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Andrew Trick9e764222011-06-04 01:16:30 +00001//===-- BranchProbabilityInfo.cpp - Branch Probability Analysis -*- 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// Loops should be simplified before this analysis.
11//
12//===----------------------------------------------------------------------===//
13
14#include "llvm/Instructions.h"
15#include "llvm/Analysis/BranchProbabilityInfo.h"
Andrew Trickf289df22011-06-11 01:05:22 +000016#include "llvm/Support/Debug.h"
Andrew Trick9e764222011-06-04 01:16:30 +000017
18using namespace llvm;
19
20INITIALIZE_PASS_BEGIN(BranchProbabilityInfo, "branch-prob",
21 "Branch Probability Analysis", false, true)
22INITIALIZE_PASS_DEPENDENCY(LoopInfo)
23INITIALIZE_PASS_END(BranchProbabilityInfo, "branch-prob",
24 "Branch Probability Analysis", false, true)
25
26char BranchProbabilityInfo::ID = 0;
27
Benjamin Kramerafa88ea2011-06-13 18:38:56 +000028namespace {
Andrew Trick9e764222011-06-04 01:16:30 +000029// Please note that BranchProbabilityAnalysis is not a FunctionPass.
30// It is created by BranchProbabilityInfo (which is a FunctionPass), which
31// provides a clear interface. Thanks to that, all heuristics and other
32// private methods are hidden in the .cpp file.
33class BranchProbabilityAnalysis {
34
35 typedef std::pair<BasicBlock *, BasicBlock *> Edge;
36
Andrew Trickf289df22011-06-11 01:05:22 +000037 DenseMap<Edge, uint32_t> *Weights;
Andrew Trick9e764222011-06-04 01:16:30 +000038
39 BranchProbabilityInfo *BP;
40
41 LoopInfo *LI;
42
43
44 // Weights are for internal use only. They are used by heuristics to help to
45 // estimate edges' probability. Example:
46 //
47 // Using "Loop Branch Heuristics" we predict weights of edges for the
48 // block BB2.
49 // ...
50 // |
51 // V
52 // BB1<-+
53 // | |
54 // | | (Weight = 128)
55 // V |
56 // BB2--+
57 // |
58 // | (Weight = 4)
59 // V
60 // BB3
61 //
62 // Probability of the edge BB2->BB1 = 128 / (128 + 4) = 0.9696..
63 // Probability of the edge BB2->BB3 = 4 / (128 + 4) = 0.0303..
64
Andrew Trickf289df22011-06-11 01:05:22 +000065 static const uint32_t LBH_TAKEN_WEIGHT = 128;
66 static const uint32_t LBH_NONTAKEN_WEIGHT = 4;
Andrew Trick9e764222011-06-04 01:16:30 +000067
68 // Standard weight value. Used when none of the heuristics set weight for
69 // the edge.
Andrew Trickf289df22011-06-11 01:05:22 +000070 static const uint32_t NORMAL_WEIGHT = 16;
Andrew Trick9e764222011-06-04 01:16:30 +000071
72 // Minimum weight of an edge. Please note, that weight is NEVER 0.
Andrew Trickf289df22011-06-11 01:05:22 +000073 static const uint32_t MIN_WEIGHT = 1;
Andrew Trick9e764222011-06-04 01:16:30 +000074
75 // Return TRUE if BB leads directly to a Return Instruction.
76 static bool isReturningBlock(BasicBlock *BB) {
77 SmallPtrSet<BasicBlock *, 8> Visited;
78
79 while (true) {
80 TerminatorInst *TI = BB->getTerminator();
81 if (isa<ReturnInst>(TI))
82 return true;
83
84 if (TI->getNumSuccessors() > 1)
85 break;
86
87 // It is unreachable block which we can consider as a return instruction.
88 if (TI->getNumSuccessors() == 0)
89 return true;
90
91 Visited.insert(BB);
92 BB = TI->getSuccessor(0);
93
94 // Stop if cycle is detected.
95 if (Visited.count(BB))
96 return false;
97 }
98
99 return false;
100 }
101
102 // Multiply Edge Weight by two.
