1596f483aSJessica Paquette //===---- MachineOutliner.cpp - Outline instructions -----------*- C++ -*-===// 2596f483aSJessica Paquette // 32946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 42946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information. 52946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6596f483aSJessica Paquette // 7596f483aSJessica Paquette //===----------------------------------------------------------------------===// 8596f483aSJessica Paquette /// 9596f483aSJessica Paquette /// \file 10596f483aSJessica Paquette /// Replaces repeated sequences of instructions with function calls. 11596f483aSJessica Paquette /// 12596f483aSJessica Paquette /// This works by placing every instruction from every basic block in a 13596f483aSJessica Paquette /// suffix tree, and repeatedly querying that tree for repeated sequences of 14596f483aSJessica Paquette /// instructions. If a sequence of instructions appears often, then it ought 15596f483aSJessica Paquette /// to be beneficial to pull out into a function. 16596f483aSJessica Paquette /// 174cf187b5SJessica Paquette /// The MachineOutliner communicates with a given target using hooks defined in 184cf187b5SJessica Paquette /// TargetInstrInfo.h. The target supplies the outliner with information on how 194cf187b5SJessica Paquette /// a specific sequence of instructions should be outlined. This information 204cf187b5SJessica Paquette /// is used to deduce the number of instructions necessary to 214cf187b5SJessica Paquette /// 224cf187b5SJessica Paquette /// * Create an outlined function 234cf187b5SJessica Paquette /// * Call that outlined function 244cf187b5SJessica Paquette /// 254cf187b5SJessica Paquette /// Targets must implement 264cf187b5SJessica Paquette /// * getOutliningCandidateInfo 2732de26d4SJessica Paquette /// * buildOutlinedFrame 284cf187b5SJessica Paquette /// * insertOutlinedCall 294cf187b5SJessica Paquette /// * isFunctionSafeToOutlineFrom 304cf187b5SJessica Paquette /// 314cf187b5SJessica Paquette /// in order to make use of the MachineOutliner. 324cf187b5SJessica Paquette /// 33596f483aSJessica Paquette /// This was originally presented at the 2016 LLVM Developers' Meeting in the 34596f483aSJessica Paquette /// talk "Reducing Code Size Using Outlining". For a high-level overview of 35596f483aSJessica Paquette /// how this pass works, the talk is available on YouTube at 36596f483aSJessica Paquette /// 37596f483aSJessica Paquette /// https://www.youtube.com/watch?v=yorld-WSOeU 38596f483aSJessica Paquette /// 39596f483aSJessica Paquette /// The slides for the talk are available at 40596f483aSJessica Paquette /// 41596f483aSJessica Paquette /// http://www.llvm.org/devmtg/2016-11/Slides/Paquette-Outliner.pdf 42596f483aSJessica Paquette /// 43596f483aSJessica Paquette /// The talk provides an overview of how the outliner finds candidates and 44596f483aSJessica Paquette /// ultimately outlines them. It describes how the main data structure for this 45596f483aSJessica Paquette /// pass, the suffix tree, is queried and purged for candidates. It also gives 46596f483aSJessica Paquette /// a simplified suffix tree construction algorithm for suffix trees based off 47596f483aSJessica Paquette /// of the algorithm actually used here, Ukkonen's algorithm. 48596f483aSJessica Paquette /// 49596f483aSJessica Paquette /// For the original RFC for this pass, please see 50596f483aSJessica Paquette /// 51596f483aSJessica Paquette /// http://lists.llvm.org/pipermail/llvm-dev/2016-August/104170.html 52596f483aSJessica Paquette /// 53596f483aSJessica Paquette /// For more information on the suffix tree data structure, please see 54596f483aSJessica Paquette /// https://www.cs.helsinki.fi/u/ukkonen/SuffixT1withFigs.pdf 55596f483aSJessica Paquette /// 56596f483aSJessica Paquette //===----------------------------------------------------------------------===// 57aa087327SJessica Paquette #include "llvm/CodeGen/MachineOutliner.h" 58596f483aSJessica Paquette #include "llvm/ADT/DenseMap.h" 59fc6fda90SJin Lin #include "llvm/ADT/SmallSet.h" 60596f483aSJessica Paquette #include "llvm/ADT/Statistic.h" 61596f483aSJessica Paquette #include "llvm/ADT/Twine.h" 62989f1c72Sserge-sans-paille #include "llvm/Analysis/OptimizationRemarkEmitter.h" 63989f1c72Sserge-sans-paille #include "llvm/CodeGen/LivePhysRegs.h" 64596f483aSJessica Paquette #include "llvm/CodeGen/MachineModuleInfo.h" 65ffe4abc5SJessica Paquette #include "llvm/CodeGen/MachineOptimizationRemarkEmitter.h" 66596f483aSJessica Paquette #include "llvm/CodeGen/Passes.h" 673f833edcSDavid Blaikie #include "llvm/CodeGen/TargetInstrInfo.h" 68b3bde2eaSDavid Blaikie #include "llvm/CodeGen/TargetSubtargetInfo.h" 69729e6869SJessica Paquette #include "llvm/IR/DIBuilder.h" 70596f483aSJessica Paquette #include "llvm/IR/IRBuilder.h" 71a499c3c2SJessica Paquette #include "llvm/IR/Mangler.h" 7205da2fe5SReid Kleckner #include "llvm/InitializePasses.h" 731eca23bdSJessica Paquette #include "llvm/Support/CommandLine.h" 74596f483aSJessica Paquette #include "llvm/Support/Debug.h" 75bb677cacSAndrew Litteken #include "llvm/Support/SuffixTree.h" 76596f483aSJessica Paquette #include "llvm/Support/raw_ostream.h" 77596f483aSJessica Paquette #include <functional> 78596f483aSJessica Paquette #include <tuple> 79596f483aSJessica Paquette #include <vector> 80596f483aSJessica Paquette 81596f483aSJessica Paquette #define DEBUG_TYPE "machine-outliner" 82596f483aSJessica Paquette 83596f483aSJessica Paquette using namespace llvm; 84ffe4abc5SJessica Paquette using namespace ore; 85aa087327SJessica Paquette using namespace outliner; 86596f483aSJessica Paquette 8712389e37SJessica Paquette // Statistics for outlined functions. 88596f483aSJessica Paquette STATISTIC(NumOutlined, "Number of candidates outlined"); 89596f483aSJessica Paquette STATISTIC(FunctionsCreated, "Number of functions created"); 90596f483aSJessica Paquette 9112389e37SJessica Paquette // Statistics for instruction mapping. 9212389e37SJessica Paquette STATISTIC(NumLegalInUnsignedVec, "Number of legal instrs in unsigned vector"); 9312389e37SJessica Paquette STATISTIC(NumIllegalInUnsignedVec, 9412389e37SJessica Paquette "Number of illegal instrs in unsigned vector"); 9512389e37SJessica Paquette STATISTIC(NumInvisible, "Number of invisible instrs in unsigned vector"); 9612389e37SJessica Paquette STATISTIC(UnsignedVecSize, "Size of unsigned vector"); 9712389e37SJessica Paquette 981eca23bdSJessica Paquette // Set to true if the user wants the outliner to run on linkonceodr linkage 991eca23bdSJessica Paquette // functions. This is false by default because the linker can dedupe linkonceodr 1001eca23bdSJessica Paquette // functions. Since the outliner is confined to a single module (modulo LTO), 1011eca23bdSJessica Paquette // this is off by default. It should, however, be the default behaviour in 1021eca23bdSJessica Paquette // LTO. 1031eca23bdSJessica Paquette static cl::opt<bool> EnableLinkOnceODROutlining( 1046b7615aeSPuyan Lotfi "enable-linkonceodr-outlining", cl::Hidden, 1051eca23bdSJessica Paquette cl::desc("Enable the machine outliner on linkonceodr functions"), 1061eca23bdSJessica Paquette cl::init(false)); 1071eca23bdSJessica Paquette 108ffd5e121SPuyan Lotfi /// Number of times to re-run the outliner. This is not the total number of runs 109ffd5e121SPuyan Lotfi /// as the outliner will run at least one time. The default value is set to 0, 110ffd5e121SPuyan Lotfi /// meaning the outliner will run one time and rerun zero times after that. 111ffd5e121SPuyan Lotfi static cl::opt<unsigned> OutlinerReruns( 112ffd5e121SPuyan Lotfi "machine-outliner-reruns", cl::init(0), cl::Hidden, 113ffd5e121SPuyan Lotfi cl::desc( 114ffd5e121SPuyan Lotfi "Number of times to rerun the outliner after the initial outline")); 1150d896278SJin Lin 116596f483aSJessica Paquette namespace { 117596f483aSJessica Paquette 1185f8f34e4SAdrian Prantl /// Maps \p MachineInstrs to unsigned integers and stores the mappings. 119596f483aSJessica Paquette struct InstructionMapper { 120596f483aSJessica Paquette 1215f8f34e4SAdrian Prantl /// The next available integer to assign to a \p MachineInstr that 122596f483aSJessica Paquette /// cannot be outlined. 123596f483aSJessica Paquette /// 124596f483aSJessica Paquette /// Set to -3 for compatability with \p DenseMapInfo<unsigned>. 125596f483aSJessica Paquette unsigned IllegalInstrNumber = -3; 126596f483aSJessica Paquette 1275f8f34e4SAdrian Prantl /// The next available integer to assign to a \p MachineInstr that can 128596f483aSJessica Paquette /// be outlined. 