LLVM non-pointer argument");
7552416e28cSStephan Herhut       llvmArg.addAttrs(
756*d2cc6c2dSSerge Guelton           llvm::AttrBuilder(llvmArg.getContext()).addAlignmentAttr(llvm::Align(attr.getInt())));
7572416e28cSStephan Herhut     }
7582416e28cSStephan Herhut 
75970b841acSEric Schweitz     if (auto attr = func.getArgAttrOfType<UnitAttr>(argIdx, "llvm.sret")) {
76070b841acSEric Schweitz       auto argTy = mlirArg.getType();
76170b841acSEric Schweitz       if (!argTy.isa<LLVM::LLVMPointerType>())
76270b841acSEric Schweitz         return func.emitError(
76370b841acSEric Schweitz             "llvm.sret attribute attached to LLVM non-pointer argument");
764*d2cc6c2dSSerge Guelton       llvmArg.addAttrs(llvm::AttrBuilder(llvmArg.getContext()).addStructRetAttr(
7651d6df1fcSEric Schweitz           llvmArg.getType()->getPointerElementType()));
76670b841acSEric Schweitz     }
76770b841acSEric Schweitz 
76870b841acSEric Schweitz     if (auto attr = func.getArgAttrOfType<UnitAttr>(argIdx, "llvm.byval")) {
76970b841acSEric Schweitz       auto argTy = mlirArg.getType();
77070b841acSEric Schweitz       if (!argTy.isa<LLVM::LLVMPointerType>())
77170b841acSEric Schweitz         return func.emitError(
77270b841acSEric Schweitz             "llvm.byval attribute attached to LLVM non-pointer argument");
773*d2cc6c2dSSerge Guelton       llvmArg.addAttrs(llvm::AttrBuilder(llvmArg.getContext()).addByValAttr(
7741d6df1fcSEric Schweitz           llvmArg.getType()->getPointerElementType()));
77570b841acSEric Schweitz     }
77670b841acSEric Schweitz 
7770881a4f1SAlex Zinenko     mapValue(mlirArg, &llvmArg);
7785d7231d8SStephan Herhut     argIdx++;
7795d7231d8SStephan Herhut   }
7805d7231d8SStephan Herhut 
781ff77397fSShraiysh Vaishay   // Check the personality and set it.
782dde96363SJacques Pienaar   if (func.getPersonality().hasValue()) {
783ff77397fSShraiysh Vaishay     llvm::Type *ty = llvm::Type::getInt8PtrTy(llvmFunc->getContext());
784dde96363SJacques Pienaar     if (llvm::Constant *pfunc = getLLVMConstant(ty, func.getPersonalityAttr(),
785dde96363SJacques Pienaar                                                 func.getLoc(), *this))
786ff77397fSShraiysh Vaishay       llvmFunc->setPersonalityFn(pfunc);
787ff77397fSShraiysh Vaishay   }
788ff77397fSShraiysh Vaishay 
7895d7231d8SStephan Herhut   // First, create all blocks so we can jump to them.
7905d7231d8SStephan Herhut   llvm::LLVMContext &llvmContext = llvmFunc->getContext();
7915d7231d8SStephan Herhut   for (auto &bb : func) {
7925d7231d8SStephan Herhut     auto *llvmBB = llvm::BasicBlock::Create(llvmContext);
7935d7231d8SStephan Herhut     llvmBB->insertInto(llvmFunc);
7940881a4f1SAlex Zinenko     mapBlock(&bb, llvmBB);
7955d7231d8SStephan Herhut   }
7965d7231d8SStephan Herhut 
7975d7231d8SStephan Herhut   // Then, convert blocks one by one in topological order to ensure defs are
7985d7231d8SStephan Herhut   // converted before uses.
79966900b3eSAlex Zinenko   auto blocks = detail::getTopologicallySortedBlocks(func.getBody());
80010164a2eSAlex Zinenko   for (Block *bb : blocks) {
80110164a2eSAlex Zinenko     llvm::IRBuilder<> builder(llvmContext);
80210164a2eSAlex Zinenko     if (failed(convertBlock(*bb, bb->isEntryBlock(), builder)))
803baa1ec22SAlex Zinenko       return failure();
8045d7231d8SStephan Herhut   }
8055d7231d8SStephan Herhut 
806176379e0SAlex Zinenko   // After all blocks have been traversed and values mapped, connect the PHI
807176379e0SAlex Zinenko   // nodes to the results of preceding blocks.