103 void incEdgeWeight(BasicBlock *Src, BasicBlock *Dst) {
Andrew Trickf289df22011-06-11 01:05:22 +0000104 uint32_t Weight = BP->getEdgeWeight(Src, Dst);
105 uint32_t MaxWeight = getMaxWeightFor(Src);
Andrew Trick9e764222011-06-04 01:16:30 +0000106
107 if (Weight * 2 > MaxWeight)
108 BP->setEdgeWeight(Src, Dst, MaxWeight);
109 else
110 BP->setEdgeWeight(Src, Dst, Weight * 2);
111 }
112
113 // Divide Edge Weight by two.
114 void decEdgeWeight(BasicBlock *Src, BasicBlock *Dst) {
Andrew Trickf289df22011-06-11 01:05:22 +0000115 uint32_t Weight = BP->getEdgeWeight(Src, Dst);
Andrew Trick9e764222011-06-04 01:16:30 +0000116
117 assert(Weight > 0);
118 if (Weight / 2 < MIN_WEIGHT)
119 BP->setEdgeWeight(Src, Dst, MIN_WEIGHT);
120 else
121 BP->setEdgeWeight(Src, Dst, Weight / 2);
122 }
123
124
Andrew Trickf289df22011-06-11 01:05:22 +0000125 uint32_t getMaxWeightFor(BasicBlock *BB) const {
126 return UINT32_MAX / BB->getTerminator()->getNumSuccessors();
Andrew Trick9e764222011-06-04 01:16:30 +0000127 }
128
129public:
Andrew Trickf289df22011-06-11 01:05:22 +0000130 BranchProbabilityAnalysis(DenseMap<Edge, uint32_t> *W,
Andrew Trick9e764222011-06-04 01:16:30 +0000131 BranchProbabilityInfo *BP, LoopInfo *LI)
132 : Weights(W), BP(BP), LI(LI) {
133 }
134
135 // Return Heuristics
136 void calcReturnHeuristics(BasicBlock *BB);
137
138 // Pointer Heuristics
139 void calcPointerHeuristics(BasicBlock *BB);
140
141 // Loop Branch Heuristics
142 void calcLoopBranchHeuristics(BasicBlock *BB);
143
144 bool runOnFunction(Function &F);
145};
Benjamin Kramerafa88ea2011-06-13 18:38:56 +0000146} // end anonymous namespace
Andrew Trick9e764222011-06-04 01:16:30 +0000147
148// Calculate Edge Weights using "Return Heuristics". Predict a successor which
149// leads directly to Return Instruction will not be taken.
150void BranchProbabilityAnalysis::calcReturnHeuristics(BasicBlock *BB){
151 if (BB->getTerminator()->getNumSuccessors() == 1)
152 return;
153
154 for (succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I) {
155 BasicBlock *Succ = *I;
156 if (isReturningBlock(Succ)) {
157 decEdgeWeight(BB, Succ);
158 }
159 }
160}
161
162// Calculate Edge Weights using "Pointer Heuristics". Predict a comparsion
163// between two pointer or pointer and NULL will fail.
164void BranchProbabilityAnalysis::calcPointerHeuristics(BasicBlock *BB) {
165 BranchInst * BI = dyn_cast<BranchInst>(BB->getTerminator());
166 if (!BI || !BI->isConditional())
167 return;
168
169 Value *Cond = BI->getCondition();
170 ICmpInst *CI = dyn_cast<ICmpInst>(Cond);
171 if (!CI)
172 return;
173
174 Value *LHS = CI->getOperand(0);
Andrew Trick9e764222011-06-04 01:16:30 +0000175
176 if (!LHS->getType()->isPointerTy())
177 return;
178
Nick Lewycky404b53e2011-06-04 02:07:10 +0000179 assert(CI->getOperand(1)->getType()->isPointerTy());
Andrew Trick9e764222011-06-04 01:16:30 +0000180
181 BasicBlock *Taken = BI->getSuccessor(0);
182 BasicBlock *NonTaken = BI->getSuccessor(1);
183
184 // p != 0 -> isProb = true
185 // p == 0 -> isProb = false
186 // p != q -> isProb = true
187 // p == q -> isProb = false;
188 bool isProb = !CI->isEquality();
189 if (!isProb)
190 std::swap(Taken, NonTaken);
191
192 incEdgeWeight(BB, Taken);
193 decEdgeWeight(BB, NonTaken);
194}
195
196// Calculate Edge Weights using "Loop Branch Heuristics". Predict backedges
197// as taken, exiting edges as not-taken.
