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Daniel Dunbar55e354a2009-08-08 18:44:18 +00001//===- ProfileEstimatorPass.cpp - LLVM Pass to estimate profile info ------===//
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 a concrete implementation of profiling information that
11// estimates the profiling information in a very crude and unimaginative way.
12//
13//===----------------------------------------------------------------------===//
14#define DEBUG_TYPE "profile-estimator"
15#include "llvm/Pass.h"
16#include "llvm/Analysis/Passes.h"
17#include "llvm/Analysis/ProfileInfo.h"
18#include "llvm/Analysis/LoopInfo.h"
19#include "llvm/Support/CommandLine.h"
20#include "llvm/Support/Debug.h"
21#include "llvm/Support/raw_ostream.h"
Andreas Neustifterff271e12009-08-26 15:13:44 +000022#include "llvm/Support/Format.h"
Daniel Dunbar55e354a2009-08-08 18:44:18 +000023using namespace llvm;
24
25static cl::opt<double>
Andreas Neustifterff271e12009-08-26 15:13:44 +000026LoopWeight(
Daniel Dunbar55e354a2009-08-08 18:44:18 +000027 "profile-estimator-loop-weight", cl::init(10),
28 cl::value_desc("loop-weight"),
29 cl::desc("Number of loop executions used for profile-estimator")
30);
31
32namespace {
Nick Lewycky6726b6d2009-10-25 06:33:48 +000033 class ProfileEstimatorPass : public FunctionPass, public ProfileInfo {
Daniel Dunbar55e354a2009-08-08 18:44:18 +000034 double ExecCount;
35 LoopInfo *LI;
Andreas Neustifter8a58c182009-09-11 08:39:33 +000036 std::set<BasicBlock*> BBToVisit;
Daniel Dunbar55e354a2009-08-08 18:44:18 +000037 std::map<Loop*,double> LoopExitWeights;
Andreas Neustifter1640f7e2009-12-03 12:41:14 +000038 std::map<Edge,double> MinimalWeight;
Daniel Dunbar55e354a2009-08-08 18:44:18 +000039 public:
40 static char ID; // Class identification, replacement for typeinfo
41 explicit ProfileEstimatorPass(const double execcount = 0)
Owen Anderson90c579d2010-08-06 18:33:48 +000042 : FunctionPass(ID), ExecCount(execcount) {
Andreas Neustifterff271e12009-08-26 15:13:44 +000043 if (execcount == 0) ExecCount = LoopWeight;
Daniel Dunbar55e354a2009-08-08 18:44:18 +000044 }
45
46 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
47 AU.setPreservesAll();
48 AU.addRequired<LoopInfo>();
49 }
50
51 virtual const char *getPassName() const {
52 return "Profiling information estimator";
53 }
54
55 /// run - Estimate the profile information from the specified file.
56 virtual bool runOnFunction(Function &F);
57
Chris Lattner1bc76d42010-01-20 20:09:02 +000058 /// getAdjustedAnalysisPointer - This method is used when a pass implements
59 /// an analysis interface through multiple inheritance. If needed, it
60 /// should override this to adjust the this pointer as needed for the
61 /// specified pass info.
Owen Anderson90c579d2010-08-06 18:33:48 +000062 virtual void *getAdjustedAnalysisPointer(AnalysisID PI) {
63 if (PI == &ProfileInfo::ID)
Chris Lattner1bc76d42010-01-20 20:09:02 +000064 return (ProfileInfo*)this;
65 return this;
66 }
67
Andreas Neustifter8a58c182009-09-11 08:39:33 +000068 virtual void recurseBasicBlock(BasicBlock *BB);
Andreas Neustifterff271e12009-08-26 15:13:44 +000069
70 void inline printEdgeWeight(Edge);
Daniel Dunbar55e354a2009-08-08 18:44:18 +000071 };
72} // End of anonymous namespace
73
74char ProfileEstimatorPass::ID = 0;
Owen Anderson2ab36d32010-10-12 19:48:12 +000075INITIALIZE_AG_PASS_BEGIN(ProfileEstimatorPass, ProfileInfo, "profile-estimator",
76 "Estimate profiling information", false, true, false)
77INITIALIZE_PASS_DEPENDENCY(LoopInfo)
78INITIALIZE_AG_PASS_END(ProfileEstimatorPass, ProfileInfo, "profile-estimator",
Owen Andersonce665bd2010-10-07 22:25:06 +000079 "Estimate profiling information", false, true, false)
Daniel Dunbar55e354a2009-08-08 18:44:18 +000080
81namespace llvm {
Owen Anderson90c579d2010-08-06 18:33:48 +000082 char &ProfileEstimatorPassID = ProfileEstimatorPass::ID;
Daniel Dunbar55e354a2009-08-08 18:44:18 +000083
84 FunctionPass *createProfileEstimatorPass() {
85 return new ProfileEstimatorPass();
86 }
87
Andreas Neustifterff271e12009-08-26 15:13:44 +000088 /// createProfileEstimatorPass - This function returns a Pass that estimates
89 /// profiling information using the given loop execution count.
