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Dan Gohman4552e3c2009-10-13 18:30:07 +00001//===- InlineCost.cpp - Cost analysis for inliner -------------------------===//
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 inline cost analysis.
11//
12//===----------------------------------------------------------------------===//
13
14#include "llvm/Analysis/InlineCost.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000015#include "llvm/ADT/STLExtras.h"
16#include "llvm/ADT/SetVector.h"
17#include "llvm/ADT/SmallPtrSet.h"
18#include "llvm/ADT/SmallVector.h"
19#include "llvm/ADT/Statistic.h"
Daniel Jasperaec2fa32016-12-19 08:22:17 +000020#include "llvm/Analysis/AssumptionCache.h"
Easwaran Raman12585b02017-01-20 22:44:04 +000021#include "llvm/Analysis/BlockFrequencyInfo.h"
Hal Finkel57f03dd2014-09-07 13:49:57 +000022#include "llvm/Analysis/CodeMetrics.h"
Chandler Carruthd9903882015-01-14 11:23:27 +000023#include "llvm/Analysis/ConstantFolding.h"
Haicheng Wu3739e142017-12-14 14:36:18 +000024#include "llvm/Analysis/CFG.h"
Chandler Carruth0539c072012-03-31 12:42:41 +000025#include "llvm/Analysis/InstructionSimplify.h"
Easwaran Raman71069cf2016-06-09 22:23:21 +000026#include "llvm/Analysis/ProfileSummaryInfo.h"
Chandler Carruth42f3dce2013-01-21 11:55:09 +000027#include "llvm/Analysis/TargetTransformInfo.h"
Haicheng Wua4461512017-12-15 14:34:41 +000028#include "llvm/Analysis/ValueTracking.h"
Chandler Carruth219b89b2014-03-04 11:01:28 +000029#include "llvm/IR/CallSite.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000030#include "llvm/IR/CallingConv.h"
31#include "llvm/IR/DataLayout.h"
Chandler Carruth03eb0de2014-03-04 10:40:04 +000032#include "llvm/IR/GetElementPtrTypeIterator.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000033#include "llvm/IR/GlobalAlias.h"
Chandler Carruth7da14f12014-03-06 03:23:41 +000034#include "llvm/IR/InstVisitor.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000035#include "llvm/IR/IntrinsicInst.h"
36#include "llvm/IR/Operator.h"
Chandler Carruth0539c072012-03-31 12:42:41 +000037#include "llvm/Support/Debug.h"
Chandler Carruth0539c072012-03-31 12:42:41 +000038#include "llvm/Support/raw_ostream.h"
Eric Christopher2dfbd7e2011-02-05 00:49:15 +000039
Dan Gohman4552e3c2009-10-13 18:30:07 +000040using namespace llvm;
41
Chandler Carruthf1221bd2014-04-22 02:48:03 +000042#define DEBUG_TYPE "inline-cost"
43
Chandler Carruth7ae90d42012-04-11 10:15:10 +000044STATISTIC(NumCallsAnalyzed, "Number of call sites analyzed");
45
Easwaran Raman1c57cc22016-08-10 00:48:04 +000046static cl::opt<int> InlineThreshold(
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +000047 "inline-threshold", cl::Hidden, cl::init(225), cl::ZeroOrMore,
48 cl::desc("Control the amount of inlining to perform (default = 225)"));
49
50static cl::opt<int> HintThreshold(
51 "inlinehint-threshold", cl::Hidden, cl::init(325),
52 cl::desc("Threshold for inlining functions with inline hint"));
53
Easwaran Raman12585b02017-01-20 22:44:04 +000054static cl::opt<int>
55 ColdCallSiteThreshold("inline-cold-callsite-threshold", cl::Hidden,
56 cl::init(45),
57 cl::desc("Threshold for inlining cold callsites"));
58
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +000059// We introduce this threshold to help performance of instrumentation based
60// PGO before we actually hook up inliner with analysis passes such as BPI and
61// BFI.
62static cl::opt<int> ColdThreshold(
Easwaran Ramanc103ef82017-05-11 21:36:28 +000063 "inlinecold-threshold", cl::Hidden, cl::init(45),
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +000064 cl::desc("Threshold for inlining functions with cold attribute"));
65
Dehao Chende39cb92016-08-05 20:28:41 +000066static cl::opt<int>
67 HotCallSiteThreshold("hot-callsite-threshold", cl::Hidden, cl::init(3000),
68 cl::ZeroOrMore,
69 cl::desc("Threshold for hot callsites "));
70
Easwaran Raman974d4ee2017-08-03 22:23:33 +000071static cl::opt<int> LocallyHotCallSiteThreshold(
72 "locally-hot-callsite-threshold", cl::Hidden, cl::init(525), cl::ZeroOrMore,
73 cl::desc("Threshold for locally hot callsites "));
74
Easwaran Ramanc5fa6352017-06-27 23:11:18 +000075static cl::opt<int> ColdCallSiteRelFreq(
76 "cold-callsite-rel-freq", cl::Hidden, cl::init(2), cl::ZeroOrMore,
77 cl::desc("Maxmimum block frequency, expressed as a percentage of caller's "
78 "entry frequency, for a callsite to be cold in the absence of "
79 "profile information."));
80
Easwaran Raman974d4ee2017-08-03 22:23:33 +000081static cl::opt<int> HotCallSiteRelFreq(
82 "hot-callsite-rel-freq", cl::Hidden, cl::init(60), cl::ZeroOrMore,
Easwaran Ramanff77cc72017-08-04 17:15:17 +000083 cl::desc("Minimum block frequency, expressed as a multiple of caller's "
Easwaran Raman974d4ee2017-08-03 22:23:33 +000084 "entry frequency, for a callsite to be hot in the absence of "
85 "profile information."));
86
Easwaran Raman4924bb02017-09-13 20:16:02 +000087static cl::opt<bool> OptComputeFullInlineCost(
Haicheng Wu0812c5b2017-08-21 20:00:09 +000088 "inline-cost-full", cl::Hidden, cl::init(false),
89 cl::desc("Compute the full inline cost of a call site even when the cost "
90 "exceeds the threshold."));
91
Chandler Carruth0539c072012-03-31 12:42:41 +000092namespace {
Chandler Carrutha3089552012-03-14 07:32:53 +000093
Chandler Carruth0539c072012-03-31 12:42:41 +000094class CallAnalyzer : public InstVisitor<CallAnalyzer, bool> {
95 typedef InstVisitor<CallAnalyzer, bool> Base;
96 friend class InstVisitor<CallAnalyzer, bool>;
Owen Andersona08318a2010-09-09 16:56:42 +000097
Chandler Carruth42f3dce2013-01-21 11:55:09 +000098 /// The TargetTransformInfo available for this compilation.
99 const TargetTransformInfo &TTI;
100
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000101 /// Getter for the cache of @llvm.assume intrinsics.
102 std::function<AssumptionCache &(Function &)> &GetAssumptionCache;
103
Easwaran Raman12585b02017-01-20 22:44:04 +0000104 /// Getter for BlockFrequencyInfo
105 Optional<function_ref<BlockFrequencyInfo &(Function &)>> &GetBFI;
106
Easwaran Raman71069cf2016-06-09 22:23:21 +0000107 /// Profile summary information.
108 ProfileSummaryInfo *PSI;
109
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000110 /// The called function.
Chandler Carruth0539c072012-03-31 12:42:41 +0000111 Function &F;
Owen Andersona08318a2010-09-09 16:56:42 +0000112
Eric Christopher85be8ca2017-04-15 06:14:50 +0000113 // Cache the DataLayout since we use it a lot.
114 const DataLayout &DL;
115
Haicheng Wu0812c5b2017-08-21 20:00:09 +0000116 /// The OptimizationRemarkEmitter available for this compilation.
117 OptimizationRemarkEmitter *ORE;
118
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000119 /// The candidate callsite being analyzed. Please do not use this to do
120 /// analysis in the caller function; we want the inline cost query to be
121 /// easily cacheable. Instead, use the cover function paramHasAttr.
Philip Reames9b5c9582015-06-26 20:51:17 +0000122 CallSite CandidateCS;
123
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000124 /// Tunable parameters that control the analysis.
Easwaran Raman1c57cc22016-08-10 00:48:04 +0000125 const InlineParams &Params;
126
Chandler Carruth0539c072012-03-31 12:42:41 +0000127 int Threshold;
128 int Cost;
Easwaran Raman4924bb02017-09-13 20:16:02 +0000129 bool ComputeFullInlineCost;
Owen Andersona08318a2010-09-09 16:56:42 +0000130
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +0000131 bool IsCallerRecursive;
132 bool IsRecursiveCall;
Chandler Carruth0539c072012-03-31 12:42:41 +0000133 bool ExposesReturnsTwice;
134 bool HasDynamicAlloca;
James Molloy4f6fb952012-12-20 16:04:27 +0000135 bool ContainsNoDuplicateCall;
Chandler Carruth0814d2a2013-12-13 07:59:56 +0000136 bool HasReturn;
137 bool HasIndirectBr;
Reid Kleckner223de262015-04-14 20:38:14 +0000138 bool HasFrameEscape;
James Molloy4f6fb952012-12-20 16:04:27 +0000139
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +0000140 /// Number of bytes allocated statically by the callee.
141 uint64_t AllocatedSize;
Chandler Carruth0539c072012-03-31 12:42:41 +0000142 unsigned NumInstructions, NumVectorInstructions;
Easwaran Raman51b809b2017-07-28 21:47:36 +0000143 int VectorBonus, TenPercentVectorBonus;
144 // Bonus to be applied when the callee has only one reachable basic block.
145 int SingleBBBonus;
Chandler Carruth0539c072012-03-31 12:42:41 +0000146
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000147 /// While we walk the potentially-inlined instructions, we build up and
148 /// maintain a mapping of simplified values specific to this callsite. The
149 /// idea is to propagate any special information we have about arguments to
150 /// this call through the inlinable section of the function, and account for
151 /// likely simplifications post-inlining. The most important aspect we track
152 /// is CFG altering simplifications -- when we prove a basic block dead, that
153 /// can cause dramatic shifts in the cost of inlining a function.
Chandler Carruth0539c072012-03-31 12:42:41 +0000154 DenseMap<Value *, Constant *> SimplifiedValues;
155
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000156 /// Keep track of the values which map back (through function arguments) to
157 /// allocas on the caller stack which could be simplified through SROA.
Chandler Carruth0539c072012-03-31 12:42:41 +0000158 DenseMap<Value *, Value *> SROAArgValues;
159
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000160 /// The mapping of caller Alloca values to their accumulated cost savings. If
161 /// we have to disable SROA for one of the allocas, this tells us how much
162 /// cost must be added.
Chandler Carruth0539c072012-03-31 12:42:41 +0000163 DenseMap<Value *, int> SROAArgCosts;
164
Piotr Padlewskif3d122c2016-09-30 21:05:49 +0000165 /// Keep track of values which map to a pointer base and constant offset.