80866900b3eSAlex Zinenko   detail::connectPHINodes(func.getBody(), *this);
809176379e0SAlex Zinenko 
810176379e0SAlex Zinenko   // Finally, convert dialect attributes attached to the function.
811176379e0SAlex Zinenko   return convertDialectAttributes(func);
812176379e0SAlex Zinenko }
813176379e0SAlex Zinenko 
814176379e0SAlex Zinenko LogicalResult ModuleTranslation::convertDialectAttributes(Operation *op) {
815176379e0SAlex Zinenko   for (NamedAttribute attribute : op->getDialectAttrs())
816176379e0SAlex Zinenko     if (failed(iface.amendOperation(op, attribute, *this)))
817176379e0SAlex Zinenko       return failure();
818baa1ec22SAlex Zinenko   return success();
8195d7231d8SStephan Herhut }
8205d7231d8SStephan Herhut 
821a084b94fSSean Silva LogicalResult ModuleTranslation::convertFunctionSignatures() {
8225d7231d8SStephan Herhut   // Declare all functions first because there may be function calls that form a
823a084b94fSSean Silva   // call graph with cycles, or global initializers that reference functions.
82444fc7d72STres Popp   for (auto function : getModuleBody(mlirModule).getOps<LLVMFuncOp>()) {
8255e7959a3SAlex Zinenko     llvm::FunctionCallee llvmFuncCst = llvmModule->getOrInsertFunction(
8265e7959a3SAlex Zinenko         function.getName(),
827aec38c61SAlex Zinenko         cast<llvm::FunctionType>(convertType(function.getType())));
8280a2131b7SAlex Zinenko     llvm::Function *llvmFunc = cast<llvm::Function>(llvmFuncCst.getCallee());
829dde96363SJacques Pienaar     llvmFunc->setLinkage(convertLinkageToLLVM(function.getLinkage()));
8300881a4f1SAlex Zinenko     mapFunction(function.getName(), llvmFunc);
831dde96363SJacques Pienaar     addRuntimePreemptionSpecifier(function.getDsoLocal(), llvmFunc);
8320a2131b7SAlex Zinenko 
8330a2131b7SAlex Zinenko     // Forward the pass-through attributes to LLVM.
834dde96363SJacques Pienaar     if (failed(forwardPassthroughAttributes(
835dde96363SJacques Pienaar             function.getLoc(), function.getPassthrough(), llvmFunc)))
8360a2131b7SAlex Zinenko       return failure();
8375d7231d8SStephan Herhut   }
8385d7231d8SStephan Herhut 
839a084b94fSSean Silva   return success();
840a084b94fSSean Silva }
841a084b94fSSean Silva 
842a084b94fSSean Silva LogicalResult ModuleTranslation::convertFunctions() {
8435d7231d8SStephan Herhut   // Convert functions.
84444fc7d72STres Popp   for (auto function : getModuleBody(mlirModule).getOps<LLVMFuncOp>()) {
8455d7231d8SStephan Herhut     // Ignore external functions.
