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Eugene Zelenko38c02bc2017-07-21 21:37:46 +00001//===- BranchProbabilityInfo.cpp - Branch Probability Analysis ------------===//
Andrew Trick49371f32011-06-04 01:16:30 +00002//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Andrew Trick49371f32011-06-04 01:16:30 +00006//
7//===----------------------------------------------------------------------===//
8//
9// Loops should be simplified before this analysis.
10//
11//===----------------------------------------------------------------------===//
12
Chandler Carruthed0881b2012-12-03 16:50:05 +000013#include "llvm/Analysis/BranchProbabilityInfo.h"
14#include "llvm/ADT/PostOrderIterator.h"
Geoff Berryeed65312017-11-01 15:16:50 +000015#include "llvm/ADT/SCCIterator.h"
Eugene Zelenko38c02bc2017-07-21 21:37:46 +000016#include "llvm/ADT/STLExtras.h"
17#include "llvm/ADT/SmallVector.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000018#include "llvm/Analysis/LoopInfo.h"
Taewook Oh2da205d2019-12-02 10:15:22 -080019#include "llvm/Analysis/PostDominators.h"
John Brawnda4a68a2017-06-08 09:44:40 +000020#include "llvm/Analysis/TargetLibraryInfo.h"
Eugene Zelenko38c02bc2017-07-21 21:37:46 +000021#include "llvm/IR/Attributes.h"
22#include "llvm/IR/BasicBlock.h"
Chandler Carruth1305dc32014-03-04 11:45:46 +000023#include "llvm/IR/CFG.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000024#include "llvm/IR/Constants.h"
Mikael Holmen2ca16892018-05-17 09:05:40 +000025#include "llvm/IR/Dominators.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000026#include "llvm/IR/Function.h"
Eugene Zelenko38c02bc2017-07-21 21:37:46 +000027#include "llvm/IR/InstrTypes.h"
28#include "llvm/IR/Instruction.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000029#include "llvm/IR/Instructions.h"
30#include "llvm/IR/LLVMContext.h"
31#include "llvm/IR/Metadata.h"
Eugene Zelenko38c02bc2017-07-21 21:37:46 +000032#include "llvm/IR/PassManager.h"
33#include "llvm/IR/Type.h"
34#include "llvm/IR/Value.h"
Reid Kleckner05da2fe2019-11-13 13:15:01 -080035#include "llvm/InitializePasses.h"
Eugene Zelenko38c02bc2017-07-21 21:37:46 +000036#include "llvm/Pass.h"
37#include "llvm/Support/BranchProbability.h"
38#include "llvm/Support/Casting.h"
Reid Kleckner4c1a1d32019-11-14 15:15:48 -080039#include "llvm/Support/CommandLine.h"
Andrew Trick3d4e64b2011-06-11 01:05:22 +000040#include "llvm/Support/Debug.h"
Benjamin Kramer16132e62015-03-23 18:07:13 +000041#include "llvm/Support/raw_ostream.h"
Eugene Zelenko38c02bc2017-07-21 21:37:46 +000042#include <cassert>
43#include <cstdint>
44#include <iterator>
45#include <utility>
Andrew Trick49371f32011-06-04 01:16:30 +000046
47using namespace llvm;
48
Chandler Carruthf1221bd2014-04-22 02:48:03 +000049#define DEBUG_TYPE "branch-prob"
50
Hiroshi Yamauchi63e17eb2017-08-26 00:31:00 +000051static cl::opt<bool> PrintBranchProb(
52 "print-bpi", cl::init(false), cl::Hidden,
53 cl::desc("Print the branch probability info."));
54
55cl::opt<std::string> PrintBranchProbFuncName(
56 "print-bpi-func-name", cl::Hidden,
57 cl::desc("The option to specify the name of the function "
58 "whose branch probability info is printed."));
59
Cong Houab23bfb2015-07-15 22:48:29 +000060INITIALIZE_PASS_BEGIN(BranchProbabilityInfoWrapperPass, "branch-prob",
Andrew Trick49371f32011-06-04 01:16:30 +000061 "Branch Probability Analysis", false, true)
Chandler Carruth4f8f3072015-01-17 14:16:18 +000062INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass)
John Brawnda4a68a2017-06-08 09:44:40 +000063INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfoWrapperPass)
Evgeniy Brevnov3e68a6672020-04-28 16:31:20 +070064INITIALIZE_PASS_DEPENDENCY(PostDominatorTreeWrapperPass)
Cong Houab23bfb2015-07-15 22:48:29 +000065INITIALIZE_PASS_END(BranchProbabilityInfoWrapperPass, "branch-prob",
Andrew Trick49371f32011-06-04 01:16:30 +000066 "Branch Probability Analysis", false, true)
67
Reid Kleckner05da2fe2019-11-13 13:15:01 -080068BranchProbabilityInfoWrapperPass::BranchProbabilityInfoWrapperPass()
69 : FunctionPass(ID) {
70 initializeBranchProbabilityInfoWrapperPassPass(
71 *PassRegistry::getPassRegistry());
72}
73
Cong Houab23bfb2015-07-15 22:48:29 +000074char BranchProbabilityInfoWrapperPass::ID = 0;
Andrew Trick49371f32011-06-04 01:16:30 +000075
Chandler Carruth7a0094a2011-10-24 01:40:45 +000076// Weights are for internal use only. They are used by heuristics to help to
77// estimate edges' probability. Example:
78//
79// Using "Loop Branch Heuristics" we predict weights of edges for the
80// block BB2.
81// ...
82// |
83// V
84// BB1<-+
85// | |
86// | | (Weight = 124)
87// V |
88// BB2--+
89// |
90// | (Weight = 4)
91// V
92// BB3
93//
94// Probability of the edge BB2->BB1 = 124 / (124 + 4) = 0.96875
95// Probability of the edge BB2->BB3 = 4 / (124 + 4) = 0.03125
96static const uint32_t LBH_TAKEN_WEIGHT = 124;
97static const uint32_t LBH_NONTAKEN_WEIGHT = 4;
John Brawn29bbed32018-02-23 17:17:31 +000098// Unlikely edges within a loop are half as likely as other edges
99static const uint32_t LBH_UNLIKELY_WEIGHT = 62;
Andrew Trick49371f32011-06-04 01:16:30 +0000100
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000101/// Unreachable-terminating branch taken probability.
Chandler Carruth7111f452011-10-24 12:01:08 +0000102///
Serguei Katkovba831f72017-05-18 06:11:56 +0000103/// This is the probability for a branch being taken to a block that terminates
Chandler Carruth7111f452011-10-24 12:01:08 +0000104/// (eventually) in unreachable. These are predicted as unlikely as possible.
Serguei Katkovba831f72017-05-18 06:11:56 +0000105/// All reachable probability will equally share the remaining part.
106static const BranchProbability UR_TAKEN_PROB = BranchProbability::getRaw(1);
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000107
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000108/// Weight for a branch taken going into a cold block.
Diego Novilloc6399532013-05-24 12:26:52 +0000109///
110/// This is the weight for a branch taken toward a block marked
111/// cold. A block is marked cold if it's postdominated by a
112/// block containing a call to a cold function. Cold functions
113/// are those marked with attribute 'cold'.
114static const uint32_t CC_TAKEN_WEIGHT = 4;
115
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000116/// Weight for a branch not-taken into a cold block.
Diego Novilloc6399532013-05-24 12:26:52 +0000117///
118/// This is the weight for a branch not taken toward a block marked
119/// cold.
120static const uint32_t CC_NONTAKEN_WEIGHT = 64;
121
Chandler Carruth7a0094a2011-10-24 01:40:45 +0000122static const uint32_t PH_TAKEN_WEIGHT = 20;
123static const uint32_t PH_NONTAKEN_WEIGHT = 12;
Andrew Trick49371f32011-06-04 01:16:30 +0000124
Chandler Carruth7a0094a2011-10-24 01:40:45 +0000125static const uint32_t ZH_TAKEN_WEIGHT = 20;
126static const uint32_t ZH_NONTAKEN_WEIGHT = 12;
Andrew Trick49371f32011-06-04 01:16:30 +0000127
Chandler Carruth7a0094a2011-10-24 01:40:45 +0000128static const uint32_t FPH_TAKEN_WEIGHT = 20;
129static const uint32_t FPH_NONTAKEN_WEIGHT = 12;
Andrew Trick49371f32011-06-04 01:16:30 +0000130
Guozhi Weib329e072019-09-10 17:25:11 +0000131/// This is the probability for an ordered floating point comparison.
132static const uint32_t FPH_ORD_WEIGHT = 1024 * 1024 - 1;
133/// This is the probability for an unordered floating point comparison, it means
134/// one or two of the operands are NaN. Usually it is used to test for an
135/// exceptional case, so the result is unlikely.
