Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 1 | //===- VPlan.cpp - Vectorizer Plan ----------------------------------------===// |
| 2 | // |
| 3 | // The LLVM Compiler Infrastructure |
| 4 | // |
| 5 | // This file is distributed under the University of Illinois Open Source |
| 6 | // License. See LICENSE.TXT for details. |
| 7 | // |
| 8 | //===----------------------------------------------------------------------===// |
| 9 | /// |
| 10 | /// \file |
| 11 | /// This is the LLVM vectorization plan. It represents a candidate for |
| 12 | /// vectorization, allowing to plan and optimize how to vectorize a given loop |
| 13 | /// before generating LLVM-IR. |
| 14 | /// The vectorizer uses vectorization plans to estimate the costs of potential |
| 15 | /// candidates and if profitable to execute the desired plan, generating vector |
| 16 | /// LLVM-IR code. |
| 17 | /// |
| 18 | //===----------------------------------------------------------------------===// |
| 19 | |
| 20 | #include "VPlan.h" |
Diego Caballero | 2a34ac8 | 2018-07-30 21:33:31 +0000 | [diff] [blame] | 21 | #include "VPlanDominatorTree.h" |
Eugene Zelenko | 6cadde7 | 2017-10-17 21:27:42 +0000 | [diff] [blame] | 22 | #include "llvm/ADT/DepthFirstIterator.h" |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 23 | #include "llvm/ADT/PostOrderIterator.h" |
Eugene Zelenko | 6cadde7 | 2017-10-17 21:27:42 +0000 | [diff] [blame] | 24 | #include "llvm/ADT/SmallVector.h" |
| 25 | #include "llvm/ADT/Twine.h" |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 26 | #include "llvm/Analysis/LoopInfo.h" |
| 27 | #include "llvm/IR/BasicBlock.h" |
Eugene Zelenko | 6cadde7 | 2017-10-17 21:27:42 +0000 | [diff] [blame] | 28 | #include "llvm/IR/CFG.h" |
Eugene Zelenko | 6cadde7 | 2017-10-17 21:27:42 +0000 | [diff] [blame] | 29 | #include "llvm/IR/InstrTypes.h" |
| 30 | #include "llvm/IR/Instruction.h" |
| 31 | #include "llvm/IR/Instructions.h" |
| 32 | #include "llvm/IR/Type.h" |
| 33 | #include "llvm/IR/Value.h" |
| 34 | #include "llvm/Support/Casting.h" |
| 35 | #include "llvm/Support/Debug.h" |
| 36 | #include "llvm/Support/ErrorHandling.h" |
Diego Caballero | 2a34ac8 | 2018-07-30 21:33:31 +0000 | [diff] [blame] | 37 | #include "llvm/Support/GenericDomTreeConstruction.h" |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 38 | #include "llvm/Support/GraphWriter.h" |
Eugene Zelenko | 6cadde7 | 2017-10-17 21:27:42 +0000 | [diff] [blame] | 39 | #include "llvm/Support/raw_ostream.h" |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 40 | #include "llvm/Transforms/Utils/BasicBlockUtils.h" |
Eugene Zelenko | 6cadde7 | 2017-10-17 21:27:42 +0000 | [diff] [blame] | 41 | #include <cassert> |
| 42 | #include <iterator> |
| 43 | #include <string> |
| 44 | #include <vector> |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 45 | |
| 46 | using namespace llvm; |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 47 | extern cl::opt<bool> EnableVPlanNativePath; |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 48 | |
| 49 | #define DEBUG_TYPE "vplan" |
| 50 | |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 51 | raw_ostream &llvm::operator<<(raw_ostream &OS, const VPValue &V) { |
| 52 | if (const VPInstruction *Instr = dyn_cast<VPInstruction>(&V)) |
| 53 | Instr->print(OS); |
| 54 | else |
| 55 | V.printAsOperand(OS); |
| 56 | return OS; |
| 57 | } |
| 58 | |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 59 | /// \return the VPBasicBlock that is the entry of Block, possibly indirectly. |
| 60 | const VPBasicBlock *VPBlockBase::getEntryBasicBlock() const { |
| 61 | const VPBlockBase *Block = this; |
| 62 | while (const VPRegionBlock *Region = dyn_cast<VPRegionBlock>(Block)) |
| 63 | Block = Region->getEntry(); |
| 64 | return cast<VPBasicBlock>(Block); |
| 65 | } |
| 66 | |
| 67 | VPBasicBlock *VPBlockBase::getEntryBasicBlock() { |
| 68 | VPBlockBase *Block = this; |
| 69 | while (VPRegionBlock *Region = dyn_cast<VPRegionBlock>(Block)) |
| 70 | Block = Region->getEntry(); |
| 71 | return cast<VPBasicBlock>(Block); |
| 72 | } |
| 73 | |
| 74 | /// \return the VPBasicBlock that is the exit of Block, possibly indirectly. |
| 75 | const VPBasicBlock *VPBlockBase::getExitBasicBlock() const { |
| 76 | const VPBlockBase *Block = this; |
| 77 | while (const VPRegionBlock *Region = dyn_cast<VPRegionBlock>(Block)) |
| 78 | Block = Region->getExit(); |
| 79 | return cast<VPBasicBlock>(Block); |
| 80 | } |
| 81 | |