8465d7231d8SStephan Herhut     if (function.isExternal())
8475d7231d8SStephan Herhut       continue;
8485d7231d8SStephan Herhut 
849baa1ec22SAlex Zinenko     if (failed(convertOneFunction(function)))
850baa1ec22SAlex Zinenko       return failure();
8515d7231d8SStephan Herhut   }
8525d7231d8SStephan Herhut 
853baa1ec22SAlex Zinenko   return success();
8545d7231d8SStephan Herhut }
8555d7231d8SStephan Herhut 
8564a2930f4SArpith C. Jacob llvm::MDNode *
8574a2930f4SArpith C. Jacob ModuleTranslation::getAccessGroup(Operation &opInst,
8584a2930f4SArpith C. Jacob                                   SymbolRefAttr accessGroupRef) const {
8594a2930f4SArpith C. Jacob   auto metadataName = accessGroupRef.getRootReference();
8604a2930f4SArpith C. Jacob   auto accessGroupName = accessGroupRef.getLeafReference();
8614a2930f4SArpith C. Jacob   auto metadataOp = SymbolTable::lookupNearestSymbolFrom<LLVM::MetadataOp>(
8624a2930f4SArpith C. Jacob       opInst.getParentOp(), metadataName);
8634a2930f4SArpith C. Jacob   auto *accessGroupOp =
8644a2930f4SArpith C. Jacob       SymbolTable::lookupNearestSymbolFrom(metadataOp, accessGroupName);
8654a2930f4SArpith C. Jacob   return accessGroupMetadataMapping.lookup(accessGroupOp);
8664a2930f4SArpith C. Jacob }
8674a2930f4SArpith C. Jacob 
8684a2930f4SArpith C. Jacob LogicalResult ModuleTranslation::createAccessGroupMetadata() {
8694a2930f4SArpith C. Jacob   mlirModule->walk([&](LLVM::MetadataOp metadatas) {
8704a2930f4SArpith C. Jacob     metadatas.walk([&](LLVM::AccessGroupMetadataOp op) {
8714a2930f4SArpith C. Jacob       llvm::LLVMContext &ctx = llvmModule->getContext();
8724a2930f4SArpith C. Jacob       llvm::MDNode *accessGroup = llvm::MDNode::getDistinct(ctx, {});
8734a2930f4SArpith C. Jacob       accessGroupMetadataMapping.insert({op, accessGroup});
8744a2930f4SArpith C. Jacob     });
8754a2930f4SArpith C. Jacob   });
8764a2930f4SArpith C. Jacob   return success();
8774a2930f4SArpith C. Jacob }
8784a2930f4SArpith C. Jacob 
8794e393350SArpith C. Jacob void ModuleTranslation::setAccessGroupsMetadata(Operation *op,
8804e393350SArpith C. Jacob                                                 llvm::Instruction *inst) {
8814e393350SArpith C. Jacob   auto accessGroups =
8824e393350SArpith C. Jacob       op->getAttrOfType<ArrayAttr>(LLVMDialect::getAccessGroupsAttrName());
8834e393350SArpith C. Jacob   if (accessGroups && !accessGroups.empty()) {
8844e393350SArpith C. Jacob     llvm::Module *module = inst->getModule();
8854e393350SArpith C. Jacob     SmallVector<llvm::Metadata *> metadatas;
8864e393350SArpith C. Jacob     for (SymbolRefAttr accessGroupRef :
8874e393350SArpith C. Jacob          accessGroups.getAsRange<SymbolRefAttr>())
8884e393350SArpith C. Jacob       metadatas.push_back(getAccessGroup(*op, accessGroupRef));
8894e393350SArpith C. Jacob 
8904e393350SArpith C. Jacob     llvm::MDNode *unionMD = nullptr;
8914e393350SArpith C. Jacob     if (metadatas.size() == 1)
8924e393350SArpith C. Jacob       unionMD = llvm::cast<llvm::MDNode>(metadatas.front());
8934e393350SArpith C. Jacob     else if (metadatas.size() >= 2)
8944e393350SArpith C. Jacob       unionMD = llvm::MDNode::get(module->getContext(), metadatas);
8954e393350SArpith C. Jacob 
8964e393350SArpith C. Jacob     inst->setMetadata(module->getMDKindID("llvm.access.group"), unionMD);
8974e393350SArpith C. Jacob   }
8984e393350SArpith C. Jacob }
8994e393350SArpith C. Jacob 
900d25e91d7STyler Augustine LogicalResult ModuleTranslation::createAliasScopeMetadata() {
901d25e91d7STyler Augustine   mlirModule->walk([&](LLVM::MetadataOp metadatas) {
902d25e91d7STyler Augustine     // Create the domains first, so they can be reference below in the scopes.
