10f241638SMatthias Springer //===- VectorToSCF.cpp - Convert vector to SCF dialect ----------*- C++ -*-===// 24ead2cf7SAlex Zinenko // 34ead2cf7SAlex Zinenko // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 44ead2cf7SAlex Zinenko // See https://llvm.org/LICENSE.txt for license information. 54ead2cf7SAlex Zinenko // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 64ead2cf7SAlex Zinenko // 74ead2cf7SAlex Zinenko //===----------------------------------------------------------------------===// 84ead2cf7SAlex Zinenko // 90f241638SMatthias Springer // This file implements lowering of vector transfer operations to SCF. 104ead2cf7SAlex Zinenko // 114ead2cf7SAlex Zinenko //===----------------------------------------------------------------------===// 124ead2cf7SAlex Zinenko 134ead2cf7SAlex Zinenko #include <type_traits> 144ead2cf7SAlex Zinenko 154ead2cf7SAlex Zinenko #include "mlir/Conversion/VectorToSCF/VectorToSCF.h" 165f9e0466SNicolas Vasilache 175f9e0466SNicolas Vasilache #include "../PassDetail.h" 186825bfe2SNicolas Vasilache #include "mlir/Dialect/Affine/IR/AffineOps.h" 196825bfe2SNicolas Vasilache #include "mlir/Dialect/Affine/Utils.h" 206825bfe2SNicolas Vasilache #include "mlir/Dialect/SCF/SCF.h" 214ead2cf7SAlex Zinenko #include "mlir/Dialect/Vector/VectorOps.h" 227c3c5b11SNicolas Vasilache #include "mlir/Dialect/Vector/VectorUtils.h" 234ead2cf7SAlex Zinenko #include "mlir/IR/Builders.h" 246825bfe2SNicolas Vasilache #include "mlir/IR/ImplicitLocOpBuilder.h" 255f9e0466SNicolas Vasilache #include "mlir/Pass/Pass.h" 26b6eb26fdSRiver Riddle #include "mlir/Transforms/GreedyPatternRewriteDriver.h" 275f9e0466SNicolas Vasilache #include "mlir/Transforms/Passes.h" 284ead2cf7SAlex Zinenko 294ead2cf7SAlex Zinenko using namespace mlir; 304ead2cf7SAlex Zinenko using vector::TransferReadOp; 314ead2cf7SAlex Zinenko using vector::TransferWriteOp; 324ead2cf7SAlex Zinenko 33350dadaaSBenjamin Kramer namespace { 340f241638SMatthias Springer 350f241638SMatthias Springer /// Attribute name used for labeling transfer ops during progressive lowering. 360f241638SMatthias Springer static const char kPassLabel[] = "__vector_to_scf_lowering__"; 370f241638SMatthias Springer 382ca887deSMatthias Springer /// Patterns that inherit from this struct have access to 392ca887deSMatthias Springer /// VectorTransferToSCFOptions. 402ca887deSMatthias Springer template <typename OpTy> 412ca887deSMatthias Springer struct VectorToSCFPattern : public OpRewritePattern<OpTy> { 422ca887deSMatthias Springer explicit VectorToSCFPattern(MLIRContext *context, 432ca887deSMatthias Springer VectorTransferToSCFOptions opt) 442ca887deSMatthias Springer : OpRewritePattern<OpTy>(context), options(opt) {} 452ca887deSMatthias Springer 462ca887deSMatthias Springer VectorTransferToSCFOptions options; 472ca887deSMatthias Springer }; 480f241638SMatthias Springer 490f241638SMatthias Springer /// Given a vector transfer op, calculate which dimension of the `source` 500f241638SMatthias Springer /// memref should be unpacked in the next application of TransferOpConversion. 510f241638SMatthias Springer /// A return value of None indicates a broadcast. 520f241638SMatthias Springer template <typename OpTy> 530f241638SMatthias Springer static Optional<int64_t> unpackedDim(OpTy xferOp) { 540f241638SMatthias Springer auto map = xferOp.permutation_map(); 550f241638SMatthias Springer if (auto expr = map.getResult(0).template dyn_cast<AffineDimExpr>()) { 560f241638SMatthias Springer return expr.getPosition(); 577c3c5b11SNicolas Vasilache } 580f241638SMatthias Springer assert(xferOp.isBroadcastDim(0) && 590f241638SMatthias Springer "Expected AffineDimExpr or AffineConstantExpr"); 600f241638SMatthias Springer return None; 610f241638SMatthias Springer } 620f241638SMatthias Springer 630f241638SMatthias Springer /// Compute the permutation map for the new (N-1)-D vector transfer op. This 640f241638SMatthias Springer /// map is identical to the current permutation map, but the first result is 650f241638SMatthias Springer /// omitted. 660f241638SMatthias Springer template <typename OpTy> 676825bfe2SNicolas Vasilache static AffineMap unpackedPermutationMap(OpBuilder &b, OpTy xferOp) { 680f241638SMatthias Springer auto map = xferOp.permutation_map(); 690f241638SMatthias Springer return AffineMap::get(map.getNumDims(), 0, map.getResults().drop_front(), 706825bfe2SNicolas Vasilache b.getContext()); 710f241638SMatthias Springer } 720f241638SMatthias Springer 730f241638SMatthias Springer /// Calculate the indices for the new vector transfer op. 740f241638SMatthias Springer /// 750f241638SMatthias Springer /// E.g.: transfer_read %A[%a, %b, %c, %d] ... : vector<5x4x3xf32> ... 760f241638SMatthias Springer /// --> transfer_read %A[%a, %b + iv, %c, %d] ... vector<4x3f32> 770f241638SMatthias Springer /// ^^^^^^ 780f241638SMatthias Springer /// `iv` is the iteration variable of the (new) surrounding loop. 790f241638SMatthias Springer template <typename OpTy> 806825bfe2SNicolas Vasilache static void getXferIndices(OpBuilder &b, OpTy xferOp, Value iv, 810f241638SMatthias Springer SmallVector<Value, 8> &indices) { 820f241638SMatthias Springer typename OpTy::Adaptor adaptor(xferOp); 830f241638SMatthias Springer // Corresponding memref dim of the vector dim that is unpacked. 840f241638SMatthias Springer auto dim = unpackedDim(xferOp); 850f241638SMatthias Springer auto prevIndices = adaptor.indices(); 860f241638SMatthias Springer indices.append(prevIndices.begin(), prevIndices.end()); 870f241638SMatthias Springer 886825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 890f241638SMatthias Springer bool isBroadcast = !dim.hasValue(); 900f241638SMatthias Springer if (!isBroadcast) { 916825bfe2SNicolas Vasilache AffineExpr d0, d1; 926825bfe2SNicolas Vasilache bindDims(xferOp.getContext(), d0, d1); 936825bfe2SNicolas Vasilache Value offset = adaptor.indices()[dim.getValue()]; 946825bfe2SNicolas Vasilache indices[dim.getValue()] = 956825bfe2SNicolas Vasilache makeComposedAffineApply(b, loc, d0 + d1, {offset, iv}); 960f241638SMatthias Springer } 970f241638SMatthias Springer } 980f241638SMatthias Springer 996825bfe2SNicolas Vasilache static void maybeYieldValue(OpBuilder &b, Location loc, bool hasRetVal, 1000f241638SMatthias Springer Value value) { 1010f241638SMatthias Springer if (hasRetVal) { 102558e7401SMatthias Springer assert(value && "Expected non-empty value"); 1036825bfe2SNicolas Vasilache b.create<scf::YieldOp>(loc, value); 1040f241638SMatthias Springer } else { 1056825bfe2SNicolas Vasilache b.create<scf::YieldOp>(loc); 1060f241638SMatthias Springer } 1070f241638SMatthias Springer } 1080f241638SMatthias Springer 1090f241638SMatthias Springer /// Generates a boolean Value that is true if the iv-th bit in xferOp's mask 1100f241638SMatthias Springer /// is set to true. No such check is generated under following circumstances: 1110f241638SMatthias Springer /// * xferOp does not have a mask. 1120f241638SMatthias Springer /// * xferOp's mask is not 1D. (In case of (N>1)-D, a subvector of the mask is 1130f241638SMatthias Springer /// computed and attached to the new transfer op in the pattern.) 1140f241638SMatthias Springer /// * The to-be-unpacked dim of xferOp is a broadcast. 1150f241638SMatthias Springer template <typename OpTy> 1166825bfe2SNicolas Vasilache static Value generateMaskCheck(OpBuilder &b, OpTy xferOp, Value iv) { 1170f241638SMatthias Springer if (!xferOp.mask()) 1180f241638SMatthias Springer return Value(); 1190f241638SMatthias Springer if (xferOp.getMaskType().getRank() != 1) 1200f241638SMatthias Springer return Value(); 1210f241638SMatthias Springer if (xferOp.isBroadcastDim(0)) 1220f241638SMatthias Springer return Value(); 1230f241638SMatthias Springer 1246825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 1256825bfe2SNicolas Vasilache Value ivI32 = 1266825bfe2SNicolas Vasilache b.create<IndexCastOp>(loc, IntegerType::get(b.getContext(), 32), iv); 1276825bfe2SNicolas Vasilache return b.create<vector::ExtractElementOp>(loc, xferOp.mask(), ivI32); 1280f241638SMatthias Springer } 1290f241638SMatthias Springer 1300f241638SMatthias Springer /// Helper function TransferOpConversion and TransferOp1dConversion. 1310f241638SMatthias Springer /// Generate an in-bounds check if the transfer op may go out-of-bounds on the 1320f241638SMatthias Springer /// specified dimension `dim` with the loop iteration variable `iv`. 1330f241638SMatthias Springer /// E.g., when unpacking dimension 0 from: 1340f241638SMatthias Springer /// ``` 1350f241638SMatthias Springer /// %vec = vector.transfer_read %A[%a, %b] %cst 1360f241638SMatthias Springer /// : vector<5x4xf32>, memref<?x?xf32> 1370f241638SMatthias Springer /// ``` 1380f241638SMatthias Springer /// An if check similar to this will be generated inside the loop: 1390f241638SMatthias Springer /// ``` 1400f241638SMatthias Springer /// %d = memref.dim %A, %c0 : memref<?x?xf32> 1410f241638SMatthias Springer /// if (%a + iv < %d) { 1420f241638SMatthias Springer /// (in-bounds case) 1430f241638SMatthias Springer /// } else { 1440f241638SMatthias Springer /// (out-of-bounds case) 1450f241638SMatthias Springer /// } 1460f241638SMatthias Springer /// ``` 1470f241638SMatthias Springer /// 1480f241638SMatthias Springer /// If the transfer is 1D and has a mask, this function generates a more complex 1490f241638SMatthias Springer /// check also accounts for potentially masked out elements. 1500f241638SMatthias Springer /// 1510f241638SMatthias Springer /// This function variant returns the value returned by `inBoundsCase` or 1520f241638SMatthias Springer /// `outOfBoundsCase`. The MLIR type of the return value must be specified in 1530f241638SMatthias Springer /// `resultTypes`. 1540f241638SMatthias Springer template <typename OpTy> 1550f241638SMatthias Springer static Value generateInBoundsCheck( 1566825bfe2SNicolas Vasilache OpBuilder &b, OpTy xferOp, Value iv, Optional<int64_t> dim, 1570f241638SMatthias Springer TypeRange resultTypes, 1580f241638SMatthias Springer function_ref<Value(OpBuilder &, Location)> inBoundsCase, 1590f241638SMatthias Springer function_ref<Value(OpBuilder &, Location)> outOfBoundsCase = nullptr) { 1600f241638SMatthias Springer bool hasRetVal = !resultTypes.empty(); 1610f241638SMatthias Springer Value cond; // Condition to be built... 1620f241638SMatthias Springer 1630f241638SMatthias Springer // Condition check 1: Access in-bounds? 1640f241638SMatthias Springer bool isBroadcast = !dim.hasValue(); // No in-bounds check for broadcasts. 