15c0c51a9SNicolas Vasilache //===- VectorToLLVM.cpp - Conversion from Vector to the LLVM dialect ------===//
25c0c51a9SNicolas Vasilache //
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
65c0c51a9SNicolas Vasilache //
756222a06SMehdi Amini //===----------------------------------------------------------------------===//
85c0c51a9SNicolas Vasilache 
965678d93SNicolas Vasilache #include "mlir/Conversion/VectorToLLVM/ConvertVectorToLLVM.h"
10870c1fd4SAlex Zinenko 
115c0c51a9SNicolas Vasilache #include "mlir/Conversion/StandardToLLVM/ConvertStandardToLLVM.h"
125c0c51a9SNicolas Vasilache #include "mlir/Conversion/StandardToLLVM/ConvertStandardToLLVMPass.h"
13e332c22cSNicolas Vasilache #include "mlir/Dialect/LLVMIR/FunctionCallUtils.h"
145c0c51a9SNicolas Vasilache #include "mlir/Dialect/LLVMIR/LLVMDialect.h"
15e2310704SJulian Gross #include "mlir/Dialect/MemRef/IR/MemRef.h"
1669d757c0SRob Suderman #include "mlir/Dialect/StandardOps/IR/Ops.h"
174d60f47bSRob Suderman #include "mlir/Dialect/Vector/VectorOps.h"
1809f7a55fSRiver Riddle #include "mlir/IR/BuiltinTypes.h"
19ec1f4e7cSAlex Zinenko #include "mlir/Target/LLVMIR/TypeTranslation.h"
205c0c51a9SNicolas Vasilache #include "mlir/Transforms/DialectConversion.h"
215c0c51a9SNicolas Vasilache 
225c0c51a9SNicolas Vasilache using namespace mlir;
2365678d93SNicolas Vasilache using namespace mlir::vector;
245c0c51a9SNicolas Vasilache 
259826fe5cSAart Bik // Helper to reduce vector type by one rank at front.
269826fe5cSAart Bik static VectorType reducedVectorTypeFront(VectorType tp) {
279826fe5cSAart Bik   assert((tp.getRank() > 1) && "unlowerable vector type");
289826fe5cSAart Bik   return VectorType::get(tp.getShape().drop_front(), tp.getElementType());
299826fe5cSAart Bik }
309826fe5cSAart Bik 
319826fe5cSAart Bik // Helper to reduce vector type by *all* but one rank at back.
329826fe5cSAart Bik static VectorType reducedVectorTypeBack(VectorType tp) {
339826fe5cSAart Bik   assert((tp.getRank() > 1) && "unlowerable vector type");
349826fe5cSAart Bik   return VectorType::get(tp.getShape().take_back(), tp.getElementType());
359826fe5cSAart Bik }
369826fe5cSAart Bik 
371c81adf3SAart Bik // Helper that picks the proper sequence for inserting.
38e62a6956SRiver Riddle static Value insertOne(ConversionPatternRewriter &rewriter,
390f04384dSAlex Zinenko                        LLVMTypeConverter &typeConverter, Location loc,
400f04384dSAlex Zinenko                        Value val1, Value val2, Type llvmType, int64_t rank,
410f04384dSAlex Zinenko                        int64_t pos) {
421c81adf3SAart Bik   if (rank == 1) {
431c81adf3SAart Bik     auto idxType = rewriter.getIndexType();
441c81adf3SAart Bik     auto constant = rewriter.create<LLVM::ConstantOp>(
450f04384dSAlex Zinenko         loc, typeConverter.convertType(idxType),
461c81adf3SAart Bik         rewriter.getIntegerAttr(idxType, pos));
471c81adf3SAart Bik     return rewriter.create<LLVM::InsertElementOp>(loc, llvmType, val1, val2,
481c81adf3SAart Bik                                                   constant);
491c81adf3SAart Bik   }
501c81adf3SAart Bik   return rewriter.create<LLVM::InsertValueOp>(loc, llvmType, val1, val2,
511c81adf3SAart Bik                                               rewriter.getI64ArrayAttr(pos));
521c81adf3SAart Bik }
531c81adf3SAart Bik 
542d515e49SNicolas Vasilache // Helper that picks the proper sequence for inserting.
552d515e49SNicolas Vasilache static Value insertOne(PatternRewriter &rewriter, Location loc, Value from,
562d515e49SNicolas Vasilache                        Value into, int64_t offset) {
572d515e49SNicolas Vasilache   auto vectorType = into.getType().cast<VectorType>();
582d515e49SNicolas Vasilache   if (vectorType.getRank() > 1)
592d515e49SNicolas Vasilache     return rewriter.create<InsertOp>(loc, from, into, offset);
602d515e49SNicolas Vasilache   return rewriter.create<vector::InsertElementOp>(
612d515e49SNicolas Vasilache       loc, vectorType, from, into,
622d515e49SNicolas Vasilache       rewriter.create<ConstantIndexOp>(loc, offset));
632d515e49SNicolas Vasilache }
642d515e49SNicolas Vasilache 
651c81adf3SAart Bik // Helper that picks the proper sequence for extracting.
66e62a6956SRiver Riddle static Value extractOne(ConversionPatternRewriter &rewriter,
670f04384dSAlex Zinenko                         LLVMTypeConverter &typeConverter, Location loc,
680f04384dSAlex Zinenko                         Value val, Type llvmType, int64_t rank, int64_t pos) {
691c81adf3SAart Bik   if (rank == 1) {
701c81adf3SAart Bik     auto idxType = rewriter.getIndexType();
711c81adf3SAart Bik     auto constant = rewriter.create<LLVM::ConstantOp>(
720f04384dSAlex Zinenko         loc, typeConverter.convertType(idxType),
731c81adf3SAart Bik         rewriter.getIntegerAttr(idxType, pos));
741c81adf3SAart Bik     return rewriter.create<LLVM::ExtractElementOp>(loc, llvmType, val,
751c81adf3SAart Bik                                                    constant);
761c81adf3SAart Bik   }
771c81adf3SAart Bik   return rewriter.create<LLVM::ExtractValueOp>(loc, llvmType, val,
781c81adf3SAart Bik                                                rewriter.getI64ArrayAttr(pos));
791c81adf3SAart Bik }
801c81adf3SAart Bik 
812d515e49SNicolas Vasilache // Helper that picks the proper sequence for extracting.
822d515e49SNicolas Vasilache static Value extractOne(PatternRewriter &rewriter, Location loc, Value vector,
832d515e49SNicolas Vasilache                         int64_t offset) {
842d515e49SNicolas Vasilache   auto vectorType = vector.getType().cast<VectorType>();
852d515e49SNicolas Vasilache   if (vectorType.getRank() > 1)
862d515e49SNicolas Vasilache     return rewriter.create<ExtractOp>(loc, vector, offset);
872d515e49SNicolas Vasilache   return rewriter.create<vector::ExtractElementOp>(
882d515e49SNicolas Vasilache       loc, vectorType.getElementType(), vector,
892d515e49SNicolas Vasilache       rewriter.create<ConstantIndexOp>(loc, offset));
902d515e49SNicolas Vasilache }
912d515e49SNicolas Vasilache 
922d515e49SNicolas Vasilache // Helper that returns a subset of `arrayAttr` as a vector of int64_t.
939db53a18SRiver Riddle // TODO: Better support for attribute subtype forwarding + slicing.
942d515e49SNicolas Vasilache static SmallVector<int64_t, 4> getI64SubArray(ArrayAttr arrayAttr,
952d515e49SNicolas Vasilache                                               unsigned dropFront = 0,
962d515e49SNicolas Vasilache                                               unsigned dropBack = 0) {
972d515e49SNicolas Vasilache   assert(arrayAttr.size() > dropFront + dropBack && "Out of bounds");
982d515e49SNicolas Vasilache   auto range = arrayAttr.getAsRange<IntegerAttr>();
992d515e49SNicolas Vasilache   SmallVector<int64_t, 4> res;
1002d515e49SNicolas Vasilache   res.reserve(arrayAttr.size() - dropFront - dropBack);
1012d515e49SNicolas Vasilache   for (auto it = range.begin() + dropFront, eit = range.end() - dropBack;
1022d515e49SNicolas Vasilache        it != eit; ++it)
1032d515e49SNicolas Vasilache     res.push_back((*it).getValue().getSExtValue());
1042d515e49SNicolas Vasilache   return res;
1052d515e49SNicolas Vasilache }
1062d515e49SNicolas Vasilache 
10726c8f908SThomas Raoux // Helper that returns data layout alignment of a memref.
10826c8f908SThomas Raoux LogicalResult getMemRefAlignment(LLVMTypeConverter &typeConverter,
10926c8f908SThomas Raoux                                  MemRefType memrefType, unsigned &align) {
11026c8f908SThomas Raoux   Type elementTy = typeConverter.convertType(memrefType.getElementType());
1115f9e0466SNicolas Vasilache   if (!elementTy)
1125f9e0466SNicolas Vasilache     return failure();
1135f9e0466SNicolas Vasilache 
114b2ab375dSAlex Zinenko   // TODO: this should use the MLIR data layout when it becomes available and
115b2ab375dSAlex Zinenko   // stop depending on translation.
11687a89e0fSAlex Zinenko   llvm::LLVMContext llvmContext;
11787a89e0fSAlex Zinenko   align = LLVM::TypeToLLVMIRTranslator(llvmContext)
118c69c9e0fSAlex Zinenko               .getPreferredAlignment(elementTy, typeConverter.getDataLayout());
1195f9e0466SNicolas Vasilache   return success();
1205f9e0466SNicolas Vasilache }
1215f9e0466SNicolas Vasilache 
122df5ccf5aSAart Bik // Add an index vector component to a base pointer. This almost always succeeds
123df5ccf5aSAart Bik // unless the last stride is non-unit or the memory space is not zero.
124df5ccf5aSAart Bik static LogicalResult getIndexedPtrs(ConversionPatternRewriter &rewriter,
125df5ccf5aSAart Bik                                     Location loc, Value memref, Value base,
126df5ccf5aSAart Bik                                     Value index, MemRefType memRefType,
127df5ccf5aSAart Bik                                     VectorType vType, Value &ptrs) {
12819dbb230Saartbik   int64_t offset;
12919dbb230Saartbik   SmallVector<int64_t, 4> strides;
13019dbb230Saartbik   auto successStrides = getStridesAndOffset(memRefType, strides, offset);
131df5ccf5aSAart Bik   if (failed(successStrides) || strides.back() != 1 ||
13237eca08eSVladislav Vinogradov       memRefType.getMemorySpaceAsInt() != 0)
133e8dcf5f8Saartbik     return failure();
1343a577f54SChristian Sigg   auto pType = MemRefDescriptor(memref).getElementPtrType();
135bd30a796SAlex Zinenko   auto ptrsType = LLVM::getFixedVectorType(pType, vType.getDimSize(0));
136df5ccf5aSAart Bik   ptrs = rewriter.create<LLVM::GEPOp>(loc, ptrsType, base, index);
13719dbb230Saartbik   return success();
13819dbb230Saartbik }
13919dbb230Saartbik 
140a57def30SAart Bik // Casts a strided element pointer to a vector pointer.  The vector pointer
14108c681f6SAndrew Pritchard // will be in the same address space as the incoming memref type.