903d25e91d7STyler Augustine     DenseMap<Operation *, llvm::MDNode *> aliasScopeDomainMetadataMapping;
904d25e91d7STyler Augustine     metadatas.walk([&](LLVM::AliasScopeDomainMetadataOp op) {
905d25e91d7STyler Augustine       llvm::LLVMContext &ctx = llvmModule->getContext();
906d25e91d7STyler Augustine       llvm::SmallVector<llvm::Metadata *, 2> operands;
907d25e91d7STyler Augustine       operands.push_back({}); // Placeholder for self-reference
908cfb72fd3SJacques Pienaar       if (Optional<StringRef> description = op.getDescription())
909d25e91d7STyler Augustine         operands.push_back(llvm::MDString::get(ctx, description.getValue()));
910d25e91d7STyler Augustine       llvm::MDNode *domain = llvm::MDNode::get(ctx, operands);
911d25e91d7STyler Augustine       domain->replaceOperandWith(0, domain); // Self-reference for uniqueness
912d25e91d7STyler Augustine       aliasScopeDomainMetadataMapping.insert({op, domain});
913d25e91d7STyler Augustine     });
914d25e91d7STyler Augustine 
915d25e91d7STyler Augustine     // Now create the scopes, referencing the domains created above.
916d25e91d7STyler Augustine     metadatas.walk([&](LLVM::AliasScopeMetadataOp op) {
917d25e91d7STyler Augustine       llvm::LLVMContext &ctx = llvmModule->getContext();
918d25e91d7STyler Augustine       assert(isa<LLVM::MetadataOp>(op->getParentOp()));
919d25e91d7STyler Augustine       auto metadataOp = dyn_cast<LLVM::MetadataOp>(op->getParentOp());
920d25e91d7STyler Augustine       Operation *domainOp =
921cfb72fd3SJacques Pienaar           SymbolTable::lookupNearestSymbolFrom(metadataOp, op.getDomainAttr());
922d25e91d7STyler Augustine       llvm::MDNode *domain = aliasScopeDomainMetadataMapping.lookup(domainOp);
923d25e91d7STyler Augustine       assert(domain && "Scope's domain should already be valid");
924d25e91d7STyler Augustine       llvm::SmallVector<llvm::Metadata *, 3> operands;
925d25e91d7STyler Augustine       operands.push_back({}); // Placeholder for self-reference
926d25e91d7STyler Augustine       operands.push_back(domain);
927cfb72fd3SJacques Pienaar       if (Optional<StringRef> description = op.getDescription())
928d25e91d7STyler Augustine         operands.push_back(llvm::MDString::get(ctx, description.getValue()));
929d25e91d7STyler Augustine       llvm::MDNode *scope = llvm::MDNode::get(ctx, operands);
930d25e91d7STyler Augustine       scope->replaceOperandWith(0, scope); // Self-reference for uniqueness
931d25e91d7STyler Augustine       aliasScopeMetadataMapping.insert({op, scope});
932d25e91d7STyler Augustine     });
933d25e91d7STyler Augustine   });
934d25e91d7STyler Augustine   return success();
935d25e91d7STyler Augustine }
936d25e91d7STyler Augustine 
937d25e91d7STyler Augustine llvm::MDNode *
938d25e91d7STyler Augustine ModuleTranslation::getAliasScope(Operation &opInst,
939d25e91d7STyler Augustine                                  SymbolRefAttr aliasScopeRef) const {
94041d4aa7dSChris Lattner   StringAttr metadataName = aliasScopeRef.getRootReference();
94141d4aa7dSChris Lattner   StringAttr scopeName = aliasScopeRef.getLeafReference();
942d25e91d7STyler Augustine   auto metadataOp = SymbolTable::lookupNearestSymbolFrom<LLVM::MetadataOp>(
943d25e91d7STyler Augustine       opInst.getParentOp(), metadataName);
944d25e91d7STyler Augustine   Operation *aliasScopeOp =
945d25e91d7STyler Augustine       SymbolTable::lookupNearestSymbolFrom(metadataOp, scopeName);
946d25e91d7STyler Augustine   return aliasScopeMetadataMapping.lookup(aliasScopeOp);
947d25e91d7STyler Augustine }
948d25e91d7STyler Augustine 
949d25e91d7STyler Augustine void ModuleTranslation::setAliasScopeMetadata(Operation *op,
950d25e91d7STyler Augustine                                               llvm::Instruction *inst) {