1656825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 1666825bfe2SNicolas Vasilache ImplicitLocOpBuilder lb(xferOp.getLoc(), b); 1670f241638SMatthias Springer if (!xferOp.isDimInBounds(0) && !isBroadcast) { 1686825bfe2SNicolas Vasilache Value memrefDim = lb.create<memref::DimOp>(xferOp.source(), *dim); 1696825bfe2SNicolas Vasilache AffineExpr d0, d1; 1706825bfe2SNicolas Vasilache bindDims(xferOp.getContext(), d0, d1); 1716825bfe2SNicolas Vasilache Value base = xferOp.indices()[dim.getValue()]; 1726825bfe2SNicolas Vasilache Value memrefIdx = makeComposedAffineApply(b, loc, d0 + d1, {base, iv}); 1736825bfe2SNicolas Vasilache cond = lb.create<CmpIOp>(CmpIPredicate::sgt, memrefDim, memrefIdx); 1740f241638SMatthias Springer } 1750f241638SMatthias Springer 1760f241638SMatthias Springer // Condition check 2: Masked in? 1776825bfe2SNicolas Vasilache if (auto maskCond = generateMaskCheck(b, xferOp, iv)) { 1786825bfe2SNicolas Vasilache if (cond) 1796825bfe2SNicolas Vasilache cond = lb.create<AndOp>(cond, maskCond); 1806825bfe2SNicolas Vasilache else 1810f241638SMatthias Springer cond = maskCond; 1820f241638SMatthias Springer } 1830f241638SMatthias Springer 1840f241638SMatthias Springer // If the condition is non-empty, generate an SCF::IfOp. 1850f241638SMatthias Springer if (cond) { 1866825bfe2SNicolas Vasilache auto check = lb.create<scf::IfOp>( 1876825bfe2SNicolas Vasilache resultTypes, cond, 1880f241638SMatthias Springer /*thenBuilder=*/ 1896825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc) { 1906825bfe2SNicolas Vasilache maybeYieldValue(b, loc, hasRetVal, inBoundsCase(b, loc)); 191cadb7ccfSAlex Zinenko }, 1920f241638SMatthias Springer /*elseBuilder=*/ 1936825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc) { 1940f241638SMatthias Springer if (outOfBoundsCase) { 1956825bfe2SNicolas Vasilache maybeYieldValue(b, loc, hasRetVal, outOfBoundsCase(b, loc)); 1967c3c5b11SNicolas Vasilache } else { 1976825bfe2SNicolas Vasilache b.create<scf::YieldOp>(loc); 1987c3c5b11SNicolas Vasilache } 1997c3c5b11SNicolas Vasilache }); 2007c3c5b11SNicolas Vasilache 2010f241638SMatthias Springer return hasRetVal ? check.getResult(0) : Value(); 2024ead2cf7SAlex Zinenko } 2034ead2cf7SAlex Zinenko 2040f241638SMatthias Springer // Condition is empty, no need for an SCF::IfOp. 2056825bfe2SNicolas Vasilache return inBoundsCase(b, loc); 2060f241638SMatthias Springer } 2070f241638SMatthias Springer 2080f241638SMatthias Springer /// In this function variant, `inBoundsCase` and `outOfBoundsCase` do not have 2090f241638SMatthias Springer /// a return value. Consequently, this function does not have a return value. 2100f241638SMatthias Springer template <typename OpTy> 2110f241638SMatthias Springer static void generateInBoundsCheck( 2126825bfe2SNicolas Vasilache OpBuilder &b, OpTy xferOp, Value iv, Optional<int64_t> dim, 2130f241638SMatthias Springer function_ref<void(OpBuilder &, Location)> inBoundsCase, 2140f241638SMatthias Springer function_ref<void(OpBuilder &, Location)> outOfBoundsCase = nullptr) { 2150f241638SMatthias Springer generateInBoundsCheck( 2166825bfe2SNicolas Vasilache b, xferOp, iv, dim, /*resultTypes=*/TypeRange(), 2170f241638SMatthias Springer /*inBoundsCase=*/ 2186825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc) { 2196825bfe2SNicolas Vasilache inBoundsCase(b, loc); 2200f241638SMatthias Springer return Value(); 2210f241638SMatthias Springer }, 2220f241638SMatthias Springer /*outOfBoundsCase=*/ 2236825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc) { 2240f241638SMatthias Springer if (outOfBoundsCase) 2256825bfe2SNicolas Vasilache outOfBoundsCase(b, loc); 2260f241638SMatthias Springer return Value(); 2270f241638SMatthias Springer }); 2280f241638SMatthias Springer } 2290f241638SMatthias Springer 2300f241638SMatthias Springer /// Given an ArrayAttr, return a copy where the first element is dropped. 2316825bfe2SNicolas Vasilache static ArrayAttr dropFirstElem(OpBuilder &b, ArrayAttr attr) { 2320f241638SMatthias Springer if (!attr) 2330f241638SMatthias Springer return attr; 2346825bfe2SNicolas Vasilache return ArrayAttr::get(b.getContext(), attr.getValue().drop_front()); 2350f241638SMatthias Springer } 2360f241638SMatthias Springer 2370f241638SMatthias Springer /// Add the pass label to a vector transfer op if its rank is not the target 2380f241638SMatthias Springer /// rank. 2390f241638SMatthias Springer template <typename OpTy> 2406825bfe2SNicolas Vasilache static void maybeApplyPassLabel(OpBuilder &b, OpTy newXferOp, 2412ca887deSMatthias Springer unsigned targetRank) { 2422ca887deSMatthias Springer if (newXferOp.getVectorType().getRank() > targetRank) 2436825bfe2SNicolas Vasilache newXferOp->setAttr(kPassLabel, b.getUnitAttr()); 2440f241638SMatthias Springer } 2450f241638SMatthias Springer 246558e7401SMatthias Springer /// Return true if this transfer op operates on a source tensor. 247558e7401SMatthias Springer template <typename OpTy> 248558e7401SMatthias Springer static bool isTensorOp(OpTy xferOp) { 249558e7401SMatthias Springer if (xferOp.getShapedType().template isa<RankedTensorType>()) { 250558e7401SMatthias Springer if (xferOp.getOperationName().equals(TransferWriteOp::getOperationName())) { 251558e7401SMatthias Springer // TransferWriteOps on tensors have a result. 252558e7401SMatthias Springer assert(xferOp->getNumResults() > 0); 253558e7401SMatthias Springer } 254558e7401SMatthias Springer return true; 255558e7401SMatthias Springer } 256558e7401SMatthias Springer return false; 257558e7401SMatthias Springer } 258558e7401SMatthias Springer 259a088bed4SMatthias Springer namespace lowering_n_d { 260a088bed4SMatthias Springer 261a088bed4SMatthias Springer /// Helper data structure for data and mask buffers. 262a088bed4SMatthias Springer struct BufferAllocs { 263a088bed4SMatthias Springer Value dataBuffer; 264a088bed4SMatthias Springer Value maskBuffer; 265a088bed4SMatthias Springer }; 266a088bed4SMatthias Springer 267a088bed4SMatthias Springer /// Allocate temporary buffers for data (vector) and mask (if present). 268a088bed4SMatthias Springer /// TODO: Parallelism and threadlocal considerations. 269a088bed4SMatthias Springer template <typename OpTy> 2706825bfe2SNicolas Vasilache static BufferAllocs allocBuffers(OpBuilder &b, OpTy xferOp) { 2716825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 272a088bed4SMatthias Springer OpBuilder::InsertionGuard guard(b); 273a088bed4SMatthias Springer Operation *scope = 274a088bed4SMatthias Springer xferOp->template getParentWithTrait<OpTrait::AutomaticAllocationScope>(); 275a088bed4SMatthias Springer assert(scope && "Expected op to be inside automatic allocation scope"); 276a088bed4SMatthias Springer b.setInsertionPointToStart(&scope->getRegion(0).front()); 277a088bed4SMatthias Springer 278a088bed4SMatthias Springer BufferAllocs result; 279a088bed4SMatthias Springer auto bufferType = MemRefType::get({}, xferOp.getVectorType()); 2806825bfe2SNicolas Vasilache result.dataBuffer = b.create<memref::AllocaOp>(loc, bufferType); 281a088bed4SMatthias Springer 282a088bed4SMatthias Springer if (xferOp.mask()) { 283a088bed4SMatthias Springer auto maskType = MemRefType::get({}, xferOp.mask().getType()); 2846825bfe2SNicolas Vasilache auto maskBuffer = b.create<memref::AllocaOp>(loc, maskType); 285fb7ec1f1SMatthias Springer b.setInsertionPoint(xferOp); 2866825bfe2SNicolas Vasilache b.create<memref::StoreOp>(loc, xferOp.mask(), maskBuffer); 2876825bfe2SNicolas Vasilache result.maskBuffer = b.create<memref::LoadOp>(loc, maskBuffer); 288a088bed4SMatthias Springer } 289a088bed4SMatthias Springer 290a088bed4SMatthias Springer return result; 291a088bed4SMatthias Springer } 292a088bed4SMatthias Springer 293a088bed4SMatthias Springer /// Given a MemRefType with VectorType element type, unpack one dimension from 294a088bed4SMatthias Springer /// the VectorType into the MemRefType. 295a088bed4SMatthias Springer /// 296a088bed4SMatthias Springer /// E.g.: memref<9xvector<5x6xf32>> --> memref<9x5xvector<6xf32>> 297a088bed4SMatthias Springer static MemRefType unpackOneDim(MemRefType type) { 298a088bed4SMatthias Springer auto vectorType = type.getElementType().dyn_cast<VectorType>(); 299a088bed4SMatthias Springer auto memrefShape = type.getShape(); 300a088bed4SMatthias Springer SmallVector<int64_t, 8> newMemrefShape; 301a088bed4SMatthias Springer newMemrefShape.append(memrefShape.begin(), memrefShape.end()); 302a088bed4SMatthias Springer newMemrefShape.push_back(vectorType.getDimSize(0)); 303a088bed4SMatthias Springer return MemRefType::get(newMemrefShape, 304a088bed4SMatthias Springer VectorType::get(vectorType.getShape().drop_front(), 305a088bed4SMatthias Springer vectorType.getElementType())); 306a088bed4SMatthias Springer } 307a088bed4SMatthias Springer 3080f241638SMatthias Springer /// Given a transfer op, find the memref from which the mask is loaded. This 3090f241638SMatthias Springer /// is similar to Strategy<TransferWriteOp>::getBuffer. 3100f241638SMatthias Springer template <typename OpTy> 3110f241638SMatthias Springer static Value getMaskBuffer(OpTy xferOp) { 3120f241638SMatthias Springer assert(xferOp.mask() && "Expected that transfer op has mask"); 3130f241638SMatthias Springer auto loadOp = xferOp.mask().template getDefiningOp<memref::LoadOp>(); 3140f241638SMatthias Springer assert(loadOp && "Expected transfer op mask produced by LoadOp"); 3150f241638SMatthias Springer return loadOp.getMemRef(); 3160f241638SMatthias Springer } 3170f241638SMatthias Springer 3180f241638SMatthias Springer /// Codegen strategy, depending on the operation. 3190f241638SMatthias Springer template <typename OpTy> 3200f241638SMatthias Springer struct Strategy; 3210f241638SMatthias Springer 3220f241638SMatthias Springer /// Code strategy for vector TransferReadOp. 3234ead2cf7SAlex Zinenko template <> 3240f241638SMatthias Springer struct Strategy<TransferReadOp> { 3250f241638SMatthias Springer /// Find the StoreOp that is used for writing the current TransferReadOp's 3260f241638SMatthias Springer /// result to the temporary buffer allocation. 3270f241638SMatthias Springer static memref::StoreOp getStoreOp(TransferReadOp xferOp) { 3280f241638SMatthias Springer assert(xferOp->hasOneUse() && "Expected exactly one use of TransferReadOp"); 3290f241638SMatthias Springer auto storeOp = dyn_cast<memref::StoreOp>((*xferOp->use_begin()).getOwner()); 3300f241638SMatthias Springer assert(storeOp && "Expected TransferReadOp result used by StoreOp"); 3310f241638SMatthias Springer return storeOp; 3327c3c5b11SNicolas Vasilache } 3334ead2cf7SAlex Zinenko 3340f241638SMatthias Springer /// Find the temporary buffer allocation. All labeled TransferReadOps are 3350f241638SMatthias Springer /// used like this, where %buf is either the buffer allocation or a type cast 3360f241638SMatthias Springer /// of the buffer allocation: 3370f241638SMatthias Springer /// ``` 3380f241638SMatthias Springer /// %vec = vector.transfer_read ... { __vector_to_scf_lowering__ } ... 