142a57def30SAart Bik static Value castDataPtr(ConversionPatternRewriter &rewriter, Location loc,
143a57def30SAart Bik                          Value ptr, MemRefType memRefType, Type vt) {
14437eca08eSVladislav Vinogradov   auto pType = LLVM::LLVMPointerType::get(vt, memRefType.getMemorySpaceAsInt());
145a57def30SAart Bik   return rewriter.create<LLVM::BitcastOp>(loc, pType, ptr);
146a57def30SAart Bik }
147a57def30SAart Bik 
1485f9e0466SNicolas Vasilache static LogicalResult
1495f9e0466SNicolas Vasilache replaceTransferOpWithLoadOrStore(ConversionPatternRewriter &rewriter,
1505f9e0466SNicolas Vasilache                                  LLVMTypeConverter &typeConverter, Location loc,
1515f9e0466SNicolas Vasilache                                  TransferReadOp xferOp,
1525f9e0466SNicolas Vasilache                                  ArrayRef<Value> operands, Value dataPtr) {
153affbc0cdSNicolas Vasilache   unsigned align;
15426c8f908SThomas Raoux   if (failed(getMemRefAlignment(
15526c8f908SThomas Raoux           typeConverter, xferOp.getShapedType().cast<MemRefType>(), align)))
156affbc0cdSNicolas Vasilache     return failure();
157affbc0cdSNicolas Vasilache   rewriter.replaceOpWithNewOp<LLVM::LoadOp>(xferOp, dataPtr, align);
1585f9e0466SNicolas Vasilache   return success();
1595f9e0466SNicolas Vasilache }
1605f9e0466SNicolas Vasilache 
1615f9e0466SNicolas Vasilache static LogicalResult
1625f9e0466SNicolas Vasilache replaceTransferOpWithMasked(ConversionPatternRewriter &rewriter,
1635f9e0466SNicolas Vasilache                             LLVMTypeConverter &typeConverter, Location loc,
1645f9e0466SNicolas Vasilache                             TransferReadOp xferOp, ArrayRef<Value> operands,
1655f9e0466SNicolas Vasilache                             Value dataPtr, Value mask) {
1665f9e0466SNicolas Vasilache   Type vecTy = typeConverter.convertType(xferOp.getVectorType());
1675f9e0466SNicolas Vasilache   if (!vecTy)
1685f9e0466SNicolas Vasilache     return failure();
1695f9e0466SNicolas Vasilache 
170*b614ada0STobias Gysi   auto adaptor = TransferReadOpAdaptor(operands, xferOp->getAttrDictionary());
171*b614ada0STobias Gysi   Value fill = rewriter.create<SplatOp>(loc, vecTy, adaptor.padding());
172*b614ada0STobias Gysi 
1735f9e0466SNicolas Vasilache   unsigned align;
17426c8f908SThomas Raoux   if (failed(getMemRefAlignment(
17526c8f908SThomas Raoux           typeConverter, xferOp.getShapedType().cast<MemRefType>(), align)))
1765f9e0466SNicolas Vasilache     return failure();
1775f9e0466SNicolas Vasilache 
1785f9e0466SNicolas Vasilache   rewriter.replaceOpWithNewOp<LLVM::MaskedLoadOp>(
1795f9e0466SNicolas Vasilache       xferOp, vecTy, dataPtr, mask, ValueRange{fill},
1805f9e0466SNicolas Vasilache       rewriter.getI32IntegerAttr(align));
1815f9e0466SNicolas Vasilache   return success();
1825f9e0466SNicolas Vasilache }
1835f9e0466SNicolas Vasilache 
1845f9e0466SNicolas Vasilache static LogicalResult
1855f9e0466SNicolas Vasilache replaceTransferOpWithLoadOrStore(ConversionPatternRewriter &rewriter,
1865f9e0466SNicolas Vasilache                                  LLVMTypeConverter &typeConverter, Location loc,
1875f9e0466SNicolas Vasilache                                  TransferWriteOp xferOp,
1885f9e0466SNicolas Vasilache                                  ArrayRef<Value> operands, Value dataPtr) {
189affbc0cdSNicolas Vasilache   unsigned align;
19026c8f908SThomas Raoux   if (failed(getMemRefAlignment(
19126c8f908SThomas Raoux           typeConverter, xferOp.getShapedType().cast<MemRefType>(), align)))
192affbc0cdSNicolas Vasilache     return failure();
19365a3f289SMatthias Springer   auto adaptor = TransferWriteOpAdaptor(operands, xferOp->getAttrDictionary());
194affbc0cdSNicolas Vasilache   rewriter.replaceOpWithNewOp<LLVM::StoreOp>(xferOp, adaptor.vector(), dataPtr,
195affbc0cdSNicolas Vasilache                                              align);
1965f9e0466SNicolas Vasilache   return success();
1975f9e0466SNicolas Vasilache }
1985f9e0466SNicolas Vasilache 
1995f9e0466SNicolas Vasilache static LogicalResult
2005f9e0466SNicolas Vasilache replaceTransferOpWithMasked(ConversionPatternRewriter &rewriter,
2015f9e0466SNicolas Vasilache                             LLVMTypeConverter &typeConverter, Location loc,
2025f9e0466SNicolas Vasilache                             TransferWriteOp xferOp, ArrayRef<Value> operands,
2035f9e0466SNicolas Vasilache                             Value dataPtr, Value mask) {
2045f9e0466SNicolas Vasilache   unsigned align;
20526c8f908SThomas Raoux   if (failed(getMemRefAlignment(
20626c8f908SThomas Raoux           typeConverter, xferOp.getShapedType().cast<MemRefType>(), align)))
2075f9e0466SNicolas Vasilache     return failure();
2085f9e0466SNicolas Vasilache 
20965a3f289SMatthias Springer   auto adaptor = TransferWriteOpAdaptor(operands, xferOp->getAttrDictionary());
2105f9e0466SNicolas Vasilache   rewriter.replaceOpWithNewOp<LLVM::MaskedStoreOp>(
2115f9e0466SNicolas Vasilache       xferOp, adaptor.vector(), dataPtr, mask,
2125f9e0466SNicolas Vasilache       rewriter.getI32IntegerAttr(align));
2135f9e0466SNicolas Vasilache   return success();
2145f9e0466SNicolas Vasilache }
2155f9e0466SNicolas Vasilache 
2162d2c73c5SJacques Pienaar static TransferReadOpAdaptor getTransferOpAdapter(TransferReadOp xferOp,
2172d2c73c5SJacques Pienaar                                                   ArrayRef<Value> operands) {
21865a3f289SMatthias Springer   return TransferReadOpAdaptor(operands, xferOp->getAttrDictionary());
2195f9e0466SNicolas Vasilache }
2205f9e0466SNicolas Vasilache 
2212d2c73c5SJacques Pienaar static TransferWriteOpAdaptor getTransferOpAdapter(TransferWriteOp xferOp,
2222d2c73c5SJacques Pienaar                                                    ArrayRef<Value> operands) {
22365a3f289SMatthias Springer   return TransferWriteOpAdaptor(operands, xferOp->getAttrDictionary());
2245f9e0466SNicolas Vasilache }
2255f9e0466SNicolas Vasilache 
22690c01357SBenjamin Kramer namespace {
227e83b7b99Saartbik 
228cf5c517cSDiego Caballero /// Conversion pattern for a vector.bitcast.
229cf5c517cSDiego Caballero class VectorBitCastOpConversion
230cf5c517cSDiego Caballero     : public ConvertOpToLLVMPattern<vector::BitCastOp> {
231cf5c517cSDiego Caballero public:
232cf5c517cSDiego Caballero   using ConvertOpToLLVMPattern<vector::BitCastOp>::ConvertOpToLLVMPattern;
233cf5c517cSDiego Caballero 
234cf5c517cSDiego Caballero   LogicalResult
235cf5c517cSDiego Caballero   matchAndRewrite(vector::BitCastOp bitCastOp, ArrayRef<Value> operands,
236cf5c517cSDiego Caballero                   ConversionPatternRewriter &rewriter) const override {
237cf5c517cSDiego Caballero     // Only 1-D vectors can be lowered to LLVM.
238cf5c517cSDiego Caballero     VectorType resultTy = bitCastOp.getType();
239cf5c517cSDiego Caballero     if (resultTy.getRank() != 1)
240cf5c517cSDiego Caballero       return failure();
241cf5c517cSDiego Caballero     Type newResultTy = typeConverter->convertType(resultTy);
242cf5c517cSDiego Caballero     rewriter.replaceOpWithNewOp<LLVM::BitcastOp>(bitCastOp, newResultTy,
243cf5c517cSDiego Caballero                                                  operands[0]);
244cf5c517cSDiego Caballero     return success();
245cf5c517cSDiego Caballero   }
246cf5c517cSDiego Caballero };
247cf5c517cSDiego Caballero 
24863b683a8SNicolas Vasilache /// Conversion pattern for a vector.matrix_multiply.
24963b683a8SNicolas Vasilache /// This is lowered directly to the proper llvm.intr.matrix.multiply.
250563879b6SRahul Joshi class VectorMatmulOpConversion
251563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::MatmulOp> {
25263b683a8SNicolas Vasilache public:
253563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::MatmulOp>::ConvertOpToLLVMPattern;
25463b683a8SNicolas Vasilache 
2553145427dSRiver Riddle   LogicalResult
256563879b6SRahul Joshi   matchAndRewrite(vector::MatmulOp matmulOp, ArrayRef<Value> operands,
25763b683a8SNicolas Vasilache                   ConversionPatternRewriter &rewriter) const override {
2582d2c73c5SJacques Pienaar     auto adaptor = vector::MatmulOpAdaptor(operands);
25963b683a8SNicolas Vasilache     rewriter.replaceOpWithNewOp<LLVM::MatrixMultiplyOp>(
260563879b6SRahul Joshi         matmulOp, typeConverter->convertType(matmulOp.res().getType()),
261563879b6SRahul Joshi         adaptor.lhs(), adaptor.rhs(), matmulOp.lhs_rows(),
262563879b6SRahul Joshi         matmulOp.lhs_columns(), matmulOp.rhs_columns());
2633145427dSRiver Riddle     return success();
26463b683a8SNicolas Vasilache   }
26563b683a8SNicolas Vasilache };
26663b683a8SNicolas Vasilache 
267c295a65dSaartbik /// Conversion pattern for a vector.flat_transpose.
268c295a65dSaartbik /// This is lowered directly to the proper llvm.intr.matrix.transpose.
269563879b6SRahul Joshi class VectorFlatTransposeOpConversion
270563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::FlatTransposeOp> {
271c295a65dSaartbik public:
272563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::FlatTransposeOp>::ConvertOpToLLVMPattern;
273c295a65dSaartbik 
274c295a65dSaartbik   LogicalResult
275563879b6SRahul Joshi   matchAndRewrite(vector::FlatTransposeOp transOp, ArrayRef<Value> operands,
276c295a65dSaartbik                   ConversionPatternRewriter &rewriter) const override {
2772d2c73c5SJacques Pienaar     auto adaptor = vector::FlatTransposeOpAdaptor(operands);
278c295a65dSaartbik     rewriter.replaceOpWithNewOp<LLVM::MatrixTransposeOp>(
279dcec2ca5SChristian Sigg         transOp, typeConverter->convertType(transOp.res().getType()),
280c295a65dSaartbik         adaptor.matrix(), transOp.rows(), transOp.columns());
281c295a65dSaartbik     return success();
282c295a65dSaartbik   }
283c295a65dSaartbik };
284c295a65dSaartbik 
285ee66e43aSDiego Caballero /// Overloaded utility that replaces a vector.load, vector.store,
286ee66e43aSDiego Caballero /// vector.maskedload and vector.maskedstore with their respective LLVM
287ee66e43aSDiego Caballero /// couterparts.
288ee66e43aSDiego Caballero static void replaceLoadOrStoreOp(vector::LoadOp loadOp,
289ee66e43aSDiego Caballero                                  vector::LoadOpAdaptor adaptor,
290ee66e43aSDiego Caballero                                  VectorType vectorTy, Value ptr, unsigned align,
291ee66e43aSDiego Caballero                                  ConversionPatternRewriter &rewriter) {
292ee66e43aSDiego Caballero   rewriter.replaceOpWithNewOp<LLVM::LoadOp>(loadOp, ptr, align);
29339379916Saartbik }
29439379916Saartbik 
295ee66e43aSDiego Caballero static void replaceLoadOrStoreOp(vector::MaskedLoadOp loadOp,
296ee66e43aSDiego Caballero                                  vector::MaskedLoadOpAdaptor adaptor,
297ee66e43aSDiego Caballero                                  VectorType vectorTy, Value ptr, unsigned align,
298ee66e43aSDiego Caballero                                  ConversionPatternRewriter &rewriter) {
299ee66e43aSDiego Caballero   rewriter.replaceOpWithNewOp<LLVM::MaskedLoadOp>(
300ee66e43aSDiego Caballero       loadOp, vectorTy, ptr, adaptor.mask(), adaptor.pass_thru(), align);
301ee66e43aSDiego Caballero }
302ee66e43aSDiego Caballero 
303ee66e43aSDiego Caballero static void replaceLoadOrStoreOp(vector::StoreOp storeOp,
304ee66e43aSDiego Caballero                                  vector::StoreOpAdaptor adaptor,
305ee66e43aSDiego Caballero                                  VectorType vectorTy, Value ptr, unsigned align,
306ee66e43aSDiego Caballero                                  ConversionPatternRewriter &rewriter) {
307ee66e43aSDiego Caballero   rewriter.replaceOpWithNewOp<LLVM::StoreOp>(storeOp, adaptor.valueToStore(),
308ee66e43aSDiego Caballero                                              ptr, align);
309ee66e43aSDiego Caballero }
310ee66e43aSDiego Caballero 
311ee66e43aSDiego Caballero static void replaceLoadOrStoreOp(vector::MaskedStoreOp storeOp,
312ee66e43aSDiego Caballero                                  vector::MaskedStoreOpAdaptor adaptor,
313ee66e43aSDiego Caballero                                  VectorType vectorTy, Value ptr, unsigned align,
314ee66e43aSDiego Caballero                                  ConversionPatternRewriter &rewriter) {
315ee66e43aSDiego Caballero   rewriter.replaceOpWithNewOp<LLVM::MaskedStoreOp>(
316ee66e43aSDiego Caballero       storeOp, adaptor.valueToStore(), ptr, adaptor.mask(), align);
317ee66e43aSDiego Caballero }
318ee66e43aSDiego Caballero 
319ee66e43aSDiego Caballero /// Conversion pattern for a vector.load, vector.store, vector.maskedload, and
320ee66e43aSDiego Caballero /// vector.maskedstore.
321ee66e43aSDiego Caballero template <class LoadOrStoreOp, class LoadOrStoreOpAdaptor>
322ee66e43aSDiego Caballero class VectorLoadStoreConversion : public ConvertOpToLLVMPattern<LoadOrStoreOp> {
32339379916Saartbik public:
324ee66e43aSDiego Caballero   using ConvertOpToLLVMPattern<LoadOrStoreOp>::ConvertOpToLLVMPattern;
32539379916Saartbik 
32639379916Saartbik   LogicalResult
327ee66e43aSDiego Caballero   matchAndRewrite(LoadOrStoreOp loadOrStoreOp, ArrayRef<Value> operands,
32839379916Saartbik                   ConversionPatternRewriter &rewriter) const override {
329ee66e43aSDiego Caballero     // Only 1-D vectors can be lowered to LLVM.
330ee66e43aSDiego Caballero     VectorType vectorTy = loadOrStoreOp.getVectorType();
331ee66e43aSDiego Caballero     if (vectorTy.getRank() > 1)
332ee66e43aSDiego Caballero       return failure();
333ee66e43aSDiego Caballero 
334ee66e43aSDiego Caballero     auto loc = loadOrStoreOp->getLoc();
335ee66e43aSDiego Caballero     auto adaptor = LoadOrStoreOpAdaptor(operands);
336ee66e43aSDiego Caballero     MemRefType memRefTy = loadOrStoreOp.getMemRefType();
33739379916Saartbik 
33839379916Saartbik     // Resolve alignment.
