Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 1 | //===- HexagonMachineScheduler.cpp - MI Scheduler for Hexagon -------------===// |
| 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 | // MachineScheduler schedules machine instructions after phi elimination. It |
| 11 | // preserves LiveIntervals so it can be invoked before register allocation. |
| 12 | // |
| 13 | //===----------------------------------------------------------------------===// |
| 14 | |
| 15 | #define DEBUG_TYPE "misched" |
| 16 | |
| 17 | #include "HexagonMachineScheduler.h" |
| 18 | |
| 19 | #include <queue> |
| 20 | |
| 21 | using namespace llvm; |
| 22 | |
Sergei Larin | c6a6660 | 2012-09-14 15:07:59 +0000 | [diff] [blame] | 23 | /// Platform specific modifications to DAG. |
| 24 | void VLIWMachineScheduler::postprocessDAG() { |
| 25 | SUnit* LastSequentialCall = NULL; |
| 26 | // Currently we only catch the situation when compare gets scheduled |
| 27 | // before preceding call. |
| 28 | for (unsigned su = 0, e = SUnits.size(); su != e; ++su) { |
| 29 | // Remember the call. |
| 30 | if (SUnits[su].getInstr()->isCall()) |
| 31 | LastSequentialCall = &(SUnits[su]); |
| 32 | // Look for a compare that defines a predicate. |
| 33 | else if (SUnits[su].getInstr()->isCompare() && LastSequentialCall) |
| 34 | SUnits[su].addPred(SDep(LastSequentialCall, SDep::Order, 0, /*Reg=*/0, |
| 35 | false)); |
| 36 | } |
| 37 | } |
| 38 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 39 | /// Check if scheduling of this SU is possible |
| 40 | /// in the current packet. |
| 41 | /// It is _not_ precise (statefull), it is more like |
| 42 | /// another heuristic. Many corner cases are figured |
| 43 | /// empirically. |
| 44 | bool VLIWResourceModel::isResourceAvailable(SUnit *SU) { |
| 45 | if (!SU || !SU->getInstr()) |
| 46 | return false; |
| 47 | |
| 48 | // First see if the pipeline could receive this instruction |
| 49 | // in the current cycle. |
| 50 | switch (SU->getInstr()->getOpcode()) { |
| 51 | default: |
| 52 | if (!ResourcesModel->canReserveResources(SU->getInstr())) |
| 53 | return false; |
| 54 | case TargetOpcode::EXTRACT_SUBREG: |
| 55 | case TargetOpcode::INSERT_SUBREG: |
| 56 | case TargetOpcode::SUBREG_TO_REG: |
| 57 | case TargetOpcode::REG_SEQUENCE: |
| 58 | case TargetOpcode::IMPLICIT_DEF: |
| 59 | case TargetOpcode::COPY: |
| 60 | case TargetOpcode::INLINEASM: |
| 61 | break; |
| 62 | } |
| 63 | |
| 64 | // Now see if there are no other dependencies to instructions already |
| 65 | // in the packet. |
| 66 | for (unsigned i = 0, e = Packet.size(); i != e; ++i) { |
| 67 | if (Packet[i]->Succs.size() == 0) |
| 68 | continue; |
| 69 | for (SUnit::const_succ_iterator I = Packet[i]->Succs.begin(), |
| 70 | E = Packet[i]->Succs.end(); I != E; ++I) { |
| 71 | // Since we do not add pseudos to packets, might as well |
| 72 | // ignore order dependencies. |
| 73 | if (I->isCtrl()) |
| 74 | continue; |
| 75 | |
| 76 | if (I->getSUnit() == SU) |
| 77 | return false; |
| 78 | } |
| 79 | } |
| 80 | return true; |
| 81 | } |
| 82 | |
| 83 | /// Keep track of available resources. |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 84 | bool VLIWResourceModel::reserveResources(SUnit *SU) { |
| 85 | bool startNewCycle = false; |
Sergei Larin | c6a6660 | 2012-09-14 15:07:59 +0000 | [diff] [blame] | 86 | // Artificially reset state. |
| 87 | if (!SU) { |
| 88 | ResourcesModel->clearResources(); |
| 89 | Packet.clear(); |
| 90 | TotalPackets++; |
| 91 | return false; |
| 92 | } |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 93 | // If this SU does not fit in the packet |
| 94 | // start a new one. |
| 95 | if (!isResourceAvailable(SU)) { |
| 96 | ResourcesModel->clearResources(); |
| 97 | Packet.clear(); |
| 98 | TotalPackets++; |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 99 | startNewCycle = true; |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 100 | } |
| 101 | |