Daniel Dunbar55e354a2009-08-08 18:44:18 +000090 Pass *createProfileEstimatorPass(const unsigned execcount) {
91 return new ProfileEstimatorPass(execcount);
92 }
93}
94
95static double ignoreMissing(double w) {
96 if (w == ProfileInfo::MissingValue) return 0;
97 return w;
98}
99
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000100static void inline printEdgeError(ProfileInfo::Edge e, const char *M) {
David Greene244d7572009-12-23 21:27:29 +0000101 DEBUG(dbgs() << "-- Edge " << e << " is not calculated, " << M << "\n");
Andreas Neustifterff271e12009-08-26 15:13:44 +0000102}
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000103
Andreas Neustifterff271e12009-08-26 15:13:44 +0000104void inline ProfileEstimatorPass::printEdgeWeight(Edge E) {
David Greene244d7572009-12-23 21:27:29 +0000105 DEBUG(dbgs() << "-- Weight of Edge " << E << ":"
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000106 << format("%20.20g", getEdgeWeight(E)) << "\n");
Andreas Neustifterff271e12009-08-26 15:13:44 +0000107}
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000108
109// recurseBasicBlock() - This calculates the ProfileInfo estimation for a
110// single block and then recurses into the successors.
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000111// The algorithm preserves the flow condition, meaning that the sum of the
112// weight of the incoming edges must be equal the block weight which must in
113// turn be equal to the sume of the weights of the outgoing edges.
114// Since the flow of an block is deterimined from the current state of the
115// flow, once an edge has a flow assigned this flow is never changed again,
116// otherwise it would be possible to violate the flow condition in another
117// block.
118void ProfileEstimatorPass::recurseBasicBlock(BasicBlock *BB) {
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000119
Andreas Neustifterff271e12009-08-26 15:13:44 +0000120 // Break the recursion if this BasicBlock was already visited.
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000121 if (BBToVisit.find(BB) == BBToVisit.end()) return;
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000122
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000123 // Read the LoopInfo for this block.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000124 bool BBisHeader = LI->isLoopHeader(BB);
125 Loop* BBLoop = LI->getLoopFor(BB);
126
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000127 // To get the block weight, read all incoming edges.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000128 double BBWeight = 0;
129 std::set<BasicBlock*> ProcessedPreds;
130 for ( pred_iterator bbi = pred_begin(BB), bbe = pred_end(BB);
131 bbi != bbe; ++bbi ) {
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000132 // If this block was not considered already, add weight.
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000133 Edge edge = getEdge(*bbi,BB);
134 double w = getEdgeWeight(edge);
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000135 if (ProcessedPreds.insert(*bbi).second) {
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000136 BBWeight += ignoreMissing(w);
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000137 }
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000138 // If this block is a loop header and the predecessor is contained in this
139 // loop, thus the edge is a backedge, continue and do not check if the
140 // value is valid.
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000141 if (BBisHeader && BBLoop->contains(*bbi)) {
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000142 printEdgeError(edge, "but is backedge, continueing");
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000143 continue;
144 }
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000145 // If the edges value is missing (and this is no loop header, and this is
146 // no backedge) return, this block is currently non estimatable.
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000147 if (w == MissingValue) {
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000148 printEdgeError(edge, "returning");
149 return;
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000150 }
151 }
152 if (getExecutionCount(BB) != MissingValue) {
153 BBWeight = getExecutionCount(BB);
154 }
155
Andreas Neustifterff271e12009-08-26 15:13:44 +0000156 // Fetch all necessary information for current block.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000157 SmallVector<Edge, 8> ExitEdges;
158 SmallVector<Edge, 8> Edges;
159 if (BBLoop) {
160 BBLoop->getExitEdges(ExitEdges);
161 }
162
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000163 // If this is a loop header, consider the following:
164 // Exactly the flow that is entering this block, must exit this block too. So
165 // do the following:
166 // *) get all the exit edges, read the flow that is already leaving this
167 // loop, remember the edges that do not have any flow on them right now.
