17905da65SAmit Sabne //===- LoopInvariantCodeMotion.cpp - Code to perform loop fusion-----------===//
27905da65SAmit Sabne //
37905da65SAmit Sabne // Copyright 2019 The MLIR Authors.
47905da65SAmit Sabne //
57905da65SAmit Sabne // Licensed under the Apache License, Version 2.0 (the "License");
67905da65SAmit Sabne // you may not use this file except in compliance with the License.
77905da65SAmit Sabne // You may obtain a copy of the License at
87905da65SAmit Sabne //
97905da65SAmit Sabne //   http://www.apache.org/licenses/LICENSE-2.0
107905da65SAmit Sabne //
117905da65SAmit Sabne // Unless required by applicable law or agreed to in writing, software
127905da65SAmit Sabne // distributed under the License is distributed on an "AS IS" BASIS,
137905da65SAmit Sabne // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
147905da65SAmit Sabne // See the License for the specific language governing permissions and
157905da65SAmit Sabne // limitations under the License.
167905da65SAmit Sabne // =============================================================================
177905da65SAmit Sabne //
187905da65SAmit Sabne // This file implements loop invariant code motion.
197905da65SAmit Sabne //
207905da65SAmit Sabne //===----------------------------------------------------------------------===//
217905da65SAmit Sabne 
227905da65SAmit Sabne #include "mlir/AffineOps/AffineOps.h"
237905da65SAmit Sabne #include "mlir/Analysis/AffineAnalysis.h"
247905da65SAmit Sabne #include "mlir/Analysis/AffineStructures.h"
257905da65SAmit Sabne #include "mlir/Analysis/LoopAnalysis.h"
267905da65SAmit Sabne #include "mlir/Analysis/SliceAnalysis.h"
277905da65SAmit Sabne #include "mlir/Analysis/Utils.h"
287905da65SAmit Sabne #include "mlir/IR/AffineExpr.h"
297905da65SAmit Sabne #include "mlir/IR/AffineMap.h"
307905da65SAmit Sabne #include "mlir/IR/Builders.h"
317905da65SAmit Sabne #include "mlir/Pass/Pass.h"
327905da65SAmit Sabne #include "mlir/StandardOps/Ops.h"
337905da65SAmit Sabne #include "mlir/Transforms/LoopUtils.h"
347905da65SAmit Sabne #include "mlir/Transforms/Passes.h"
357905da65SAmit Sabne #include "mlir/Transforms/Utils.h"
367905da65SAmit Sabne #include "llvm/ADT/DenseMap.h"
377905da65SAmit Sabne #include "llvm/ADT/DenseSet.h"
387905da65SAmit Sabne #include "llvm/ADT/SetVector.h"
397905da65SAmit Sabne #include "llvm/Support/CommandLine.h"
407905da65SAmit Sabne #include "llvm/Support/Debug.h"
417905da65SAmit Sabne #include "llvm/Support/raw_ostream.h"
427905da65SAmit Sabne 
437905da65SAmit Sabne #define DEBUG_TYPE "licm"
447905da65SAmit Sabne 
457905da65SAmit Sabne using llvm::SetVector;
467905da65SAmit Sabne 
477905da65SAmit Sabne using namespace mlir;
487905da65SAmit Sabne 
497905da65SAmit Sabne namespace {
507905da65SAmit Sabne 
517905da65SAmit Sabne /// Loop invariant code motion (LICM) pass.
527905da65SAmit Sabne /// TODO(asabne) : The pass is missing zero-trip tests.
537905da65SAmit Sabne /// TODO(asabne) : Check for the presence of side effects before hoisting.
547905da65SAmit Sabne struct LoopInvariantCodeMotion : public FunctionPass<LoopInvariantCodeMotion> {
557905da65SAmit Sabne   void runOnFunction() override;
567905da65SAmit Sabne   void runOnAffineForOp(AffineForOp forOp);
577905da65SAmit Sabne };
587905da65SAmit Sabne } // end anonymous namespace
597905da65SAmit Sabne 
607905da65SAmit Sabne FunctionPassBase *mlir::createLoopInvariantCodeMotionPass() {
617905da65SAmit Sabne   return new LoopInvariantCodeMotion();
627905da65SAmit Sabne }
637905da65SAmit Sabne 
647905da65SAmit Sabne void LoopInvariantCodeMotion::runOnAffineForOp(AffineForOp forOp) {
657905da65SAmit Sabne   auto *loopBody = forOp.getBody();
667905da65SAmit Sabne 
677905da65SAmit Sabne   // This is the place where hoisted instructions would reside.
