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Chris Lattnerd0e9bd12002-04-28 20:42:50 +00001//===- PassManagerT.h - Container for Passes ---------------------*- C++ -*--=//
Chris Lattner67d25652002-01-30 23:20:39 +00002//
Chris Lattnerd0e9bd12002-04-28 20:42:50 +00003// This file defines the PassManagerT class. This class is used to hold,
Chris Lattner67d25652002-01-30 23:20:39 +00004// maintain, and optimize execution of Pass's. The PassManager class ensures
5// that analysis results are available before a pass runs, and that Pass's are
6// destroyed when the PassManager is destroyed.
7//
Chris Lattnerd0e9bd12002-04-28 20:42:50 +00008// The PassManagerT template is instantiated three times to do its job. The
9// public PassManager class is a Pimpl around the PassManagerT<Module> interface
10// to avoid having all of the PassManager clients being exposed to the
11// implementation details herein.
Chris Lattner67d25652002-01-30 23:20:39 +000012//
13//===----------------------------------------------------------------------===//
14
Chris Lattnerd0e9bd12002-04-28 20:42:50 +000015#ifndef LLVM_PASSMANAGER_T_H
16#define LLVM_PASSMANAGER_T_H
Chris Lattner67d25652002-01-30 23:20:39 +000017
18#include "llvm/Pass.h"
Chris Lattner198cf422002-07-30 16:27:02 +000019#include "Support/CommandLine.h"
Chris Lattnered6504b2002-09-08 19:00:07 +000020#include "Support/LeakDetector.h"
Chris Lattneraf751b82002-10-01 19:54:07 +000021#include "Support/Timer.h"
Chris Lattnerc8e66542002-04-27 06:56:12 +000022#include <algorithm>
Chris Lattner395c27a2002-07-31 18:04:17 +000023#include <iostream>
Chris Lattnera454b5b2002-04-28 05:14:06 +000024class Annotable;
Chris Lattner67d25652002-01-30 23:20:39 +000025
Chris Lattner67d25652002-01-30 23:20:39 +000026//===----------------------------------------------------------------------===//
Chris Lattner198cf422002-07-30 16:27:02 +000027// Pass debugging information. Often it is useful to find out what pass is
28// running when a crash occurs in a utility. When this library is compiled with
29// debugging on, a command line option (--debug-pass) is enabled that causes the
30// pass name to be printed before it executes.
31//
32
33// Different debug levels that can be enabled...
34enum PassDebugLevel {
Chris Lattner1e4867f2002-07-30 19:51:02 +000035 None, Arguments, Structure, Executions, Details
Chris Lattner198cf422002-07-30 16:27:02 +000036};
37
38static cl::opt<enum PassDebugLevel>
39PassDebugging("debug-pass", cl::Hidden,
40 cl::desc("Print PassManager debugging information"),
41 cl::values(
42 clEnumVal(None , "disable debug output"),
Chris Lattner1e4867f2002-07-30 19:51:02 +000043 clEnumVal(Arguments , "print pass arguments to pass to 'opt'"),
Chris Lattner198cf422002-07-30 16:27:02 +000044 clEnumVal(Structure , "print pass structure before run()"),
45 clEnumVal(Executions, "print pass name before it is executed"),
46 clEnumVal(Details , "print pass details when it is executed"),
47 0));
48
49//===----------------------------------------------------------------------===//
Chris Lattner57d2ba32002-04-04 19:35:24 +000050// PMDebug class - a set of debugging functions, that are not to be
51// instantiated by the template.
Chris Lattner67d25652002-01-30 23:20:39 +000052//
53struct PMDebug {
Chris Lattner1e4867f2002-07-30 19:51:02 +000054 static void PerformPassStartupStuff(Pass *P) {
55 // If debugging is enabled, print out argument information...
56 if (PassDebugging >= Arguments) {
57 std::cerr << "Pass Arguments: ";
58 PrintArgumentInformation(P);
59 std::cerr << "\n";
60
61 // Print the pass execution structure
62 if (PassDebugging >= Structure)
63 P->dumpPassStructure();
64 }
Chris Lattner198cf422002-07-30 16:27:02 +000065 }
Chris Lattner1e4867f2002-07-30 19:51:02 +000066
67 static void PrintArgumentInformation(const Pass *P);
Chris Lattnera454b5b2002-04-28 05:14:06 +000068 static void PrintPassInformation(unsigned,const char*,Pass *, Annotable *);
Chris Lattnerac3e0602002-01-31 18:32:27 +000069 static void PrintAnalysisSetInfo(unsigned,const char*,Pass *P,
Chris Lattnerc8e66542002-04-27 06:56:12 +000070 const std::vector<AnalysisID> &);
Chris Lattner67d25652002-01-30 23:20:39 +000071};
72
73
Chris Lattnere2eb99e2002-04-29 04:04:29 +000074//===----------------------------------------------------------------------===//
75// TimingInfo Class - This class is used to calculate information about the
76// amount of time each pass takes to execute. This only happens when
77// -time-passes is enabled on the command line.
78//
Chris Lattner6a33d6f2002-08-01 19:33:09 +000079
Chris Lattnere2eb99e2002-04-29 04:04:29 +000080class TimingInfo {
Chris Lattneraf751b82002-10-01 19:54:07 +000081 std::map<Pass*, Timer> TimingData;
82 TimerGroup TG;
83
84 // Private ctor, must use 'create' member
85 TimingInfo() : TG("... Pass execution timing report ...") {}
Chris Lattnere2eb99e2002-04-29 04:04:29 +000086public:
87 // Create method. If Timing is enabled, this creates and returns a new timing
88 // object, otherwise it returns null.
89 //
90 static TimingInfo *create();
91
92 // TimingDtor - Print out information about timing information
Chris Lattneraf751b82002-10-01 19:54:07 +000093 ~TimingInfo() {
94 // Delete all of the timers...
95 TimingData.clear();
96 // TimerGroup is deleted next, printing the report.