168 // (The edges that have already flow on them are most likely exiting edges of
169 // other loops, do not touch those flows because the previously caclulated
170 // loopheaders would not be exact anymore.)
171 // *) In case there is not a single exiting edge left, create one at the loop
172 // latch to prevent the flow from building up in the loop.
173 // *) Take the flow that is not leaving the loop already and distribute it on
174 // the remaining exiting edges.
175 // (This ensures that all flow that enters the loop also leaves it.)
176 // *) Increase the flow into the loop by increasing the weight of this block.
177 // There is at least one incoming backedge that will bring us this flow later
178 // on. (So that the flow condition in this node is valid again.)
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000179 if (BBisHeader) {
180 double incoming = BBWeight;
Andreas Neustifterff271e12009-08-26 15:13:44 +0000181 // Subtract the flow leaving the loop.
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000182 std::set<Edge> ProcessedExits;
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000183 for (SmallVector<Edge, 8>::iterator ei = ExitEdges.begin(),
184 ee = ExitEdges.end(); ei != ee; ++ei) {
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000185 if (ProcessedExits.insert(*ei).second) {
186 double w = getEdgeWeight(*ei);
187 if (w == MissingValue) {
188 Edges.push_back(*ei);
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000189 // Check if there is a necessary minimal weight, if yes, subtract it
190 // from weight.
191 if (MinimalWeight.find(*ei) != MinimalWeight.end()) {
192 incoming -= MinimalWeight[*ei];
David Greene244d7572009-12-23 21:27:29 +0000193 DEBUG(dbgs() << "Reserving " << format("%.20g",MinimalWeight[*ei]) << " at " << (*ei) << "\n");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000194 }
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000195 } else {
196 incoming -= w;
197 }
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000198 }
199 }
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000200 // If no exit edges, create one:
201 if (Edges.size() == 0) {
202 BasicBlock *Latch = BBLoop->getLoopLatch();
203 if (Latch) {
204 Edge edge = getEdge(Latch,0);
205 EdgeInformation[BB->getParent()][edge] = BBWeight;
206 printEdgeWeight(edge);
207 edge = getEdge(Latch, BB);
208 EdgeInformation[BB->getParent()][edge] = BBWeight * ExecCount;
209 printEdgeWeight(edge);
210 }
211 }
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000212
213 // Distribute remaining weight to the exting edges. To prevent fractions
214 // from building up and provoking precision problems the weight which is to
215 // be distributed is split and the rounded, the last edge gets a somewhat
216 // bigger value, but we are close enough for an estimation.
217 double fraction = floor(incoming/Edges.size());
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000218 for (SmallVector<Edge, 8>::iterator ei = Edges.begin(), ee = Edges.end();
219 ei != ee; ++ei) {
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000220 double w = 0;
221 if (ei != (ee-1)) {
222 w = fraction;
223 incoming -= fraction;
224 } else {
225 w = incoming;
226 }
227 EdgeInformation[BB->getParent()][*ei] += w;
228 // Read necessary minimal weight.
229 if (MinimalWeight.find(*ei) != MinimalWeight.end()) {
230 EdgeInformation[BB->getParent()][*ei] += MinimalWeight[*ei];
David Greene244d7572009-12-23 21:27:29 +0000231 DEBUG(dbgs() << "Additionally " << format("%.20g",MinimalWeight[*ei]) << " at " << (*ei) << "\n");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000232 }
Andreas Neustifterff271e12009-08-26 15:13:44 +0000233 printEdgeWeight(*ei);
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000234
235 // Add minimal weight to paths to all exit edges, this is used to ensure
236 // that enough flow is reaching this edges.
237 Path p;
238 const BasicBlock *Dest = GetPath(BB, (*ei).first, p, GetPathToDest);
239 while (Dest != BB) {
240 const BasicBlock *Parent = p.find(Dest)->second;
241 Edge e = getEdge(Parent, Dest);
242 if (MinimalWeight.find(e) == MinimalWeight.end()) {
243 MinimalWeight[e] = 0;
244 }
245 MinimalWeight[e] += w;
David Greene244d7572009-12-23 21:27:29 +0000246 DEBUG(dbgs() << "Minimal Weight for " << e << ": " << format("%.20g",MinimalWeight[e]) << "\n");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000247 Dest = Parent;
248 }
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000249 }
Andreas Neustifterff271e12009-08-26 15:13:44 +0000250 // Increase flow into the loop.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000251 BBWeight *= (ExecCount+1);
252 }
253
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000254 BlockInformation[BB->getParent()][BB] = BBWeight;
255 // Up until now we considered only the loop exiting edges, now we have a
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000256 // definite block weight and must distribute this onto the outgoing edges.