| 82 | VPBasicBlock *VPBlockBase::getExitBasicBlock() { |
| 83 | VPBlockBase *Block = this; |
| 84 | while (VPRegionBlock *Region = dyn_cast<VPRegionBlock>(Block)) |
| 85 | Block = Region->getExit(); |
| 86 | return cast<VPBasicBlock>(Block); |
| 87 | } |
| 88 | |
| 89 | VPBlockBase *VPBlockBase::getEnclosingBlockWithSuccessors() { |
| 90 | if (!Successors.empty() || !Parent) |
| 91 | return this; |
| 92 | assert(Parent->getExit() == this && |
| 93 | "Block w/o successors not the exit of its parent."); |
| 94 | return Parent->getEnclosingBlockWithSuccessors(); |
| 95 | } |
| 96 | |
| 97 | VPBlockBase *VPBlockBase::getEnclosingBlockWithPredecessors() { |
| 98 | if (!Predecessors.empty() || !Parent) |
| 99 | return this; |
| 100 | assert(Parent->getEntry() == this && |
| 101 | "Block w/o predecessors not the entry of its parent."); |
| 102 | return Parent->getEnclosingBlockWithPredecessors(); |
| 103 | } |
| 104 | |
| 105 | void VPBlockBase::deleteCFG(VPBlockBase *Entry) { |
| 106 | SmallVector<VPBlockBase *, 8> Blocks; |
| 107 | for (VPBlockBase *Block : depth_first(Entry)) |
| 108 | Blocks.push_back(Block); |
| 109 | |
| 110 | for (VPBlockBase *Block : Blocks) |
| 111 | delete Block; |
| 112 | } |
| 113 | |
| 114 | BasicBlock * |
| 115 | VPBasicBlock::createEmptyBasicBlock(VPTransformState::CFGState &CFG) { |
| 116 | // BB stands for IR BasicBlocks. VPBB stands for VPlan VPBasicBlocks. |
| 117 | // Pred stands for Predessor. Prev stands for Previous - last visited/created. |
| 118 | BasicBlock *PrevBB = CFG.PrevBB; |
| 119 | BasicBlock *NewBB = BasicBlock::Create(PrevBB->getContext(), getName(), |
| 120 | PrevBB->getParent(), CFG.LastBB); |
Nicola Zaghen | d34e60c | 2018-05-14 12:53:11 +0000 | [diff] [blame] | 121 | LLVM_DEBUG(dbgs() << "LV: created " << NewBB->getName() << '\n'); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 122 | |
| 123 | // Hook up the new basic block to its predecessors. |
| 124 | for (VPBlockBase *PredVPBlock : getHierarchicalPredecessors()) { |
| 125 | VPBasicBlock *PredVPBB = PredVPBlock->getExitBasicBlock(); |
| 126 | auto &PredVPSuccessors = PredVPBB->getSuccessors(); |
| 127 | BasicBlock *PredBB = CFG.VPBB2IRBB[PredVPBB]; |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 128 | |
| 129 | // In outer loop vectorization scenario, the predecessor BBlock may not yet |
| 130 | // be visited(backedge). Mark the VPBasicBlock for fixup at the end of |
| 131 | // vectorization. We do not encounter this case in inner loop vectorization |
| 132 | // as we start out by building a loop skeleton with the vector loop header |
| 133 | // and latch blocks. As a result, we never enter this function for the |
| 134 | // header block in the non VPlan-native path. |
| 135 | if (!PredBB) { |
| 136 | assert(EnableVPlanNativePath && |
| 137 | "Unexpected null predecessor in non VPlan-native path"); |
| 138 | CFG.VPBBsToFix.push_back(PredVPBB); |
| 139 | continue; |
| 140 | } |
| 141 | |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 142 | assert(PredBB && "Predecessor basic-block not found building successor."); |
| 143 | auto *PredBBTerminator = PredBB->getTerminator(); |
Nicola Zaghen | d34e60c | 2018-05-14 12:53:11 +0000 | [diff] [blame] | 144 | LLVM_DEBUG(dbgs() << "LV: draw edge from" << PredBB->getName() << '\n'); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 145 | if (isa<UnreachableInst>(PredBBTerminator)) { |
| 146 | assert(PredVPSuccessors.size() == 1 && |
| 147 | "Predecessor ending w/o branch must have single successor."); |
| 148 | PredBBTerminator->eraseFromParent(); |
| 149 | BranchInst::Create(NewBB, PredBB); |
| 150 | } else { |
| 151 | assert(PredVPSuccessors.size() == 2 && |
| 152 | "Predecessor ending with branch must have two successors."); |
| 153 | unsigned idx = PredVPSuccessors.front() == this ? 0 : 1; |
| 154 | assert(!PredBBTerminator->getSuccessor(idx) && |
| 155 | "Trying to reset an existing successor block."); |
| 156 | PredBBTerminator->setSuccessor(idx, NewBB); |
| 157 | } |
| 158 | } |
| 159 | return NewBB; |
| 160 | } |
| 161 | |
| 162 | void VPBasicBlock::execute(VPTransformState *State) { |
| 163 | bool Replica = State->Instance && |
| 164 | !(State->Instance->Part == 0 && State->Instance->Lane == 0); |
| 165 | VPBasicBlock *PrevVPBB = State->CFG.PrevVPBB; |
| 166 | VPBlockBase *SingleHPred = nullptr; |
| 167 | BasicBlock *NewBB = State->CFG.PrevBB; // Reuse it if possible. |
| 168 | |
| 169 | // 1. Create an IR basic block, or reuse the last one if possible. |