| 102 | switch (SU->getInstr()->getOpcode()) { |
| 103 | default: |
| 104 | ResourcesModel->reserveResources(SU->getInstr()); |
| 105 | break; |
| 106 | case TargetOpcode::EXTRACT_SUBREG: |
| 107 | case TargetOpcode::INSERT_SUBREG: |
| 108 | case TargetOpcode::SUBREG_TO_REG: |
| 109 | case TargetOpcode::REG_SEQUENCE: |
| 110 | case TargetOpcode::IMPLICIT_DEF: |
| 111 | case TargetOpcode::KILL: |
| 112 | case TargetOpcode::PROLOG_LABEL: |
| 113 | case TargetOpcode::EH_LABEL: |
| 114 | case TargetOpcode::COPY: |
| 115 | case TargetOpcode::INLINEASM: |
| 116 | break; |
| 117 | } |
| 118 | Packet.push_back(SU); |
| 119 | |
| 120 | #ifndef NDEBUG |
| 121 | DEBUG(dbgs() << "Packet[" << TotalPackets << "]:\n"); |
| 122 | for (unsigned i = 0, e = Packet.size(); i != e; ++i) { |
| 123 | DEBUG(dbgs() << "\t[" << i << "] SU("); |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 124 | DEBUG(dbgs() << Packet[i]->NodeNum << ")\t"); |
| 125 | DEBUG(Packet[i]->getInstr()->dump()); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 126 | } |
| 127 | #endif |
| 128 | |
| 129 | // If packet is now full, reset the state so in the next cycle |
| 130 | // we start fresh. |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 131 | if (Packet.size() >= SchedModel->getIssueWidth()) { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 132 | ResourcesModel->clearResources(); |
| 133 | Packet.clear(); |
| 134 | TotalPackets++; |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 135 | startNewCycle = true; |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 136 | } |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 137 | |
| 138 | return startNewCycle; |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 139 | } |
| 140 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 141 | /// schedule - Called back from MachineScheduler::runOnMachineFunction |
| 142 | /// after setting up the current scheduling region. [RegionBegin, RegionEnd) |
| 143 | /// only includes instructions that have DAG nodes, not scheduling boundaries. |
| 144 | void VLIWMachineScheduler::schedule() { |
| 145 | DEBUG(dbgs() |
| 146 | << "********** MI Converging Scheduling VLIW BB#" << BB->getNumber() |
| 147 | << " " << BB->getName() |
| 148 | << " in_func " << BB->getParent()->getFunction()->getName() |
Benjamin Kramer | e5c4fe5 | 2012-09-14 12:19:58 +0000 | [diff] [blame] | 149 | << " at loop depth " << MLI.getLoopDepth(BB) |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 150 | << " \n"); |
| 151 | |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 152 | buildDAGWithRegPressure(); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 153 | |
Sergei Larin | c6a6660 | 2012-09-14 15:07:59 +0000 | [diff] [blame] | 154 | // Postprocess the DAG to add platform specific artificial dependencies. |
| 155 | postprocessDAG(); |
| 156 | |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 157 | // To view Height/Depth correctly, they should be accessed at least once. |
| 158 | DEBUG(unsigned maxH = 0; |
| 159 | for (unsigned su = 0, e = SUnits.size(); su != e; ++su) |
| 160 | if (SUnits[su].getHeight() > maxH) |
| 161 | maxH = SUnits[su].getHeight(); |
| 162 | dbgs() << "Max Height " << maxH << "\n";); |
| 163 | DEBUG(unsigned maxD = 0; |
| 164 | for (unsigned su = 0, e = SUnits.size(); su != e; ++su) |
| 165 | if (SUnits[su].getDepth() > maxD) |
| 166 | maxD = SUnits[su].getDepth(); |
| 167 | dbgs() << "Max Depth " << maxD << "\n";); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 168 | DEBUG(for (unsigned su = 0, e = SUnits.size(); su != e; ++su) |
| 169 | SUnits[su].dumpAll(this)); |
| 170 | |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 171 | initQueues(); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 172 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 173 | bool IsTopNode = false; |
| 174 | while (SUnit *SU = SchedImpl->pickNode(IsTopNode)) { |
| 175 | if (!checkSchedLimit()) |
| 176 | break; |
