1 //===- GreedyPatternRewriteDriver.cpp - A greedy rewriter -----------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file implements mlir::applyPatternsAndFoldGreedily. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "mlir/Transforms/GreedyPatternRewriteDriver.h" 14 #include "mlir/Interfaces/SideEffectInterfaces.h" 15 #include "mlir/Rewrite/PatternApplicator.h" 16 #include "mlir/Transforms/FoldUtils.h" 17 #include "mlir/Transforms/RegionUtils.h" 18 #include "llvm/ADT/DenseMap.h" 19 #include "llvm/Support/CommandLine.h" 20 #include "llvm/Support/Debug.h" 21 #include "llvm/Support/raw_ostream.h" 22 23 using namespace mlir; 24 25 #define DEBUG_TYPE "pattern-matcher" 26 27 /// The max number of iterations scanning for pattern match. 28 static unsigned maxPatternMatchIterations = 10; 29 30 //===----------------------------------------------------------------------===// 31 // GreedyPatternRewriteDriver 32 //===----------------------------------------------------------------------===// 33 34 namespace { 35 /// This is a worklist-driven driver for the PatternMatcher, which repeatedly 36 /// applies the locally optimal patterns in a roughly "bottom up" way. 37 class GreedyPatternRewriteDriver : public PatternRewriter { 38 public: 39 explicit GreedyPatternRewriteDriver(MLIRContext *ctx, 40 const FrozenRewritePatternList &patterns) 41 : PatternRewriter(ctx), matcher(patterns), folder(ctx) { 42 worklist.reserve(64); 43 44 // Apply a simple cost model based solely on pattern benefit. 45 matcher.applyDefaultCostModel(); 46 } 47 48 bool simplify(MutableArrayRef<Region> regions, int maxIterations); 49 50 void addToWorklist(Operation *op) { 51 // Check to see if the worklist already contains this op. 52 if (worklistMap.count(op)) 53 return; 54 55 worklistMap[op] = worklist.size(); 56 worklist.push_back(op); 57 } 58 59 Operation *popFromWorklist() { 60 auto *op = worklist.back(); 61 worklist.pop_back(); 62 63 // This operation is no longer in the worklist, keep worklistMap up to date. 64 if (op) 65 worklistMap.erase(op); 66 return op; 67 } 68 69 /// If the specified operation is in the worklist, remove it. If not, this is 70 /// a no-op. 71 void removeFromWorklist(Operation *op) { 72 auto it = worklistMap.find(op); 73 if (it != worklistMap.end()) { 74 assert(worklist[it->second] == op && "malformed worklist data structure"); 75 worklist[it->second] = nullptr; 76 worklistMap.erase(it); 77 } 78 } 79 80 // These are hooks implemented for PatternRewriter. 81 protected: 82 // Implement the hook for inserting operations, and make sure that newly 83 // inserted ops are added to the worklist for processing. 84 void notifyOperationInserted(Operation *op) override { addToWorklist(op); } 85 86 // If an operation is about to be removed, make sure it is not in our 87 // worklist anymore because we'd get dangling references to it. 88 void notifyOperationRemoved(Operation *op) override { 89 addToWorklist(op->getOperands()); 90 op->walk([this](Operation *operation) { 91 removeFromWorklist(operation); 92 folder.notifyRemoval(operation); 93 }); 94 } 95 96 // When the root of a pattern is about to be replaced, it can trigger 97 // simplifications to its users - make sure to add them to the worklist 98 // before the root is changed. 99 void notifyRootReplaced(Operation *op) override { 100 for (auto result : op->getResults()) 101 for (auto *user : result.getUsers()) 102 addToWorklist(user); 103 } 104 105 private: 106 // Look over the provided operands for any defining operations that should 107 // be re-added to the worklist. This function should be called when an 108 // operation is modified or removed, as it may trigger further 109 // simplifications. 110 template <typename Operands> void addToWorklist(Operands &&operands) { 111 for (Value operand : operands) { 112 // If the use count of this operand is now < 2, we re-add the defining 113 // operation to the worklist. 114 // TODO: This is based on the fact that zero use operations 115 // may be deleted, and that single use values often have more 116 // canonicalization opportunities. 117 if (!operand || (!operand.use_empty() && !operand.hasOneUse())) 118 continue; 119 if (auto *defInst = operand.getDefiningOp()) 120 addToWorklist(defInst); 121 } 122 } 123 124 /// The low-level pattern applicator. 125 PatternApplicator matcher; 126 127 /// The worklist for this transformation keeps track of the operations that 128 /// need to be revisited, plus their index in the worklist. This allows us to 129 /// efficiently remove operations from the worklist when they are erased, even 130 /// if they aren't the root of a pattern. 