129596f483aSJessica Paquette unsigned LegalInstrNumber = 0; 130596f483aSJessica Paquette 131596f483aSJessica Paquette /// Correspondence from \p MachineInstrs to unsigned integers. 132596f483aSJessica Paquette DenseMap<MachineInstr *, unsigned, MachineInstrExpressionTrait> 133596f483aSJessica Paquette InstructionIntegerMap; 134596f483aSJessica Paquette 135cad864d4SJessica Paquette /// Correspondence between \p MachineBasicBlocks and target-defined flags. 136cad864d4SJessica Paquette DenseMap<MachineBasicBlock *, unsigned> MBBFlagsMap; 137cad864d4SJessica Paquette 138596f483aSJessica Paquette /// The vector of unsigned integers that the module is mapped to. 139596f483aSJessica Paquette std::vector<unsigned> UnsignedVec; 140596f483aSJessica Paquette 1415f8f34e4SAdrian Prantl /// Stores the location of the instruction associated with the integer 142596f483aSJessica Paquette /// at index i in \p UnsignedVec for each index i. 143596f483aSJessica Paquette std::vector<MachineBasicBlock::iterator> InstrList; 144596f483aSJessica Paquette 145c991cf36SJessica Paquette // Set if we added an illegal number in the previous step. 146c991cf36SJessica Paquette // Since each illegal number is unique, we only need one of them between 147c991cf36SJessica Paquette // each range of legal numbers. This lets us make sure we don't add more 148c991cf36SJessica Paquette // than one illegal number per range. 149c991cf36SJessica Paquette bool AddedIllegalLastTime = false; 150c991cf36SJessica Paquette 1515f8f34e4SAdrian Prantl /// Maps \p *It to a legal integer. 152596f483aSJessica Paquette /// 153c4cf775aSJessica Paquette /// Updates \p CanOutlineWithPrevInstr, \p HaveLegalRange, \p InstrListForMBB, 154ca3ed964SJessica Paquette /// \p UnsignedVecForMBB, \p InstructionIntegerMap, and \p LegalInstrNumber. 155596f483aSJessica Paquette /// 156596f483aSJessica Paquette /// \returns The integer that \p *It was mapped to. 157267d266cSJessica Paquette unsigned mapToLegalUnsigned( 158c4cf775aSJessica Paquette MachineBasicBlock::iterator &It, bool &CanOutlineWithPrevInstr, 159c4cf775aSJessica Paquette bool &HaveLegalRange, unsigned &NumLegalInBlock, 160267d266cSJessica Paquette std::vector<unsigned> &UnsignedVecForMBB, 161267d266cSJessica Paquette std::vector<MachineBasicBlock::iterator> &InstrListForMBB) { 162c991cf36SJessica Paquette // We added something legal, so we should unset the AddedLegalLastTime 163c991cf36SJessica Paquette // flag. 164c991cf36SJessica Paquette AddedIllegalLastTime = false; 165596f483aSJessica Paquette 166c4cf775aSJessica Paquette // If we have at least two adjacent legal instructions (which may have 167c4cf775aSJessica Paquette // invisible instructions in between), remember that. 168c4cf775aSJessica Paquette if (CanOutlineWithPrevInstr) 169c4cf775aSJessica Paquette HaveLegalRange = true; 170c4cf775aSJessica Paquette CanOutlineWithPrevInstr = true; 171c4cf775aSJessica Paquette 172267d266cSJessica Paquette // Keep track of the number of legal instructions we insert. 173267d266cSJessica Paquette NumLegalInBlock++; 174267d266cSJessica Paquette 175596f483aSJessica Paquette // Get the integer for this instruction or give it the current 176596f483aSJessica Paquette // LegalInstrNumber. 177267d266cSJessica Paquette InstrListForMBB.push_back(It); 178596f483aSJessica Paquette MachineInstr &MI = *It; 179596f483aSJessica Paquette bool WasInserted; 180596f483aSJessica Paquette DenseMap<MachineInstr *, unsigned, MachineInstrExpressionTrait>::iterator 181596f483aSJessica Paquette ResultIt; 182596f483aSJessica Paquette std::tie(ResultIt, WasInserted) = 183596f483aSJessica Paquette InstructionIntegerMap.insert(std::make_pair(&MI, LegalInstrNumber)); 184596f483aSJessica Paquette unsigned MINumber = ResultIt->second; 185596f483aSJessica Paquette 186596f483aSJessica Paquette // There was an insertion. 187ca3ed964SJessica Paquette if (WasInserted) 188596f483aSJessica Paquette LegalInstrNumber++; 189596f483aSJessica Paquette 190267d266cSJessica Paquette UnsignedVecForMBB.push_back(MINumber); 191596f483aSJessica Paquette 192596f483aSJessica Paquette // Make sure we don't overflow or use any integers reserved by the DenseMap. 193596f483aSJessica Paquette if (LegalInstrNumber >= IllegalInstrNumber) 194596f483aSJessica Paquette report_fatal_error("Instruction mapping overflow!"); 195596f483aSJessica Paquette 19678681be2SJessica Paquette assert(LegalInstrNumber != DenseMapInfo<unsigned>::getEmptyKey() && 19778681be2SJessica Paquette "Tried to assign DenseMap tombstone or empty key to instruction."); 19878681be2SJessica Paquette assert(LegalInstrNumber != DenseMapInfo<unsigned>::getTombstoneKey() && 19978681be2SJessica Paquette "Tried to assign DenseMap tombstone or empty key to instruction."); 200596f483aSJessica Paquette 20112389e37SJessica Paquette // Statistics. 20212389e37SJessica Paquette ++NumLegalInUnsignedVec; 203596f483aSJessica Paquette return MINumber; 204596f483aSJessica Paquette } 205596f483aSJessica Paquette 206596f483aSJessica Paquette /// Maps \p *It to an illegal integer. 207596f483aSJessica Paquette /// 208267d266cSJessica Paquette /// Updates \p InstrListForMBB, \p UnsignedVecForMBB, and \p 209267d266cSJessica Paquette /// IllegalInstrNumber. 210596f483aSJessica Paquette /// 211596f483aSJessica Paquette /// \returns The integer that \p *It was mapped to. 2126b7615aeSPuyan Lotfi unsigned mapToIllegalUnsigned( 2136b7615aeSPuyan Lotfi MachineBasicBlock::iterator &It, bool &CanOutlineWithPrevInstr, 2146b7615aeSPuyan Lotfi std::vector<unsigned> &UnsignedVecForMBB, 215267d266cSJessica Paquette std::vector<MachineBasicBlock::iterator> &InstrListForMBB) { 216c4cf775aSJessica Paquette // Can't outline an illegal instruction. Set the flag. 217c4cf775aSJessica Paquette CanOutlineWithPrevInstr = false; 218c4cf775aSJessica Paquette 219c991cf36SJessica Paquette // Only add one illegal number per range of legal numbers. 220c991cf36SJessica Paquette if (AddedIllegalLastTime) 221c991cf36SJessica Paquette return IllegalInstrNumber; 222c991cf36SJessica Paquette 223c991cf36SJessica Paquette // Remember that we added an illegal number last time. 224c991cf36SJessica Paquette AddedIllegalLastTime = true; 225596f483aSJessica Paquette unsigned MINumber = IllegalInstrNumber; 226596f483aSJessica Paquette 227267d266cSJessica Paquette InstrListForMBB.push_back(It); 228267d266cSJessica Paquette UnsignedVecForMBB.push_back(IllegalInstrNumber); 229596f483aSJessica Paquette IllegalInstrNumber--; 23012389e37SJessica Paquette // Statistics. 23112389e37SJessica Paquette ++NumIllegalInUnsignedVec; 232596f483aSJessica Paquette 233596f483aSJessica Paquette assert(LegalInstrNumber < IllegalInstrNumber && 234596f483aSJessica Paquette "Instruction mapping overflow!"); 235596f483aSJessica Paquette 23678681be2SJessica Paquette assert(IllegalInstrNumber != DenseMapInfo<unsigned>::getEmptyKey() && 237596f483aSJessica Paquette "IllegalInstrNumber cannot be DenseMap tombstone or empty key!"); 238596f483aSJessica Paquette 23978681be2SJessica Paquette assert(IllegalInstrNumber != DenseMapInfo<unsigned>::getTombstoneKey() && 240596f483aSJessica Paquette "IllegalInstrNumber cannot be DenseMap tombstone or empty key!"); 241596f483aSJessica Paquette 242596f483aSJessica Paquette return MINumber; 243596f483aSJessica Paquette } 244596f483aSJessica Paquette 2455f8f34e4SAdrian Prantl /// Transforms a \p MachineBasicBlock into a \p vector of \p unsigneds 246596f483aSJessica Paquette /// and appends it to \p UnsignedVec and \p InstrList. 247596f483aSJessica Paquette /// 248596f483aSJessica Paquette /// Two instructions are assigned the same integer if they are identical. 249596f483aSJessica Paquette /// If an instruction is deemed unsafe to outline, then it will be assigned an 250596f483aSJessica Paquette /// unique integer. The resulting mapping is placed into a suffix tree and 251596f483aSJessica Paquette /// queried for candidates. 252596f483aSJessica Paquette /// 253596f483aSJessica Paquette /// \param MBB The \p MachineBasicBlock to be translated into integers. 254da08078fSEli Friedman /// \param TII \p TargetInstrInfo for the function. 255596f483aSJessica Paquette void convertToUnsignedVec(MachineBasicBlock &MBB, 256596f483aSJessica Paquette const TargetInstrInfo &TII) { 2573635c890SAlexander Kornienko unsigned Flags = 0; 25882d9c0a3SJessica Paquette 25982d9c0a3SJessica Paquette // Don't even map in this case. 26082d9c0a3SJessica Paquette if (!TII.isMBBSafeToOutlineFrom(MBB, Flags)) 26182d9c0a3SJessica Paquette return; 26282d9c0a3SJessica Paquette 263cad864d4SJessica Paquette // Store info for the MBB for later outlining. 