| 170 | // The last IR basic block is reused, as an optimization, in three cases: |
| 171 | // A. the first VPBB reuses the loop header BB - when PrevVPBB is null; |
| 172 | // B. when the current VPBB has a single (hierarchical) predecessor which |
| 173 | // is PrevVPBB and the latter has a single (hierarchical) successor; and |
| 174 | // C. when the current VPBB is an entry of a region replica - where PrevVPBB |
| 175 | // is the exit of this region from a previous instance, or the predecessor |
| 176 | // of this region. |
| 177 | if (PrevVPBB && /* A */ |
| 178 | !((SingleHPred = getSingleHierarchicalPredecessor()) && |
| 179 | SingleHPred->getExitBasicBlock() == PrevVPBB && |
| 180 | PrevVPBB->getSingleHierarchicalSuccessor()) && /* B */ |
| 181 | !(Replica && getPredecessors().empty())) { /* C */ |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 182 | NewBB = createEmptyBasicBlock(State->CFG); |
| 183 | State->Builder.SetInsertPoint(NewBB); |
| 184 | // Temporarily terminate with unreachable until CFG is rewired. |
| 185 | UnreachableInst *Terminator = State->Builder.CreateUnreachable(); |
| 186 | State->Builder.SetInsertPoint(Terminator); |
| 187 | // Register NewBB in its loop. In innermost loops its the same for all BB's. |
| 188 | Loop *L = State->LI->getLoopFor(State->CFG.LastBB); |
| 189 | L->addBasicBlockToLoop(NewBB, *State->LI); |
| 190 | State->CFG.PrevBB = NewBB; |
| 191 | } |
| 192 | |
| 193 | // 2. Fill the IR basic block with IR instructions. |
Nicola Zaghen | d34e60c | 2018-05-14 12:53:11 +0000 | [diff] [blame] | 194 | LLVM_DEBUG(dbgs() << "LV: vectorizing VPBB:" << getName() |
| 195 | << " in BB:" << NewBB->getName() << '\n'); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 196 | |
| 197 | State->CFG.VPBB2IRBB[this] = NewBB; |
| 198 | State->CFG.PrevVPBB = this; |
| 199 | |
| 200 | for (VPRecipeBase &Recipe : Recipes) |
| 201 | Recipe.execute(*State); |
| 202 | |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 203 | VPValue *CBV; |
| 204 | if (EnableVPlanNativePath && (CBV = getCondBit())) { |
| 205 | Value *IRCBV = CBV->getUnderlyingValue(); |
| 206 | assert(IRCBV && "Unexpected null underlying value for condition bit"); |
| 207 | |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 208 | // Condition bit value in a VPBasicBlock is used as the branch selector. In |
| 209 | // the VPlan-native path case, since all branches are uniform we generate a |
| 210 | // branch instruction using the condition value from vector lane 0 and dummy |
| 211 | // successors. The successors are fixed later when the successor blocks are |
| 212 | // visited. |
| 213 | Value *NewCond = State->Callback.getOrCreateVectorValues(IRCBV, 0); |
| 214 | NewCond = State->Builder.CreateExtractElement(NewCond, |
| 215 | State->Builder.getInt32(0)); |
| 216 | |
| 217 | // Replace the temporary unreachable terminator with the new conditional |
| 218 | // branch. |
| 219 | auto *CurrentTerminator = NewBB->getTerminator(); |
| 220 | assert(isa<UnreachableInst>(CurrentTerminator) && |
| 221 | "Expected to replace unreachable terminator with conditional " |
| 222 | "branch."); |
| 223 | auto *CondBr = BranchInst::Create(NewBB, nullptr, NewCond); |
| 224 | CondBr->setSuccessor(0, nullptr); |
| 225 | ReplaceInstWithInst(CurrentTerminator, CondBr); |
| 226 | } |
| 227 | |
Nicola Zaghen | d34e60c | 2018-05-14 12:53:11 +0000 | [diff] [blame] | 228 | LLVM_DEBUG(dbgs() << "LV: filled BB:" << *NewBB); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 229 | } |
| 230 | |
| 231 | void VPRegionBlock::execute(VPTransformState *State) { |
| 232 | ReversePostOrderTraversal<VPBlockBase *> RPOT(Entry); |
| 233 | |
| 234 | if (!isReplicator()) { |
| 235 | // Visit the VPBlocks connected to "this", starting from it. |
| 236 | for (VPBlockBase *Block : RPOT) { |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 237 | if (EnableVPlanNativePath) { |
| 238 | // The inner loop vectorization path does not represent loop preheader |
| 239 | // and exit blocks as part of the VPlan. In the VPlan-native path, skip |
| 240 | // vectorizing loop preheader block. In future, we may replace this |
| 241 | // check with the check for loop preheader. |
| 242 | if (Block->getNumPredecessors() == 0) |
| 243 | continue; |
| 244 | |
| 245 | // Skip vectorizing loop exit block. In future, we may replace this |
| 246 | // check with the check for loop exit. |
| 247 | if (Block->getNumSuccessors() == 0) |