Chad Rosier567556a2016-04-28 14:47:23 +0000166 DenseMap<Value *, std::pair<Value *, APInt>> ConstantOffsetPtrs;
Chandler Carruth0539c072012-03-31 12:42:41 +0000167
Haicheng Wu3739e142017-12-14 14:36:18 +0000168 /// Keep track of dead blocks due to the constant arguments.
169 SetVector<BasicBlock *> DeadBlocks;
170
171 /// The mapping of the blocks to their known unique successors due to the
172 /// constant arguments.
173 DenseMap<BasicBlock *, BasicBlock *> KnownSuccessors;
174
Haicheng Wua4461512017-12-15 14:34:41 +0000175 /// Model the elimination of repeated loads that is expected to happen
176 /// whenever we simplify away the stores that would otherwise cause them to be
177 /// loads.
178 bool EnableLoadElimination;
179 SmallPtrSet<Value *, 16> LoadAddrSet;
180 int LoadEliminationCost;
181
Chandler Carruth0539c072012-03-31 12:42:41 +0000182 // Custom simplification helper routines.
183 bool isAllocaDerivedArg(Value *V);
184 bool lookupSROAArgAndCost(Value *V, Value *&Arg,
185 DenseMap<Value *, int>::iterator &CostIt);
186 void disableSROA(DenseMap<Value *, int>::iterator CostIt);
187 void disableSROA(Value *V);
Haicheng Wu3739e142017-12-14 14:36:18 +0000188 void findDeadBlocks(BasicBlock *CurrBB, BasicBlock *NextBB);
Chandler Carruth0539c072012-03-31 12:42:41 +0000189 void accumulateSROACost(DenseMap<Value *, int>::iterator CostIt,
190 int InstructionCost);
Haicheng Wua4461512017-12-15 14:34:41 +0000191 void disableLoadElimination();
Haicheng Wu201b1912017-01-20 18:51:22 +0000192 bool isGEPFree(GetElementPtrInst &GEP);
Evgeny Astigeevichd3558b52017-10-03 12:00:40 +0000193 bool canFoldInboundsGEP(GetElementPtrInst &I);
Chandler Carruth0539c072012-03-31 12:42:41 +0000194 bool accumulateGEPOffset(GEPOperator &GEP, APInt &Offset);
Chandler Carruth753e21d2012-12-28 14:23:32 +0000195 bool simplifyCallSite(Function *F, CallSite CS);
Easwaran Raman617f6362017-02-18 17:22:52 +0000196 template <typename Callable>
197 bool simplifyInstruction(Instruction &I, Callable Evaluate);
Chandler Carruth0539c072012-03-31 12:42:41 +0000198 ConstantInt *stripAndComputeInBoundsConstantOffsets(Value *&V);
199
Philip Reames9b5c9582015-06-26 20:51:17 +0000200 /// Return true if the given argument to the function being considered for
201 /// inlining has the given attribute set either at the call site or the
202 /// function declaration. Primarily used to inspect call site specific
203 /// attributes since these can be more precise than the ones on the callee
Easwaran Raman3676da42015-12-03 19:03:20 +0000204 /// itself.
Philip Reames9b5c9582015-06-26 20:51:17 +0000205 bool paramHasAttr(Argument *A, Attribute::AttrKind Attr);
Chad Rosier567556a2016-04-28 14:47:23 +0000206
Philip Reames9b5c9582015-06-26 20:51:17 +0000207 /// Return true if the given value is known non null within the callee if
Easwaran Raman3676da42015-12-03 19:03:20 +0000208 /// inlined through this particular callsite.
Philip Reames9b5c9582015-06-26 20:51:17 +0000209 bool isKnownNonNullInCallee(Value *V);
210
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +0000211 /// Update Threshold based on callsite properties such as callee
212 /// attributes and callee hotness for PGO builds. The Callee is explicitly
213 /// passed to support analyzing indirect calls whose target is inferred by
214 /// analysis.
215 void updateThreshold(CallSite CS, Function &Callee);
216
Easwaran Raman9a3fc172016-04-08 21:28:02 +0000217 /// Return true if size growth is allowed when inlining the callee at CS.
218 bool allowSizeGrowth(CallSite CS);
219
Easwaran Ramanc5fa6352017-06-27 23:11:18 +0000220 /// Return true if \p CS is a cold callsite.
221 bool isColdCallSite(CallSite CS, BlockFrequencyInfo *CallerBFI);
222
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000223 /// Return a higher threshold if \p CS is a hot callsite.
224 Optional<int> getHotCallSiteThreshold(CallSite CS,
225 BlockFrequencyInfo *CallerBFI);
226
Chandler Carruth0539c072012-03-31 12:42:41 +0000227 // Custom analysis routines.
Hal Finkel57f03dd2014-09-07 13:49:57 +0000228 bool analyzeBlock(BasicBlock *BB, SmallPtrSetImpl<const Value *> &EphValues);
Chandler Carruth0539c072012-03-31 12:42:41 +0000229
230 // Disable several entry points to the visitor so we don't accidentally use
231 // them by declaring but not defining them here.
Chad Rosier567556a2016-04-28 14:47:23 +0000232 void visit(Module *);
233 void visit(Module &);
234 void visit(Function *);
235 void visit(Function &);
236 void visit(BasicBlock *);
237 void visit(BasicBlock &);
Chandler Carruth0539c072012-03-31 12:42:41 +0000238
239 // Provide base case for our instruction visit.
240 bool visitInstruction(Instruction &I);
241
242 // Our visit overrides.
243 bool visitAlloca(AllocaInst &I);
244 bool visitPHI(PHINode &I);
245 bool visitGetElementPtr(GetElementPtrInst &I);
246 bool visitBitCast(BitCastInst &I);
247 bool visitPtrToInt(PtrToIntInst &I);
248 bool visitIntToPtr(IntToPtrInst &I);
249 bool visitCastInst(CastInst &I);
250 bool visitUnaryInstruction(UnaryInstruction &I);
Matt Arsenault727aa342013-07-20 04:09:00 +0000251 bool visitCmpInst(CmpInst &I);
Chad Rosier2e1c0502017-08-02 14:40:42 +0000252 bool visitAnd(BinaryOperator &I);
253 bool visitOr(BinaryOperator &I);
Chandler Carruth0539c072012-03-31 12:42:41 +0000254 bool visitSub(BinaryOperator &I);
255 bool visitBinaryOperator(BinaryOperator &I);
256 bool visitLoad(LoadInst &I);
257 bool visitStore(StoreInst &I);
Chandler Carruth753e21d2012-12-28 14:23:32 +0000258 bool visitExtractValue(ExtractValueInst &I);
259 bool visitInsertValue(InsertValueInst &I);
Chandler Carruth0539c072012-03-31 12:42:41 +0000260 bool visitCallSite(CallSite CS);
Chandler Carruth0814d2a2013-12-13 07:59:56 +0000261 bool visitReturnInst(ReturnInst &RI);
262 bool visitBranchInst(BranchInst &BI);
Haicheng Wu3ec848b2017-09-27 14:44:56 +0000263 bool visitSelectInst(SelectInst &SI);
Chandler Carruth0814d2a2013-12-13 07:59:56 +0000264 bool visitSwitchInst(SwitchInst &SI);
265 bool visitIndirectBrInst(IndirectBrInst &IBI);
266 bool visitResumeInst(ResumeInst &RI);
David Majnemer654e1302015-07-31 17:58:14 +0000267 bool visitCleanupReturnInst(CleanupReturnInst &RI);
268 bool visitCatchReturnInst(CatchReturnInst &RI);
Chandler Carruth0814d2a2013-12-13 07:59:56 +0000269 bool visitUnreachableInst(UnreachableInst &I);
Chandler Carruth0539c072012-03-31 12:42:41 +0000270
271public:
Sean Silvaab6a6832016-07-23 04:22:50 +0000272 CallAnalyzer(const TargetTransformInfo &TTI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000273 std::function<AssumptionCache &(Function &)> &GetAssumptionCache,
Easwaran Raman12585b02017-01-20 22:44:04 +0000274 Optional<function_ref<BlockFrequencyInfo &(Function &)>> &GetBFI,
Haicheng Wu0812c5b2017-08-21 20:00:09 +0000275 ProfileSummaryInfo *PSI, OptimizationRemarkEmitter *ORE,
276 Function &Callee, CallSite CSArg, const InlineParams &Params)
Easwaran Raman12585b02017-01-20 22:44:04 +0000277 : TTI(TTI), GetAssumptionCache(GetAssumptionCache), GetBFI(GetBFI),
Haicheng Wu0812c5b2017-08-21 20:00:09 +0000278 PSI(PSI), F(Callee), DL(F.getParent()->getDataLayout()), ORE(ORE),
Eric Christopher85be8ca2017-04-15 06:14:50 +0000279 CandidateCS(CSArg), Params(Params), Threshold(Params.DefaultThreshold),
Easwaran Raman4924bb02017-09-13 20:16:02 +0000280 Cost(0), ComputeFullInlineCost(OptComputeFullInlineCost ||
281 Params.ComputeFullInlineCost || ORE),
282 IsCallerRecursive(false), IsRecursiveCall(false),
Eric Christopher85be8ca2017-04-15 06:14:50 +0000283 ExposesReturnsTwice(false), HasDynamicAlloca(false),
284 ContainsNoDuplicateCall(false), HasReturn(false), HasIndirectBr(false),
285 HasFrameEscape(false), AllocatedSize(0), NumInstructions(0),
Easwaran Raman51b809b2017-07-28 21:47:36 +0000286 NumVectorInstructions(0), VectorBonus(0), SingleBBBonus(0),
Haicheng Wua4461512017-12-15 14:34:41 +0000287 EnableLoadElimination(true), LoadEliminationCost(0), NumConstantArgs(0),
288 NumConstantOffsetPtrArgs(0), NumAllocaArgs(0), NumConstantPtrCmps(0),
289 NumConstantPtrDiffs(0), NumInstructionsSimplified(0),
290 SROACostSavings(0), SROACostSavingsLost(0) {}
Chandler Carruth0539c072012-03-31 12:42:41 +0000291
292 bool analyzeCall(CallSite CS);
293
294 int getThreshold() { return Threshold; }
295 int getCost() { return Cost; }
296
297 // Keep a bunch of stats about the cost savings found so we can print them
298 // out when debugging.
299 unsigned NumConstantArgs;
300 unsigned NumConstantOffsetPtrArgs;
301 unsigned NumAllocaArgs;
302 unsigned NumConstantPtrCmps;
303 unsigned NumConstantPtrDiffs;
304 unsigned NumInstructionsSimplified;
305 unsigned SROACostSavings;
306 unsigned SROACostSavingsLost;
307
308 void dump();
309};
310
311} // namespace
312
313/// \brief Test whether the given value is an Alloca-derived function argument.
314bool CallAnalyzer::isAllocaDerivedArg(Value *V) {
315 return SROAArgValues.count(V);
Owen Andersona08318a2010-09-09 16:56:42 +0000316}
317
Chandler Carruth0539c072012-03-31 12:42:41 +0000318/// \brief Lookup the SROA-candidate argument and cost iterator which V maps to.