3390f241638SMatthias Springer /// memref.store %vec, %buf[...] ... 3400f241638SMatthias Springer /// ``` 3410f241638SMatthias Springer static Value getBuffer(TransferReadOp xferOp) { 3420f241638SMatthias Springer return getStoreOp(xferOp).getMemRef(); 3431870e787SNicolas Vasilache } 3440f241638SMatthias Springer 3450f241638SMatthias Springer /// Retrieve the indices of the current StoreOp that stores into the buffer. 3460f241638SMatthias Springer static void getBufferIndices(TransferReadOp xferOp, 3470f241638SMatthias Springer SmallVector<Value, 8> &indices) { 3480f241638SMatthias Springer auto storeOp = getStoreOp(xferOp); 3490f241638SMatthias Springer auto prevIndices = memref::StoreOpAdaptor(storeOp).indices(); 3500f241638SMatthias Springer indices.append(prevIndices.begin(), prevIndices.end()); 3510f241638SMatthias Springer } 3520f241638SMatthias Springer 3530f241638SMatthias Springer /// Rewrite the TransferReadOp, assuming that there are no out-of-bounds 3540f241638SMatthias Springer /// accesses on the to-be-unpacked dimension. 3550f241638SMatthias Springer /// 3560f241638SMatthias Springer /// 1. Generate a new (N-1)-d TransferReadOp using the loop iteration 3570f241638SMatthias Springer /// variable `iv`. 3580f241638SMatthias Springer /// 2. Store the result into the (already `vector.type_cast`ed) buffer. 3590f241638SMatthias Springer /// 3600f241638SMatthias Springer /// E.g.: 3610f241638SMatthias Springer /// ``` 3620f241638SMatthias Springer /// %vec = vector.transfer_read %A[%a+%i, %b, %c], %cst 3630f241638SMatthias Springer /// : memref<?x?x?xf32>, vector<4x3xf32> 3640f241638SMatthias Springer /// memref.store %vec, %buf[%i] : memref<5xvector<4x3xf32>> 3650f241638SMatthias Springer /// ``` 3660f241638SMatthias Springer /// Is rewritten to: 3670f241638SMatthias Springer /// ``` 3680f241638SMatthias Springer /// %casted = vector.type_cast %buf 3690f241638SMatthias Springer /// : memref<5xvector<4x3xf32>> to memref<5x4xvector<3xf32>> 3700f241638SMatthias Springer /// for %j = 0 to 4 { 3710f241638SMatthias Springer /// %vec = vector.transfer_read %A[%a+%i, %b+%j, %c], %cst 3720f241638SMatthias Springer /// : memref<?x?x?xf32>, vector<3xf32> 3730f241638SMatthias Springer /// memref.store %vec, %casted[%i, %j] : memref<5x4xvector<3xf32>> 3740f241638SMatthias Springer /// } 3750f241638SMatthias Springer /// ``` 3760f241638SMatthias Springer /// 3770f241638SMatthias Springer /// Note: The loop and type cast are generated in TransferOpConversion. 3780f241638SMatthias Springer /// The original TransferReadOp and store op are deleted in `cleanup`. 3790f241638SMatthias Springer /// Note: The `mask` operand is set in TransferOpConversion. 3806825bfe2SNicolas Vasilache static TransferReadOp rewriteOp(OpBuilder &b, 3812ca887deSMatthias Springer VectorTransferToSCFOptions options, 382558e7401SMatthias Springer TransferReadOp xferOp, Value buffer, Value iv, 383558e7401SMatthias Springer ValueRange /*loopState*/) { 3840f241638SMatthias Springer SmallVector<Value, 8> storeIndices; 3850f241638SMatthias Springer getBufferIndices(xferOp, storeIndices); 3860f241638SMatthias Springer storeIndices.push_back(iv); 3870f241638SMatthias Springer 3880f241638SMatthias Springer SmallVector<Value, 8> xferIndices; 3896825bfe2SNicolas Vasilache getXferIndices(b, xferOp, iv, xferIndices); 3900f241638SMatthias Springer 3916825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 3920f241638SMatthias Springer auto bufferType = buffer.getType().dyn_cast<ShapedType>(); 3930f241638SMatthias Springer auto vecType = bufferType.getElementType().dyn_cast<VectorType>(); 3946825bfe2SNicolas Vasilache auto inBoundsAttr = dropFirstElem(b, xferOp.in_boundsAttr()); 3956825bfe2SNicolas Vasilache auto newXferOp = b.create<vector::TransferReadOp>( 3966825bfe2SNicolas Vasilache loc, vecType, xferOp.source(), xferIndices, 3976825bfe2SNicolas Vasilache AffineMapAttr::get(unpackedPermutationMap(b, xferOp)), xferOp.padding(), 3986825bfe2SNicolas Vasilache Value(), inBoundsAttr); 3990f241638SMatthias Springer 4006825bfe2SNicolas Vasilache maybeApplyPassLabel(b, newXferOp, options.targetRank); 4010f241638SMatthias Springer 4026825bfe2SNicolas Vasilache b.create<memref::StoreOp>(loc, newXferOp.vector(), buffer, storeIndices); 4036825bfe2SNicolas Vasilache return newXferOp; 4040f241638SMatthias Springer } 4050f241638SMatthias Springer 4060f241638SMatthias Springer /// Handle out-of-bounds accesses on the to-be-unpacked dimension: Write 4070f241638SMatthias Springer /// padding value to the temporary buffer. 408558e7401SMatthias Springer static Value handleOutOfBoundsDim(OpBuilder &b, TransferReadOp xferOp, 409558e7401SMatthias Springer Value buffer, Value iv, 410558e7401SMatthias Springer ValueRange /*loopState*/) { 4110f241638SMatthias Springer SmallVector<Value, 8> storeIndices; 4120f241638SMatthias Springer getBufferIndices(xferOp, storeIndices); 4130f241638SMatthias Springer storeIndices.push_back(iv); 4140f241638SMatthias Springer 4156825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 4160f241638SMatthias Springer auto bufferType = buffer.getType().dyn_cast<ShapedType>(); 4170f241638SMatthias Springer auto vecType = bufferType.getElementType().dyn_cast<VectorType>(); 4186825bfe2SNicolas Vasilache auto vec = b.create<SplatOp>(loc, vecType, xferOp.padding()); 4196825bfe2SNicolas Vasilache b.create<memref::StoreOp>(loc, vec, buffer, storeIndices); 420558e7401SMatthias Springer 421558e7401SMatthias Springer return Value(); 4220f241638SMatthias Springer } 4230f241638SMatthias Springer 4240f241638SMatthias Springer /// Cleanup after rewriting the op. 425558e7401SMatthias Springer static void cleanup(PatternRewriter &rewriter, TransferReadOp xferOp, 426558e7401SMatthias Springer scf::ForOp /*forOp*/) { 4270f241638SMatthias Springer rewriter.eraseOp(getStoreOp(xferOp)); 4280f241638SMatthias Springer rewriter.eraseOp(xferOp); 4290f241638SMatthias Springer } 430558e7401SMatthias Springer 431558e7401SMatthias Springer /// Return the initial loop state for the generated scf.for loop. 432558e7401SMatthias Springer static Value initialLoopState(TransferReadOp xferOp) { return Value(); } 4334ead2cf7SAlex Zinenko }; 4347c3c5b11SNicolas Vasilache 4350f241638SMatthias Springer /// Codegen strategy for vector TransferWriteOp. 4360f241638SMatthias Springer template <> 4370f241638SMatthias Springer struct Strategy<TransferWriteOp> { 4380f241638SMatthias Springer /// Find the temporary buffer allocation. All labeled TransferWriteOps are 4390f241638SMatthias Springer /// used like this, where %buf is either the buffer allocation or a type cast 4400f241638SMatthias Springer /// of the buffer allocation: 4410f241638SMatthias Springer /// ``` 4420f241638SMatthias Springer /// %vec = memref.load %buf[...] ... 4430f241638SMatthias Springer /// vector.transfer_write %vec ... { __vector_to_scf_lowering__ } ... 4440f241638SMatthias Springer /// ``` 4450f241638SMatthias Springer static Value getBuffer(TransferWriteOp xferOp) { 4460f241638SMatthias Springer auto loadOp = xferOp.vector().getDefiningOp<memref::LoadOp>(); 4470f241638SMatthias Springer assert(loadOp && "Expected transfer op vector produced by LoadOp"); 4480f241638SMatthias Springer return loadOp.getMemRef(); 4497c3c5b11SNicolas Vasilache } 4504ead2cf7SAlex Zinenko 4510f241638SMatthias Springer /// Retrieve the indices of the current LoadOp that loads from the buffer. 4520f241638SMatthias Springer static void getBufferIndices(TransferWriteOp xferOp, 4530f241638SMatthias Springer SmallVector<Value, 8> &indices) { 4540f241638SMatthias Springer auto loadOp = xferOp.vector().getDefiningOp<memref::LoadOp>(); 4550f241638SMatthias Springer auto prevIndices = memref::LoadOpAdaptor(loadOp).indices(); 4560f241638SMatthias Springer indices.append(prevIndices.begin(), prevIndices.end()); 4570f241638SMatthias Springer } 4580f241638SMatthias Springer 4590f241638SMatthias Springer /// Rewrite the TransferWriteOp, assuming that there are no out-of-bounds 4600f241638SMatthias Springer /// accesses on the to-be-unpacked dimension. 4610f241638SMatthias Springer /// 4620f241638SMatthias Springer /// 1. Load an (N-1)-d vector from the (already `vector.type_cast`ed) buffer, 4630f241638SMatthias Springer /// using the loop iteration variable `iv`. 4640f241638SMatthias Springer /// 2. Generate a new (N-1)-d TransferWriteOp, writing the loaded vector back 4650f241638SMatthias Springer /// to memory. 4660f241638SMatthias Springer /// 4670f241638SMatthias Springer /// Note: For more details, see comments on Strategy<TransferReadOp>. 4686825bfe2SNicolas Vasilache static TransferWriteOp rewriteOp(OpBuilder &b, 4692ca887deSMatthias Springer VectorTransferToSCFOptions options, 4702ca887deSMatthias Springer TransferWriteOp xferOp, Value buffer, 471558e7401SMatthias Springer Value iv, ValueRange loopState) { 4720f241638SMatthias Springer SmallVector<Value, 8> loadIndices; 4730f241638SMatthias Springer getBufferIndices(xferOp, loadIndices); 4740f241638SMatthias Springer loadIndices.push_back(iv); 4750f241638SMatthias Springer 4760f241638SMatthias Springer SmallVector<Value, 8> xferIndices; 4776825bfe2SNicolas Vasilache getXferIndices(b, xferOp, iv, xferIndices); 4780f241638SMatthias Springer 4796825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 4806825bfe2SNicolas Vasilache auto vec = b.create<memref::LoadOp>(loc, buffer, loadIndices); 4816825bfe2SNicolas Vasilache auto inBoundsAttr = dropFirstElem(b, xferOp.in_boundsAttr()); 482558e7401SMatthias Springer auto source = loopState.empty() ? xferOp.source() : loopState[0]; 483558e7401SMatthias Springer Type type = isTensorOp(xferOp) ? xferOp.getShapedType() : Type(); 4846825bfe2SNicolas Vasilache auto newXferOp = b.create<vector::TransferWriteOp>( 485558e7401SMatthias Springer loc, type, vec, source, xferIndices, 4866825bfe2SNicolas Vasilache AffineMapAttr::get(unpackedPermutationMap(b, xferOp)), Value(), 4870f241638SMatthias Springer inBoundsAttr); 4880f241638SMatthias Springer 4896825bfe2SNicolas Vasilache maybeApplyPassLabel(b, newXferOp, options.targetRank); 4900f241638SMatthias Springer 4916825bfe2SNicolas Vasilache return newXferOp; 4920f241638SMatthias Springer } 4930f241638SMatthias Springer 4940f241638SMatthias Springer /// Handle out-of-bounds accesses on the to-be-unpacked dimension. 