| 177 | |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 178 | scheduleMI(SU, IsTopNode); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 179 | |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 180 | updateQueues(SU, IsTopNode); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 181 | } |
| 182 | assert(CurrentTop == CurrentBottom && "Nonempty unscheduled zone."); |
| 183 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 184 | placeDebugValues(); |
| 185 | } |
| 186 | |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 187 | void ConvergingVLIWScheduler::initialize(ScheduleDAGMI *dag) { |
| 188 | DAG = static_cast<VLIWMachineScheduler*>(dag); |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 189 | SchedModel = DAG->getSchedModel(); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 190 | TRI = DAG->TRI; |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 191 | Top.init(DAG, SchedModel); |
| 192 | Bot.init(DAG, SchedModel); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 193 | |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 194 | // Initialize the HazardRecognizers. If itineraries don't exist, are empty, or |
| 195 | // are disabled, then these HazardRecs will be disabled. |
| 196 | const InstrItineraryData *Itin = DAG->getSchedModel()->getInstrItineraries(); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 197 | const TargetMachine &TM = DAG->MF.getTarget(); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 198 | Top.HazardRec = TM.getInstrInfo()->CreateTargetMIHazardRecognizer(Itin, DAG); |
| 199 | Bot.HazardRec = TM.getInstrInfo()->CreateTargetMIHazardRecognizer(Itin, DAG); |
| 200 | |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 201 | Top.ResourceModel = new VLIWResourceModel(TM, DAG->getSchedModel()); |
| 202 | Bot.ResourceModel = new VLIWResourceModel(TM, DAG->getSchedModel()); |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 203 | |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 204 | assert((!llvm::ForceTopDown || !llvm::ForceBottomUp) && |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 205 | "-misched-topdown incompatible with -misched-bottomup"); |
| 206 | } |
| 207 | |
| 208 | void ConvergingVLIWScheduler::releaseTopNode(SUnit *SU) { |
| 209 | if (SU->isScheduled) |
| 210 | return; |
| 211 | |
| 212 | for (SUnit::succ_iterator I = SU->Preds.begin(), E = SU->Preds.end(); |
| 213 | I != E; ++I) { |
| 214 | unsigned PredReadyCycle = I->getSUnit()->TopReadyCycle; |
| 215 | unsigned MinLatency = I->getMinLatency(); |
| 216 | #ifndef NDEBUG |
| 217 | Top.MaxMinLatency = std::max(MinLatency, Top.MaxMinLatency); |
| 218 | #endif |
| 219 | if (SU->TopReadyCycle < PredReadyCycle + MinLatency) |
| 220 | SU->TopReadyCycle = PredReadyCycle + MinLatency; |
| 221 | } |
| 222 | Top.releaseNode(SU, SU->TopReadyCycle); |
| 223 | } |
| 224 | |
| 225 | void ConvergingVLIWScheduler::releaseBottomNode(SUnit *SU) { |
| 226 | if (SU->isScheduled) |
| 227 | return; |
| 228 | |
| 229 | assert(SU->getInstr() && "Scheduled SUnit must have instr"); |
| 230 | |
| 231 | for (SUnit::succ_iterator I = SU->Succs.begin(), E = SU->Succs.end(); |
| 232 | I != E; ++I) { |
| 233 | unsigned SuccReadyCycle = I->getSUnit()->BotReadyCycle; |
| 234 | unsigned MinLatency = I->getMinLatency(); |
| 235 | #ifndef NDEBUG |
| 236 | Bot.MaxMinLatency = std::max(MinLatency, Bot.MaxMinLatency); |
| 237 | #endif |
| 238 | if (SU->BotReadyCycle < SuccReadyCycle + MinLatency) |
| 239 | SU->BotReadyCycle = SuccReadyCycle + MinLatency; |
| 240 | } |
| 241 | Bot.releaseNode(SU, SU->BotReadyCycle); |
| 242 | } |
| 243 | |
| 244 | /// Does this SU have a hazard within the current instruction group. |
| 245 | /// |
| 246 | /// The scheduler supports two modes of hazard recognition. The first is the |
| 247 | /// ScheduleHazardRecognizer API. It is a fully general hazard recognizer that |
| 248 | /// supports highly complicated in-order reservation tables |