319/// Returns false if V does not map to a SROA-candidate.
320bool CallAnalyzer::lookupSROAArgAndCost(
321 Value *V, Value *&Arg, DenseMap<Value *, int>::iterator &CostIt) {
322 if (SROAArgValues.empty() || SROAArgCosts.empty())
323 return false;
Chandler Carruth783b7192012-03-09 02:49:36 +0000324
Chandler Carruth0539c072012-03-31 12:42:41 +0000325 DenseMap<Value *, Value *>::iterator ArgIt = SROAArgValues.find(V);
326 if (ArgIt == SROAArgValues.end())
327 return false;
Chandler Carruth783b7192012-03-09 02:49:36 +0000328
Chandler Carruth0539c072012-03-31 12:42:41 +0000329 Arg = ArgIt->second;
330 CostIt = SROAArgCosts.find(Arg);
331 return CostIt != SROAArgCosts.end();
Chandler Carruth783b7192012-03-09 02:49:36 +0000332}
333
Chandler Carruth0539c072012-03-31 12:42:41 +0000334/// \brief Disable SROA for the candidate marked by this cost iterator.
Chandler Carruth783b7192012-03-09 02:49:36 +0000335///
Benjamin Kramerbde91762012-06-02 10:20:22 +0000336/// This marks the candidate as no longer viable for SROA, and adds the cost
Chandler Carruth0539c072012-03-31 12:42:41 +0000337/// savings associated with it back into the inline cost measurement.
338void CallAnalyzer::disableSROA(DenseMap<Value *, int>::iterator CostIt) {
339 // If we're no longer able to perform SROA we need to undo its cost savings
340 // and prevent subsequent analysis.
341 Cost += CostIt->second;
342 SROACostSavings -= CostIt->second;
343 SROACostSavingsLost += CostIt->second;
344 SROAArgCosts.erase(CostIt);
Haicheng Wua4461512017-12-15 14:34:41 +0000345 disableLoadElimination();
Chandler Carruth0539c072012-03-31 12:42:41 +0000346}
347
348/// \brief If 'V' maps to a SROA candidate, disable SROA for it.
349void CallAnalyzer::disableSROA(Value *V) {
350 Value *SROAArg;
351 DenseMap<Value *, int>::iterator CostIt;
352 if (lookupSROAArgAndCost(V, SROAArg, CostIt))
353 disableSROA(CostIt);
354}
355
356/// \brief Accumulate the given cost for a particular SROA candidate.
357void CallAnalyzer::accumulateSROACost(DenseMap<Value *, int>::iterator CostIt,
358 int InstructionCost) {
359 CostIt->second += InstructionCost;
360 SROACostSavings += InstructionCost;
361}
362
Haicheng Wua4461512017-12-15 14:34:41 +0000363void CallAnalyzer::disableLoadElimination() {
364 if (EnableLoadElimination) {
365 Cost += LoadEliminationCost;
Haicheng Wub3689ca2017-12-19 13:42:58 +0000366 LoadEliminationCost = 0;
Haicheng Wua4461512017-12-15 14:34:41 +0000367 EnableLoadElimination = false;
368 }
369}
370
Chandler Carruth0539c072012-03-31 12:42:41 +0000371/// \brief Accumulate a constant GEP offset into an APInt if possible.
372///
373/// Returns false if unable to compute the offset for any reason. Respects any
374/// simplified values known during the analysis of this callsite.
375bool CallAnalyzer::accumulateGEPOffset(GEPOperator &GEP, APInt &Offset) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000376 unsigned IntPtrWidth = DL.getPointerSizeInBits();
Chandler Carruth0539c072012-03-31 12:42:41 +0000377 assert(IntPtrWidth == Offset.getBitWidth());
378
379 for (gep_type_iterator GTI = gep_type_begin(GEP), GTE = gep_type_end(GEP);
380 GTI != GTE; ++GTI) {
381 ConstantInt *OpC = dyn_cast<ConstantInt>(GTI.getOperand());
382 if (!OpC)
383 if (Constant *SimpleOp = SimplifiedValues.lookup(GTI.getOperand()))
384 OpC = dyn_cast<ConstantInt>(SimpleOp);
385 if (!OpC)
Chandler Carruth783b7192012-03-09 02:49:36 +0000386 return false;
Chad Rosier567556a2016-04-28 14:47:23 +0000387 if (OpC->isZero())
388 continue;
Chandler Carruth783b7192012-03-09 02:49:36 +0000389
Chandler Carruth0539c072012-03-31 12:42:41 +0000390 // Handle a struct index, which adds its field offset to the pointer.
Peter Collingbourneab85225b2016-12-02 02:24:42 +0000391 if (StructType *STy = GTI.getStructTypeOrNull()) {
Chandler Carruth0539c072012-03-31 12:42:41 +0000392 unsigned ElementIdx = OpC->getZExtValue();
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000393 const StructLayout *SL = DL.getStructLayout(STy);
Chandler Carruth0539c072012-03-31 12:42:41 +0000394 Offset += APInt(IntPtrWidth, SL->getElementOffset(ElementIdx));
395 continue;
Chandler Carruth783b7192012-03-09 02:49:36 +0000396 }
Chandler Carruth783b7192012-03-09 02:49:36 +0000397
Mehdi Aminia28d91d2015-03-10 02:37:25 +0000398 APInt TypeSize(IntPtrWidth, DL.getTypeAllocSize(GTI.getIndexedType()));
Chandler Carruth0539c072012-03-31 12:42:41 +0000399 Offset += OpC->getValue().sextOrTrunc(IntPtrWidth) * TypeSize;
400 }
401 return true;
402}
403
Haicheng Wu201b1912017-01-20 18:51:22 +0000404/// \brief Use TTI to check whether a GEP is free.
405///
406/// Respects any simplified values known during the analysis of this callsite.
407bool CallAnalyzer::isGEPFree(GetElementPtrInst &GEP) {
Evgeny Astigeevich61c1bd52017-07-27 12:49:27 +0000408 SmallVector<Value *, 4> Operands;
409 Operands.push_back(GEP.getOperand(0));
Haicheng Wu201b1912017-01-20 18:51:22 +0000410 for (User::op_iterator I = GEP.idx_begin(), E = GEP.idx_end(); I != E; ++I)
411 if (Constant *SimpleOp = SimplifiedValues.lookup(*I))
Evgeny Astigeevich61c1bd52017-07-27 12:49:27 +0000412 Operands.push_back(SimpleOp);
Haicheng Wu201b1912017-01-20 18:51:22 +0000413 else
Evgeny Astigeevich61c1bd52017-07-27 12:49:27 +0000414 Operands.push_back(*I);
415 return TargetTransformInfo::TCC_Free == TTI.getUserCost(&GEP, Operands);
Haicheng Wu201b1912017-01-20 18:51:22 +0000416}
417
Chandler Carruth0539c072012-03-31 12:42:41 +0000418bool CallAnalyzer::visitAlloca(AllocaInst &I) {
Eric Christopherbeb2cd62014-04-07 13:36:21 +0000419 // Check whether inlining will turn a dynamic alloca into a static
Sanjay Patel0f153422016-05-09 21:51:53 +0000420 // alloca and handle that case.
Eric Christopherbeb2cd62014-04-07 13:36:21 +0000421 if (I.isArrayAllocation()) {
Sanjay Patel0f153422016-05-09 21:51:53 +0000422 Constant *Size = SimplifiedValues.lookup(I.getArraySize());
423 if (auto *AllocSize = dyn_cast_or_null<ConstantInt>(Size)) {
Eric Christopherbeb2cd62014-04-07 13:36:21 +0000424 Type *Ty = I.getAllocatedType();
Easwaran Raman22eb80a2016-06-27 22:31:53 +0000425 AllocatedSize = SaturatingMultiplyAdd(
426 AllocSize->getLimitedValue(), DL.getTypeAllocSize(Ty), AllocatedSize);
Eric Christopherbeb2cd62014-04-07 13:36:21 +0000427 return Base::visitAlloca(I);
428 }
429 }
Chandler Carruth0539c072012-03-31 12:42:41 +0000430
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +0000431 // Accumulate the allocated size.
432 if (I.isStaticAlloca()) {
433 Type *Ty = I.getAllocatedType();
Easwaran Raman22eb80a2016-06-27 22:31:53 +0000434 AllocatedSize = SaturatingAdd(DL.getTypeAllocSize(Ty), AllocatedSize);
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +0000435 }
436
Bob Wilsona5b0dc82012-11-19 07:04:35 +0000437 // We will happily inline static alloca instructions.
438 if (I.isStaticAlloca())
Chandler Carruth0539c072012-03-31 12:42:41 +0000439 return Base::visitAlloca(I);
440
441 // FIXME: This is overly conservative. Dynamic allocas are inefficient for
442 // a variety of reasons, and so we would like to not inline them into
443 // functions which don't currently have a dynamic alloca. This simply
444 // disables inlining altogether in the presence of a dynamic alloca.
445 HasDynamicAlloca = true;
446 return false;
447}
448
449bool CallAnalyzer::visitPHI(PHINode &I) {
Chandler Carruth0539c072012-03-31 12:42:41 +0000450 // FIXME: We need to propagate SROA *disabling* through phi nodes, even
451 // though we don't want to propagate it's bonuses. The idea is to disable
452 // SROA if it *might* be used in an inappropriate manner.
453
454 // Phi nodes are always zero-cost.
Haicheng Wu3739e142017-12-14 14:36:18 +0000455
456 APInt ZeroOffset = APInt::getNullValue(DL.getPointerSizeInBits());
457 bool CheckSROA = I.getType()->isPointerTy();
458
459 // Track the constant or pointer with constant offset we've seen so far.
460 Constant *FirstC = nullptr;
461 std::pair<Value *, APInt> FirstBaseAndOffset = {nullptr, ZeroOffset};
462 Value *FirstV = nullptr;
463
464 for (unsigned i = 0, e = I.getNumIncomingValues(); i != e; ++i) {
465 BasicBlock *Pred = I.getIncomingBlock(i);
466 // If the incoming block is dead, skip the incoming block.
467 if (DeadBlocks.count(Pred))
468 continue;
469 // If the parent block of phi is not the known successor of the incoming
470 // block, skip the incoming block.
471 BasicBlock *KnownSuccessor = KnownSuccessors[Pred];
472 if (KnownSuccessor && KnownSuccessor != I.getParent())
473 continue;
474
475 Value *V = I.getIncomingValue(i);
476 // If the incoming value is this phi itself, skip the incoming value.
477 if (&I == V)
478 continue;
479
480 Constant *C = dyn_cast<Constant>(V);
481 if (!C)
482 C = SimplifiedValues.lookup(V);
483
484 std::pair<Value *, APInt> BaseAndOffset = {nullptr, ZeroOffset};
485 if (!C && CheckSROA)
486 BaseAndOffset = ConstantOffsetPtrs.lookup(V);
487
488 if (!C && !BaseAndOffset.first)
489 // The incoming value is neither a constant nor a pointer with constant
490 // offset, exit early.