| 248 | continue; |
| 249 | } |
| 250 | |
Nicola Zaghen | d34e60c | 2018-05-14 12:53:11 +0000 | [diff] [blame] | 251 | LLVM_DEBUG(dbgs() << "LV: VPBlock in RPO " << Block->getName() << '\n'); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 252 | Block->execute(State); |
| 253 | } |
| 254 | return; |
| 255 | } |
| 256 | |
| 257 | assert(!State->Instance && "Replicating a Region with non-null instance."); |
| 258 | |
| 259 | // Enter replicating mode. |
| 260 | State->Instance = {0, 0}; |
| 261 | |
| 262 | for (unsigned Part = 0, UF = State->UF; Part < UF; ++Part) { |
| 263 | State->Instance->Part = Part; |
| 264 | for (unsigned Lane = 0, VF = State->VF; Lane < VF; ++Lane) { |
| 265 | State->Instance->Lane = Lane; |
| 266 | // Visit the VPBlocks connected to \p this, starting from it. |
| 267 | for (VPBlockBase *Block : RPOT) { |
Nicola Zaghen | d34e60c | 2018-05-14 12:53:11 +0000 | [diff] [blame] | 268 | LLVM_DEBUG(dbgs() << "LV: VPBlock in RPO " << Block->getName() << '\n'); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 269 | Block->execute(State); |
| 270 | } |
| 271 | } |
| 272 | } |
| 273 | |
| 274 | // Exit replicating mode. |
| 275 | State->Instance.reset(); |
| 276 | } |
| 277 | |
Florian Hahn | 7591e4e | 2018-06-18 11:34:17 +0000 | [diff] [blame] | 278 | void VPRecipeBase::insertBefore(VPRecipeBase *InsertPos) { |
Florian Hahn | 3bcff36 | 2018-06-18 13:51:28 +0000 | [diff] [blame] | 279 | Parent = InsertPos->getParent(); |
| 280 | Parent->getRecipeList().insert(InsertPos->getIterator(), this); |
Florian Hahn | 7591e4e | 2018-06-18 11:34:17 +0000 | [diff] [blame] | 281 | } |
| 282 | |
Florian Hahn | 63cbcf9 | 2018-06-18 15:18:48 +0000 | [diff] [blame] | 283 | iplist<VPRecipeBase>::iterator VPRecipeBase::eraseFromParent() { |
| 284 | return getParent()->getRecipeList().erase(getIterator()); |
| 285 | } |
| 286 | |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 287 | void VPInstruction::generateInstruction(VPTransformState &State, |
| 288 | unsigned Part) { |
| 289 | IRBuilder<> &Builder = State.Builder; |
| 290 | |
| 291 | if (Instruction::isBinaryOp(getOpcode())) { |
| 292 | Value *A = State.get(getOperand(0), Part); |
| 293 | Value *B = State.get(getOperand(1), Part); |
| 294 | Value *V = Builder.CreateBinOp((Instruction::BinaryOps)getOpcode(), A, B); |
| 295 | State.set(this, V, Part); |
| 296 | return; |
| 297 | } |
| 298 | |
| 299 | switch (getOpcode()) { |
| 300 | case VPInstruction::Not: { |
| 301 | Value *A = State.get(getOperand(0), Part); |
| 302 | Value *V = Builder.CreateNot(A); |
| 303 | State.set(this, V, Part); |
| 304 | break; |
| 305 | } |
Ayal Zaks | b0b5312 | 2018-10-18 15:03:15 +0000 | [diff] [blame] | 306 | case VPInstruction::ICmpULE: { |
| 307 | Value *IV = State.get(getOperand(0), Part); |
| 308 | Value *TC = State.get(getOperand(1), Part); |
| 309 | Value *V = Builder.CreateICmpULE(IV, TC); |
| 310 | State.set(this, V, Part); |
| 311 | break; |
| 312 | } |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 313 | default: |
| 314 | llvm_unreachable("Unsupported opcode for instruction"); |
| 315 | } |
| 316 | } |
| 317 | |
| 318 | void VPInstruction::execute(VPTransformState &State) { |
| 319 | assert(!State.Instance && "VPInstruction executing an Instance"); |
| 320 | for (unsigned Part = 0; Part < State.UF; ++Part) |
| 321 | generateInstruction(State, Part); |
| 322 | } |
| 323 | |
| 324 | void VPInstruction::print(raw_ostream &O, const Twine &Indent) const { |
| 325 | O << " +\n" << Indent << "\"EMIT "; |
| 326 | print(O); |
| 327 | O << "\\l\""; |
| 328 | } |
| 329 | |
| 330 | void VPInstruction::print(raw_ostream &O) const { |
| 331 | printAsOperand(O); |
| 332 | O << " = "; |
| 333 | |
| 334 | switch (getOpcode()) { |
| 335 | case VPInstruction::Not: |
| 336 | O << "not"; |
| 337 | break; |
Ayal Zaks | b0b5312 | 2018-10-18 15:03:15 +0000 | [diff] [blame] | 338 | case VPInstruction::ICmpULE: |
| 339 | O << "icmp ule"; |
| 340 | break; |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 341 | default: |
| 342 | O << Instruction::getOpcodeName(getOpcode()); |
| 343 | } |
| 344 | |
| 345 | for (const VPValue *Operand : operands()) { |
| 346 | O << " "; |
| 347 | Operand->printAsOperand(O); |
| 348 | } |
| 349 | } |
| 350 | |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 351 | /// Generate the code inside the body of the vectorized loop. Assumes a single |
| 352 | /// LoopVectorBody basic-block was created for this. Introduce additional |