264cad864d4SJessica Paquette MBBFlagsMap[&MBB] = Flags; 265cad864d4SJessica Paquette 266c991cf36SJessica Paquette MachineBasicBlock::iterator It = MBB.begin(); 267267d266cSJessica Paquette 268267d266cSJessica Paquette // The number of instructions in this block that will be considered for 269267d266cSJessica Paquette // outlining. 270267d266cSJessica Paquette unsigned NumLegalInBlock = 0; 271267d266cSJessica Paquette 272c4cf775aSJessica Paquette // True if we have at least two legal instructions which aren't separated 273c4cf775aSJessica Paquette // by an illegal instruction. 274c4cf775aSJessica Paquette bool HaveLegalRange = false; 275c4cf775aSJessica Paquette 276c4cf775aSJessica Paquette // True if we can perform outlining given the last mapped (non-invisible) 277c4cf775aSJessica Paquette // instruction. This lets us know if we have a legal range. 278c4cf775aSJessica Paquette bool CanOutlineWithPrevInstr = false; 279c4cf775aSJessica Paquette 280267d266cSJessica Paquette // FIXME: Should this all just be handled in the target, rather than using 281267d266cSJessica Paquette // repeated calls to getOutliningType? 282267d266cSJessica Paquette std::vector<unsigned> UnsignedVecForMBB; 283267d266cSJessica Paquette std::vector<MachineBasicBlock::iterator> InstrListForMBB; 284267d266cSJessica Paquette 28568c718c8SJessica Paquette for (MachineBasicBlock::iterator Et = MBB.end(); It != Et; ++It) { 286596f483aSJessica Paquette // Keep track of where this instruction is in the module. 2873291e735SJessica Paquette switch (TII.getOutliningType(It, Flags)) { 288aa087327SJessica Paquette case InstrType::Illegal: 2896b7615aeSPuyan Lotfi mapToIllegalUnsigned(It, CanOutlineWithPrevInstr, UnsignedVecForMBB, 2906b7615aeSPuyan Lotfi InstrListForMBB); 291596f483aSJessica Paquette break; 292596f483aSJessica Paquette 293aa087327SJessica Paquette case InstrType::Legal: 294c4cf775aSJessica Paquette mapToLegalUnsigned(It, CanOutlineWithPrevInstr, HaveLegalRange, 29568c718c8SJessica Paquette NumLegalInBlock, UnsignedVecForMBB, InstrListForMBB); 296596f483aSJessica Paquette break; 297596f483aSJessica Paquette 298aa087327SJessica Paquette case InstrType::LegalTerminator: 299c4cf775aSJessica Paquette mapToLegalUnsigned(It, CanOutlineWithPrevInstr, HaveLegalRange, 30068c718c8SJessica Paquette NumLegalInBlock, UnsignedVecForMBB, InstrListForMBB); 30168c718c8SJessica Paquette // The instruction also acts as a terminator, so we have to record that 30268c718c8SJessica Paquette // in the string. 303c4cf775aSJessica Paquette mapToIllegalUnsigned(It, CanOutlineWithPrevInstr, UnsignedVecForMBB, 304c4cf775aSJessica Paquette InstrListForMBB); 305042dc9e0SEli Friedman break; 306042dc9e0SEli Friedman 307aa087327SJessica Paquette case InstrType::Invisible: 308c991cf36SJessica Paquette // Normally this is set by mapTo(Blah)Unsigned, but we just want to 309c991cf36SJessica Paquette // skip this instruction. So, unset the flag here. 31012389e37SJessica Paquette ++NumInvisible; 311bd72988cSJessica Paquette AddedIllegalLastTime = false; 312596f483aSJessica Paquette break; 313596f483aSJessica Paquette } 314596f483aSJessica Paquette } 315596f483aSJessica Paquette 316267d266cSJessica Paquette // Are there enough legal instructions in the block for outlining to be 317267d266cSJessica Paquette // possible? 318c4cf775aSJessica Paquette if (HaveLegalRange) { 319596f483aSJessica Paquette // After we're done every insertion, uniquely terminate this part of the 320596f483aSJessica Paquette // "string". This makes sure we won't match across basic block or function 321596f483aSJessica Paquette // boundaries since the "end" is encoded uniquely and thus appears in no 322596f483aSJessica Paquette // repeated substring. 323c4cf775aSJessica Paquette mapToIllegalUnsigned(It, CanOutlineWithPrevInstr, UnsignedVecForMBB, 324c4cf775aSJessica Paquette InstrListForMBB); 3251e3ed091SKazu Hirata llvm::append_range(InstrList, InstrListForMBB); 3261e3ed091SKazu Hirata llvm::append_range(UnsignedVec, UnsignedVecForMBB); 327267d266cSJessica Paquette } 328596f483aSJessica Paquette } 329596f483aSJessica Paquette 330596f483aSJessica Paquette InstructionMapper() { 331596f483aSJessica Paquette // Make sure that the implementation of DenseMapInfo<unsigned> hasn't 332596f483aSJessica Paquette // changed. 333596f483aSJessica Paquette assert(DenseMapInfo<unsigned>::getEmptyKey() == (unsigned)-1 && 334596f483aSJessica Paquette "DenseMapInfo<unsigned>'s empty key isn't -1!"); 335596f483aSJessica Paquette assert(DenseMapInfo<unsigned>::getTombstoneKey() == (unsigned)-2 && 336596f483aSJessica Paquette "DenseMapInfo<unsigned>'s tombstone key isn't -2!"); 337596f483aSJessica Paquette } 338596f483aSJessica Paquette }; 339596f483aSJessica Paquette 3405f8f34e4SAdrian Prantl /// An interprocedural pass which finds repeated sequences of 341596f483aSJessica Paquette /// instructions and replaces them with calls to functions. 342596f483aSJessica Paquette /// 343596f483aSJessica Paquette /// Each instruction is mapped to an unsigned integer and placed in a string. 344596f483aSJessica Paquette /// The resulting mapping is then placed in a \p SuffixTree. The \p SuffixTree 345596f483aSJessica Paquette /// is then repeatedly queried for repeated sequences of instructions. Each 346596f483aSJessica Paquette /// non-overlapping repeated sequence is then placed in its own 347596f483aSJessica Paquette /// \p MachineFunction and each instance is then replaced with a call to that 348596f483aSJessica Paquette /// function. 349596f483aSJessica Paquette struct MachineOutliner : public ModulePass { 350596f483aSJessica Paquette 351596f483aSJessica Paquette static char ID; 352596f483aSJessica Paquette 3535f8f34e4SAdrian Prantl /// Set to true if the outliner should consider functions with 35413593843SJessica Paquette /// linkonceodr linkage. 35513593843SJessica Paquette bool OutlineFromLinkOnceODRs = false; 35613593843SJessica Paquette 3570d896278SJin Lin /// The current repeat number of machine outlining. 3580d896278SJin Lin unsigned OutlineRepeatedNum = 0; 3590d896278SJin Lin 3608bda1881SJessica Paquette /// Set to true if the outliner should run on all functions in the module 3618bda1881SJessica Paquette /// considered safe for outlining. 3628bda1881SJessica Paquette /// Set to true by default for compatibility with llc's -run-pass option. 3638bda1881SJessica Paquette /// Set when the pass is constructed in TargetPassConfig. 3648bda1881SJessica Paquette bool RunOnAllFunctions = true; 3658bda1881SJessica Paquette 366596f483aSJessica Paquette StringRef getPassName() const override { return "Machine Outliner"; } 367596f483aSJessica Paquette 368596f483aSJessica Paquette void getAnalysisUsage(AnalysisUsage &AU) const override { 369cc382cf7SYuanfang Chen AU.addRequired<MachineModuleInfoWrapperPass>(); 370cc382cf7SYuanfang Chen AU.addPreserved<MachineModuleInfoWrapperPass>(); 371596f483aSJessica Paquette AU.setPreservesAll(); 372596f483aSJessica Paquette ModulePass::getAnalysisUsage(AU); 373596f483aSJessica Paquette } 374596f483aSJessica Paquette 3751eca23bdSJessica Paquette MachineOutliner() : ModulePass(ID) { 376596f483aSJessica Paquette initializeMachineOutlinerPass(*PassRegistry::getPassRegistry()); 377596f483aSJessica Paquette } 378596f483aSJessica Paquette 3791cc52a00SJessica Paquette /// Remark output explaining that not outlining a set of candidates would be 3801cc52a00SJessica Paquette /// better than outlining that set. 3811cc52a00SJessica Paquette void emitNotOutliningCheaperRemark( 3821cc52a00SJessica Paquette unsigned StringLen, std::vector<Candidate> &CandidatesForRepeatedSeq, 3831cc52a00SJessica Paquette OutlinedFunction &OF); 3841cc52a00SJessica Paquette 38558e706a6SJessica Paquette /// Remark output explaining that a function was outlined. 38658e706a6SJessica Paquette void emitOutlinedFunctionRemark(OutlinedFunction &OF); 38758e706a6SJessica Paquette 388ce3a2dcfSJessica Paquette /// Find all repeated substrings that satisfy the outlining cost model by 389ce3a2dcfSJessica Paquette /// constructing a suffix tree. 39078681be2SJessica Paquette /// 39178681be2SJessica Paquette /// If a substring appears at least twice, then it must be represented by 3921cc52a00SJessica Paquette /// an internal node which appears in at least two suffixes. Each suffix 3931cc52a00SJessica Paquette /// is represented by a leaf node. To do this, we visit each internal node 3941cc52a00SJessica Paquette /// in the tree, using the leaf children of each internal node. If an 3951cc52a00SJessica Paquette /// internal node represents a beneficial substring, then we use each of 3961cc52a00SJessica Paquette /// its leaf children to find the locations of its substring. 