1 //===-------- SplitKit.h - Toolkit for splitting live ranges ----*- C++ -*-===// 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 // This file contains the SplitAnalysis class as well as mutator functions for 11 // live range splitting. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #ifndef LLVM_CODEGEN_SPLITKIT_H 16 #define LLVM_CODEGEN_SPLITKIT_H 17 18 #include "llvm/ADT/ArrayRef.h" 19 #include "llvm/ADT/BitVector.h" 20 #include "llvm/ADT/DenseMap.h" 21 #include "llvm/ADT/IndexedMap.h" 22 #include "llvm/ADT/IntervalMap.h" 23 #include "llvm/ADT/SmallPtrSet.h" 24 #include "llvm/CodeGen/SlotIndexes.h" 25 26 namespace llvm { 27 28 class ConnectedVNInfoEqClasses; 29 class LiveInterval; 30 class LiveIntervals; 31 class LiveRangeEdit; 32 class MachineInstr; 33 class MachineLoopInfo; 34 class MachineRegisterInfo; 35 class TargetInstrInfo; 36 class TargetRegisterInfo; 37 class VirtRegMap; 38 class VNInfo; 39 class raw_ostream; 40 41 /// At some point we should just include MachineDominators.h: 42 class MachineDominatorTree; 43 template <class NodeT> class DomTreeNodeBase; 44 typedef DomTreeNodeBase<MachineBasicBlock> MachineDomTreeNode; 45 46 47 /// SplitAnalysis - Analyze a LiveInterval, looking for live range splitting 48 /// opportunities. 49 class SplitAnalysis { 50 public: 51 const MachineFunction &MF; 52 const VirtRegMap &VRM; 53 const LiveIntervals &LIS; 54 const MachineLoopInfo &Loops; 55 const TargetInstrInfo &TII; 56 57 // Sorted slot indexes of using instructions. 58 SmallVector<SlotIndex, 8> UseSlots; 59 60 /// Additional information about basic blocks where the current variable is 61 /// live. Such a block will look like one of these templates: 62 /// 63 /// 1. | o---x | Internal to block. Variable is only live in this block. 64 /// 2. |---x | Live-in, kill. 65 /// 3. | o---| Def, live-out. 66 /// 4. |---x o---| Live-in, kill, def, live-out. Counted by NumGapBlocks. 67 /// 5. |---o---o---| Live-through with uses or defs. 68 /// 6. |-----------| Live-through without uses. Counted by NumThroughBlocks. 69 /// 70 /// Two BlockInfo entries are created for template 4. One for the live-in 71 /// segment, and one for the live-out segment. These entries look as if the 72 /// block were split in the middle where the live range isn't live. 73 /// 74 /// Live-through blocks without any uses don't get BlockInfo entries. They 75 /// are simply listed in ThroughBlocks instead. 76 /// 77 struct BlockInfo { 78 MachineBasicBlock *MBB; 79 SlotIndex FirstUse; ///< First instr using current reg. 80 SlotIndex LastUse; ///< Last instr using current reg. 81 bool LiveThrough; ///< Live in whole block (Templ 5. above). 82 bool LiveIn; ///< Current reg is live in. 83 bool LiveOut; ///< Current reg is live out. 84 85 /// isOneInstr - Returns true when this BlockInfo describes a single 86 /// instruction. isOneInstrBlockInfo87 bool isOneInstr() const { 88 return SlotIndex::isSameInstr(FirstUse, LastUse); 89 } 90 }; 91 92 private: 93 // Current live interval. 94 const LiveInterval *CurLI; 95 96 /// LastSplitPoint - Last legal split point in each basic block in the current 97 /// function. The first entry is the first terminator, the second entry is the 98 /// last valid split point for a variable that is live in to a landing pad 99 /// successor. 100 SmallVector<std::pair<SlotIndex, SlotIndex>, 8> LastSplitPoint; 101 102 /// UseBlocks - Blocks where CurLI has uses. 103 SmallVector<BlockInfo, 8> UseBlocks; 104 105 /// NumGapBlocks - Number of duplicate entries in UseBlocks for blocks where 106 /// the live range has a gap. 107 unsigned NumGapBlocks; 108 109 /// ThroughBlocks - Block numbers where CurLI is live through without uses. 110 BitVector ThroughBlocks; 111 112 /// NumThroughBlocks - Number of live-through blocks. 113 unsigned NumThroughBlocks; 114 115 /// DidRepairRange - analyze was forced to shrinkToUses(). 