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000257 // Since there may be already flow attached to some of the edges, read this
258 // flow first and remember the edges that have still now flow attached.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000259 Edges.clear();
260 std::set<BasicBlock*> ProcessedSuccs;
Andreas Neustifterff271e12009-08-26 15:13:44 +0000261
Andreas Neustiftere885af92009-09-01 10:06:05 +0000262 succ_iterator bbi = succ_begin(BB), bbe = succ_end(BB);
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000263 // Also check for (BB,0) edges that may already contain some flow. (But only
264 // in case there are no successors.)
Andreas Neustiftere885af92009-09-01 10:06:05 +0000265 if (bbi == bbe) {
266 Edge edge = getEdge(BB,0);
267 EdgeInformation[BB->getParent()][edge] = BBWeight;
268 printEdgeWeight(edge);
269 }
Andreas Neustifter19531d12009-09-01 19:01:59 +0000270 for ( ; bbi != bbe; ++bbi ) {
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000271 if (ProcessedSuccs.insert(*bbi).second) {
272 Edge edge = getEdge(BB,*bbi);
273 double w = getEdgeWeight(edge);
274 if (w != MissingValue) {
275 BBWeight -= getEdgeWeight(edge);
276 } else {
277 Edges.push_back(edge);
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000278 // If minimal weight is necessary, reserve weight by subtracting weight
279 // from block weight, this is readded later on.
280 if (MinimalWeight.find(edge) != MinimalWeight.end()) {
281 BBWeight -= MinimalWeight[edge];
David Greene244d7572009-12-23 21:27:29 +0000282 DEBUG(dbgs() << "Reserving " << format("%.20g",MinimalWeight[edge]) << " at " << edge << "\n");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000283 }
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000284 }
285 }
286 }
287
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000288 double fraction = floor(BBWeight/Edges.size());
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000289 // Finally we know what flow is still not leaving the block, distribute this
290 // flow onto the empty edges.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000291 for (SmallVector<Edge, 8>::iterator ei = Edges.begin(), ee = Edges.end();
292 ei != ee; ++ei) {
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000293 if (ei != (ee-1)) {
294 EdgeInformation[BB->getParent()][*ei] += fraction;
295 BBWeight -= fraction;
296 } else {
297 EdgeInformation[BB->getParent()][*ei] += BBWeight;
298 }
299 // Readd minial necessary weight.
300 if (MinimalWeight.find(*ei) != MinimalWeight.end()) {
301 EdgeInformation[BB->getParent()][*ei] += MinimalWeight[*ei];
David Greene244d7572009-12-23 21:27:29 +0000302 DEBUG(dbgs() << "Additionally " << format("%.20g",MinimalWeight[*ei]) << " at " << (*ei) << "\n");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000303 }
Andreas Neustifterff271e12009-08-26 15:13:44 +0000304 printEdgeWeight(*ei);
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000305 }
306
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000307 // This block is visited, mark this before the recursion.
308 BBToVisit.erase(BB);
309
310 // Recurse into successors.
311 for (succ_iterator bbi = succ_begin(BB), bbe = succ_end(BB);
312 bbi != bbe; ++bbi) {
313 recurseBasicBlock(*bbi);
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000314 }
315}
316
317bool ProfileEstimatorPass::runOnFunction(Function &F) {
318 if (F.isDeclaration()) return false;
319
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000320 // Fetch LoopInfo and clear ProfileInfo for this function.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000321 LI = &getAnalysis<LoopInfo>();
322 FunctionInformation.erase(&F);
323 BlockInformation[&F].clear();
324 EdgeInformation[&F].clear();
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000325
326 // Mark all blocks as to visit.
327 for (Function::iterator bi = F.begin(), be = F.end(); bi != be; ++bi)
328 BBToVisit.insert(bi);
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000329
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000330 // Clear Minimal Edges.
331 MinimalWeight.clear();
332
David Greene244d7572009-12-23 21:27:29 +0000333 DEBUG(dbgs() << "Working on function " << F.getNameStr() << "\n");
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000334
Andreas Neustifterff271e12009-08-26 15:13:44 +0000335 // Since the entry block is the first one and has no predecessors, the edge
336 // (0,entry) is inserted with the starting weight of 1.