951d25e91d7STyler Augustine   auto populateScopeMetadata = [this, op, inst](StringRef attrName,
952d25e91d7STyler Augustine                                                 StringRef llvmMetadataName) {
953d25e91d7STyler Augustine     auto scopes = op->getAttrOfType<ArrayAttr>(attrName);
954d25e91d7STyler Augustine     if (!scopes || scopes.empty())
955d25e91d7STyler Augustine       return;
956d25e91d7STyler Augustine     llvm::Module *module = inst->getModule();
957d25e91d7STyler Augustine     SmallVector<llvm::Metadata *> scopeMDs;
958d25e91d7STyler Augustine     for (SymbolRefAttr scopeRef : scopes.getAsRange<SymbolRefAttr>())
959d25e91d7STyler Augustine       scopeMDs.push_back(getAliasScope(*op, scopeRef));
960bdaf0382SAlex Zinenko     llvm::MDNode *unionMD = llvm::MDNode::get(module->getContext(), scopeMDs);
961d25e91d7STyler Augustine     inst->setMetadata(module->getMDKindID(llvmMetadataName), unionMD);
962d25e91d7STyler Augustine   };
963d25e91d7STyler Augustine 
964d25e91d7STyler Augustine   populateScopeMetadata(LLVMDialect::getAliasScopesAttrName(), "alias.scope");
965d25e91d7STyler Augustine   populateScopeMetadata(LLVMDialect::getNoAliasScopesAttrName(), "noalias");
966d25e91d7STyler Augustine }
967d25e91d7STyler Augustine 
968c69c9e0fSAlex Zinenko llvm::Type *ModuleTranslation::convertType(Type type) {
969b2ab375dSAlex Zinenko   return typeTranslator.translateType(type);
970aec38c61SAlex Zinenko }
971aec38c61SAlex Zinenko 
9728647e4c3SAlex Zinenko /// A helper to look up remapped operands in the value remapping table.
9738647e4c3SAlex Zinenko SmallVector<llvm::Value *> ModuleTranslation::lookupValues(ValueRange values) {
9748647e4c3SAlex Zinenko   SmallVector<llvm::Value *> remapped;
975efadb6b8SAlex Zinenko   remapped.reserve(values.size());
9760881a4f1SAlex Zinenko   for (Value v : values)
9770881a4f1SAlex Zinenko     remapped.push_back(lookupValue(v));
978efadb6b8SAlex Zinenko   return remapped;
979efadb6b8SAlex Zinenko }
980efadb6b8SAlex Zinenko 
98166900b3eSAlex Zinenko const llvm::DILocation *
98266900b3eSAlex Zinenko ModuleTranslation::translateLoc(Location loc, llvm::DILocalScope *scope) {
98366900b3eSAlex Zinenko   return debugTranslation->translateLoc(loc, scope);
98466900b3eSAlex Zinenko }
98566900b3eSAlex Zinenko 
986176379e0SAlex Zinenko llvm::NamedMDNode *
987176379e0SAlex Zinenko ModuleTranslation::getOrInsertNamedModuleMetadata(StringRef name) {
988176379e0SAlex Zinenko   return llvmModule->getOrInsertNamedMetadata(name);
989176379e0SAlex Zinenko }
990176379e0SAlex Zinenko 
99172d013ddSAlex Zinenko void ModuleTranslation::StackFrame::anchor() {}
99272d013ddSAlex Zinenko 
993ce8f10d6SAlex Zinenko static std::unique_ptr<llvm::Module>
994ce8f10d6SAlex Zinenko prepareLLVMModule(Operation *m, llvm::LLVMContext &llvmContext,
995ce8f10d6SAlex Zinenko                   StringRef name) {
996f9dc2b70SMehdi Amini   m->getContext()->getOrLoadDialect<LLVM::LLVMDialect>();
997db1c197bSAlex Zinenko   auto llvmModule = std::make_unique<llvm::Module>(name, llvmContext);
998168213f9SAlex Zinenko   if (auto dataLayoutAttr =
999168213f9SAlex Zinenko           m->getAttr(LLVM::LLVMDialect::getDataLayoutAttrName()))
1000168213f9SAlex Zinenko     llvmModule->setDataLayout(dataLayoutAttr.cast<StringAttr>().getValue());
10015dd5a083SNicolas Vasilache   if (auto targetTripleAttr =
10025dd5a083SNicolas Vasilache           m->getAttr(LLVM::LLVMDialect::getTargetTripleAttrName()))
10035dd5a083SNicolas Vasilache     llvmModule->setTargetTriple(targetTripleAttr.cast<StringAttr>().getValue());
10045d7231d8SStephan Herhut 
10055d7231d8SStephan Herhut   // Inject declarations for `malloc` and `free` functions that can be used in
10065d7231d8SStephan Herhut   // memref allocation/deallocation coming from standard ops lowering.