33939379916Saartbik     unsigned align;
340ee66e43aSDiego Caballero     if (failed(getMemRefAlignment(*this->getTypeConverter(), memRefTy, align)))
34139379916Saartbik       return failure();
34239379916Saartbik 
343a57def30SAart Bik     // Resolve address.
344ee66e43aSDiego Caballero     auto vtype = this->typeConverter->convertType(loadOrStoreOp.getVectorType())
345ee66e43aSDiego Caballero                      .template cast<VectorType>();
346ee66e43aSDiego Caballero     Value dataPtr = this->getStridedElementPtr(loc, memRefTy, adaptor.base(),
347a57def30SAart Bik                                                adaptor.indices(), rewriter);
348ee66e43aSDiego Caballero     Value ptr = castDataPtr(rewriter, loc, dataPtr, memRefTy, vtype);
34939379916Saartbik 
350ee66e43aSDiego Caballero     replaceLoadOrStoreOp(loadOrStoreOp, adaptor, vtype, ptr, align, rewriter);
35139379916Saartbik     return success();
35239379916Saartbik   }
35339379916Saartbik };
35439379916Saartbik 
35519dbb230Saartbik /// Conversion pattern for a vector.gather.
356563879b6SRahul Joshi class VectorGatherOpConversion
357563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::GatherOp> {
35819dbb230Saartbik public:
359563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::GatherOp>::ConvertOpToLLVMPattern;
36019dbb230Saartbik 
36119dbb230Saartbik   LogicalResult
362563879b6SRahul Joshi   matchAndRewrite(vector::GatherOp gather, ArrayRef<Value> operands,
36319dbb230Saartbik                   ConversionPatternRewriter &rewriter) const override {
364563879b6SRahul Joshi     auto loc = gather->getLoc();
36519dbb230Saartbik     auto adaptor = vector::GatherOpAdaptor(operands);
366df5ccf5aSAart Bik     MemRefType memRefType = gather.getMemRefType();
36719dbb230Saartbik 
36819dbb230Saartbik     // Resolve alignment.
36919dbb230Saartbik     unsigned align;
370df5ccf5aSAart Bik     if (failed(getMemRefAlignment(*getTypeConverter(), memRefType, align)))
37119dbb230Saartbik       return failure();
37219dbb230Saartbik 
373df5ccf5aSAart Bik     // Resolve address.
37419dbb230Saartbik     Value ptrs;
375df5ccf5aSAart Bik     VectorType vType = gather.getVectorType();
376df5ccf5aSAart Bik     Value ptr = getStridedElementPtr(loc, memRefType, adaptor.base(),
377df5ccf5aSAart Bik                                      adaptor.indices(), rewriter);
378df5ccf5aSAart Bik     if (failed(getIndexedPtrs(rewriter, loc, adaptor.base(), ptr,
379df5ccf5aSAart Bik                               adaptor.index_vec(), memRefType, vType, ptrs)))
38019dbb230Saartbik       return failure();
38119dbb230Saartbik 
38219dbb230Saartbik     // Replace with the gather intrinsic.
38319dbb230Saartbik     rewriter.replaceOpWithNewOp<LLVM::masked_gather>(
384dcec2ca5SChristian Sigg         gather, typeConverter->convertType(vType), ptrs, adaptor.mask(),
3850c2a4d3cSBenjamin Kramer         adaptor.pass_thru(), rewriter.getI32IntegerAttr(align));
38619dbb230Saartbik     return success();
38719dbb230Saartbik   }
38819dbb230Saartbik };
38919dbb230Saartbik 
39019dbb230Saartbik /// Conversion pattern for a vector.scatter.
391563879b6SRahul Joshi class VectorScatterOpConversion
392563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::ScatterOp> {
39319dbb230Saartbik public:
394563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::ScatterOp>::ConvertOpToLLVMPattern;
39519dbb230Saartbik 
39619dbb230Saartbik   LogicalResult
397563879b6SRahul Joshi   matchAndRewrite(vector::ScatterOp scatter, ArrayRef<Value> operands,
39819dbb230Saartbik                   ConversionPatternRewriter &rewriter) const override {
399563879b6SRahul Joshi     auto loc = scatter->getLoc();
40019dbb230Saartbik     auto adaptor = vector::ScatterOpAdaptor(operands);
401df5ccf5aSAart Bik     MemRefType memRefType = scatter.getMemRefType();
40219dbb230Saartbik 
40319dbb230Saartbik     // Resolve alignment.
40419dbb230Saartbik     unsigned align;
405df5ccf5aSAart Bik     if (failed(getMemRefAlignment(*getTypeConverter(), memRefType, align)))
40619dbb230Saartbik       return failure();
40719dbb230Saartbik 
408df5ccf5aSAart Bik     // Resolve address.
40919dbb230Saartbik     Value ptrs;
410df5ccf5aSAart Bik     VectorType vType = scatter.getVectorType();
411df5ccf5aSAart Bik     Value ptr = getStridedElementPtr(loc, memRefType, adaptor.base(),
412df5ccf5aSAart Bik                                      adaptor.indices(), rewriter);
413df5ccf5aSAart Bik     if (failed(getIndexedPtrs(rewriter, loc, adaptor.base(), ptr,
414df5ccf5aSAart Bik                               adaptor.index_vec(), memRefType, vType, ptrs)))
41519dbb230Saartbik       return failure();
41619dbb230Saartbik 
41719dbb230Saartbik     // Replace with the scatter intrinsic.
41819dbb230Saartbik     rewriter.replaceOpWithNewOp<LLVM::masked_scatter>(
419656674a7SDiego Caballero         scatter, adaptor.valueToStore(), ptrs, adaptor.mask(),
42019dbb230Saartbik         rewriter.getI32IntegerAttr(align));
42119dbb230Saartbik     return success();
42219dbb230Saartbik   }
42319dbb230Saartbik };
42419dbb230Saartbik 
425e8dcf5f8Saartbik /// Conversion pattern for a vector.expandload.
426563879b6SRahul Joshi class VectorExpandLoadOpConversion
427563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::ExpandLoadOp> {
428e8dcf5f8Saartbik public:
429563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::ExpandLoadOp>::ConvertOpToLLVMPattern;
430e8dcf5f8Saartbik 
431e8dcf5f8Saartbik   LogicalResult
432563879b6SRahul Joshi   matchAndRewrite(vector::ExpandLoadOp expand, ArrayRef<Value> operands,
433e8dcf5f8Saartbik                   ConversionPatternRewriter &rewriter) const override {
434563879b6SRahul Joshi     auto loc = expand->getLoc();
435e8dcf5f8Saartbik     auto adaptor = vector::ExpandLoadOpAdaptor(operands);
436a57def30SAart Bik     MemRefType memRefType = expand.getMemRefType();
437e8dcf5f8Saartbik 
438a57def30SAart Bik     // Resolve address.
439656674a7SDiego Caballero     auto vtype = typeConverter->convertType(expand.getVectorType());
440df5ccf5aSAart Bik     Value ptr = getStridedElementPtr(loc, memRefType, adaptor.base(),
441a57def30SAart Bik                                      adaptor.indices(), rewriter);
442e8dcf5f8Saartbik 
443e8dcf5f8Saartbik     rewriter.replaceOpWithNewOp<LLVM::masked_expandload>(
444a57def30SAart Bik         expand, vtype, ptr, adaptor.mask(), adaptor.pass_thru());
445e8dcf5f8Saartbik     return success();
446e8dcf5f8Saartbik   }
447e8dcf5f8Saartbik };
448e8dcf5f8Saartbik 
449e8dcf5f8Saartbik /// Conversion pattern for a vector.compressstore.
450563879b6SRahul Joshi class VectorCompressStoreOpConversion
451563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::CompressStoreOp> {
452e8dcf5f8Saartbik public:
453563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::CompressStoreOp>::ConvertOpToLLVMPattern;
454e8dcf5f8Saartbik 
455e8dcf5f8Saartbik   LogicalResult
456563879b6SRahul Joshi   matchAndRewrite(vector::CompressStoreOp compress, ArrayRef<Value> operands,
457e8dcf5f8Saartbik                   ConversionPatternRewriter &rewriter) const override {
458563879b6SRahul Joshi     auto loc = compress->getLoc();
459e8dcf5f8Saartbik     auto adaptor = vector::CompressStoreOpAdaptor(operands);
460a57def30SAart Bik     MemRefType memRefType = compress.getMemRefType();
461e8dcf5f8Saartbik 
462a57def30SAart Bik     // Resolve address.
463df5ccf5aSAart Bik     Value ptr = getStridedElementPtr(loc, memRefType, adaptor.base(),
464a57def30SAart Bik                                      adaptor.indices(), rewriter);
465e8dcf5f8Saartbik 
466e8dcf5f8Saartbik     rewriter.replaceOpWithNewOp<LLVM::masked_compressstore>(
467656674a7SDiego Caballero         compress, adaptor.valueToStore(), ptr, adaptor.mask());
468e8dcf5f8Saartbik     return success();
469e8dcf5f8Saartbik   }
470e8dcf5f8Saartbik };
471e8dcf5f8Saartbik 
47219dbb230Saartbik /// Conversion pattern for all vector reductions.
473563879b6SRahul Joshi class VectorReductionOpConversion
474563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::ReductionOp> {
475e83b7b99Saartbik public:
476563879b6SRahul Joshi   explicit VectorReductionOpConversion(LLVMTypeConverter &typeConv,
477060c9dd1Saartbik                                        bool reassociateFPRed)
478563879b6SRahul Joshi       : ConvertOpToLLVMPattern<vector::ReductionOp>(typeConv),
479060c9dd1Saartbik         reassociateFPReductions(reassociateFPRed) {}
480e83b7b99Saartbik 
4813145427dSRiver Riddle   LogicalResult
482563879b6SRahul Joshi   matchAndRewrite(vector::ReductionOp reductionOp, ArrayRef<Value> operands,
483e83b7b99Saartbik                   ConversionPatternRewriter &rewriter) const override {
484e83b7b99Saartbik     auto kind = reductionOp.kind();
485e83b7b99Saartbik     Type eltType = reductionOp.dest().getType();
486dcec2ca5SChristian Sigg     Type llvmType = typeConverter->convertType(eltType);
487e9628955SAart Bik     if (eltType.isIntOrIndex()) {
488e83b7b99Saartbik       // Integer reductions: add/mul/min/max/and/or/xor.
489e83b7b99Saartbik       if (kind == "add")
490322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_add>(
491563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
492e83b7b99Saartbik       else if (kind == "mul")
493322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_mul>(
494563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
495e9628955SAart Bik       else if (kind == "min" &&
496e9628955SAart Bik                (eltType.isIndex() || eltType.isUnsignedInteger()))
497322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_umin>(
498563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
499e83b7b99Saartbik       else if (kind == "min")
500322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_smin>(
501563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
502e9628955SAart Bik       else if (kind == "max" &&
503e9628955SAart Bik                (eltType.isIndex() || eltType.isUnsignedInteger()))
504322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_umax>(
505563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
506e83b7b99Saartbik       else if (kind == "max")
507322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_smax>(
508563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
509e83b7b99Saartbik       else if (kind == "and")
510322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_and>(
511563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
512e83b7b99Saartbik       else if (kind == "or")
513322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_or>(
514563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
515e83b7b99Saartbik       else if (kind == "xor")
516322d0afdSAmara Emerson         rewriter.replaceOpWithNewOp<LLVM::vector_reduce_xor>(
517563879b6SRahul Joshi             reductionOp, llvmType, operands[0]);
518e83b7b99Saartbik       else
5193145427dSRiver Riddle         return failure();
5203145427dSRiver Riddle       return success();
521dcec2ca5SChristian Sigg     }
522e83b7b99Saartbik 
523dcec2ca5SChristian Sigg     if (!eltType.isa<FloatType>())
524dcec2ca5SChristian Sigg       return failure();
525dcec2ca5SChristian Sigg 
526e83b7b99Saartbik     // Floating-point reductions: add/mul/min/max
527e83b7b99Saartbik     if (kind == "add") {
5280d924700Saartbik       // Optional accumulator (or zero).
5290d924700Saartbik       Value acc = operands.size() > 1 ? operands[1]
5300d924700Saartbik                                       : rewriter.create<LLVM::ConstantOp>(
531563879b6SRahul Joshi                                             reductionOp->getLoc(), llvmType,
5320d924700Saartbik                                             rewriter.getZeroAttr(eltType));
533322d0afdSAmara Emerson       rewriter.replaceOpWithNewOp<LLVM::vector_reduce_fadd>(
534563879b6SRahul Joshi           reductionOp, llvmType, acc, operands[0],
535ceb1b327Saartbik           rewriter.getBoolAttr(reassociateFPReductions));
536e83b7b99Saartbik     } else if (kind == "mul") {
5370d924700Saartbik       // Optional accumulator (or one).