131 std::vector<Operation *> worklist; 132 DenseMap<Operation *, unsigned> worklistMap; 133 134 /// Non-pattern based folder for operations. 135 OperationFolder folder; 136 }; 137 } // end anonymous namespace 138 139 /// Performs the rewrites while folding and erasing any dead ops. Returns true 140 /// if the rewrite converges in `maxIterations`. 141 bool GreedyPatternRewriteDriver::simplify(MutableArrayRef<Region> regions, 142 int maxIterations) { 143 // Add the given operation to the worklist. 144 auto collectOps = [this](Operation *op) { addToWorklist(op); }; 145 146 bool changed = false; 147 int i = 0; 148 do { 149 // Add all nested operations to the worklist. 150 for (auto ®ion : regions) 151 region.walk(collectOps); 152 153 // These are scratch vectors used in the folding loop below. 154 SmallVector<Value, 8> originalOperands, resultValues; 155 156 changed = false; 157 while (!worklist.empty()) { 158 auto *op = popFromWorklist(); 159 160 // Nulls get added to the worklist when operations are removed, ignore 161 // them. 162 if (op == nullptr) 163 continue; 164 165 // If the operation is trivially dead - remove it. 166 if (isOpTriviallyDead(op)) { 167 notifyOperationRemoved(op); 168 op->erase(); 169 changed = true; 170 continue; 171 } 172 173 // Collects all the operands and result uses of the given `op` into work 174 // list. Also remove `op` and nested ops from worklist. 175 originalOperands.assign(op->operand_begin(), op->operand_end()); 176 auto preReplaceAction = [&](Operation *op) { 177 // Add the operands to the worklist for visitation. 178 addToWorklist(originalOperands); 179 180 // Add all the users of the result to the worklist so we make sure 181 // to revisit them. 182 for (auto result : op->getResults()) 183 for (auto *userOp : result.getUsers()) 184 addToWorklist(userOp); 185 186 notifyOperationRemoved(op); 187 }; 188 189 // Try to fold this op. 190 bool inPlaceUpdate; 191 if ((succeeded(folder.tryToFold(op, collectOps, preReplaceAction, 192 &inPlaceUpdate)))) { 193 changed = true; 194 if (!inPlaceUpdate) 195 continue; 196 } 197 198 // Try to match one of the patterns. The rewriter is automatically 199 // notified of any necessary changes, so there is nothing else to do here. 200 changed |= succeeded(matcher.matchAndRewrite(op, *this)); 201 } 202 203 // After applying patterns, make sure that the CFG of each of the regions is 204 // kept up to date. 205 changed |= succeeded(simplifyRegions(*this, regions)); 206 } while (changed && ++i < maxIterations); 207 // Whether the rewrite converges, i.e. wasn't changed in the last iteration. 208 return !changed; 209 } 210 211 /// Rewrite the regions of the specified operation, which must be isolated from 212 /// above, by repeatedly applying the highest benefit patterns in a greedy 213 /// work-list driven manner. Return success if no more patterns can be matched 214 /// in the result operation regions. Note: This does not apply patterns to the 215 /// top-level operation itself. 216 /// 217 LogicalResult 218 mlir::applyPatternsAndFoldGreedily(Operation *op, 219 const FrozenRewritePatternList &patterns) { 220 return applyPatternsAndFoldGreedily(op, patterns, maxPatternMatchIterations); 221 } 222 LogicalResult 223 mlir::applyPatternsAndFoldGreedily(Operation *op, 224 const FrozenRewritePatternList &patterns, 225 unsigned maxIterations) { 226 return applyPatternsAndFoldGreedily(op->getRegions(), patterns, 227 maxIterations); 228 } 229 /// Rewrite the given regions, which must be isolated from above. 230 LogicalResult 231 mlir::applyPatternsAndFoldGreedily(MutableArrayRef<Region> regions, 232 const FrozenRewritePatternList &patterns) { 233 return applyPatternsAndFoldGreedily(regions, patterns, 234 maxPatternMatchIterations); 235 } 236 LogicalResult 237 mlir::applyPatternsAndFoldGreedily(MutableArrayRef<Region> regions, 238 const FrozenRewritePatternList &patterns, 239 unsigned maxIterations) { 240 if (regions.empty()) 241 return success(); 242 243 // The top-level operation must be known to be isolated from above to 244 // prevent performing canonicalizations on operations defined at or above 245 // the region containing 'op'. 246 auto regionIsIsolated = [](Region ®ion) { 247 return region.getParentOp()->hasTrait<OpTrait::IsIsolatedFromAbove>(); 248 }; 249 (void)regionIsIsolated; 250 assert(llvm::all_of(regions, regionIsIsolated) && 251 "patterns can only be applied to operations IsolatedFromAbove"); 252 253 // Start the pattern driver. 