136static const uint32_t FPH_UNO_WEIGHT = 1;
137
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000138/// Invoke-terminating normal branch taken weight
Bill Wendlinge1c54262012-08-15 12:22:35 +0000139///
140/// This is the weight for branching to the normal destination of an invoke
141/// instruction. We expect this to happen most of the time. Set the weight to an
142/// absurdly high value so that nested loops subsume it.
143static const uint32_t IH_TAKEN_WEIGHT = 1024 * 1024 - 1;
144
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000145/// Invoke-terminating normal branch not-taken weight.
Bill Wendlinge1c54262012-08-15 12:22:35 +0000146///
147/// This is the weight for branching to the unwind destination of an invoke
148/// instruction. This is essentially never taken.
149static const uint32_t IH_NONTAKEN_WEIGHT = 1;
150
Taewook Oh2da205d2019-12-02 10:15:22 -0800151static void UpdatePDTWorklist(const BasicBlock *BB, PostDominatorTree *PDT,
152 SmallVectorImpl<const BasicBlock *> &WorkList,
153 SmallPtrSetImpl<const BasicBlock *> &TargetSet) {
154 SmallVector<BasicBlock *, 8> Descendants;
155 SmallPtrSet<const BasicBlock *, 16> NewItems;
Chandler Carruth7111f452011-10-24 12:01:08 +0000156
Taewook Oh2da205d2019-12-02 10:15:22 -0800157 PDT->getDescendants(const_cast<BasicBlock *>(BB), Descendants);
158 for (auto *BB : Descendants)
159 if (TargetSet.insert(BB).second)
160 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
161 if (!TargetSet.count(*PI))
162 NewItems.insert(*PI);
163 WorkList.insert(WorkList.end(), NewItems.begin(), NewItems.end());
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000164}
165
Taewook Oh2da205d2019-12-02 10:15:22 -0800166/// Compute a set of basic blocks that are post-dominated by unreachables.
167void BranchProbabilityInfo::computePostDominatedByUnreachable(
168 const Function &F, PostDominatorTree *PDT) {
169 SmallVector<const BasicBlock *, 8> WorkList;
170 for (auto &BB : F) {
171 const Instruction *TI = BB.getTerminator();
172 if (TI->getNumSuccessors() == 0) {
173 if (isa<UnreachableInst>(TI) ||
174 // If this block is terminated by a call to
175 // @llvm.experimental.deoptimize then treat it like an unreachable
176 // since the @llvm.experimental.deoptimize call is expected to
177 // practically never execute.
178 BB.getTerminatingDeoptimizeCall())
179 UpdatePDTWorklist(&BB, PDT, WorkList, PostDominatedByUnreachable);
180 }
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000181 }
182
Taewook Oh2da205d2019-12-02 10:15:22 -0800183 while (!WorkList.empty()) {
184 const BasicBlock *BB = WorkList.pop_back_val();
185 if (PostDominatedByUnreachable.count(BB))
186 continue;
187 // If the terminator is an InvokeInst, check only the normal destination
188 // block as the unwind edge of InvokeInst is also very unlikely taken.
189 if (auto *II = dyn_cast<InvokeInst>(BB->getTerminator())) {
190 if (PostDominatedByUnreachable.count(II->getNormalDest()))
191 UpdatePDTWorklist(BB, PDT, WorkList, PostDominatedByUnreachable);
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000192 }
Taewook Oh2da205d2019-12-02 10:15:22 -0800193 // If all the successors are unreachable, BB is unreachable as well.
194 else if (!successors(BB).empty() &&
195 llvm::all_of(successors(BB), [this](const BasicBlock *Succ) {
196 return PostDominatedByUnreachable.count(Succ);
197 }))
198 UpdatePDTWorklist(BB, PDT, WorkList, PostDominatedByUnreachable);
199 }
200}
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000201
Taewook Oh2da205d2019-12-02 10:15:22 -0800202/// compute a set of basic blocks that are post-dominated by ColdCalls.
203void BranchProbabilityInfo::computePostDominatedByColdCall(
204 const Function &F, PostDominatorTree *PDT) {
205 SmallVector<const BasicBlock *, 8> WorkList;
206 for (auto &BB : F)
207 for (auto &I : BB)
208 if (const CallInst *CI = dyn_cast<CallInst>(&I))
209 if (CI->hasFnAttr(Attribute::Cold))
210 UpdatePDTWorklist(&BB, PDT, WorkList, PostDominatedByColdCall);
211
212 while (!WorkList.empty()) {
213 const BasicBlock *BB = WorkList.pop_back_val();
214
215 // If the terminator is an InvokeInst, check only the normal destination
216 // block as the unwind edge of InvokeInst is also very unlikely taken.
217 if (auto *II = dyn_cast<InvokeInst>(BB->getTerminator())) {
218 if (PostDominatedByColdCall.count(II->getNormalDest()))
219 UpdatePDTWorklist(BB, PDT, WorkList, PostDominatedByColdCall);
220 }
221 // If all of successor are post dominated then BB is also done.
222 else if (!successors(BB).empty() &&
223 llvm::all_of(successors(BB), [this](const BasicBlock *Succ) {
224 return PostDominatedByColdCall.count(Succ);
225 }))
226 UpdatePDTWorklist(BB, PDT, WorkList, PostDominatedByColdCall);
227 }
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000228}
229
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000230/// Calculate edge weights for successors lead to unreachable.
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000231///
232/// Predict that a successor which leads necessarily to an
233/// unreachable-terminated block as extremely unlikely.
234bool BranchProbabilityInfo::calcUnreachableHeuristics(const BasicBlock *BB) {
Chandler Carruthedb12a82018-10-15 10:04:59 +0000235 const Instruction *TI = BB->getTerminator();
Artur Pilipenko4d063e72018-06-08 13:03:21 +0000236 (void) TI;
Serguei Katkov11d9c4f2017-04-17 06:39:47 +0000237 assert(TI->getNumSuccessors() > 1 && "expected more than one successor!");
Artur Pilipenko4d063e72018-06-08 13:03:21 +0000238 assert(!isa<InvokeInst>(TI) &&
239 "Invokes should have already been handled by calcInvokeHeuristics");
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000240
Manman Rencf104462012-08-24 18:14:27 +0000241 SmallVector<unsigned, 4> UnreachableEdges;
242 SmallVector<unsigned, 4> ReachableEdges;
Chandler Carruth7111f452011-10-24 12:01:08 +0000243
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700244 for (const_succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I)
Chandler Carruth7111f452011-10-24 12:01:08 +0000245 if (PostDominatedByUnreachable.count(*I))
Manman Rencf104462012-08-24 18:14:27 +0000246 UnreachableEdges.push_back(I.getSuccessorIndex());
Chandler Carruth7111f452011-10-24 12:01:08 +0000247 else
Manman Rencf104462012-08-24 18:14:27 +0000248 ReachableEdges.push_back(I.getSuccessorIndex());
Chandler Carruth7111f452011-10-24 12:01:08 +0000249
Serguei Katkov11d9c4f2017-04-17 06:39:47 +0000250 // Skip probabilities if all were reachable.
251 if (UnreachableEdges.empty())
Serguei Katkovecebc3d2017-04-12 05:42:14 +0000252 return false;
Jun Bum Lima23e5f72015-12-21 22:00:51 +0000253
Cong Houe93b8e12015-12-22 18:56:14 +0000254 if (ReachableEdges.empty()) {
255 BranchProbability Prob(1, UnreachableEdges.size());
256 for (unsigned SuccIdx : UnreachableEdges)
257 setEdgeProbability(BB, SuccIdx, Prob);
Chandler Carruth7111f452011-10-24 12:01:08 +0000258 return true;
Cong Houe93b8e12015-12-22 18:56:14 +0000259 }
260
Serguei Katkovba831f72017-05-18 06:11:56 +0000261 auto UnreachableProb = UR_TAKEN_PROB;
262 auto ReachableProb =
263 (BranchProbability::getOne() - UR_TAKEN_PROB * UnreachableEdges.size()) /
264 ReachableEdges.size();
Cong Houe93b8e12015-12-22 18:56:14 +0000265
266 for (unsigned SuccIdx : UnreachableEdges)
267 setEdgeProbability(BB, SuccIdx, UnreachableProb);
268 for (unsigned SuccIdx : ReachableEdges)
269 setEdgeProbability(BB, SuccIdx, ReachableProb);
Chandler Carruth7111f452011-10-24 12:01:08 +0000270
271 return true;
272}
273
Chandler Carruthd27a7a92011-10-19 10:30:30 +0000274// Propagate existing explicit probabilities from either profile data or
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000275// 'expect' intrinsic processing. Examine metadata against unreachable
276// heuristic. The probability of the edge coming to unreachable block is
277// set to min of metadata and unreachable heuristic.