116 bool DidRepairRange; 117 118 SlotIndex computeLastSplitPoint(unsigned Num); 119 120 // Sumarize statistics by counting instructions using CurLI. 121 void analyzeUses(); 122 123 /// calcLiveBlockInfo - Compute per-block information about CurLI. 124 bool calcLiveBlockInfo(); 125 126 public: 127 SplitAnalysis(const VirtRegMap &vrm, const LiveIntervals &lis, 128 const MachineLoopInfo &mli); 129 130 /// analyze - set CurLI to the specified interval, and analyze how it may be 131 /// split. 132 void analyze(const LiveInterval *li); 133 134 /// didRepairRange() - Returns true if CurLI was invalid and has been repaired 135 /// by analyze(). This really shouldn't happen, but sometimes the coalescer 136 /// can create live ranges that end in mid-air. didRepairRange()137 bool didRepairRange() const { return DidRepairRange; } 138 139 /// clear - clear all data structures so SplitAnalysis is ready to analyze a 140 /// new interval. 141 void clear(); 142 143 /// getParent - Return the last analyzed interval. getParent()144 const LiveInterval &getParent() const { return *CurLI; } 145 146 /// getLastSplitPoint - Return that base index of the last valid split point 147 /// in the basic block numbered Num. getLastSplitPoint(unsigned Num)148 SlotIndex getLastSplitPoint(unsigned Num) { 149 // Inline the common simple case. 150 if (LastSplitPoint[Num].first.isValid() && 151 !LastSplitPoint[Num].second.isValid()) 152 return LastSplitPoint[Num].first; 153 return computeLastSplitPoint(Num); 154 } 155 156 /// isOriginalEndpoint - Return true if the original live range was killed or 157 /// (re-)defined at Idx. Idx should be the 'def' slot for a normal kill/def, 158 /// and 'use' for an early-clobber def. 159 /// This can be used to recognize code inserted by earlier live range 160 /// splitting. 161 bool isOriginalEndpoint(SlotIndex Idx) const; 162 163 /// getUseBlocks - Return an array of BlockInfo objects for the basic blocks 164 /// where CurLI has uses. getUseBlocks()165 ArrayRef<BlockInfo> getUseBlocks() const { return UseBlocks; } 166 167 /// getNumThroughBlocks - Return the number of through blocks. getNumThroughBlocks()168 unsigned getNumThroughBlocks() const { return NumThroughBlocks; } 169 170 /// isThroughBlock - Return true if CurLI is live through MBB without uses. isThroughBlock(unsigned MBB)171 bool isThroughBlock(unsigned MBB) const { return ThroughBlocks.test(MBB); } 172 173 /// getThroughBlocks - Return the set of through blocks. getThroughBlocks()174 const BitVector &getThroughBlocks() const { return ThroughBlocks; } 175 176 /// getNumLiveBlocks - Return the number of blocks where CurLI is live. getNumLiveBlocks()177 unsigned getNumLiveBlocks() const { 178 return getUseBlocks().size() - NumGapBlocks + getNumThroughBlocks(); 179 } 180 181 /// countLiveBlocks - Return the number of blocks where li is live. This is 182 /// guaranteed to return the same number as getNumLiveBlocks() after calling 183 /// analyze(li). 184 unsigned countLiveBlocks(const LiveInterval *li) const; 185 186 typedef SmallPtrSet<const MachineBasicBlock*, 16> BlockPtrSet; 187 188 /// getMultiUseBlocks - Add basic blocks to Blocks that may benefit from 189 /// having CurLI split to a new live interval. Return true if Blocks can be 190 /// passed to SplitEditor::splitSingleBlocks. 191 bool getMultiUseBlocks(BlockPtrSet &Blocks); 192 }; 193 194 195 /// SplitEditor - Edit machine code and LiveIntervals for live range 196 /// splitting. 197 /// 198 /// - Create a SplitEditor from a SplitAnalysis. 199 /// - Start a new live interval with openIntv. 200 /// - Mark the places where the new interval is entered using enterIntv* 201 /// - Mark the ranges where the new interval is used with useIntv* 202 /// - Mark the places where the interval is exited with exitIntv*. 