97 }
Chris Lattnere2eb99e2002-04-29 04:04:29 +000098
Chris Lattneraf751b82002-10-01 19:54:07 +000099 void passStarted(Pass *P) {
Chris Lattnerd5fc9022002-10-01 20:08:11 +0000100 if (dynamic_cast<AnalysisResolver*>(P)) return;
Chris Lattneraf751b82002-10-01 19:54:07 +0000101 std::map<Pass*, Timer>::iterator I = TimingData.find(P);
102 if (I == TimingData.end())
Chris Lattner52db2712002-10-01 20:12:06 +0000103 I=TimingData.insert(std::make_pair(P, Timer(P->getPassName(), TG))).first;
Chris Lattneraf751b82002-10-01 19:54:07 +0000104 I->second.startTimer();
105 }
106 void passEnded(Pass *P) {
Chris Lattnerd5fc9022002-10-01 20:08:11 +0000107 if (dynamic_cast<AnalysisResolver*>(P)) return;
Chris Lattneraf751b82002-10-01 19:54:07 +0000108 std::map<Pass*, Timer>::iterator I = TimingData.find(P);
109 assert (I != TimingData.end() && "passStarted/passEnded not nested right!");
110 I->second.stopTimer();
111 }
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000112};
113
Chris Lattner6e041bd2002-08-21 22:17:09 +0000114//===----------------------------------------------------------------------===//
Chris Lattner67d25652002-01-30 23:20:39 +0000115// Declare the PassManagerTraits which will be specialized...
116//
117template<class UnitType> class PassManagerTraits; // Do not define.
118
119
120//===----------------------------------------------------------------------===//
121// PassManagerT - Container object for passes. The PassManagerT destructor
122// deletes all passes contained inside of the PassManagerT, so you shouldn't
123// delete passes manually, and all passes should be dynamically allocated.
124//
125template<typename UnitType>
126class PassManagerT : public PassManagerTraits<UnitType>,public AnalysisResolver{
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000127 typedef PassManagerTraits<UnitType> Traits;
128 typedef typename Traits::PassClass PassClass;
129 typedef typename Traits::SubPassClass SubPassClass;
130 typedef typename Traits::BatcherClass BatcherClass;
131 typedef typename Traits::ParentClass ParentClass;
Chris Lattner67d25652002-01-30 23:20:39 +0000132
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000133 friend typename Traits::PassClass;
134 friend typename Traits::SubPassClass;
135 friend class Traits;
Chris Lattneree0788d2002-09-25 21:59:11 +0000136 friend class ImmutablePass;
Chris Lattner67d25652002-01-30 23:20:39 +0000137
Chris Lattner73503172002-07-29 21:03:38 +0000138 std::vector<PassClass*> Passes; // List of passes to run
Chris Lattneree0788d2002-09-25 21:59:11 +0000139 std::vector<ImmutablePass*> ImmutablePasses; // List of immutable passes
Chris Lattner67d25652002-01-30 23:20:39 +0000140
141 // The parent of this pass manager...
Chris Lattnerac3e0602002-01-31 18:32:27 +0000142 ParentClass * const Parent;
Chris Lattner67d25652002-01-30 23:20:39 +0000143
144 // The current batcher if one is in use, or null
145 BatcherClass *Batcher;
146
147 // CurrentAnalyses - As the passes are being run, this map contains the
148 // analyses that are available to the current pass for use. This is accessed
149 // through the getAnalysis() function in this class and in Pass.
150 //
151 std::map<AnalysisID, Pass*> CurrentAnalyses;
152
Chris Lattnerac3e0602002-01-31 18:32:27 +0000153 // LastUseOf - This map keeps track of the last usage in our pipeline of a
154 // particular pass. When executing passes, the memory for .first is free'd
155 // after .second is run.
156 //
157 std::map<Pass*, Pass*> LastUseOf;
158
Chris Lattner67d25652002-01-30 23:20:39 +0000159public:
160 PassManagerT(ParentClass *Par = 0) : Parent(Par), Batcher(0) {}
161 ~PassManagerT() {
162 // Delete all of the contained passes...
Chris Lattnera82ee2d2002-07-24 22:08:53 +0000163 for (typename std::vector<PassClass*>::iterator
164 I = Passes.begin(), E = Passes.end(); I != E; ++I)
Chris Lattner67d25652002-01-30 23:20:39 +0000165 delete *I;
Chris Lattneree0788d2002-09-25 21:59:11 +0000166
167 for (std::vector<ImmutablePass*>::iterator
168 I = ImmutablePasses.begin(), E = ImmutablePasses.end(); I != E; ++I)
169 delete *I;
Chris Lattner67d25652002-01-30 23:20:39 +0000170 }
171
172 // run - Run all of the queued passes on the specified module in an optimal
173 // way.
174 virtual bool runOnUnit(UnitType *M) {
175 bool MadeChanges = false;
176 closeBatcher();
177 CurrentAnalyses.clear();
178
Chris Lattneree0788d2002-09-25 21:59:11 +0000179 // Add any immutable passes to the CurrentAnalyses set...
Chris Lattner480b37d2002-09-25 22:26:52 +0000180 for (unsigned i = 0, e = ImmutablePasses.size(); i != e; ++i) {
181 ImmutablePass *IPass = ImmutablePasses[i];
182 if (const PassInfo *PI = IPass->getPassInfo()) {
183 CurrentAnalyses[PI] = IPass;
Chris Lattneree0788d2002-09-25 21:59:11 +0000184
185 const std::vector<const PassInfo*> &II = PI->getInterfacesImplemented();
186 for (unsigned i = 0, e = II.size(); i != e; ++i)
Chris Lattner480b37d2002-09-25 22:26:52 +0000187 CurrentAnalyses[II[i]] = IPass;
Chris Lattneree0788d2002-09-25 21:59:11 +0000188 }
Chris Lattner480b37d2002-09-25 22:26:52 +0000189 }
Chris Lattneree0788d2002-09-25 21:59:11 +0000190
Chris Lattnerac3e0602002-01-31 18:32:27 +0000191 // LastUserOf - This contains the inverted LastUseOfMap...