5380d924700Saartbik       Value acc = operands.size() > 1
5390d924700Saartbik                       ? operands[1]
5400d924700Saartbik                       : rewriter.create<LLVM::ConstantOp>(
541563879b6SRahul Joshi                             reductionOp->getLoc(), llvmType,
5420d924700Saartbik                             rewriter.getFloatAttr(eltType, 1.0));
543322d0afdSAmara Emerson       rewriter.replaceOpWithNewOp<LLVM::vector_reduce_fmul>(
544563879b6SRahul Joshi           reductionOp, llvmType, acc, operands[0],
545ceb1b327Saartbik           rewriter.getBoolAttr(reassociateFPReductions));
546e83b7b99Saartbik     } else if (kind == "min")
547563879b6SRahul Joshi       rewriter.replaceOpWithNewOp<LLVM::vector_reduce_fmin>(
548563879b6SRahul Joshi           reductionOp, llvmType, operands[0]);
549e83b7b99Saartbik     else if (kind == "max")
550563879b6SRahul Joshi       rewriter.replaceOpWithNewOp<LLVM::vector_reduce_fmax>(
551563879b6SRahul Joshi           reductionOp, llvmType, operands[0]);
552e83b7b99Saartbik     else
5533145427dSRiver Riddle       return failure();
5543145427dSRiver Riddle     return success();
555e83b7b99Saartbik   }
556ceb1b327Saartbik 
557ceb1b327Saartbik private:
558ceb1b327Saartbik   const bool reassociateFPReductions;
559e83b7b99Saartbik };
560e83b7b99Saartbik 
561563879b6SRahul Joshi class VectorShuffleOpConversion
562563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::ShuffleOp> {
5631c81adf3SAart Bik public:
564563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::ShuffleOp>::ConvertOpToLLVMPattern;
5651c81adf3SAart Bik 
5663145427dSRiver Riddle   LogicalResult
567563879b6SRahul Joshi   matchAndRewrite(vector::ShuffleOp shuffleOp, ArrayRef<Value> operands,
5681c81adf3SAart Bik                   ConversionPatternRewriter &rewriter) const override {
569563879b6SRahul Joshi     auto loc = shuffleOp->getLoc();
5702d2c73c5SJacques Pienaar     auto adaptor = vector::ShuffleOpAdaptor(operands);
5711c81adf3SAart Bik     auto v1Type = shuffleOp.getV1VectorType();
5721c81adf3SAart Bik     auto v2Type = shuffleOp.getV2VectorType();
5731c81adf3SAart Bik     auto vectorType = shuffleOp.getVectorType();
574dcec2ca5SChristian Sigg     Type llvmType = typeConverter->convertType(vectorType);
5751c81adf3SAart Bik     auto maskArrayAttr = shuffleOp.mask();
5761c81adf3SAart Bik 
5771c81adf3SAart Bik     // Bail if result type cannot be lowered.
5781c81adf3SAart Bik     if (!llvmType)
5793145427dSRiver Riddle       return failure();
5801c81adf3SAart Bik 
5811c81adf3SAart Bik     // Get rank and dimension sizes.
5821c81adf3SAart Bik     int64_t rank = vectorType.getRank();
5831c81adf3SAart Bik     assert(v1Type.getRank() == rank);
5841c81adf3SAart Bik     assert(v2Type.getRank() == rank);
5851c81adf3SAart Bik     int64_t v1Dim = v1Type.getDimSize(0);
5861c81adf3SAart Bik 
5871c81adf3SAart Bik     // For rank 1, where both operands have *exactly* the same vector type,
5881c81adf3SAart Bik     // there is direct shuffle support in LLVM. Use it!
5891c81adf3SAart Bik     if (rank == 1 && v1Type == v2Type) {
590563879b6SRahul Joshi       Value llvmShuffleOp = rewriter.create<LLVM::ShuffleVectorOp>(
5911c81adf3SAart Bik           loc, adaptor.v1(), adaptor.v2(), maskArrayAttr);
592563879b6SRahul Joshi       rewriter.replaceOp(shuffleOp, llvmShuffleOp);
5933145427dSRiver Riddle       return success();
594b36aaeafSAart Bik     }
595b36aaeafSAart Bik 
5961c81adf3SAart Bik     // For all other cases, insert the individual values individually.
597e62a6956SRiver Riddle     Value insert = rewriter.create<LLVM::UndefOp>(loc, llvmType);
5981c81adf3SAart Bik     int64_t insPos = 0;
5991c81adf3SAart Bik     for (auto en : llvm::enumerate(maskArrayAttr)) {
6001c81adf3SAart Bik       int64_t extPos = en.value().cast<IntegerAttr>().getInt();
601e62a6956SRiver Riddle       Value value = adaptor.v1();
6021c81adf3SAart Bik       if (extPos >= v1Dim) {
6031c81adf3SAart Bik         extPos -= v1Dim;
6041c81adf3SAart Bik         value = adaptor.v2();
605b36aaeafSAart Bik       }
606dcec2ca5SChristian Sigg       Value extract = extractOne(rewriter, *getTypeConverter(), loc, value,
607dcec2ca5SChristian Sigg                                  llvmType, rank, extPos);
608dcec2ca5SChristian Sigg       insert = insertOne(rewriter, *getTypeConverter(), loc, insert, extract,
6090f04384dSAlex Zinenko                          llvmType, rank, insPos++);
6101c81adf3SAart Bik     }
611563879b6SRahul Joshi     rewriter.replaceOp(shuffleOp, insert);
6123145427dSRiver Riddle     return success();
613b36aaeafSAart Bik   }
614b36aaeafSAart Bik };
615b36aaeafSAart Bik 
616563879b6SRahul Joshi class VectorExtractElementOpConversion
617563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::ExtractElementOp> {
618cd5dab8aSAart Bik public:
619563879b6SRahul Joshi   using ConvertOpToLLVMPattern<
620563879b6SRahul Joshi       vector::ExtractElementOp>::ConvertOpToLLVMPattern;
621cd5dab8aSAart Bik 
6223145427dSRiver Riddle   LogicalResult
623563879b6SRahul Joshi   matchAndRewrite(vector::ExtractElementOp extractEltOp,
624563879b6SRahul Joshi                   ArrayRef<Value> operands,
625cd5dab8aSAart Bik                   ConversionPatternRewriter &rewriter) const override {
6262d2c73c5SJacques Pienaar     auto adaptor = vector::ExtractElementOpAdaptor(operands);
627cd5dab8aSAart Bik     auto vectorType = extractEltOp.getVectorType();
628dcec2ca5SChristian Sigg     auto llvmType = typeConverter->convertType(vectorType.getElementType());
629cd5dab8aSAart Bik 
630cd5dab8aSAart Bik     // Bail if result type cannot be lowered.
631cd5dab8aSAart Bik     if (!llvmType)
6323145427dSRiver Riddle       return failure();
633cd5dab8aSAart Bik 
634cd5dab8aSAart Bik     rewriter.replaceOpWithNewOp<LLVM::ExtractElementOp>(
635563879b6SRahul Joshi         extractEltOp, llvmType, adaptor.vector(), adaptor.position());
6363145427dSRiver Riddle     return success();
637cd5dab8aSAart Bik   }
638cd5dab8aSAart Bik };
639cd5dab8aSAart Bik 
640563879b6SRahul Joshi class VectorExtractOpConversion
641563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::ExtractOp> {
6425c0c51a9SNicolas Vasilache public:
643563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::ExtractOp>::ConvertOpToLLVMPattern;
6445c0c51a9SNicolas Vasilache 
6453145427dSRiver Riddle   LogicalResult
646563879b6SRahul Joshi   matchAndRewrite(vector::ExtractOp extractOp, ArrayRef<Value> operands,
6475c0c51a9SNicolas Vasilache                   ConversionPatternRewriter &rewriter) const override {
648563879b6SRahul Joshi     auto loc = extractOp->getLoc();
6492d2c73c5SJacques Pienaar     auto adaptor = vector::ExtractOpAdaptor(operands);
6509826fe5cSAart Bik     auto vectorType = extractOp.getVectorType();
6512bdf33ccSRiver Riddle     auto resultType = extractOp.getResult().getType();
652dcec2ca5SChristian Sigg     auto llvmResultType = typeConverter->convertType(resultType);
6535c0c51a9SNicolas Vasilache     auto positionArrayAttr = extractOp.position();
6549826fe5cSAart Bik 
6559826fe5cSAart Bik     // Bail if result type cannot be lowered.
6569826fe5cSAart Bik     if (!llvmResultType)
6573145427dSRiver Riddle       return failure();
6589826fe5cSAart Bik 
6595c0c51a9SNicolas Vasilache     // One-shot extraction of vector from array (only requires extractvalue).
6605c0c51a9SNicolas Vasilache     if (resultType.isa<VectorType>()) {
661e62a6956SRiver Riddle       Value extracted = rewriter.create<LLVM::ExtractValueOp>(
6625c0c51a9SNicolas Vasilache           loc, llvmResultType, adaptor.vector(), positionArrayAttr);
663563879b6SRahul Joshi       rewriter.replaceOp(extractOp, extracted);
6643145427dSRiver Riddle       return success();
6655c0c51a9SNicolas Vasilache     }
6665c0c51a9SNicolas Vasilache 
6679826fe5cSAart Bik     // Potential extraction of 1-D vector from array.
668563879b6SRahul Joshi     auto *context = extractOp->getContext();
669e62a6956SRiver Riddle     Value extracted = adaptor.vector();
6705c0c51a9SNicolas Vasilache     auto positionAttrs = positionArrayAttr.getValue();
6715c0c51a9SNicolas Vasilache     if (positionAttrs.size() > 1) {
6729826fe5cSAart Bik       auto oneDVectorType = reducedVectorTypeBack(vectorType);
6735c0c51a9SNicolas Vasilache       auto nMinusOnePositionAttrs =
674c2c83e97STres Popp           ArrayAttr::get(context, positionAttrs.drop_back());
6755c0c51a9SNicolas Vasilache       extracted = rewriter.create<LLVM::ExtractValueOp>(
676dcec2ca5SChristian Sigg           loc, typeConverter->convertType(oneDVectorType), extracted,
6775c0c51a9SNicolas Vasilache           nMinusOnePositionAttrs);
6785c0c51a9SNicolas Vasilache     }
6795c0c51a9SNicolas Vasilache 
6805c0c51a9SNicolas Vasilache     // Remaining extraction of element from 1-D LLVM vector
6815c0c51a9SNicolas Vasilache     auto position = positionAttrs.back().cast<IntegerAttr>();
6822230bf99SAlex Zinenko     auto i64Type = IntegerType::get(rewriter.getContext(), 64);
6831d47564aSAart Bik     auto constant = rewriter.create<LLVM::ConstantOp>(loc, i64Type, position);
6845c0c51a9SNicolas Vasilache     extracted =
6855c0c51a9SNicolas Vasilache         rewriter.create<LLVM::ExtractElementOp>(loc, extracted, constant);
686563879b6SRahul Joshi     rewriter.replaceOp(extractOp, extracted);
6875c0c51a9SNicolas Vasilache 
6883145427dSRiver Riddle     return success();
6895c0c51a9SNicolas Vasilache   }
6905c0c51a9SNicolas Vasilache };
6915c0c51a9SNicolas Vasilache 
692681f929fSNicolas Vasilache /// Conversion pattern that turns a vector.fma on a 1-D vector
693681f929fSNicolas Vasilache /// into an llvm.intr.fmuladd. This is a trivial 1-1 conversion.
694681f929fSNicolas Vasilache /// This does not match vectors of n >= 2 rank.
695681f929fSNicolas Vasilache ///
696681f929fSNicolas Vasilache /// Example:
697681f929fSNicolas Vasilache /// ```
698681f929fSNicolas Vasilache ///  vector.fma %a, %a, %a : vector<8xf32>
699681f929fSNicolas Vasilache /// ```
700681f929fSNicolas Vasilache /// is converted to:
701681f929fSNicolas Vasilache /// ```
7023bffe602SBenjamin Kramer ///  llvm.intr.fmuladd %va, %va, %va:
703dd5165a9SAlex Zinenko ///    (!llvm."<8 x f32>">, !llvm<"<8 x f32>">, !llvm<"<8 x f32>">)
704dd5165a9SAlex Zinenko ///    -> !llvm."<8 x f32>">
705681f929fSNicolas Vasilache /// ```
706563879b6SRahul Joshi class VectorFMAOp1DConversion : public ConvertOpToLLVMPattern<vector::FMAOp> {
707681f929fSNicolas Vasilache public:
708563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::FMAOp>::ConvertOpToLLVMPattern;
709681f929fSNicolas Vasilache 
7103145427dSRiver Riddle   LogicalResult
711563879b6SRahul Joshi   matchAndRewrite(vector::FMAOp fmaOp, ArrayRef<Value> operands,
712681f929fSNicolas Vasilache                   ConversionPatternRewriter &rewriter) const override {
7132d2c73c5SJacques Pienaar     auto adaptor = vector::FMAOpAdaptor(operands);
714681f929fSNicolas Vasilache     VectorType vType = fmaOp.getVectorType();
715681f929fSNicolas Vasilache     if (vType.getRank() != 1)
7163145427dSRiver Riddle       return failure();
717563879b6SRahul Joshi     rewriter.replaceOpWithNewOp<LLVM::FMulAddOp>(fmaOp, adaptor.lhs(),
7183bffe602SBenjamin Kramer                                                  adaptor.rhs(), adaptor.acc());
7193145427dSRiver Riddle     return success();
720681f929fSNicolas Vasilache   }
721681f929fSNicolas Vasilache };
722681f929fSNicolas Vasilache 
723563879b6SRahul Joshi class VectorInsertElementOpConversion
724563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::InsertElementOp> {
725cd5dab8aSAart Bik public:
726563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::InsertElementOp>::ConvertOpToLLVMPattern;
727cd5dab8aSAart Bik 
7283145427dSRiver Riddle   LogicalResult
729563879b6SRahul Joshi   matchAndRewrite(vector::InsertElementOp insertEltOp, ArrayRef<Value> operands,
730cd5dab8aSAart Bik                   ConversionPatternRewriter &rewriter) const override {
7312d2c73c5SJacques Pienaar     auto adaptor = vector::InsertElementOpAdaptor(operands);
732cd5dab8aSAart Bik     auto vectorType = insertEltOp.getDestVectorType();
733dcec2ca5SChristian Sigg     auto llvmType = typeConverter->convertType(vectorType);
734cd5dab8aSAart Bik 
735cd5dab8aSAart Bik     // Bail if result type cannot be lowered.