39778681be2SJessica Paquette /// 39878681be2SJessica Paquette /// \param Mapper Contains outlining mapping information. 3991cc52a00SJessica Paquette /// \param[out] FunctionList Filled with a list of \p OutlinedFunctions 4001cc52a00SJessica Paquette /// each type of candidate. 401ce3a2dcfSJessica Paquette void findCandidates(InstructionMapper &Mapper, 40278681be2SJessica Paquette std::vector<OutlinedFunction> &FunctionList); 40378681be2SJessica Paquette 4044ae3b71dSJessica Paquette /// Replace the sequences of instructions represented by \p OutlinedFunctions 4054ae3b71dSJessica Paquette /// with calls to functions. 406596f483aSJessica Paquette /// 407596f483aSJessica Paquette /// \param M The module we are outlining from. 408596f483aSJessica Paquette /// \param FunctionList A list of functions to be inserted into the module. 409596f483aSJessica Paquette /// \param Mapper Contains the instruction mappings for the module. 4104ae3b71dSJessica Paquette bool outline(Module &M, std::vector<OutlinedFunction> &FunctionList, 4116b7615aeSPuyan Lotfi InstructionMapper &Mapper, unsigned &OutlinedFunctionNum); 412596f483aSJessica Paquette 413596f483aSJessica Paquette /// Creates a function for \p OF and inserts it into the module. 414e18d6ff0SJessica Paquette MachineFunction *createOutlinedFunction(Module &M, OutlinedFunction &OF, 415a3eb0facSJessica Paquette InstructionMapper &Mapper, 416a3eb0facSJessica Paquette unsigned Name); 417596f483aSJessica Paquette 418ffd5e121SPuyan Lotfi /// Calls 'doOutline()' 1 + OutlinerReruns times. 4197b166d51SJin Lin bool runOnModule(Module &M) override; 420ab2dcff3SJin Lin 421596f483aSJessica Paquette /// Construct a suffix tree on the instructions in \p M and outline repeated 422596f483aSJessica Paquette /// strings from that tree. 423a51fc8ddSPuyan Lotfi bool doOutline(Module &M, unsigned &OutlinedFunctionNum); 424aa087327SJessica Paquette 425aa087327SJessica Paquette /// Return a DISubprogram for OF if one exists, and null otherwise. Helper 426aa087327SJessica Paquette /// function for remark emission. 427aa087327SJessica Paquette DISubprogram *getSubprogramOrNull(const OutlinedFunction &OF) { 428e18d6ff0SJessica Paquette for (const Candidate &C : OF.Candidates) 4297ad25836SSimon Pilgrim if (MachineFunction *MF = C.getMF()) 4307ad25836SSimon Pilgrim if (DISubprogram *SP = MF->getFunction().getSubprogram()) 431aa087327SJessica Paquette return SP; 432aa087327SJessica Paquette return nullptr; 433aa087327SJessica Paquette } 434050d1ac4SJessica Paquette 435050d1ac4SJessica Paquette /// Populate and \p InstructionMapper with instruction-to-integer mappings. 436050d1ac4SJessica Paquette /// These are used to construct a suffix tree. 437050d1ac4SJessica Paquette void populateMapper(InstructionMapper &Mapper, Module &M, 438050d1ac4SJessica Paquette MachineModuleInfo &MMI); 439596f483aSJessica Paquette 4402386eab3SJessica Paquette /// Initialize information necessary to output a size remark. 4412386eab3SJessica Paquette /// FIXME: This should be handled by the pass manager, not the outliner. 4422386eab3SJessica Paquette /// FIXME: This is nearly identical to the initSizeRemarkInfo in the legacy 4432386eab3SJessica Paquette /// pass manager. 4446b7615aeSPuyan Lotfi void initSizeRemarkInfo(const Module &M, const MachineModuleInfo &MMI, 4452386eab3SJessica Paquette StringMap<unsigned> &FunctionToInstrCount); 4462386eab3SJessica Paquette 4472386eab3SJessica Paquette /// Emit the remark. 4482386eab3SJessica Paquette // FIXME: This should be handled by the pass manager, not the outliner. 4496b7615aeSPuyan Lotfi void 4506b7615aeSPuyan Lotfi emitInstrCountChangedRemark(const Module &M, const MachineModuleInfo &MMI, 4512386eab3SJessica Paquette const StringMap<unsigned> &FunctionToInstrCount); 4522386eab3SJessica Paquette }; 453596f483aSJessica Paquette } // Anonymous namespace. 454596f483aSJessica Paquette 455596f483aSJessica Paquette char MachineOutliner::ID = 0; 456596f483aSJessica Paquette 457596f483aSJessica Paquette namespace llvm { 4588bda1881SJessica Paquette ModulePass *createMachineOutlinerPass(bool RunOnAllFunctions) { 4598bda1881SJessica Paquette MachineOutliner *OL = new MachineOutliner(); 4608bda1881SJessica Paquette OL->RunOnAllFunctions = RunOnAllFunctions; 4618bda1881SJessica Paquette return OL; 46213593843SJessica Paquette } 46313593843SJessica Paquette 46478681be2SJessica Paquette } // namespace llvm 46578681be2SJessica Paquette 46678681be2SJessica Paquette INITIALIZE_PASS(MachineOutliner, DEBUG_TYPE, "Machine Function Outliner", false, 46778681be2SJessica Paquette false) 46878681be2SJessica Paquette 4691cc52a00SJessica Paquette void MachineOutliner::emitNotOutliningCheaperRemark( 4701cc52a00SJessica Paquette unsigned StringLen, std::vector<Candidate> &CandidatesForRepeatedSeq, 4711cc52a00SJessica Paquette OutlinedFunction &OF) { 472c991cf36SJessica Paquette // FIXME: Right now, we arbitrarily choose some Candidate from the 473c991cf36SJessica Paquette // OutlinedFunction. This isn't necessarily fixed, nor does it have to be. 474c991cf36SJessica Paquette // We should probably sort these by function name or something to make sure 475c991cf36SJessica Paquette // the remarks are stable. 4761cc52a00SJessica Paquette Candidate &C = CandidatesForRepeatedSeq.front(); 4771cc52a00SJessica Paquette MachineOptimizationRemarkEmitter MORE(*(C.getMF()), nullptr); 4781cc52a00SJessica Paquette MORE.emit([&]() { 4791cc52a00SJessica Paquette MachineOptimizationRemarkMissed R(DEBUG_TYPE, "NotOutliningCheaper", 4801cc52a00SJessica Paquette C.front()->getDebugLoc(), C.getMBB()); 4811cc52a00SJessica Paquette R << "Did not outline " << NV("Length", StringLen) << " instructions" 4821cc52a00SJessica Paquette << " from " << NV("NumOccurrences", CandidatesForRepeatedSeq.size()) 4831cc52a00SJessica Paquette << " locations." 4841cc52a00SJessica Paquette << " Bytes from outlining all occurrences (" 4851cc52a00SJessica Paquette << NV("OutliningCost", OF.getOutliningCost()) << ")" 4861cc52a00SJessica Paquette << " >= Unoutlined instruction bytes (" 4871cc52a00SJessica Paquette << NV("NotOutliningCost", OF.getNotOutlinedCost()) << ")" 4881cc52a00SJessica Paquette << " (Also found at: "; 4891cc52a00SJessica Paquette 4901cc52a00SJessica Paquette // Tell the user the other places the candidate was found. 4911cc52a00SJessica Paquette for (unsigned i = 1, e = CandidatesForRepeatedSeq.size(); i < e; i++) { 4921cc52a00SJessica Paquette R << NV((Twine("OtherStartLoc") + Twine(i)).str(), 4931cc52a00SJessica Paquette CandidatesForRepeatedSeq[i].front()->getDebugLoc()); 4941cc52a00SJessica Paquette if (i != e - 1) 4951cc52a00SJessica Paquette R << ", "; 4961cc52a00SJessica Paquette } 4971cc52a00SJessica Paquette 4981cc52a00SJessica Paquette R << ")"; 4991cc52a00SJessica Paquette return R; 5001cc52a00SJessica Paquette }); 5011cc52a00SJessica Paquette } 5021cc52a00SJessica Paquette 50358e706a6SJessica Paquette void MachineOutliner::emitOutlinedFunctionRemark(OutlinedFunction &OF) { 50458e706a6SJessica Paquette MachineBasicBlock *MBB = &*OF.MF->begin(); 50558e706a6SJessica Paquette MachineOptimizationRemarkEmitter MORE(*OF.MF, nullptr); 50658e706a6SJessica Paquette MachineOptimizationRemark R(DEBUG_TYPE, "OutlinedFunction", 50758e706a6SJessica Paquette MBB->findDebugLoc(MBB->begin()), MBB); 50858e706a6SJessica Paquette R << "Saved " << NV("OutliningBenefit", OF.getBenefit()) << " bytes by " 50934b618bfSJessica Paquette << "outlining " << NV("Length", OF.getNumInstrs()) << " instructions " 51058e706a6SJessica Paquette << "from " << NV("NumOccurrences", OF.getOccurrenceCount()) 51158e706a6SJessica Paquette << " locations. " 51258e706a6SJessica Paquette << "(Found at: "; 51358e706a6SJessica Paquette 51458e706a6SJessica Paquette // Tell the user the other places the candidate was found. 51558e706a6SJessica Paquette for (size_t i = 0, e = OF.Candidates.size(); i < e; i++) { 51658e706a6SJessica Paquette 51758e706a6SJessica Paquette R << NV((Twine("StartLoc") + Twine(i)).str(), 518e18d6ff0SJessica Paquette OF.Candidates[i].front()->getDebugLoc()); 51958e706a6SJessica Paquette if (i != e - 1) 52058e706a6SJessica Paquette R << ", "; 52158e706a6SJessica Paquette } 52258e706a6SJessica Paquette 52358e706a6SJessica Paquette R << ")"; 52458e706a6SJessica Paquette 52558e706a6SJessica Paquette MORE.emit(R); 52658e706a6SJessica Paquette } 52758e706a6SJessica Paquette 5286b7615aeSPuyan Lotfi void MachineOutliner::findCandidates( 5296b7615aeSPuyan Lotfi InstructionMapper &Mapper, std::vector<OutlinedFunction> &FunctionList) { 53078681be2SJessica Paquette FunctionList.clear(); 531ce3a2dcfSJessica Paquette SuffixTree ST(Mapper.UnsignedVec); 53278681be2SJessica Paquette 533fbe7f5e9SDavid Tellenbach // First, find all of the repeated substrings in the tree of minimum length 5344e54ef88SJessica Paquette // 2. 