192 std::map<Pass *, std::vector<Pass*> > LastUserOf;
193 for (std::map<Pass*, Pass*>::iterator I = LastUseOf.begin(),
194 E = LastUseOf.end(); I != E; ++I)
195 LastUserOf[I->second].push_back(I->first);
196
197
Chris Lattner67d25652002-01-30 23:20:39 +0000198 // Output debug information...
Chris Lattner1e4867f2002-07-30 19:51:02 +0000199 if (Parent == 0) PMDebug::PerformPassStartupStuff(this);
Chris Lattner67d25652002-01-30 23:20:39 +0000200
201 // Run all of the passes
202 for (unsigned i = 0, e = Passes.size(); i < e; ++i) {
203 PassClass *P = Passes[i];
204
Chris Lattnera454b5b2002-04-28 05:14:06 +0000205 PMDebug::PrintPassInformation(getDepth(), "Executing Pass", P,
206 (Annotable*)M);
Chris Lattner67d25652002-01-30 23:20:39 +0000207
208 // Get information about what analyses the pass uses...
Chris Lattnerc8e66542002-04-27 06:56:12 +0000209 AnalysisUsage AnUsage;
210 P->getAnalysisUsage(AnUsage);
211 PMDebug::PrintAnalysisSetInfo(getDepth(), "Required", P,
212 AnUsage.getRequiredSet());
Chris Lattner67d25652002-01-30 23:20:39 +0000213
Chris Lattner216edd42002-08-30 20:25:01 +0000214 // All Required analyses should be available to the pass as it runs! Here
215 // we fill in the AnalysisImpls member of the pass so that it can
216 // successfully use the getAnalysis() method to retrieve the
217 // implementations it needs.
218 //
219 P->AnalysisImpls.clear();
220 P->AnalysisImpls.reserve(AnUsage.getRequiredSet().size());
221 for (std::vector<const PassInfo *>::const_iterator
Chris Lattnerc8e66542002-04-27 06:56:12 +0000222 I = AnUsage.getRequiredSet().begin(),
223 E = AnUsage.getRequiredSet().end(); I != E; ++I) {
Chris Lattner216edd42002-08-30 20:25:01 +0000224 Pass *Impl = getAnalysisOrNullUp(*I);
225 if (Impl == 0) {
226 std::cerr << "Analysis '" << (*I)->getPassName()
227 << "' used but not available!";
228 assert(0 && "Analysis used but not available!");
229 } else if (PassDebugging == Details) {
230 if ((*I)->getPassName() != std::string(Impl->getPassName()))
231 std::cerr << " Interface '" << (*I)->getPassName()
232 << "' implemented by '" << Impl->getPassName() << "'\n";
233 }
234 P->AnalysisImpls.push_back(std::make_pair(*I, Impl));
Chris Lattner67d25652002-01-30 23:20:39 +0000235 }
Chris Lattner67d25652002-01-30 23:20:39 +0000236
237 // Run the sub pass!
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000238 startPass(P);
239 bool Changed = runPass(P, M);
240 endPass(P);
Chris Lattnerf2f31bd2002-02-01 04:53:36 +0000241 MadeChanges |= Changed;
Chris Lattner67d25652002-01-30 23:20:39 +0000242
Chris Lattnered6504b2002-09-08 19:00:07 +0000243 // Check for memory leaks by the pass...
244 LeakDetector::checkForGarbage(std::string("after running pass '") +
245 P->getPassName() + "'");
246
Chris Lattnerf2f31bd2002-02-01 04:53:36 +0000247 if (Changed)
248 PMDebug::PrintPassInformation(getDepth()+1, "Made Modification", P,
Chris Lattnera454b5b2002-04-28 05:14:06 +0000249 (Annotable*)M);
Chris Lattnerc8e66542002-04-27 06:56:12 +0000250 PMDebug::PrintAnalysisSetInfo(getDepth(), "Preserved", P,
251 AnUsage.getPreservedSet());
Chris Lattner67d25652002-01-30 23:20:39 +0000252
Chris Lattnerc8e66542002-04-27 06:56:12 +0000253
254 // Erase all analyses not in the preserved set...
Chris Lattner820d9712002-10-21 20:00:28 +0000255 if (!AnUsage.getPreservesAll()) {
Chris Lattnerc8e66542002-04-27 06:56:12 +0000256 const std::vector<AnalysisID> &PreservedSet = AnUsage.getPreservedSet();
257 for (std::map<AnalysisID, Pass*>::iterator I = CurrentAnalyses.begin(),
258 E = CurrentAnalyses.end(); I != E; )
259 if (std::find(PreservedSet.begin(), PreservedSet.end(), I->first) !=
260 PreservedSet.end())
261 ++I; // This analysis is preserved, leave it in the available set...
262 else {
Chris Lattneree0788d2002-09-25 21:59:11 +0000263 if (!dynamic_cast<ImmutablePass*>(I->second)) {
Chris Lattnerc8e66542002-04-27 06:56:12 +0000264#if MAP_DOESNT_HAVE_BROKEN_ERASE_MEMBER
Chris Lattneree0788d2002-09-25 21:59:11 +0000265 I = CurrentAnalyses.erase(I); // Analysis not preserved!
Chris Lattnerc8e66542002-04-27 06:56:12 +0000266#else
Chris Lattneree0788d2002-09-25 21:59:11 +0000267 // GCC 2.95.3 STL doesn't have correct erase member!
268 CurrentAnalyses.erase(I);
269 I = CurrentAnalyses.begin();
Chris Lattnerc8e66542002-04-27 06:56:12 +0000270#endif
Chris Lattneree0788d2002-09-25 21:59:11 +0000271 } else {
272 ++I;
273 }
Chris Lattnerc8e66542002-04-27 06:56:12 +0000274 }
275 }
276
Chris Lattner73503172002-07-29 21:03:38 +0000277 // Add the current pass to the set of passes that have been run, and are
278 // thus available to users.