| 353 | /// basic-blocks as needed, and fill them all. |
| 354 | void VPlan::execute(VPTransformState *State) { |
Ayal Zaks | b0b5312 | 2018-10-18 15:03:15 +0000 | [diff] [blame] | 355 | // -1. Check if the backedge taken count is needed, and if so build it. |
| 356 | if (BackedgeTakenCount && BackedgeTakenCount->getNumUsers()) { |
| 357 | Value *TC = State->TripCount; |
| 358 | IRBuilder<> Builder(State->CFG.PrevBB->getTerminator()); |
| 359 | auto *TCMO = Builder.CreateSub(TC, ConstantInt::get(TC->getType(), 1), |
| 360 | "trip.count.minus.1"); |
| 361 | Value2VPValue[TCMO] = BackedgeTakenCount; |
| 362 | } |
| 363 | |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 364 | // 0. Set the reverse mapping from VPValues to Values for code generation. |
| 365 | for (auto &Entry : Value2VPValue) |
| 366 | State->VPValue2Value[Entry.second] = Entry.first; |
| 367 | |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 368 | BasicBlock *VectorPreHeaderBB = State->CFG.PrevBB; |
| 369 | BasicBlock *VectorHeaderBB = VectorPreHeaderBB->getSingleSuccessor(); |
| 370 | assert(VectorHeaderBB && "Loop preheader does not have a single successor."); |
| 371 | BasicBlock *VectorLatchBB = VectorHeaderBB; |
| 372 | |
| 373 | // 1. Make room to generate basic-blocks inside loop body if needed. |
| 374 | VectorLatchBB = VectorHeaderBB->splitBasicBlock( |
| 375 | VectorHeaderBB->getFirstInsertionPt(), "vector.body.latch"); |
| 376 | Loop *L = State->LI->getLoopFor(VectorHeaderBB); |
| 377 | L->addBasicBlockToLoop(VectorLatchBB, *State->LI); |
| 378 | // Remove the edge between Header and Latch to allow other connections. |
| 379 | // Temporarily terminate with unreachable until CFG is rewired. |
| 380 | // Note: this asserts the generated code's assumption that |
| 381 | // getFirstInsertionPt() can be dereferenced into an Instruction. |
| 382 | VectorHeaderBB->getTerminator()->eraseFromParent(); |
| 383 | State->Builder.SetInsertPoint(VectorHeaderBB); |
| 384 | UnreachableInst *Terminator = State->Builder.CreateUnreachable(); |
| 385 | State->Builder.SetInsertPoint(Terminator); |
| 386 | |
| 387 | // 2. Generate code in loop body. |
| 388 | State->CFG.PrevVPBB = nullptr; |
| 389 | State->CFG.PrevBB = VectorHeaderBB; |
| 390 | State->CFG.LastBB = VectorLatchBB; |
| 391 | |
| 392 | for (VPBlockBase *Block : depth_first(Entry)) |
| 393 | Block->execute(State); |
| 394 | |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 395 | // Setup branch terminator successors for VPBBs in VPBBsToFix based on |
| 396 | // VPBB's successors. |
| 397 | for (auto VPBB : State->CFG.VPBBsToFix) { |
| 398 | assert(EnableVPlanNativePath && |
| 399 | "Unexpected VPBBsToFix in non VPlan-native path"); |
| 400 | BasicBlock *BB = State->CFG.VPBB2IRBB[VPBB]; |
| 401 | assert(BB && "Unexpected null basic block for VPBB"); |
| 402 | |
| 403 | unsigned Idx = 0; |
| 404 | auto *BBTerminator = BB->getTerminator(); |
| 405 | |
| 406 | for (VPBlockBase *SuccVPBlock : VPBB->getHierarchicalSuccessors()) { |
| 407 | VPBasicBlock *SuccVPBB = SuccVPBlock->getEntryBasicBlock(); |
| 408 | BBTerminator->setSuccessor(Idx, State->CFG.VPBB2IRBB[SuccVPBB]); |
| 409 | ++Idx; |
| 410 | } |
| 411 | } |
| 412 | |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 413 | // 3. Merge the temporary latch created with the last basic-block filled. |
| 414 | BasicBlock *LastBB = State->CFG.PrevBB; |
| 415 | // Connect LastBB to VectorLatchBB to facilitate their merge. |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 416 | assert((EnableVPlanNativePath || |
| 417 | isa<UnreachableInst>(LastBB->getTerminator())) && |
| 418 | "Expected InnerLoop VPlan CFG to terminate with unreachable"); |
| 419 | assert((!EnableVPlanNativePath || isa<BranchInst>(LastBB->getTerminator())) && |
| 420 | "Expected VPlan CFG to terminate with branch in NativePath"); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 421 | LastBB->getTerminator()->eraseFromParent(); |
| 422 | BranchInst::Create(VectorLatchBB, LastBB); |
| 423 | |
| 424 | // Merge LastBB with Latch. |
| 425 | bool Merged = MergeBlockIntoPredecessor(VectorLatchBB, nullptr, State->LI); |
| 426 | (void)Merged; |
| 427 | assert(Merged && "Could not merge last basic block with latch."); |
| 428 | VectorLatchBB = LastBB; |
| 429 | |
Hideki Saito | ea7f303 | 2018-09-14 00:36:00 +0000 | [diff] [blame] | 430 | // We do not attempt to preserve DT for outer loop vectorization currently. |
| 431 | if (!EnableVPlanNativePath) |