198void BranchProbabilityAnalysis::calcLoopBranchHeuristics(BasicBlock *BB) {
Andrew Trickf289df22011-06-11 01:05:22 +0000199 uint32_t numSuccs = BB->getTerminator()->getNumSuccessors();
Andrew Trick9e764222011-06-04 01:16:30 +0000200
201 Loop *L = LI->getLoopFor(BB);
202 if (!L)
203 return;
204
205 SmallVector<BasicBlock *, 8> BackEdges;
206 SmallVector<BasicBlock *, 8> ExitingEdges;
207
208 for (succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I) {
209 BasicBlock *Succ = *I;
210 Loop *SuccL = LI->getLoopFor(Succ);
211 if (SuccL != L)
212 ExitingEdges.push_back(Succ);
213 else if (Succ == L->getHeader())
214 BackEdges.push_back(Succ);
215 }
216
Andrew Trickf289df22011-06-11 01:05:22 +0000217 if (uint32_t numBackEdges = BackEdges.size()) {
218 uint32_t backWeight = LBH_TAKEN_WEIGHT / numBackEdges;
Andrew Trick9e764222011-06-04 01:16:30 +0000219 if (backWeight < NORMAL_WEIGHT)
220 backWeight = NORMAL_WEIGHT;
221
222 for (SmallVector<BasicBlock *, 8>::iterator EI = BackEdges.begin(),
223 EE = BackEdges.end(); EI != EE; ++EI) {
224 BasicBlock *Back = *EI;
225 BP->setEdgeWeight(BB, Back, backWeight);
226 }
227 }
228
Andrew Trickf289df22011-06-11 01:05:22 +0000229 uint32_t numExitingEdges = ExitingEdges.size();
230 if (uint32_t numNonExitingEdges = numSuccs - numExitingEdges) {
231 uint32_t exitWeight = LBH_NONTAKEN_WEIGHT / numNonExitingEdges;
Andrew Trick9e764222011-06-04 01:16:30 +0000232 if (exitWeight < MIN_WEIGHT)
233 exitWeight = MIN_WEIGHT;
234
235 for (SmallVector<BasicBlock *, 8>::iterator EI = ExitingEdges.begin(),
236 EE = ExitingEdges.end(); EI != EE; ++EI) {
237 BasicBlock *Exiting = *EI;
238 BP->setEdgeWeight(BB, Exiting, exitWeight);
239 }
240 }
241}
242
243bool BranchProbabilityAnalysis::runOnFunction(Function &F) {
244
245 for (Function::iterator I = F.begin(), E = F.end(); I != E; ) {
246 BasicBlock *BB = I++;
247
248 // Only LBH uses setEdgeWeight method.
249 calcLoopBranchHeuristics(BB);
250
251 // PH and RH use only incEdgeWeight and decEwdgeWeight methods to
252 // not efface LBH results.
253 calcPointerHeuristics(BB);
254 calcReturnHeuristics(BB);
255 }
256
257 return false;
258}
259
260
261bool BranchProbabilityInfo::runOnFunction(Function &F) {
262 LoopInfo &LI = getAnalysis<LoopInfo>();
263 BranchProbabilityAnalysis BPA(&Weights, this, &LI);
Andrew Trickf289df22011-06-11 01:05:22 +0000264 return BPA.runOnFunction(F);
Andrew Trick9e764222011-06-04 01:16:30 +0000265}
266
Andrew Trickf289df22011-06-11 01:05:22 +0000267uint32_t BranchProbabilityInfo::getSumForBlock(BasicBlock *BB) const {
268 uint32_t Sum = 0;
269
270 for (succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I) {
Andrew Trick9e764222011-06-04 01:16:30 +0000271 BasicBlock *Succ = *I;
Andrew Trickf289df22011-06-11 01:05:22 +0000272 uint32_t Weight = getEdgeWeight(BB, Succ);
273 uint32_t PrevSum = Sum;
Andrew Trick9e764222011-06-04 01:16:30 +0000274
275 Sum += Weight;
276 assert(Sum > PrevSum); (void) PrevSum;
277 }
278
Andrew Trickf289df22011-06-11 01:05:22 +0000279 return Sum;
280}
281
282bool BranchProbabilityInfo::isEdgeHot(BasicBlock *Src, BasicBlock *Dst) const {
283 // Hot probability is at least 4/5 = 80%
284 uint32_t Weight = getEdgeWeight(Src, Dst);
285 uint32_t Sum = getSumForBlock(Src);
286
287 // FIXME: Implement BranchProbability::compare then change this code to
288 // compare this BranchProbability against a static "hot" BranchProbability.