491 return true;
492
493 if (FirstC) {
494 if (FirstC == C)
495 // If we've seen a constant incoming value before and it is the same
496 // constant we see this time, continue checking the next incoming value.
497 continue;
498 // Otherwise early exit because we either see a different constant or saw
499 // a constant before but we have a pointer with constant offset this time.
500 return true;
501 }
502
503 if (FirstV) {
504 // The same logic as above, but check pointer with constant offset here.
505 if (FirstBaseAndOffset == BaseAndOffset)
506 continue;
507 return true;
508 }
509
510 if (C) {
511 // This is the 1st time we've seen a constant, record it.
512 FirstC = C;
513 continue;
514 }
515
516 // The remaining case is that this is the 1st time we've seen a pointer with
517 // constant offset, record it.
518 FirstV = V;
519 FirstBaseAndOffset = BaseAndOffset;
520 }
521
522 // Check if we can map phi to a constant.
523 if (FirstC) {
524 SimplifiedValues[&I] = FirstC;
525 return true;
526 }
527
528 // Check if we can map phi to a pointer with constant offset.
529 if (FirstBaseAndOffset.first) {
530 ConstantOffsetPtrs[&I] = FirstBaseAndOffset;
531
532 Value *SROAArg;
533 DenseMap<Value *, int>::iterator CostIt;
534 if (lookupSROAArgAndCost(FirstV, SROAArg, CostIt))
535 SROAArgValues[&I] = SROAArg;
536 }
537
Chandler Carruth0539c072012-03-31 12:42:41 +0000538 return true;
539}
540
Evgeny Astigeevichd3558b52017-10-03 12:00:40 +0000541/// \brief Check we can fold GEPs of constant-offset call site argument pointers.
542/// This requires target data and inbounds GEPs.
543///
544/// \return true if the specified GEP can be folded.
545bool CallAnalyzer::canFoldInboundsGEP(GetElementPtrInst &I) {
546 // Check if we have a base + offset for the pointer.
547 std::pair<Value *, APInt> BaseAndOffset =
548 ConstantOffsetPtrs.lookup(I.getPointerOperand());
549 if (!BaseAndOffset.first)
550 return false;
551
552 // Check if the offset of this GEP is constant, and if so accumulate it
553 // into Offset.
554 if (!accumulateGEPOffset(cast<GEPOperator>(I), BaseAndOffset.second))
555 return false;
556
557 // Add the result as a new mapping to Base + Offset.
558 ConstantOffsetPtrs[&I] = BaseAndOffset;
559
560 return true;
561}
562
Chandler Carruth0539c072012-03-31 12:42:41 +0000563bool CallAnalyzer::visitGetElementPtr(GetElementPtrInst &I) {
564 Value *SROAArg;
565 DenseMap<Value *, int>::iterator CostIt;
Chad Rosier567556a2016-04-28 14:47:23 +0000566 bool SROACandidate =
567 lookupSROAArgAndCost(I.getPointerOperand(), SROAArg, CostIt);
Chandler Carruth0539c072012-03-31 12:42:41 +0000568
Easwaran Ramana8b9cdc2017-02-25 00:10:22 +0000569 // Lambda to check whether a GEP's indices are all constant.
570 auto IsGEPOffsetConstant = [&](GetElementPtrInst &GEP) {
571 for (User::op_iterator I = GEP.idx_begin(), E = GEP.idx_end(); I != E; ++I)
572 if (!isa<Constant>(*I) && !SimplifiedValues.lookup(*I))
573 return false;
574 return true;
575 };
576
Evgeny Astigeevichd3558b52017-10-03 12:00:40 +0000577 if ((I.isInBounds() && canFoldInboundsGEP(I)) || IsGEPOffsetConstant(I)) {
Chandler Carruth0539c072012-03-31 12:42:41 +0000578 if (SROACandidate)
579 SROAArgValues[&I] = SROAArg;
580
581 // Constant GEPs are modeled as free.
582 return true;
583 }
584
585 // Variable GEPs will require math and will disable SROA.
586 if (SROACandidate)
587 disableSROA(CostIt);
Haicheng Wu201b1912017-01-20 18:51:22 +0000588 return isGEPFree(I);
Chandler Carruth783b7192012-03-09 02:49:36 +0000589}
590
Easwaran Raman617f6362017-02-18 17:22:52 +0000591/// Simplify \p I if its operands are constants and update SimplifiedValues.
592/// \p Evaluate is a callable specific to instruction type that evaluates the
593/// instruction when all the operands are constants.
594template <typename Callable>
595bool CallAnalyzer::simplifyInstruction(Instruction &I, Callable Evaluate) {
596 SmallVector<Constant *, 2> COps;
597 for (Value *Op : I.operands()) {
598 Constant *COp = dyn_cast<Constant>(Op);
599 if (!COp)
600 COp = SimplifiedValues.lookup(Op);
601 if (!COp)
602 return false;
603 COps.push_back(COp);
604 }
605 auto *C = Evaluate(COps);
606 if (!C)
607 return false;
608 SimplifiedValues[&I] = C;
609 return true;
610}
611
Chandler Carruth0539c072012-03-31 12:42:41 +0000612bool CallAnalyzer::visitBitCast(BitCastInst &I) {
613 // Propagate constants through bitcasts.
Easwaran Raman617f6362017-02-18 17:22:52 +0000614 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
615 return ConstantExpr::getBitCast(COps[0], I.getType());
616 }))
617 return true;
Owen Andersona08318a2010-09-09 16:56:42 +0000618
Chandler Carruth0539c072012-03-31 12:42:41 +0000619 // Track base/offsets through casts
Chad Rosier567556a2016-04-28 14:47:23 +0000620 std::pair<Value *, APInt> BaseAndOffset =
621 ConstantOffsetPtrs.lookup(I.getOperand(0));
Chandler Carruth0539c072012-03-31 12:42:41 +0000622 // Casts don't change the offset, just wrap it up.
623 if (BaseAndOffset.first)
624 ConstantOffsetPtrs[&I] = BaseAndOffset;
625
626 // Also look for SROA candidates here.
627 Value *SROAArg;
628 DenseMap<Value *, int>::iterator CostIt;
629 if (lookupSROAArgAndCost(I.getOperand(0), SROAArg, CostIt))
630 SROAArgValues[&I] = SROAArg;
631
632 // Bitcasts are always zero cost.
633 return true;
Owen Andersona08318a2010-09-09 16:56:42 +0000634}
635
Chandler Carruth0539c072012-03-31 12:42:41 +0000636bool CallAnalyzer::visitPtrToInt(PtrToIntInst &I) {
637 // Propagate constants through ptrtoint.
Easwaran Raman617f6362017-02-18 17:22:52 +0000638 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
639 return ConstantExpr::getPtrToInt(COps[0], I.getType());
640 }))
641 return true;
Chandler Carruth0539c072012-03-31 12:42:41 +0000642
643 // Track base/offset pairs when converted to a plain integer provided the
644 // integer is large enough to represent the pointer.
645 unsigned IntegerSize = I.getType()->getScalarSizeInBits();
Mehdi Amini46a43552015-03-04 18:43:29 +0000646 if (IntegerSize >= DL.getPointerSizeInBits()) {
Chad Rosier567556a2016-04-28 14:47:23 +0000647 std::pair<Value *, APInt> BaseAndOffset =
648 ConstantOffsetPtrs.lookup(I.getOperand(0));
Chandler Carruth0539c072012-03-31 12:42:41 +0000649 if (BaseAndOffset.first)
650 ConstantOffsetPtrs[&I] = BaseAndOffset;
651 }
652
653 // This is really weird. Technically, ptrtoint will disable SROA. However,
654 // unless that ptrtoint is *used* somewhere in the live basic blocks after
655 // inlining, it will be nuked, and SROA should proceed. All of the uses which
656 // would block SROA would also block SROA if applied directly to a pointer,
657 // and so we can just add the integer in here. The only places where SROA is
658 // preserved either cannot fire on an integer, or won't in-and-of themselves
659 // disable SROA (ext) w/o some later use that we would see and disable.
660 Value *SROAArg;
661 DenseMap<Value *, int>::iterator CostIt;
662 if (lookupSROAArgAndCost(I.getOperand(0), SROAArg, CostIt))
663 SROAArgValues[&I] = SROAArg;
664
Chandler Carruthb8cf5102013-01-21 12:05:16 +0000665 return TargetTransformInfo::TCC_Free == TTI.getUserCost(&I);
Chandler Carruth4d1d34f2012-03-14 23:19:53 +0000666}
667
Chandler Carruth0539c072012-03-31 12:42:41 +0000668bool CallAnalyzer::visitIntToPtr(IntToPtrInst &I) {
669 // Propagate constants through ptrtoint.
Easwaran Raman617f6362017-02-18 17:22:52 +0000670 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
671 return ConstantExpr::getIntToPtr(COps[0], I.getType());
672 }))
673 return true;
Dan Gohman4552e3c2009-10-13 18:30:07 +0000674
Chandler Carruth0539c072012-03-31 12:42:41 +0000675 // Track base/offset pairs when round-tripped through a pointer without
676 // modifications provided the integer is not too large.
677 Value *Op = I.getOperand(0);
678 unsigned IntegerSize = Op->getType()->getScalarSizeInBits();
Mehdi Amini46a43552015-03-04 18:43:29 +0000679 if (IntegerSize <= DL.getPointerSizeInBits()) {
Chandler Carruth0539c072012-03-31 12:42:41 +0000680 std::pair<Value *, APInt> BaseAndOffset = ConstantOffsetPtrs.lookup(Op);
681 if (BaseAndOffset.first)
682 ConstantOffsetPtrs[&I] = BaseAndOffset;
683 }
Dan Gohman4552e3c2009-10-13 18:30:07 +0000684
Chandler Carruth0539c072012-03-31 12:42:41 +0000685 // "Propagate" SROA here in the same manner as we do for ptrtoint above.
686 Value *SROAArg;
687 DenseMap<Value *, int>::iterator CostIt;
688 if (lookupSROAArgAndCost(Op, SROAArg, CostIt))
689 SROAArgValues[&I] = SROAArg;
Chandler Carruth4d1d34f2012-03-14 23:19:53 +0000690
Chandler Carruthb8cf5102013-01-21 12:05:16 +0000691 return TargetTransformInfo::TCC_Free == TTI.getUserCost(&I);
Chandler Carruth0539c072012-03-31 12:42:41 +0000692}
693
694bool CallAnalyzer::visitCastInst(CastInst &I) {
695 // Propagate constants through ptrtoint.
Easwaran Raman617f6362017-02-18 17:22:52 +0000696 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
697 return ConstantExpr::getCast(I.getOpcode(), COps[0], I.getType());
698 }))
699 return true;
Chandler Carruth0539c072012-03-31 12:42:41 +0000700
701 // Disable SROA in the face of arbitrary casts we don't whitelist elsewhere.