535d87f5449SJessica Paquette std::vector<Candidate> CandidatesForRepeatedSeq; 53622f00f61SKazu Hirata for (const SuffixTree::RepeatedSubstring &RS : ST) { 537d4e7d074SJessica Paquette CandidatesForRepeatedSeq.clear(); 5384e54ef88SJessica Paquette unsigned StringLen = RS.Length; 5394e54ef88SJessica Paquette for (const unsigned &StartIdx : RS.StartIndices) { 54052df8015SJessica Paquette unsigned EndIdx = StartIdx + StringLen - 1; 54152df8015SJessica Paquette // Trick: Discard some candidates that would be incompatible with the 54252df8015SJessica Paquette // ones we've already found for this sequence. This will save us some 54352df8015SJessica Paquette // work in candidate selection. 54452df8015SJessica Paquette // 54552df8015SJessica Paquette // If two candidates overlap, then we can't outline them both. This 54652df8015SJessica Paquette // happens when we have candidates that look like, say 54752df8015SJessica Paquette // 54852df8015SJessica Paquette // AA (where each "A" is an instruction). 54952df8015SJessica Paquette // 55052df8015SJessica Paquette // We might have some portion of the module that looks like this: 55152df8015SJessica Paquette // AAAAAA (6 A's) 55252df8015SJessica Paquette // 55352df8015SJessica Paquette // In this case, there are 5 different copies of "AA" in this range, but 55452df8015SJessica Paquette // at most 3 can be outlined. If only outlining 3 of these is going to 55552df8015SJessica Paquette // be unbeneficial, then we ought to not bother. 55652df8015SJessica Paquette // 55752df8015SJessica Paquette // Note that two things DON'T overlap when they look like this: 55852df8015SJessica Paquette // start1...end1 .... start2...end2 55952df8015SJessica Paquette // That is, one must either 56052df8015SJessica Paquette // * End before the other starts 56152df8015SJessica Paquette // * Start after the other ends 562cfeecdf7SKazu Hirata if (llvm::all_of(CandidatesForRepeatedSeq, [&StartIdx, 563cfeecdf7SKazu Hirata &EndIdx](const Candidate &C) { 5644e54ef88SJessica Paquette return (EndIdx < C.getStartIdx() || StartIdx > C.getEndIdx()); 56552df8015SJessica Paquette })) { 56652df8015SJessica Paquette // It doesn't overlap with anything, so we can outline it. 56752df8015SJessica Paquette // Each sequence is over [StartIt, EndIt]. 568aa087327SJessica Paquette // Save the candidate and its location. 569aa087327SJessica Paquette 57052df8015SJessica Paquette MachineBasicBlock::iterator StartIt = Mapper.InstrList[StartIdx]; 57152df8015SJessica Paquette MachineBasicBlock::iterator EndIt = Mapper.InstrList[EndIdx]; 572cad864d4SJessica Paquette MachineBasicBlock *MBB = StartIt->getParent(); 57352df8015SJessica Paquette 574aa087327SJessica Paquette CandidatesForRepeatedSeq.emplace_back(StartIdx, StringLen, StartIt, 575cad864d4SJessica Paquette EndIt, MBB, FunctionList.size(), 576cad864d4SJessica Paquette Mapper.MBBFlagsMap[MBB]); 57752df8015SJessica Paquette } 578809d708bSJessica Paquette } 579809d708bSJessica Paquette 580acc15e12SJessica Paquette // We've found something we might want to outline. 581acc15e12SJessica Paquette // Create an OutlinedFunction to store it and check if it'd be beneficial 582acc15e12SJessica Paquette // to outline. 583ddb039a1SJessica Paquette if (CandidatesForRepeatedSeq.size() < 2) 584da08078fSEli Friedman continue; 585da08078fSEli Friedman 586da08078fSEli Friedman // Arbitrarily choose a TII from the first candidate. 587da08078fSEli Friedman // FIXME: Should getOutliningCandidateInfo move to TargetMachine? 588da08078fSEli Friedman const TargetInstrInfo *TII = 589da08078fSEli Friedman CandidatesForRepeatedSeq[0].getMF()->getSubtarget().getInstrInfo(); 590da08078fSEli Friedman 5919d93c602SJessica Paquette OutlinedFunction OF = 592da08078fSEli Friedman TII->getOutliningCandidateInfo(CandidatesForRepeatedSeq); 5939d93c602SJessica Paquette 594b2d53c5dSJessica Paquette // If we deleted too many candidates, then there's nothing worth outlining. 595b2d53c5dSJessica Paquette // FIXME: This should take target-specified instruction sizes into account. 596b2d53c5dSJessica Paquette if (OF.Candidates.size() < 2) 5979d93c602SJessica Paquette continue; 5989d93c602SJessica Paquette 599ffe4abc5SJessica Paquette // Is it better to outline this candidate than not? 600f94d1d29SJessica Paquette if (OF.getBenefit() < 1) { 6011cc52a00SJessica Paquette emitNotOutliningCheaperRemark(StringLen, CandidatesForRepeatedSeq, OF); 60278681be2SJessica Paquette continue; 603ffe4abc5SJessica Paquette } 60478681be2SJessica Paquette 605acc15e12SJessica Paquette FunctionList.push_back(OF); 60678681be2SJessica Paquette } 607596f483aSJessica Paquette } 608596f483aSJessica Paquette 6096b7615aeSPuyan Lotfi MachineFunction *MachineOutliner::createOutlinedFunction( 6106b7615aeSPuyan Lotfi Module &M, OutlinedFunction &OF, InstructionMapper &Mapper, unsigned Name) { 611596f483aSJessica Paquette 612ae6c9403SFangrui Song // Create the function name. This should be unique. 613a3eb0facSJessica Paquette // FIXME: We should have a better naming scheme. This should be stable, 614a3eb0facSJessica Paquette // regardless of changes to the outliner's cost model/traversal order. 6150c4aab27SPuyan Lotfi std::string FunctionName = "OUTLINED_FUNCTION_"; 6160d896278SJin Lin if (OutlineRepeatedNum > 0) 6170c4aab27SPuyan Lotfi FunctionName += std::to_string(OutlineRepeatedNum + 1) + "_"; 6180c4aab27SPuyan Lotfi FunctionName += std::to_string(Name); 619596f483aSJessica Paquette 620596f483aSJessica Paquette // Create the function using an IR-level function. 621596f483aSJessica Paquette LLVMContext &C = M.getContext(); 622ae6c9403SFangrui Song Function *F = Function::Create(FunctionType::get(Type::getVoidTy(C), false), 623ae6c9403SFangrui Song Function::ExternalLinkage, FunctionName, M); 624596f483aSJessica Paquette 625596f483aSJessica Paquette // NOTE: If this is linkonceodr, then we can take advantage of linker deduping 626596f483aSJessica Paquette // which gives us better results when we outline from linkonceodr functions. 627d506bf8eSJessica Paquette F->setLinkage(GlobalValue::InternalLinkage); 628596f483aSJessica Paquette F->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 629596f483aSJessica Paquette 63025bef201SEli Friedman // Set optsize/minsize, so we don't insert padding between outlined 63125bef201SEli Friedman // functions. 63225bef201SEli Friedman F->addFnAttr(Attribute::OptimizeForSize); 63325bef201SEli Friedman F->addFnAttr(Attribute::MinSize); 63425bef201SEli Friedman 635e18d6ff0SJessica Paquette Candidate &FirstCand = OF.Candidates.front(); 636f5f28d5bSTies Stuij const TargetInstrInfo &TII = 637f5f28d5bSTies Stuij *FirstCand.getMF()->getSubtarget().getInstrInfo(); 638e3932eeeSJessica Paquette 639f5f28d5bSTies Stuij TII.mergeOutliningCandidateAttributes(*F, OF.Candidates); 640ca4c1ad8SDavid Green 6416398903aSMomchil Velikov // Set uwtable, so we generate eh_frame. 6426398903aSMomchil Velikov UWTableKind UW = std::accumulate( 6436398903aSMomchil Velikov OF.Candidates.cbegin(), OF.Candidates.cend(), UWTableKind::None, 6446398903aSMomchil Velikov [](UWTableKind K, const outliner::Candidate &C) { 6456398903aSMomchil Velikov return std::max(K, C.getMF()->getFunction().getUWTableKind()); 6466398903aSMomchil Velikov }); 6476398903aSMomchil Velikov if (UW != UWTableKind::None) 6486398903aSMomchil Velikov F->setUWTableKind(UW); 6496398903aSMomchil Velikov 650596f483aSJessica Paquette BasicBlock *EntryBB = BasicBlock::Create(C, "entry", F); 651596f483aSJessica Paquette IRBuilder<> Builder(EntryBB); 652596f483aSJessica Paquette Builder.CreateRetVoid(); 653596f483aSJessica Paquette 654cc382cf7SYuanfang Chen MachineModuleInfo &MMI = getAnalysis<MachineModuleInfoWrapperPass>().getMMI(); 6557bda1958SMatthias Braun MachineFunction &MF = MMI.getOrCreateMachineFunction(*F); 656596f483aSJessica Paquette MachineBasicBlock &MBB = *MF.CreateMachineBasicBlock(); 657596f483aSJessica Paquette 658596f483aSJessica Paquette // Insert the new function into the module. 