Mehdi Aminia7978772016-04-07 21:59:28 +0000278bool BranchProbabilityInfo::calcMetadataWeights(const BasicBlock *BB) {
Chandler Carruthedb12a82018-10-15 10:04:59 +0000279 const Instruction *TI = BB->getTerminator();
Serguei Katkov11d9c4f2017-04-17 06:39:47 +0000280 assert(TI->getNumSuccessors() > 1 && "expected more than one successor!");
Rong Xu15848e52017-08-23 21:36:02 +0000281 if (!(isa<BranchInst>(TI) || isa<SwitchInst>(TI) || isa<IndirectBrInst>(TI)))
Chandler Carruthd27a7a92011-10-19 10:30:30 +0000282 return false;
283
Duncan P. N. Exon Smithde36e802014-11-11 21:30:22 +0000284 MDNode *WeightsNode = TI->getMetadata(LLVMContext::MD_prof);
Chandler Carruthdeac50c2011-10-19 10:32:19 +0000285 if (!WeightsNode)
Chandler Carruthd27a7a92011-10-19 10:30:30 +0000286 return false;
287
Diego Novillode5b8012015-05-07 17:22:06 +0000288 // Check that the number of successors is manageable.
289 assert(TI->getNumSuccessors() < UINT32_MAX && "Too many successors");
290
Chandler Carruthdeac50c2011-10-19 10:32:19 +0000291 // Ensure there are weights for all of the successors. Note that the first
292 // operand to the metadata node is a name, not a weight.
293 if (WeightsNode->getNumOperands() != TI->getNumSuccessors() + 1)
Chandler Carruthd27a7a92011-10-19 10:30:30 +0000294 return false;
295
Diego Novillode5b8012015-05-07 17:22:06 +0000296 // Build up the final weights that will be used in a temporary buffer.
297 // Compute the sum of all weights to later decide whether they need to
298 // be scaled to fit in 32 bits.
299 uint64_t WeightSum = 0;
Chandler Carruthdeac50c2011-10-19 10:32:19 +0000300 SmallVector<uint32_t, 2> Weights;
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000301 SmallVector<unsigned, 2> UnreachableIdxs;
302 SmallVector<unsigned, 2> ReachableIdxs;
Chandler Carruthdeac50c2011-10-19 10:32:19 +0000303 Weights.reserve(TI->getNumSuccessors());
304 for (unsigned i = 1, e = WeightsNode->getNumOperands(); i != e; ++i) {
Duncan P. N. Exon Smith5bf8fef2014-12-09 18:38:53 +0000305 ConstantInt *Weight =
306 mdconst::dyn_extract<ConstantInt>(WeightsNode->getOperand(i));
Chandler Carruthdeac50c2011-10-19 10:32:19 +0000307 if (!Weight)
308 return false;
Diego Novillode5b8012015-05-07 17:22:06 +0000309 assert(Weight->getValue().getActiveBits() <= 32 &&
310 "Too many bits for uint32_t");
311 Weights.push_back(Weight->getZExtValue());
312 WeightSum += Weights.back();
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000313 if (PostDominatedByUnreachable.count(TI->getSuccessor(i - 1)))
314 UnreachableIdxs.push_back(i - 1);
315 else
316 ReachableIdxs.push_back(i - 1);
Chandler Carruthdeac50c2011-10-19 10:32:19 +0000317 }
318 assert(Weights.size() == TI->getNumSuccessors() && "Checked above");
Diego Novillode5b8012015-05-07 17:22:06 +0000319
320 // If the sum of weights does not fit in 32 bits, scale every weight down
321 // accordingly.
322 uint64_t ScalingFactor =
323 (WeightSum > UINT32_MAX) ? WeightSum / UINT32_MAX + 1 : 1;
324
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000325 if (ScalingFactor > 1) {
326 WeightSum = 0;
327 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i) {
328 Weights[i] /= ScalingFactor;
329 WeightSum += Weights[i];
330 }
Diego Novillode5b8012015-05-07 17:22:06 +0000331 }
Serguei Katkov63c9c812017-05-12 07:50:06 +0000332 assert(WeightSum <= UINT32_MAX &&
333 "Expected weights to scale down to 32 bits");
Cong Hou6a2c71a2015-12-22 23:45:55 +0000334
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000335 if (WeightSum == 0 || ReachableIdxs.size() == 0) {
Cong Hou6a2c71a2015-12-22 23:45:55 +0000336 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i)
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000337 Weights[i] = 1;
338 WeightSum = TI->getNumSuccessors();
Cong Hou6a2c71a2015-12-22 23:45:55 +0000339 }
Cong Houe93b8e12015-12-22 18:56:14 +0000340
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000341 // Set the probability.
342 SmallVector<BranchProbability, 2> BP;
343 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i)
344 BP.push_back({ Weights[i], static_cast<uint32_t>(WeightSum) });
345
346 // Examine the metadata against unreachable heuristic.
347 // If the unreachable heuristic is more strong then we use it for this edge.
348 if (UnreachableIdxs.size() > 0 && ReachableIdxs.size() > 0) {
349 auto ToDistribute = BranchProbability::getZero();
Serguei Katkovba831f72017-05-18 06:11:56 +0000350 auto UnreachableProb = UR_TAKEN_PROB;
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000351 for (auto i : UnreachableIdxs)
352 if (UnreachableProb < BP[i]) {
353 ToDistribute += BP[i] - UnreachableProb;
354 BP[i] = UnreachableProb;
355 }
356
357 // If we modified the probability of some edges then we must distribute
358 // the difference between reachable blocks.
359 if (ToDistribute > BranchProbability::getZero()) {
360 BranchProbability PerEdge = ToDistribute / ReachableIdxs.size();
Serguei Katkov63c9c812017-05-12 07:50:06 +0000361 for (auto i : ReachableIdxs)
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000362 BP[i] += PerEdge;
Serguei Katkov2616bbb2017-04-17 04:33:04 +0000363 }
364 }
365
366 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i)
367 setEdgeProbability(BB, i, BP[i]);
368
Chandler Carruthd27a7a92011-10-19 10:30:30 +0000369 return true;
370}
371
Adrian Prantl5f8f34e42018-05-01 15:54:18 +0000372/// Calculate edge weights for edges leading to cold blocks.
Diego Novilloc6399532013-05-24 12:26:52 +0000373///
374/// A cold block is one post-dominated by a block with a call to a
375/// cold function. Those edges are unlikely to be taken, so we give
376/// them relatively low weight.
377///
378/// Return true if we could compute the weights for cold edges.
379/// Return false, otherwise.
Mehdi Aminia7978772016-04-07 21:59:28 +0000380bool BranchProbabilityInfo::calcColdCallHeuristics(const BasicBlock *BB) {
Chandler Carruthedb12a82018-10-15 10:04:59 +0000381 const Instruction *TI = BB->getTerminator();
Artur Pilipenko4d063e72018-06-08 13:03:21 +0000382 (void) TI;
Serguei Katkov11d9c4f2017-04-17 06:39:47 +0000383 assert(TI->getNumSuccessors() > 1 && "expected more than one successor!");
Artur Pilipenko4d063e72018-06-08 13:03:21 +0000384 assert(!isa<InvokeInst>(TI) &&
385 "Invokes should have already been handled by calcInvokeHeuristics");
Diego Novilloc6399532013-05-24 12:26:52 +0000386
387 // Determine which successors are post-dominated by a cold block.
388 SmallVector<unsigned, 4> ColdEdges;
Diego Novilloc6399532013-05-24 12:26:52 +0000389 SmallVector<unsigned, 4> NormalEdges;
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700390 for (const_succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I)
Diego Novilloc6399532013-05-24 12:26:52 +0000391 if (PostDominatedByColdCall.count(*I))
392 ColdEdges.push_back(I.getSuccessorIndex());
393 else
394 NormalEdges.push_back(I.getSuccessorIndex());
395
Serguei Katkov11d9c4f2017-04-17 06:39:47 +0000396 // Skip probabilities if no cold edges.
397 if (ColdEdges.empty())
Diego Novilloc6399532013-05-24 12:26:52 +0000398 return false;
399
Cong Houe93b8e12015-12-22 18:56:14 +0000400 if (NormalEdges.empty()) {
401 BranchProbability Prob(1, ColdEdges.size());
402 for (unsigned SuccIdx : ColdEdges)
403 setEdgeProbability(BB, SuccIdx, Prob);
Diego Novilloc6399532013-05-24 12:26:52 +0000404 return true;
Cong Houe93b8e12015-12-22 18:56:14 +0000405 }
406
Vedant Kumara4bd1462016-12-17 01:02:08 +0000407 auto ColdProb = BranchProbability::getBranchProbability(
408 CC_TAKEN_WEIGHT,
409 (CC_TAKEN_WEIGHT + CC_NONTAKEN_WEIGHT) * uint64_t(ColdEdges.size()));
410 auto NormalProb = BranchProbability::getBranchProbability(
411 CC_NONTAKEN_WEIGHT,
412 (CC_TAKEN_WEIGHT + CC_NONTAKEN_WEIGHT) * uint64_t(NormalEdges.size()));
Cong Houe93b8e12015-12-22 18:56:14 +0000413
414 for (unsigned SuccIdx : ColdEdges)
415 setEdgeProbability(BB, SuccIdx, ColdProb);
416 for (unsigned SuccIdx : NormalEdges)
417 setEdgeProbability(BB, SuccIdx, NormalProb);
Diego Novilloc6399532013-05-24 12:26:52 +0000418
419 return true;
420}
421
Vedant Kumar1a8456d2018-03-02 18:57:02 +0000422// Calculate Edge Weights using "Pointer Heuristics". Predict a comparison
Andrew Trick49371f32011-06-04 01:16:30 +0000423// between two pointer or pointer and NULL will fail.
