1 //===- RegionPass.cpp - Region Pass and Region Pass Manager ---------------===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements RegionPass and RGPassManager. All region optimization
11 // and transformation passes are derived from RegionPass. RGPassManager is
12 // responsible for managing RegionPasses.
13 // most of these codes are COPY from LoopPass.cpp
14 //
15 //===----------------------------------------------------------------------===//
16 #include "llvm/Analysis/RegionPass.h"
17 #include "llvm/Analysis/RegionIterator.h"
18 #include "llvm/Support/Debug.h"
19 #include "llvm/Support/Timer.h"
20 #include "llvm/Support/raw_ostream.h"
21 using namespace llvm;
22
23 #define DEBUG_TYPE "regionpassmgr"
24
25 //===----------------------------------------------------------------------===//
26 // RGPassManager
27 //
28
29 char RGPassManager::ID = 0;
30
RGPassManager()31 RGPassManager::RGPassManager()
32 : FunctionPass(ID), PMDataManager() {
33 skipThisRegion = false;
34 redoThisRegion = false;
35 RI = nullptr;
36 CurrentRegion = nullptr;
37 }
38
39 // Recurse through all subregions and all regions into RQ.
addRegionIntoQueue(Region & R,std::deque<Region * > & RQ)40 static void addRegionIntoQueue(Region &R, std::deque<Region *> &RQ) {
41 RQ.push_back(&R);
42 for (const auto &E : R)
43 addRegionIntoQueue(*E, RQ);
44 }
45
46 /// Pass Manager itself does not invalidate any analysis info.
getAnalysisUsage(AnalysisUsage & Info) const47 void RGPassManager::getAnalysisUsage(AnalysisUsage &Info) const {
48 Info.addRequired<RegionInfoPass>();
49 Info.setPreservesAll();
50 }
51
52 /// run - Execute all of the passes scheduled for execution. Keep track of
53 /// whether any of the passes modifies the function, and if so, return true.
runOnFunction(Function & F)54 bool RGPassManager::runOnFunction(Function &F) {
55 RI = &getAnalysis<RegionInfoPass>().getRegionInfo();
56 bool Changed = false;
57
58 // Collect inherited analysis from Module level pass manager.
59 populateInheritedAnalysis(TPM->activeStack);
60
61 addRegionIntoQueue(*RI->getTopLevelRegion(), RQ);
62
63 if (RQ.empty()) // No regions, skip calling finalizers
64 return false;
65
66 // Initialization
67 for (std::deque<Region *>::const_iterator I = RQ.begin(), E = RQ.end();
68 I != E; ++I) {
69 Region *R = *I;
70 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
71 RegionPass *RP = (RegionPass *)getContainedPass(Index);
72 Changed |= RP->doInitialization(R, *this);
73 }
74 }
75
76 // Walk Regions
77 while (!RQ.empty()) {
78
79 CurrentRegion = RQ.back();
80 skipThisRegion = false;
81 redoThisRegion = false;
82
83 // Run all passes on the current Region.
84 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
85 RegionPass *P = (RegionPass*)getContainedPass(Index);
86
87 if (isPassDebuggingExecutionsOrMore()) {
88 dumpPassInfo(P, EXECUTION_MSG, ON_REGION_MSG,
89 CurrentRegion->getNameStr());
90 dumpRequiredSet(P);
91 }
92
93 initializeAnalysisImpl(P);
94
95 {
96 PassManagerPrettyStackEntry X(P, *CurrentRegion->getEntry());
97
98 TimeRegion PassTimer(getPassTimer(P));
99 Changed |= P->runOnRegion(CurrentRegion, *this);
100 }
101
102 if (isPassDebuggingExecutionsOrMore()) {
103 if (Changed)
104 dumpPassInfo(P, MODIFICATION_MSG, ON_REGION_MSG,
105 skipThisRegion ? "<deleted>" :
106 CurrentRegion->getNameStr());
107 dumpPreservedSet(P);
108 }
109
110 if (!skipThisRegion) {
111 // Manually check that this region is still healthy. This is done
112 // instead of relying on RegionInfo::verifyRegion since RegionInfo
113 // is a function pass and it's really expensive to verify every
114 // Region in the function every time. That level of checking can be
115 // enabled with the -verify-region-info option.
116 {
117 TimeRegion PassTimer(getPassTimer(P));
118 CurrentRegion->verifyRegion();
119 }
120
121 // Then call the regular verifyAnalysis functions.
122 verifyPreservedAnalysis(P);
123 }
124
125 removeNotPreservedAnalysis(P);
126 recordAvailableAnalysis(P);
127 removeDeadPasses(P,
128 (!isPassDebuggingExecutionsOrMore() || skipThisRegion) ?
129 "<deleted>" : CurrentRegion->getNameStr(),
130 ON_REGION_MSG);
131
132 if (skipThisRegion)
133 // Do not run other passes on this region.
134 break;
135 }
136
137 // If the region was deleted, release all the region passes. This frees up
138 // some memory, and avoids trouble with the pass manager trying to call
139 // verifyAnalysis on them.