203 /// - Finish the current interval with closeIntv and repeat from 2. 204 /// - Rewrite instructions with finish(). 205 /// 206 class SplitEditor { 207 SplitAnalysis &SA; 208 LiveIntervals &LIS; 209 VirtRegMap &VRM; 210 MachineRegisterInfo &MRI; 211 MachineDominatorTree &MDT; 212 const TargetInstrInfo &TII; 213 const TargetRegisterInfo &TRI; 214 215 /// Edit - The current parent register and new intervals created. 216 LiveRangeEdit *Edit; 217 218 /// Index into Edit of the currently open interval. 219 /// The index 0 is used for the complement, so the first interval started by 220 /// openIntv will be 1. 221 unsigned OpenIdx; 222 223 typedef IntervalMap<SlotIndex, unsigned> RegAssignMap; 224 225 /// Allocator for the interval map. This will eventually be shared with 226 /// SlotIndexes and LiveIntervals. 227 RegAssignMap::Allocator Allocator; 228 229 /// RegAssign - Map of the assigned register indexes. 230 /// Edit.get(RegAssign.lookup(Idx)) is the register that should be live at 231 /// Idx. 232 RegAssignMap RegAssign; 233 234 typedef DenseMap<std::pair<unsigned, unsigned>, VNInfo*> ValueMap; 235 236 /// Values - keep track of the mapping from parent values to values in the new 237 /// intervals. Given a pair (RegIdx, ParentVNI->id), Values contains: 238 /// 239 /// 1. No entry - the value is not mapped to Edit.get(RegIdx). 240 /// 2. Null - the value is mapped to multiple values in Edit.get(RegIdx). 241 /// Each value is represented by a minimal live range at its def. 242 /// 3. A non-null VNInfo - the value is mapped to a single new value. 243 /// The new value has no live ranges anywhere. 244 ValueMap Values; 245 246 typedef std::pair<VNInfo*, MachineDomTreeNode*> LiveOutPair; 247 typedef IndexedMap<LiveOutPair, MBB2NumberFunctor> LiveOutMap; 248 249 // LiveOutCache - Map each basic block where a new register is live out to the 250 // live-out value and its defining block. 251 // One of these conditions shall be true: 252 // 253 // 1. !LiveOutCache.count(MBB) 254 // 2. LiveOutCache[MBB].second.getNode() == MBB 255 // 3. forall P in preds(MBB): LiveOutCache[P] == LiveOutCache[MBB] 256 // 257 // This is only a cache, the values can be computed as: 258 // 259 // VNI = Edit.get(RegIdx)->getVNInfoAt(LIS.getMBBEndIdx(MBB)) 260 // Node = mbt_[LIS.getMBBFromIndex(VNI->def)] 261 // 262 // The cache is also used as a visited set by extendRange(). It can be shared 263 // by all the new registers because at most one is live out of each block. 264 LiveOutMap LiveOutCache; 265 266 // LiveOutSeen - Indexed by MBB->getNumber(), a bit is set for each valid 267 // entry in LiveOutCache. 268 BitVector LiveOutSeen; 269 270 /// LiveInBlock - Info for updateSSA() about a block where a register is 271 /// live-in. 272 /// The updateSSA caller provides DomNode and Kill inside MBB, updateSSA() 273 /// adds the computed live-in value. 274 struct LiveInBlock { 275 // Dominator tree node for the block. 276 // Cleared by updateSSA when the final value has been determined. 277 MachineDomTreeNode *DomNode; 278 279 // Live-in value filled in by updateSSA once it is known. 280 VNInfo *Value; 281 282 // Position in block where the live-in range ends, or SlotIndex() if the 283 // range passes through the block. 284 SlotIndex Kill; 285 LiveInBlockLiveInBlock286 LiveInBlock(MachineDomTreeNode *node) : DomNode(node), Value(0) {} 287 }; 288 289 /// LiveInBlocks - List of live-in blocks used by findReachingDefs() and 290 /// updateSSA(). This list is usually empty, it exists here to avoid frequent 291 /// reallocations. 292 SmallVector<LiveInBlock, 16> LiveInBlocks; 293 294 /// defValue - define a value in RegIdx from ParentVNI at Idx. 295 /// Idx does not have to be ParentVNI->def, but it must be contained within 296 /// ParentVNI's live range in ParentLI. The new value is added to the value 297 /// map. 298 /// Return the new LI value. 