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Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001//===- lib/CodeGen/MachineTraceMetrics.cpp ----------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#define DEBUG_TYPE "early-ifcvt"
11#include "MachineTraceMetrics.h"
12#include "llvm/CodeGen/MachineBasicBlock.h"
13#include "llvm/CodeGen/MachineBranchProbabilityInfo.h"
14#include "llvm/CodeGen/MachineLoopInfo.h"
15#include "llvm/CodeGen/MachineRegisterInfo.h"
16#include "llvm/CodeGen/Passes.h"
17#include "llvm/Target/TargetInstrInfo.h"
18#include "llvm/Target/TargetRegisterInfo.h"
19#include "llvm/Support/Debug.h"
20#include "llvm/Support/raw_ostream.h"
21#include "llvm/ADT/PostOrderIterator.h"
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +000022#include "llvm/ADT/SparseSet.h"
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000023
24using namespace llvm;
25
26char MachineTraceMetrics::ID = 0;
27char &llvm::MachineTraceMetricsID = MachineTraceMetrics::ID;
28
29INITIALIZE_PASS_BEGIN(MachineTraceMetrics,
30 "machine-trace-metrics", "Machine Trace Metrics", false, true)
31INITIALIZE_PASS_DEPENDENCY(MachineBranchProbabilityInfo)
32INITIALIZE_PASS_DEPENDENCY(MachineLoopInfo)
33INITIALIZE_PASS_END(MachineTraceMetrics,
34 "machine-trace-metrics", "Machine Trace Metrics", false, true)
35
36MachineTraceMetrics::MachineTraceMetrics()
Jakob Stoklund Olesen2f6b62b2012-07-30 23:15:12 +000037 : MachineFunctionPass(ID), MF(0), TII(0), TRI(0), MRI(0), Loops(0) {
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000038 std::fill(Ensembles, array_endof(Ensembles), (Ensemble*)0);
39}
40
41void MachineTraceMetrics::getAnalysisUsage(AnalysisUsage &AU) const {
42 AU.setPreservesAll();
43 AU.addRequired<MachineBranchProbabilityInfo>();
44 AU.addRequired<MachineLoopInfo>();
45 MachineFunctionPass::getAnalysisUsage(AU);
46}
47
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +000048bool MachineTraceMetrics::runOnMachineFunction(MachineFunction &Func) {
49 MF = &Func;
50 TII = MF->getTarget().getInstrInfo();
51 TRI = MF->getTarget().getRegisterInfo();
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +000052 ItinData = MF->getTarget().getInstrItineraryData();
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +000053 MRI = &MF->getRegInfo();
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000054 Loops = &getAnalysis<MachineLoopInfo>();
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +000055 BlockInfo.resize(MF->getNumBlockIDs());
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000056 return false;
57}
58
59void MachineTraceMetrics::releaseMemory() {
Jakob Stoklund Olesen2f6b62b2012-07-30 23:15:12 +000060 MF = 0;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000061 BlockInfo.clear();
62 for (unsigned i = 0; i != TS_NumStrategies; ++i) {
63 delete Ensembles[i];
64 Ensembles[i] = 0;
65 }
66}
67
68//===----------------------------------------------------------------------===//
69// Fixed block information
70//===----------------------------------------------------------------------===//
71//
72// The number of instructions in a basic block and the CPU resources used by
73// those instructions don't depend on any given trace strategy.
74
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000075/// Compute the resource usage in basic block MBB.
76const MachineTraceMetrics::FixedBlockInfo*
77MachineTraceMetrics::getResources(const MachineBasicBlock *MBB) {
78 assert(MBB && "No basic block");
79 FixedBlockInfo *FBI = &BlockInfo[MBB->getNumber()];
80 if (FBI->hasResources())
81 return FBI;
82
83 // Compute resource usage in the block.
84 // FIXME: Compute per-functional unit counts.
85 FBI->HasCalls = false;
86 unsigned InstrCount = 0;
87 for (MachineBasicBlock::const_iterator I = MBB->begin(), E = MBB->end();
88 I != E; ++I) {
89 const MachineInstr *MI = I;
Jakob Stoklund Olesen3f63a582012-07-30 18:34:14 +000090 if (MI->isTransient())
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +000091 continue;
92 ++InstrCount;
93 if (MI->isCall())
94 FBI->HasCalls = true;
95 }
96 FBI->InstrCount = InstrCount;
97 return FBI;
98}
99
100//===----------------------------------------------------------------------===//
101// Ensemble utility functions
102//===----------------------------------------------------------------------===//
103
104MachineTraceMetrics::Ensemble::Ensemble(MachineTraceMetrics *ct)
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000105 : MTM(*ct) {
106 BlockInfo.resize(MTM.BlockInfo.size());
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000107}
108
109// Virtual destructor serves as an anchor.
110MachineTraceMetrics::Ensemble::~Ensemble() {}
111
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000112const MachineLoop*
113MachineTraceMetrics::Ensemble::getLoopFor(const MachineBasicBlock *MBB) const {
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000114 return MTM.Loops->getLoopFor(MBB);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000115}
116
117// Update resource-related information in the TraceBlockInfo for MBB.
118// Only update resources related to the trace above MBB.
119void MachineTraceMetrics::Ensemble::
120computeDepthResources(const MachineBasicBlock *MBB) {
121 TraceBlockInfo *TBI = &BlockInfo[MBB->getNumber()];
122
123 // Compute resources from trace above. The top block is simple.
124 if (!TBI->Pred) {
125 TBI->InstrDepth = 0;
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +0000126 TBI->Head = MBB->getNumber();
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000127 return;
128 }
129
130 // Compute from the block above. A post-order traversal ensures the
131 // predecessor is always computed first.
132 TraceBlockInfo *PredTBI = &BlockInfo[TBI->Pred->getNumber()];
133 assert(PredTBI->hasValidDepth() && "Trace above has not been computed yet");
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000134 const FixedBlockInfo *PredFBI = MTM.getResources(TBI->Pred);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000135 TBI->InstrDepth = PredTBI->InstrDepth + PredFBI->InstrCount;
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +0000136 TBI->Head = PredTBI->Head;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000137}
138
139// Update resource-related information in the TraceBlockInfo for MBB.
140// Only update resources related to the trace below MBB.
141void MachineTraceMetrics::Ensemble::
142computeHeightResources(const MachineBasicBlock *MBB) {
143 TraceBlockInfo *TBI = &BlockInfo[MBB->getNumber()];
144
145 // Compute resources for the current block.