279 //
Chris Lattner216edd42002-08-30 20:25:01 +0000280 if (const PassInfo *PI = P->getPassInfo()) {
Chris Lattner73503172002-07-29 21:03:38 +0000281 CurrentAnalyses[PI] = P;
Chris Lattnerac3e0602002-01-31 18:32:27 +0000282
Chris Lattner216edd42002-08-30 20:25:01 +0000283 // This pass is the current implementation of all of the interfaces it
284 // implements as well.
285 //
286 const std::vector<const PassInfo*> &II = PI->getInterfacesImplemented();
287 for (unsigned i = 0, e = II.size(); i != e; ++i)
288 CurrentAnalyses[II[i]] = P;
289 }
290
Chris Lattnerac3e0602002-01-31 18:32:27 +0000291 // Free memory for any passes that we are the last use of...
292 std::vector<Pass*> &DeadPass = LastUserOf[P];
293 for (std::vector<Pass*>::iterator I = DeadPass.begin(),E = DeadPass.end();
294 I != E; ++I) {
295 PMDebug::PrintPassInformation(getDepth()+1, "Freeing Pass", *I,
Chris Lattnera454b5b2002-04-28 05:14:06 +0000296 (Annotable*)M);
Chris Lattnerac3e0602002-01-31 18:32:27 +0000297 (*I)->releaseMemory();
298 }
Chris Lattner6b6f5402002-09-29 22:50:22 +0000299
300 // Make sure to remove dead passes from the CurrentAnalyses list...
301 for (std::map<AnalysisID, Pass*>::iterator I = CurrentAnalyses.begin();
302 I != CurrentAnalyses.end(); ) {
303 std::vector<Pass*>::iterator DPI = std::find(DeadPass.begin(),
304 DeadPass.end(), I->second);
305 if (DPI != DeadPass.end()) { // This pass is dead now... remove it
306 std::map<AnalysisID, Pass*>::iterator IDead = I++;
307 CurrentAnalyses.erase(IDead);
308 } else {
309 ++I; // Move on to the next element...
310 }
311 }
Chris Lattner67d25652002-01-30 23:20:39 +0000312 }
313 return MadeChanges;
314 }
315
Chris Lattnerac3e0602002-01-31 18:32:27 +0000316 // dumpPassStructure - Implement the -debug-passes=PassStructure option
317 virtual void dumpPassStructure(unsigned Offset = 0) {
Chris Lattner480b37d2002-09-25 22:26:52 +0000318 // Print out the immutable passes...
319 for (unsigned i = 0, e = ImmutablePasses.size(); i != e; ++i)
320 ImmutablePasses[i]->dumpPassStructure(0);
321
Chris Lattnerac3e0602002-01-31 18:32:27 +0000322 std::cerr << std::string(Offset*2, ' ') << Traits::getPMName()
323 << " Pass Manager\n";
Chris Lattnera82ee2d2002-07-24 22:08:53 +0000324 for (typename std::vector<PassClass*>::iterator
325 I = Passes.begin(), E = Passes.end(); I != E; ++I) {
Chris Lattnerac3e0602002-01-31 18:32:27 +0000326 PassClass *P = *I;
327 P->dumpPassStructure(Offset+1);
328
329 // Loop through and see which classes are destroyed after this one...
330 for (std::map<Pass*, Pass*>::iterator I = LastUseOf.begin(),
331 E = LastUseOf.end(); I != E; ++I) {
332 if (P == I->second) {
Chris Lattner73503172002-07-29 21:03:38 +0000333 std::cerr << "--" << std::string(Offset*2, ' ');
Chris Lattnerac3e0602002-01-31 18:32:27 +0000334 I->first->dumpPassStructure(0);
335 }
336 }
337 }
338 }
Chris Lattnerac3e0602002-01-31 18:32:27 +0000339
Chris Lattner6e041bd2002-08-21 22:17:09 +0000340 Pass *getAnalysisOrNullDown(const PassInfo *ID) const {
Chris Lattner216edd42002-08-30 20:25:01 +0000341 std::map<AnalysisID, Pass*>::const_iterator I = CurrentAnalyses.find(ID);
Chris Lattner6e041bd2002-08-21 22:17:09 +0000342
343 if (I != CurrentAnalyses.end())
344 return I->second; // Found it.
345
346 if (Batcher)
347 return ((AnalysisResolver*)Batcher)->getAnalysisOrNullDown(ID);
348 return 0;
Chris Lattnerac3e0602002-01-31 18:32:27 +0000349 }
350
Chris Lattner6e041bd2002-08-21 22:17:09 +0000351 Pass *getAnalysisOrNullUp(const PassInfo *ID) const {
Chris Lattner216edd42002-08-30 20:25:01 +0000352 std::map<AnalysisID, Pass*>::const_iterator I = CurrentAnalyses.find(ID);
Chris Lattner6e041bd2002-08-21 22:17:09 +0000353 if (I != CurrentAnalyses.end())
354 return I->second; // Found it.
355
356 if (Parent) // Try scanning...
357 return Parent->getAnalysisOrNullUp(ID);
358 return 0;
Chris Lattnerac3e0602002-01-31 18:32:27 +0000359 }
360
Misha Brukman632df282002-10-29 23:06:16 +0000361 // {start/end}Pass - Called when a pass is started, it just propagates
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000362 // information up to the top level PassManagerT object to tell it that a pass
363 // has started or ended. This is used to gather timing information about
364 // passes.
365 //
366 void startPass(Pass *P) {
367 if (Parent) Parent->startPass(P);
368 else PassStarted(P);
369 }
370 void endPass(Pass *P) {
371 if (Parent) Parent->endPass(P);
372 else PassEnded(P);
373 }
374
Chris Lattnerac3e0602002-01-31 18:32:27 +0000375 // markPassUsed - Inform higher level pass managers (and ourselves)
376 // that these analyses are being used by this pass. This is used to
377 // make sure that analyses are not free'd before we have to use
378 // them...