| 432 | updateDominatorTree(State->DT, VectorPreHeaderBB, VectorLatchBB); |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 433 | } |
| 434 | |
| 435 | void VPlan::updateDominatorTree(DominatorTree *DT, BasicBlock *LoopPreHeaderBB, |
| 436 | BasicBlock *LoopLatchBB) { |
| 437 | BasicBlock *LoopHeaderBB = LoopPreHeaderBB->getSingleSuccessor(); |
| 438 | assert(LoopHeaderBB && "Loop preheader does not have a single successor."); |
| 439 | DT->addNewBlock(LoopHeaderBB, LoopPreHeaderBB); |
| 440 | // The vector body may be more than a single basic-block by this point. |
| 441 | // Update the dominator tree information inside the vector body by propagating |
| 442 | // it from header to latch, expecting only triangular control-flow, if any. |
| 443 | BasicBlock *PostDomSucc = nullptr; |
| 444 | for (auto *BB = LoopHeaderBB; BB != LoopLatchBB; BB = PostDomSucc) { |
| 445 | // Get the list of successors of this block. |
| 446 | std::vector<BasicBlock *> Succs(succ_begin(BB), succ_end(BB)); |
| 447 | assert(Succs.size() <= 2 && |
| 448 | "Basic block in vector loop has more than 2 successors."); |
| 449 | PostDomSucc = Succs[0]; |
| 450 | if (Succs.size() == 1) { |
| 451 | assert(PostDomSucc->getSinglePredecessor() && |
| 452 | "PostDom successor has more than one predecessor."); |
| 453 | DT->addNewBlock(PostDomSucc, BB); |
| 454 | continue; |
| 455 | } |
| 456 | BasicBlock *InterimSucc = Succs[1]; |
| 457 | if (PostDomSucc->getSingleSuccessor() == InterimSucc) { |
| 458 | PostDomSucc = Succs[1]; |
| 459 | InterimSucc = Succs[0]; |
| 460 | } |
| 461 | assert(InterimSucc->getSingleSuccessor() == PostDomSucc && |
| 462 | "One successor of a basic block does not lead to the other."); |
| 463 | assert(InterimSucc->getSinglePredecessor() && |
| 464 | "Interim successor has more than one predecessor."); |
Vedant Kumar | e0b5f86 | 2018-05-10 23:01:54 +0000 | [diff] [blame] | 465 | assert(pred_size(PostDomSucc) == 2 && |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 466 | "PostDom successor has more than two predecessors."); |
| 467 | DT->addNewBlock(InterimSucc, BB); |
| 468 | DT->addNewBlock(PostDomSucc, BB); |
| 469 | } |
| 470 | } |
| 471 | |
| 472 | const Twine VPlanPrinter::getUID(const VPBlockBase *Block) { |
| 473 | return (isa<VPRegionBlock>(Block) ? "cluster_N" : "N") + |
| 474 | Twine(getOrCreateBID(Block)); |
| 475 | } |
| 476 | |
| 477 | const Twine VPlanPrinter::getOrCreateName(const VPBlockBase *Block) { |
| 478 | const std::string &Name = Block->getName(); |
| 479 | if (!Name.empty()) |
| 480 | return Name; |
| 481 | return "VPB" + Twine(getOrCreateBID(Block)); |
| 482 | } |
| 483 | |
| 484 | void VPlanPrinter::dump() { |
| 485 | Depth = 1; |
| 486 | bumpIndent(0); |
| 487 | OS << "digraph VPlan {\n"; |
| 488 | OS << "graph [labelloc=t, fontsize=30; label=\"Vectorization Plan"; |
| 489 | if (!Plan.getName().empty()) |
| 490 | OS << "\\n" << DOT::EscapeString(Plan.getName()); |
Ayal Zaks | b0b5312 | 2018-10-18 15:03:15 +0000 | [diff] [blame] | 491 | if (!Plan.Value2VPValue.empty() || Plan.BackedgeTakenCount) { |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 492 | OS << ", where:"; |
Ayal Zaks | b0b5312 | 2018-10-18 15:03:15 +0000 | [diff] [blame] | 493 | if (Plan.BackedgeTakenCount) |
| 494 | OS << "\\n" |
| 495 | << *Plan.getOrCreateBackedgeTakenCount() << " := BackedgeTakenCount"; |
Gil Rapaport | 8b9d1f3 | 2017-11-20 12:01:47 +0000 | [diff] [blame] | 496 | for (auto Entry : Plan.Value2VPValue) { |
| 497 | OS << "\\n" << *Entry.second; |
| 498 | OS << DOT::EscapeString(" := "); |
| 499 | Entry.first->printAsOperand(OS, false); |
| 500 | } |
| 501 | } |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 502 | OS << "\"]\n"; |
| 503 | OS << "node [shape=rect, fontname=Courier, fontsize=30]\n"; |
| 504 | OS << "edge [fontname=Courier, fontsize=30]\n"; |
| 505 | OS << "compound=true\n"; |
| 506 | |
| 507 | for (VPBlockBase *Block : depth_first(Plan.getEntry())) |
| 508 | dumpBlock(Block); |
| 509 | |
| 510 | OS << "}\n"; |
| 511 | } |
| 512 | |
| 513 | void VPlanPrinter::dumpBlock(const VPBlockBase *Block) { |
| 514 | if (const VPBasicBlock *BasicBlock = dyn_cast<VPBasicBlock>(Block)) |
| 515 | dumpBasicBlock(BasicBlock); |
| 516 | else if (const VPRegionBlock *Region = dyn_cast<VPRegionBlock>(Block)) |
| 517 | dumpRegion(Region); |
| 518 | else |
| 519 | llvm_unreachable("Unsupported kind of VPBlock."); |
| 520 | } |
| 521 | |