702 disableSROA(I.getOperand(0));
703
Chandler Carruthb8cf5102013-01-21 12:05:16 +0000704 return TargetTransformInfo::TCC_Free == TTI.getUserCost(&I);
Chandler Carruth0539c072012-03-31 12:42:41 +0000705}
706
707bool CallAnalyzer::visitUnaryInstruction(UnaryInstruction &I) {
708 Value *Operand = I.getOperand(0);
Easwaran Raman617f6362017-02-18 17:22:52 +0000709 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
Easwaran Raman617f6362017-02-18 17:22:52 +0000710 return ConstantFoldInstOperands(&I, COps[0], DL);
711 }))
712 return true;
Chandler Carruth0539c072012-03-31 12:42:41 +0000713
714 // Disable any SROA on the argument to arbitrary unary operators.
715 disableSROA(Operand);
716
717 return false;
718}
719
Philip Reames9b5c9582015-06-26 20:51:17 +0000720bool CallAnalyzer::paramHasAttr(Argument *A, Attribute::AttrKind Attr) {
Reid Klecknerfb502d22017-04-14 20:19:02 +0000721 return CandidateCS.paramHasAttr(A->getArgNo(), Attr);
Philip Reames9b5c9582015-06-26 20:51:17 +0000722}
723
724bool CallAnalyzer::isKnownNonNullInCallee(Value *V) {
725 // Does the *call site* have the NonNull attribute set on an argument? We
726 // use the attribute on the call site to memoize any analysis done in the
727 // caller. This will also trip if the callee function has a non-null
728 // parameter attribute, but that's a less interesting case because hopefully
729 // the callee would already have been simplified based on that.
730 if (Argument *A = dyn_cast<Argument>(V))
731 if (paramHasAttr(A, Attribute::NonNull))
732 return true;
Chad Rosier567556a2016-04-28 14:47:23 +0000733
Philip Reames9b5c9582015-06-26 20:51:17 +0000734 // Is this an alloca in the caller? This is distinct from the attribute case
735 // above because attributes aren't updated within the inliner itself and we
736 // always want to catch the alloca derived case.
737 if (isAllocaDerivedArg(V))
738 // We can actually predict the result of comparisons between an
739 // alloca-derived value and null. Note that this fires regardless of
740 // SROA firing.
741 return true;
Chad Rosier567556a2016-04-28 14:47:23 +0000742
Philip Reames9b5c9582015-06-26 20:51:17 +0000743 return false;
744}
745
Easwaran Raman9a3fc172016-04-08 21:28:02 +0000746bool CallAnalyzer::allowSizeGrowth(CallSite CS) {
747 // If the normal destination of the invoke or the parent block of the call
748 // site is unreachable-terminated, there is little point in inlining this
749 // unless there is literally zero cost.
750 // FIXME: Note that it is possible that an unreachable-terminated block has a
751 // hot entry. For example, in below scenario inlining hot_call_X() may be
752 // beneficial :
753 // main() {
754 // hot_call_1();
755 // ...
756 // hot_call_N()
757 // exit(0);
758 // }
759 // For now, we are not handling this corner case here as it is rare in real
760 // code. In future, we should elaborate this based on BPI and BFI in more
761 // general threshold adjusting heuristics in updateThreshold().
762 Instruction *Instr = CS.getInstruction();
763 if (InvokeInst *II = dyn_cast<InvokeInst>(Instr)) {
764 if (isa<UnreachableInst>(II->getNormalDest()->getTerminator()))
765 return false;
766 } else if (isa<UnreachableInst>(Instr->getParent()->getTerminator()))
767 return false;
768
769 return true;
770}
771
Easwaran Ramanc5fa6352017-06-27 23:11:18 +0000772bool CallAnalyzer::isColdCallSite(CallSite CS, BlockFrequencyInfo *CallerBFI) {
773 // If global profile summary is available, then callsite's coldness is
774 // determined based on that.
Chandler Carruthbba762a2017-08-14 21:25:00 +0000775 if (PSI && PSI->hasProfileSummary())
Easwaran Ramanc5fa6352017-06-27 23:11:18 +0000776 return PSI->isColdCallSite(CS, CallerBFI);
Chandler Carruthbba762a2017-08-14 21:25:00 +0000777
778 // Otherwise we need BFI to be available.
Easwaran Ramanc5fa6352017-06-27 23:11:18 +0000779 if (!CallerBFI)
780 return false;
781
Chandler Carruthbba762a2017-08-14 21:25:00 +0000782 // Determine if the callsite is cold relative to caller's entry. We could
783 // potentially cache the computation of scaled entry frequency, but the added
784 // complexity is not worth it unless this scaling shows up high in the
785 // profiles.
Easwaran Ramanc5fa6352017-06-27 23:11:18 +0000786 const BranchProbability ColdProb(ColdCallSiteRelFreq, 100);
787 auto CallSiteBB = CS.getInstruction()->getParent();
788 auto CallSiteFreq = CallerBFI->getBlockFreq(CallSiteBB);
789 auto CallerEntryFreq =
790 CallerBFI->getBlockFreq(&(CS.getCaller()->getEntryBlock()));
791 return CallSiteFreq < CallerEntryFreq * ColdProb;
792}
793
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000794Optional<int>
795CallAnalyzer::getHotCallSiteThreshold(CallSite CS,
796 BlockFrequencyInfo *CallerBFI) {
Chandler Carruthbba762a2017-08-14 21:25:00 +0000797
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000798 // If global profile summary is available, then callsite's hotness is
799 // determined based on that.
Chandler Carruthbba762a2017-08-14 21:25:00 +0000800 if (PSI && PSI->hasProfileSummary() && PSI->isHotCallSite(CS, CallerBFI))
801 return Params.HotCallSiteThreshold;
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000802
Chandler Carruthbba762a2017-08-14 21:25:00 +0000803 // Otherwise we need BFI to be available and to have a locally hot callsite
804 // threshold.
805 if (!CallerBFI || !Params.LocallyHotCallSiteThreshold)
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000806 return None;
807
Chandler Carruthbba762a2017-08-14 21:25:00 +0000808 // Determine if the callsite is hot relative to caller's entry. We could
809 // potentially cache the computation of scaled entry frequency, but the added
810 // complexity is not worth it unless this scaling shows up high in the
811 // profiles.
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000812 auto CallSiteBB = CS.getInstruction()->getParent();
813 auto CallSiteFreq = CallerBFI->getBlockFreq(CallSiteBB).getFrequency();
814 auto CallerEntryFreq = CallerBFI->getEntryFreq();
815 if (CallSiteFreq >= CallerEntryFreq * HotCallSiteRelFreq)
Chandler Carruthbba762a2017-08-14 21:25:00 +0000816 return Params.LocallyHotCallSiteThreshold;
817
818 // Otherwise treat it normally.
Easwaran Raman974d4ee2017-08-03 22:23:33 +0000819 return None;
820}
821
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +0000822void CallAnalyzer::updateThreshold(CallSite CS, Function &Callee) {
Easwaran Raman9a3fc172016-04-08 21:28:02 +0000823 // If no size growth is allowed for this inlining, set Threshold to 0.
824 if (!allowSizeGrowth(CS)) {
825 Threshold = 0;
826 return;
827 }
828
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +0000829 Function *Caller = CS.getCaller();
Easwaran Raman1c57cc22016-08-10 00:48:04 +0000830
831 // return min(A, B) if B is valid.
832 auto MinIfValid = [](int A, Optional<int> B) {
833 return B ? std::min(A, B.getValue()) : A;
834 };
835
Easwaran Raman0d58fca2016-08-11 03:58:05 +0000836 // return max(A, B) if B is valid.
837 auto MaxIfValid = [](int A, Optional<int> B) {
838 return B ? std::max(A, B.getValue()) : A;
839 };
840
Easwaran Raman51b809b2017-07-28 21:47:36 +0000841 // Various bonus percentages. These are multiplied by Threshold to get the
842 // bonus values.
843 // SingleBBBonus: This bonus is applied if the callee has a single reachable
844 // basic block at the given callsite context. This is speculatively applied
845 // and withdrawn if more than one basic block is seen.
846 //
847 // Vector bonuses: We want to more aggressively inline vector-dense kernels
848 // and apply this bonus based on the percentage of vector instructions. A
849 // bonus is applied if the vector instructions exceed 50% and half that amount
850 // is applied if it exceeds 10%. Note that these bonuses are some what
851 // arbitrary and evolved over time by accident as much as because they are
852 // principled bonuses.
853 // FIXME: It would be nice to base the bonus values on something more
854 // scientific.
855 //
856 // LstCallToStaticBonus: This large bonus is applied to ensure the inlining
857 // of the last call to a static function as inlining such functions is
858 // guaranteed to reduce code size.
859 //
860 // These bonus percentages may be set to 0 based on properties of the caller
861 // and the callsite.
862 int SingleBBBonusPercent = 50;
863 int VectorBonusPercent = 150;
864 int LastCallToStaticBonus = InlineConstants::LastCallToStaticBonus;
865
866 // Lambda to set all the above bonus and bonus percentages to 0.
867 auto DisallowAllBonuses = [&]() {
868 SingleBBBonusPercent = 0;
869 VectorBonusPercent = 0;
870 LastCallToStaticBonus = 0;
871 };
872
Easwaran Raman1c57cc22016-08-10 00:48:04 +0000873 // Use the OptMinSizeThreshold or OptSizeThreshold knob if they are available
874 // and reduce the threshold if the caller has the necessary attribute.
Easwaran Raman51b809b2017-07-28 21:47:36 +0000875 if (Caller->optForMinSize()) {
Easwaran Raman1c57cc22016-08-10 00:48:04 +0000876 Threshold = MinIfValid(Threshold, Params.OptMinSizeThreshold);
Easwaran Raman51b809b2017-07-28 21:47:36 +0000877 // For minsize, we want to disable the single BB bonus and the vector
878 // bonuses, but not the last-call-to-static bonus. Inlining the last call to
879 // a static function will, at the minimum, eliminate the parameter setup and
880 // call/return instructions.
881 SingleBBBonusPercent = 0;
882 VectorBonusPercent = 0;
883 } else if (Caller->optForSize())
Easwaran Raman1c57cc22016-08-10 00:48:04 +0000884 Threshold = MinIfValid(Threshold, Params.OptSizeThreshold);
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +0000885
Easwaran Ramane08b1392017-01-09 21:56:26 +0000886 // Adjust the threshold based on inlinehint attribute and profile based
887 // hotness information if the caller does not have MinSize attribute.
888 if (!Caller->optForMinSize()) {
889 if (Callee.hasFnAttribute(Attribute::InlineHint))
890 Threshold = MaxIfValid(Threshold, Params.HintThreshold);
Chandler Carruthbba762a2017-08-14 21:25:00 +0000891
892 // FIXME: After switching to the new passmanager, simplify the logic below
893 // by checking only the callsite hotness/coldness as we will reliably
894 // have local profile information.
895 //
896 // Callsite hotness and coldness can be determined if sample profile is
897 // used (which adds hotness metadata to calls) or if caller's
898 // BlockFrequencyInfo is available.