140 if (skipThisRegion)
141 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
142 Pass *P = getContainedPass(Index);
143 freePass(P, "<deleted>", ON_REGION_MSG);
144 }
145
146 // Pop the region from queue after running all passes.
147 RQ.pop_back();
148
149 if (redoThisRegion)
150 RQ.push_back(CurrentRegion);
151
152 // Free all region nodes created in region passes.
153 RI->clearNodeCache();
154 }
155
156 // Finalization
157 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
158 RegionPass *P = (RegionPass*)getContainedPass(Index);
159 Changed |= P->doFinalization();
160 }
161
162 // Print the region tree after all pass.
163 DEBUG(
164 dbgs() << "\nRegion tree of function " << F.getName()
165 << " after all region Pass:\n";
166 RI->dump();
167 dbgs() << "\n";
168 );
169
170 return Changed;
171 }
172
173 /// Print passes managed by this manager
dumpPassStructure(unsigned Offset)174 void RGPassManager::dumpPassStructure(unsigned Offset) {
175 errs().indent(Offset*2) << "Region Pass Manager\n";
176 for (unsigned Index = 0; Index < getNumContainedPasses(); ++Index) {
177 Pass *P = getContainedPass(Index);
178 P->dumpPassStructure(Offset + 1);
179 dumpLastUses(P, Offset+1);
180 }
181 }
182
183 namespace {
184 //===----------------------------------------------------------------------===//
185 // PrintRegionPass
186 class PrintRegionPass : public RegionPass {
187 private:
188 std::string Banner;
189 raw_ostream &Out; // raw_ostream to print on.
190
191 public:
192 static char ID;
PrintRegionPass(const std::string & B,raw_ostream & o)193 PrintRegionPass(const std::string &B, raw_ostream &o)
194 : RegionPass(ID), Banner(B), Out(o) {}
195
getAnalysisUsage(AnalysisUsage & AU) const196 void getAnalysisUsage(AnalysisUsage &AU) const override {
197 AU.setPreservesAll();
198 }
199
runOnRegion(Region * R,RGPassManager & RGM)200 bool runOnRegion(Region *R, RGPassManager &RGM) override {
201 Out << Banner;
202 for (const auto *BB : R->blocks()) {
203 if (BB)
204 BB->print(Out);
205 else
206 Out << "Printing <null> Block";
207 }
208
209 return false;
210 }
211 };
212
213 char PrintRegionPass::ID = 0;
214 } //end anonymous namespace
215
216 //===----------------------------------------------------------------------===//
217 // RegionPass
218
219 // Check if this pass is suitable for the current RGPassManager, if
220 // available. This pass P is not suitable for a RGPassManager if P
221 // is not preserving higher level analysis info used by other
222 // RGPassManager passes. In such case, pop RGPassManager from the
223 // stack. This will force assignPassManager() to create new
224 // LPPassManger as expected.
preparePassManager(PMStack & PMS)225 void RegionPass::preparePassManager(PMStack &PMS) {
226
227 // Find RGPassManager
228 while (!PMS.empty() &&
229 PMS.top()->getPassManagerType() > PMT_RegionPassManager)
230 PMS.pop();
231
232
233 // If this pass is destroying high level information that is used
234 // by other passes that are managed by LPM then do not insert
235 // this pass in current LPM. Use new RGPassManager.
236 if (PMS.top()->getPassManagerType() == PMT_RegionPassManager &&
237 !PMS.top()->preserveHigherLevelAnalysis(this))
238 PMS.pop();
239 }
240
241 /// Assign pass manager to manage this pass.
assignPassManager(PMStack & PMS,PassManagerType PreferredType)242 void RegionPass::assignPassManager(PMStack &PMS,
243 PassManagerType PreferredType) {
244 // Find RGPassManager
245 while (!PMS.empty() &&
246 PMS.top()->getPassManagerType() > PMT_RegionPassManager)
247 PMS.pop();
248
249 RGPassManager *RGPM;
250
251 // Create new Region Pass Manager if it does not exist.
252 if (PMS.top()->getPassManagerType() == PMT_RegionPassManager)
253 RGPM = (RGPassManager*)PMS.top();
254 else {
255
256 assert (!PMS.empty() && "Unable to create Region Pass Manager");
257 PMDataManager *PMD = PMS.top();
258
259 // [1] Create new Region Pass Manager
260 RGPM = new RGPassManager();
261 RGPM->populateInheritedAnalysis(PMS);
262
263 // [2] Set up new manager's top level manager
264 PMTopLevelManager *TPM = PMD->getTopLevelManager();
265 TPM->addIndirectPassManager(RGPM);
266
267 // [3] Assign manager to manage this new manager. This may create
268 // and push new managers into PMS
269 TPM->schedulePass(RGPM);
270
271 // [4] Push new manager into PMS
272 PMS.push(RGPM);
273 }
274
275 RGPM->add(this);
276 }
277
278 /// Get the printer pass
createPrinterPass(raw_ostream & O,const std::string & Banner) const279 Pass *RegionPass::createPrinterPass(raw_ostream &O,
280 const std::string &Banner) const {
281 return new PrintRegionPass(Banner, O);
282 }
283