379 //
Chris Lattner6e041bd2002-08-21 22:17:09 +0000380 void markPassUsed(const PassInfo *P, Pass *User) {
Chris Lattner216edd42002-08-30 20:25:01 +0000381 std::map<AnalysisID, Pass*>::const_iterator I = CurrentAnalyses.find(P);
Chris Lattner6e041bd2002-08-21 22:17:09 +0000382
Chris Lattnerac3e0602002-01-31 18:32:27 +0000383 if (I != CurrentAnalyses.end()) {
384 LastUseOf[I->second] = User; // Local pass, extend the lifetime
385 } else {
386 // Pass not in current available set, must be a higher level pass
Misha Brukman632df282002-10-29 23:06:16 +0000387 // available to us, propagate to parent pass manager... We tell the
Chris Lattnerac3e0602002-01-31 18:32:27 +0000388 // parent that we (the passmanager) are using the analysis so that it
389 // frees the analysis AFTER this pass manager runs.
390 //
Chris Lattneree0788d2002-09-25 21:59:11 +0000391 if (Parent) {
392 Parent->markPassUsed(P, this);
393 } else {
394 assert(0 && "Pass available but not found! "
395 "Perhaps this is a module pass requiring a function pass?");
396 }
Chris Lattnerac3e0602002-01-31 18:32:27 +0000397 }
398 }
Chris Lattneree0788d2002-09-25 21:59:11 +0000399
Chris Lattnerac3e0602002-01-31 18:32:27 +0000400 // Return the number of parent PassManagers that exist
401 virtual unsigned getDepth() const {
402 if (Parent == 0) return 0;
403 return 1 + Parent->getDepth();
404 }
405
Chris Lattner1e4867f2002-07-30 19:51:02 +0000406 virtual unsigned getNumContainedPasses() const { return Passes.size(); }
407 virtual const Pass *getContainedPass(unsigned N) const {
408 assert(N < Passes.size() && "Pass number out of range!");
409 return Passes[N];
410 }
411
Chris Lattner6e041bd2002-08-21 22:17:09 +0000412 // add - Add a pass to the queue of passes to run. This gives ownership of
Chris Lattner67d25652002-01-30 23:20:39 +0000413 // the Pass to the PassManager. When the PassManager is destroyed, the pass
Chris Lattnerac3e0602002-01-31 18:32:27 +0000414 // will be destroyed as well, so there is no need to delete the pass. This
415 // implies that all passes MUST be new'd.
Chris Lattner67d25652002-01-30 23:20:39 +0000416 //
417 void add(PassClass *P) {
418 // Get information about what analyses the pass uses...
Chris Lattnerc8e66542002-04-27 06:56:12 +0000419 AnalysisUsage AnUsage;
420 P->getAnalysisUsage(AnUsage);
421 const std::vector<AnalysisID> &Required = AnUsage.getRequiredSet();
Chris Lattner67d25652002-01-30 23:20:39 +0000422
423 // Loop over all of the analyses used by this pass,
Chris Lattnerc8e66542002-04-27 06:56:12 +0000424 for (std::vector<AnalysisID>::const_iterator I = Required.begin(),
425 E = Required.end(); I != E; ++I) {
Chris Lattner67d25652002-01-30 23:20:39 +0000426 if (getAnalysisOrNullDown(*I) == 0)
Chris Lattner26750072002-07-27 01:12:17 +0000427 add((PassClass*)(*I)->createPass());
Chris Lattner67d25652002-01-30 23:20:39 +0000428 }
429
430 // Tell the pass to add itself to this PassManager... the way it does so
431 // depends on the class of the pass, and is critical to laying out passes in
432 // an optimal order..
433 //
Chris Lattnerc8e66542002-04-27 06:56:12 +0000434 P->addToPassManager(this, AnUsage);
Chris Lattner67d25652002-01-30 23:20:39 +0000435 }
436
437private:
438
439 // addPass - These functions are used to implement the subclass specific
440 // behaviors present in PassManager. Basically the add(Pass*) method ends up
441 // reflecting its behavior into a Pass::addToPassManager call. Subclasses of
442 // Pass override it specifically so that they can reflect the type
443 // information inherent in "this" back to the PassManager.
444 //
445 // For generic Pass subclasses (which are interprocedural passes), we simply
446 // add the pass to the end of the pass list and terminate any accumulation of
Chris Lattnerc8e66542002-04-27 06:56:12 +0000447 // FunctionPass's that are present.
Chris Lattner67d25652002-01-30 23:20:39 +0000448 //
Chris Lattnerc8e66542002-04-27 06:56:12 +0000449 void addPass(PassClass *P, AnalysisUsage &AnUsage) {
450 const std::vector<AnalysisID> &RequiredSet = AnUsage.getRequiredSet();
Chris Lattnerc8e66542002-04-27 06:56:12 +0000451
Chris Lattner73503172002-07-29 21:03:38 +0000452 // FIXME: If this pass being added isn't killed by any of the passes in the
453 // batcher class then we can reorder to pass to execute before the batcher
454 // does, which will potentially allow us to batch more passes!
Chris Lattner67d25652002-01-30 23:20:39 +0000455 //
Chris Lattner73503172002-07-29 21:03:38 +0000456 //const std::vector<AnalysisID> &ProvidedSet = AnUsage.getProvidedSet();
457 if (Batcher /*&& ProvidedSet.empty()*/)
Chris Lattner67d25652002-01-30 23:20:39 +0000458 closeBatcher(); // This pass cannot be batched!
459
460 // Set the Resolver instance variable in the Pass so that it knows where to
461 // find this object...
462 //
463 setAnalysisResolver(P, this);
464 Passes.push_back(P);
465
Chris Lattnerac3e0602002-01-31 18:32:27 +0000466 // Inform higher level pass managers (and ourselves) that these analyses are
467 // being used by this pass. This is used to make sure that analyses are not
468 // free'd before we have to use them...