1007db1c197bSAlex Zinenko   llvm::IRBuilder<> builder(llvmContext);
10085d7231d8SStephan Herhut   llvmModule->getOrInsertFunction("malloc", builder.getInt8PtrTy(),
10095d7231d8SStephan Herhut                                   builder.getInt64Ty());
10105d7231d8SStephan Herhut   llvmModule->getOrInsertFunction("free", builder.getVoidTy(),
10115d7231d8SStephan Herhut                                   builder.getInt8PtrTy());
10125d7231d8SStephan Herhut 
10135d7231d8SStephan Herhut   return llvmModule;
10145d7231d8SStephan Herhut }
1015ce8f10d6SAlex Zinenko 
1016ce8f10d6SAlex Zinenko std::unique_ptr<llvm::Module>
1017ce8f10d6SAlex Zinenko mlir::translateModuleToLLVMIR(Operation *module, llvm::LLVMContext &llvmContext,
1018ce8f10d6SAlex Zinenko                               StringRef name) {
1019ce8f10d6SAlex Zinenko   if (!satisfiesLLVMModule(module))
1020ce8f10d6SAlex Zinenko     return nullptr;
1021ce8f10d6SAlex Zinenko   std::unique_ptr<llvm::Module> llvmModule =
1022ce8f10d6SAlex Zinenko       prepareLLVMModule(module, llvmContext, name);
1023ce8f10d6SAlex Zinenko 
1024ce8f10d6SAlex Zinenko   LLVM::ensureDistinctSuccessors(module);
1025ce8f10d6SAlex Zinenko 
1026ce8f10d6SAlex Zinenko   ModuleTranslation translator(module, std::move(llvmModule));
1027ce8f10d6SAlex Zinenko   if (failed(translator.convertFunctionSignatures()))
1028ce8f10d6SAlex Zinenko     return nullptr;
1029ce8f10d6SAlex Zinenko   if (failed(translator.convertGlobals()))
1030ce8f10d6SAlex Zinenko     return nullptr;
10314a2930f4SArpith C. Jacob   if (failed(translator.createAccessGroupMetadata()))
10324a2930f4SArpith C. Jacob     return nullptr;
1033d25e91d7STyler Augustine   if (failed(translator.createAliasScopeMetadata()))
1034d25e91d7STyler Augustine     return nullptr;
1035ce8f10d6SAlex Zinenko   if (failed(translator.convertFunctions()))
1036ce8f10d6SAlex Zinenko     return nullptr;
10378647e4c3SAlex Zinenko 
10388647e4c3SAlex Zinenko   // Convert other top-level operations if possible.
10398647e4c3SAlex Zinenko   llvm::IRBuilder<> llvmBuilder(llvmContext);
10408647e4c3SAlex Zinenko   for (Operation &o : getModuleBody(module).getOperations()) {
104157b9b296SUday Bondhugula     if (!isa<LLVM::LLVMFuncOp, LLVM::GlobalOp, LLVM::GlobalCtorsOp,
104257b9b296SUday Bondhugula              LLVM::GlobalDtorsOp, LLVM::MetadataOp>(&o) &&
10438647e4c3SAlex Zinenko         !o.hasTrait<OpTrait::IsTerminator>() &&
10448647e4c3SAlex Zinenko         failed(translator.convertOperation(o, llvmBuilder))) {
10458647e4c3SAlex Zinenko       return nullptr;
10468647e4c3SAlex Zinenko     }
10478647e4c3SAlex Zinenko   }
10488647e4c3SAlex Zinenko 
1049ce8f10d6SAlex Zinenko   if (llvm::verifyModule(*translator.llvmModule, &llvm::errs()))
1050ce8f10d6SAlex Zinenko     return nullptr;
1051ce8f10d6SAlex Zinenko 
1052ce8f10d6SAlex Zinenko   return std::move(translator.llvmModule);
1053ce8f10d6SAlex Zinenko }
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