495558e7401SMatthias Springer static Value handleOutOfBoundsDim(OpBuilder &b, TransferWriteOp xferOp, 496558e7401SMatthias Springer Value buffer, Value iv, 497558e7401SMatthias Springer ValueRange loopState) { 498558e7401SMatthias Springer return isTensorOp(xferOp) ? loopState[0] : Value(); 499558e7401SMatthias Springer } 5000f241638SMatthias Springer 5010f241638SMatthias Springer /// Cleanup after rewriting the op. 502558e7401SMatthias Springer static void cleanup(PatternRewriter &rewriter, TransferWriteOp xferOp, 503558e7401SMatthias Springer scf::ForOp forOp) { 504558e7401SMatthias Springer if (isTensorOp(xferOp)) { 505558e7401SMatthias Springer assert(forOp->getNumResults() == 1 && "Expected one for loop result"); 506558e7401SMatthias Springer rewriter.replaceOp(xferOp, forOp->getResult(0)); 507558e7401SMatthias Springer } else { 5080f241638SMatthias Springer rewriter.eraseOp(xferOp); 5090f241638SMatthias Springer } 510558e7401SMatthias Springer } 511558e7401SMatthias Springer 512558e7401SMatthias Springer /// Return the initial loop state for the generated scf.for loop. 513558e7401SMatthias Springer static Value initialLoopState(TransferWriteOp xferOp) { 514558e7401SMatthias Springer return isTensorOp(xferOp) ? xferOp.source() : Value(); 515558e7401SMatthias Springer } 5160f241638SMatthias Springer }; 5170f241638SMatthias Springer 5180f241638SMatthias Springer template <typename OpTy> 519fb7ec1f1SMatthias Springer LogicalResult checkPrepareXferOp(OpTy xferOp, 520fb7ec1f1SMatthias Springer VectorTransferToSCFOptions options) { 5210f241638SMatthias Springer if (xferOp->hasAttr(kPassLabel)) 5220f241638SMatthias Springer return failure(); 523fb7ec1f1SMatthias Springer if (xferOp.getVectorType().getRank() <= options.targetRank) 5240f241638SMatthias Springer return failure(); 525558e7401SMatthias Springer if (isTensorOp(xferOp) && !options.lowerTensors) 5268fb48979SMatthias Springer return failure(); 527f718a53dSMatthias Springer // Transfer ops that modify the element type are not supported atm. 528f718a53dSMatthias Springer if (xferOp.getVectorType().getElementType() != 529f718a53dSMatthias Springer xferOp.getShapedType().getElementType()) 530f718a53dSMatthias Springer return failure(); 5310f241638SMatthias Springer return success(); 5320f241638SMatthias Springer } 5330f241638SMatthias Springer 5340f241638SMatthias Springer /// Prepare a TransferReadOp for progressive lowering. 5350f241638SMatthias Springer /// 5360f241638SMatthias Springer /// 1. Allocate a temporary buffer. 5370f241638SMatthias Springer /// 2. Label the TransferReadOp, marking it eligible for progressive lowering. 5380f241638SMatthias Springer /// 3. Store the result of the TransferReadOp into the temporary buffer. 5390f241638SMatthias Springer /// 4. Load the result from the temporary buffer and replace all uses of the 5400f241638SMatthias Springer /// original TransferReadOp with this load. 5410f241638SMatthias Springer /// 5420f241638SMatthias Springer /// E.g.: 5430f241638SMatthias Springer /// ``` 5440f241638SMatthias Springer /// %vec = vector.transfer_read %A[%a, %b, %c], %cst 5450f241638SMatthias Springer /// : vector<5x4xf32>, memref<?x?x?xf32> 5460f241638SMatthias Springer /// ``` 5470f241638SMatthias Springer /// is rewritten to: 5480f241638SMatthias Springer /// ``` 5490f241638SMatthias Springer /// %0 = memref.alloca() : memref<vector<5x4xf32>> 5500f241638SMatthias Springer /// %1 = vector.transfer_read %A[%a, %b, %c], %cst 5510f241638SMatthias Springer /// { __vector_to_scf_lowering__ } : vector<5x4xf32>, memref<?x?x?xf32> 5520f241638SMatthias Springer /// memref.store %1, %0[] : memref<vector<5x4xf32>> 5530f241638SMatthias Springer /// %vec = memref.load %0[] : memref<vector<5x4xf32>> 5540f241638SMatthias Springer /// ``` 5550f241638SMatthias Springer /// 5560f241638SMatthias Springer /// Note: A second temporary buffer may be allocated for the `mask` operand. 5572ca887deSMatthias Springer struct PrepareTransferReadConversion 5582ca887deSMatthias Springer : public VectorToSCFPattern<TransferReadOp> { 5592ca887deSMatthias Springer using VectorToSCFPattern<TransferReadOp>::VectorToSCFPattern; 5600f241638SMatthias Springer 5610f241638SMatthias Springer LogicalResult matchAndRewrite(TransferReadOp xferOp, 5620f241638SMatthias Springer PatternRewriter &rewriter) const override { 563fb7ec1f1SMatthias Springer if (checkPrepareXferOp(xferOp, options).failed()) 5640f241638SMatthias Springer return failure(); 5650f241638SMatthias Springer 5666825bfe2SNicolas Vasilache auto buffers = allocBuffers(rewriter, xferOp); 5670f241638SMatthias Springer auto *newXfer = rewriter.clone(*xferOp.getOperation()); 5680f241638SMatthias Springer newXfer->setAttr(kPassLabel, rewriter.getUnitAttr()); 5690f241638SMatthias Springer if (xferOp.mask()) { 5700f241638SMatthias Springer dyn_cast<TransferReadOp>(newXfer).maskMutable().assign( 5710f241638SMatthias Springer buffers.maskBuffer); 5720f241638SMatthias Springer } 5730f241638SMatthias Springer 5746825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 5756825bfe2SNicolas Vasilache rewriter.create<memref::StoreOp>(loc, newXfer->getResult(0), 5766825bfe2SNicolas Vasilache buffers.dataBuffer); 5770f241638SMatthias Springer rewriter.replaceOpWithNewOp<memref::LoadOp>(xferOp, buffers.dataBuffer); 5784ead2cf7SAlex Zinenko 5794ead2cf7SAlex Zinenko return success(); 5804ead2cf7SAlex Zinenko } 5810f241638SMatthias Springer }; 5820f241638SMatthias Springer 5830f241638SMatthias Springer /// Prepare a TransferWriteOp for progressive lowering. 5840f241638SMatthias Springer /// 5850f241638SMatthias Springer /// 1. Allocate a temporary buffer. 5860f241638SMatthias Springer /// 2. Store the vector into the buffer. 5870f241638SMatthias Springer /// 3. Load the vector from the buffer again. 5880f241638SMatthias Springer /// 4. Use the loaded vector as a TransferWriteOp operand and label the op, 5890f241638SMatthias Springer /// marking it eligible for progressive lowering via TransferOpConversion. 5900f241638SMatthias Springer /// 5910f241638SMatthias Springer /// E.g.: 5920f241638SMatthias Springer /// ``` 5930f241638SMatthias Springer /// vector.transfer_write %vec, %A[%a, %b, %c] 5940f241638SMatthias Springer /// : vector<5x4xf32>, memref<?x?x?xf32> 5950f241638SMatthias Springer /// ``` 5960f241638SMatthias Springer /// is rewritten to: 5970f241638SMatthias Springer /// ``` 5980f241638SMatthias Springer /// %0 = memref.alloca() : memref<vector<5x4xf32>> 5990f241638SMatthias Springer /// memref.store %vec, %0[] : memref<vector<5x4xf32>> 6000f241638SMatthias Springer /// %1 = memref.load %0[] : memref<vector<5x4xf32>> 6010f241638SMatthias Springer /// vector.transfer_write %1, %A[%a, %b, %c] { __vector_to_scf_lowering__ } 6020f241638SMatthias Springer /// : vector<5x4xf32>, memref<?x?x?xf32> 6030f241638SMatthias Springer /// ``` 6040f241638SMatthias Springer /// 6050f241638SMatthias Springer /// Note: A second temporary buffer may be allocated for the `mask` operand. 6060f241638SMatthias Springer struct PrepareTransferWriteConversion 6072ca887deSMatthias Springer : public VectorToSCFPattern<TransferWriteOp> { 6082ca887deSMatthias Springer using VectorToSCFPattern<TransferWriteOp>::VectorToSCFPattern; 6090f241638SMatthias Springer 6100f241638SMatthias Springer LogicalResult matchAndRewrite(TransferWriteOp xferOp, 6110f241638SMatthias Springer PatternRewriter &rewriter) const override { 612fb7ec1f1SMatthias Springer if (checkPrepareXferOp(xferOp, options).failed()) 6130f241638SMatthias Springer return failure(); 6140f241638SMatthias Springer 6156825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 6166825bfe2SNicolas Vasilache auto buffers = allocBuffers(rewriter, xferOp); 6176825bfe2SNicolas Vasilache rewriter.create<memref::StoreOp>(loc, xferOp.vector(), buffers.dataBuffer); 6186825bfe2SNicolas Vasilache auto loadedVec = rewriter.create<memref::LoadOp>(loc, buffers.dataBuffer); 6190f241638SMatthias Springer rewriter.updateRootInPlace(xferOp, [&]() { 6200f241638SMatthias Springer xferOp.vectorMutable().assign(loadedVec); 6210f241638SMatthias Springer xferOp->setAttr(kPassLabel, rewriter.getUnitAttr()); 6220f241638SMatthias Springer }); 6230f241638SMatthias Springer 6240f241638SMatthias Springer if (xferOp.mask()) { 6250f241638SMatthias Springer rewriter.updateRootInPlace( 6260f241638SMatthias Springer xferOp, [&]() { xferOp.maskMutable().assign(buffers.maskBuffer); }); 6270f241638SMatthias Springer } 6280f241638SMatthias Springer 6290f241638SMatthias Springer return success(); 6300f241638SMatthias Springer } 6310f241638SMatthias Springer }; 6320f241638SMatthias Springer 6330f241638SMatthias Springer /// Progressive lowering of vector transfer ops: Unpack one dimension. 6340f241638SMatthias Springer /// 6350f241638SMatthias Springer /// 1. Unpack one dimension from the current buffer type and cast the buffer 6360f241638SMatthias Springer /// to that new type. E.g.: 6370f241638SMatthias Springer /// ``` 6380f241638SMatthias Springer /// %vec = memref.load %0[%1] : memref<5xvector<4x3xf32>> 6390f241638SMatthias Springer /// vector.transfer_write %vec ... 6400f241638SMatthias Springer /// ``` 6410f241638SMatthias Springer /// The following cast is generated: 6420f241638SMatthias Springer /// ``` 6430f241638SMatthias Springer /// %casted = vector.type_cast %0 6440f241638SMatthias Springer /// : memref<5xvector<4x3xf32>> to memref<5x4xvector<3xf32>> 6450f241638SMatthias Springer /// ``` 6460f241638SMatthias Springer /// 2. Generate a for loop and rewrite the transfer op according to the 6470f241638SMatthias Springer /// corresponding Strategy<OpTy>. If the to-be-unpacked dimension can be 6480f241638SMatthias Springer /// out-of-bounds, generate an if-check and handle both cases separately. 6490f241638SMatthias Springer /// 3. Clean up according to the corresponding Strategy<OpTy>. 650558e7401SMatthias Springer /// 651558e7401SMatthias Springer /// Note: If the transfer op is a TransferWriteOp and operates on a tensor 652558e7401SMatthias Springer /// source (as opposed to a memref source), then each iteration of the generated 653558e7401SMatthias Springer /// scf.for loop yields the new tensor value. E.g.: 654558e7401SMatthias Springer /// ``` 655558e7401SMatthias Springer /// %result = scf.for i = 0 to 5 { 656558e7401SMatthias Springer /// %0 = memref.load %buffer[i] : memref<5xvector<4x3xf32>> 657558e7401SMatthias Springer /// %1 = vector.transfer_write %0, %source[...] 