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000146 TBI->InstrHeight = MTM.getResources(MBB)->InstrCount;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000147
148 // The trace tail is done.
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +0000149 if (!TBI->Succ) {
150 TBI->Tail = MBB->getNumber();
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000151 return;
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +0000152 }
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000153
154 // Compute from the block below. A post-order traversal ensures the
155 // predecessor is always computed first.
156 TraceBlockInfo *SuccTBI = &BlockInfo[TBI->Succ->getNumber()];
157 assert(SuccTBI->hasValidHeight() && "Trace below has not been computed yet");
158 TBI->InstrHeight += SuccTBI->InstrHeight;
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +0000159 TBI->Tail = SuccTBI->Tail;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000160}
161
162// Check if depth resources for MBB are valid and return the TBI.
163// Return NULL if the resources have been invalidated.
164const MachineTraceMetrics::TraceBlockInfo*
165MachineTraceMetrics::Ensemble::
166getDepthResources(const MachineBasicBlock *MBB) const {
167 const TraceBlockInfo *TBI = &BlockInfo[MBB->getNumber()];
168 return TBI->hasValidDepth() ? TBI : 0;
169}
170
171// Check if height resources for MBB are valid and return the TBI.
172// Return NULL if the resources have been invalidated.
173const MachineTraceMetrics::TraceBlockInfo*
174MachineTraceMetrics::Ensemble::
175getHeightResources(const MachineBasicBlock *MBB) const {
176 const TraceBlockInfo *TBI = &BlockInfo[MBB->getNumber()];
177 return TBI->hasValidHeight() ? TBI : 0;
178}
179
180//===----------------------------------------------------------------------===//
181// Trace Selection Strategies
182//===----------------------------------------------------------------------===//
183//
184// A trace selection strategy is implemented as a sub-class of Ensemble. The
185// trace through a block B is computed by two DFS traversals of the CFG
186// starting from B. One upwards, and one downwards. During the upwards DFS,
187// pickTracePred() is called on the post-ordered blocks. During the downwards
188// DFS, pickTraceSucc() is called in a post-order.
189//
190
Jakob Stoklund Olesen1c899cf2012-07-30 23:15:10 +0000191// We never allow traces that leave loops, but we do allow traces to enter
192// nested loops. We also never allow traces to contain back-edges.
193//
194// This means that a loop header can never appear above the center block of a
195// trace, except as the trace head. Below the center block, loop exiting edges
196// are banned.
197//
198// Return true if an edge from the From loop to the To loop is leaving a loop.
199// Either of To and From can be null.
200static bool isExitingLoop(const MachineLoop *From, const MachineLoop *To) {
201 return From && !From->contains(To);
202}
203
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000204// MinInstrCountEnsemble - Pick the trace that executes the least number of
205// instructions.
206namespace {
207class MinInstrCountEnsemble : public MachineTraceMetrics::Ensemble {
Jakob Stoklund Olesen08f6ef62012-07-27 23:58:38 +0000208 const char *getName() const { return "MinInstr"; }
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000209 const MachineBasicBlock *pickTracePred(const MachineBasicBlock*);
210 const MachineBasicBlock *pickTraceSucc(const MachineBasicBlock*);
211
212public:
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000213 MinInstrCountEnsemble(MachineTraceMetrics *mtm)
214 : MachineTraceMetrics::Ensemble(mtm) {}
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000215};
216}
217
218// Select the preferred predecessor for MBB.
219const MachineBasicBlock*
220MinInstrCountEnsemble::pickTracePred(const MachineBasicBlock *MBB) {
221 if (MBB->pred_empty())
222 return 0;
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000223 const MachineLoop *CurLoop = getLoopFor(MBB);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000224 // Don't leave loops, and never follow back-edges.
225 if (CurLoop && MBB == CurLoop->getHeader())
226 return 0;
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000227 unsigned CurCount = MTM.getResources(MBB)->InstrCount;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000228 const MachineBasicBlock *Best = 0;
229 unsigned BestDepth = 0;
230 for (MachineBasicBlock::const_pred_iterator
231 I = MBB->pred_begin(), E = MBB->pred_end(); I != E; ++I) {
232 const MachineBasicBlock *Pred = *I;
Jakob Stoklund Olesen8e54ab52012-07-30 21:10:27 +0000233 const MachineTraceMetrics::TraceBlockInfo *PredTBI =
234 getDepthResources(Pred);
235 assert(PredTBI && "Predecessor must be visited first");
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000236 // Pick the predecessor that would give this block the smallest InstrDepth.
237 unsigned Depth = PredTBI->InstrDepth + CurCount;
238 if (!Best || Depth < BestDepth)
239 Best = Pred, BestDepth = Depth;
240 }
241 return Best;
242}
243
244// Select the preferred successor for MBB.
245const MachineBasicBlock*
246MinInstrCountEnsemble::pickTraceSucc(const MachineBasicBlock *MBB) {
247 if (MBB->pred_empty())
248 return 0;
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000249 const MachineLoop *CurLoop = getLoopFor(MBB);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000250 const MachineBasicBlock *Best = 0;
251 unsigned BestHeight = 0;
252 for (MachineBasicBlock::const_succ_iterator
253 I = MBB->succ_begin(), E = MBB->succ_end(); I != E; ++I) {
254 const MachineBasicBlock *Succ = *I;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000255 // Don't consider back-edges.
256 if (CurLoop && Succ == CurLoop->getHeader())
257 continue;
Jakob Stoklund Olesen1c899cf2012-07-30 23:15:10 +0000258 // Don't consider successors exiting CurLoop.
259 if (isExitingLoop(CurLoop, getLoopFor(Succ)))
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000260 continue;
Jakob Stoklund Olesen8e54ab52012-07-30 21:10:27 +0000261 const MachineTraceMetrics::TraceBlockInfo *SuccTBI =
262 getHeightResources(Succ);
263 assert(SuccTBI && "Successor must be visited first");
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000264 // Pick the successor that would give this block the smallest InstrHeight.
265 unsigned Height = SuccTBI->InstrHeight;
266 if (!Best || Height < BestHeight)
267 Best = Succ, BestHeight = Height;
268 }
269 return Best;
270}
271
272// Get an Ensemble sub-class for the requested trace strategy.
273MachineTraceMetrics::Ensemble *
274MachineTraceMetrics::getEnsemble(MachineTraceMetrics::Strategy strategy) {
275 assert(strategy < TS_NumStrategies && "Invalid trace strategy enum");
276 Ensemble *&E = Ensembles[strategy];
277 if (E)
278 return E;
279
280 // Allocate new Ensemble on demand.