Mehdi Aminia7978772016-04-07 21:59:28 +0000424bool BranchProbabilityInfo::calcPointerHeuristics(const BasicBlock *BB) {
425 const BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
Andrew Trick49371f32011-06-04 01:16:30 +0000426 if (!BI || !BI->isConditional())
Jakub Staszakd07b2e12011-07-28 21:45:07 +0000427 return false;
Andrew Trick49371f32011-06-04 01:16:30 +0000428
429 Value *Cond = BI->getCondition();
430 ICmpInst *CI = dyn_cast<ICmpInst>(Cond);
Jakub Staszakabb236f2011-07-15 20:51:06 +0000431 if (!CI || !CI->isEquality())
Jakub Staszakd07b2e12011-07-28 21:45:07 +0000432 return false;
Andrew Trick49371f32011-06-04 01:16:30 +0000433
434 Value *LHS = CI->getOperand(0);
Andrew Trick49371f32011-06-04 01:16:30 +0000435
436 if (!LHS->getType()->isPointerTy())
Jakub Staszakd07b2e12011-07-28 21:45:07 +0000437 return false;
Andrew Trick49371f32011-06-04 01:16:30 +0000438
Nick Lewycky75b20532011-06-04 02:07:10 +0000439 assert(CI->getOperand(1)->getType()->isPointerTy());
Andrew Trick49371f32011-06-04 01:16:30 +0000440
Andrew Trick49371f32011-06-04 01:16:30 +0000441 // p != 0 -> isProb = true
442 // p == 0 -> isProb = false
443 // p != q -> isProb = true
444 // p == q -> isProb = false;
Manman Rencf104462012-08-24 18:14:27 +0000445 unsigned TakenIdx = 0, NonTakenIdx = 1;
Jakub Staszakabb236f2011-07-15 20:51:06 +0000446 bool isProb = CI->getPredicate() == ICmpInst::ICMP_NE;
Andrew Trick49371f32011-06-04 01:16:30 +0000447 if (!isProb)
Manman Rencf104462012-08-24 18:14:27 +0000448 std::swap(TakenIdx, NonTakenIdx);
Andrew Trick49371f32011-06-04 01:16:30 +0000449
Cong Houe93b8e12015-12-22 18:56:14 +0000450 BranchProbability TakenProb(PH_TAKEN_WEIGHT,
451 PH_TAKEN_WEIGHT + PH_NONTAKEN_WEIGHT);
452 setEdgeProbability(BB, TakenIdx, TakenProb);
453 setEdgeProbability(BB, NonTakenIdx, TakenProb.getCompl());
Jakub Staszakd07b2e12011-07-28 21:45:07 +0000454 return true;
Andrew Trick49371f32011-06-04 01:16:30 +0000455}
456
Geoff Berryeed65312017-11-01 15:16:50 +0000457static int getSCCNum(const BasicBlock *BB,
458 const BranchProbabilityInfo::SccInfo &SccI) {
459 auto SccIt = SccI.SccNums.find(BB);
460 if (SccIt == SccI.SccNums.end())
461 return -1;
462 return SccIt->second;
463}
464
465// Consider any block that is an entry point to the SCC as a header.
466static bool isSCCHeader(const BasicBlock *BB, int SccNum,
467 BranchProbabilityInfo::SccInfo &SccI) {
468 assert(getSCCNum(BB, SccI) == SccNum);
469
470 // Lazily compute the set of headers for a given SCC and cache the results
471 // in the SccHeaderMap.
472 if (SccI.SccHeaders.size() <= static_cast<unsigned>(SccNum))
473 SccI.SccHeaders.resize(SccNum + 1);
474 auto &HeaderMap = SccI.SccHeaders[SccNum];
475 bool Inserted;
476 BranchProbabilityInfo::SccHeaderMap::iterator HeaderMapIt;
477 std::tie(HeaderMapIt, Inserted) = HeaderMap.insert(std::make_pair(BB, false));
478 if (Inserted) {
479 bool IsHeader = llvm::any_of(make_range(pred_begin(BB), pred_end(BB)),
480 [&](const BasicBlock *Pred) {
481 return getSCCNum(Pred, SccI) != SccNum;
482 });
483 HeaderMapIt->second = IsHeader;
484 return IsHeader;
485 } else
486 return HeaderMapIt->second;
487}
488
John Brawn29bbed32018-02-23 17:17:31 +0000489// Compute the unlikely successors to the block BB in the loop L, specifically
490// those that are unlikely because this is a loop, and add them to the
491// UnlikelyBlocks set.
492static void
493computeUnlikelySuccessors(const BasicBlock *BB, Loop *L,
494 SmallPtrSetImpl<const BasicBlock*> &UnlikelyBlocks) {
495 // Sometimes in a loop we have a branch whose condition is made false by
496 // taking it. This is typically something like
497 // int n = 0;
498 // while (...) {
499 // if (++n >= MAX) {
500 // n = 0;
501 // }
502 // }
503 // In this sort of situation taking the branch means that at the very least it
504 // won't be taken again in the next iteration of the loop, so we should
505 // consider it less likely than a typical branch.
506 //
507 // We detect this by looking back through the graph of PHI nodes that sets the
508 // value that the condition depends on, and seeing if we can reach a successor
509 // block which can be determined to make the condition false.
510 //
511 // FIXME: We currently consider unlikely blocks to be half as likely as other
512 // blocks, but if we consider the example above the likelyhood is actually
513 // 1/MAX. We could therefore be more precise in how unlikely we consider
514 // blocks to be, but it would require more careful examination of the form
515 // of the comparison expression.
516 const BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
517 if (!BI || !BI->isConditional())
518 return;
519
520 // Check if the branch is based on an instruction compared with a constant
521 CmpInst *CI = dyn_cast<CmpInst>(BI->getCondition());
522 if (!CI || !isa<Instruction>(CI->getOperand(0)) ||
523 !isa<Constant>(CI->getOperand(1)))
524 return;
525
526 // Either the instruction must be a PHI, or a chain of operations involving
527 // constants that ends in a PHI which we can then collapse into a single value
528 // if the PHI value is known.
529 Instruction *CmpLHS = dyn_cast<Instruction>(CI->getOperand(0));
530 PHINode *CmpPHI = dyn_cast<PHINode>(CmpLHS);
531 Constant *CmpConst = dyn_cast<Constant>(CI->getOperand(1));
532 // Collect the instructions until we hit a PHI
Benjamin Kramer7f68a302018-06-15 21:06:43 +0000533 SmallVector<BinaryOperator *, 1> InstChain;
John Brawn29bbed32018-02-23 17:17:31 +0000534 while (!CmpPHI && CmpLHS && isa<BinaryOperator>(CmpLHS) &&
535 isa<Constant>(CmpLHS->getOperand(1))) {
536 // Stop if the chain extends outside of the loop
537 if (!L->contains(CmpLHS))
538 return;
Benjamin Kramer7f68a302018-06-15 21:06:43 +0000539 InstChain.push_back(cast<BinaryOperator>(CmpLHS));
John Brawn29bbed32018-02-23 17:17:31 +0000540 CmpLHS = dyn_cast<Instruction>(CmpLHS->getOperand(0));
541 if (CmpLHS)
542 CmpPHI = dyn_cast<PHINode>(CmpLHS);
543 }
544 if (!CmpPHI || !L->contains(CmpPHI))
545 return;
546
547 // Trace the phi node to find all values that come from successors of BB
548 SmallPtrSet<PHINode*, 8> VisitedInsts;
549 SmallVector<PHINode*, 8> WorkList;
550 WorkList.push_back(CmpPHI);
551 VisitedInsts.insert(CmpPHI);
552 while (!WorkList.empty()) {
553 PHINode *P = WorkList.back();
554 WorkList.pop_back();
555 for (BasicBlock *B : P->blocks()) {
556 // Skip blocks that aren't part of the loop
557 if (!L->contains(B))
558 continue;
559 Value *V = P->getIncomingValueForBlock(B);
560 // If the source is a PHI add it to the work list if we haven't
561 // already visited it.