658558e7401SMatthias Springer /// : vector<4x3xf32>, tensor<5x4x3xf32> 659558e7401SMatthias Springer /// scf.yield %1 : tensor<5x4x3xf32> 660558e7401SMatthias Springer /// } 661558e7401SMatthias Springer /// ``` 6620f241638SMatthias Springer template <typename OpTy> 6632ca887deSMatthias Springer struct TransferOpConversion : public VectorToSCFPattern<OpTy> { 6642ca887deSMatthias Springer using VectorToSCFPattern<OpTy>::VectorToSCFPattern; 6650f241638SMatthias Springer 666*700b64dcSMatthias Springer void initialize() { 667*700b64dcSMatthias Springer // This pattern recursively unpacks one dimension at a time. The recursion 668*700b64dcSMatthias Springer // bounded as the rank is strictly decreasing. 669*700b64dcSMatthias Springer this->setHasBoundedRewriteRecursion(); 670*700b64dcSMatthias Springer } 671*700b64dcSMatthias Springer 6720f241638SMatthias Springer LogicalResult matchAndRewrite(OpTy xferOp, 6730f241638SMatthias Springer PatternRewriter &rewriter) const override { 6740f241638SMatthias Springer if (!xferOp->hasAttr(kPassLabel)) 6750f241638SMatthias Springer return failure(); 6760f241638SMatthias Springer 6770f241638SMatthias Springer // Find and cast data buffer. How the buffer can be found depends on OpTy. 6786825bfe2SNicolas Vasilache ImplicitLocOpBuilder locB(xferOp.getLoc(), rewriter); 6790f241638SMatthias Springer auto dataBuffer = Strategy<OpTy>::getBuffer(xferOp); 6800f241638SMatthias Springer auto dataBufferType = dataBuffer.getType().template dyn_cast<MemRefType>(); 6810f241638SMatthias Springer auto castedDataType = unpackOneDim(dataBufferType); 6826825bfe2SNicolas Vasilache auto castedDataBuffer = 6836825bfe2SNicolas Vasilache locB.create<vector::TypeCastOp>(castedDataType, dataBuffer); 6840f241638SMatthias Springer 6850f241638SMatthias Springer // If the xferOp has a mask: Find and cast mask buffer. 6860f241638SMatthias Springer Value castedMaskBuffer; 6870f241638SMatthias Springer if (xferOp.mask()) { 6880f241638SMatthias Springer auto maskBuffer = getMaskBuffer(xferOp); 6890f241638SMatthias Springer auto maskBufferType = 6900f241638SMatthias Springer maskBuffer.getType().template dyn_cast<MemRefType>(); 6910f241638SMatthias Springer if (xferOp.isBroadcastDim(0) || xferOp.getMaskType().getRank() == 1) { 6920f241638SMatthias Springer // Do not unpack a dimension of the mask, if: 6930f241638SMatthias Springer // * To-be-unpacked transfer op dimension is a broadcast. 6940f241638SMatthias Springer // * Mask is 1D, i.e., the mask cannot be further unpacked. 6950f241638SMatthias Springer // (That means that all remaining dimensions of the transfer op must 6960f241638SMatthias Springer // be broadcasted.) 6970f241638SMatthias Springer castedMaskBuffer = maskBuffer; 6980f241638SMatthias Springer } else { 6990f241638SMatthias Springer auto castedMaskType = unpackOneDim(maskBufferType); 7006825bfe2SNicolas Vasilache castedMaskBuffer = 7016825bfe2SNicolas Vasilache locB.create<vector::TypeCastOp>(castedMaskType, maskBuffer); 7020f241638SMatthias Springer } 7030f241638SMatthias Springer } 7040f241638SMatthias Springer 7050f241638SMatthias Springer // Loop bounds and step. 7066825bfe2SNicolas Vasilache auto lb = locB.create<ConstantIndexOp>(0); 7076825bfe2SNicolas Vasilache auto ub = locB.create<ConstantIndexOp>( 7086825bfe2SNicolas Vasilache castedDataType.getDimSize(castedDataType.getRank() - 1)); 7096825bfe2SNicolas Vasilache auto step = locB.create<ConstantIndexOp>(1); 710558e7401SMatthias Springer // TransferWriteOps that operate on tensors return the modified tensor and 711558e7401SMatthias Springer // require a loop state. 712558e7401SMatthias Springer auto loopState = Strategy<OpTy>::initialLoopState(xferOp); 7130f241638SMatthias Springer 7140f241638SMatthias Springer // Generate for loop. 715558e7401SMatthias Springer auto result = locB.create<scf::ForOp>( 716558e7401SMatthias Springer lb, ub, step, loopState ? ValueRange(loopState) : ValueRange(), 717558e7401SMatthias Springer [&](OpBuilder &b, Location loc, Value iv, ValueRange loopState) { 718558e7401SMatthias Springer Type stateType = loopState.empty() ? Type() : loopState[0].getType(); 719558e7401SMatthias Springer 720558e7401SMatthias Springer auto result = generateInBoundsCheck( 7216825bfe2SNicolas Vasilache b, xferOp, iv, unpackedDim(xferOp), 722558e7401SMatthias Springer stateType ? TypeRange(stateType) : TypeRange(), 7230f241638SMatthias Springer /*inBoundsCase=*/ 7246825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc) { 7250f241638SMatthias Springer // Create new transfer op. 7262ca887deSMatthias Springer OpTy newXfer = Strategy<OpTy>::rewriteOp( 727558e7401SMatthias Springer b, this->options, xferOp, castedDataBuffer, iv, loopState); 7280f241638SMatthias Springer 7290f241638SMatthias Springer // If old transfer op has a mask: Set mask on new transfer op. 7300f241638SMatthias Springer // Special case: If the mask of the old transfer op is 1D and 7310f241638SMatthias Springer // the 7320f241638SMatthias Springer // unpacked dim is not a broadcast, no mask is 7330f241638SMatthias Springer // needed on the new transfer op. 7340f241638SMatthias Springer if (xferOp.mask() && (xferOp.isBroadcastDim(0) || 7350f241638SMatthias Springer xferOp.getMaskType().getRank() > 1)) { 7360f241638SMatthias Springer OpBuilder::InsertionGuard guard(b); 7370f241638SMatthias Springer b.setInsertionPoint(newXfer); // Insert load before newXfer. 7380f241638SMatthias Springer 7390f241638SMatthias Springer SmallVector<Value, 8> loadIndices; 7400f241638SMatthias Springer Strategy<OpTy>::getBufferIndices(xferOp, loadIndices); 7410f241638SMatthias Springer // In case of broadcast: Use same indices to load from memref 7420f241638SMatthias Springer // as before. 7430f241638SMatthias Springer if (!xferOp.isBroadcastDim(0)) 7440f241638SMatthias Springer loadIndices.push_back(iv); 7450f241638SMatthias Springer 7466825bfe2SNicolas Vasilache auto mask = b.create<memref::LoadOp>(loc, castedMaskBuffer, 7476825bfe2SNicolas Vasilache loadIndices); 7480f241638SMatthias Springer rewriter.updateRootInPlace( 7490f241638SMatthias Springer newXfer, [&]() { newXfer.maskMutable().assign(mask); }); 7500f241638SMatthias Springer } 751558e7401SMatthias Springer 752558e7401SMatthias Springer return loopState.empty() ? Value() : newXfer->getResult(0); 7530f241638SMatthias Springer }, 7540f241638SMatthias Springer /*outOfBoundsCase=*/ 7550f241638SMatthias Springer [&](OpBuilder &b, Location /*loc*/) { 756558e7401SMatthias Springer return Strategy<OpTy>::handleOutOfBoundsDim( 757558e7401SMatthias Springer b, xferOp, castedDataBuffer, iv, loopState); 7580f241638SMatthias Springer }); 7590f241638SMatthias Springer 760558e7401SMatthias Springer maybeYieldValue(b, loc, !loopState.empty(), result); 761558e7401SMatthias Springer }); 762558e7401SMatthias Springer 763558e7401SMatthias Springer Strategy<OpTy>::cleanup(rewriter, xferOp, result); 7640f241638SMatthias Springer return success(); 7650f241638SMatthias Springer } 7660f241638SMatthias Springer }; 7670f241638SMatthias Springer 768a088bed4SMatthias Springer } // namespace lowering_n_d 769a088bed4SMatthias Springer 770a088bed4SMatthias Springer namespace lowering_n_d_unrolled { 771a088bed4SMatthias Springer 7720f241638SMatthias Springer /// If the original transfer op has a mask, compute the mask of the new transfer 7730f241638SMatthias Springer /// op (for the current iteration `i`) and assign it. 7740f241638SMatthias Springer template <typename OpTy> 7756825bfe2SNicolas Vasilache static void maybeAssignMask(OpBuilder &b, OpTy xferOp, OpTy newXferOp, 7760f241638SMatthias Springer int64_t i) { 7770f241638SMatthias Springer if (!xferOp.mask()) 7780f241638SMatthias Springer return; 7790f241638SMatthias Springer 7800f241638SMatthias Springer if (xferOp.isBroadcastDim(0)) { 7810f241638SMatthias Springer // To-be-unpacked dimension is a broadcast, which does not have a 7820f241638SMatthias Springer // corresponding mask dimension. Mask attribute remains unchanged. 7830f241638SMatthias Springer newXferOp.maskMutable().assign(xferOp.mask()); 7840f241638SMatthias Springer return; 7850f241638SMatthias Springer } 7860f241638SMatthias Springer 7870f241638SMatthias Springer if (xferOp.getMaskType().getRank() > 1) { 7880f241638SMatthias Springer // Unpack one dimension of the mask. 7896825bfe2SNicolas Vasilache OpBuilder::InsertionGuard guard(b); 7906825bfe2SNicolas Vasilache b.setInsertionPoint(newXferOp); // Insert load before newXfer. 7910f241638SMatthias Springer 7920f241638SMatthias Springer llvm::SmallVector<int64_t, 1> indices({i}); 7936825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 7946825bfe2SNicolas Vasilache auto newMask = b.create<vector::ExtractOp>(loc, xferOp.mask(), indices); 7950f241638SMatthias Springer newXferOp.maskMutable().assign(newMask); 7960f241638SMatthias Springer } 7970f241638SMatthias Springer 7980f241638SMatthias Springer // If we end up here: The mask of the old transfer op is 1D and the unpacked 7990f241638SMatthias Springer // dim is not a broadcast, so no mask is needed on the new transfer op. 8000f241638SMatthias Springer // `generateInBoundsCheck` will have evaluated the mask already. 8010f241638SMatthias Springer } 8020f241638SMatthias Springer 8030f241638SMatthias Springer /// Progressive lowering of vector TransferReadOp with unrolling: Unpack one 8040f241638SMatthias Springer /// dimension. This is similar to TransferOpConversion<TransferReadOp>, but no 8050f241638SMatthias Springer /// memref buffer is allocated and the SCF loop is fully unrolled. 8060f241638SMatthias Springer /// 8070f241638SMatthias Springer /// ``` 8080f241638SMatthias Springer /// E.g.: 8090f241638SMatthias Springer /// ``` 8100f241638SMatthias Springer /// %vec = vector.transfer_read %A[%a, %b, %c], %padding 8110f241638SMatthias Springer /// : memref<?x?x?xf32>, vector<5x4xf32> 8120f241638SMatthias Springer /// ``` 8130f241638SMatthias Springer /// is rewritten to IR such as (simplified): 8140f241638SMatthias Springer /// ``` 8150f241638SMatthias Springer /// %v_init = splat %padding : vector<5x4xf32> 8160f241638SMatthias Springer /// %tmp0 = vector.transfer_read %A[%a, %b, %c], %padding 8170f241638SMatthias Springer /// : memref<?x?x?xf32>, vector<4xf32> 8180f241638SMatthias Springer /// %v0 = vector.insert %tmp0, %v_init[0] : vector<4xf32> into vector<5x4xf32> 8190f241638SMatthias Springer /// %tmp1 = vector.transfer_read %A[%a, %b + 1, %c], %padding 8200f241638SMatthias Springer /// : memref<?x?x?xf32>, vector<4xf32> 8210f241638SMatthias Springer /// %v1 = vector.insert %tmp1, %v0[1] : vector<4xf32> into vector<5x4xf32> 8220f241638SMatthias Springer /// ... 