899 BlockFrequencyInfo *CallerBFI = GetBFI ? &((*GetBFI)(*Caller)) : nullptr;
900 auto HotCallSiteThreshold = getHotCallSiteThreshold(CS, CallerBFI);
901 if (!Caller->optForSize() && HotCallSiteThreshold) {
902 DEBUG(dbgs() << "Hot callsite.\n");
903 // FIXME: This should update the threshold only if it exceeds the
904 // current threshold, but AutoFDO + ThinLTO currently relies on this
905 // behavior to prevent inlining of hot callsites during ThinLTO
906 // compile phase.
907 Threshold = HotCallSiteThreshold.getValue();
908 } else if (isColdCallSite(CS, CallerBFI)) {
909 DEBUG(dbgs() << "Cold callsite.\n");
910 // Do not apply bonuses for a cold callsite including the
911 // LastCallToStatic bonus. While this bonus might result in code size
912 // reduction, it can cause the size of a non-cold caller to increase
913 // preventing it from being inlined.
914 DisallowAllBonuses();
915 Threshold = MinIfValid(Threshold, Params.ColdCallSiteThreshold);
916 } else if (PSI) {
917 // Use callee's global profile information only if we have no way of
918 // determining this via callsite information.
919 if (PSI->isFunctionEntryHot(&Callee)) {
920 DEBUG(dbgs() << "Hot callee.\n");
921 // If callsite hotness can not be determined, we may still know
922 // that the callee is hot and treat it as a weaker hint for threshold
923 // increase.
924 Threshold = MaxIfValid(Threshold, Params.HintThreshold);
925 } else if (PSI->isFunctionEntryCold(&Callee)) {
926 DEBUG(dbgs() << "Cold callee.\n");
927 // Do not apply bonuses for a cold callee including the
928 // LastCallToStatic bonus. While this bonus might result in code size
929 // reduction, it can cause the size of a non-cold caller to increase
930 // preventing it from being inlined.
931 DisallowAllBonuses();
932 Threshold = MinIfValid(Threshold, Params.ColdThreshold);
Easwaran Ramane08b1392017-01-09 21:56:26 +0000933 }
934 }
Dehao Chene1c7c572016-08-05 20:49:04 +0000935 }
Dehao Chen9232f982016-07-11 16:48:54 +0000936
Justin Lebar8650a4d2016-04-15 01:38:48 +0000937 // Finally, take the target-specific inlining threshold multiplier into
938 // account.
939 Threshold *= TTI.getInliningThresholdMultiplier();
Easwaran Raman51b809b2017-07-28 21:47:36 +0000940
941 SingleBBBonus = Threshold * SingleBBBonusPercent / 100;
942 VectorBonus = Threshold * VectorBonusPercent / 100;
943
944 bool OnlyOneCallAndLocalLinkage =
945 F.hasLocalLinkage() && F.hasOneUse() && &F == CS.getCalledFunction();
946 // If there is only one call of the function, and it has internal linkage,
947 // the cost of inlining it drops dramatically. It may seem odd to update
948 // Cost in updateThreshold, but the bonus depends on the logic in this method.
949 if (OnlyOneCallAndLocalLinkage)
950 Cost -= LastCallToStaticBonus;
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +0000951}
952
Matt Arsenault727aa342013-07-20 04:09:00 +0000953bool CallAnalyzer::visitCmpInst(CmpInst &I) {
Chandler Carruth0539c072012-03-31 12:42:41 +0000954 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
955 // First try to handle simplified comparisons.
Easwaran Raman617f6362017-02-18 17:22:52 +0000956 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
957 return ConstantExpr::getCompare(I.getPredicate(), COps[0], COps[1]);
958 }))
959 return true;
Matt Arsenault727aa342013-07-20 04:09:00 +0000960
961 if (I.getOpcode() == Instruction::FCmp)
962 return false;
Chandler Carruth0539c072012-03-31 12:42:41 +0000963
964 // Otherwise look for a comparison between constant offset pointers with
965 // a common base.
966 Value *LHSBase, *RHSBase;
967 APInt LHSOffset, RHSOffset;
Benjamin Kramerd6f1f842014-03-02 13:30:33 +0000968 std::tie(LHSBase, LHSOffset) = ConstantOffsetPtrs.lookup(LHS);
Chandler Carruth0539c072012-03-31 12:42:41 +0000969 if (LHSBase) {
Benjamin Kramerd6f1f842014-03-02 13:30:33 +0000970 std::tie(RHSBase, RHSOffset) = ConstantOffsetPtrs.lookup(RHS);
Chandler Carruth0539c072012-03-31 12:42:41 +0000971 if (RHSBase && LHSBase == RHSBase) {
972 // We have common bases, fold the icmp to a constant based on the
973 // offsets.
974 Constant *CLHS = ConstantInt::get(LHS->getContext(), LHSOffset);
975 Constant *CRHS = ConstantInt::get(RHS->getContext(), RHSOffset);
976 if (Constant *C = ConstantExpr::getICmp(I.getPredicate(), CLHS, CRHS)) {
977 SimplifiedValues[&I] = C;
978 ++NumConstantPtrCmps;
979 return true;
980 }
981 }
982 }
983
984 // If the comparison is an equality comparison with null, we can simplify it
Philip Reames9b5c9582015-06-26 20:51:17 +0000985 // if we know the value (argument) can't be null
986 if (I.isEquality() && isa<ConstantPointerNull>(I.getOperand(1)) &&
987 isKnownNonNullInCallee(I.getOperand(0))) {
988 bool IsNotEqual = I.getPredicate() == CmpInst::ICMP_NE;
989 SimplifiedValues[&I] = IsNotEqual ? ConstantInt::getTrue(I.getType())
990 : ConstantInt::getFalse(I.getType());
991 return true;
992 }
Chandler Carruth0539c072012-03-31 12:42:41 +0000993 // Finally check for SROA candidates in comparisons.
994 Value *SROAArg;
995 DenseMap<Value *, int>::iterator CostIt;
996 if (lookupSROAArgAndCost(I.getOperand(0), SROAArg, CostIt)) {
997 if (isa<ConstantPointerNull>(I.getOperand(1))) {
998 accumulateSROACost(CostIt, InlineConstants::InstrCost);
999 return true;
1000 }
1001
1002 disableSROA(CostIt);
1003 }
1004
1005 return false;
1006}
1007
Chad Rosier2e1c0502017-08-02 14:40:42 +00001008bool CallAnalyzer::visitOr(BinaryOperator &I) {
1009 // This is necessary because the generic simplify instruction only works if
1010 // both operands are constants.
1011 for (unsigned i = 0; i < 2; ++i) {
1012 if (ConstantInt *C = dyn_cast_or_null<ConstantInt>(
1013 SimplifiedValues.lookup(I.getOperand(i))))
1014 if (C->isAllOnesValue()) {
1015 SimplifiedValues[&I] = C;
1016 return true;
1017 }
1018 }
1019 return Base::visitOr(I);
1020}
1021
1022bool CallAnalyzer::visitAnd(BinaryOperator &I) {
1023 // This is necessary because the generic simplify instruction only works if
1024 // both operands are constants.
1025 for (unsigned i = 0; i < 2; ++i) {
1026 if (ConstantInt *C = dyn_cast_or_null<ConstantInt>(
1027 SimplifiedValues.lookup(I.getOperand(i))))
1028 if (C->isZero()) {
1029 SimplifiedValues[&I] = C;
1030 return true;
1031 }
1032 }
1033 return Base::visitAnd(I);
1034}
1035
Chandler Carruth0539c072012-03-31 12:42:41 +00001036bool CallAnalyzer::visitSub(BinaryOperator &I) {
1037 // Try to handle a special case: we can fold computing the difference of two
1038 // constant-related pointers.
1039 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
1040 Value *LHSBase, *RHSBase;
1041 APInt LHSOffset, RHSOffset;
Benjamin Kramerd6f1f842014-03-02 13:30:33 +00001042 std::tie(LHSBase, LHSOffset) = ConstantOffsetPtrs.lookup(LHS);
Chandler Carruth0539c072012-03-31 12:42:41 +00001043 if (LHSBase) {
Benjamin Kramerd6f1f842014-03-02 13:30:33 +00001044 std::tie(RHSBase, RHSOffset) = ConstantOffsetPtrs.lookup(RHS);
Chandler Carruth0539c072012-03-31 12:42:41 +00001045 if (RHSBase && LHSBase == RHSBase) {
1046 // We have common bases, fold the subtract to a constant based on the
1047 // offsets.
1048 Constant *CLHS = ConstantInt::get(LHS->getContext(), LHSOffset);
1049 Constant *CRHS = ConstantInt::get(RHS->getContext(), RHSOffset);
1050 if (Constant *C = ConstantExpr::getSub(CLHS, CRHS)) {
1051 SimplifiedValues[&I] = C;
1052 ++NumConstantPtrDiffs;
1053 return true;
1054 }
1055 }
1056 }
1057
1058 // Otherwise, fall back to the generic logic for simplifying and handling
1059 // instructions.
1060 return Base::visitSub(I);
1061}
1062
1063bool CallAnalyzer::visitBinaryOperator(BinaryOperator &I) {
1064 Value *LHS = I.getOperand(0), *RHS = I.getOperand(1);
Easwaran Raman617f6362017-02-18 17:22:52 +00001065 auto Evaluate = [&](SmallVectorImpl<Constant *> &COps) {
1066 Value *SimpleV = nullptr;
Easwaran Raman617f6362017-02-18 17:22:52 +00001067 if (auto FI = dyn_cast<FPMathOperator>(&I))
1068 SimpleV = SimplifyFPBinOp(I.getOpcode(), COps[0], COps[1],
1069 FI->getFastMathFlags(), DL);
1070 else
1071 SimpleV = SimplifyBinOp(I.getOpcode(), COps[0], COps[1], DL);
1072 return dyn_cast_or_null<Constant>(SimpleV);
1073 };
Michael Zolotukhin4e8598e2015-02-06 20:02:51 +00001074
Easwaran Raman617f6362017-02-18 17:22:52 +00001075 if (simplifyInstruction(I, Evaluate))
Chandler Carruth0539c072012-03-31 12:42:41 +00001076 return true;
Chandler Carruth0539c072012-03-31 12:42:41 +00001077
1078 // Disable any SROA on arguments to arbitrary, unsimplified binary operators.
1079 disableSROA(LHS);
1080 disableSROA(RHS);
1081
1082 return false;
1083}
1084
1085bool CallAnalyzer::visitLoad(LoadInst &I) {
1086 Value *SROAArg;
1087 DenseMap<Value *, int>::iterator CostIt;
Wei Mi6c428d62015-03-20 18:33:12 +00001088 if (lookupSROAArgAndCost(I.getPointerOperand(), SROAArg, CostIt)) {
Chandler Carruth0539c072012-03-31 12:42:41 +00001089 if (I.isSimple()) {
1090 accumulateSROACost(CostIt, InlineConstants::InstrCost);
1091 return true;
1092 }
1093
1094 disableSROA(CostIt);
1095 }
1096
Haicheng Wua4461512017-12-15 14:34:41 +00001097 // If the data is already loaded from this address and hasn't been clobbered
1098 // by any stores or calls, this load is likely to be redundant and can be
1099 // eliminated.