281 switch (strategy) {
282 case TS_MinInstrCount: return (E = new MinInstrCountEnsemble(this));
283 default: llvm_unreachable("Invalid trace strategy enum");
284 }
285}
286
287void MachineTraceMetrics::invalidate(const MachineBasicBlock *MBB) {
288 DEBUG(dbgs() << "Invalidate traces through BB#" << MBB->getNumber() << '\n');
289 BlockInfo[MBB->getNumber()].invalidate();
290 for (unsigned i = 0; i != TS_NumStrategies; ++i)
291 if (Ensembles[i])
292 Ensembles[i]->invalidate(MBB);
293}
294
Jakob Stoklund Olesenef6c76c2012-07-30 20:57:50 +0000295void MachineTraceMetrics::verifyAnalysis() const {
Jakob Stoklund Olesen2f6b62b2012-07-30 23:15:12 +0000296 if (!MF)
297 return;
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000298#ifndef NDEBUG
299 assert(BlockInfo.size() == MF->getNumBlockIDs() && "Outdated BlockInfo size");
300 for (unsigned i = 0; i != TS_NumStrategies; ++i)
301 if (Ensembles[i])
302 Ensembles[i]->verify();
303#endif
304}
305
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000306//===----------------------------------------------------------------------===//
307// Trace building
308//===----------------------------------------------------------------------===//
309//
310// Traces are built by two CFG traversals. To avoid recomputing too much, use a
311// set abstraction that confines the search to the current loop, and doesn't
312// revisit blocks.
313
314namespace {
315struct LoopBounds {
316 MutableArrayRef<MachineTraceMetrics::TraceBlockInfo> Blocks;
317 const MachineLoopInfo *Loops;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000318 bool Downward;
319 LoopBounds(MutableArrayRef<MachineTraceMetrics::TraceBlockInfo> blocks,
Jakob Stoklund Olesen1c899cf2012-07-30 23:15:10 +0000320 const MachineLoopInfo *loops)
321 : Blocks(blocks), Loops(loops), Downward(false) {}
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000322};
323}
324
325// Specialize po_iterator_storage in order to prune the post-order traversal so
326// it is limited to the current loop and doesn't traverse the loop back edges.
327namespace llvm {
328template<>
329class po_iterator_storage<LoopBounds, true> {
330 LoopBounds &LB;
331public:
332 po_iterator_storage(LoopBounds &lb) : LB(lb) {}
333 void finishPostorder(const MachineBasicBlock*) {}
334
335 bool insertEdge(const MachineBasicBlock *From, const MachineBasicBlock *To) {
336 // Skip already visited To blocks.
337 MachineTraceMetrics::TraceBlockInfo &TBI = LB.Blocks[To->getNumber()];
338 if (LB.Downward ? TBI.hasValidHeight() : TBI.hasValidDepth())
339 return false;
Jakob Stoklund Olesen1c899cf2012-07-30 23:15:10 +0000340 // From is null once when To is the trace center block.
341 if (!From)
342 return true;
343 const MachineLoop *FromLoop = LB.Loops->getLoopFor(From);
344 if (!FromLoop)
345 return true;
346 // Don't follow backedges, don't leave FromLoop when going upwards.
347 if ((LB.Downward ? To : From) == FromLoop->getHeader())
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000348 return false;
Jakob Stoklund Olesen1c899cf2012-07-30 23:15:10 +0000349 // Don't leave FromLoop.
350 if (isExitingLoop(FromLoop, LB.Loops->getLoopFor(To)))
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000351 return false;
352 // This is a new block. The PO traversal will compute height/depth
353 // resources, causing us to reject new edges to To. This only works because
354 // we reject back-edges, so the CFG is cycle-free.
355 return true;
356 }
357};
358}
359
360/// Compute the trace through MBB.
361void MachineTraceMetrics::Ensemble::computeTrace(const MachineBasicBlock *MBB) {
362 DEBUG(dbgs() << "Computing " << getName() << " trace through BB#"
363 << MBB->getNumber() << '\n');
364 // Set up loop bounds for the backwards post-order traversal.
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000365 LoopBounds Bounds(BlockInfo, MTM.Loops);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000366
367 // Run an upwards post-order search for the trace start.
368 Bounds.Downward = false;
369 typedef ipo_ext_iterator<const MachineBasicBlock*, LoopBounds> UpwardPO;
370 for (UpwardPO I = ipo_ext_begin(MBB, Bounds), E = ipo_ext_end(MBB, Bounds);
371 I != E; ++I) {
372 DEBUG(dbgs() << " pred for BB#" << I->getNumber() << ": ");
373 TraceBlockInfo &TBI = BlockInfo[I->getNumber()];
374 // All the predecessors have been visited, pick the preferred one.
375 TBI.Pred = pickTracePred(*I);
376 DEBUG({
377 if (TBI.Pred)
378 dbgs() << "BB#" << TBI.Pred->getNumber() << '\n';
379 else
380 dbgs() << "null\n";
381 });
382 // The trace leading to I is now known, compute the depth resources.
383 computeDepthResources(*I);
384 }
385
386 // Run a downwards post-order search for the trace end.
387 Bounds.Downward = true;
388 typedef po_ext_iterator<const MachineBasicBlock*, LoopBounds> DownwardPO;
389 for (DownwardPO I = po_ext_begin(MBB, Bounds), E = po_ext_end(MBB, Bounds);
390 I != E; ++I) {
391 DEBUG(dbgs() << " succ for BB#" << I->getNumber() << ": ");
392 TraceBlockInfo &TBI = BlockInfo[I->getNumber()];
393 // All the successors have been visited, pick the preferred one.
Jakob Stoklund Olesen0fc44862012-07-26 19:42:56 +0000394 TBI.Succ = pickTraceSucc(*I);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000395 DEBUG({
Jakob Stoklund Olesen1c899cf2012-07-30 23:15:10 +0000396 if (TBI.Succ)
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000397 dbgs() << "BB#" << TBI.Succ->getNumber() << '\n';
398 else
399 dbgs() << "null\n";
400 });
401 // The trace leaving I is now known, compute the height resources.
402 computeHeightResources(*I);
403 }
404}
405
406/// Invalidate traces through BadMBB.
407void
408MachineTraceMetrics::Ensemble::invalidate(const MachineBasicBlock *BadMBB) {
409 SmallVector<const MachineBasicBlock*, 16> WorkList;
410 TraceBlockInfo &BadTBI = BlockInfo[BadMBB->getNumber()];
411
412 // Invalidate height resources of blocks above MBB.