8230f241638SMatthias Springer /// %tmp4 = vector.transfer_read %A[%a, %b + 4, %c], %padding 8240f241638SMatthias Springer /// : memref<?x?x?xf32>, vector<4xf32> 8250f241638SMatthias Springer /// %vec = vector.insert %tmp1, %v3[4] : vector<4xf32> into vector<5x4xf32> 8260f241638SMatthias Springer /// ``` 8270f241638SMatthias Springer /// 8280f241638SMatthias Springer /// Note: As an optimization, if the result of the original TransferReadOp 8290f241638SMatthias Springer /// was directly inserted into another vector, no new %v_init vector is created. 8300f241638SMatthias Springer /// Instead, the new TransferReadOp results are inserted into that vector. 8312ca887deSMatthias Springer struct UnrollTransferReadConversion 8322ca887deSMatthias Springer : public VectorToSCFPattern<TransferReadOp> { 8332ca887deSMatthias Springer using VectorToSCFPattern<TransferReadOp>::VectorToSCFPattern; 8340f241638SMatthias Springer 835*700b64dcSMatthias Springer void initialize() { 836*700b64dcSMatthias Springer // This pattern recursively unpacks one dimension at a time. The recursion 837*700b64dcSMatthias Springer // bounded as the rank is strictly decreasing. 838*700b64dcSMatthias Springer setHasBoundedRewriteRecursion(); 839*700b64dcSMatthias Springer } 840*700b64dcSMatthias Springer 8410f241638SMatthias Springer /// Return the vector into which the newly created TransferReadOp results 8420f241638SMatthias Springer /// are inserted. 8430f241638SMatthias Springer Value getResultVector(TransferReadOp xferOp, 8440f241638SMatthias Springer PatternRewriter &rewriter) const { 8450f241638SMatthias Springer if (auto insertOp = getInsertOp(xferOp)) 8460f241638SMatthias Springer return insertOp.dest(); 8476825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 8486825bfe2SNicolas Vasilache return rewriter.create<SplatOp>(loc, xferOp.getVectorType(), 8496825bfe2SNicolas Vasilache xferOp.padding()); 8500f241638SMatthias Springer } 8510f241638SMatthias Springer 8520f241638SMatthias Springer /// If the result of the TransferReadOp has exactly one user, which is a 8530f241638SMatthias Springer /// vector::InsertOp, return that operation. 8540f241638SMatthias Springer vector::InsertOp getInsertOp(TransferReadOp xferOp) const { 8550f241638SMatthias Springer if (xferOp->hasOneUse()) { 8560f241638SMatthias Springer Operation *xferOpUser = *xferOp->getUsers().begin(); 8570f241638SMatthias Springer if (auto insertOp = dyn_cast<vector::InsertOp>(xferOpUser)) 8580f241638SMatthias Springer return insertOp; 8590f241638SMatthias Springer } 8600f241638SMatthias Springer 8610f241638SMatthias Springer return vector::InsertOp(); 8620f241638SMatthias Springer } 8630f241638SMatthias Springer 8640f241638SMatthias Springer /// If the result of the TransferReadOp has exactly one user, which is a 8650f241638SMatthias Springer /// vector::InsertOp, return that operation's indices. 8660f241638SMatthias Springer void getInsertionIndices(TransferReadOp xferOp, 8670f241638SMatthias Springer SmallVector<int64_t, 8> &indices) const { 8680f241638SMatthias Springer if (auto insertOp = getInsertOp(xferOp)) { 8690f241638SMatthias Springer llvm::for_each(insertOp.position(), [&](Attribute attr) { 8700f241638SMatthias Springer indices.push_back(attr.dyn_cast<IntegerAttr>().getInt()); 8710f241638SMatthias Springer }); 8720f241638SMatthias Springer } 8730f241638SMatthias Springer } 8740f241638SMatthias Springer 8750f241638SMatthias Springer /// Rewrite the op: Unpack one dimension. Can handle masks, out-of-bounds 8760f241638SMatthias Springer /// accesses, and broadcasts and transposes in permutation maps. 8770f241638SMatthias Springer LogicalResult matchAndRewrite(TransferReadOp xferOp, 8780f241638SMatthias Springer PatternRewriter &rewriter) const override { 8792ca887deSMatthias Springer if (xferOp.getVectorType().getRank() <= options.targetRank) 8800f241638SMatthias Springer return failure(); 881bd20756dSMatthias Springer if (isTensorOp(xferOp) && !options.lowerTensors) 8828fb48979SMatthias Springer return failure(); 883f718a53dSMatthias Springer // Transfer ops that modify the element type are not supported atm. 884f718a53dSMatthias Springer if (xferOp.getVectorType().getElementType() != 885f718a53dSMatthias Springer xferOp.getShapedType().getElementType()) 886f718a53dSMatthias Springer return failure(); 8870f241638SMatthias Springer 8880f241638SMatthias Springer auto insertOp = getInsertOp(xferOp); 8890f241638SMatthias Springer auto vec = getResultVector(xferOp, rewriter); 8900f241638SMatthias Springer auto vecType = vec.getType().dyn_cast<VectorType>(); 8910f241638SMatthias Springer auto xferVecType = xferOp.getVectorType(); 8920f241638SMatthias Springer auto newXferVecType = VectorType::get(xferVecType.getShape().drop_front(), 8930f241638SMatthias Springer xferVecType.getElementType()); 8940f241638SMatthias Springer int64_t dimSize = xferVecType.getShape()[0]; 8950f241638SMatthias Springer 8960f241638SMatthias Springer // Generate fully unrolled loop of transfer ops. 8976825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 8980f241638SMatthias Springer for (int64_t i = 0; i < dimSize; ++i) { 8996825bfe2SNicolas Vasilache Value iv = rewriter.create<ConstantIndexOp>(loc, i); 9000f241638SMatthias Springer 9010f241638SMatthias Springer vec = generateInBoundsCheck( 9026825bfe2SNicolas Vasilache rewriter, xferOp, iv, unpackedDim(xferOp), TypeRange(vecType), 9030f241638SMatthias Springer /*inBoundsCase=*/ 9040f241638SMatthias Springer [&](OpBuilder &b, Location loc) { 9050f241638SMatthias Springer // Indices for the new transfer op. 9060f241638SMatthias Springer SmallVector<Value, 8> xferIndices; 9076825bfe2SNicolas Vasilache getXferIndices(b, xferOp, iv, xferIndices); 9080f241638SMatthias Springer 9090f241638SMatthias Springer // Indices for the new vector.insert op. 9100f241638SMatthias Springer SmallVector<int64_t, 8> insertionIndices; 9110f241638SMatthias Springer getInsertionIndices(xferOp, insertionIndices); 9120f241638SMatthias Springer insertionIndices.push_back(i); 9130f241638SMatthias Springer 9140f241638SMatthias Springer auto inBoundsAttr = dropFirstElem(b, xferOp.in_boundsAttr()); 9156825bfe2SNicolas Vasilache auto newXferOp = b.create<vector::TransferReadOp>( 9166825bfe2SNicolas Vasilache loc, newXferVecType, xferOp.source(), xferIndices, 9176825bfe2SNicolas Vasilache AffineMapAttr::get(unpackedPermutationMap(b, xferOp)), 9186825bfe2SNicolas Vasilache xferOp.padding(), Value(), inBoundsAttr); 9190f241638SMatthias Springer maybeAssignMask(b, xferOp, newXferOp, i); 9206825bfe2SNicolas Vasilache return b.create<vector::InsertOp>(loc, newXferOp, vec, 9216825bfe2SNicolas Vasilache insertionIndices); 9220f241638SMatthias Springer }, 9230f241638SMatthias Springer /*outOfBoundsCase=*/ 9240f241638SMatthias Springer [&](OpBuilder &b, Location loc) { 9250f241638SMatthias Springer // Loop through original (unmodified) vector. 9260f241638SMatthias Springer return vec; 9270f241638SMatthias Springer }); 9280f241638SMatthias Springer } 9290f241638SMatthias Springer 9300f241638SMatthias Springer if (insertOp) { 9310f241638SMatthias Springer // Rewrite single user of the old TransferReadOp, which was an InsertOp. 9320f241638SMatthias Springer rewriter.replaceOp(insertOp, vec); 9330f241638SMatthias Springer rewriter.eraseOp(xferOp); 9340f241638SMatthias Springer } else { 9350f241638SMatthias Springer rewriter.replaceOp(xferOp, vec); 9360f241638SMatthias Springer } 9370f241638SMatthias Springer 9380f241638SMatthias Springer return success(); 9390f241638SMatthias Springer } 9400f241638SMatthias Springer }; 9410f241638SMatthias Springer 9420f241638SMatthias Springer /// Progressive lowering of vector TransferWriteOp with unrolling: Unpack one 9430f241638SMatthias Springer /// dimension. This is similar to TransferOpConversion<TransferWriteOp>, but no 9440f241638SMatthias Springer /// memref buffer is allocated and the SCF loop is fully unrolled. 9450f241638SMatthias Springer /// 9460f241638SMatthias Springer /// ``` 9470f241638SMatthias Springer /// E.g.: 9480f241638SMatthias Springer /// ``` 9490f241638SMatthias Springer /// vector.transfer_write %vec, %A[%a, %b, %c] 9500f241638SMatthias Springer /// : vector<5x4xf32>, memref<?x?x?xf32> 9510f241638SMatthias Springer /// ``` 9520f241638SMatthias Springer /// is rewritten to IR such as (simplified): 9530f241638SMatthias Springer /// ``` 9540f241638SMatthias Springer /// %v0 = vector.extract %vec[0] : vector<5x4xf32> 9550f241638SMatthias Springer /// vector.transfer_write %v0, %A[%a, %b, %c] : vector<4xf32>, memref<...> 9560f241638SMatthias Springer /// %v1 = vector.extract %vec[1] : vector<5x4xf32> 9570f241638SMatthias Springer /// vector.transfer_write %v1, %A[%a, %b + 1, %c] : vector<4xf32>, memref<...> 9580f241638SMatthias Springer /// ... 9590f241638SMatthias Springer /// %v4 = vector.extract %vec[4] : vector<5x4xf32> 9600f241638SMatthias Springer /// vector.transfer_write %v4, %A[%a, %b + 4, %c] : vector<4xf32>, memref<...> 9610f241638SMatthias Springer /// ``` 9620f241638SMatthias Springer /// 9630f241638SMatthias Springer /// Note: As an optimization, if the vector of the original TransferWriteOp 9640f241638SMatthias Springer /// was directly extracted from another vector via an ExtractOp `a`, extract 9650f241638SMatthias Springer /// the vectors for the newly generated TransferWriteOps from `a`'s input. By 9660f241638SMatthias Springer /// doing so, `a` may become dead, and the number of ExtractOps generated during 9670f241638SMatthias Springer /// recursive application of this pattern will be minimal. 9680f241638SMatthias Springer struct UnrollTransferWriteConversion 9692ca887deSMatthias Springer : public VectorToSCFPattern<TransferWriteOp> { 9702ca887deSMatthias Springer using VectorToSCFPattern<TransferWriteOp>::VectorToSCFPattern; 9710f241638SMatthias Springer 972*700b64dcSMatthias Springer void initialize() { 973*700b64dcSMatthias Springer // This pattern recursively unpacks one dimension at a time. The recursion 974*700b64dcSMatthias Springer // bounded as the rank is strictly decreasing. 975*700b64dcSMatthias Springer setHasBoundedRewriteRecursion(); 976*700b64dcSMatthias Springer } 977*700b64dcSMatthias Springer 9780f241638SMatthias Springer /// Return the vector from which newly generated ExtracOps will extract. 