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000337 BasicBlock *entry = &F.getEntryBlock();
Benjamin Kramer88a91b52009-12-03 13:23:03 +0000338 BlockInformation[&F][entry] = pow(2.0, 32.0);
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000339 Edge edge = getEdge(0,entry);
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000340 EdgeInformation[&F][edge] = BlockInformation[&F][entry];
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000341 printEdgeWeight(edge);
342
343 // Since recurseBasicBlock() maybe returns with a block which was not fully
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000344 // estimated, use recurseBasicBlock() until everything is calculated.
345 bool cleanup = false;
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000346 recurseBasicBlock(entry);
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000347 while (BBToVisit.size() > 0 && !cleanup) {
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000348 // Remember number of open blocks, this is later used to check if progress
349 // was made.
350 unsigned size = BBToVisit.size();
351
352 // Try to calculate all blocks in turn.
353 for (std::set<BasicBlock*>::iterator bi = BBToVisit.begin(),
354 be = BBToVisit.end(); bi != be; ++bi) {
355 recurseBasicBlock(*bi);
356 // If at least one block was finished, break because iterator may be
357 // invalid.
358 if (BBToVisit.size() < size) break;
359 }
360
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000361 // If there was not a single block resolved, make some assumptions.
Andreas Neustifter8a58c182009-09-11 08:39:33 +0000362 if (BBToVisit.size() == size) {
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000363 bool found = false;
364 for (std::set<BasicBlock*>::iterator BBI = BBToVisit.begin(), BBE = BBToVisit.end();
365 (BBI != BBE) && (!found); ++BBI) {
366 BasicBlock *BB = *BBI;
367 // Try each predecessor if it can be assumend.
368 for (pred_iterator bbi = pred_begin(BB), bbe = pred_end(BB);
369 (bbi != bbe) && (!found); ++bbi) {
370 Edge e = getEdge(*bbi,BB);
371 double w = getEdgeWeight(e);
372 // Check that edge from predecessor is still free.
373 if (w == MissingValue) {
374 // Check if there is a circle from this block to predecessor.
375 Path P;
376 const BasicBlock *Dest = GetPath(BB, *bbi, P, GetPathToDest);
377 if (Dest != *bbi) {
378 // If there is no circle, just set edge weight to 0
379 EdgeInformation[&F][e] = 0;
David Greene244d7572009-12-23 21:27:29 +0000380 DEBUG(dbgs() << "Assuming edge weight: ");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000381 printEdgeWeight(e);
382 found = true;
383 }
384 }
Andreas Neustifter0c0de662009-09-10 16:30:38 +0000385 }
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000386 }
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000387 if (!found) {
388 cleanup = true;
David Greene244d7572009-12-23 21:27:29 +0000389 DEBUG(dbgs() << "No assumption possible in Fuction "<<F.getName()<<", setting all to zero\n");
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000390 }
391 }
392 }
393 // In case there was no safe way to assume edges, set as a last measure,
394 // set _everything_ to zero.
395 if (cleanup) {
396 FunctionInformation[&F] = 0;
397 BlockInformation[&F].clear();
398 EdgeInformation[&F].clear();
399 for (Function::const_iterator FI = F.begin(), FE = F.end(); FI != FE; ++FI) {
400 const BasicBlock *BB = &(*FI);
401 BlockInformation[&F][BB] = 0;
Gabor Greif44424642010-03-25 23:25:28 +0000402 const_pred_iterator predi = pred_begin(BB), prede = pred_end(BB);
Andreas Neustifter1640f7e2009-12-03 12:41:14 +0000403 if (predi == prede) {
404 Edge e = getEdge(0,BB);
405 setEdgeWeight(e,0);
406 }
407 for (;predi != prede; ++predi) {
408 Edge e = getEdge(*predi,BB);
409 setEdgeWeight(e,0);
410 }
411 succ_const_iterator succi = succ_begin(BB), succe = succ_end(BB);
412 if (succi == succe) {
413 Edge e = getEdge(BB,0);
414 setEdgeWeight(e,0);
415 }
416 for (;succi != succe; ++succi) {
417 Edge e = getEdge(*succi,BB);
418 setEdgeWeight(e,0);
419 }
Daniel Dunbar55e354a2009-08-08 18:44:18 +0000420 }
421 }
422
423 return false;
424}