| 249 | /// (ScoreboardHazardRecognizer) and arbitrary target-specific logic. |
| 250 | /// |
| 251 | /// The second is a streamlined mechanism that checks for hazards based on |
| 252 | /// simple counters that the scheduler itself maintains. It explicitly checks |
| 253 | /// for instruction dispatch limitations, including the number of micro-ops that |
| 254 | /// can dispatch per cycle. |
| 255 | /// |
| 256 | /// TODO: Also check whether the SU must start a new group. |
| 257 | bool ConvergingVLIWScheduler::SchedBoundary::checkHazard(SUnit *SU) { |
| 258 | if (HazardRec->isEnabled()) |
| 259 | return HazardRec->getHazardType(SU) != ScheduleHazardRecognizer::NoHazard; |
| 260 | |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 261 | unsigned uops = SchedModel->getNumMicroOps(SU->getInstr()); |
| 262 | if (IssueCount + uops > SchedModel->getIssueWidth()) |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 263 | return true; |
| 264 | |
| 265 | return false; |
| 266 | } |
| 267 | |
| 268 | void ConvergingVLIWScheduler::SchedBoundary::releaseNode(SUnit *SU, |
| 269 | unsigned ReadyCycle) { |
| 270 | if (ReadyCycle < MinReadyCycle) |
| 271 | MinReadyCycle = ReadyCycle; |
| 272 | |
| 273 | // Check for interlocks first. For the purpose of other heuristics, an |
| 274 | // instruction that cannot issue appears as if it's not in the ReadyQueue. |
| 275 | if (ReadyCycle > CurrCycle || checkHazard(SU)) |
| 276 | |
| 277 | Pending.push(SU); |
| 278 | else |
| 279 | Available.push(SU); |
| 280 | } |
| 281 | |
| 282 | /// Move the boundary of scheduled code by one cycle. |
| 283 | void ConvergingVLIWScheduler::SchedBoundary::bumpCycle() { |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 284 | unsigned Width = SchedModel->getIssueWidth(); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 285 | IssueCount = (IssueCount <= Width) ? 0 : IssueCount - Width; |
| 286 | |
| 287 | assert(MinReadyCycle < UINT_MAX && "MinReadyCycle uninitialized"); |
| 288 | unsigned NextCycle = std::max(CurrCycle + 1, MinReadyCycle); |
| 289 | |
| 290 | if (!HazardRec->isEnabled()) { |
| 291 | // Bypass HazardRec virtual calls. |
| 292 | CurrCycle = NextCycle; |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 293 | } else { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 294 | // Bypass getHazardType calls in case of long latency. |
| 295 | for (; CurrCycle != NextCycle; ++CurrCycle) { |
| 296 | if (isTop()) |
| 297 | HazardRec->AdvanceCycle(); |
| 298 | else |
| 299 | HazardRec->RecedeCycle(); |
| 300 | } |
| 301 | } |
| 302 | CheckPending = true; |
| 303 | |
| 304 | DEBUG(dbgs() << "*** " << Available.getName() << " cycle " |
| 305 | << CurrCycle << '\n'); |
| 306 | } |
| 307 | |
| 308 | /// Move the boundary of scheduled code by one SUnit. |
| 309 | void ConvergingVLIWScheduler::SchedBoundary::bumpNode(SUnit *SU) { |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 310 | bool startNewCycle = false; |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 311 | |
| 312 | // Update the reservation table. |
| 313 | if (HazardRec->isEnabled()) { |
| 314 | if (!isTop() && SU->isCall) { |
| 315 | // Calls are scheduled with their preceding instructions. For bottom-up |
| 316 | // scheduling, clear the pipeline state before emitting. |
| 317 | HazardRec->Reset(); |
| 318 | } |
| 319 | HazardRec->EmitInstruction(SU); |
| 320 | } |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 321 | |
| 322 | // Update DFA model. |
| 323 | startNewCycle = ResourceModel->reserveResources(SU); |
| 324 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 325 | // Check the instruction group dispatch limit. |
| 326 | // TODO: Check if this SU must end a dispatch group. |
Andrew Trick | 412cd2f | 2012-10-10 05:43:09 +0000 | [diff] [blame] | 327 | IssueCount += SchedModel->getNumMicroOps(SU->getInstr()); |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 328 | if (startNewCycle) { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 329 | DEBUG(dbgs() << "*** Max instrs at cycle " << CurrCycle << '\n'); |