9790f241638SMatthias Springer Value getDataVector(TransferWriteOp xferOp) const { 9800f241638SMatthias Springer if (auto extractOp = getExtractOp(xferOp)) 9810f241638SMatthias Springer return extractOp.vector(); 9820f241638SMatthias Springer return xferOp.vector(); 9830f241638SMatthias Springer } 9840f241638SMatthias Springer 9850f241638SMatthias Springer /// If the input of the given TransferWriteOp is an ExtractOp, return it. 9860f241638SMatthias Springer vector::ExtractOp getExtractOp(TransferWriteOp xferOp) const { 9870f241638SMatthias Springer if (auto *op = xferOp.vector().getDefiningOp()) 9880f241638SMatthias Springer return dyn_cast<vector::ExtractOp>(op); 9890f241638SMatthias Springer return vector::ExtractOp(); 9900f241638SMatthias Springer } 9910f241638SMatthias Springer 9920f241638SMatthias Springer /// If the input of the given TransferWriteOp is an ExtractOp, return its 9930f241638SMatthias Springer /// indices. 9940f241638SMatthias Springer void getExtractionIndices(TransferWriteOp xferOp, 9950f241638SMatthias Springer SmallVector<int64_t, 8> &indices) const { 9960f241638SMatthias Springer if (auto extractOp = getExtractOp(xferOp)) { 9970f241638SMatthias Springer llvm::for_each(extractOp.position(), [&](Attribute attr) { 9980f241638SMatthias Springer indices.push_back(attr.dyn_cast<IntegerAttr>().getInt()); 9990f241638SMatthias Springer }); 10000f241638SMatthias Springer } 10010f241638SMatthias Springer } 10020f241638SMatthias Springer 10030f241638SMatthias Springer /// Rewrite the op: Unpack one dimension. Can handle masks, out-of-bounds 10040f241638SMatthias Springer /// accesses, and broadcasts and transposes in permutation maps. 10050f241638SMatthias Springer LogicalResult matchAndRewrite(TransferWriteOp xferOp, 10060f241638SMatthias Springer PatternRewriter &rewriter) const override { 10072ca887deSMatthias Springer if (xferOp.getVectorType().getRank() <= options.targetRank) 10080f241638SMatthias Springer return failure(); 1009bd20756dSMatthias Springer if (isTensorOp(xferOp) && !options.lowerTensors) 10108fb48979SMatthias Springer return failure(); 1011f718a53dSMatthias Springer // Transfer ops that modify the element type are not supported atm. 1012f718a53dSMatthias Springer if (xferOp.getVectorType().getElementType() != 1013f718a53dSMatthias Springer xferOp.getShapedType().getElementType()) 1014f718a53dSMatthias Springer return failure(); 10150f241638SMatthias Springer 10160f241638SMatthias Springer auto vec = getDataVector(xferOp); 10170f241638SMatthias Springer auto xferVecType = xferOp.getVectorType(); 10180f241638SMatthias Springer int64_t dimSize = xferVecType.getShape()[0]; 1019bd20756dSMatthias Springer auto source = xferOp.source(); // memref or tensor to be written to. 1020bd20756dSMatthias Springer auto sourceType = isTensorOp(xferOp) ? xferOp.getShapedType() : Type(); 10210f241638SMatthias Springer 10220f241638SMatthias Springer // Generate fully unrolled loop of transfer ops. 10236825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 10240f241638SMatthias Springer for (int64_t i = 0; i < dimSize; ++i) { 10256825bfe2SNicolas Vasilache Value iv = rewriter.create<ConstantIndexOp>(loc, i); 10260f241638SMatthias Springer 1027bd20756dSMatthias Springer auto updatedSource = generateInBoundsCheck( 10286825bfe2SNicolas Vasilache rewriter, xferOp, iv, unpackedDim(xferOp), 1029bd20756dSMatthias Springer isTensorOp(xferOp) ? TypeRange(sourceType) : TypeRange(), 1030bd20756dSMatthias Springer /*inBoundsCase=*/ 1031bd20756dSMatthias Springer [&](OpBuilder &b, Location loc) { 10320f241638SMatthias Springer // Indices for the new transfer op. 10330f241638SMatthias Springer SmallVector<Value, 8> xferIndices; 10346825bfe2SNicolas Vasilache getXferIndices(b, xferOp, iv, xferIndices); 10350f241638SMatthias Springer 10360f241638SMatthias Springer // Indices for the new vector.extract op. 10370f241638SMatthias Springer SmallVector<int64_t, 8> extractionIndices; 10380f241638SMatthias Springer getExtractionIndices(xferOp, extractionIndices); 10390f241638SMatthias Springer extractionIndices.push_back(i); 10400f241638SMatthias Springer 10416825bfe2SNicolas Vasilache auto extracted = 10426825bfe2SNicolas Vasilache b.create<vector::ExtractOp>(loc, vec, extractionIndices); 10430f241638SMatthias Springer auto inBoundsAttr = dropFirstElem(b, xferOp.in_boundsAttr()); 10446825bfe2SNicolas Vasilache auto newXferOp = b.create<vector::TransferWriteOp>( 1045bd20756dSMatthias Springer loc, sourceType, extracted, source, xferIndices, 10466825bfe2SNicolas Vasilache AffineMapAttr::get(unpackedPermutationMap(b, xferOp)), Value(), 10476825bfe2SNicolas Vasilache inBoundsAttr); 10480f241638SMatthias Springer 10490f241638SMatthias Springer maybeAssignMask(b, xferOp, newXferOp, i); 1050bd20756dSMatthias Springer 1051bd20756dSMatthias Springer return isTensorOp(xferOp) ? newXferOp->getResult(0) : Value(); 1052bd20756dSMatthias Springer }, 1053bd20756dSMatthias Springer /*outOfBoundsCase=*/ 1054bd20756dSMatthias Springer [&](OpBuilder &b, Location loc) { 1055bd20756dSMatthias Springer return isTensorOp(xferOp) ? source : Value(); 10560f241638SMatthias Springer }); 1057bd20756dSMatthias Springer 1058bd20756dSMatthias Springer if (isTensorOp(xferOp)) 1059bd20756dSMatthias Springer source = updatedSource; 10600f241638SMatthias Springer } 10610f241638SMatthias Springer 1062bd20756dSMatthias Springer if (isTensorOp(xferOp)) 1063bd20756dSMatthias Springer rewriter.replaceOp(xferOp, source); 1064bd20756dSMatthias Springer else 10650f241638SMatthias Springer rewriter.eraseOp(xferOp); 1066bd20756dSMatthias Springer 10670f241638SMatthias Springer return success(); 10680f241638SMatthias Springer } 10690f241638SMatthias Springer }; 10700f241638SMatthias Springer 1071a088bed4SMatthias Springer } // namespace lowering_n_d_unrolled 1072a088bed4SMatthias Springer 1073a088bed4SMatthias Springer namespace lowering_1_d { 1074a088bed4SMatthias Springer 10750f241638SMatthias Springer /// Compute the indices into the memref for the LoadOp/StoreOp generated as 10760f241638SMatthias Springer /// part of TransferOp1dConversion. Return the memref dimension on which 10770f241638SMatthias Springer /// the transfer is operating. A return value of None indicates a broadcast. 10780f241638SMatthias Springer template <typename OpTy> 10790f241638SMatthias Springer static Optional<int64_t> 10806825bfe2SNicolas Vasilache get1dMemrefIndices(OpBuilder &b, OpTy xferOp, Value iv, 10810f241638SMatthias Springer SmallVector<Value, 8> &memrefIndices) { 10820f241638SMatthias Springer auto indices = xferOp.indices(); 10830f241638SMatthias Springer auto map = xferOp.permutation_map(); 10840f241638SMatthias Springer 10850f241638SMatthias Springer memrefIndices.append(indices.begin(), indices.end()); 10860f241638SMatthias Springer assert(map.getNumResults() == 1 && 10870f241638SMatthias Springer "Expected 1 permutation map result for 1D transfer"); 10880f241638SMatthias Springer if (auto expr = map.getResult(0).template dyn_cast<AffineDimExpr>()) { 10896825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 10900f241638SMatthias Springer auto dim = expr.getPosition(); 10916825bfe2SNicolas Vasilache AffineExpr d0, d1; 10926825bfe2SNicolas Vasilache bindDims(xferOp.getContext(), d0, d1); 10936825bfe2SNicolas Vasilache Value offset = memrefIndices[dim]; 10946825bfe2SNicolas Vasilache memrefIndices[dim] = makeComposedAffineApply(b, loc, d0 + d1, {offset, iv}); 10950f241638SMatthias Springer return dim; 10960f241638SMatthias Springer } 10970f241638SMatthias Springer 10980f241638SMatthias Springer assert(xferOp.isBroadcastDim(0) && 10990f241638SMatthias Springer "Expected AffineDimExpr or AffineConstantExpr"); 11000f241638SMatthias Springer return None; 11010f241638SMatthias Springer } 11020f241638SMatthias Springer 11030f241638SMatthias Springer /// Codegen strategy for TransferOp1dConversion, depending on the 11040f241638SMatthias Springer /// operation. 11050f241638SMatthias Springer template <typename OpTy> 11060f241638SMatthias Springer struct Strategy1d; 11070f241638SMatthias Springer 11080f241638SMatthias Springer /// Codegen strategy for TransferReadOp. 11090f241638SMatthias Springer template <> 11100f241638SMatthias Springer struct Strategy1d<TransferReadOp> { 11116825bfe2SNicolas Vasilache static void generateForLoopBody(OpBuilder &b, Location loc, 11120f241638SMatthias Springer TransferReadOp xferOp, Value iv, 11130f241638SMatthias Springer ValueRange loopState) { 11140f241638SMatthias Springer SmallVector<Value, 8> indices; 11156825bfe2SNicolas Vasilache auto dim = get1dMemrefIndices(b, xferOp, iv, indices); 11166825bfe2SNicolas Vasilache Value ivI32 = 11176825bfe2SNicolas Vasilache b.create<IndexCastOp>(loc, IntegerType::get(b.getContext(), 32), iv); 11180f241638SMatthias Springer auto vec = loopState[0]; 11190f241638SMatthias Springer 11200f241638SMatthias Springer // In case of out-of-bounds access, leave `vec` as is (was initialized with 11210f241638SMatthias Springer // padding value). 11220f241638SMatthias Springer auto nextVec = generateInBoundsCheck( 11236825bfe2SNicolas Vasilache b, xferOp, iv, dim, TypeRange(xferOp.getVectorType()), 11240f241638SMatthias Springer /*inBoundsCase=*/ 11256825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc) { 11266825bfe2SNicolas Vasilache Value val = b.create<memref::LoadOp>(loc, xferOp.source(), indices); 11276825bfe2SNicolas Vasilache return b.create<vector::InsertElementOp>(loc, val, vec, ivI32); 11280f241638SMatthias Springer }, 11290f241638SMatthias Springer /*outOfBoundsCase=*/ 11300f241638SMatthias Springer [&](OpBuilder & /*b*/, Location loc) { return vec; }); 11316825bfe2SNicolas Vasilache b.create<scf::YieldOp>(loc, nextVec); 11320f241638SMatthias Springer } 11330f241638SMatthias Springer 11346825bfe2SNicolas Vasilache static Value initialLoopState(OpBuilder &b, TransferReadOp xferOp) { 11350f241638SMatthias Springer // Inititalize vector with padding value. 11366825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 11376825bfe2SNicolas Vasilache return b.create<SplatOp>(loc, xferOp.getVectorType(), xferOp.padding()); 11380f241638SMatthias Springer } 11390f241638SMatthias Springer }; 11400f241638SMatthias Springer 11410f241638SMatthias Springer /// Codegen strategy for TransferWriteOp. 