289 return (uint64_t)Weight * 5 > (uint64_t)Sum * 4;
Andrew Trick9e764222011-06-04 01:16:30 +0000290}
291
292BasicBlock *BranchProbabilityInfo::getHotSucc(BasicBlock *BB) const {
Andrew Trickf289df22011-06-11 01:05:22 +0000293 uint32_t Sum = 0;
294 uint32_t MaxWeight = 0;
Andrew Trick9e764222011-06-04 01:16:30 +0000295 BasicBlock *MaxSucc = 0;
296
297 for (succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I) {
298 BasicBlock *Succ = *I;
Andrew Trickf289df22011-06-11 01:05:22 +0000299 uint32_t Weight = getEdgeWeight(BB, Succ);
300 uint32_t PrevSum = Sum;
Andrew Trick9e764222011-06-04 01:16:30 +0000301
302 Sum += Weight;
303 assert(Sum > PrevSum); (void) PrevSum;
304
305 if (Weight > MaxWeight) {
306 MaxWeight = Weight;
307 MaxSucc = Succ;
308 }
309 }
310
Andrew Trickf289df22011-06-11 01:05:22 +0000311 // FIXME: Use BranchProbability::compare.
312 if ((uint64_t)MaxWeight * 5 > (uint64_t)Sum * 4)
Andrew Trick9e764222011-06-04 01:16:30 +0000313 return MaxSucc;
314
315 return 0;
316}
317
318// Return edge's weight. If can't find it, return DEFAULT_WEIGHT value.
Andrew Trickf289df22011-06-11 01:05:22 +0000319uint32_t
Andrew Trick9e764222011-06-04 01:16:30 +0000320BranchProbabilityInfo::getEdgeWeight(BasicBlock *Src, BasicBlock *Dst) const {
321 Edge E(Src, Dst);
Andrew Trickf289df22011-06-11 01:05:22 +0000322 DenseMap<Edge, uint32_t>::const_iterator I = Weights.find(E);
Andrew Trick9e764222011-06-04 01:16:30 +0000323
324 if (I != Weights.end())
325 return I->second;
326
327 return DEFAULT_WEIGHT;
328}
329
330void BranchProbabilityInfo::setEdgeWeight(BasicBlock *Src, BasicBlock *Dst,
Andrew Trickf289df22011-06-11 01:05:22 +0000331 uint32_t Weight) {
Andrew Trick9e764222011-06-04 01:16:30 +0000332 Weights[std::make_pair(Src, Dst)] = Weight;
Andrew Trickf289df22011-06-11 01:05:22 +0000333 DEBUG(dbgs() << "set edge " << Src->getNameStr() << " -> "
334 << Dst->getNameStr() << " weight to " << Weight
335 << (isEdgeHot(Src, Dst) ? " [is HOT now]\n" : "\n"));
336}
337
338
339BranchProbability BranchProbabilityInfo::
340getEdgeProbability(BasicBlock *Src, BasicBlock *Dst) const {
341
342 uint32_t N = getEdgeWeight(Src, Dst);
343 uint32_t D = getSumForBlock(Src);
344
345 return BranchProbability(N, D);
Andrew Trick9e764222011-06-04 01:16:30 +0000346}
347
348raw_ostream &
349BranchProbabilityInfo::printEdgeProbability(raw_ostream &OS, BasicBlock *Src,
Andrew Trickf289df22011-06-11 01:05:22 +0000350 BasicBlock *Dst) const {
351 BranchProbability Prob = getEdgeProbability(Src, Dst);
Andrew Trick9e764222011-06-04 01:16:30 +0000352
Andrew Trickf289df22011-06-11 01:05:22 +0000353 OS << "edge " << Src->getNameStr() << " -> " << Dst->getNameStr()
354 << " probability is " << Prob
355 << (isEdgeHot(Src, Dst) ? " [HOT edge]\n" : "\n");
Andrew Trick9e764222011-06-04 01:16:30 +0000356
357 return OS;
358}