562 if (PHINode *PN = dyn_cast<PHINode>(V)) {
563 if (VisitedInsts.insert(PN).second)
564 WorkList.push_back(PN);
565 continue;
566 }
567 // If this incoming value is a constant and B is a successor of BB, then
568 // we can constant-evaluate the compare to see if it makes the branch be
569 // taken or not.
570 Constant *CmpLHSConst = dyn_cast<Constant>(V);
571 if (!CmpLHSConst ||
572 std::find(succ_begin(BB), succ_end(BB), B) == succ_end(BB))
573 continue;
574 // First collapse InstChain
Benjamin Kramer7f68a302018-06-15 21:06:43 +0000575 for (Instruction *I : llvm::reverse(InstChain)) {
John Brawn29bbed32018-02-23 17:17:31 +0000576 CmpLHSConst = ConstantExpr::get(I->getOpcode(), CmpLHSConst,
Benjamin Kramer7f68a302018-06-15 21:06:43 +0000577 cast<Constant>(I->getOperand(1)), true);
John Brawn29bbed32018-02-23 17:17:31 +0000578 if (!CmpLHSConst)
579 break;
580 }
581 if (!CmpLHSConst)
582 continue;
583 // Now constant-evaluate the compare
584 Constant *Result = ConstantExpr::getCompare(CI->getPredicate(),
585 CmpLHSConst, CmpConst, true);
586 // If the result means we don't branch to the block then that block is
587 // unlikely.
588 if (Result &&
589 ((Result->isZeroValue() && B == BI->getSuccessor(0)) ||
590 (Result->isOneValue() && B == BI->getSuccessor(1))))
591 UnlikelyBlocks.insert(B);
592 }
593 }
594}
595
Andrew Trick49371f32011-06-04 01:16:30 +0000596// Calculate Edge Weights using "Loop Branch Heuristics". Predict backedges
597// as taken, exiting edges as not-taken.
Mehdi Aminia7978772016-04-07 21:59:28 +0000598bool BranchProbabilityInfo::calcLoopBranchHeuristics(const BasicBlock *BB,
Geoff Berryeed65312017-11-01 15:16:50 +0000599 const LoopInfo &LI,
600 SccInfo &SccI) {
601 int SccNum;
Cong Houab23bfb2015-07-15 22:48:29 +0000602 Loop *L = LI.getLoopFor(BB);
Geoff Berryeed65312017-11-01 15:16:50 +0000603 if (!L) {
604 SccNum = getSCCNum(BB, SccI);
605 if (SccNum < 0)
606 return false;
607 }
Andrew Trick49371f32011-06-04 01:16:30 +0000608
John Brawn29bbed32018-02-23 17:17:31 +0000609 SmallPtrSet<const BasicBlock*, 8> UnlikelyBlocks;
610 if (L)
611 computeUnlikelySuccessors(BB, L, UnlikelyBlocks);
612
Manman Rencf104462012-08-24 18:14:27 +0000613 SmallVector<unsigned, 8> BackEdges;
614 SmallVector<unsigned, 8> ExitingEdges;
615 SmallVector<unsigned, 8> InEdges; // Edges from header to the loop.
John Brawn29bbed32018-02-23 17:17:31 +0000616 SmallVector<unsigned, 8> UnlikelyEdges;
Jakub Staszakbcb3c652011-07-28 21:33:46 +0000617
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700618 for (const_succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I) {
Geoff Berryeed65312017-11-01 15:16:50 +0000619 // Use LoopInfo if we have it, otherwise fall-back to SCC info to catch
620 // irreducible loops.
621 if (L) {
John Brawn29bbed32018-02-23 17:17:31 +0000622 if (UnlikelyBlocks.count(*I) != 0)
623 UnlikelyEdges.push_back(I.getSuccessorIndex());
624 else if (!L->contains(*I))
Geoff Berryeed65312017-11-01 15:16:50 +0000625 ExitingEdges.push_back(I.getSuccessorIndex());
626 else if (L->getHeader() == *I)
627 BackEdges.push_back(I.getSuccessorIndex());
628 else
629 InEdges.push_back(I.getSuccessorIndex());
630 } else {
631 if (getSCCNum(*I, SccI) != SccNum)
632 ExitingEdges.push_back(I.getSuccessorIndex());
633 else if (isSCCHeader(*I, SccNum, SccI))
634 BackEdges.push_back(I.getSuccessorIndex());
635 else
636 InEdges.push_back(I.getSuccessorIndex());
637 }
Andrew Trick49371f32011-06-04 01:16:30 +0000638 }
639
John Brawn29bbed32018-02-23 17:17:31 +0000640 if (BackEdges.empty() && ExitingEdges.empty() && UnlikelyEdges.empty())
Akira Hatanaka5638b892014-04-14 16:56:19 +0000641 return false;
642
Cong Houe93b8e12015-12-22 18:56:14 +0000643 // Collect the sum of probabilities of back-edges/in-edges/exiting-edges, and
644 // normalize them so that they sum up to one.
Cong Houe93b8e12015-12-22 18:56:14 +0000645 unsigned Denom = (BackEdges.empty() ? 0 : LBH_TAKEN_WEIGHT) +
646 (InEdges.empty() ? 0 : LBH_TAKEN_WEIGHT) +
John Brawn29bbed32018-02-23 17:17:31 +0000647 (UnlikelyEdges.empty() ? 0 : LBH_UNLIKELY_WEIGHT) +
Cong Houe93b8e12015-12-22 18:56:14 +0000648 (ExitingEdges.empty() ? 0 : LBH_NONTAKEN_WEIGHT);
Andrew Trick49371f32011-06-04 01:16:30 +0000649
Cong Houe93b8e12015-12-22 18:56:14 +0000650 if (uint32_t numBackEdges = BackEdges.size()) {
John Brawn29bbed32018-02-23 17:17:31 +0000651 BranchProbability TakenProb = BranchProbability(LBH_TAKEN_WEIGHT, Denom);
652 auto Prob = TakenProb / numBackEdges;
Cong Houe93b8e12015-12-22 18:56:14 +0000653 for (unsigned SuccIdx : BackEdges)
654 setEdgeProbability(BB, SuccIdx, Prob);
Andrew Trick49371f32011-06-04 01:16:30 +0000655 }
656
Jakub Staszakbcb3c652011-07-28 21:33:46 +0000657 if (uint32_t numInEdges = InEdges.size()) {
John Brawn29bbed32018-02-23 17:17:31 +0000658 BranchProbability TakenProb = BranchProbability(LBH_TAKEN_WEIGHT, Denom);
659 auto Prob = TakenProb / numInEdges;
Cong Houe93b8e12015-12-22 18:56:14 +0000660 for (unsigned SuccIdx : InEdges)
661 setEdgeProbability(BB, SuccIdx, Prob);
Jakub Staszakbcb3c652011-07-28 21:33:46 +0000662 }
663
Chandler Carruth32f46e72011-10-25 09:47:41 +0000664 if (uint32_t numExitingEdges = ExitingEdges.size()) {
John Brawn29bbed32018-02-23 17:17:31 +0000665 BranchProbability NotTakenProb = BranchProbability(LBH_NONTAKEN_WEIGHT,
666 Denom);
667 auto Prob = NotTakenProb / numExitingEdges;
Cong Houe93b8e12015-12-22 18:56:14 +0000668 for (unsigned SuccIdx : ExitingEdges)
669 setEdgeProbability(BB, SuccIdx, Prob);
Andrew Trick49371f32011-06-04 01:16:30 +0000670 }
Jakub Staszakd07b2e12011-07-28 21:45:07 +0000671
John Brawn29bbed32018-02-23 17:17:31 +0000672 if (uint32_t numUnlikelyEdges = UnlikelyEdges.size()) {
673 BranchProbability UnlikelyProb = BranchProbability(LBH_UNLIKELY_WEIGHT,
674 Denom);
675 auto Prob = UnlikelyProb / numUnlikelyEdges;
676 for (unsigned SuccIdx : UnlikelyEdges)
677 setEdgeProbability(BB, SuccIdx, Prob);
678 }
679
Jakub Staszakd07b2e12011-07-28 21:45:07 +0000680 return true;
Andrew Trick49371f32011-06-04 01:16:30 +0000681}
682
John Brawnda4a68a2017-06-08 09:44:40 +0000683bool BranchProbabilityInfo::calcZeroHeuristics(const BasicBlock *BB,
684 const TargetLibraryInfo *TLI) {
Mehdi Aminia7978772016-04-07 21:59:28 +0000685 const BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
Jakub Staszak17af66a2011-07-31 03:27:24 +0000686 if (!BI || !BI->isConditional())
687 return false;
688
689 Value *Cond = BI->getCondition();
690 ICmpInst *CI = dyn_cast<ICmpInst>(Cond);
691 if (!CI)
692 return false;
693
Sam Parker0b53e842019-02-15 11:50:21 +0000694 auto GetConstantInt = [](Value *V) {
695 if (auto *I = dyn_cast<BitCastInst>(V))
696 return dyn_cast<ConstantInt>(I->getOperand(0));
697 return dyn_cast<ConstantInt>(V);
698 };
699
Jakub Staszak17af66a2011-07-31 03:27:24 +0000700 Value *RHS = CI->getOperand(1);
Sam Parker0b53e842019-02-15 11:50:21 +0000701 ConstantInt *CV = GetConstantInt(RHS);
Benjamin Kramer0ca1ad02011-09-04 23:53:04 +0000702 if (!CV)
Jakub Staszak17af66a2011-07-31 03:27:24 +0000703 return false;
704
Daniel Jaspera73f3d52015-04-15 06:24:07 +0000705 // If the LHS is the result of AND'ing a value with a single bit bitmask,
706 // we don't have information about probabilities.