| 330 | bumpCycle(); |
| 331 | } |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 332 | else |
| 333 | DEBUG(dbgs() << "*** IssueCount " << IssueCount |
| 334 | << " at cycle " << CurrCycle << '\n'); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 335 | } |
| 336 | |
| 337 | /// Release pending ready nodes in to the available queue. This makes them |
| 338 | /// visible to heuristics. |
| 339 | void ConvergingVLIWScheduler::SchedBoundary::releasePending() { |
| 340 | // If the available queue is empty, it is safe to reset MinReadyCycle. |
| 341 | if (Available.empty()) |
| 342 | MinReadyCycle = UINT_MAX; |
| 343 | |
| 344 | // Check to see if any of the pending instructions are ready to issue. If |
| 345 | // so, add them to the available queue. |
| 346 | for (unsigned i = 0, e = Pending.size(); i != e; ++i) { |
| 347 | SUnit *SU = *(Pending.begin()+i); |
| 348 | unsigned ReadyCycle = isTop() ? SU->TopReadyCycle : SU->BotReadyCycle; |
| 349 | |
| 350 | if (ReadyCycle < MinReadyCycle) |
| 351 | MinReadyCycle = ReadyCycle; |
| 352 | |
| 353 | if (ReadyCycle > CurrCycle) |
| 354 | continue; |
| 355 | |
| 356 | if (checkHazard(SU)) |
| 357 | continue; |
| 358 | |
| 359 | Available.push(SU); |
| 360 | Pending.remove(Pending.begin()+i); |
| 361 | --i; --e; |
| 362 | } |
| 363 | CheckPending = false; |
| 364 | } |
| 365 | |
| 366 | /// Remove SU from the ready set for this boundary. |
| 367 | void ConvergingVLIWScheduler::SchedBoundary::removeReady(SUnit *SU) { |
| 368 | if (Available.isInQueue(SU)) |
| 369 | Available.remove(Available.find(SU)); |
| 370 | else { |
| 371 | assert(Pending.isInQueue(SU) && "bad ready count"); |
| 372 | Pending.remove(Pending.find(SU)); |
| 373 | } |
| 374 | } |
| 375 | |
| 376 | /// If this queue only has one ready candidate, return it. As a side effect, |
| 377 | /// advance the cycle until at least one node is ready. If multiple instructions |
| 378 | /// are ready, return NULL. |
| 379 | SUnit *ConvergingVLIWScheduler::SchedBoundary::pickOnlyChoice() { |
| 380 | if (CheckPending) |
| 381 | releasePending(); |
| 382 | |
| 383 | for (unsigned i = 0; Available.empty(); ++i) { |
| 384 | assert(i <= (HazardRec->getMaxLookAhead() + MaxMinLatency) && |
| 385 | "permanent hazard"); (void)i; |
Sergei Larin | c6a6660 | 2012-09-14 15:07:59 +0000 | [diff] [blame] | 386 | ResourceModel->reserveResources(0); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 387 | bumpCycle(); |
| 388 | releasePending(); |
| 389 | } |
| 390 | if (Available.size() == 1) |
| 391 | return *Available.begin(); |
| 392 | return NULL; |
| 393 | } |
| 394 | |
| 395 | #ifndef NDEBUG |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 396 | void ConvergingVLIWScheduler::traceCandidate(const char *Label, |
| 397 | const ReadyQueue &Q, |
| 398 | SUnit *SU, PressureElement P) { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 399 | dbgs() << Label << " " << Q.getName() << " "; |
| 400 | if (P.isValid()) |
| 401 | dbgs() << TRI->getRegPressureSetName(P.PSetID) << ":" << P.UnitIncrease |
| 402 | << " "; |
| 403 | else |
| 404 | dbgs() << " "; |
| 405 | SU->dump(DAG); |
| 406 | } |
| 407 | #endif |
| 408 | |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 409 | /// getSingleUnscheduledPred - If there is exactly one unscheduled predecessor |
| 410 | /// of SU, return it, otherwise return null. |
| 411 | static SUnit *getSingleUnscheduledPred(SUnit *SU) { |
| 412 | SUnit *OnlyAvailablePred = 0; |
| 413 | for (SUnit::const_pred_iterator I = SU->Preds.begin(), E = SU->Preds.end(); |
| 414 | I != E; ++I) { |
| 415 | SUnit &Pred = *I->getSUnit(); |
| 416 | if (!Pred.isScheduled) { |
| 417 | // We found an available, but not scheduled, predecessor. If it's the |
| 418 | // only one we have found, keep track of it... otherwise give up. |