11420f241638SMatthias Springer template <> 11430f241638SMatthias Springer struct Strategy1d<TransferWriteOp> { 11446825bfe2SNicolas Vasilache static void generateForLoopBody(OpBuilder &b, Location loc, 11450f241638SMatthias Springer TransferWriteOp xferOp, Value iv, 11460f241638SMatthias Springer ValueRange /*loopState*/) { 11470f241638SMatthias Springer SmallVector<Value, 8> indices; 11486825bfe2SNicolas Vasilache auto dim = get1dMemrefIndices(b, xferOp, iv, indices); 11496825bfe2SNicolas Vasilache Value ivI32 = 11506825bfe2SNicolas Vasilache b.create<IndexCastOp>(loc, IntegerType::get(b.getContext(), 32), iv); 11510f241638SMatthias Springer 11520f241638SMatthias Springer // Nothing to do in case of out-of-bounds access. 11530f241638SMatthias Springer generateInBoundsCheck( 11546825bfe2SNicolas Vasilache b, xferOp, iv, dim, 11556825bfe2SNicolas Vasilache /*inBoundsCase=*/[&](OpBuilder &b, Location loc) { 11566825bfe2SNicolas Vasilache auto val = 11576825bfe2SNicolas Vasilache b.create<vector::ExtractElementOp>(loc, xferOp.vector(), ivI32); 11586825bfe2SNicolas Vasilache b.create<memref::StoreOp>(loc, val, xferOp.source(), indices); 11590f241638SMatthias Springer }); 11606825bfe2SNicolas Vasilache b.create<scf::YieldOp>(loc); 11610f241638SMatthias Springer } 11620f241638SMatthias Springer 11636825bfe2SNicolas Vasilache static Value initialLoopState(OpBuilder &b, TransferWriteOp xferOp) { 11646825bfe2SNicolas Vasilache return Value(); 11656825bfe2SNicolas Vasilache } 11660f241638SMatthias Springer }; 11670f241638SMatthias Springer 11680f241638SMatthias Springer /// Return true if the last dimension of the MemRefType has unit stride. 11690f241638SMatthias Springer static bool isLastMemrefDimUnitStride(MemRefType type) { 11700f241638SMatthias Springer int64_t offset; 11710f241638SMatthias Springer SmallVector<int64_t, 4> strides; 11720f241638SMatthias Springer auto successStrides = getStridesAndOffset(type, strides, offset); 11735017b0f8SMatthias Springer return succeeded(successStrides) && (strides.empty() || strides.back() == 1); 11740f241638SMatthias Springer } 11750f241638SMatthias Springer 11760f241638SMatthias Springer /// Lower a 1D vector transfer op to SCF using scalar loads/stores. This is 11770f241638SMatthias Springer /// necessary in cases where a 1D vector transfer op cannot be lowered into 11780f241638SMatthias Springer /// vector load/stores due to non-unit strides or broadcasts: 11790f241638SMatthias Springer /// 11800f241638SMatthias Springer /// * Transfer dimension is not the last memref dimension 11810f241638SMatthias Springer /// * Transfer dimension is a broadcast (i.e., scalar load + broadcast) 11820f241638SMatthias Springer /// * Memref has a layout map with non-unit stride on the last dimension 11830f241638SMatthias Springer /// 11840f241638SMatthias Springer /// This pattern generates IR as follows: 11850f241638SMatthias Springer /// 11860f241638SMatthias Springer /// 1. Generate a for loop iterating over each vector element. 11870f241638SMatthias Springer /// 2. Inside the loop, generate a InsertElementOp or ExtractElementOp, 11880f241638SMatthias Springer /// depending on OpTy. 11890f241638SMatthias Springer /// 11900f241638SMatthias Springer /// TODO: In some cases (no masking, etc.), LLVM::MatrixColumnMajorLoadOp 11910f241638SMatthias Springer /// can be generated instead of TransferOp1dConversion. Add such a pattern 11920f241638SMatthias Springer /// to ConvertVectorToLLVM. 11930f241638SMatthias Springer /// 11940f241638SMatthias Springer /// E.g.: 11950f241638SMatthias Springer /// ``` 11960f241638SMatthias Springer /// vector.transfer_write %vec, %A[%a, %b] 11970f241638SMatthias Springer /// {permutation_map = affine_map<(d0, d1) -> (d0)>, in_bounds = [true]} 11980f241638SMatthias Springer /// : vector<9xf32>, memref<?x?xf32> 11990f241638SMatthias Springer /// ``` 12000f241638SMatthias Springer /// Is rewritten to approximately the following pseudo-IR: 12010f241638SMatthias Springer /// ``` 12020f241638SMatthias Springer /// for i = 0 to 9 { 12030f241638SMatthias Springer /// %t = vector.extractelement %vec[i] : vector<9xf32> 12040f241638SMatthias Springer /// memref.store %t, %arg0[%a + i, %b] : memref<?x?xf32> 12050f241638SMatthias Springer /// } 12060f241638SMatthias Springer /// ``` 12070f241638SMatthias Springer template <typename OpTy> 12082ca887deSMatthias Springer struct TransferOp1dConversion : public VectorToSCFPattern<OpTy> { 12092ca887deSMatthias Springer using VectorToSCFPattern<OpTy>::VectorToSCFPattern; 12100f241638SMatthias Springer 12110f241638SMatthias Springer LogicalResult matchAndRewrite(OpTy xferOp, 12120f241638SMatthias Springer PatternRewriter &rewriter) const override { 12130f241638SMatthias Springer auto map = xferOp.permutation_map(); 12140f241638SMatthias Springer auto memRefType = xferOp.getShapedType().template dyn_cast<MemRefType>(); 12150f241638SMatthias Springer 12160f241638SMatthias Springer if (!memRefType) 12170f241638SMatthias Springer return failure(); 12180f241638SMatthias Springer if (xferOp.getVectorType().getRank() != 1) 12190f241638SMatthias Springer return failure(); 12200f241638SMatthias Springer if (map.isMinorIdentity() && isLastMemrefDimUnitStride(memRefType)) 12210f241638SMatthias Springer return failure(); // Handled by ConvertVectorToLLVM 12220f241638SMatthias Springer 12230f241638SMatthias Springer // Loop bounds, step, state... 12246825bfe2SNicolas Vasilache Location loc = xferOp.getLoc(); 12250f241638SMatthias Springer auto vecType = xferOp.getVectorType(); 12266825bfe2SNicolas Vasilache auto lb = rewriter.create<ConstantIndexOp>(loc, 0); 12276825bfe2SNicolas Vasilache auto ub = rewriter.create<ConstantIndexOp>(loc, vecType.getDimSize(0)); 12286825bfe2SNicolas Vasilache auto step = rewriter.create<ConstantIndexOp>(loc, 1); 12296825bfe2SNicolas Vasilache auto loopState = Strategy1d<OpTy>::initialLoopState(rewriter, xferOp); 12300f241638SMatthias Springer 12310f241638SMatthias Springer // Generate for loop. 12320f241638SMatthias Springer rewriter.replaceOpWithNewOp<scf::ForOp>( 12330f241638SMatthias Springer xferOp, lb, ub, step, loopState ? ValueRange(loopState) : ValueRange(), 12346825bfe2SNicolas Vasilache [&](OpBuilder &b, Location loc, Value iv, ValueRange loopState) { 12356825bfe2SNicolas Vasilache Strategy1d<OpTy>::generateForLoopBody(b, loc, xferOp, iv, loopState); 12360f241638SMatthias Springer }); 12370f241638SMatthias Springer 12380f241638SMatthias Springer return success(); 12390f241638SMatthias Springer } 12400f241638SMatthias Springer }; 12414ead2cf7SAlex Zinenko 1242a088bed4SMatthias Springer } // namespace lowering_1_d 1243df63eedeSBenjamin Kramer } // namespace 1244df63eedeSBenjamin Kramer 124551d30c34SBenjamin Kramer namespace mlir { 124651d30c34SBenjamin Kramer 12473393cc4cSNicolas Vasilache void populateVectorToSCFConversionPatterns( 1248dc4e913bSChris Lattner RewritePatternSet &patterns, const VectorTransferToSCFOptions &options) { 12490f241638SMatthias Springer if (options.unroll) { 1250a088bed4SMatthias Springer patterns.add<lowering_n_d_unrolled::UnrollTransferReadConversion, 1251a088bed4SMatthias Springer lowering_n_d_unrolled::UnrollTransferWriteConversion>( 12522ca887deSMatthias Springer patterns.getContext(), options); 12530f241638SMatthias Springer } else { 1254a088bed4SMatthias Springer patterns.add<lowering_n_d::PrepareTransferReadConversion, 1255a088bed4SMatthias Springer lowering_n_d::PrepareTransferWriteConversion, 1256a088bed4SMatthias Springer lowering_n_d::TransferOpConversion<TransferReadOp>, 1257a088bed4SMatthias Springer lowering_n_d::TransferOpConversion<TransferWriteOp>>( 1258a088bed4SMatthias Springer patterns.getContext(), options); 12590f241638SMatthias Springer } 12600f241638SMatthias Springer 12612ca887deSMatthias Springer if (options.targetRank == 1) { 1262a088bed4SMatthias Springer patterns.add<lowering_1_d::TransferOp1dConversion<TransferReadOp>, 1263a088bed4SMatthias Springer lowering_1_d::TransferOp1dConversion<TransferWriteOp>>( 1264a088bed4SMatthias Springer patterns.getContext(), options); 12650f241638SMatthias Springer } 12664ead2cf7SAlex Zinenko } 12673393cc4cSNicolas Vasilache 12683393cc4cSNicolas Vasilache } // namespace mlir 12693393cc4cSNicolas Vasilache 12705f9e0466SNicolas Vasilache namespace { 12715f9e0466SNicolas Vasilache 12725f9e0466SNicolas Vasilache struct ConvertVectorToSCFPass 12735f9e0466SNicolas Vasilache : public ConvertVectorToSCFBase<ConvertVectorToSCFPass> { 12745f9e0466SNicolas Vasilache ConvertVectorToSCFPass() = default; 12755f9e0466SNicolas Vasilache ConvertVectorToSCFPass(const VectorTransferToSCFOptions &options) { 12765f9e0466SNicolas Vasilache this->fullUnroll = options.unroll; 12772ca887deSMatthias Springer this->targetRank = options.targetRank; 1278fb7ec1f1SMatthias Springer this->lowerPermutationMaps = options.lowerPermutationMaps; 1279558e7401SMatthias Springer this->lowerTensors = options.lowerTensors; 12805f9e0466SNicolas Vasilache } 12815f9e0466SNicolas Vasilache 12825f9e0466SNicolas Vasilache void runOnFunction() override { 12832ca887deSMatthias Springer VectorTransferToSCFOptions options; 1284fb7ec1f1SMatthias Springer options.unroll = fullUnroll; 1285fb7ec1f1SMatthias Springer options.targetRank = targetRank; 1286fb7ec1f1SMatthias Springer options.lowerPermutationMaps = lowerPermutationMaps; 1287558e7401SMatthias Springer options.lowerTensors = lowerTensors; 1288fb7ec1f1SMatthias Springer 1289fb7ec1f1SMatthias Springer // Lower permutation maps first. 1290fb7ec1f1SMatthias Springer if (lowerPermutationMaps) { 1291fb7ec1f1SMatthias Springer RewritePatternSet lowerTransferPatterns(getFunction().getContext()); 1292fb7ec1f1SMatthias Springer mlir::vector::populateVectorTransferPermutationMapLoweringPatterns( 1293fb7ec1f1SMatthias Springer lowerTransferPatterns); 1294fb7ec1f1SMatthias Springer (void)applyPatternsAndFoldGreedily(getFunction(), 1295fb7ec1f1SMatthias Springer std::move(lowerTransferPatterns)); 1296fb7ec1f1SMatthias Springer } 12972ca887deSMatthias Springer 1298dc4e913bSChris Lattner RewritePatternSet patterns(getFunction().getContext()); 12992ca887deSMatthias Springer populateVectorToSCFConversionPatterns(patterns, options); 1300e21adfa3SRiver Riddle (void)applyPatternsAndFoldGreedily(getFunction(), std::move(patterns)); 13015f9e0466SNicolas Vasilache } 13025f9e0466SNicolas Vasilache }; 13035f9e0466SNicolas Vasilache 13045f9e0466SNicolas Vasilache } // namespace 13055f9e0466SNicolas Vasilache 13065f9e0466SNicolas Vasilache std::unique_ptr<Pass> 13075f9e0466SNicolas Vasilache mlir::createConvertVectorToSCFPass(const VectorTransferToSCFOptions &options) { 13085f9e0466SNicolas Vasilache return std::make_unique<ConvertVectorToSCFPass>(options); 13095f9e0466SNicolas Vasilache } 1310