413 if (BadTBI.hasValidHeight()) {
414 BadTBI.invalidateHeight();
415 WorkList.push_back(BadMBB);
416 do {
417 const MachineBasicBlock *MBB = WorkList.pop_back_val();
418 DEBUG(dbgs() << "Invalidate BB#" << MBB->getNumber() << ' ' << getName()
419 << " height.\n");
420 // Find any MBB predecessors that have MBB as their preferred successor.
421 // They are the only ones that need to be invalidated.
422 for (MachineBasicBlock::const_pred_iterator
423 I = MBB->pred_begin(), E = MBB->pred_end(); I != E; ++I) {
424 TraceBlockInfo &TBI = BlockInfo[(*I)->getNumber()];
Jakob Stoklund Olesenee31ae12012-07-30 17:36:49 +0000425 if (!TBI.hasValidHeight())
426 continue;
427 if (TBI.Succ == MBB) {
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000428 TBI.invalidateHeight();
429 WorkList.push_back(*I);
Jakob Stoklund Olesenee31ae12012-07-30 17:36:49 +0000430 continue;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000431 }
Jakob Stoklund Olesenee31ae12012-07-30 17:36:49 +0000432 // Verify that TBI.Succ is actually a *I successor.
433 assert((!TBI.Succ || (*I)->isSuccessor(TBI.Succ)) && "CFG changed");
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000434 }
435 } while (!WorkList.empty());
436 }
437
438 // Invalidate depth resources of blocks below MBB.
439 if (BadTBI.hasValidDepth()) {
440 BadTBI.invalidateDepth();
441 WorkList.push_back(BadMBB);
442 do {
443 const MachineBasicBlock *MBB = WorkList.pop_back_val();
444 DEBUG(dbgs() << "Invalidate BB#" << MBB->getNumber() << ' ' << getName()
445 << " depth.\n");
446 // Find any MBB successors that have MBB as their preferred predecessor.
447 // They are the only ones that need to be invalidated.
448 for (MachineBasicBlock::const_succ_iterator
449 I = MBB->succ_begin(), E = MBB->succ_end(); I != E; ++I) {
450 TraceBlockInfo &TBI = BlockInfo[(*I)->getNumber()];
Jakob Stoklund Olesenee31ae12012-07-30 17:36:49 +0000451 if (!TBI.hasValidDepth())
452 continue;
453 if (TBI.Pred == MBB) {
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000454 TBI.invalidateDepth();
455 WorkList.push_back(*I);
Jakob Stoklund Olesenee31ae12012-07-30 17:36:49 +0000456 continue;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000457 }
Jakob Stoklund Olesenee31ae12012-07-30 17:36:49 +0000458 // Verify that TBI.Pred is actually a *I predecessor.
459 assert((!TBI.Pred || (*I)->isPredecessor(TBI.Pred)) && "CFG changed");
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000460 }
461 } while (!WorkList.empty());
462 }
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000463
464 // Clear any per-instruction data. We only have to do this for BadMBB itself
465 // because the instructions in that block may change. Other blocks may be
466 // invalidated, but their instructions will stay the same, so there is no
467 // need to erase the Cycle entries. They will be overwritten when we
468 // recompute.
469 for (MachineBasicBlock::const_iterator I = BadMBB->begin(), E = BadMBB->end();
470 I != E; ++I)
471 Cycles.erase(I);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000472}
473
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000474void MachineTraceMetrics::Ensemble::verify() const {
475#ifndef NDEBUG
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000476 assert(BlockInfo.size() == MTM.MF->getNumBlockIDs() &&
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000477 "Outdated BlockInfo size");
478 for (unsigned Num = 0, e = BlockInfo.size(); Num != e; ++Num) {
479 const TraceBlockInfo &TBI = BlockInfo[Num];
480 if (TBI.hasValidDepth() && TBI.Pred) {
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000481 const MachineBasicBlock *MBB = MTM.MF->getBlockNumbered(Num);
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000482 assert(MBB->isPredecessor(TBI.Pred) && "CFG doesn't match trace");
483 assert(BlockInfo[TBI.Pred->getNumber()].hasValidDepth() &&
484 "Trace is broken, depth should have been invalidated.");
485 const MachineLoop *Loop = getLoopFor(MBB);
486 assert(!(Loop && MBB == Loop->getHeader()) && "Trace contains backedge");
487 }
488 if (TBI.hasValidHeight() && TBI.Succ) {
Jakob Stoklund Olesen64e29732012-07-31 20:25:13 +0000489 const MachineBasicBlock *MBB = MTM.MF->getBlockNumbered(Num);
Jakob Stoklund Olesena1b2bf72012-07-30 18:34:11 +0000490 assert(MBB->isSuccessor(TBI.Succ) && "CFG doesn't match trace");
491 assert(BlockInfo[TBI.Succ->getNumber()].hasValidHeight() &&
492 "Trace is broken, height should have been invalidated.");
493 const MachineLoop *Loop = getLoopFor(MBB);
494 const MachineLoop *SuccLoop = getLoopFor(TBI.Succ);
495 assert(!(Loop && Loop == SuccLoop && TBI.Succ == Loop->getHeader()) &&
496 "Trace contains backedge");
497 }
498 }
499#endif
500}
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +0000501
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000502//===----------------------------------------------------------------------===//
503// Data Dependencies
504//===----------------------------------------------------------------------===//
505//
506// Compute the depth and height of each instruction based on data dependencies
507// and instruction latencies. These cycle numbers assume that the CPU can issue
508// an infinite number of instructions per cycle as long as their dependencies
509// are ready.
510
511// A data dependency is represented as a defining MI and operand numbers on the
512// defining and using MI.
513namespace {
514struct DataDep {
515 const MachineInstr *DefMI;
516 unsigned DefOp;
517 unsigned UseOp;
Jakob Stoklund Olesen9dae4572012-08-01 16:02:59 +0000518
519 DataDep(const MachineInstr *DefMI, unsigned DefOp, unsigned UseOp)
520 : DefMI(DefMI), DefOp(DefOp), UseOp(UseOp) {}
521
522 /// Create a DataDep from an SSA form virtual register.
523 DataDep(const MachineRegisterInfo *MRI, unsigned VirtReg, unsigned UseOp)
524 : UseOp(UseOp) {
525 assert(TargetRegisterInfo::isVirtualRegister(VirtReg));
526 MachineRegisterInfo::def_iterator DefI = MRI->def_begin(VirtReg);
527 assert(!DefI.atEnd() && "Register has no defs");
528 DefMI = &*DefI;
529 DefOp = DefI.getOperandNo();
530 assert((++DefI).atEnd() && "Register has multiple defs");
531 }
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000532};
533}
534
535// Get the input data dependencies that must be ready before UseMI can issue.