| 419 | if (OnlyAvailablePred && OnlyAvailablePred != &Pred) |
| 420 | return 0; |
| 421 | OnlyAvailablePred = &Pred; |
| 422 | } |
| 423 | } |
| 424 | return OnlyAvailablePred; |
| 425 | } |
| 426 | |
| 427 | /// getSingleUnscheduledSucc - If there is exactly one unscheduled successor |
| 428 | /// of SU, return it, otherwise return null. |
| 429 | static SUnit *getSingleUnscheduledSucc(SUnit *SU) { |
| 430 | SUnit *OnlyAvailableSucc = 0; |
| 431 | for (SUnit::const_succ_iterator I = SU->Succs.begin(), E = SU->Succs.end(); |
| 432 | I != E; ++I) { |
| 433 | SUnit &Succ = *I->getSUnit(); |
| 434 | if (!Succ.isScheduled) { |
| 435 | // We found an available, but not scheduled, successor. If it's the |
| 436 | // only one we have found, keep track of it... otherwise give up. |
| 437 | if (OnlyAvailableSucc && OnlyAvailableSucc != &Succ) |
| 438 | return 0; |
| 439 | OnlyAvailableSucc = &Succ; |
| 440 | } |
| 441 | } |
| 442 | return OnlyAvailableSucc; |
| 443 | } |
| 444 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 445 | // Constants used to denote relative importance of |
| 446 | // heuristic components for cost computation. |
| 447 | static const unsigned PriorityOne = 200; |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 448 | static const unsigned PriorityTwo = 100; |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 449 | static const unsigned PriorityThree = 50; |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 450 | static const unsigned PriorityFour = 20; |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 451 | static const unsigned ScaleTwo = 10; |
| 452 | static const unsigned FactorOne = 2; |
| 453 | |
| 454 | /// Single point to compute overall scheduling cost. |
| 455 | /// TODO: More heuristics will be used soon. |
| 456 | int ConvergingVLIWScheduler::SchedulingCost(ReadyQueue &Q, SUnit *SU, |
| 457 | SchedCandidate &Candidate, |
| 458 | RegPressureDelta &Delta, |
| 459 | bool verbose) { |
| 460 | // Initial trivial priority. |
| 461 | int ResCount = 1; |
| 462 | |
| 463 | // Do not waste time on a node that is already scheduled. |
| 464 | if (!SU || SU->isScheduled) |
| 465 | return ResCount; |
| 466 | |
| 467 | // Forced priority is high. |
| 468 | if (SU->isScheduleHigh) |
| 469 | ResCount += PriorityOne; |
| 470 | |
| 471 | // Critical path first. |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 472 | if (Q.getID() == TopQID) { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 473 | ResCount += (SU->getHeight() * ScaleTwo); |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 474 | |
| 475 | // If resources are available for it, multiply the |
| 476 | // chance of scheduling. |
| 477 | if (Top.ResourceModel->isResourceAvailable(SU)) |
| 478 | ResCount <<= FactorOne; |
| 479 | } else { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 480 | ResCount += (SU->getDepth() * ScaleTwo); |
| 481 | |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 482 | // If resources are available for it, multiply the |
| 483 | // chance of scheduling. |
| 484 | if (Bot.ResourceModel->isResourceAvailable(SU)) |
| 485 | ResCount <<= FactorOne; |
| 486 | } |
| 487 | |
| 488 | unsigned NumNodesBlocking = 0; |
| 489 | if (Q.getID() == TopQID) { |
| 490 | // How many SUs does it block from scheduling? |
| 491 | // Look at all of the successors of this node. |
| 492 | // Count the number of nodes that |
| 493 | // this node is the sole unscheduled node for. |
| 494 | for (SUnit::const_succ_iterator I = SU->Succs.begin(), E = SU->Succs.end(); |
| 495 | I != E; ++I) |
| 496 | if (getSingleUnscheduledPred(I->getSUnit()) == SU) |
| 497 | ++NumNodesBlocking; |
| 498 | } else { |
| 499 | // How many unscheduled predecessors block this node? |
| 500 | for (SUnit::const_pred_iterator I = SU->Preds.begin(), E = SU->Preds.end(); |
| 501 | I != E; ++I) |
| 502 | if (getSingleUnscheduledSucc(I->getSUnit()) == SU) |
| 503 | ++NumNodesBlocking; |
| 504 | } |