299 VNInfo *defValue(unsigned RegIdx, const VNInfo *ParentVNI, SlotIndex Idx); 300 301 /// markComplexMapped - Mark ParentVNI as complex mapped in RegIdx regardless 302 /// of the number of defs. 303 void markComplexMapped(unsigned RegIdx, const VNInfo *ParentVNI); 304 305 /// defFromParent - Define Reg from ParentVNI at UseIdx using either 306 /// rematerialization or a COPY from parent. Return the new value. 307 VNInfo *defFromParent(unsigned RegIdx, 308 VNInfo *ParentVNI, 309 SlotIndex UseIdx, 310 MachineBasicBlock &MBB, 311 MachineBasicBlock::iterator I); 312 313 /// extendRange - Extend the live range of Edit.get(RegIdx) so it reaches Idx. 314 /// Insert PHIDefs as needed to preserve SSA form. 315 void extendRange(unsigned RegIdx, SlotIndex Idx); 316 317 /// findReachingDefs - Starting from MBB, add blocks to LiveInBlocks until all 318 /// reaching defs for LI are found. 319 /// @param LI Live interval whose value is needed. 320 /// @param MBB Block where LI should be live-in. 321 /// @param Kill Kill point in MBB. 322 /// @return Unique value seen, or NULL. 323 VNInfo *findReachingDefs(LiveInterval *LI, MachineBasicBlock *MBB, 324 SlotIndex Kill); 325 326 /// updateSSA - Compute and insert PHIDefs such that all blocks in 327 // LiveInBlocks get a known live-in value. Add live ranges to the blocks. 328 void updateSSA(); 329 330 /// transferValues - Transfer values to the new ranges. 331 /// Return true if any ranges were skipped. 332 bool transferValues(); 333 334 /// extendPHIKillRanges - Extend the ranges of all values killed by original 335 /// parent PHIDefs. 336 void extendPHIKillRanges(); 337 338 /// rewriteAssigned - Rewrite all uses of Edit.getReg() to assigned registers. 339 void rewriteAssigned(bool ExtendRanges); 340 341 /// deleteRematVictims - Delete defs that are dead after rematerializing. 342 void deleteRematVictims(); 343 344 public: 345 /// Create a new SplitEditor for editing the LiveInterval analyzed by SA. 346 /// Newly created intervals will be appended to newIntervals. 347 SplitEditor(SplitAnalysis &SA, LiveIntervals&, VirtRegMap&, 348 MachineDominatorTree&); 349 350 /// reset - Prepare for a new split. 351 void reset(LiveRangeEdit&); 352 353 /// Create a new virtual register and live interval. 354 /// Return the interval index, starting from 1. Interval index 0 is the 355 /// implicit complement interval. 356 unsigned openIntv(); 357 358 /// currentIntv - Return the current interval index. currentIntv()359 unsigned currentIntv() const { return OpenIdx; } 360 361 /// selectIntv - Select a previously opened interval index. 362 void selectIntv(unsigned Idx); 363 364 /// enterIntvBefore - Enter the open interval before the instruction at Idx. 365 /// If the parent interval is not live before Idx, a COPY is not inserted. 366 /// Return the beginning of the new live range. 367 SlotIndex enterIntvBefore(SlotIndex Idx); 368 369 /// enterIntvAfter - Enter the open interval after the instruction at Idx. 370 /// Return the beginning of the new live range. 371 SlotIndex enterIntvAfter(SlotIndex Idx); 372 373 /// enterIntvAtEnd - Enter the open interval at the end of MBB. 374 /// Use the open interval from he inserted copy to the MBB end. 375 /// Return the beginning of the new live range. 376 SlotIndex enterIntvAtEnd(MachineBasicBlock &MBB); 377 378 /// useIntv - indicate that all instructions in MBB should use OpenLI. 379 void useIntv(const MachineBasicBlock &MBB); 380 381 /// useIntv - indicate that all instructions in range should use OpenLI. 382 void useIntv(SlotIndex Start, SlotIndex End); 383 384 /// leaveIntvAfter - Leave the open interval after the instruction at Idx. 385 /// Return the end of the live range. 386 SlotIndex leaveIntvAfter(SlotIndex Idx); 387 388 /// leaveIntvBefore - Leave the open interval before the instruction at Idx. 389 /// Return the end of the live range. 