536// Return true if UseMI has any physreg operands.
537static bool getDataDeps(const MachineInstr *UseMI,
538 SmallVectorImpl<DataDep> &Deps,
539 const MachineRegisterInfo *MRI) {
540 bool HasPhysRegs = false;
541 for (ConstMIOperands MO(UseMI); MO.isValid(); ++MO) {
542 if (!MO->isReg())
543 continue;
544 unsigned Reg = MO->getReg();
545 if (!Reg)
546 continue;
547 if (TargetRegisterInfo::isPhysicalRegister(Reg)) {
548 HasPhysRegs = true;
549 continue;
550 }
551 // Collect virtual register reads.
Jakob Stoklund Olesen9dae4572012-08-01 16:02:59 +0000552 if (MO->readsReg())
553 Deps.push_back(DataDep(MRI, Reg, MO.getOperandNo()));
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000554 }
555 return HasPhysRegs;
556}
557
558// Get the input data dependencies of a PHI instruction, using Pred as the
559// preferred predecessor.
560// This will add at most one dependency to Deps.
561static void getPHIDeps(const MachineInstr *UseMI,
562 SmallVectorImpl<DataDep> &Deps,
563 const MachineBasicBlock *Pred,
564 const MachineRegisterInfo *MRI) {
565 // No predecessor at the beginning of a trace. Ignore dependencies.
566 if (!Pred)
567 return;
568 assert(UseMI->isPHI() && UseMI->getNumOperands() % 2 && "Bad PHI");
569 for (unsigned i = 1; i != UseMI->getNumOperands(); i += 2) {
570 if (UseMI->getOperand(i + 1).getMBB() == Pred) {
571 unsigned Reg = UseMI->getOperand(i).getReg();
Jakob Stoklund Olesen9dae4572012-08-01 16:02:59 +0000572 Deps.push_back(DataDep(MRI, Reg, i));
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000573 return;
574 }
575 }
576}
577
578// Keep track of physreg data dependencies by recording each live register unit.
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000579// Associate each regunit with an instruction operand. Depending on the
580// direction instructions are scanned, it could be the operand that defined the
581// regunit, or the highest operand to read the regunit.
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000582namespace {
583struct LiveRegUnit {
584 unsigned RegUnit;
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000585 unsigned Cycle;
586 const MachineInstr *MI;
587 unsigned Op;
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000588
589 unsigned getSparseSetIndex() const { return RegUnit; }
590
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000591 LiveRegUnit(unsigned RU) : RegUnit(RU), Cycle(0), MI(0), Op(0) {}
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000592};
593}
594
595// Identify physreg dependencies for UseMI, and update the live regunit
596// tracking set when scanning instructions downwards.
597static void updatePhysDepsDownwards(const MachineInstr *UseMI,
598 SmallVectorImpl<DataDep> &Deps,
599 SparseSet<LiveRegUnit> &RegUnits,
600 const TargetRegisterInfo *TRI) {
601 SmallVector<unsigned, 8> Kills;
602 SmallVector<unsigned, 8> LiveDefOps;
603
604 for (ConstMIOperands MO(UseMI); MO.isValid(); ++MO) {
605 if (!MO->isReg())
606 continue;
607 unsigned Reg = MO->getReg();
608 if (!TargetRegisterInfo::isPhysicalRegister(Reg))
609 continue;
610 // Track live defs and kills for updating RegUnits.
611 if (MO->isDef()) {
612 if (MO->isDead())
613 Kills.push_back(Reg);
614 else
615 LiveDefOps.push_back(MO.getOperandNo());
616 } else if (MO->isKill())
617 Kills.push_back(Reg);
618 // Identify dependencies.
619 if (!MO->readsReg())
620 continue;
621 for (MCRegUnitIterator Units(Reg, TRI); Units.isValid(); ++Units) {
622 SparseSet<LiveRegUnit>::iterator I = RegUnits.find(*Units);
623 if (I == RegUnits.end())
624 continue;
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000625 Deps.push_back(DataDep(I->MI, I->Op, MO.getOperandNo()));
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000626 break;
627 }
628 }
629
630 // Update RegUnits to reflect live registers after UseMI.
631 // First kills.
632 for (unsigned i = 0, e = Kills.size(); i != e; ++i)
633 for (MCRegUnitIterator Units(Kills[i], TRI); Units.isValid(); ++Units)
634 RegUnits.erase(*Units);
635
636 // Second, live defs.
637 for (unsigned i = 0, e = LiveDefOps.size(); i != e; ++i) {
638 unsigned DefOp = LiveDefOps[i];
639 for (MCRegUnitIterator Units(UseMI->getOperand(DefOp).getReg(), TRI);
640 Units.isValid(); ++Units) {
641 LiveRegUnit &LRU = RegUnits[*Units];
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000642 LRU.MI = UseMI;
643 LRU.Op = DefOp;
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000644 }
645 }
646}
647
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +0000648/// The length of the critical path through a trace is the maximum of two path
649/// lengths:
650///
651/// 1. The maximum height+depth over all instructions in the trace center block.
652///
653/// 2. The longest cross-block dependency chain. For small blocks, it is
654/// possible that the critical path through the trace doesn't include any
655/// instructions in the block.
656///
657/// This function computes the second number from the live-in list of the
658/// center block.
659unsigned MachineTraceMetrics::Ensemble::
660computeCrossBlockCriticalPath(const TraceBlockInfo &TBI) {
661 assert(TBI.HasValidInstrDepths && "Missing depth info");
662 assert(TBI.HasValidInstrHeights && "Missing height info");
663 unsigned MaxLen = 0;
664 for (unsigned i = 0, e = TBI.LiveIns.size(); i != e; ++i) {
665 const LiveInReg &LIR = TBI.LiveIns[i];
666 if (!TargetRegisterInfo::isVirtualRegister(LIR.Reg))
667 continue;
668 const MachineInstr *DefMI = MTM.MRI->getVRegDef(LIR.Reg);
669 // Ignore dependencies outside the current trace.
670 const TraceBlockInfo &DefTBI = BlockInfo[DefMI->getParent()->getNumber()];
671 if (!DefTBI.hasValidDepth() || DefTBI.Head != TBI.Head)
672 continue;
673 unsigned Len = LIR.Height + Cycles[DefMI].Depth;
674 MaxLen = std::max(MaxLen, Len);
675 }
676 return MaxLen;
677}
678
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000679/// Compute instruction depths for all instructions above or in MBB in its
680/// trace. This assumes that the trace through MBB has already been computed.