| 505 | ResCount += (NumNodesBlocking * ScaleTwo); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 506 | |
| 507 | // Factor in reg pressure as a heuristic. |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 508 | ResCount -= (Delta.Excess.UnitIncrease*PriorityThree); |
| 509 | ResCount -= (Delta.CriticalMax.UnitIncrease*PriorityThree); |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 510 | |
| 511 | DEBUG(if (verbose) dbgs() << " Total(" << ResCount << ")"); |
| 512 | |
| 513 | return ResCount; |
| 514 | } |
| 515 | |
| 516 | /// Pick the best candidate from the top queue. |
| 517 | /// |
| 518 | /// TODO: getMaxPressureDelta results can be mostly cached for each SUnit during |
| 519 | /// DAG building. To adjust for the current scheduling location we need to |
| 520 | /// maintain the number of vreg uses remaining to be top-scheduled. |
| 521 | ConvergingVLIWScheduler::CandResult ConvergingVLIWScheduler:: |
| 522 | pickNodeFromQueue(ReadyQueue &Q, const RegPressureTracker &RPTracker, |
| 523 | SchedCandidate &Candidate) { |
| 524 | DEBUG(Q.dump()); |
| 525 | |
| 526 | // getMaxPressureDelta temporarily modifies the tracker. |
| 527 | RegPressureTracker &TempTracker = const_cast<RegPressureTracker&>(RPTracker); |
| 528 | |
| 529 | // BestSU remains NULL if no top candidates beat the best existing candidate. |
| 530 | CandResult FoundCandidate = NoCand; |
| 531 | for (ReadyQueue::iterator I = Q.begin(), E = Q.end(); I != E; ++I) { |
| 532 | RegPressureDelta RPDelta; |
| 533 | TempTracker.getMaxPressureDelta((*I)->getInstr(), RPDelta, |
| 534 | DAG->getRegionCriticalPSets(), |
| 535 | DAG->getRegPressure().MaxSetPressure); |
| 536 | |
| 537 | int CurrentCost = SchedulingCost(Q, *I, Candidate, RPDelta, false); |
| 538 | |
| 539 | // Initialize the candidate if needed. |
| 540 | if (!Candidate.SU) { |
| 541 | Candidate.SU = *I; |
| 542 | Candidate.RPDelta = RPDelta; |
| 543 | Candidate.SCost = CurrentCost; |
| 544 | FoundCandidate = NodeOrder; |
| 545 | continue; |
| 546 | } |
| 547 | |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 548 | // Best cost. |
| 549 | if (CurrentCost > Candidate.SCost) { |
| 550 | DEBUG(traceCandidate("CCAND", Q, *I)); |
| 551 | Candidate.SU = *I; |
| 552 | Candidate.RPDelta = RPDelta; |
| 553 | Candidate.SCost = CurrentCost; |
| 554 | FoundCandidate = BestCost; |
| 555 | continue; |
| 556 | } |
| 557 | |
| 558 | // Fall through to original instruction order. |
| 559 | // Only consider node order if Candidate was chosen from this Q. |
| 560 | if (FoundCandidate == NoCand) |
| 561 | continue; |
| 562 | } |
| 563 | return FoundCandidate; |
| 564 | } |
| 565 | |
| 566 | /// Pick the best candidate node from either the top or bottom queue. |
| 567 | SUnit *ConvergingVLIWScheduler::pickNodeBidrectional(bool &IsTopNode) { |
| 568 | // Schedule as far as possible in the direction of no choice. This is most |
| 569 | // efficient, but also provides the best heuristics for CriticalPSets. |
| 570 | if (SUnit *SU = Bot.pickOnlyChoice()) { |
| 571 | IsTopNode = false; |
| 572 | return SU; |
| 573 | } |
| 574 | if (SUnit *SU = Top.pickOnlyChoice()) { |
| 575 | IsTopNode = true; |
| 576 | return SU; |
| 577 | } |
| 578 | SchedCandidate BotCand; |
| 579 | // Prefer bottom scheduling when heuristics are silent. |
| 580 | CandResult BotResult = pickNodeFromQueue(Bot.Available, |
| 581 | DAG->getBotRPTracker(), BotCand); |
| 582 | assert(BotResult != NoCand && "failed to find the first candidate"); |
| 583 | |
| 584 | // If either Q has a single candidate that provides the least increase in |
| 585 | // Excess pressure, we can immediately schedule from that Q. |
| 586 | // |
| 587 | // RegionCriticalPSets summarizes the pressure within the scheduled region and |
| 588 | // affects picking from either Q. If scheduling in one direction must |
| 589 | // increase pressure for one of the excess PSets, then schedule in that |
| 590 | // direction first to provide more freedom in the other direction. |