469 //
Chris Lattnerc8e66542002-04-27 06:56:12 +0000470 for (std::vector<AnalysisID>::const_iterator I = RequiredSet.begin(),
471 E = RequiredSet.end(); I != E; ++I)
Chris Lattnerac3e0602002-01-31 18:32:27 +0000472 markPassUsed(*I, P); // Mark *I as used by P
473
Chris Lattnerc8e66542002-04-27 06:56:12 +0000474 // Erase all analyses not in the preserved set...
Chris Lattner820d9712002-10-21 20:00:28 +0000475 if (!AnUsage.getPreservesAll()) {
Chris Lattnerc8e66542002-04-27 06:56:12 +0000476 const std::vector<AnalysisID> &PreservedSet = AnUsage.getPreservedSet();
477 for (std::map<AnalysisID, Pass*>::iterator I = CurrentAnalyses.begin(),
Chris Lattneree0788d2002-09-25 21:59:11 +0000478 E = CurrentAnalyses.end(); I != E; ) {
479 if (std::find(PreservedSet.begin(), PreservedSet.end(), I->first) ==
480 PreservedSet.end()) { // Analysis not preserved!
481 CurrentAnalyses.erase(I); // Remove from available analyses
Chris Lattnerc8e66542002-04-27 06:56:12 +0000482 I = CurrentAnalyses.begin();
Chris Lattneree0788d2002-09-25 21:59:11 +0000483 } else {
484 ++I;
Chris Lattnerc8e66542002-04-27 06:56:12 +0000485 }
Chris Lattneree0788d2002-09-25 21:59:11 +0000486 }
Chris Lattnerc8e66542002-04-27 06:56:12 +0000487 }
Chris Lattner67d25652002-01-30 23:20:39 +0000488
Chris Lattner73503172002-07-29 21:03:38 +0000489 // Add this pass to the currently available set...
Chris Lattner216edd42002-08-30 20:25:01 +0000490 if (const PassInfo *PI = P->getPassInfo()) {
Chris Lattner73503172002-07-29 21:03:38 +0000491 CurrentAnalyses[PI] = P;
Chris Lattnerac3e0602002-01-31 18:32:27 +0000492
Chris Lattner216edd42002-08-30 20:25:01 +0000493 // This pass is the current implementation of all of the interfaces it
494 // implements as well.
495 //
496 const std::vector<const PassInfo*> &II = PI->getInterfacesImplemented();
497 for (unsigned i = 0, e = II.size(); i != e; ++i)
498 CurrentAnalyses[II[i]] = P;
499 }
500
Chris Lattnerac3e0602002-01-31 18:32:27 +0000501 // For now assume that our results are never used...
502 LastUseOf[P] = P;
Chris Lattner67d25652002-01-30 23:20:39 +0000503 }
504
Chris Lattnerc8e66542002-04-27 06:56:12 +0000505 // For FunctionPass subclasses, we must be sure to batch the FunctionPass's
506 // together in a BatcherClass object so that all of the analyses are run
507 // together a function at a time.
Chris Lattner67d25652002-01-30 23:20:39 +0000508 //
Chris Lattnerc8e66542002-04-27 06:56:12 +0000509 void addPass(SubPassClass *MP, AnalysisUsage &AnUsage) {
Chris Lattner67d25652002-01-30 23:20:39 +0000510 if (Batcher == 0) // If we don't have a batcher yet, make one now.
511 Batcher = new BatcherClass(this);
Chris Lattner73503172002-07-29 21:03:38 +0000512 // The Batcher will queue the passes up
Chris Lattnerc8e66542002-04-27 06:56:12 +0000513 MP->addToPassManager(Batcher, AnUsage);
Chris Lattner67d25652002-01-30 23:20:39 +0000514 }
515
516 // closeBatcher - Terminate the batcher that is being worked on.
517 void closeBatcher() {
518 if (Batcher) {
519 Passes.push_back(Batcher);
520 Batcher = 0;
521 }
522 }
Chris Lattneree0788d2002-09-25 21:59:11 +0000523
524public:
525 // When an ImmutablePass is added, it gets added to the top level pass
526 // manager.
527 void addPass(ImmutablePass *IP, AnalysisUsage &AU) {
528 if (Parent) { // Make sure this request goes to the top level passmanager...
529 Parent->addPass(IP, AU);
530 return;
531 }
532
533 // Set the Resolver instance variable in the Pass so that it knows where to
534 // find this object...
535 //
536 setAnalysisResolver(IP, this);
537 ImmutablePasses.push_back(IP);
538
539 // Add this pass to the currently available set...
540 if (const PassInfo *PI = IP->getPassInfo()) {
541 CurrentAnalyses[PI] = IP;
542
543 // This pass is the current implementation of all of the interfaces it
544 // implements as well.
545 //
546 const std::vector<const PassInfo*> &II = PI->getInterfacesImplemented();
547 for (unsigned i = 0, e = II.size(); i != e; ++i)
548 CurrentAnalyses[II[i]] = IP;
549 }
550 }
Chris Lattner67d25652002-01-30 23:20:39 +0000551};
552
553
554
555//===----------------------------------------------------------------------===//
556// PassManagerTraits<BasicBlock> Specialization
557//
558// This pass manager is used to group together all of the BasicBlockPass's
559// into a single unit.
560//
561template<> struct PassManagerTraits<BasicBlock> : public BasicBlockPass {
562 // PassClass - The type of passes tracked by this PassManager
563 typedef BasicBlockPass PassClass;
564
565 // SubPassClass - The types of classes that should be collated together
566 // This is impossible to match, so BasicBlock instantiations of PassManagerT
567 // do not collate.
568 //
569 typedef PassManagerT<Module> SubPassClass;
570
571 // BatcherClass - The type to use for collation of subtypes... This class is
572 // never instantiated for the PassManager<BasicBlock>, but it must be an
573 // instance of PassClass to typecheck.
574 //
575 typedef PassClass BatcherClass;
576
577 // ParentClass - The type of the parent PassManager...