254 GreedyPatternRewriteDriver driver(regions[0].getContext(), patterns); 255 bool converged = driver.simplify(regions, maxIterations); 256 LLVM_DEBUG(if (!converged) { 257 llvm::dbgs() << "The pattern rewrite doesn't converge after scanning " 258 << maxIterations << " times\n"; 259 }); 260 return success(converged); 261 } 262 263 //===----------------------------------------------------------------------===// 264 // OpPatternRewriteDriver 265 //===----------------------------------------------------------------------===// 266 267 namespace { 268 /// This is a simple driver for the PatternMatcher to apply patterns and perform 269 /// folding on a single op. It repeatedly applies locally optimal patterns. 270 class OpPatternRewriteDriver : public PatternRewriter { 271 public: 272 explicit OpPatternRewriteDriver(MLIRContext *ctx, 273 const FrozenRewritePatternList &patterns) 274 : PatternRewriter(ctx), matcher(patterns), folder(ctx) { 275 // Apply a simple cost model based solely on pattern benefit. 276 matcher.applyDefaultCostModel(); 277 } 278 279 /// Performs the rewrites and folding only on `op`. The simplification 280 /// converges if the op is erased as a result of being folded, replaced, or 281 /// dead, or no more changes happen in an iteration. Returns success if the 282 /// rewrite converges in `maxIterations`. `erased` is set to true if `op` gets 283 /// erased. 284 LogicalResult simplifyLocally(Operation *op, int maxIterations, bool &erased); 285 286 // These are hooks implemented for PatternRewriter. 287 protected: 288 /// If an operation is about to be removed, mark it so that we can let clients 289 /// know. 290 void notifyOperationRemoved(Operation *op) override { 291 opErasedViaPatternRewrites = true; 292 } 293 294 // When a root is going to be replaced, its removal will be notified as well. 295 // So there is nothing to do here. 296 void notifyRootReplaced(Operation *op) override {} 297 298 private: 299 /// The low-level pattern applicator. 300 PatternApplicator matcher; 301 302 /// Non-pattern based folder for operations. 303 OperationFolder folder; 304 305 /// Set to true if the operation has been erased via pattern rewrites. 306 bool opErasedViaPatternRewrites = false; 307 }; 308 309 } // anonymous namespace 310 311 LogicalResult OpPatternRewriteDriver::simplifyLocally(Operation *op, 312 int maxIterations, 313 bool &erased) { 314 bool changed = false; 315 erased = false; 316 opErasedViaPatternRewrites = false; 317 int i = 0; 318 // Iterate until convergence or until maxIterations. Deletion of the op as 319 // a result of being dead or folded is convergence. 320 do { 321 changed = false; 322 323 // If the operation is trivially dead - remove it. 324 if (isOpTriviallyDead(op)) { 325 op->erase(); 326 erased = true; 327 return success(); 328 } 329 330 // Try to fold this op. 331 bool inPlaceUpdate; 332 if (succeeded(folder.tryToFold(op, /*processGeneratedConstants=*/nullptr, 333 /*preReplaceAction=*/nullptr, 334 &inPlaceUpdate))) { 335 changed = true; 336 if (!inPlaceUpdate) { 337 erased = true; 338 return success(); 339 } 340 } 341 342 // Try to match one of the patterns. The rewriter is automatically 343 // notified of any necessary changes, so there is nothing else to do here. 344 changed |= succeeded(matcher.matchAndRewrite(op, *this)); 345 if ((erased = opErasedViaPatternRewrites)) 346 return success(); 347 } while (changed && ++i < maxIterations); 348 349 // Whether the rewrite converges, i.e. wasn't changed in the last iteration. 350 return failure(changed); 351 } 352 353 /// Rewrites only `op` using the supplied canonicalization patterns and 354 /// folding. `erased` is set to true if the op is erased as a result of being 355 /// folded, replaced, or dead. 356 LogicalResult mlir::applyOpPatternsAndFold( 357 Operation *op, const FrozenRewritePatternList &patterns, bool *erased) { 358 // Start the pattern driver. 359 OpPatternRewriteDriver driver(op->getContext(), patterns); 360 bool opErased; 361 LogicalResult converged = 362 driver.simplifyLocally(op, maxPatternMatchIterations, opErased); 363 if (erased) 364 *erased = opErased; 365 LLVM_DEBUG(if (failed(converged)) { 366 llvm::dbgs() << "The pattern rewrite doesn't converge after scanning " 367 << maxPatternMatchIterations << " times"; 368 }); 369 return converged; 370 } 371