1100 if (EnableLoadElimination &&
Haicheng Wub3689ca2017-12-19 13:42:58 +00001101 !LoadAddrSet.insert(I.getPointerOperand()).second && I.isUnordered()) {
Haicheng Wua4461512017-12-15 14:34:41 +00001102 LoadEliminationCost += InlineConstants::InstrCost;
1103 return true;
1104 }
1105
Chandler Carruth0539c072012-03-31 12:42:41 +00001106 return false;
1107}
1108
1109bool CallAnalyzer::visitStore(StoreInst &I) {
1110 Value *SROAArg;
1111 DenseMap<Value *, int>::iterator CostIt;
Wei Mi6c428d62015-03-20 18:33:12 +00001112 if (lookupSROAArgAndCost(I.getPointerOperand(), SROAArg, CostIt)) {
Chandler Carruth0539c072012-03-31 12:42:41 +00001113 if (I.isSimple()) {
1114 accumulateSROACost(CostIt, InlineConstants::InstrCost);
1115 return true;
1116 }
1117
1118 disableSROA(CostIt);
1119 }
1120
Haicheng Wua4461512017-12-15 14:34:41 +00001121 // The store can potentially clobber loads and prevent repeated loads from
1122 // being eliminated.
1123 // FIXME:
1124 // 1. We can probably keep an initial set of eliminatable loads substracted
1125 // from the cost even when we finally see a store. We just need to disable
1126 // *further* accumulation of elimination savings.
1127 // 2. We should probably at some point thread MemorySSA for the callee into
1128 // this and then use that to actually compute *really* precise savings.
1129 disableLoadElimination();
Chandler Carruth0539c072012-03-31 12:42:41 +00001130 return false;
1131}
1132
Chandler Carruth753e21d2012-12-28 14:23:32 +00001133bool CallAnalyzer::visitExtractValue(ExtractValueInst &I) {
1134 // Constant folding for extract value is trivial.
Easwaran Raman617f6362017-02-18 17:22:52 +00001135 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
1136 return ConstantExpr::getExtractValue(COps[0], I.getIndices());
1137 }))
Chandler Carruth753e21d2012-12-28 14:23:32 +00001138 return true;
Chandler Carruth753e21d2012-12-28 14:23:32 +00001139
1140 // SROA can look through these but give them a cost.
1141 return false;
1142}
1143
1144bool CallAnalyzer::visitInsertValue(InsertValueInst &I) {
1145 // Constant folding for insert value is trivial.
Easwaran Raman617f6362017-02-18 17:22:52 +00001146 if (simplifyInstruction(I, [&](SmallVectorImpl<Constant *> &COps) {
1147 return ConstantExpr::getInsertValue(/*AggregateOperand*/ COps[0],
1148 /*InsertedValueOperand*/ COps[1],
1149 I.getIndices());
1150 }))
Chandler Carruth753e21d2012-12-28 14:23:32 +00001151 return true;
Chandler Carruth753e21d2012-12-28 14:23:32 +00001152
1153 // SROA can look through these but give them a cost.
1154 return false;
1155}
1156
1157/// \brief Try to simplify a call site.
1158///
1159/// Takes a concrete function and callsite and tries to actually simplify it by
1160/// analyzing the arguments and call itself with instsimplify. Returns true if
1161/// it has simplified the callsite to some other entity (a constant), making it
1162/// free.
1163bool CallAnalyzer::simplifyCallSite(Function *F, CallSite CS) {
1164 // FIXME: Using the instsimplify logic directly for this is inefficient
1165 // because we have to continually rebuild the argument list even when no
1166 // simplifications can be performed. Until that is fixed with remapping
1167 // inside of instsimplify, directly constant fold calls here.
Andrew Kaylor647025f2017-06-09 23:18:11 +00001168 if (!canConstantFoldCallTo(CS, F))
Chandler Carruth753e21d2012-12-28 14:23:32 +00001169 return false;
1170
1171 // Try to re-map the arguments to constants.
1172 SmallVector<Constant *, 4> ConstantArgs;
1173 ConstantArgs.reserve(CS.arg_size());
Chad Rosier567556a2016-04-28 14:47:23 +00001174 for (CallSite::arg_iterator I = CS.arg_begin(), E = CS.arg_end(); I != E;
1175 ++I) {
Chandler Carruth753e21d2012-12-28 14:23:32 +00001176 Constant *C = dyn_cast<Constant>(*I);
1177 if (!C)
1178 C = dyn_cast_or_null<Constant>(SimplifiedValues.lookup(*I));
1179 if (!C)
1180 return false; // This argument doesn't map to a constant.
1181
1182 ConstantArgs.push_back(C);
1183 }
Andrew Kaylor647025f2017-06-09 23:18:11 +00001184 if (Constant *C = ConstantFoldCall(CS, F, ConstantArgs)) {
Chandler Carruth753e21d2012-12-28 14:23:32 +00001185 SimplifiedValues[CS.getInstruction()] = C;
1186 return true;
1187 }
1188
1189 return false;
1190}
1191
Chandler Carruth0539c072012-03-31 12:42:41 +00001192bool CallAnalyzer::visitCallSite(CallSite CS) {
Chandler Carruth37d25de2013-12-13 08:00:01 +00001193 if (CS.hasFnAttr(Attribute::ReturnsTwice) &&
Duncan P. N. Exon Smithb3fc83c2015-02-14 00:12:15 +00001194 !F.hasFnAttribute(Attribute::ReturnsTwice)) {
Chandler Carruth0539c072012-03-31 12:42:41 +00001195 // This aborts the entire analysis.
1196 ExposesReturnsTwice = true;
1197 return false;
1198 }
Chad Rosier567556a2016-04-28 14:47:23 +00001199 if (CS.isCall() && cast<CallInst>(CS.getInstruction())->cannotDuplicate())
James Molloy4f6fb952012-12-20 16:04:27 +00001200 ContainsNoDuplicateCall = true;
Chandler Carruth0539c072012-03-31 12:42:41 +00001201
Chandler Carruth0539c072012-03-31 12:42:41 +00001202 if (Function *F = CS.getCalledFunction()) {
Chandler Carruth753e21d2012-12-28 14:23:32 +00001203 // When we have a concrete function, first try to simplify it directly.
1204 if (simplifyCallSite(F, CS))
1205 return true;
1206
1207 // Next check if it is an intrinsic we know about.
1208 // FIXME: Lift this into part of the InstVisitor.
1209 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(CS.getInstruction())) {
1210 switch (II->getIntrinsicID()) {
1211 default:
Haicheng Wua4461512017-12-15 14:34:41 +00001212 if (!CS.onlyReadsMemory() && !isAssumeLikeIntrinsic(II))
1213 disableLoadElimination();
Chandler Carruth753e21d2012-12-28 14:23:32 +00001214 return Base::visitCallSite(CS);
1215
Peter Collingbourne7dd8dbf2016-04-22 21:18:02 +00001216 case Intrinsic::load_relative:
1217 // This is normally lowered to 4 LLVM instructions.
1218 Cost += 3 * InlineConstants::InstrCost;
1219 return false;
1220
Chandler Carruth753e21d2012-12-28 14:23:32 +00001221 case Intrinsic::memset:
1222 case Intrinsic::memcpy:
1223 case Intrinsic::memmove:
Haicheng Wua4461512017-12-15 14:34:41 +00001224 disableLoadElimination();
Chandler Carruth753e21d2012-12-28 14:23:32 +00001225 // SROA can usually chew through these intrinsics, but they aren't free.
1226 return false;
Reid Kleckner60381792015-07-07 22:25:32 +00001227 case Intrinsic::localescape:
Reid Kleckner223de262015-04-14 20:38:14 +00001228 HasFrameEscape = true;
1229 return false;
Chandler Carruth753e21d2012-12-28 14:23:32 +00001230 }
1231 }
1232
Davide Italiano9d939c82017-11-30 22:10:35 +00001233 if (F == CS.getInstruction()->getFunction()) {
Chandler Carruth0539c072012-03-31 12:42:41 +00001234 // This flag will fully abort the analysis, so don't bother with anything
1235 // else.
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001236 IsRecursiveCall = true;
Chandler Carruth0539c072012-03-31 12:42:41 +00001237 return false;
1238 }
1239
Chandler Carruth0ba8db42013-01-22 11:26:02 +00001240 if (TTI.isLoweredToCall(F)) {
Chandler Carruth0539c072012-03-31 12:42:41 +00001241 // We account for the average 1 instruction per call argument setup
1242 // here.
1243 Cost += CS.arg_size() * InlineConstants::InstrCost;
1244
1245 // Everything other than inline ASM will also have a significant cost
1246 // merely from making the call.
1247 if (!isa<InlineAsm>(CS.getCalledValue()))
1248 Cost += InlineConstants::CallPenalty;
1249 }
1250
Haicheng Wua4461512017-12-15 14:34:41 +00001251 if (!CS.onlyReadsMemory())
1252 disableLoadElimination();
Chandler Carruth0539c072012-03-31 12:42:41 +00001253 return Base::visitCallSite(CS);
1254 }
1255
1256 // Otherwise we're in a very special case -- an indirect function call. See
1257 // if we can be particularly clever about this.
1258 Value *Callee = CS.getCalledValue();
1259
1260 // First, pay the price of the argument setup. We account for the average
1261 // 1 instruction per call argument setup here.
1262 Cost += CS.arg_size() * InlineConstants::InstrCost;
1263
1264 // Next, check if this happens to be an indirect function call to a known
1265 // function in this inline context. If not, we've done all we can.
1266 Function *F = dyn_cast_or_null<Function>(SimplifiedValues.lookup(Callee));
Haicheng Wua4461512017-12-15 14:34:41 +00001267 if (!F) {
1268 if (!CS.onlyReadsMemory())
1269 disableLoadElimination();
Chandler Carruth0539c072012-03-31 12:42:41 +00001270 return Base::visitCallSite(CS);
Haicheng Wua4461512017-12-15 14:34:41 +00001271 }
Chandler Carruth0539c072012-03-31 12:42:41 +00001272
1273 // If we have a constant that we are calling as a function, we can peer
1274 // through it and see the function target. This happens not infrequently
1275 // during devirtualization and so we want to give it a hefty bonus for
1276 // inlining, but cap that bonus in the event that inlining wouldn't pan
1277 // out. Pretend to inline the function, with a custom threshold.
Easwaran Raman1c57cc22016-08-10 00:48:04 +00001278 auto IndirectCallParams = Params;
1279 IndirectCallParams.DefaultThreshold = InlineConstants::IndirectCallThreshold;
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001280 CallAnalyzer CA(TTI, GetAssumptionCache, GetBFI, PSI, ORE, *F, CS,
Easwaran Raman12585b02017-01-20 22:44:04 +00001281 IndirectCallParams);
Chandler Carruth0539c072012-03-31 12:42:41 +00001282 if (CA.analyzeCall(CS)) {
1283 // We were able to inline the indirect call! Subtract the cost from the
Easwaran Raman6d90d9f2015-12-07 21:21:20 +00001284 // threshold to get the bonus we want to apply, but don't go below zero.