681void MachineTraceMetrics::Ensemble::
682computeInstrDepths(const MachineBasicBlock *MBB) {
683 // The top of the trace may already be computed, and HasValidInstrDepths
684 // implies Head->HasValidInstrDepths, so we only need to start from the first
685 // block in the trace that needs to be recomputed.
686 SmallVector<const MachineBasicBlock*, 8> Stack;
687 do {
688 TraceBlockInfo &TBI = BlockInfo[MBB->getNumber()];
689 assert(TBI.hasValidDepth() && "Incomplete trace");
690 if (TBI.HasValidInstrDepths)
691 break;
692 Stack.push_back(MBB);
693 MBB = TBI.Pred;
694 } while (MBB);
695
696 // FIXME: If MBB is non-null at this point, it is the last pre-computed block
697 // in the trace. We should track any live-out physregs that were defined in
698 // the trace. This is quite rare in SSA form, typically created by CSE
699 // hoisting a compare.
700 SparseSet<LiveRegUnit> RegUnits;
701 RegUnits.setUniverse(MTM.TRI->getNumRegUnits());
702
703 // Go through trace blocks in top-down order, stopping after the center block.
704 SmallVector<DataDep, 8> Deps;
705 while (!Stack.empty()) {
706 MBB = Stack.pop_back_val();
707 DEBUG(dbgs() << "Depths for BB#" << MBB->getNumber() << ":\n");
708 TraceBlockInfo &TBI = BlockInfo[MBB->getNumber()];
709 TBI.HasValidInstrDepths = true;
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +0000710 TBI.CriticalPath = 0;
711
712 // Also compute the critical path length through MBB when possible.
713 if (TBI.HasValidInstrHeights)
714 TBI.CriticalPath = computeCrossBlockCriticalPath(TBI);
715
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000716 for (MachineBasicBlock::const_iterator I = MBB->begin(), E = MBB->end();
717 I != E; ++I) {
718 const MachineInstr *UseMI = I;
719
720 // Collect all data dependencies.
721 Deps.clear();
722 if (UseMI->isPHI())
723 getPHIDeps(UseMI, Deps, TBI.Pred, MTM.MRI);
724 else if (getDataDeps(UseMI, Deps, MTM.MRI))
725 updatePhysDepsDownwards(UseMI, Deps, RegUnits, MTM.TRI);
726
727 // Filter and process dependencies, computing the earliest issue cycle.
728 unsigned Cycle = 0;
729 for (unsigned i = 0, e = Deps.size(); i != e; ++i) {
730 const DataDep &Dep = Deps[i];
731 const TraceBlockInfo&DepTBI =
732 BlockInfo[Dep.DefMI->getParent()->getNumber()];
733 // Ignore dependencies from outside the current trace.
734 if (!DepTBI.hasValidDepth() || DepTBI.Head != TBI.Head)
735 continue;
736 assert(DepTBI.HasValidInstrDepths && "Inconsistent dependency");
737 unsigned DepCycle = Cycles.lookup(Dep.DefMI).Depth;
738 // Add latency if DefMI is a real instruction. Transients get latency 0.
739 if (!Dep.DefMI->isTransient())
740 DepCycle += MTM.TII->computeOperandLatency(MTM.ItinData,
741 Dep.DefMI, Dep.DefOp,
742 UseMI, Dep.UseOp,
743 /* FindMin = */ false);
744 Cycle = std::max(Cycle, DepCycle);
745 }
746 // Remember the instruction depth.
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +0000747 InstrCycles &MICycles = Cycles[UseMI];
748 MICycles.Depth = Cycle;
749
750 if (!TBI.HasValidInstrHeights) {
751 DEBUG(dbgs() << Cycle << '\t' << *UseMI);
752 continue;
753 }
754 // Update critical path length.
755 TBI.CriticalPath = std::max(TBI.CriticalPath, Cycle + MICycles.Height);
756 DEBUG(dbgs() << TBI.CriticalPath << '\t' << Cycle << '\t' << *UseMI);
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +0000757 }
758 }
759}
760
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000761// Identify physreg dependencies for MI when scanning instructions upwards.
762// Return the issue height of MI after considering any live regunits.
763// Height is the issue height computed from virtual register dependencies alone.
764static unsigned updatePhysDepsUpwards(const MachineInstr *MI, unsigned Height,
765 SparseSet<LiveRegUnit> &RegUnits,
766 const InstrItineraryData *ItinData,
767 const TargetInstrInfo *TII,
768 const TargetRegisterInfo *TRI) {
769 SmallVector<unsigned, 8> ReadOps;
770 for (ConstMIOperands MO(MI); MO.isValid(); ++MO) {
771 if (!MO->isReg())
772 continue;
773 unsigned Reg = MO->getReg();
774 if (!TargetRegisterInfo::isPhysicalRegister(Reg))
775 continue;
776 if (MO->readsReg())
777 ReadOps.push_back(MO.getOperandNo());
778 if (!MO->isDef())
779 continue;
780 // This is a def of Reg. Remove corresponding entries from RegUnits, and
781 // update MI Height to consider the physreg dependencies.
782 for (MCRegUnitIterator Units(Reg, TRI); Units.isValid(); ++Units) {
783 SparseSet<LiveRegUnit>::iterator I = RegUnits.find(*Units);
784 if (I == RegUnits.end())
785 continue;
786 unsigned DepHeight = I->Cycle;
787 if (!MI->isTransient()) {
788 // We may not know the UseMI of this dependency, if it came from the
789 // live-in list.
790 if (I->MI)
791 DepHeight += TII->computeOperandLatency(ItinData,
792 MI, MO.getOperandNo(),
793 I->MI, I->Op);
794 else
795 // No UseMI. Just use the MI latency instead.
796 DepHeight += TII->getInstrLatency(ItinData, MI);
797 }
798 Height = std::max(Height, DepHeight);
799 // This regunit is dead above MI.
800 RegUnits.erase(I);
801 }
802 }
803
804 // Now we know the height of MI. Update any regunits read.
805 for (unsigned i = 0, e = ReadOps.size(); i != e; ++i) {
806 unsigned Reg = MI->getOperand(ReadOps[i]).getReg();
807 for (MCRegUnitIterator Units(Reg, TRI); Units.isValid(); ++Units) {
808 LiveRegUnit &LRU = RegUnits[*Units];
809 // Set the height to the highest reader of the unit.