736cd5dab8aSAart Bik     if (!llvmType)
7373145427dSRiver Riddle       return failure();
738cd5dab8aSAart Bik 
739cd5dab8aSAart Bik     rewriter.replaceOpWithNewOp<LLVM::InsertElementOp>(
740563879b6SRahul Joshi         insertEltOp, llvmType, adaptor.dest(), adaptor.source(),
741563879b6SRahul Joshi         adaptor.position());
7423145427dSRiver Riddle     return success();
743cd5dab8aSAart Bik   }
744cd5dab8aSAart Bik };
745cd5dab8aSAart Bik 
746563879b6SRahul Joshi class VectorInsertOpConversion
747563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::InsertOp> {
7489826fe5cSAart Bik public:
749563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::InsertOp>::ConvertOpToLLVMPattern;
7509826fe5cSAart Bik 
7513145427dSRiver Riddle   LogicalResult
752563879b6SRahul Joshi   matchAndRewrite(vector::InsertOp insertOp, ArrayRef<Value> operands,
7539826fe5cSAart Bik                   ConversionPatternRewriter &rewriter) const override {
754563879b6SRahul Joshi     auto loc = insertOp->getLoc();
7552d2c73c5SJacques Pienaar     auto adaptor = vector::InsertOpAdaptor(operands);
7569826fe5cSAart Bik     auto sourceType = insertOp.getSourceType();
7579826fe5cSAart Bik     auto destVectorType = insertOp.getDestVectorType();
758dcec2ca5SChristian Sigg     auto llvmResultType = typeConverter->convertType(destVectorType);
7599826fe5cSAart Bik     auto positionArrayAttr = insertOp.position();
7609826fe5cSAart Bik 
7619826fe5cSAart Bik     // Bail if result type cannot be lowered.
7629826fe5cSAart Bik     if (!llvmResultType)
7633145427dSRiver Riddle       return failure();
7649826fe5cSAart Bik 
7659826fe5cSAart Bik     // One-shot insertion of a vector into an array (only requires insertvalue).
7669826fe5cSAart Bik     if (sourceType.isa<VectorType>()) {
767e62a6956SRiver Riddle       Value inserted = rewriter.create<LLVM::InsertValueOp>(
7689826fe5cSAart Bik           loc, llvmResultType, adaptor.dest(), adaptor.source(),
7699826fe5cSAart Bik           positionArrayAttr);
770563879b6SRahul Joshi       rewriter.replaceOp(insertOp, inserted);
7713145427dSRiver Riddle       return success();
7729826fe5cSAart Bik     }
7739826fe5cSAart Bik 
7749826fe5cSAart Bik     // Potential extraction of 1-D vector from array.
775563879b6SRahul Joshi     auto *context = insertOp->getContext();
776e62a6956SRiver Riddle     Value extracted = adaptor.dest();
7779826fe5cSAart Bik     auto positionAttrs = positionArrayAttr.getValue();
7789826fe5cSAart Bik     auto position = positionAttrs.back().cast<IntegerAttr>();
7799826fe5cSAart Bik     auto oneDVectorType = destVectorType;
7809826fe5cSAart Bik     if (positionAttrs.size() > 1) {
7819826fe5cSAart Bik       oneDVectorType = reducedVectorTypeBack(destVectorType);
7829826fe5cSAart Bik       auto nMinusOnePositionAttrs =
783c2c83e97STres Popp           ArrayAttr::get(context, positionAttrs.drop_back());
7849826fe5cSAart Bik       extracted = rewriter.create<LLVM::ExtractValueOp>(
785dcec2ca5SChristian Sigg           loc, typeConverter->convertType(oneDVectorType), extracted,
7869826fe5cSAart Bik           nMinusOnePositionAttrs);
7879826fe5cSAart Bik     }
7889826fe5cSAart Bik 
7899826fe5cSAart Bik     // Insertion of an element into a 1-D LLVM vector.
7902230bf99SAlex Zinenko     auto i64Type = IntegerType::get(rewriter.getContext(), 64);
7911d47564aSAart Bik     auto constant = rewriter.create<LLVM::ConstantOp>(loc, i64Type, position);
792e62a6956SRiver Riddle     Value inserted = rewriter.create<LLVM::InsertElementOp>(
793dcec2ca5SChristian Sigg         loc, typeConverter->convertType(oneDVectorType), extracted,
7940f04384dSAlex Zinenko         adaptor.source(), constant);
7959826fe5cSAart Bik 
7969826fe5cSAart Bik     // Potential insertion of resulting 1-D vector into array.
7979826fe5cSAart Bik     if (positionAttrs.size() > 1) {
7989826fe5cSAart Bik       auto nMinusOnePositionAttrs =
799c2c83e97STres Popp           ArrayAttr::get(context, positionAttrs.drop_back());
8009826fe5cSAart Bik       inserted = rewriter.create<LLVM::InsertValueOp>(loc, llvmResultType,
8019826fe5cSAart Bik                                                       adaptor.dest(), inserted,
8029826fe5cSAart Bik                                                       nMinusOnePositionAttrs);
8039826fe5cSAart Bik     }
8049826fe5cSAart Bik 
805563879b6SRahul Joshi     rewriter.replaceOp(insertOp, inserted);
8063145427dSRiver Riddle     return success();
8079826fe5cSAart Bik   }
8089826fe5cSAart Bik };
8099826fe5cSAart Bik 
810681f929fSNicolas Vasilache /// Rank reducing rewrite for n-D FMA into (n-1)-D FMA where n > 1.
811681f929fSNicolas Vasilache ///
812681f929fSNicolas Vasilache /// Example:
813681f929fSNicolas Vasilache /// ```
814681f929fSNicolas Vasilache ///   %d = vector.fma %a, %b, %c : vector<2x4xf32>
815681f929fSNicolas Vasilache /// ```
816681f929fSNicolas Vasilache /// is rewritten into:
817681f929fSNicolas Vasilache /// ```
818681f929fSNicolas Vasilache ///  %r = splat %f0: vector<2x4xf32>
819681f929fSNicolas Vasilache ///  %va = vector.extractvalue %a[0] : vector<2x4xf32>
820681f929fSNicolas Vasilache ///  %vb = vector.extractvalue %b[0] : vector<2x4xf32>
821681f929fSNicolas Vasilache ///  %vc = vector.extractvalue %c[0] : vector<2x4xf32>
822681f929fSNicolas Vasilache ///  %vd = vector.fma %va, %vb, %vc : vector<4xf32>
823681f929fSNicolas Vasilache ///  %r2 = vector.insertvalue %vd, %r[0] : vector<4xf32> into vector<2x4xf32>
824681f929fSNicolas Vasilache ///  %va2 = vector.extractvalue %a2[1] : vector<2x4xf32>
825681f929fSNicolas Vasilache ///  %vb2 = vector.extractvalue %b2[1] : vector<2x4xf32>
826681f929fSNicolas Vasilache ///  %vc2 = vector.extractvalue %c2[1] : vector<2x4xf32>
827681f929fSNicolas Vasilache ///  %vd2 = vector.fma %va2, %vb2, %vc2 : vector<4xf32>
828681f929fSNicolas Vasilache ///  %r3 = vector.insertvalue %vd2, %r2[1] : vector<4xf32> into vector<2x4xf32>
829681f929fSNicolas Vasilache ///  // %r3 holds the final value.
830681f929fSNicolas Vasilache /// ```
831681f929fSNicolas Vasilache class VectorFMAOpNDRewritePattern : public OpRewritePattern<FMAOp> {
832681f929fSNicolas Vasilache public:
833681f929fSNicolas Vasilache   using OpRewritePattern<FMAOp>::OpRewritePattern;
834681f929fSNicolas Vasilache 
8353145427dSRiver Riddle   LogicalResult matchAndRewrite(FMAOp op,
836681f929fSNicolas Vasilache                                 PatternRewriter &rewriter) const override {
837681f929fSNicolas Vasilache     auto vType = op.getVectorType();
838681f929fSNicolas Vasilache     if (vType.getRank() < 2)
8393145427dSRiver Riddle       return failure();
840681f929fSNicolas Vasilache 
841681f929fSNicolas Vasilache     auto loc = op.getLoc();
842681f929fSNicolas Vasilache     auto elemType = vType.getElementType();
843681f929fSNicolas Vasilache     Value zero = rewriter.create<ConstantOp>(loc, elemType,
844681f929fSNicolas Vasilache                                              rewriter.getZeroAttr(elemType));
845681f929fSNicolas Vasilache     Value desc = rewriter.create<SplatOp>(loc, vType, zero);
846681f929fSNicolas Vasilache     for (int64_t i = 0, e = vType.getShape().front(); i != e; ++i) {
847681f929fSNicolas Vasilache       Value extrLHS = rewriter.create<ExtractOp>(loc, op.lhs(), i);
848681f929fSNicolas Vasilache       Value extrRHS = rewriter.create<ExtractOp>(loc, op.rhs(), i);
849681f929fSNicolas Vasilache       Value extrACC = rewriter.create<ExtractOp>(loc, op.acc(), i);
850681f929fSNicolas Vasilache       Value fma = rewriter.create<FMAOp>(loc, extrLHS, extrRHS, extrACC);
851681f929fSNicolas Vasilache       desc = rewriter.create<InsertOp>(loc, fma, desc, i);
852681f929fSNicolas Vasilache     }
853681f929fSNicolas Vasilache     rewriter.replaceOp(op, desc);
8543145427dSRiver Riddle     return success();
855681f929fSNicolas Vasilache   }
856681f929fSNicolas Vasilache };
857681f929fSNicolas Vasilache 
8582d515e49SNicolas Vasilache // When ranks are different, InsertStridedSlice needs to extract a properly
8592d515e49SNicolas Vasilache // ranked vector from the destination vector into which to insert. This pattern
8602d515e49SNicolas Vasilache // only takes care of this part and forwards the rest of the conversion to
8612d515e49SNicolas Vasilache // another pattern that converts InsertStridedSlice for operands of the same
8622d515e49SNicolas Vasilache // rank.
8632d515e49SNicolas Vasilache //
8642d515e49SNicolas Vasilache // RewritePattern for InsertStridedSliceOp where source and destination vectors
8652d515e49SNicolas Vasilache // have different ranks. In this case:
8662d515e49SNicolas Vasilache //   1. the proper subvector is extracted from the destination vector
8672d515e49SNicolas Vasilache //   2. a new InsertStridedSlice op is created to insert the source in the
8682d515e49SNicolas Vasilache //   destination subvector
8692d515e49SNicolas Vasilache //   3. the destination subvector is inserted back in the proper place
8702d515e49SNicolas Vasilache //   4. the op is replaced by the result of step 3.
8712d515e49SNicolas Vasilache // The new InsertStridedSlice from step 2. will be picked up by a
8722d515e49SNicolas Vasilache // `VectorInsertStridedSliceOpSameRankRewritePattern`.
8732d515e49SNicolas Vasilache class VectorInsertStridedSliceOpDifferentRankRewritePattern
8742d515e49SNicolas Vasilache     : public OpRewritePattern<InsertStridedSliceOp> {
8752d515e49SNicolas Vasilache public:
8762d515e49SNicolas Vasilache   using OpRewritePattern<InsertStridedSliceOp>::OpRewritePattern;
8772d515e49SNicolas Vasilache 
8783145427dSRiver Riddle   LogicalResult matchAndRewrite(InsertStridedSliceOp op,
8792d515e49SNicolas Vasilache                                 PatternRewriter &rewriter) const override {
8802d515e49SNicolas Vasilache     auto srcType = op.getSourceVectorType();
8812d515e49SNicolas Vasilache     auto dstType = op.getDestVectorType();
8822d515e49SNicolas Vasilache 
8832d515e49SNicolas Vasilache     if (op.offsets().getValue().empty())
8843145427dSRiver Riddle       return failure();
8852d515e49SNicolas Vasilache 
8862d515e49SNicolas Vasilache     auto loc = op.getLoc();
8872d515e49SNicolas Vasilache     int64_t rankDiff = dstType.getRank() - srcType.getRank();
8882d515e49SNicolas Vasilache     assert(rankDiff >= 0);
8892d515e49SNicolas Vasilache     if (rankDiff == 0)
8903145427dSRiver Riddle       return failure();
8912d515e49SNicolas Vasilache 
8922d515e49SNicolas Vasilache     int64_t rankRest = dstType.getRank() - rankDiff;
8932d515e49SNicolas Vasilache     // Extract / insert the subvector of matching rank and InsertStridedSlice
8942d515e49SNicolas Vasilache     // on it.
8952d515e49SNicolas Vasilache     Value extracted =
8962d515e49SNicolas Vasilache         rewriter.create<ExtractOp>(loc, op.dest(),
8972d515e49SNicolas Vasilache                                    getI64SubArray(op.offsets(), /*dropFront=*/0,
898dcec2ca5SChristian Sigg                                                   /*dropBack=*/rankRest));
8992d515e49SNicolas Vasilache     // A different pattern will kick in for InsertStridedSlice with matching
9002d515e49SNicolas Vasilache     // ranks.