| 591 | if (BotResult == SingleExcess || BotResult == SingleCritical) { |
| 592 | IsTopNode = false; |
| 593 | return BotCand.SU; |
| 594 | } |
| 595 | // Check if the top Q has a better candidate. |
| 596 | SchedCandidate TopCand; |
| 597 | CandResult TopResult = pickNodeFromQueue(Top.Available, |
| 598 | DAG->getTopRPTracker(), TopCand); |
| 599 | assert(TopResult != NoCand && "failed to find the first candidate"); |
| 600 | |
| 601 | if (TopResult == SingleExcess || TopResult == SingleCritical) { |
| 602 | IsTopNode = true; |
| 603 | return TopCand.SU; |
| 604 | } |
| 605 | // If either Q has a single candidate that minimizes pressure above the |
| 606 | // original region's pressure pick it. |
| 607 | if (BotResult == SingleMax) { |
| 608 | IsTopNode = false; |
| 609 | return BotCand.SU; |
| 610 | } |
| 611 | if (TopResult == SingleMax) { |
| 612 | IsTopNode = true; |
| 613 | return TopCand.SU; |
| 614 | } |
| 615 | if (TopCand.SCost > BotCand.SCost) { |
| 616 | IsTopNode = true; |
| 617 | return TopCand.SU; |
| 618 | } |
| 619 | // Otherwise prefer the bottom candidate in node order. |
| 620 | IsTopNode = false; |
| 621 | return BotCand.SU; |
| 622 | } |
| 623 | |
| 624 | /// Pick the best node to balance the schedule. Implements MachineSchedStrategy. |
| 625 | SUnit *ConvergingVLIWScheduler::pickNode(bool &IsTopNode) { |
| 626 | if (DAG->top() == DAG->bottom()) { |
| 627 | assert(Top.Available.empty() && Top.Pending.empty() && |
| 628 | Bot.Available.empty() && Bot.Pending.empty() && "ReadyQ garbage"); |
| 629 | return NULL; |
| 630 | } |
| 631 | SUnit *SU; |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 632 | if (llvm::ForceTopDown) { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 633 | SU = Top.pickOnlyChoice(); |
| 634 | if (!SU) { |
| 635 | SchedCandidate TopCand; |
| 636 | CandResult TopResult = |
| 637 | pickNodeFromQueue(Top.Available, DAG->getTopRPTracker(), TopCand); |
| 638 | assert(TopResult != NoCand && "failed to find the first candidate"); |
| 639 | (void)TopResult; |
| 640 | SU = TopCand.SU; |
| 641 | } |
| 642 | IsTopNode = true; |
Andrew Trick | 78e5efe | 2012-09-11 00:39:15 +0000 | [diff] [blame] | 643 | } else if (llvm::ForceBottomUp) { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 644 | SU = Bot.pickOnlyChoice(); |
| 645 | if (!SU) { |
| 646 | SchedCandidate BotCand; |
| 647 | CandResult BotResult = |
| 648 | pickNodeFromQueue(Bot.Available, DAG->getBotRPTracker(), BotCand); |
| 649 | assert(BotResult != NoCand && "failed to find the first candidate"); |
| 650 | (void)BotResult; |
| 651 | SU = BotCand.SU; |
| 652 | } |
| 653 | IsTopNode = false; |
| 654 | } else { |
| 655 | SU = pickNodeBidrectional(IsTopNode); |
| 656 | } |
| 657 | if (SU->isTopReady()) |
| 658 | Top.removeReady(SU); |
| 659 | if (SU->isBottomReady()) |
| 660 | Bot.removeReady(SU); |
| 661 | |
| 662 | DEBUG(dbgs() << "*** " << (IsTopNode ? "Top" : "Bottom") |
| 663 | << " Scheduling Instruction in cycle " |
| 664 | << (IsTopNode ? Top.CurrCycle : Bot.CurrCycle) << '\n'; |
| 665 | SU->dump(DAG)); |
| 666 | return SU; |
| 667 | } |
| 668 | |
| 669 | /// Update the scheduler's state after scheduling a node. This is the same node |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 670 | /// that was just returned by pickNode(). However, VLIWMachineScheduler needs |
| 671 | /// to update it's state based on the current cycle before MachineSchedStrategy |
| 672 | /// does. |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 673 | void ConvergingVLIWScheduler::schedNode(SUnit *SU, bool IsTopNode) { |
| 674 | if (IsTopNode) { |
| 675 | SU->TopReadyCycle = Top.CurrCycle; |
| 676 | Top.bumpNode(SU); |
Sergei Larin | 7ae51be | 2012-09-10 17:31:34 +0000 | [diff] [blame] | 677 | } else { |
Sergei Larin | 3e59040 | 2012-09-04 14:49:56 +0000 | [diff] [blame] | 678 | SU->BotReadyCycle = Bot.CurrCycle; |
| 679 | Bot.bumpNode(SU); |
| 680 | } |
| 681 | } |
| 682 | |