810 if (LRU.Cycle <= Height && LRU.MI != MI) {
811 LRU.Cycle = Height;
812 LRU.MI = MI;
813 LRU.Op = ReadOps[i];
814 }
815 }
816 }
817
818 return Height;
819}
820
821
822typedef DenseMap<const MachineInstr *, unsigned> MIHeightMap;
823
824// Push the height of DefMI upwards if required to match UseMI.
825// Return true if this is the first time DefMI was seen.
826static bool pushDepHeight(const DataDep &Dep,
827 const MachineInstr *UseMI, unsigned UseHeight,
828 MIHeightMap &Heights,
829 const InstrItineraryData *ItinData,
830 const TargetInstrInfo *TII) {
831 // Adjust height by Dep.DefMI latency.
832 if (!Dep.DefMI->isTransient())
833 UseHeight += TII->computeOperandLatency(ItinData, Dep.DefMI, Dep.DefOp,
834 UseMI, Dep.UseOp);
835
836 // Update Heights[DefMI] to be the maximum height seen.
837 MIHeightMap::iterator I;
838 bool New;
839 tie(I, New) = Heights.insert(std::make_pair(Dep.DefMI, UseHeight));
840 if (New)
841 return true;
842
843 // DefMI has been pushed before. Give it the max height.
844 if (I->second < UseHeight)
845 I->second = UseHeight;
846 return false;
847}
848
849/// Assuming that DefMI was used by Trace.back(), add it to the live-in lists
850/// of all the blocks in Trace. Stop when reaching the block that contains
851/// DefMI.
852void MachineTraceMetrics::Ensemble::
853addLiveIns(const MachineInstr *DefMI,
854 ArrayRef<const MachineBasicBlock*> Trace) {
855 assert(!Trace.empty() && "Trace should contain at least one block");
856 unsigned Reg = DefMI->getOperand(0).getReg();
857 assert(TargetRegisterInfo::isVirtualRegister(Reg));
858 const MachineBasicBlock *DefMBB = DefMI->getParent();
859
860 // Reg is live-in to all blocks in Trace that follow DefMBB.
861 for (unsigned i = Trace.size(); i; --i) {
862 const MachineBasicBlock *MBB = Trace[i-1];
863 if (MBB == DefMBB)
864 return;
865 TraceBlockInfo &TBI = BlockInfo[MBB->getNumber()];
866 // Just add the register. The height will be updated later.
867 TBI.LiveIns.push_back(Reg);
868 }
869}
870
871/// Compute instruction heights in the trace through MBB. This updates MBB and
872/// the blocks below it in the trace. It is assumed that the trace has already
873/// been computed.
874void MachineTraceMetrics::Ensemble::
875computeInstrHeights(const MachineBasicBlock *MBB) {
876 // The bottom of the trace may already be computed.
877 // Find the blocks that need updating.
878 SmallVector<const MachineBasicBlock*, 8> Stack;
879 do {
880 TraceBlockInfo &TBI = BlockInfo[MBB->getNumber()];
881 assert(TBI.hasValidHeight() && "Incomplete trace");
882 if (TBI.HasValidInstrHeights)
883 break;
884 Stack.push_back(MBB);
885 TBI.LiveIns.clear();
886 MBB = TBI.Succ;
887 } while (MBB);
888
889 // As we move upwards in the trace, keep track of instructions that are
890 // required by deeper trace instructions. Map MI -> height required so far.
891 MIHeightMap Heights;
892
893 // For physregs, the def isn't known when we see the use.
894 // Instead, keep track of the highest use of each regunit.
895 SparseSet<LiveRegUnit> RegUnits;
896 RegUnits.setUniverse(MTM.TRI->getNumRegUnits());
897
898 // If the bottom of the trace was already precomputed, initialize heights
899 // from its live-in list.
900 // MBB is the highest precomputed block in the trace.
901 if (MBB) {
902 TraceBlockInfo &TBI = BlockInfo[MBB->getNumber()];
903 for (unsigned i = 0, e = TBI.LiveIns.size(); i != e; ++i) {
904 LiveInReg LI = TBI.LiveIns[i];
905 if (TargetRegisterInfo::isVirtualRegister(LI.Reg)) {
906 // For virtual registers, the def latency is included.
907 unsigned &Height = Heights[MTM.MRI->getVRegDef(LI.Reg)];
908 if (Height < LI.Height)
909 Height = LI.Height;
910 } else {
911 // For register units, the def latency is not included because we don't
912 // know the def yet.
913 RegUnits[LI.Reg].Cycle = LI.Height;
914 }
915 }
916 }
917
918 // Go through the trace blocks in bottom-up order.
919 SmallVector<DataDep, 8> Deps;
920 for (;!Stack.empty(); Stack.pop_back()) {
921 MBB = Stack.back();
922 DEBUG(dbgs() << "Heights for BB#" << MBB->getNumber() << ":\n");
923 TraceBlockInfo &TBI = BlockInfo[MBB->getNumber()];
924 TBI.HasValidInstrHeights = true;
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +0000925 TBI.CriticalPath = 0;
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000926
927 // Get dependencies from PHIs in the trace successor.
928 if (TBI.Succ) {
929 for (MachineBasicBlock::const_iterator
930 I = TBI.Succ->begin(), E = TBI.Succ->end();
931 I != E && !I->isPHI(); ++I) {
932 const MachineInstr *PHI = I;
933 Deps.clear();
934 getPHIDeps(PHI, Deps, MBB, MTM.MRI);
935 if (!Deps.empty())
936 if (pushDepHeight(Deps.front(), PHI, Cycles.lookup(PHI).Height,
937 Heights, MTM.ItinData, MTM.TII))
938 addLiveIns(Deps.front().DefMI, Stack);
939 }
940 }
941
942 // Go through the block backwards.
943 for (MachineBasicBlock::const_iterator BI = MBB->end(), BB = MBB->begin();
944 BI != BB;) {
945 const MachineInstr *MI = --BI;
946
947 // Find the MI height as determined by virtual register uses in the
948 // trace below.
949 unsigned Cycle = 0;
950 MIHeightMap::iterator HeightI = Heights.find(MI);
951 if (HeightI != Heights.end()) {
952 Cycle = HeightI->second;
953 // We won't be seeing any more MI uses.
954 Heights.erase(HeightI);
955 }
956
957 // Don't process PHI deps. They depend on the specific predecessor, and
958 // we'll get them when visiting the predecessor.
959 Deps.clear();
960 bool HasPhysRegs = !MI->isPHI() && getDataDeps(MI, Deps, MTM.MRI);
961
962 // There may also be regunit dependencies to include in the height.