390 SlotIndex leaveIntvBefore(SlotIndex Idx); 391 392 /// leaveIntvAtTop - Leave the interval at the top of MBB. 393 /// Add liveness from the MBB top to the copy. 394 /// Return the end of the live range. 395 SlotIndex leaveIntvAtTop(MachineBasicBlock &MBB); 396 397 /// overlapIntv - Indicate that all instructions in range should use the open 398 /// interval, but also let the complement interval be live. 399 /// 400 /// This doubles the register pressure, but is sometimes required to deal with 401 /// register uses after the last valid split point. 402 /// 403 /// The Start index should be a return value from a leaveIntv* call, and End 404 /// should be in the same basic block. The parent interval must have the same 405 /// value across the range. 406 /// 407 void overlapIntv(SlotIndex Start, SlotIndex End); 408 409 /// finish - after all the new live ranges have been created, compute the 410 /// remaining live range, and rewrite instructions to use the new registers. 411 /// @param LRMap When not null, this vector will map each live range in Edit 412 /// back to the indices returned by openIntv. 413 /// There may be extra indices created by dead code elimination. 414 void finish(SmallVectorImpl<unsigned> *LRMap = 0); 415 416 /// dump - print the current interval maping to dbgs(). 417 void dump() const; 418 419 // ===--- High level methods ---=== 420 421 /// splitSingleBlock - Split CurLI into a separate live interval around the 422 /// uses in a single block. This is intended to be used as part of a larger 423 /// split, and doesn't call finish(). 424 void splitSingleBlock(const SplitAnalysis::BlockInfo &BI); 425 426 /// splitSingleBlocks - Split CurLI into a separate live interval inside each 427 /// basic block in Blocks. 428 void splitSingleBlocks(const SplitAnalysis::BlockPtrSet &Blocks); 429 430 /// splitLiveThroughBlock - Split CurLI in the given block such that it 431 /// enters the block in IntvIn and leaves it in IntvOut. There may be uses in 432 /// the block, but they will be ignored when placing split points. 433 /// 434 /// @param MBBNum Block number. 435 /// @param IntvIn Interval index entering the block. 436 /// @param LeaveBefore When set, leave IntvIn before this point. 437 /// @param IntvOut Interval index leaving the block. 438 /// @param EnterAfter When set, enter IntvOut after this point. 439 void splitLiveThroughBlock(unsigned MBBNum, 440 unsigned IntvIn, SlotIndex LeaveBefore, 441 unsigned IntvOut, SlotIndex EnterAfter); 442 443 /// splitRegInBlock - Split CurLI in the given block such that it enters the 444 /// block in IntvIn and leaves it on the stack (or not at all). Split points 445 /// are placed in a way that avoids putting uses in the stack interval. This 446 /// may require creating a local interval when there is interference. 447 /// 448 /// @param BI Block descriptor. 449 /// @param IntvIn Interval index entering the block. Not 0. 450 /// @param LeaveBefore When set, leave IntvIn before this point. 451 void splitRegInBlock(const SplitAnalysis::BlockInfo &BI, 452 unsigned IntvIn, SlotIndex LeaveBefore); 453 454 /// splitRegOutBlock - Split CurLI in the given block such that it enters the 455 /// block on the stack (or isn't live-in at all) and leaves it in IntvOut. 456 /// Split points are placed to avoid interference and such that the uses are 457 /// not in the stack interval. This may require creating a local interval 458 /// when there is interference. 459 /// 460 /// @param BI Block descriptor. 461 /// @param IntvOut Interval index leaving the block. 462 /// @param EnterAfter When set, enter IntvOut after this point. 463 void splitRegOutBlock(const SplitAnalysis::BlockInfo &BI, 464 unsigned IntvOut, SlotIndex EnterAfter); 465 }; 466 467 } 468 469 #endif 470