707 if (Instruction *LHS = dyn_cast<Instruction>(CI->getOperand(0)))
708 if (LHS->getOpcode() == Instruction::And)
709 if (ConstantInt *AndRHS = dyn_cast<ConstantInt>(LHS->getOperand(1)))
Craig Topper4e22ee62017-08-04 16:59:29 +0000710 if (AndRHS->getValue().isPowerOf2())
Daniel Jaspera73f3d52015-04-15 06:24:07 +0000711 return false;
712
John Brawnda4a68a2017-06-08 09:44:40 +0000713 // Check if the LHS is the return value of a library function
714 LibFunc Func = NumLibFuncs;
715 if (TLI)
716 if (CallInst *Call = dyn_cast<CallInst>(CI->getOperand(0)))
717 if (Function *CalledFn = Call->getCalledFunction())
718 TLI->getLibFunc(*CalledFn, Func);
719
Jakub Staszak17af66a2011-07-31 03:27:24 +0000720 bool isProb;
John Brawnda4a68a2017-06-08 09:44:40 +0000721 if (Func == LibFunc_strcasecmp ||
722 Func == LibFunc_strcmp ||
723 Func == LibFunc_strncasecmp ||
724 Func == LibFunc_strncmp ||
725 Func == LibFunc_memcmp) {
726 // strcmp and similar functions return zero, negative, or positive, if the
727 // first string is equal, less, or greater than the second. We consider it
728 // likely that the strings are not equal, so a comparison with zero is
729 // probably false, but also a comparison with any other number is also
730 // probably false given that what exactly is returned for nonzero values is
731 // not specified. Any kind of comparison other than equality we know
732 // nothing about.
733 switch (CI->getPredicate()) {
734 case CmpInst::ICMP_EQ:
735 isProb = false;
736 break;
737 case CmpInst::ICMP_NE:
738 isProb = true;
739 break;
740 default:
741 return false;
742 }
743 } else if (CV->isZero()) {
Benjamin Kramer0ca1ad02011-09-04 23:53:04 +0000744 switch (CI->getPredicate()) {
745 case CmpInst::ICMP_EQ:
746 // X == 0 -> Unlikely
747 isProb = false;
748 break;
749 case CmpInst::ICMP_NE:
750 // X != 0 -> Likely
751 isProb = true;
752 break;
753 case CmpInst::ICMP_SLT:
754 // X < 0 -> Unlikely
755 isProb = false;
756 break;
757 case CmpInst::ICMP_SGT:
758 // X > 0 -> Likely
759 isProb = true;
760 break;
761 default:
762 return false;
763 }
764 } else if (CV->isOne() && CI->getPredicate() == CmpInst::ICMP_SLT) {
765 // InstCombine canonicalizes X <= 0 into X < 1.
766 // X <= 0 -> Unlikely
Jakub Staszak17af66a2011-07-31 03:27:24 +0000767 isProb = false;
Craig Topper79ab6432017-07-06 18:39:47 +0000768 } else if (CV->isMinusOne()) {
Hal Finkel4d949302013-11-01 10:58:22 +0000769 switch (CI->getPredicate()) {
770 case CmpInst::ICMP_EQ:
771 // X == -1 -> Unlikely
772 isProb = false;
773 break;
774 case CmpInst::ICMP_NE:
775 // X != -1 -> Likely
776 isProb = true;
777 break;
778 case CmpInst::ICMP_SGT:
779 // InstCombine canonicalizes X >= 0 into X > -1.
780 // X >= 0 -> Likely
781 isProb = true;
782 break;
783 default:
784 return false;
785 }
Benjamin Kramer0ca1ad02011-09-04 23:53:04 +0000786 } else {
Jakub Staszak17af66a2011-07-31 03:27:24 +0000787 return false;
Benjamin Kramer0ca1ad02011-09-04 23:53:04 +0000788 }
Jakub Staszak17af66a2011-07-31 03:27:24 +0000789
Manman Rencf104462012-08-24 18:14:27 +0000790 unsigned TakenIdx = 0, NonTakenIdx = 1;
Jakub Staszak17af66a2011-07-31 03:27:24 +0000791
792 if (!isProb)
Manman Rencf104462012-08-24 18:14:27 +0000793 std::swap(TakenIdx, NonTakenIdx);
Jakub Staszak17af66a2011-07-31 03:27:24 +0000794
Cong Houe93b8e12015-12-22 18:56:14 +0000795 BranchProbability TakenProb(ZH_TAKEN_WEIGHT,
796 ZH_TAKEN_WEIGHT + ZH_NONTAKEN_WEIGHT);
797 setEdgeProbability(BB, TakenIdx, TakenProb);
798 setEdgeProbability(BB, NonTakenIdx, TakenProb.getCompl());
Jakub Staszak17af66a2011-07-31 03:27:24 +0000799 return true;
800}
801
Mehdi Aminia7978772016-04-07 21:59:28 +0000802bool BranchProbabilityInfo::calcFloatingPointHeuristics(const BasicBlock *BB) {
803 const BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
Benjamin Kramer1e731a12011-10-21 20:12:47 +0000804 if (!BI || !BI->isConditional())
805 return false;
806
807 Value *Cond = BI->getCondition();
808 FCmpInst *FCmp = dyn_cast<FCmpInst>(Cond);
Benjamin Kramer606a50a2011-10-21 21:13:47 +0000809 if (!FCmp)
Benjamin Kramer1e731a12011-10-21 20:12:47 +0000810 return false;
811
Guozhi Weib329e072019-09-10 17:25:11 +0000812 uint32_t TakenWeight = FPH_TAKEN_WEIGHT;
813 uint32_t NontakenWeight = FPH_NONTAKEN_WEIGHT;
Benjamin Kramer606a50a2011-10-21 21:13:47 +0000814 bool isProb;
815 if (FCmp->isEquality()) {
816 // f1 == f2 -> Unlikely
817 // f1 != f2 -> Likely
818 isProb = !FCmp->isTrueWhenEqual();
819 } else if (FCmp->getPredicate() == FCmpInst::FCMP_ORD) {
820 // !isnan -> Likely
821 isProb = true;
Guozhi Weib329e072019-09-10 17:25:11 +0000822 TakenWeight = FPH_ORD_WEIGHT;
823 NontakenWeight = FPH_UNO_WEIGHT;
Benjamin Kramer606a50a2011-10-21 21:13:47 +0000824 } else if (FCmp->getPredicate() == FCmpInst::FCMP_UNO) {
825 // isnan -> Unlikely
826 isProb = false;
Guozhi Weib329e072019-09-10 17:25:11 +0000827 TakenWeight = FPH_ORD_WEIGHT;
828 NontakenWeight = FPH_UNO_WEIGHT;
Benjamin Kramer606a50a2011-10-21 21:13:47 +0000829 } else {
830 return false;
831 }
832
Manman Rencf104462012-08-24 18:14:27 +0000833 unsigned TakenIdx = 0, NonTakenIdx = 1;
Benjamin Kramer1e731a12011-10-21 20:12:47 +0000834
Benjamin Kramer606a50a2011-10-21 21:13:47 +0000835 if (!isProb)
Manman Rencf104462012-08-24 18:14:27 +0000836 std::swap(TakenIdx, NonTakenIdx);
Benjamin Kramer1e731a12011-10-21 20:12:47 +0000837
Guozhi Weib329e072019-09-10 17:25:11 +0000838 BranchProbability TakenProb(TakenWeight, TakenWeight + NontakenWeight);
Cong Houe93b8e12015-12-22 18:56:14 +0000839 setEdgeProbability(BB, TakenIdx, TakenProb);
840 setEdgeProbability(BB, NonTakenIdx, TakenProb.getCompl());
Benjamin Kramer1e731a12011-10-21 20:12:47 +0000841 return true;
842}
Jakub Staszak17af66a2011-07-31 03:27:24 +0000843
Mehdi Aminia7978772016-04-07 21:59:28 +0000844bool BranchProbabilityInfo::calcInvokeHeuristics(const BasicBlock *BB) {
845 const InvokeInst *II = dyn_cast<InvokeInst>(BB->getTerminator());
Bill Wendlinge1c54262012-08-15 12:22:35 +0000846 if (!II)
847 return false;
848
Cong Houe93b8e12015-12-22 18:56:14 +0000849 BranchProbability TakenProb(IH_TAKEN_WEIGHT,
850 IH_TAKEN_WEIGHT + IH_NONTAKEN_WEIGHT);
851 setEdgeProbability(BB, 0 /*Index for Normal*/, TakenProb);
852 setEdgeProbability(BB, 1 /*Index for Unwind*/, TakenProb.getCompl());
Bill Wendlinge1c54262012-08-15 12:22:35 +0000853 return true;
854}
855
Pete Cooperb9d2e342015-05-28 19:43:06 +0000856void BranchProbabilityInfo::releaseMemory() {
Cong Houe93b8e12015-12-22 18:56:14 +0000857 Probs.clear();
Nikita Popovfe8abbf2020-04-07 21:21:30 +0200858 Handles.clear();
Pete Cooperb9d2e342015-05-28 19:43:06 +0000859}
860
Alina Sbirlea62a50a92020-01-15 14:02:33 -0800861bool BranchProbabilityInfo::invalidate(Function &, const PreservedAnalyses &PA,
862 FunctionAnalysisManager::Invalidator &) {
863 // Check whether the analysis, all analyses on functions, or the function's
864 // CFG have been preserved.