687905da65SAmit Sabne   FuncBuilder b(forOp.getOperation());
697905da65SAmit Sabne 
707905da65SAmit Sabne   // This vector is used to place loop invariant operations.
717905da65SAmit Sabne   SmallVector<Operation *, 8> opsToMove;
727905da65SAmit Sabne 
737905da65SAmit Sabne   SetVector<Operation *> loopDefinedOps;
747905da65SAmit Sabne   // Generate forward slice which contains ops that fall under the transitive
757905da65SAmit Sabne   // definition closure following the loop induction variable.
767905da65SAmit Sabne   getForwardSlice(forOp, &loopDefinedOps);
777905da65SAmit Sabne 
784aa9235aSAmit Sabne   LLVM_DEBUG(for (auto i
794aa9235aSAmit Sabne                   : loopDefinedOps) {
800134b5dfSChris Lattner     i->print(llvm::dbgs() << "\nLoop-dependent op\n");
814aa9235aSAmit Sabne   });
827905da65SAmit Sabne 
837905da65SAmit Sabne   for (auto &op : *loopBody) {
847905da65SAmit Sabne     // If the operation is loop invariant, insert it into opsToMove.
85*d5b60ee8SRiver Riddle     if (!isa<AffineForOp>(op) && !isa<AffineTerminatorOp>(op) &&
867905da65SAmit Sabne         loopDefinedOps.count(&op) != 1) {
877905da65SAmit Sabne       LLVM_DEBUG(op.print(llvm::dbgs() << "\nLICM'ing op\n"));
887905da65SAmit Sabne       opsToMove.push_back(&op);
897905da65SAmit Sabne     }
907905da65SAmit Sabne   }
917905da65SAmit Sabne 
927905da65SAmit Sabne   // For all instructions that we found to be invariant, place them sequentially
937905da65SAmit Sabne   // right before the for loop.
947905da65SAmit Sabne   for (auto *op : opsToMove) {
957905da65SAmit Sabne     op->moveBefore(forOp);
967905da65SAmit Sabne   }
977905da65SAmit Sabne 
987905da65SAmit Sabne   LLVM_DEBUG(forOp.getOperation()->print(llvm::dbgs() << "\nModified loop\n"));
997905da65SAmit Sabne 
1007905da65SAmit Sabne   // If the for loop body has a single operation (the terminator), erase it.
1017905da65SAmit Sabne   if (forOp.getBody()->getOperations().size() == 1) {
102*d5b60ee8SRiver Riddle     assert(isa<AffineTerminatorOp>(forOp.getBody()->front()));
1037905da65SAmit Sabne     forOp.erase();
1047905da65SAmit Sabne   }
1057905da65SAmit Sabne }
1067905da65SAmit Sabne 
1077905da65SAmit Sabne void LoopInvariantCodeMotion::runOnFunction() {
1087905da65SAmit Sabne 
1090134b5dfSChris Lattner   // Walk through all loops in a function in innermost-loop-first order.  This
1100134b5dfSChris Lattner   // way, we first LICM from the inner loop, and place the ops in
1110134b5dfSChris Lattner   // the outer loop, which in turn can be further LICM'ed.
1120134b5dfSChris Lattner   getFunction().walk<AffineForOp>([&](AffineForOp op) {
1134aa9235aSAmit Sabne     LLVM_DEBUG(op.getOperation()->print(llvm::dbgs() << "\nOriginal loop\n"));
1144aa9235aSAmit Sabne     runOnAffineForOp(op);
1150134b5dfSChris Lattner   });
1167905da65SAmit Sabne }
1177905da65SAmit Sabne 
1187905da65SAmit Sabne static PassRegistration<LoopInvariantCodeMotion>
119258e8d9cSNicolas Vasilache     pass("affine-loop-invariant-code-motion",
1207905da65SAmit Sabne          "Hoist loop invariant instructions outside of the loop");
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