Chris Lattner4e8c4872002-03-23 22:51:58 +0000578 typedef PassManagerT<Function> ParentClass;
Chris Lattner67d25652002-01-30 23:20:39 +0000579
Chris Lattner2eaac392002-01-31 00:40:44 +0000580 // PMType - The type of the passmanager that subclasses this class
581 typedef PassManagerT<BasicBlock> PMType;
582
Chris Lattner67d25652002-01-30 23:20:39 +0000583 // runPass - Specify how the pass should be run on the UnitType
584 static bool runPass(PassClass *P, BasicBlock *M) {
585 // todo, init and finalize
Chris Lattner113f4f42002-06-25 16:13:24 +0000586 return P->runOnBasicBlock(*M);
Chris Lattner67d25652002-01-30 23:20:39 +0000587 }
588
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000589 // Dummy implementation of PassStarted/PassEnded
590 static void PassStarted(Pass *P) {}
591 static void PassEnded(Pass *P) {}
592
Chris Lattnerac3e0602002-01-31 18:32:27 +0000593 // getPMName() - Return the name of the unit the PassManager operates on for
594 // debugging.
595 const char *getPMName() const { return "BasicBlock"; }
Chris Lattner37104aa2002-04-29 14:57:45 +0000596 virtual const char *getPassName() const { return "BasicBlock Pass Manager"; }
Chris Lattnerac3e0602002-01-31 18:32:27 +0000597
Chris Lattner2eaac392002-01-31 00:40:44 +0000598 // Implement the BasicBlockPass interface...
Chris Lattner113f4f42002-06-25 16:13:24 +0000599 virtual bool doInitialization(Module &M);
Chris Lattnerbae3c672002-09-12 17:06:40 +0000600 virtual bool doInitialization(Function &F);
Chris Lattner113f4f42002-06-25 16:13:24 +0000601 virtual bool runOnBasicBlock(BasicBlock &BB);
Chris Lattnerbae3c672002-09-12 17:06:40 +0000602 virtual bool doFinalization(Function &F);
Chris Lattner113f4f42002-06-25 16:13:24 +0000603 virtual bool doFinalization(Module &M);
Chris Lattnercb429062002-04-30 18:50:17 +0000604
605 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
606 AU.setPreservesAll();
607 }
Chris Lattner67d25652002-01-30 23:20:39 +0000608};
609
610
611
612//===----------------------------------------------------------------------===//
Chris Lattner4e8c4872002-03-23 22:51:58 +0000613// PassManagerTraits<Function> Specialization
Chris Lattner67d25652002-01-30 23:20:39 +0000614//
Chris Lattnerc8e66542002-04-27 06:56:12 +0000615// This pass manager is used to group together all of the FunctionPass's
Chris Lattner67d25652002-01-30 23:20:39 +0000616// into a single unit.
617//
Chris Lattnerc8e66542002-04-27 06:56:12 +0000618template<> struct PassManagerTraits<Function> : public FunctionPass {
Chris Lattner67d25652002-01-30 23:20:39 +0000619 // PassClass - The type of passes tracked by this PassManager
Chris Lattnerc8e66542002-04-27 06:56:12 +0000620 typedef FunctionPass PassClass;
Chris Lattner67d25652002-01-30 23:20:39 +0000621
622 // SubPassClass - The types of classes that should be collated together
623 typedef BasicBlockPass SubPassClass;
624
625 // BatcherClass - The type to use for collation of subtypes...
626 typedef PassManagerT<BasicBlock> BatcherClass;
627
628 // ParentClass - The type of the parent PassManager...
629 typedef PassManagerT<Module> ParentClass;
630
631 // PMType - The type of the passmanager that subclasses this class
Chris Lattner4e8c4872002-03-23 22:51:58 +0000632 typedef PassManagerT<Function> PMType;
Chris Lattner67d25652002-01-30 23:20:39 +0000633
634 // runPass - Specify how the pass should be run on the UnitType
Chris Lattnerc8e66542002-04-27 06:56:12 +0000635 static bool runPass(PassClass *P, Function *F) {
Chris Lattner113f4f42002-06-25 16:13:24 +0000636 return P->runOnFunction(*F);
Chris Lattner67d25652002-01-30 23:20:39 +0000637 }
638
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000639 // Dummy implementation of PassStarted/PassEnded
640 static void PassStarted(Pass *P) {}
641 static void PassEnded(Pass *P) {}
642
Chris Lattnerac3e0602002-01-31 18:32:27 +0000643 // getPMName() - Return the name of the unit the PassManager operates on for
644 // debugging.
Chris Lattner4e8c4872002-03-23 22:51:58 +0000645 const char *getPMName() const { return "Function"; }
Chris Lattner37104aa2002-04-29 14:57:45 +0000646 virtual const char *getPassName() const { return "Function Pass Manager"; }
Chris Lattnerac3e0602002-01-31 18:32:27 +0000647
Chris Lattnerc8e66542002-04-27 06:56:12 +0000648 // Implement the FunctionPass interface...
Chris Lattner113f4f42002-06-25 16:13:24 +0000649 virtual bool doInitialization(Module &M);
650 virtual bool runOnFunction(Function &F);
651 virtual bool doFinalization(Module &M);
Chris Lattnercb429062002-04-30 18:50:17 +0000652
653 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
654 AU.setPreservesAll();
655 }
Chris Lattner67d25652002-01-30 23:20:39 +0000656};
657
658
659
660//===----------------------------------------------------------------------===//
661// PassManagerTraits<Module> Specialization
662//
663// This is the top level PassManager implementation that holds generic passes.
664//
665template<> struct PassManagerTraits<Module> : public Pass {
666 // PassClass - The type of passes tracked by this PassManager
667 typedef Pass PassClass;
668
669 // SubPassClass - The types of classes that should be collated together
Chris Lattnerc8e66542002-04-27 06:56:12 +0000670 typedef FunctionPass SubPassClass;
Chris Lattner67d25652002-01-30 23:20:39 +0000671
672 // BatcherClass - The type to use for collation of subtypes...
Chris Lattner4e8c4872002-03-23 22:51:58 +0000673 typedef PassManagerT<Function> BatcherClass;
Chris Lattner67d25652002-01-30 23:20:39 +0000674
675 // ParentClass - The type of the parent PassManager...