963 if (HasPhysRegs)
964 Cycle = updatePhysDepsUpwards(MI, Cycle, RegUnits,
965 MTM.ItinData, MTM.TII, MTM.TRI);
966
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000967 // Update the required height of any virtual registers read by MI.
968 for (unsigned i = 0, e = Deps.size(); i != e; ++i)
969 if (pushDepHeight(Deps[i], MI, Cycle, Heights, MTM.ItinData, MTM.TII))
970 addLiveIns(Deps[i].DefMI, Stack);
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +0000971
972 InstrCycles &MICycles = Cycles[MI];
973 MICycles.Height = Cycle;
974 if (!TBI.HasValidInstrDepths) {
975 DEBUG(dbgs() << Cycle << '\t' << *MI);
976 continue;
977 }
978 // Update critical path length.
979 TBI.CriticalPath = std::max(TBI.CriticalPath, Cycle + MICycles.Depth);
980 DEBUG(dbgs() << TBI.CriticalPath << '\t' << Cycle << '\t' << *MI);
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +0000981 }
982
983 // Update virtual live-in heights. They were added by addLiveIns() with a 0
984 // height because the final height isn't known until now.
985 DEBUG(dbgs() << "BB#" << MBB->getNumber() << " Live-ins:");
986 for (unsigned i = 0, e = TBI.LiveIns.size(); i != e; ++i) {
987 LiveInReg &LIR = TBI.LiveIns[i];
988 const MachineInstr *DefMI = MTM.MRI->getVRegDef(LIR.Reg);
989 LIR.Height = Heights.lookup(DefMI);
990 DEBUG(dbgs() << ' ' << PrintReg(LIR.Reg) << '@' << LIR.Height);
991 }
992
993 // Transfer the live regunits to the live-in list.
994 for (SparseSet<LiveRegUnit>::const_iterator
995 RI = RegUnits.begin(), RE = RegUnits.end(); RI != RE; ++RI) {
996 TBI.LiveIns.push_back(LiveInReg(RI->RegUnit, RI->Cycle));
997 DEBUG(dbgs() << ' ' << PrintRegUnit(RI->RegUnit, MTM.TRI)
998 << '@' << RI->Cycle);
999 }
1000 DEBUG(dbgs() << '\n');
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +00001001
1002 if (!TBI.HasValidInstrDepths)
1003 continue;
1004 // Add live-ins to the critical path length.
1005 TBI.CriticalPath = std::max(TBI.CriticalPath,
1006 computeCrossBlockCriticalPath(TBI));
1007 DEBUG(dbgs() << "Critical path: " << TBI.CriticalPath << '\n');
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +00001008 }
1009}
1010
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001011MachineTraceMetrics::Trace
1012MachineTraceMetrics::Ensemble::getTrace(const MachineBasicBlock *MBB) {
1013 // FIXME: Check cache tags, recompute as needed.
1014 computeTrace(MBB);
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +00001015 computeInstrDepths(MBB);
Jakob Stoklund Olesenc7f44b82012-08-01 22:36:00 +00001016 computeInstrHeights(MBB);
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001017 return Trace(*this, BlockInfo[MBB->getNumber()]);
1018}
1019
Jakob Stoklund Olesen08f6ef62012-07-27 23:58:38 +00001020void MachineTraceMetrics::Ensemble::print(raw_ostream &OS) const {
1021 OS << getName() << " ensemble:\n";
1022 for (unsigned i = 0, e = BlockInfo.size(); i != e; ++i) {
1023 OS << " BB#" << i << '\t';
1024 BlockInfo[i].print(OS);
1025 OS << '\n';
1026 }
1027}
1028
1029void MachineTraceMetrics::TraceBlockInfo::print(raw_ostream &OS) const {
1030 if (hasValidDepth()) {
1031 OS << "depth=" << InstrDepth;
1032 if (Pred)
1033 OS << " pred=BB#" << Pred->getNumber();
1034 else
1035 OS << " pred=null";
1036 OS << " head=BB#" << Head;
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +00001037 if (HasValidInstrDepths)
1038 OS << " +instrs";
Jakob Stoklund Olesen08f6ef62012-07-27 23:58:38 +00001039 } else
1040 OS << "depth invalid";
1041 OS << ", ";
1042 if (hasValidHeight()) {
1043 OS << "height=" << InstrHeight;
1044 if (Succ)
1045 OS << " succ=BB#" << Succ->getNumber();
1046 else
1047 OS << " succ=null";
1048 OS << " tail=BB#" << Tail;
Jakob Stoklund Olesen5f8e8bd2012-07-31 20:44:38 +00001049 if (HasValidInstrHeights)
1050 OS << " +instrs";
Jakob Stoklund Olesen08f6ef62012-07-27 23:58:38 +00001051 } else
1052 OS << "height invalid";
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +00001053 if (HasValidInstrDepths && HasValidInstrHeights)
1054 OS << ", crit=" << CriticalPath;
Jakob Stoklund Olesen08f6ef62012-07-27 23:58:38 +00001055}
1056
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001057void MachineTraceMetrics::Trace::print(raw_ostream &OS) const {
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +00001058 unsigned MBBNum = &TBI - &TE.BlockInfo[0];
1059
1060 OS << TE.getName() << " trace BB#" << TBI.Head << " --> BB#" << MBBNum
1061 << " --> BB#" << TBI.Tail << ':';
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001062 if (TBI.hasValidHeight() && TBI.hasValidDepth())
1063 OS << ' ' << getInstrCount() << " instrs.";
Jakob Stoklund Olesen79a20ce2012-08-02 18:45:54 +00001064 if (TBI.HasValidInstrDepths && TBI.HasValidInstrHeights)
1065 OS << ' ' << TBI.CriticalPath << " cycles.";
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001066
1067 const MachineTraceMetrics::TraceBlockInfo *Block = &TBI;
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +00001068 OS << "\nBB#" << MBBNum;
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001069 while (Block->hasValidDepth() && Block->Pred) {
1070 unsigned Num = Block->Pred->getNumber();
1071 OS << " <- BB#" << Num;
1072 Block = &TE.BlockInfo[Num];
1073 }
1074
1075 Block = &TBI;
Jakob Stoklund Olesen0271a5f2012-07-27 23:58:36 +00001076 OS << "\n ";
Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001077 while (Block->hasValidHeight() && Block->Succ) {
1078 unsigned Num = Block->Succ->getNumber();
1079 OS << " -> BB#" << Num;
1080 Block = &TE.BlockInfo[Num];
1081 }
1082 OS << '\n';
1083}