| 522 | void VPlanPrinter::drawEdge(const VPBlockBase *From, const VPBlockBase *To, |
| 523 | bool Hidden, const Twine &Label) { |
| 524 | // Due to "dot" we print an edge between two regions as an edge between the |
| 525 | // exit basic block and the entry basic of the respective regions. |
| 526 | const VPBlockBase *Tail = From->getExitBasicBlock(); |
| 527 | const VPBlockBase *Head = To->getEntryBasicBlock(); |
| 528 | OS << Indent << getUID(Tail) << " -> " << getUID(Head); |
| 529 | OS << " [ label=\"" << Label << '\"'; |
| 530 | if (Tail != From) |
| 531 | OS << " ltail=" << getUID(From); |
| 532 | if (Head != To) |
| 533 | OS << " lhead=" << getUID(To); |
| 534 | if (Hidden) |
| 535 | OS << "; splines=none"; |
| 536 | OS << "]\n"; |
| 537 | } |
| 538 | |
| 539 | void VPlanPrinter::dumpEdges(const VPBlockBase *Block) { |
| 540 | auto &Successors = Block->getSuccessors(); |
| 541 | if (Successors.size() == 1) |
| 542 | drawEdge(Block, Successors.front(), false, ""); |
| 543 | else if (Successors.size() == 2) { |
| 544 | drawEdge(Block, Successors.front(), false, "T"); |
| 545 | drawEdge(Block, Successors.back(), false, "F"); |
| 546 | } else { |
| 547 | unsigned SuccessorNumber = 0; |
| 548 | for (auto *Successor : Successors) |
| 549 | drawEdge(Block, Successor, false, Twine(SuccessorNumber++)); |
| 550 | } |
| 551 | } |
| 552 | |
| 553 | void VPlanPrinter::dumpBasicBlock(const VPBasicBlock *BasicBlock) { |
| 554 | OS << Indent << getUID(BasicBlock) << " [label =\n"; |
| 555 | bumpIndent(1); |
| 556 | OS << Indent << "\"" << DOT::EscapeString(BasicBlock->getName()) << ":\\n\""; |
| 557 | bumpIndent(1); |
| 558 | for (const VPRecipeBase &Recipe : *BasicBlock) |
| 559 | Recipe.print(OS, Indent); |
Diego Caballero | d095301 | 2018-07-09 15:57:09 +0000 | [diff] [blame] | 560 | |
| 561 | // Dump the condition bit. |
| 562 | const VPValue *CBV = BasicBlock->getCondBit(); |
| 563 | if (CBV) { |
| 564 | OS << " +\n" << Indent << " \"CondBit: "; |
| 565 | if (const VPInstruction *CBI = dyn_cast<VPInstruction>(CBV)) { |
| 566 | CBI->printAsOperand(OS); |
| 567 | OS << " (" << DOT::EscapeString(CBI->getParent()->getName()) << ")\\l\""; |
Renato Golin | d8e7ca4 | 2018-10-10 17:55:21 +0000 | [diff] [blame] | 568 | } else { |
Diego Caballero | d095301 | 2018-07-09 15:57:09 +0000 | [diff] [blame] | 569 | CBV->printAsOperand(OS); |
Renato Golin | d8e7ca4 | 2018-10-10 17:55:21 +0000 | [diff] [blame] | 570 | OS << "\""; |
| 571 | } |
Diego Caballero | d095301 | 2018-07-09 15:57:09 +0000 | [diff] [blame] | 572 | } |
| 573 | |
Ayal Zaks | 1f58dda | 2017-08-27 12:55:46 +0000 | [diff] [blame] | 574 | bumpIndent(-2); |
| 575 | OS << "\n" << Indent << "]\n"; |
| 576 | dumpEdges(BasicBlock); |
| 577 | } |
| 578 | |
| 579 | void VPlanPrinter::dumpRegion(const VPRegionBlock *Region) { |
| 580 | OS << Indent << "subgraph " << getUID(Region) << " {\n"; |
| 581 | bumpIndent(1); |
| 582 | OS << Indent << "fontname=Courier\n" |
| 583 | << Indent << "label=\"" |
| 584 | << DOT::EscapeString(Region->isReplicator() ? "<xVFxUF> " : "<x1> ") |
| 585 | << DOT::EscapeString(Region->getName()) << "\"\n"; |
| 586 | // Dump the blocks of the region. |
| 587 | assert(Region->getEntry() && "Region contains no inner blocks."); |
| 588 | for (const VPBlockBase *Block : depth_first(Region->getEntry())) |
| 589 | dumpBlock(Block); |
| 590 | bumpIndent(-1); |
| 591 | OS << Indent << "}\n"; |
| 592 | dumpEdges(Region); |
| 593 | } |
| 594 | |
| 595 | void VPlanPrinter::printAsIngredient(raw_ostream &O, Value *V) { |
| 596 | std::string IngredientString; |
| 597 | raw_string_ostream RSO(IngredientString); |
| 598 | if (auto *Inst = dyn_cast<Instruction>(V)) { |
| 599 | if (!Inst->getType()->isVoidTy()) { |
| 600 | Inst->printAsOperand(RSO, false); |
| 601 | RSO << " = "; |
| 602 | } |
| 603 | RSO << Inst->getOpcodeName() << " "; |
| 604 | unsigned E = Inst->getNumOperands(); |
| 605 | if (E > 0) { |
| 606 | Inst->getOperand(0)->printAsOperand(RSO, false); |
| 607 | for (unsigned I = 1; I < E; ++I) |
| 608 | Inst->getOperand(I)->printAsOperand(RSO << ", ", false); |
| 609 | } |
| 610 | } else // !Inst |
| 611 | V->printAsOperand(RSO, false); |
| 612 | RSO.flush(); |
| 613 | O << DOT::EscapeString(IngredientString); |
| 614 | } |
Hal Finkel | 7333aa9 | 2017-12-16 01:12:50 +0000 | [diff] [blame] | 615 | |
| 616 | void VPWidenRecipe::print(raw_ostream &O, const Twine &Indent) const { |
| 617 | O << " +\n" << Indent << "\"WIDEN\\l\""; |
| 618 | for (auto &Instr : make_range(Begin, End)) |