Chris Lattnerac3e0602002-01-31 18:32:27 +0000676 typedef AnalysisResolver ParentClass;
Chris Lattner67d25652002-01-30 23:20:39 +0000677
678 // runPass - Specify how the pass should be run on the UnitType
Chris Lattner113f4f42002-06-25 16:13:24 +0000679 static bool runPass(PassClass *P, Module *M) { return P->run(*M); }
Chris Lattner67d25652002-01-30 23:20:39 +0000680
Chris Lattnerac3e0602002-01-31 18:32:27 +0000681 // getPMName() - Return the name of the unit the PassManager operates on for
682 // debugging.
683 const char *getPMName() const { return "Module"; }
Chris Lattner37104aa2002-04-29 14:57:45 +0000684 virtual const char *getPassName() const { return "Module Pass Manager"; }
Chris Lattnerac3e0602002-01-31 18:32:27 +0000685
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000686 // TimingInformation - This data member maintains timing information for each
687 // of the passes that is executed.
688 //
689 TimingInfo *TimeInfo;
690
691 // PassStarted/Ended - This callback is notified any time a pass is started
692 // or stops. This is used to collect timing information about the different
693 // passes being executed.
694 //
695 void PassStarted(Pass *P) {
696 if (TimeInfo) TimeInfo->passStarted(P);
Chris Lattner67d25652002-01-30 23:20:39 +0000697 }
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000698 void PassEnded(Pass *P) {
699 if (TimeInfo) TimeInfo->passEnded(P);
700 }
701
702 // run - Implement the PassManager interface...
Chris Lattner113f4f42002-06-25 16:13:24 +0000703 bool run(Module &M) {
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000704 TimeInfo = TimingInfo::create();
Chris Lattner113f4f42002-06-25 16:13:24 +0000705 bool Result = ((PassManagerT<Module>*)this)->runOnUnit(&M);
Chris Lattnere2eb99e2002-04-29 04:04:29 +0000706 if (TimeInfo) {
707 delete TimeInfo;
708 TimeInfo = 0;
709 }
710 return Result;
711 }
712
713 // PassManagerTraits constructor - Create a timing info object if the user
714 // specified timing info should be collected on the command line.
715 //
716 PassManagerTraits() : TimeInfo(0) {}
Chris Lattner67d25652002-01-30 23:20:39 +0000717};
718
719
720
721//===----------------------------------------------------------------------===//
722// PassManagerTraits Method Implementations
723//
724
725// PassManagerTraits<BasicBlock> Implementations
726//
Chris Lattner113f4f42002-06-25 16:13:24 +0000727inline bool PassManagerTraits<BasicBlock>::doInitialization(Module &M) {
Chris Lattner2eaac392002-01-31 00:40:44 +0000728 bool Changed = false;
729 for (unsigned i = 0, e = ((PMType*)this)->Passes.size(); i != e; ++i)
730 ((PMType*)this)->Passes[i]->doInitialization(M);
731 return Changed;
732}
733
Chris Lattnerbae3c672002-09-12 17:06:40 +0000734inline bool PassManagerTraits<BasicBlock>::doInitialization(Function &F) {
735 bool Changed = false;
736 for (unsigned i = 0, e = ((PMType*)this)->Passes.size(); i != e; ++i)
737 ((PMType*)this)->Passes[i]->doInitialization(F);
738 return Changed;
739}
740
Chris Lattner113f4f42002-06-25 16:13:24 +0000741inline bool PassManagerTraits<BasicBlock>::runOnBasicBlock(BasicBlock &BB) {
742 return ((PMType*)this)->runOnUnit(&BB);
Chris Lattner2eaac392002-01-31 00:40:44 +0000743}
744
Chris Lattnerbae3c672002-09-12 17:06:40 +0000745inline bool PassManagerTraits<BasicBlock>::doFinalization(Function &F) {
746 bool Changed = false;
747 for (unsigned i = 0, e = ((PMType*)this)->Passes.size(); i != e; ++i)
748 ((PMType*)this)->Passes[i]->doFinalization(F);
749 return Changed;
750}
751
Chris Lattner113f4f42002-06-25 16:13:24 +0000752inline bool PassManagerTraits<BasicBlock>::doFinalization(Module &M) {
Chris Lattner2eaac392002-01-31 00:40:44 +0000753 bool Changed = false;
754 for (unsigned i = 0, e = ((PMType*)this)->Passes.size(); i != e; ++i)
755 ((PMType*)this)->Passes[i]->doFinalization(M);
756 return Changed;
Chris Lattner67d25652002-01-30 23:20:39 +0000757}
758
759
Chris Lattner4e8c4872002-03-23 22:51:58 +0000760// PassManagerTraits<Function> Implementations
Chris Lattner67d25652002-01-30 23:20:39 +0000761//
Chris Lattner113f4f42002-06-25 16:13:24 +0000762inline bool PassManagerTraits<Function>::doInitialization(Module &M) {
Chris Lattner67d25652002-01-30 23:20:39 +0000763 bool Changed = false;
764 for (unsigned i = 0, e = ((PMType*)this)->Passes.size(); i != e; ++i)
765 ((PMType*)this)->Passes[i]->doInitialization(M);
766 return Changed;
767}
768
Chris Lattner113f4f42002-06-25 16:13:24 +0000769inline bool PassManagerTraits<Function>::runOnFunction(Function &F) {
770 return ((PMType*)this)->runOnUnit(&F);
Chris Lattner67d25652002-01-30 23:20:39 +0000771}
772
Chris Lattner113f4f42002-06-25 16:13:24 +0000773inline bool PassManagerTraits<Function>::doFinalization(Module &M) {
Chris Lattner67d25652002-01-30 23:20:39 +0000774 bool Changed = false;
775 for (unsigned i = 0, e = ((PMType*)this)->Passes.size(); i != e; ++i)
776 ((PMType*)this)->Passes[i]->doFinalization(M);
777 return Changed;
778}
779
780#endif