659596f483aSJessica Paquette MF.insert(MF.begin(), &MBB); 660596f483aSJessica Paquette 6618d5024f7SAndrew Litteken MachineFunction *OriginalMF = FirstCand.front()->getMF(); 6628d5024f7SAndrew Litteken const std::vector<MCCFIInstruction> &Instrs = 6638d5024f7SAndrew Litteken OriginalMF->getFrameInstructions(); 66434b618bfSJessica Paquette for (auto I = FirstCand.front(), E = std::next(FirstCand.back()); I != E; 66534b618bfSJessica Paquette ++I) { 6665b30d9adSMomchil Velikov if (I->isDebugInstr()) 6675b30d9adSMomchil Velikov continue; 66834b618bfSJessica Paquette MachineInstr *NewMI = MF.CloneMachineInstr(&*I); 6698d5024f7SAndrew Litteken if (I->isCFIInstruction()) { 6708d5024f7SAndrew Litteken unsigned CFIIndex = NewMI->getOperand(0).getCFIIndex(); 6718d5024f7SAndrew Litteken MCCFIInstruction CFI = Instrs[CFIIndex]; 6728d5024f7SAndrew Litteken (void)MF.addFrameInst(CFI); 6738d5024f7SAndrew Litteken } 674c73c0307SChandler Carruth NewMI->dropMemRefs(MF); 675596f483aSJessica Paquette 676596f483aSJessica Paquette // Don't keep debug information for outlined instructions. 677596f483aSJessica Paquette NewMI->setDebugLoc(DebugLoc()); 678596f483aSJessica Paquette MBB.insert(MBB.end(), NewMI); 679596f483aSJessica Paquette } 680596f483aSJessica Paquette 6811a78b0bdSEli Friedman // Set normal properties for a late MachineFunction. 6821a78b0bdSEli Friedman MF.getProperties().reset(MachineFunctionProperties::Property::IsSSA); 6831a78b0bdSEli Friedman MF.getProperties().set(MachineFunctionProperties::Property::NoPHIs); 6841a78b0bdSEli Friedman MF.getProperties().set(MachineFunctionProperties::Property::NoVRegs); 6851a78b0bdSEli Friedman MF.getProperties().set(MachineFunctionProperties::Property::TracksLiveness); 686cc06a782SJessica Paquette MF.getRegInfo().freezeReservedRegs(MF); 687cc06a782SJessica Paquette 6881a78b0bdSEli Friedman // Compute live-in set for outlined fn 6891a78b0bdSEli Friedman const MachineRegisterInfo &MRI = MF.getRegInfo(); 6901a78b0bdSEli Friedman const TargetRegisterInfo &TRI = *MRI.getTargetRegisterInfo(); 6911a78b0bdSEli Friedman LivePhysRegs LiveIns(TRI); 6921a78b0bdSEli Friedman for (auto &Cand : OF.Candidates) { 6931a78b0bdSEli Friedman // Figure out live-ins at the first instruction. 6941a78b0bdSEli Friedman MachineBasicBlock &OutlineBB = *Cand.front()->getParent(); 6951a78b0bdSEli Friedman LivePhysRegs CandLiveIns(TRI); 6961a78b0bdSEli Friedman CandLiveIns.addLiveOuts(OutlineBB); 6971a78b0bdSEli Friedman for (const MachineInstr &MI : 6981a78b0bdSEli Friedman reverse(make_range(Cand.front(), OutlineBB.end()))) 6991a78b0bdSEli Friedman CandLiveIns.stepBackward(MI); 7001a78b0bdSEli Friedman 7011a78b0bdSEli Friedman // The live-in set for the outlined function is the union of the live-ins 7021a78b0bdSEli Friedman // from all the outlining points. 7036a6e3821SKazu Hirata for (MCPhysReg Reg : CandLiveIns) 7041a78b0bdSEli Friedman LiveIns.addReg(Reg); 7051a78b0bdSEli Friedman } 7061a78b0bdSEli Friedman addLiveIns(MBB, LiveIns); 7071a78b0bdSEli Friedman 7081a78b0bdSEli Friedman TII.buildOutlinedFrame(MBB, MF, OF); 7091a78b0bdSEli Friedman 710a499c3c2SJessica Paquette // If there's a DISubprogram associated with this outlined function, then 711a499c3c2SJessica Paquette // emit debug info for the outlined function. 712aa087327SJessica Paquette if (DISubprogram *SP = getSubprogramOrNull(OF)) { 713a499c3c2SJessica Paquette // We have a DISubprogram. Get its DICompileUnit. 714a499c3c2SJessica Paquette DICompileUnit *CU = SP->getUnit(); 715a499c3c2SJessica Paquette DIBuilder DB(M, true, CU); 716a499c3c2SJessica Paquette DIFile *Unit = SP->getFile(); 717a499c3c2SJessica Paquette Mangler Mg; 718a499c3c2SJessica Paquette // Get the mangled name of the function for the linkage name. 719a499c3c2SJessica Paquette std::string Dummy; 720a499c3c2SJessica Paquette llvm::raw_string_ostream MangledNameStream(Dummy); 721a499c3c2SJessica Paquette Mg.getNameWithPrefix(MangledNameStream, F, false); 722a499c3c2SJessica Paquette 723cc06a782SJessica Paquette DISubprogram *OutlinedSP = DB.createFunction( 724a499c3c2SJessica Paquette Unit /* Context */, F->getName(), StringRef(MangledNameStream.str()), 725a499c3c2SJessica Paquette Unit /* File */, 726a499c3c2SJessica Paquette 0 /* Line 0 is reserved for compiler-generated code. */, 727cc06a782SJessica Paquette DB.createSubroutineType(DB.getOrCreateTypeArray(None)), /* void type */ 728cda54210SPaul Robinson 0, /* Line 0 is reserved for compiler-generated code. */ 729a499c3c2SJessica Paquette DINode::DIFlags::FlagArtificial /* Compiler-generated code. */, 730cda54210SPaul Robinson /* Outlined code is optimized code by definition. */ 731cda54210SPaul Robinson DISubprogram::SPFlagDefinition | DISubprogram::SPFlagOptimized); 732a499c3c2SJessica Paquette 733a499c3c2SJessica Paquette // Don't add any new variables to the subprogram. 734cc06a782SJessica Paquette DB.finalizeSubprogram(OutlinedSP); 735a499c3c2SJessica Paquette 736a499c3c2SJessica Paquette // Attach subprogram to the function. 737cc06a782SJessica Paquette F->setSubprogram(OutlinedSP); 738a499c3c2SJessica Paquette // We're done with the DIBuilder. 739a499c3c2SJessica Paquette DB.finalize(); 740a499c3c2SJessica Paquette } 741a499c3c2SJessica Paquette 742596f483aSJessica Paquette return &MF; 743596f483aSJessica Paquette } 744596f483aSJessica Paquette 7454ae3b71dSJessica Paquette bool MachineOutliner::outline(Module &M, 7464ae3b71dSJessica Paquette std::vector<OutlinedFunction> &FunctionList, 747a51fc8ddSPuyan Lotfi InstructionMapper &Mapper, 748a51fc8ddSPuyan Lotfi unsigned &OutlinedFunctionNum) { 749596f483aSJessica Paquette 750596f483aSJessica Paquette bool OutlinedSomething = false; 751a3eb0facSJessica Paquette 752962b3ae6SJessica Paquette // Sort by benefit. The most beneficial functions should be outlined first. 753efd94c56SFangrui Song llvm::stable_sort(FunctionList, [](const OutlinedFunction &LHS, 754efd94c56SFangrui Song const OutlinedFunction &RHS) { 755962b3ae6SJessica Paquette return LHS.getBenefit() > RHS.getBenefit(); 756962b3ae6SJessica Paquette }); 757596f483aSJessica Paquette 758962b3ae6SJessica Paquette // Walk over each function, outlining them as we go along. Functions are 759962b3ae6SJessica Paquette // outlined greedily, based off the sort above. 760962b3ae6SJessica Paquette for (OutlinedFunction &OF : FunctionList) { 761962b3ae6SJessica Paquette // If we outlined something that overlapped with a candidate in a previous 762962b3ae6SJessica Paquette // step, then we can't outline from it. 763e18d6ff0SJessica Paquette erase_if(OF.Candidates, [&Mapper](Candidate &C) { 764d9d9309bSJessica Paquette return std::any_of( 765e18d6ff0SJessica Paquette Mapper.UnsignedVec.begin() + C.getStartIdx(), 766e18d6ff0SJessica Paquette Mapper.UnsignedVec.begin() + C.getEndIdx() + 1, 767d9d9309bSJessica Paquette [](unsigned I) { return (I == static_cast<unsigned>(-1)); }); 768235d877eSJessica Paquette }); 769596f483aSJessica Paquette 770962b3ae6SJessica Paquette // If we made it unbeneficial to outline this function, skip it. 77185af63d0SJessica Paquette if (OF.getBenefit() < 1) 772596f483aSJessica Paquette continue; 773596f483aSJessica Paquette 774962b3ae6SJessica Paquette // It's beneficial. Create the function and outline its sequence's 775962b3ae6SJessica Paquette // occurrences. 776a3eb0facSJessica Paquette OF.MF = createOutlinedFunction(M, OF, Mapper, OutlinedFunctionNum); 77758e706a6SJessica Paquette emitOutlinedFunctionRemark(OF); 778acffa28cSJessica Paquette FunctionsCreated++; 779a3eb0facSJessica Paquette OutlinedFunctionNum++; // Created a function, move to the next name. 780596f483aSJessica Paquette MachineFunction *MF = OF.MF; 781596f483aSJessica Paquette const TargetSubtargetInfo &STI = MF->getSubtarget(); 782596f483aSJessica Paquette const TargetInstrInfo &TII = *STI.getInstrInfo(); 783596f483aSJessica Paquette 784962b3ae6SJessica Paquette // Replace occurrences of the sequence with calls to the new function. 785e18d6ff0SJessica Paquette for (Candidate &C : OF.Candidates) { 786962b3ae6SJessica Paquette MachineBasicBlock &MBB = *C.getMBB(); 787962b3ae6SJessica Paquette MachineBasicBlock::iterator StartIt = C.front(); 788962b3ae6SJessica Paquette MachineBasicBlock::iterator EndIt = C.back(); 789596f483aSJessica Paquette 790962b3ae6SJessica Paquette // Insert the call. 791962b3ae6SJessica Paquette auto CallInst = TII.insertOutlinedCall(M, MBB, StartIt, *MF, C); 792962b3ae6SJessica Paquette 793962b3ae6SJessica Paquette // If the caller tracks liveness, then we need to make sure that 794962b3ae6SJessica Paquette // anything we outline doesn't break liveness assumptions. The outlined 795962b3ae6SJessica Paquette // functions themselves currently don't track liveness, but we should 796962b3ae6SJessica Paquette // make sure that the ranges we yank things out of aren't wrong. 