865 auto PAC = PA.getChecker<BranchProbabilityAnalysis>();
866 return !(PAC.preserved() || PAC.preservedSet<AllAnalysesOn<Function>>() ||
867 PAC.preservedSet<CFGAnalyses>());
868}
869
Cong Houab23bfb2015-07-15 22:48:29 +0000870void BranchProbabilityInfo::print(raw_ostream &OS) const {
Chandler Carruth1c8ace02011-10-23 21:21:50 +0000871 OS << "---- Branch Probabilities ----\n";
872 // We print the probabilities from the last function the analysis ran over,
873 // or the function it is currently running over.
874 assert(LastF && "Cannot print prior to running over a function");
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +0000875 for (const auto &BI : *LastF) {
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700876 for (const_succ_iterator SI = succ_begin(&BI), SE = succ_end(&BI); SI != SE;
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +0000877 ++SI) {
878 printEdgeProbability(OS << " ", &BI, *SI);
Duncan P. N. Exon Smith6c990152014-07-21 17:06:51 +0000879 }
880 }
Chandler Carruth1c8ace02011-10-23 21:21:50 +0000881}
882
Jakub Staszakefd94c82011-07-29 19:30:00 +0000883bool BranchProbabilityInfo::
884isEdgeHot(const BasicBlock *Src, const BasicBlock *Dst) const {
Andrew Trick3d4e64b2011-06-11 01:05:22 +0000885 // Hot probability is at least 4/5 = 80%
Benjamin Kramer929f53f2011-10-23 11:19:14 +0000886 // FIXME: Compare against a static "hot" BranchProbability.
887 return getEdgeProbability(Src, Dst) > BranchProbability(4, 5);
Andrew Trick49371f32011-06-04 01:16:30 +0000888}
889
Mehdi Aminia7978772016-04-07 21:59:28 +0000890const BasicBlock *
891BranchProbabilityInfo::getHotSucc(const BasicBlock *BB) const {
Cong Houe93b8e12015-12-22 18:56:14 +0000892 auto MaxProb = BranchProbability::getZero();
Mehdi Aminia7978772016-04-07 21:59:28 +0000893 const BasicBlock *MaxSucc = nullptr;
Andrew Trick49371f32011-06-04 01:16:30 +0000894
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700895 for (const_succ_iterator I = succ_begin(BB), E = succ_end(BB); I != E; ++I) {
Mehdi Aminia7978772016-04-07 21:59:28 +0000896 const BasicBlock *Succ = *I;
Cong Houe93b8e12015-12-22 18:56:14 +0000897 auto Prob = getEdgeProbability(BB, Succ);
898 if (Prob > MaxProb) {
899 MaxProb = Prob;
Andrew Trick49371f32011-06-04 01:16:30 +0000900 MaxSucc = Succ;
901 }
902 }
903
Benjamin Kramer929f53f2011-10-23 11:19:14 +0000904 // Hot probability is at least 4/5 = 80%
Cong Houe93b8e12015-12-22 18:56:14 +0000905 if (MaxProb > BranchProbability(4, 5))
Andrew Trick49371f32011-06-04 01:16:30 +0000906 return MaxSucc;
907
Craig Topper9f008862014-04-15 04:59:12 +0000908 return nullptr;
Andrew Trick49371f32011-06-04 01:16:30 +0000909}
910
Cong Houe93b8e12015-12-22 18:56:14 +0000911/// Get the raw edge probability for the edge. If can't find it, return a
912/// default probability 1/N where N is the number of successors. Here an edge is
913/// specified using PredBlock and an
914/// index to the successors.
915BranchProbability
916BranchProbabilityInfo::getEdgeProbability(const BasicBlock *Src,
917 unsigned IndexInSuccessors) const {
918 auto I = Probs.find(std::make_pair(Src, IndexInSuccessors));
Andrew Trick49371f32011-06-04 01:16:30 +0000919
Cong Houe93b8e12015-12-22 18:56:14 +0000920 if (I != Probs.end())
Andrew Trick49371f32011-06-04 01:16:30 +0000921 return I->second;
922
Vedant Kumare0b5f862018-05-10 23:01:54 +0000923 return {1, static_cast<uint32_t>(succ_size(Src))};
Andrew Trick49371f32011-06-04 01:16:30 +0000924}
925
Cong Houd97c1002015-12-01 05:29:22 +0000926BranchProbability
927BranchProbabilityInfo::getEdgeProbability(const BasicBlock *Src,
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700928 const_succ_iterator Dst) const {
Cong Houd97c1002015-12-01 05:29:22 +0000929 return getEdgeProbability(Src, Dst.getSuccessorIndex());
930}
931
Cong Houe93b8e12015-12-22 18:56:14 +0000932/// Get the raw edge probability calculated for the block pair. This returns the
933/// sum of all raw edge probabilities from Src to Dst.
934BranchProbability
935BranchProbabilityInfo::getEdgeProbability(const BasicBlock *Src,
936 const BasicBlock *Dst) const {
937 auto Prob = BranchProbability::getZero();
938 bool FoundProb = false;
Evgeniy Brevnovbb0842a2020-04-29 14:08:01 +0700939 uint32_t EdgeCount = 0;
Alina Sbirlea3abcbf92020-03-10 11:33:02 -0700940 for (const_succ_iterator I = succ_begin(Src), E = succ_end(Src); I != E; ++I)
Cong Houe93b8e12015-12-22 18:56:14 +0000941 if (*I == Dst) {
Evgeniy Brevnovbb0842a2020-04-29 14:08:01 +0700942 ++EdgeCount;
Cong Houe93b8e12015-12-22 18:56:14 +0000943 auto MapI = Probs.find(std::make_pair(Src, I.getSuccessorIndex()));
944 if (MapI != Probs.end()) {
945 FoundProb = true;
946 Prob += MapI->second;
947 }
948 }
949 uint32_t succ_num = std::distance(succ_begin(Src), succ_end(Src));
Evgeniy Brevnovbb0842a2020-04-29 14:08:01 +0700950 return FoundProb ? Prob : BranchProbability(EdgeCount, succ_num);
Cong Houe93b8e12015-12-22 18:56:14 +0000951}
952
953/// Set the edge probability for a given edge specified by PredBlock and an
954/// index to the successors.