9012d515e49SNicolas Vasilache     auto stridedSliceInnerOp = rewriter.create<InsertStridedSliceOp>(
9022d515e49SNicolas Vasilache         loc, op.source(), extracted,
9032d515e49SNicolas Vasilache         getI64SubArray(op.offsets(), /*dropFront=*/rankDiff),
904c8fc76a9Saartbik         getI64SubArray(op.strides(), /*dropFront=*/0));
9052d515e49SNicolas Vasilache     rewriter.replaceOpWithNewOp<InsertOp>(
9062d515e49SNicolas Vasilache         op, stridedSliceInnerOp.getResult(), op.dest(),
9072d515e49SNicolas Vasilache         getI64SubArray(op.offsets(), /*dropFront=*/0,
908dcec2ca5SChristian Sigg                        /*dropBack=*/rankRest));
9093145427dSRiver Riddle     return success();
9102d515e49SNicolas Vasilache   }
9112d515e49SNicolas Vasilache };
9122d515e49SNicolas Vasilache 
9132d515e49SNicolas Vasilache // RewritePattern for InsertStridedSliceOp where source and destination vectors
9142d515e49SNicolas Vasilache // have the same rank. In this case, we reduce
9152d515e49SNicolas Vasilache //   1. the proper subvector is extracted from the destination vector
9162d515e49SNicolas Vasilache //   2. a new InsertStridedSlice op is created to insert the source in the
9172d515e49SNicolas Vasilache //   destination subvector
9182d515e49SNicolas Vasilache //   3. the destination subvector is inserted back in the proper place
9192d515e49SNicolas Vasilache //   4. the op is replaced by the result of step 3.
9202d515e49SNicolas Vasilache // The new InsertStridedSlice from step 2. will be picked up by a
9212d515e49SNicolas Vasilache // `VectorInsertStridedSliceOpSameRankRewritePattern`.
9222d515e49SNicolas Vasilache class VectorInsertStridedSliceOpSameRankRewritePattern
9232d515e49SNicolas Vasilache     : public OpRewritePattern<InsertStridedSliceOp> {
9242d515e49SNicolas Vasilache public:
925b99bd771SRiver Riddle   VectorInsertStridedSliceOpSameRankRewritePattern(MLIRContext *ctx)
926b99bd771SRiver Riddle       : OpRewritePattern<InsertStridedSliceOp>(ctx) {
927b99bd771SRiver Riddle     // This pattern creates recursive InsertStridedSliceOp, but the recursion is
928b99bd771SRiver Riddle     // bounded as the rank is strictly decreasing.
929b99bd771SRiver Riddle     setHasBoundedRewriteRecursion();
930b99bd771SRiver Riddle   }
9312d515e49SNicolas Vasilache 
9323145427dSRiver Riddle   LogicalResult matchAndRewrite(InsertStridedSliceOp op,
9332d515e49SNicolas Vasilache                                 PatternRewriter &rewriter) const override {
9342d515e49SNicolas Vasilache     auto srcType = op.getSourceVectorType();
9352d515e49SNicolas Vasilache     auto dstType = op.getDestVectorType();
9362d515e49SNicolas Vasilache 
9372d515e49SNicolas Vasilache     if (op.offsets().getValue().empty())
9383145427dSRiver Riddle       return failure();
9392d515e49SNicolas Vasilache 
9402d515e49SNicolas Vasilache     int64_t rankDiff = dstType.getRank() - srcType.getRank();
9412d515e49SNicolas Vasilache     assert(rankDiff >= 0);
9422d515e49SNicolas Vasilache     if (rankDiff != 0)
9433145427dSRiver Riddle       return failure();
9442d515e49SNicolas Vasilache 
9452d515e49SNicolas Vasilache     if (srcType == dstType) {
9462d515e49SNicolas Vasilache       rewriter.replaceOp(op, op.source());
9473145427dSRiver Riddle       return success();
9482d515e49SNicolas Vasilache     }
9492d515e49SNicolas Vasilache 
9502d515e49SNicolas Vasilache     int64_t offset =
9512d515e49SNicolas Vasilache         op.offsets().getValue().front().cast<IntegerAttr>().getInt();
9522d515e49SNicolas Vasilache     int64_t size = srcType.getShape().front();
9532d515e49SNicolas Vasilache     int64_t stride =
9542d515e49SNicolas Vasilache         op.strides().getValue().front().cast<IntegerAttr>().getInt();
9552d515e49SNicolas Vasilache 
9562d515e49SNicolas Vasilache     auto loc = op.getLoc();
9572d515e49SNicolas Vasilache     Value res = op.dest();
9582d515e49SNicolas Vasilache     // For each slice of the source vector along the most major dimension.
9592d515e49SNicolas Vasilache     for (int64_t off = offset, e = offset + size * stride, idx = 0; off < e;
9602d515e49SNicolas Vasilache          off += stride, ++idx) {
9612d515e49SNicolas Vasilache       // 1. extract the proper subvector (or element) from source
9622d515e49SNicolas Vasilache       Value extractedSource = extractOne(rewriter, loc, op.source(), idx);
9632d515e49SNicolas Vasilache       if (extractedSource.getType().isa<VectorType>()) {
9642d515e49SNicolas Vasilache         // 2. If we have a vector, extract the proper subvector from destination
9652d515e49SNicolas Vasilache         // Otherwise we are at the element level and no need to recurse.
9662d515e49SNicolas Vasilache         Value extractedDest = extractOne(rewriter, loc, op.dest(), off);
9672d515e49SNicolas Vasilache         // 3. Reduce the problem to lowering a new InsertStridedSlice op with
9682d515e49SNicolas Vasilache         // smaller rank.
969bd1ccfe6SRiver Riddle         extractedSource = rewriter.create<InsertStridedSliceOp>(
9702d515e49SNicolas Vasilache             loc, extractedSource, extractedDest,
9712d515e49SNicolas Vasilache             getI64SubArray(op.offsets(), /* dropFront=*/1),
9722d515e49SNicolas Vasilache             getI64SubArray(op.strides(), /* dropFront=*/1));
9732d515e49SNicolas Vasilache       }
9742d515e49SNicolas Vasilache       // 4. Insert the extractedSource into the res vector.
9752d515e49SNicolas Vasilache       res = insertOne(rewriter, loc, extractedSource, res, off);
9762d515e49SNicolas Vasilache     }
9772d515e49SNicolas Vasilache 
9782d515e49SNicolas Vasilache     rewriter.replaceOp(op, res);
9793145427dSRiver Riddle     return success();
9802d515e49SNicolas Vasilache   }
9812d515e49SNicolas Vasilache };
9822d515e49SNicolas Vasilache 
98330e6033bSNicolas Vasilache /// Returns the strides if the memory underlying `memRefType` has a contiguous
98430e6033bSNicolas Vasilache /// static layout.
98530e6033bSNicolas Vasilache static llvm::Optional<SmallVector<int64_t, 4>>
98630e6033bSNicolas Vasilache computeContiguousStrides(MemRefType memRefType) {
9872bf491c7SBenjamin Kramer   int64_t offset;
98830e6033bSNicolas Vasilache   SmallVector<int64_t, 4> strides;
98930e6033bSNicolas Vasilache   if (failed(getStridesAndOffset(memRefType, strides, offset)))
99030e6033bSNicolas Vasilache     return None;
99130e6033bSNicolas Vasilache   if (!strides.empty() && strides.back() != 1)
99230e6033bSNicolas Vasilache     return None;
99330e6033bSNicolas Vasilache   // If no layout or identity layout, this is contiguous by definition.
99430e6033bSNicolas Vasilache   if (memRefType.getAffineMaps().empty() ||
99530e6033bSNicolas Vasilache       memRefType.getAffineMaps().front().isIdentity())
99630e6033bSNicolas Vasilache     return strides;
99730e6033bSNicolas Vasilache 
99830e6033bSNicolas Vasilache   // Otherwise, we must determine contiguity form shapes. This can only ever
99930e6033bSNicolas Vasilache   // work in static cases because MemRefType is underspecified to represent
100030e6033bSNicolas Vasilache   // contiguous dynamic shapes in other ways than with just empty/identity
100130e6033bSNicolas Vasilache   // layout.
10022bf491c7SBenjamin Kramer   auto sizes = memRefType.getShape();
10032bf491c7SBenjamin Kramer   for (int index = 0, e = strides.size() - 2; index < e; ++index) {
100430e6033bSNicolas Vasilache     if (ShapedType::isDynamic(sizes[index + 1]) ||
100530e6033bSNicolas Vasilache         ShapedType::isDynamicStrideOrOffset(strides[index]) ||
100630e6033bSNicolas Vasilache         ShapedType::isDynamicStrideOrOffset(strides[index + 1]))
100730e6033bSNicolas Vasilache       return None;
100830e6033bSNicolas Vasilache     if (strides[index] != strides[index + 1] * sizes[index + 1])
100930e6033bSNicolas Vasilache       return None;
10102bf491c7SBenjamin Kramer   }
101130e6033bSNicolas Vasilache   return strides;
10122bf491c7SBenjamin Kramer }
10132bf491c7SBenjamin Kramer 
1014563879b6SRahul Joshi class VectorTypeCastOpConversion
1015563879b6SRahul Joshi     : public ConvertOpToLLVMPattern<vector::TypeCastOp> {
10165c0c51a9SNicolas Vasilache public:
1017563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::TypeCastOp>::ConvertOpToLLVMPattern;
10185c0c51a9SNicolas Vasilache 
10193145427dSRiver Riddle   LogicalResult
1020563879b6SRahul Joshi   matchAndRewrite(vector::TypeCastOp castOp, ArrayRef<Value> operands,
10215c0c51a9SNicolas Vasilache                   ConversionPatternRewriter &rewriter) const override {
1022563879b6SRahul Joshi     auto loc = castOp->getLoc();
10235c0c51a9SNicolas Vasilache     MemRefType sourceMemRefType =
10242bdf33ccSRiver Riddle         castOp.getOperand().getType().cast<MemRefType>();
10259eb3e564SChris Lattner     MemRefType targetMemRefType = castOp.getType();
10265c0c51a9SNicolas Vasilache 
10275c0c51a9SNicolas Vasilache     // Only static shape casts supported atm.
10285c0c51a9SNicolas Vasilache     if (!sourceMemRefType.hasStaticShape() ||
10295c0c51a9SNicolas Vasilache         !targetMemRefType.hasStaticShape())
10303145427dSRiver Riddle       return failure();
10315c0c51a9SNicolas Vasilache 
10325c0c51a9SNicolas Vasilache     auto llvmSourceDescriptorTy =
10338de43b92SAlex Zinenko         operands[0].getType().dyn_cast<LLVM::LLVMStructType>();
10348de43b92SAlex Zinenko     if (!llvmSourceDescriptorTy)
10353145427dSRiver Riddle       return failure();
10365c0c51a9SNicolas Vasilache     MemRefDescriptor sourceMemRef(operands[0]);
10375c0c51a9SNicolas Vasilache 
1038dcec2ca5SChristian Sigg     auto llvmTargetDescriptorTy = typeConverter->convertType(targetMemRefType)
10398de43b92SAlex Zinenko                                       .dyn_cast_or_null<LLVM::LLVMStructType>();
10408de43b92SAlex Zinenko     if (!llvmTargetDescriptorTy)
10413145427dSRiver Riddle       return failure();
10425c0c51a9SNicolas Vasilache 
104330e6033bSNicolas Vasilache     // Only contiguous source buffers supported atm.
104430e6033bSNicolas Vasilache     auto sourceStrides = computeContiguousStrides(sourceMemRefType);
104530e6033bSNicolas Vasilache     if (!sourceStrides)
104630e6033bSNicolas Vasilache       return failure();
104730e6033bSNicolas Vasilache     auto targetStrides = computeContiguousStrides(targetMemRefType);
104830e6033bSNicolas Vasilache     if (!targetStrides)
104930e6033bSNicolas Vasilache       return failure();
105030e6033bSNicolas Vasilache     // Only support static strides for now, regardless of contiguity.
105130e6033bSNicolas Vasilache     if (llvm::any_of(*targetStrides, [](int64_t stride) {
105230e6033bSNicolas Vasilache           return ShapedType::isDynamicStrideOrOffset(stride);
105330e6033bSNicolas Vasilache         }))
10543145427dSRiver Riddle       return failure();
10555c0c51a9SNicolas Vasilache 
10562230bf99SAlex Zinenko     auto int64Ty = IntegerType::get(rewriter.getContext(), 64);
10575c0c51a9SNicolas Vasilache 
10585c0c51a9SNicolas Vasilache     // Create descriptor.
10595c0c51a9SNicolas Vasilache     auto desc = MemRefDescriptor::undef(rewriter, loc, llvmTargetDescriptorTy);
10603a577f54SChristian Sigg     Type llvmTargetElementTy = desc.getElementPtrType();
10615c0c51a9SNicolas Vasilache     // Set allocated ptr.
1062e62a6956SRiver Riddle     Value allocated = sourceMemRef.allocatedPtr(rewriter, loc);
10635c0c51a9SNicolas Vasilache     allocated =
10645c0c51a9SNicolas Vasilache         rewriter.create<LLVM::BitcastOp>(loc, llvmTargetElementTy, allocated);
10655c0c51a9SNicolas Vasilache     desc.setAllocatedPtr(rewriter, loc, allocated);
10665c0c51a9SNicolas Vasilache     // Set aligned ptr.
1067e62a6956SRiver Riddle     Value ptr = sourceMemRef.alignedPtr(rewriter, loc);
10685c0c51a9SNicolas Vasilache     ptr = rewriter.create<LLVM::BitcastOp>(loc, llvmTargetElementTy, ptr);
10695c0c51a9SNicolas Vasilache     desc.setAlignedPtr(rewriter, loc, ptr);
10705c0c51a9SNicolas Vasilache     // Fill offset 0.