| 619 | O << " +\n" << Indent << "\" " << VPlanIngredient(&Instr) << "\\l\""; |
| 620 | } |
| 621 | |
| 622 | void VPWidenIntOrFpInductionRecipe::print(raw_ostream &O, |
| 623 | const Twine &Indent) const { |
| 624 | O << " +\n" << Indent << "\"WIDEN-INDUCTION"; |
| 625 | if (Trunc) { |
| 626 | O << "\\l\""; |
| 627 | O << " +\n" << Indent << "\" " << VPlanIngredient(IV) << "\\l\""; |
| 628 | O << " +\n" << Indent << "\" " << VPlanIngredient(Trunc) << "\\l\""; |
| 629 | } else |
| 630 | O << " " << VPlanIngredient(IV) << "\\l\""; |
| 631 | } |
| 632 | |
| 633 | void VPWidenPHIRecipe::print(raw_ostream &O, const Twine &Indent) const { |
| 634 | O << " +\n" << Indent << "\"WIDEN-PHI " << VPlanIngredient(Phi) << "\\l\""; |
| 635 | } |
| 636 | |
| 637 | void VPBlendRecipe::print(raw_ostream &O, const Twine &Indent) const { |
| 638 | O << " +\n" << Indent << "\"BLEND "; |
| 639 | Phi->printAsOperand(O, false); |
| 640 | O << " ="; |
| 641 | if (!User) { |
| 642 | // Not a User of any mask: not really blending, this is a |
| 643 | // single-predecessor phi. |
| 644 | O << " "; |
| 645 | Phi->getIncomingValue(0)->printAsOperand(O, false); |
| 646 | } else { |
| 647 | for (unsigned I = 0, E = User->getNumOperands(); I < E; ++I) { |
| 648 | O << " "; |
| 649 | Phi->getIncomingValue(I)->printAsOperand(O, false); |
| 650 | O << "/"; |
| 651 | User->getOperand(I)->printAsOperand(O); |
| 652 | } |
| 653 | } |
| 654 | O << "\\l\""; |
| 655 | } |
| 656 | |
| 657 | void VPReplicateRecipe::print(raw_ostream &O, const Twine &Indent) const { |
| 658 | O << " +\n" |
| 659 | << Indent << "\"" << (IsUniform ? "CLONE " : "REPLICATE ") |
| 660 | << VPlanIngredient(Ingredient); |
| 661 | if (AlsoPack) |
| 662 | O << " (S->V)"; |
| 663 | O << "\\l\""; |
| 664 | } |
| 665 | |
| 666 | void VPPredInstPHIRecipe::print(raw_ostream &O, const Twine &Indent) const { |
| 667 | O << " +\n" |
| 668 | << Indent << "\"PHI-PREDICATED-INSTRUCTION " << VPlanIngredient(PredInst) |
| 669 | << "\\l\""; |
| 670 | } |
| 671 | |
| 672 | void VPWidenMemoryInstructionRecipe::print(raw_ostream &O, |
| 673 | const Twine &Indent) const { |
| 674 | O << " +\n" << Indent << "\"WIDEN " << VPlanIngredient(&Instr); |
| 675 | if (User) { |
| 676 | O << ", "; |
| 677 | User->getOperand(0)->printAsOperand(O); |
| 678 | } |
| 679 | O << "\\l\""; |
| 680 | } |
Diego Caballero | 2a34ac8 | 2018-07-30 21:33:31 +0000 | [diff] [blame] | 681 | |
| 682 | template void DomTreeBuilder::Calculate<VPDominatorTree>(VPDominatorTree &DT); |
Florian Hahn | a4dc7fe | 2018-11-13 15:58:18 +0000 | [diff] [blame^] | 683 | |
| 684 | void VPInterleavedAccessInfo::visitRegion(VPRegionBlock *Region, |
| 685 | Old2NewTy &Old2New, |
| 686 | InterleavedAccessInfo &IAI) { |
| 687 | ReversePostOrderTraversal<VPBlockBase *> RPOT(Region->getEntry()); |
| 688 | for (VPBlockBase *Base : RPOT) { |
| 689 | visitBlock(Base, Old2New, IAI); |
| 690 | } |
| 691 | } |
| 692 | |
| 693 | void VPInterleavedAccessInfo::visitBlock(VPBlockBase *Block, Old2NewTy &Old2New, |
| 694 | InterleavedAccessInfo &IAI) { |
| 695 | if (VPBasicBlock *VPBB = dyn_cast<VPBasicBlock>(Block)) { |
| 696 | for (VPRecipeBase &VPI : *VPBB) { |
| 697 | assert(isa<VPInstruction>(&VPI) && "Can only handle VPInstructions"); |
| 698 | auto *VPInst = cast<VPInstruction>(&VPI); |
| 699 | auto *Inst = cast<Instruction>(VPInst->getUnderlyingValue()); |
| 700 | auto *IG = IAI.getInterleaveGroup(Inst); |
| 701 | if (!IG) |
| 702 | continue; |
| 703 | |
| 704 | auto NewIGIter = Old2New.find(IG); |
| 705 | if (NewIGIter == Old2New.end()) |
| 706 | Old2New[IG] = new InterleaveGroup<VPInstruction>( |
| 707 | IG->getFactor(), IG->isReverse(), IG->getAlignment()); |
| 708 | |
| 709 | if (Inst == IG->getInsertPos()) |
| 710 | Old2New[IG]->setInsertPos(VPInst); |
| 711 | |
| 712 | InterleaveGroupMap[VPInst] = Old2New[IG]; |
| 713 | InterleaveGroupMap[VPInst]->insertMember( |
| 714 | VPInst, IG->getIndex(Inst), |
| 715 | IG->isReverse() ? (-1) * int(IG->getFactor()) : IG->getFactor()); |
| 716 | } |
| 717 | } else if (VPRegionBlock *Region = dyn_cast<VPRegionBlock>(Block)) |
| 718 | visitRegion(Region, Old2New, IAI); |
| 719 | else |
| 720 | llvm_unreachable("Unsupported kind of VPBlock."); |
| 721 | } |
| 722 | |
| 723 | VPInterleavedAccessInfo::VPInterleavedAccessInfo(VPlan &Plan, |
| 724 | InterleavedAccessInfo &IAI) { |
| 725 | Old2NewTy Old2New; |
| 726 | visitRegion(cast<VPRegionBlock>(Plan.getEntry()), Old2New, IAI); |
| 727 | } |