955void BranchProbabilityInfo::setEdgeProbability(const BasicBlock *Src,
956 unsigned IndexInSuccessors,
957 BranchProbability Prob) {
958 Probs[std::make_pair(Src, IndexInSuccessors)] = Prob;
Igor Laevskyee40d1e2016-07-15 14:31:16 +0000959 Handles.insert(BasicBlockCallbackVH(Src, this));
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000960 LLVM_DEBUG(dbgs() << "set edge " << Src->getName() << " -> "
961 << IndexInSuccessors << " successor probability to " << Prob
962 << "\n");
Cong Houe93b8e12015-12-22 18:56:14 +0000963}
964
Andrew Trick49371f32011-06-04 01:16:30 +0000965raw_ostream &
Chandler Carruth1c8ace02011-10-23 21:21:50 +0000966BranchProbabilityInfo::printEdgeProbability(raw_ostream &OS,
967 const BasicBlock *Src,
968 const BasicBlock *Dst) const {
Jakub Staszak12a43bd2011-06-16 20:22:37 +0000969 const BranchProbability Prob = getEdgeProbability(Src, Dst);
Benjamin Kramer1f97a5a2011-11-15 16:27:03 +0000970 OS << "edge " << Src->getName() << " -> " << Dst->getName()
Andrew Trick3d4e64b2011-06-11 01:05:22 +0000971 << " probability is " << Prob
972 << (isEdgeHot(Src, Dst) ? " [HOT edge]\n" : "\n");
Andrew Trick49371f32011-06-04 01:16:30 +0000973
974 return OS;
975}
Cong Houab23bfb2015-07-15 22:48:29 +0000976
Igor Laevskyee40d1e2016-07-15 14:31:16 +0000977void BranchProbabilityInfo::eraseBlock(const BasicBlock *BB) {
978 for (auto I = Probs.begin(), E = Probs.end(); I != E; ++I) {
979 auto Key = I->first;
980 if (Key.first == BB)
981 Probs.erase(Key);
982 }
983}
984
John Brawnda4a68a2017-06-08 09:44:40 +0000985void BranchProbabilityInfo::calculate(const Function &F, const LoopInfo &LI,
Evgeniy Brevnov3e68a6672020-04-28 16:31:20 +0700986 const TargetLibraryInfo *TLI,
987 PostDominatorTree *PDT) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000988 LLVM_DEBUG(dbgs() << "---- Branch Probability Info : " << F.getName()
989 << " ----\n\n");
Cong Houab23bfb2015-07-15 22:48:29 +0000990 LastF = &F; // Store the last function we ran on for printing.
991 assert(PostDominatedByUnreachable.empty());
992 assert(PostDominatedByColdCall.empty());
993
Geoff Berryeed65312017-11-01 15:16:50 +0000994 // Record SCC numbers of blocks in the CFG to identify irreducible loops.
995 // FIXME: We could only calculate this if the CFG is known to be irreducible
996 // (perhaps cache this info in LoopInfo if we can easily calculate it there?).
997 int SccNum = 0;
998 SccInfo SccI;
999 for (scc_iterator<const Function *> It = scc_begin(&F); !It.isAtEnd();
1000 ++It, ++SccNum) {
1001 // Ignore single-block SCCs since they either aren't loops or LoopInfo will
1002 // catch them.
1003 const std::vector<const BasicBlock *> &Scc = *It;
1004 if (Scc.size() == 1)
1005 continue;
1006
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001007 LLVM_DEBUG(dbgs() << "BPI: SCC " << SccNum << ":");
Geoff Berryeed65312017-11-01 15:16:50 +00001008 for (auto *BB : Scc) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001009 LLVM_DEBUG(dbgs() << " " << BB->getName());
Geoff Berryeed65312017-11-01 15:16:50 +00001010 SccI.SccNums[BB] = SccNum;
1011 }
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001012 LLVM_DEBUG(dbgs() << "\n");
Geoff Berryeed65312017-11-01 15:16:50 +00001013 }
1014
Evgeniy Brevnov3e68a6672020-04-28 16:31:20 +07001015 std::unique_ptr<PostDominatorTree> PDTPtr;
1016
1017 if (!PDT) {
1018 PDTPtr = std::make_unique<PostDominatorTree>(const_cast<Function &>(F));
1019 PDT = PDTPtr.get();
1020 }
1021
1022 computePostDominatedByUnreachable(F, PDT);
1023 computePostDominatedByColdCall(F, PDT);
Taewook Oh2da205d2019-12-02 10:15:22 -08001024
Cong Houab23bfb2015-07-15 22:48:29 +00001025 // Walk the basic blocks in post-order so that we can build up state about
1026 // the successors of a block iteratively.
1027 for (auto BB : post_order(&F.getEntryBlock())) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001028 LLVM_DEBUG(dbgs() << "Computing probabilities for " << BB->getName()
1029 << "\n");
Serguei Katkov11d9c4f2017-04-17 06:39:47 +00001030 // If there is no at least two successors, no sense to set probability.
1031 if (BB->getTerminator()->getNumSuccessors() < 2)
1032 continue;
Cong Houab23bfb2015-07-15 22:48:29 +00001033 if (calcMetadataWeights(BB))
1034 continue;
Artur Pilipenko4d063e72018-06-08 13:03:21 +00001035 if (calcInvokeHeuristics(BB))
1036 continue;
Serguei Katkov2616bbb2017-04-17 04:33:04 +00001037 if (calcUnreachableHeuristics(BB))
1038 continue;
Cong Houab23bfb2015-07-15 22:48:29 +00001039 if (calcColdCallHeuristics(BB))
1040 continue;
Geoff Berryeed65312017-11-01 15:16:50 +00001041 if (calcLoopBranchHeuristics(BB, LI, SccI))
Cong Houab23bfb2015-07-15 22:48:29 +00001042 continue;
1043 if (calcPointerHeuristics(BB))
1044 continue;
John Brawnda4a68a2017-06-08 09:44:40 +00001045 if (calcZeroHeuristics(BB, TLI))
Cong Houab23bfb2015-07-15 22:48:29 +00001046 continue;
1047 if (calcFloatingPointHeuristics(BB))
1048 continue;
Cong Houab23bfb2015-07-15 22:48:29 +00001049 }
1050
1051 PostDominatedByUnreachable.clear();
1052 PostDominatedByColdCall.clear();
Hiroshi Yamauchi63e17eb2017-08-26 00:31:00 +00001053
1054 if (PrintBranchProb &&
1055 (PrintBranchProbFuncName.empty() ||
1056 F.getName().equals(PrintBranchProbFuncName))) {
1057 print(dbgs());
1058 }
Cong Houab23bfb2015-07-15 22:48:29 +00001059}
1060
1061void BranchProbabilityInfoWrapperPass::getAnalysisUsage(
1062 AnalysisUsage &AU) const {
Mikael Holmen2ca16892018-05-17 09:05:40 +00001063 // We require DT so it's available when LI is available. The LI updating code
1064 // asserts that DT is also present so if we don't make sure that we have DT
1065 // here, that assert will trigger.
1066 AU.addRequired<DominatorTreeWrapperPass>();
Cong Houab23bfb2015-07-15 22:48:29 +00001067 AU.addRequired<LoopInfoWrapperPass>();
John Brawnda4a68a2017-06-08 09:44:40 +00001068 AU.addRequired<TargetLibraryInfoWrapperPass>();
Evgeniy Brevnov3e68a6672020-04-28 16:31:20 +07001069 AU.addRequired<PostDominatorTreeWrapperPass>();
Cong Houab23bfb2015-07-15 22:48:29 +00001070 AU.setPreservesAll();
1071}
1072
1073bool BranchProbabilityInfoWrapperPass::runOnFunction(Function &F) {
1074 const LoopInfo &LI = getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
Teresa Johnson9c27b592019-09-07 03:09:36 +00001075 const TargetLibraryInfo &TLI =
1076 getAnalysis<TargetLibraryInfoWrapperPass>().getTLI(F);
Evgeniy Brevnov3e68a6672020-04-28 16:31:20 +07001077 PostDominatorTree &PDT =
1078 getAnalysis<PostDominatorTreeWrapperPass>().getPostDomTree();
1079 BPI.calculate(F, LI, &TLI, &PDT);
Cong Houab23bfb2015-07-15 22:48:29 +00001080 return false;
1081}
1082
1083void BranchProbabilityInfoWrapperPass::releaseMemory() { BPI.releaseMemory(); }
1084
1085void BranchProbabilityInfoWrapperPass::print(raw_ostream &OS,
1086 const Module *) const {
1087 BPI.print(OS);
1088}
Xinliang David Li6e5dd412016-05-05 02:59:57 +00001089
Chandler Carruthdab4eae2016-11-23 17:53:26 +00001090AnalysisKey BranchProbabilityAnalysis::Key;
Xinliang David Li6e5dd412016-05-05 02:59:57 +00001091BranchProbabilityInfo
Sean Silva36e0d012016-08-09 00:28:15 +00001092BranchProbabilityAnalysis::run(Function &F, FunctionAnalysisManager &AM) {
Xinliang David Li6e5dd412016-05-05 02:59:57 +00001093 BranchProbabilityInfo BPI;
Evgeniy Brevnov3e68a6672020-04-28 16:31:20 +07001094 BPI.calculate(F, AM.getResult<LoopAnalysis>(F),
1095 &AM.getResult<TargetLibraryAnalysis>(F),
1096 &AM.getResult<PostDominatorTreeAnalysis>(F));
Xinliang David Li6e5dd412016-05-05 02:59:57 +00001097 return BPI;
1098}
1099
1100PreservedAnalyses
Sean Silva36e0d012016-08-09 00:28:15 +00001101BranchProbabilityPrinterPass::run(Function &F, FunctionAnalysisManager &AM) {
Xinliang David Li6e5dd412016-05-05 02:59:57 +00001102 OS << "Printing analysis results of BPI for function "
1103 << "'" << F.getName() << "':"
1104 << "\n";
1105 AM.getResult<BranchProbabilityAnalysis>(F).print(OS);
1106 return PreservedAnalyses::all();
1107}