797aa087327SJessica Paquette if (MBB.getParent()->getProperties().hasProperty( 7980b672491SJessica Paquette MachineFunctionProperties::Property::TracksLiveness)) { 799fc6fda90SJin Lin // The following code is to add implicit def operands to the call 80071d3869fSDjordje Todorovic // instruction. It also updates call site information for moved 80171d3869fSDjordje Todorovic // code. 802fc6fda90SJin Lin SmallSet<Register, 2> UseRegs, DefRegs; 8030b672491SJessica Paquette // Copy over the defs in the outlined range. 8040b672491SJessica Paquette // First inst in outlined range <-- Anything that's defined in this 805962b3ae6SJessica Paquette // ... .. range has to be added as an 806962b3ae6SJessica Paquette // implicit Last inst in outlined range <-- def to the call 80771d3869fSDjordje Todorovic // instruction. Also remove call site information for outlined block 808fc6fda90SJin Lin // of code. The exposed uses need to be copied in the outlined range. 809ffd5e121SPuyan Lotfi for (MachineBasicBlock::reverse_iterator 810ffd5e121SPuyan Lotfi Iter = EndIt.getReverse(), 811fc6fda90SJin Lin Last = std::next(CallInst.getReverse()); 812fc6fda90SJin Lin Iter != Last; Iter++) { 813fc6fda90SJin Lin MachineInstr *MI = &*Iter; 8141e9fa0b1SDianQK SmallSet<Register, 2> InstrUseRegs; 815fc6fda90SJin Lin for (MachineOperand &MOP : MI->operands()) { 816fc6fda90SJin Lin // Skip over anything that isn't a register. 817fc6fda90SJin Lin if (!MOP.isReg()) 818fc6fda90SJin Lin continue; 819fc6fda90SJin Lin 820fc6fda90SJin Lin if (MOP.isDef()) { 821fc6fda90SJin Lin // Introduce DefRegs set to skip the redundant register. 822fc6fda90SJin Lin DefRegs.insert(MOP.getReg()); 8231e9fa0b1SDianQK if (UseRegs.count(MOP.getReg()) && 8241e9fa0b1SDianQK !InstrUseRegs.count(MOP.getReg())) 825fc6fda90SJin Lin // Since the regiester is modeled as defined, 826fc6fda90SJin Lin // it is not necessary to be put in use register set. 827fc6fda90SJin Lin UseRegs.erase(MOP.getReg()); 828fc6fda90SJin Lin } else if (!MOP.isUndef()) { 829fc6fda90SJin Lin // Any register which is not undefined should 830fc6fda90SJin Lin // be put in the use register set. 831fc6fda90SJin Lin UseRegs.insert(MOP.getReg()); 8321e9fa0b1SDianQK InstrUseRegs.insert(MOP.getReg()); 833fc6fda90SJin Lin } 834fc6fda90SJin Lin } 835fc6fda90SJin Lin if (MI->isCandidateForCallSiteEntry()) 836fc6fda90SJin Lin MI->getMF()->eraseCallSiteInfo(MI); 837fc6fda90SJin Lin } 838fc6fda90SJin Lin 839fc6fda90SJin Lin for (const Register &I : DefRegs) 840fc6fda90SJin Lin // If it's a def, add it to the call instruction. 841ffd5e121SPuyan Lotfi CallInst->addOperand( 842ffd5e121SPuyan Lotfi MachineOperand::CreateReg(I, true, /* isDef = true */ 843fc6fda90SJin Lin true /* isImp = true */)); 844fc6fda90SJin Lin 845fc6fda90SJin Lin for (const Register &I : UseRegs) 846fc6fda90SJin Lin // If it's a exposed use, add it to the call instruction. 847fc6fda90SJin Lin CallInst->addOperand( 848fc6fda90SJin Lin MachineOperand::CreateReg(I, false, /* isDef = false */ 849fc6fda90SJin Lin true /* isImp = true */)); 8500b672491SJessica Paquette } 8510b672491SJessica Paquette 852aa087327SJessica Paquette // Erase from the point after where the call was inserted up to, and 853aa087327SJessica Paquette // including, the final instruction in the sequence. 854aa087327SJessica Paquette // Erase needs one past the end, so we need std::next there too. 855aa087327SJessica Paquette MBB.erase(std::next(StartIt), std::next(EndIt)); 856235d877eSJessica Paquette 857d9d9309bSJessica Paquette // Keep track of what we removed by marking them all as -1. 858*3b9707dbSKazu Hirata for (unsigned &I : 859*3b9707dbSKazu Hirata llvm::make_range(Mapper.UnsignedVec.begin() + C.getStartIdx(), 860*3b9707dbSKazu Hirata Mapper.UnsignedVec.begin() + C.getEndIdx() + 1)) 861*3b9707dbSKazu Hirata I = static_cast<unsigned>(-1); 862596f483aSJessica Paquette OutlinedSomething = true; 863596f483aSJessica Paquette 864596f483aSJessica Paquette // Statistics. 865596f483aSJessica Paquette NumOutlined++; 866596f483aSJessica Paquette } 867962b3ae6SJessica Paquette } 868596f483aSJessica Paquette 869d34e60caSNicola Zaghen LLVM_DEBUG(dbgs() << "OutlinedSomething = " << OutlinedSomething << "\n";); 870596f483aSJessica Paquette return OutlinedSomething; 871596f483aSJessica Paquette } 872596f483aSJessica Paquette 873050d1ac4SJessica Paquette void MachineOutliner::populateMapper(InstructionMapper &Mapper, Module &M, 874050d1ac4SJessica Paquette MachineModuleInfo &MMI) { 875df82274fSJessica Paquette // Build instruction mappings for each function in the module. Start by 876df82274fSJessica Paquette // iterating over each Function in M. 877596f483aSJessica Paquette for (Function &F : M) { 878596f483aSJessica Paquette 879df82274fSJessica Paquette // If there's nothing in F, then there's no reason to try and outline from 880df82274fSJessica Paquette // it. 881df82274fSJessica Paquette if (F.empty()) 882596f483aSJessica Paquette continue; 883596f483aSJessica Paquette 884df82274fSJessica Paquette // There's something in F. Check if it has a MachineFunction associated with 885df82274fSJessica Paquette // it. 886df82274fSJessica Paquette MachineFunction *MF = MMI.getMachineFunction(F); 887596f483aSJessica Paquette 888df82274fSJessica Paquette // If it doesn't, then there's nothing to outline from. Move to the next 889df82274fSJessica Paquette // Function. 890df82274fSJessica Paquette if (!MF) 891596f483aSJessica Paquette continue; 892596f483aSJessica Paquette 893da08078fSEli Friedman const TargetInstrInfo *TII = MF->getSubtarget().getInstrInfo(); 894da08078fSEli Friedman 8958bda1881SJessica Paquette if (!RunOnAllFunctions && !TII->shouldOutlineFromFunctionByDefault(*MF)) 8968bda1881SJessica Paquette continue; 8978bda1881SJessica Paquette 898df82274fSJessica Paquette // We have a MachineFunction. Ask the target if it's suitable for outlining. 899df82274fSJessica Paquette // If it isn't, then move on to the next Function in the module. 900df82274fSJessica Paquette if (!TII->isFunctionSafeToOutlineFrom(*MF, OutlineFromLinkOnceODRs)) 901df82274fSJessica Paquette continue; 902df82274fSJessica Paquette 903df82274fSJessica Paquette // We have a function suitable for outlining. Iterate over every 904df82274fSJessica Paquette // MachineBasicBlock in MF and try to map its instructions to a list of 905df82274fSJessica Paquette // unsigned integers. 906df82274fSJessica Paquette for (MachineBasicBlock &MBB : *MF) { 907df82274fSJessica Paquette // If there isn't anything in MBB, then there's no point in outlining from 908df82274fSJessica Paquette // it. 909b320ca26SJessica Paquette // If there are fewer than 2 instructions in the MBB, then it can't ever 910b320ca26SJessica Paquette // contain something worth outlining. 911b320ca26SJessica Paquette // FIXME: This should be based off of the maximum size in B of an outlined 912b320ca26SJessica Paquette // call versus the size in B of the MBB. 913b320ca26SJessica Paquette if (MBB.empty() || MBB.size() < 2) 914df82274fSJessica Paquette continue; 915df82274fSJessica Paquette 916df82274fSJessica Paquette // Check if MBB could be the target of an indirect branch. If it is, then 917df82274fSJessica Paquette // we don't want to outline from it. 918df82274fSJessica Paquette if (MBB.hasAddressTaken()) 919df82274fSJessica Paquette continue; 920df82274fSJessica Paquette 921df82274fSJessica Paquette // MBB is suitable for outlining. Map it to a list of unsigneds. 922da08078fSEli Friedman Mapper.convertToUnsignedVec(MBB, *TII); 923596f483aSJessica Paquette } 92412389e37SJessica Paquette 92512389e37SJessica Paquette // Statistics. 92612389e37SJessica Paquette UnsignedVecSize = Mapper.UnsignedVec.size(); 927596f483aSJessica Paquette } 928050d1ac4SJessica Paquette } 929050d1ac4SJessica Paquette 9302386eab3SJessica Paquette void MachineOutliner::initSizeRemarkInfo( 9312386eab3SJessica Paquette const Module &M, const MachineModuleInfo &MMI, 9322386eab3SJessica Paquette StringMap<unsigned> &FunctionToInstrCount) { 9332386eab3SJessica Paquette // Collect instruction counts for every function. We'll use this to emit 9342386eab3SJessica Paquette // per-function size remarks later. 9352386eab3SJessica Paquette for (const Function &F : M) { 9362386eab3SJessica Paquette MachineFunction *MF = MMI.getMachineFunction(F); 9372386eab3SJessica Paquette 9382386eab3SJessica Paquette // We only care about MI counts here. If there's no MachineFunction at this 9392386eab3SJessica Paquette // point, then there won't be after the outliner runs, so let's move on. 9402386eab3SJessica Paquette if (!MF) 9412386eab3SJessica Paquette continue; 9422386eab3SJessica Paquette FunctionToInstrCount[F.getName().str()] = MF->getInstructionCount(); 9432386eab3SJessica Paquette } 9442386eab3SJessica Paquette } 9452386eab3SJessica Paquette 9462386eab3SJessica Paquette void MachineOutliner::emitInstrCountChangedRemark( 9472386eab3SJessica Paquette const Module &M, const MachineModuleInfo &MMI, 9482386eab3SJessica Paquette const StringMap<unsigned> &FunctionToInstrCount) { 9492386eab3SJessica Paquette // Iterate over each function in the module and emit remarks. 