10715c0c51a9SNicolas Vasilache     auto attr = rewriter.getIntegerAttr(rewriter.getIndexType(), 0);
10725c0c51a9SNicolas Vasilache     auto zero = rewriter.create<LLVM::ConstantOp>(loc, int64Ty, attr);
10735c0c51a9SNicolas Vasilache     desc.setOffset(rewriter, loc, zero);
10745c0c51a9SNicolas Vasilache 
10755c0c51a9SNicolas Vasilache     // Fill size and stride descriptors in memref.
10765c0c51a9SNicolas Vasilache     for (auto indexedSize : llvm::enumerate(targetMemRefType.getShape())) {
10775c0c51a9SNicolas Vasilache       int64_t index = indexedSize.index();
10785c0c51a9SNicolas Vasilache       auto sizeAttr =
10795c0c51a9SNicolas Vasilache           rewriter.getIntegerAttr(rewriter.getIndexType(), indexedSize.value());
10805c0c51a9SNicolas Vasilache       auto size = rewriter.create<LLVM::ConstantOp>(loc, int64Ty, sizeAttr);
10815c0c51a9SNicolas Vasilache       desc.setSize(rewriter, loc, index, size);
108230e6033bSNicolas Vasilache       auto strideAttr = rewriter.getIntegerAttr(rewriter.getIndexType(),
108330e6033bSNicolas Vasilache                                                 (*targetStrides)[index]);
10845c0c51a9SNicolas Vasilache       auto stride = rewriter.create<LLVM::ConstantOp>(loc, int64Ty, strideAttr);
10855c0c51a9SNicolas Vasilache       desc.setStride(rewriter, loc, index, stride);
10865c0c51a9SNicolas Vasilache     }
10875c0c51a9SNicolas Vasilache 
1088563879b6SRahul Joshi     rewriter.replaceOp(castOp, {desc});
10893145427dSRiver Riddle     return success();
10905c0c51a9SNicolas Vasilache   }
10915c0c51a9SNicolas Vasilache };
10925c0c51a9SNicolas Vasilache 
109365a3f289SMatthias Springer /// Conversion pattern that converts a 1-D vector transfer read/write op into a
109465a3f289SMatthias Springer /// a masked or unmasked read/write.
10958345b86dSNicolas Vasilache template <typename ConcreteOp>
1096563879b6SRahul Joshi class VectorTransferConversion : public ConvertOpToLLVMPattern<ConcreteOp> {
10978345b86dSNicolas Vasilache public:
109865a3f289SMatthias Springer   using ConvertOpToLLVMPattern<ConcreteOp>::ConvertOpToLLVMPattern;
10998345b86dSNicolas Vasilache 
11008345b86dSNicolas Vasilache   LogicalResult
1101563879b6SRahul Joshi   matchAndRewrite(ConcreteOp xferOp, ArrayRef<Value> operands,
11028345b86dSNicolas Vasilache                   ConversionPatternRewriter &rewriter) const override {
11038345b86dSNicolas Vasilache     auto adaptor = getTransferOpAdapter(xferOp, operands);
1104b2c79c50SNicolas Vasilache 
1105b2c79c50SNicolas Vasilache     if (xferOp.getVectorType().getRank() > 1 ||
1106b2c79c50SNicolas Vasilache         llvm::size(xferOp.indices()) == 0)
11078345b86dSNicolas Vasilache       return failure();
11085f9e0466SNicolas Vasilache     if (xferOp.permutation_map() !=
11095f9e0466SNicolas Vasilache         AffineMap::getMinorIdentityMap(xferOp.permutation_map().getNumInputs(),
11105f9e0466SNicolas Vasilache                                        xferOp.getVectorType().getRank(),
1111563879b6SRahul Joshi                                        xferOp->getContext()))
11128345b86dSNicolas Vasilache       return failure();
111326c8f908SThomas Raoux     auto memRefType = xferOp.getShapedType().template dyn_cast<MemRefType>();
111426c8f908SThomas Raoux     if (!memRefType)
111526c8f908SThomas Raoux       return failure();
11162bf491c7SBenjamin Kramer     // Only contiguous source tensors supported atm.
111726c8f908SThomas Raoux     auto strides = computeContiguousStrides(memRefType);
111830e6033bSNicolas Vasilache     if (!strides)
11192bf491c7SBenjamin Kramer       return failure();
112065a3f289SMatthias Springer     // Out-of-bounds dims are handled by MaterializeTransferMask.
112165a3f289SMatthias Springer     if (xferOp.hasOutOfBoundsDim())
112265a3f289SMatthias Springer       return failure();
11238345b86dSNicolas Vasilache 
1124563879b6SRahul Joshi     auto toLLVMTy = [&](Type t) {
1125563879b6SRahul Joshi       return this->getTypeConverter()->convertType(t);
1126563879b6SRahul Joshi     };
11278345b86dSNicolas Vasilache 
1128563879b6SRahul Joshi     Location loc = xferOp->getLoc();
11298345b86dSNicolas Vasilache 
113068330ee0SThomas Raoux     if (auto memrefVectorElementType =
113126c8f908SThomas Raoux             memRefType.getElementType().template dyn_cast<VectorType>()) {
113268330ee0SThomas Raoux       // Memref has vector element type.
113368330ee0SThomas Raoux       if (memrefVectorElementType.getElementType() !=
113468330ee0SThomas Raoux           xferOp.getVectorType().getElementType())
113568330ee0SThomas Raoux         return failure();
11360de60b55SThomas Raoux #ifndef NDEBUG
113768330ee0SThomas Raoux       // Check that memref vector type is a suffix of 'vectorType.
113868330ee0SThomas Raoux       unsigned memrefVecEltRank = memrefVectorElementType.getRank();
113968330ee0SThomas Raoux       unsigned resultVecRank = xferOp.getVectorType().getRank();
114068330ee0SThomas Raoux       assert(memrefVecEltRank <= resultVecRank);
114168330ee0SThomas Raoux       // TODO: Move this to isSuffix in Vector/Utils.h.
114268330ee0SThomas Raoux       unsigned rankOffset = resultVecRank - memrefVecEltRank;
114368330ee0SThomas Raoux       auto memrefVecEltShape = memrefVectorElementType.getShape();
114468330ee0SThomas Raoux       auto resultVecShape = xferOp.getVectorType().getShape();
114568330ee0SThomas Raoux       for (unsigned i = 0; i < memrefVecEltRank; ++i)
114668330ee0SThomas Raoux         assert(memrefVecEltShape[i] != resultVecShape[rankOffset + i] &&
114768330ee0SThomas Raoux                "memref vector element shape should match suffix of vector "
114868330ee0SThomas Raoux                "result shape.");
11490de60b55SThomas Raoux #endif // ifndef NDEBUG
115068330ee0SThomas Raoux     }
115168330ee0SThomas Raoux 
115265a3f289SMatthias Springer     // Get the source/dst address as an LLVM vector pointer.
1153a57def30SAart Bik     VectorType vtp = xferOp.getVectorType();
1154563879b6SRahul Joshi     Value dataPtr = this->getStridedElementPtr(
115526c8f908SThomas Raoux         loc, memRefType, adaptor.source(), adaptor.indices(), rewriter);
1156a57def30SAart Bik     Value vectorDataPtr =
1157a57def30SAart Bik         castDataPtr(rewriter, loc, dataPtr, memRefType, toLLVMTy(vtp));
11588345b86dSNicolas Vasilache 
115965a3f289SMatthias Springer     // Rewrite as an unmasked masked read / write.
116065a3f289SMatthias Springer     if (!xferOp.mask())
1161563879b6SRahul Joshi       return replaceTransferOpWithLoadOrStore(rewriter,
1162563879b6SRahul Joshi                                               *this->getTypeConverter(), loc,
1163563879b6SRahul Joshi                                               xferOp, operands, vectorDataPtr);
11641870e787SNicolas Vasilache 
116565a3f289SMatthias Springer     // Rewrite as a masked read / write.
1166563879b6SRahul Joshi     return replaceTransferOpWithMasked(rewriter, *this->getTypeConverter(), loc,
116765a3f289SMatthias Springer                                        xferOp, operands, vectorDataPtr,
116865a3f289SMatthias Springer                                        xferOp.mask());
11698345b86dSNicolas Vasilache   }
11708345b86dSNicolas Vasilache };
11718345b86dSNicolas Vasilache 
1172563879b6SRahul Joshi class VectorPrintOpConversion : public ConvertOpToLLVMPattern<vector::PrintOp> {
1173d9b500d3SAart Bik public:
1174563879b6SRahul Joshi   using ConvertOpToLLVMPattern<vector::PrintOp>::ConvertOpToLLVMPattern;
1175d9b500d3SAart Bik 
1176d9b500d3SAart Bik   // Proof-of-concept lowering implementation that relies on a small
1177d9b500d3SAart Bik   // runtime support library, which only needs to provide a few
1178d9b500d3SAart Bik   // printing methods (single value for all data types, opening/closing
1179d9b500d3SAart Bik   // bracket, comma, newline). The lowering fully unrolls a vector
1180d9b500d3SAart Bik   // in terms of these elementary printing operations. The advantage
1181d9b500d3SAart Bik   // of this approach is that the library can remain unaware of all
1182d9b500d3SAart Bik   // low-level implementation details of vectors while still supporting
1183d9b500d3SAart Bik   // output of any shaped and dimensioned vector. Due to full unrolling,
1184d9b500d3SAart Bik   // this approach is less suited for very large vectors though.
1185d9b500d3SAart Bik   //
11869db53a18SRiver Riddle   // TODO: rely solely on libc in future? something else?
1187d9b500d3SAart Bik   //
11883145427dSRiver Riddle   LogicalResult
1189563879b6SRahul Joshi   matchAndRewrite(vector::PrintOp printOp, ArrayRef<Value> operands,
1190d9b500d3SAart Bik                   ConversionPatternRewriter &rewriter) const override {
11912d2c73c5SJacques Pienaar     auto adaptor = vector::PrintOpAdaptor(operands);
1192d9b500d3SAart Bik     Type printType = printOp.getPrintType();
1193d9b500d3SAart Bik 
1194dcec2ca5SChristian Sigg     if (typeConverter->convertType(printType) == nullptr)
11953145427dSRiver Riddle       return failure();
1196d9b500d3SAart Bik 
1197b8880f5fSAart Bik     // Make sure element type has runtime support.
1198b8880f5fSAart Bik     PrintConversion conversion = PrintConversion::None;
1199d9b500d3SAart Bik     VectorType vectorType = printType.dyn_cast<VectorType>();
1200d9b500d3SAart Bik     Type eltType = vectorType ? vectorType.getElementType() : printType;
1201d9b500d3SAart Bik     Operation *printer;
1202b8880f5fSAart Bik     if (eltType.isF32()) {
1203e332c22cSNicolas Vasilache       printer =
1204e332c22cSNicolas Vasilache           LLVM::lookupOrCreatePrintF32Fn(printOp->getParentOfType<ModuleOp>());
1205b8880f5fSAart Bik     } else if (eltType.isF64()) {
1206e332c22cSNicolas Vasilache       printer =
1207e332c22cSNicolas Vasilache           LLVM::lookupOrCreatePrintF64Fn(printOp->getParentOfType<ModuleOp>());
120854759cefSAart Bik     } else if (eltType.isIndex()) {
1209e332c22cSNicolas Vasilache       printer =
1210e332c22cSNicolas Vasilache           LLVM::lookupOrCreatePrintU64Fn(printOp->getParentOfType<ModuleOp>());
1211b8880f5fSAart Bik     } else if (auto intTy = eltType.dyn_cast<IntegerType>()) {
1212b8880f5fSAart Bik       // Integers need a zero or sign extension on the operand
1213b8880f5fSAart Bik       // (depending on the source type) as well as a signed or
1214b8880f5fSAart Bik       // unsigned print method. Up to 64-bit is supported.
1215b8880f5fSAart Bik       unsigned width = intTy.getWidth();
1216b8880f5fSAart Bik       if (intTy.isUnsigned()) {
121754759cefSAart Bik         if (width <= 64) {
1218b8880f5fSAart Bik           if (width < 64)
1219b8880f5fSAart Bik             conversion = PrintConversion::ZeroExt64;
1220e332c22cSNicolas Vasilache           printer = LLVM::lookupOrCreatePrintU64Fn(
1221e332c22cSNicolas Vasilache               printOp->getParentOfType<ModuleOp>());
1222b8880f5fSAart Bik         } else {
12233145427dSRiver Riddle           return failure();
1224b8880f5fSAart Bik         }
1225b8880f5fSAart Bik       } else {
1226b8880f5fSAart Bik         assert(intTy.isSignless() || intTy.isSigned());
122754759cefSAart Bik         if (width <= 64) {
1228b8880f5fSAart Bik           // Note that we *always* zero extend booleans (1-bit integers),
1229b8880f5fSAart Bik           // so that true/false is printed as 1/0 rather than -1/0.
1230b8880f5fSAart Bik           if (width == 1)
123154759cefSAart Bik             conversion = PrintConversion::ZeroExt64;
123254759cefSAart Bik           else if (width < 64)
1233b8880f5fSAart Bik             conversion = PrintConversion::SignExt64;
1234e332c22cSNicolas Vasilache           printer = LLVM::lookupOrCreatePrintI64Fn(
1235e332c22cSNicolas Vasilache               printOp->getParentOfType<ModuleOp>());
1236b8880f5fSAart Bik         } else {
1237b8880f5fSAart Bik           return failure();
1238b8880f5fSAart Bik         }
1239b8880f5fSAart Bik       }
1240b8880f5fSAart Bik     } else {
1241b8880f5fSAart Bik       return failure();
1242b8880f5fSAart Bik     }
1243d9b500d3SAart Bik 
1244d9b500d3SAart Bik     // Unroll vector into elementary print calls.