9502386eab3SJessica Paquette // Note that we won't miss anything by doing this, because the outliner never 9512386eab3SJessica Paquette // deletes functions. 9522386eab3SJessica Paquette for (const Function &F : M) { 9532386eab3SJessica Paquette MachineFunction *MF = MMI.getMachineFunction(F); 9542386eab3SJessica Paquette 9552386eab3SJessica Paquette // The outliner never deletes functions. If we don't have a MF here, then we 9562386eab3SJessica Paquette // didn't have one prior to outlining either. 9572386eab3SJessica Paquette if (!MF) 9582386eab3SJessica Paquette continue; 9592386eab3SJessica Paquette 960adcd0268SBenjamin Kramer std::string Fname = std::string(F.getName()); 9612386eab3SJessica Paquette unsigned FnCountAfter = MF->getInstructionCount(); 9622386eab3SJessica Paquette unsigned FnCountBefore = 0; 9632386eab3SJessica Paquette 9642386eab3SJessica Paquette // Check if the function was recorded before. 9652386eab3SJessica Paquette auto It = FunctionToInstrCount.find(Fname); 9662386eab3SJessica Paquette 9672386eab3SJessica Paquette // Did we have a previously-recorded size? If yes, then set FnCountBefore 9682386eab3SJessica Paquette // to that. 9692386eab3SJessica Paquette if (It != FunctionToInstrCount.end()) 9702386eab3SJessica Paquette FnCountBefore = It->second; 9712386eab3SJessica Paquette 9722386eab3SJessica Paquette // Compute the delta and emit a remark if there was a change. 9732386eab3SJessica Paquette int64_t FnDelta = static_cast<int64_t>(FnCountAfter) - 9742386eab3SJessica Paquette static_cast<int64_t>(FnCountBefore); 9752386eab3SJessica Paquette if (FnDelta == 0) 9762386eab3SJessica Paquette continue; 9772386eab3SJessica Paquette 9782386eab3SJessica Paquette MachineOptimizationRemarkEmitter MORE(*MF, nullptr); 9792386eab3SJessica Paquette MORE.emit([&]() { 9802386eab3SJessica Paquette MachineOptimizationRemarkAnalysis R("size-info", "FunctionMISizeChange", 9816b7615aeSPuyan Lotfi DiagnosticLocation(), &MF->front()); 9822386eab3SJessica Paquette R << DiagnosticInfoOptimizationBase::Argument("Pass", "Machine Outliner") 9832386eab3SJessica Paquette << ": Function: " 9842386eab3SJessica Paquette << DiagnosticInfoOptimizationBase::Argument("Function", F.getName()) 9852386eab3SJessica Paquette << ": MI instruction count changed from " 9862386eab3SJessica Paquette << DiagnosticInfoOptimizationBase::Argument("MIInstrsBefore", 9872386eab3SJessica Paquette FnCountBefore) 9882386eab3SJessica Paquette << " to " 9892386eab3SJessica Paquette << DiagnosticInfoOptimizationBase::Argument("MIInstrsAfter", 9902386eab3SJessica Paquette FnCountAfter) 9912386eab3SJessica Paquette << "; Delta: " 9922386eab3SJessica Paquette << DiagnosticInfoOptimizationBase::Argument("Delta", FnDelta); 9932386eab3SJessica Paquette return R; 9942386eab3SJessica Paquette }); 9952386eab3SJessica Paquette } 9962386eab3SJessica Paquette } 9972386eab3SJessica Paquette 998ffd5e121SPuyan Lotfi bool MachineOutliner::runOnModule(Module &M) { 999050d1ac4SJessica Paquette // Check if there's anything in the module. If it's empty, then there's 1000050d1ac4SJessica Paquette // nothing to outline. 1001050d1ac4SJessica Paquette if (M.empty()) 1002050d1ac4SJessica Paquette return false; 1003050d1ac4SJessica Paquette 1004a51fc8ddSPuyan Lotfi // Number to append to the current outlined function. 1005a51fc8ddSPuyan Lotfi unsigned OutlinedFunctionNum = 0; 1006a51fc8ddSPuyan Lotfi 1007ffd5e121SPuyan Lotfi OutlineRepeatedNum = 0; 1008a51fc8ddSPuyan Lotfi if (!doOutline(M, OutlinedFunctionNum)) 1009a51fc8ddSPuyan Lotfi return false; 1010ffd5e121SPuyan Lotfi 1011ffd5e121SPuyan Lotfi for (unsigned I = 0; I < OutlinerReruns; ++I) { 1012ffd5e121SPuyan Lotfi OutlinedFunctionNum = 0; 1013ffd5e121SPuyan Lotfi OutlineRepeatedNum++; 1014ffd5e121SPuyan Lotfi if (!doOutline(M, OutlinedFunctionNum)) { 1015ffd5e121SPuyan Lotfi LLVM_DEBUG({ 1016ffd5e121SPuyan Lotfi dbgs() << "Did not outline on iteration " << I + 2 << " out of " 1017ffd5e121SPuyan Lotfi << OutlinerReruns + 1 << "\n"; 1018ffd5e121SPuyan Lotfi }); 1019ffd5e121SPuyan Lotfi break; 1020ffd5e121SPuyan Lotfi } 1021ffd5e121SPuyan Lotfi } 1022ffd5e121SPuyan Lotfi 1023a51fc8ddSPuyan Lotfi return true; 1024a51fc8ddSPuyan Lotfi } 1025a51fc8ddSPuyan Lotfi 1026a51fc8ddSPuyan Lotfi bool MachineOutliner::doOutline(Module &M, unsigned &OutlinedFunctionNum) { 1027cc382cf7SYuanfang Chen MachineModuleInfo &MMI = getAnalysis<MachineModuleInfoWrapperPass>().getMMI(); 1028050d1ac4SJessica Paquette 1029050d1ac4SJessica Paquette // If the user passed -enable-machine-outliner=always or 1030050d1ac4SJessica Paquette // -enable-machine-outliner, the pass will run on all functions in the module. 1031050d1ac4SJessica Paquette // Otherwise, if the target supports default outlining, it will run on all 1032050d1ac4SJessica Paquette // functions deemed by the target to be worth outlining from by default. Tell 1033050d1ac4SJessica Paquette // the user how the outliner is running. 10346b7615aeSPuyan Lotfi LLVM_DEBUG({ 1035050d1ac4SJessica Paquette dbgs() << "Machine Outliner: Running on "; 1036050d1ac4SJessica Paquette if (RunOnAllFunctions) 1037050d1ac4SJessica Paquette dbgs() << "all functions"; 1038050d1ac4SJessica Paquette else 1039050d1ac4SJessica Paquette dbgs() << "target-default functions"; 10406b7615aeSPuyan Lotfi dbgs() << "\n"; 10416b7615aeSPuyan Lotfi }); 1042050d1ac4SJessica Paquette 1043050d1ac4SJessica Paquette // If the user specifies that they want to outline from linkonceodrs, set 1044050d1ac4SJessica Paquette // it here. 1045050d1ac4SJessica Paquette OutlineFromLinkOnceODRs = EnableLinkOnceODROutlining; 1046050d1ac4SJessica Paquette InstructionMapper Mapper; 1047050d1ac4SJessica Paquette 1048050d1ac4SJessica Paquette // Prepare instruction mappings for the suffix tree. 1049050d1ac4SJessica Paquette populateMapper(Mapper, M, MMI); 1050596f483aSJessica Paquette std::vector<OutlinedFunction> FunctionList; 1051596f483aSJessica Paquette 1052acffa28cSJessica Paquette // Find all of the outlining candidates. 1053ce3a2dcfSJessica Paquette findCandidates(Mapper, FunctionList); 1054596f483aSJessica Paquette 10552386eab3SJessica Paquette // If we've requested size remarks, then collect the MI counts of every 10562386eab3SJessica Paquette // function before outlining, and the MI counts after outlining. 10572386eab3SJessica Paquette // FIXME: This shouldn't be in the outliner at all; it should ultimately be 10582386eab3SJessica Paquette // the pass manager's responsibility. 10592386eab3SJessica Paquette // This could pretty easily be placed in outline instead, but because we 10602386eab3SJessica Paquette // really ultimately *don't* want this here, it's done like this for now 10612386eab3SJessica Paquette // instead. 10622386eab3SJessica Paquette 10632386eab3SJessica Paquette // Check if we want size remarks. 10642386eab3SJessica Paquette bool ShouldEmitSizeRemarks = M.shouldEmitInstrCountChangedRemark(); 10652386eab3SJessica Paquette StringMap<unsigned> FunctionToInstrCount; 10662386eab3SJessica Paquette if (ShouldEmitSizeRemarks) 10672386eab3SJessica Paquette initSizeRemarkInfo(M, MMI, FunctionToInstrCount); 10682386eab3SJessica Paquette 1069acffa28cSJessica Paquette // Outline each of the candidates and return true if something was outlined. 1070a51fc8ddSPuyan Lotfi bool OutlinedSomething = 1071a51fc8ddSPuyan Lotfi outline(M, FunctionList, Mapper, OutlinedFunctionNum); 1072729e6869SJessica Paquette 10732386eab3SJessica Paquette // If we outlined something, we definitely changed the MI count of the 10742386eab3SJessica Paquette // module. If we've asked for size remarks, then output them. 10752386eab3SJessica Paquette // FIXME: This should be in the pass manager. 10762386eab3SJessica Paquette if (ShouldEmitSizeRemarks && OutlinedSomething) 10772386eab3SJessica Paquette emitInstrCountChangedRemark(M, MMI, FunctionToInstrCount); 10782386eab3SJessica Paquette 1079ffd5e121SPuyan Lotfi LLVM_DEBUG({ 1080ffd5e121SPuyan Lotfi if (!OutlinedSomething) 1081ffd5e121SPuyan Lotfi dbgs() << "Stopped outlining at iteration " << OutlineRepeatedNum 1082ffd5e121SPuyan Lotfi << " because no changes were found.\n"; 1083ffd5e121SPuyan Lotfi }); 1084ffd5e121SPuyan Lotfi 1085729e6869SJessica Paquette return OutlinedSomething; 1086596f483aSJessica Paquette } 1087