1245b8880f5fSAart Bik     int64_t rank = vectorType ? vectorType.getRank() : 0;
1246563879b6SRahul Joshi     emitRanks(rewriter, printOp, adaptor.source(), vectorType, printer, rank,
1247b8880f5fSAart Bik               conversion);
1248e332c22cSNicolas Vasilache     emitCall(rewriter, printOp->getLoc(),
1249e332c22cSNicolas Vasilache              LLVM::lookupOrCreatePrintNewlineFn(
1250e332c22cSNicolas Vasilache                  printOp->getParentOfType<ModuleOp>()));
1251563879b6SRahul Joshi     rewriter.eraseOp(printOp);
12523145427dSRiver Riddle     return success();
1253d9b500d3SAart Bik   }
1254d9b500d3SAart Bik 
1255d9b500d3SAart Bik private:
1256b8880f5fSAart Bik   enum class PrintConversion {
125730e6033bSNicolas Vasilache     // clang-format off
1258b8880f5fSAart Bik     None,
1259b8880f5fSAart Bik     ZeroExt64,
1260b8880f5fSAart Bik     SignExt64
126130e6033bSNicolas Vasilache     // clang-format on
1262b8880f5fSAart Bik   };
1263b8880f5fSAart Bik 
1264d9b500d3SAart Bik   void emitRanks(ConversionPatternRewriter &rewriter, Operation *op,
1265e62a6956SRiver Riddle                  Value value, VectorType vectorType, Operation *printer,
1266b8880f5fSAart Bik                  int64_t rank, PrintConversion conversion) const {
1267d9b500d3SAart Bik     Location loc = op->getLoc();
1268d9b500d3SAart Bik     if (rank == 0) {
1269b8880f5fSAart Bik       switch (conversion) {
1270b8880f5fSAart Bik       case PrintConversion::ZeroExt64:
1271b8880f5fSAart Bik         value = rewriter.create<ZeroExtendIOp>(
12722230bf99SAlex Zinenko             loc, value, IntegerType::get(rewriter.getContext(), 64));
1273b8880f5fSAart Bik         break;
1274b8880f5fSAart Bik       case PrintConversion::SignExt64:
1275b8880f5fSAart Bik         value = rewriter.create<SignExtendIOp>(
12762230bf99SAlex Zinenko             loc, value, IntegerType::get(rewriter.getContext(), 64));
1277b8880f5fSAart Bik         break;
1278b8880f5fSAart Bik       case PrintConversion::None:
1279b8880f5fSAart Bik         break;
1280c9eeeb38Saartbik       }
1281d9b500d3SAart Bik       emitCall(rewriter, loc, printer, value);
1282d9b500d3SAart Bik       return;
1283d9b500d3SAart Bik     }
1284d9b500d3SAart Bik 
1285e332c22cSNicolas Vasilache     emitCall(rewriter, loc,
1286e332c22cSNicolas Vasilache              LLVM::lookupOrCreatePrintOpenFn(op->getParentOfType<ModuleOp>()));
1287e332c22cSNicolas Vasilache     Operation *printComma =
1288e332c22cSNicolas Vasilache         LLVM::lookupOrCreatePrintCommaFn(op->getParentOfType<ModuleOp>());
1289d9b500d3SAart Bik     int64_t dim = vectorType.getDimSize(0);
1290d9b500d3SAart Bik     for (int64_t d = 0; d < dim; ++d) {
1291d9b500d3SAart Bik       auto reducedType =
1292d9b500d3SAart Bik           rank > 1 ? reducedVectorTypeFront(vectorType) : nullptr;
1293dcec2ca5SChristian Sigg       auto llvmType = typeConverter->convertType(
1294d9b500d3SAart Bik           rank > 1 ? reducedType : vectorType.getElementType());
1295dcec2ca5SChristian Sigg       Value nestedVal = extractOne(rewriter, *getTypeConverter(), loc, value,
1296dcec2ca5SChristian Sigg                                    llvmType, rank, d);
1297b8880f5fSAart Bik       emitRanks(rewriter, op, nestedVal, reducedType, printer, rank - 1,
1298b8880f5fSAart Bik                 conversion);
1299d9b500d3SAart Bik       if (d != dim - 1)
1300d9b500d3SAart Bik         emitCall(rewriter, loc, printComma);
1301d9b500d3SAart Bik     }
1302e332c22cSNicolas Vasilache     emitCall(rewriter, loc,
1303e332c22cSNicolas Vasilache              LLVM::lookupOrCreatePrintCloseFn(op->getParentOfType<ModuleOp>()));
1304d9b500d3SAart Bik   }
1305d9b500d3SAart Bik 
1306d9b500d3SAart Bik   // Helper to emit a call.
1307d9b500d3SAart Bik   static void emitCall(ConversionPatternRewriter &rewriter, Location loc,
1308d9b500d3SAart Bik                        Operation *ref, ValueRange params = ValueRange()) {
130908e4f078SRahul Joshi     rewriter.create<LLVM::CallOp>(loc, TypeRange(),
1310d9b500d3SAart Bik                                   rewriter.getSymbolRefAttr(ref), params);
1311d9b500d3SAart Bik   }
1312d9b500d3SAart Bik };
1313d9b500d3SAart Bik 
1314334a4159SReid Tatge /// Progressive lowering of ExtractStridedSliceOp to either:
1315c3c95b9cSaartbik ///   1. express single offset extract as a direct shuffle.
1316c3c95b9cSaartbik ///   2. extract + lower rank strided_slice + insert for the n-D case.
1317c3c95b9cSaartbik class VectorExtractStridedSliceOpConversion
1318334a4159SReid Tatge     : public OpRewritePattern<ExtractStridedSliceOp> {
131965678d93SNicolas Vasilache public:
1320b99bd771SRiver Riddle   VectorExtractStridedSliceOpConversion(MLIRContext *ctx)
1321b99bd771SRiver Riddle       : OpRewritePattern<ExtractStridedSliceOp>(ctx) {
1322b99bd771SRiver Riddle     // This pattern creates recursive ExtractStridedSliceOp, but the recursion
1323b99bd771SRiver Riddle     // is bounded as the rank is strictly decreasing.
1324b99bd771SRiver Riddle     setHasBoundedRewriteRecursion();
1325b99bd771SRiver Riddle   }
132665678d93SNicolas Vasilache 
1327334a4159SReid Tatge   LogicalResult matchAndRewrite(ExtractStridedSliceOp op,
132865678d93SNicolas Vasilache                                 PatternRewriter &rewriter) const override {
13299eb3e564SChris Lattner     auto dstType = op.getType();
133065678d93SNicolas Vasilache 
133165678d93SNicolas Vasilache     assert(!op.offsets().getValue().empty() && "Unexpected empty offsets");
133265678d93SNicolas Vasilache 
133365678d93SNicolas Vasilache     int64_t offset =
133465678d93SNicolas Vasilache         op.offsets().getValue().front().cast<IntegerAttr>().getInt();
133565678d93SNicolas Vasilache     int64_t size = op.sizes().getValue().front().cast<IntegerAttr>().getInt();
133665678d93SNicolas Vasilache     int64_t stride =
133765678d93SNicolas Vasilache         op.strides().getValue().front().cast<IntegerAttr>().getInt();
133865678d93SNicolas Vasilache 
133965678d93SNicolas Vasilache     auto loc = op.getLoc();
134065678d93SNicolas Vasilache     auto elemType = dstType.getElementType();
134135b68527SLei Zhang     assert(elemType.isSignlessIntOrIndexOrFloat());
1342c3c95b9cSaartbik 
1343c3c95b9cSaartbik     // Single offset can be more efficiently shuffled.
1344c3c95b9cSaartbik     if (op.offsets().getValue().size() == 1) {
1345c3c95b9cSaartbik       SmallVector<int64_t, 4> offsets;
1346c3c95b9cSaartbik       offsets.reserve(size);
1347c3c95b9cSaartbik       for (int64_t off = offset, e = offset + size * stride; off < e;
1348c3c95b9cSaartbik            off += stride)
1349c3c95b9cSaartbik         offsets.push_back(off);
1350c3c95b9cSaartbik       rewriter.replaceOpWithNewOp<ShuffleOp>(op, dstType, op.vector(),
1351c3c95b9cSaartbik                                              op.vector(),
1352c3c95b9cSaartbik                                              rewriter.getI64ArrayAttr(offsets));
1353c3c95b9cSaartbik       return success();
1354c3c95b9cSaartbik     }
1355c3c95b9cSaartbik 
1356c3c95b9cSaartbik     // Extract/insert on a lower ranked extract strided slice op.
135765678d93SNicolas Vasilache     Value zero = rewriter.create<ConstantOp>(loc, elemType,
135865678d93SNicolas Vasilache                                              rewriter.getZeroAttr(elemType));
135965678d93SNicolas Vasilache     Value res = rewriter.create<SplatOp>(loc, dstType, zero);
136065678d93SNicolas Vasilache     for (int64_t off = offset, e = offset + size * stride, idx = 0; off < e;
136165678d93SNicolas Vasilache          off += stride, ++idx) {
1362c3c95b9cSaartbik       Value one = extractOne(rewriter, loc, op.vector(), off);
1363c3c95b9cSaartbik       Value extracted = rewriter.create<ExtractStridedSliceOp>(
1364c3c95b9cSaartbik           loc, one, getI64SubArray(op.offsets(), /* dropFront=*/1),
136565678d93SNicolas Vasilache           getI64SubArray(op.sizes(), /* dropFront=*/1),
136665678d93SNicolas Vasilache           getI64SubArray(op.strides(), /* dropFront=*/1));
136765678d93SNicolas Vasilache       res = insertOne(rewriter, loc, extracted, res, idx);
136865678d93SNicolas Vasilache     }
1369c3c95b9cSaartbik     rewriter.replaceOp(op, res);
13703145427dSRiver Riddle     return success();
137165678d93SNicolas Vasilache   }
137265678d93SNicolas Vasilache };
137365678d93SNicolas Vasilache 
1374df186507SBenjamin Kramer } // namespace
1375df186507SBenjamin Kramer 
13765c0c51a9SNicolas Vasilache /// Populate the given list with patterns that convert from Vector to LLVM.
13775c0c51a9SNicolas Vasilache void mlir::populateVectorToLLVMConversionPatterns(
1378dc4e913bSChris Lattner     LLVMTypeConverter &converter, RewritePatternSet &patterns,
137965a3f289SMatthias Springer     bool reassociateFPReductions) {
138065678d93SNicolas Vasilache   MLIRContext *ctx = converter.getDialect()->getContext();
1381dc4e913bSChris Lattner   patterns.add<VectorFMAOpNDRewritePattern,
1382681f929fSNicolas Vasilache                VectorInsertStridedSliceOpDifferentRankRewritePattern,
13832d515e49SNicolas Vasilache                VectorInsertStridedSliceOpSameRankRewritePattern,
1384c3c95b9cSaartbik                VectorExtractStridedSliceOpConversion>(ctx);
1385dc4e913bSChris Lattner   patterns.add<VectorReductionOpConversion>(converter, reassociateFPReductions);
13868345b86dSNicolas Vasilache   patterns
1387dc4e913bSChris Lattner       .add<VectorBitCastOpConversion, VectorShuffleOpConversion,
1388dc4e913bSChris Lattner            VectorExtractElementOpConversion, VectorExtractOpConversion,
1389dc4e913bSChris Lattner            VectorFMAOp1DConversion, VectorInsertElementOpConversion,
1390dc4e913bSChris Lattner            VectorInsertOpConversion, VectorPrintOpConversion,
139119dbb230Saartbik            VectorTypeCastOpConversion,
1392dc4e913bSChris Lattner            VectorLoadStoreConversion<vector::LoadOp, vector::LoadOpAdaptor>,
1393ee66e43aSDiego Caballero            VectorLoadStoreConversion<vector::MaskedLoadOp,
1394ee66e43aSDiego Caballero                                      vector::MaskedLoadOpAdaptor>,
1395dc4e913bSChris Lattner            VectorLoadStoreConversion<vector::StoreOp, vector::StoreOpAdaptor>,
1396ee66e43aSDiego Caballero            VectorLoadStoreConversion<vector::MaskedStoreOp,
1397ee66e43aSDiego Caballero                                      vector::MaskedStoreOpAdaptor>,
1398dc4e913bSChris Lattner            VectorGatherOpConversion, VectorScatterOpConversion,
139965a3f289SMatthias Springer            VectorExpandLoadOpConversion, VectorCompressStoreOpConversion,
140065a3f289SMatthias Springer            VectorTransferConversion<TransferReadOp>,
140165a3f289SMatthias Springer            VectorTransferConversion<TransferWriteOp>>(converter);
14025c0c51a9SNicolas Vasilache }
14035c0c51a9SNicolas Vasilache 
140463b683a8SNicolas Vasilache void mlir::populateVectorToLLVMMatrixConversionPatterns(
1405dc4e913bSChris Lattner     LLVMTypeConverter &converter, RewritePatternSet &patterns) {
1406dc4e913bSChris Lattner   patterns.add<VectorMatmulOpConversion>(converter);
1407dc4e913bSChris Lattner   patterns.add<VectorFlatTransposeOpConversion>(converter);
140863b683a8SNicolas Vasilache }
1409