1285 Cost -= std::max(0, CA.getThreshold() - CA.getCost());
Chandler Carruth0539c072012-03-31 12:42:41 +00001286 }
1287
Haicheng Wua4461512017-12-15 14:34:41 +00001288 if (!F->onlyReadsMemory())
1289 disableLoadElimination();
Chandler Carruth0539c072012-03-31 12:42:41 +00001290 return Base::visitCallSite(CS);
1291}
1292
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001293bool CallAnalyzer::visitReturnInst(ReturnInst &RI) {
1294 // At least one return instruction will be free after inlining.
1295 bool Free = !HasReturn;
1296 HasReturn = true;
1297 return Free;
1298}
1299
1300bool CallAnalyzer::visitBranchInst(BranchInst &BI) {
1301 // We model unconditional branches as essentially free -- they really
1302 // shouldn't exist at all, but handling them makes the behavior of the
1303 // inliner more regular and predictable. Interestingly, conditional branches
1304 // which will fold away are also free.
1305 return BI.isUnconditional() || isa<ConstantInt>(BI.getCondition()) ||
1306 dyn_cast_or_null<ConstantInt>(
1307 SimplifiedValues.lookup(BI.getCondition()));
1308}
1309
Haicheng Wu3ec848b2017-09-27 14:44:56 +00001310bool CallAnalyzer::visitSelectInst(SelectInst &SI) {
1311 bool CheckSROA = SI.getType()->isPointerTy();
1312 Value *TrueVal = SI.getTrueValue();
1313 Value *FalseVal = SI.getFalseValue();
1314
1315 Constant *TrueC = dyn_cast<Constant>(TrueVal);
1316 if (!TrueC)
1317 TrueC = SimplifiedValues.lookup(TrueVal);
1318 Constant *FalseC = dyn_cast<Constant>(FalseVal);
1319 if (!FalseC)
1320 FalseC = SimplifiedValues.lookup(FalseVal);
1321 Constant *CondC =
1322 dyn_cast_or_null<Constant>(SimplifiedValues.lookup(SI.getCondition()));
1323
1324 if (!CondC) {
1325 // Select C, X, X => X
1326 if (TrueC == FalseC && TrueC) {
1327 SimplifiedValues[&SI] = TrueC;
1328 return true;
1329 }
1330
1331 if (!CheckSROA)
1332 return Base::visitSelectInst(SI);
1333
1334 std::pair<Value *, APInt> TrueBaseAndOffset =
1335 ConstantOffsetPtrs.lookup(TrueVal);
1336 std::pair<Value *, APInt> FalseBaseAndOffset =
1337 ConstantOffsetPtrs.lookup(FalseVal);
1338 if (TrueBaseAndOffset == FalseBaseAndOffset && TrueBaseAndOffset.first) {
1339 ConstantOffsetPtrs[&SI] = TrueBaseAndOffset;
1340
1341 Value *SROAArg;
1342 DenseMap<Value *, int>::iterator CostIt;
1343 if (lookupSROAArgAndCost(TrueVal, SROAArg, CostIt))
1344 SROAArgValues[&SI] = SROAArg;
1345 return true;
1346 }
1347
1348 return Base::visitSelectInst(SI);
1349 }
1350
1351 // Select condition is a constant.
1352 Value *SelectedV = CondC->isAllOnesValue()
1353 ? TrueVal
1354 : (CondC->isNullValue()) ? FalseVal : nullptr;
1355 if (!SelectedV) {
1356 // Condition is a vector constant that is not all 1s or all 0s. If all
1357 // operands are constants, ConstantExpr::getSelect() can handle the cases
1358 // such as select vectors.
1359 if (TrueC && FalseC) {
1360 if (auto *C = ConstantExpr::getSelect(CondC, TrueC, FalseC)) {
1361 SimplifiedValues[&SI] = C;
1362 return true;
1363 }
1364 }
1365 return Base::visitSelectInst(SI);
1366 }
1367
1368 // Condition is either all 1s or all 0s. SI can be simplified.
1369 if (Constant *SelectedC = dyn_cast<Constant>(SelectedV)) {
1370 SimplifiedValues[&SI] = SelectedC;
1371 return true;
1372 }
1373
1374 if (!CheckSROA)
1375 return true;
1376
1377 std::pair<Value *, APInt> BaseAndOffset =
1378 ConstantOffsetPtrs.lookup(SelectedV);
1379 if (BaseAndOffset.first) {
1380 ConstantOffsetPtrs[&SI] = BaseAndOffset;
1381
1382 Value *SROAArg;
1383 DenseMap<Value *, int>::iterator CostIt;
1384 if (lookupSROAArgAndCost(SelectedV, SROAArg, CostIt))
1385 SROAArgValues[&SI] = SROAArg;
1386 }
1387
1388 return true;
1389}
1390
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001391bool CallAnalyzer::visitSwitchInst(SwitchInst &SI) {
1392 // We model unconditional switches as free, see the comments on handling
1393 // branches.
Chandler Carruthe01fd5f2014-04-28 08:52:44 +00001394 if (isa<ConstantInt>(SI.getCondition()))
1395 return true;
1396 if (Value *V = SimplifiedValues.lookup(SI.getCondition()))
1397 if (isa<ConstantInt>(V))
1398 return true;
1399
Eric Christopher7ad02ee2017-06-28 21:10:31 +00001400 // Assume the most general case where the switch is lowered into
Jun Bum Lim2960d412017-06-02 20:42:54 +00001401 // either a jump table, bit test, or a balanced binary tree consisting of
1402 // case clusters without merging adjacent clusters with the same
1403 // destination. We do not consider the switches that are lowered with a mix
1404 // of jump table/bit test/binary search tree. The cost of the switch is
1405 // proportional to the size of the tree or the size of jump table range.
1406 //
Chandler Carruthe01fd5f2014-04-28 08:52:44 +00001407 // NB: We convert large switches which are just used to initialize large phi
1408 // nodes to lookup tables instead in simplify-cfg, so this shouldn't prevent
1409 // inlining those. It will prevent inlining in cases where the optimization
1410 // does not (yet) fire.
Jun Bum Lim2960d412017-06-02 20:42:54 +00001411
Jun Bum Lim506cfb72017-06-23 16:12:37 +00001412 // Maximum valid cost increased in this function.
1413 int CostUpperBound = INT_MAX - InlineConstants::InstrCost - 1;
1414
Jun Bum Lim2960d412017-06-02 20:42:54 +00001415 // Exit early for a large switch, assuming one case needs at least one
1416 // instruction.
1417 // FIXME: This is not true for a bit test, but ignore such case for now to
1418 // save compile-time.
1419 int64_t CostLowerBound =
Jun Bum Lim506cfb72017-06-23 16:12:37 +00001420 std::min((int64_t)CostUpperBound,
Jun Bum Lim2960d412017-06-02 20:42:54 +00001421 (int64_t)SI.getNumCases() * InlineConstants::InstrCost + Cost);
1422
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001423 if (CostLowerBound > Threshold && !ComputeFullInlineCost) {
Jun Bum Lim2960d412017-06-02 20:42:54 +00001424 Cost = CostLowerBound;
1425 return false;
1426 }
1427
1428 unsigned JumpTableSize = 0;
1429 unsigned NumCaseCluster =
1430 TTI.getEstimatedNumberOfCaseClusters(SI, JumpTableSize);
1431
1432 // If suitable for a jump table, consider the cost for the table size and
1433 // branch to destination.
1434 if (JumpTableSize) {
1435 int64_t JTCost = (int64_t)JumpTableSize * InlineConstants::InstrCost +
1436 4 * InlineConstants::InstrCost;
Jun Bum Lim506cfb72017-06-23 16:12:37 +00001437
1438 Cost = std::min((int64_t)CostUpperBound, JTCost + Cost);
Jun Bum Lim2960d412017-06-02 20:42:54 +00001439 return false;
1440 }
1441
1442 // Considering forming a binary search, we should find the number of nodes
1443 // which is same as the number of comparisons when lowered. For a given
1444 // number of clusters, n, we can define a recursive function, f(n), to find
1445 // the number of nodes in the tree. The recursion is :
1446 // f(n) = 1 + f(n/2) + f (n - n/2), when n > 3,
1447 // and f(n) = n, when n <= 3.
1448 // This will lead a binary tree where the leaf should be either f(2) or f(3)
1449 // when n > 3. So, the number of comparisons from leaves should be n, while
1450 // the number of non-leaf should be :
1451 // 2^(log2(n) - 1) - 1
1452 // = 2^log2(n) * 2^-1 - 1
1453 // = n / 2 - 1.
1454 // Considering comparisons from leaf and non-leaf nodes, we can estimate the
1455 // number of comparisons in a simple closed form :
1456 // n + n / 2 - 1 = n * 3 / 2 - 1
1457 if (NumCaseCluster <= 3) {
1458 // Suppose a comparison includes one compare and one conditional branch.
1459 Cost += NumCaseCluster * 2 * InlineConstants::InstrCost;
1460 return false;
1461 }
Jun Bum Lim506cfb72017-06-23 16:12:37 +00001462
1463 int64_t ExpectedNumberOfCompare = 3 * (int64_t)NumCaseCluster / 2 - 1;
1464 int64_t SwitchCost =
Jun Bum Lim2960d412017-06-02 20:42:54 +00001465 ExpectedNumberOfCompare * 2 * InlineConstants::InstrCost;
Jun Bum Lim506cfb72017-06-23 16:12:37 +00001466
1467 Cost = std::min((int64_t)CostUpperBound, SwitchCost + Cost);
Chandler Carruthe01fd5f2014-04-28 08:52:44 +00001468 return false;
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001469}
1470
1471bool CallAnalyzer::visitIndirectBrInst(IndirectBrInst &IBI) {
1472 // We never want to inline functions that contain an indirectbr. This is
1473 // incorrect because all the blockaddress's (in static global initializers
1474 // for example) would be referring to the original function, and this
1475 // indirect jump would jump from the inlined copy of the function into the
1476 // original function which is extremely undefined behavior.
1477 // FIXME: This logic isn't really right; we can safely inline functions with
1478 // indirectbr's as long as no other function or global references the
Gerolf Hoflehner734f4c82014-07-01 00:19:34 +00001479 // blockaddress of a block within the current function.
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001480 HasIndirectBr = true;
1481 return false;
1482}
1483
1484bool CallAnalyzer::visitResumeInst(ResumeInst &RI) {
1485 // FIXME: It's not clear that a single instruction is an accurate model for
1486 // the inline cost of a resume instruction.
1487 return false;
1488}
1489
David Majnemer654e1302015-07-31 17:58:14 +00001490bool CallAnalyzer::visitCleanupReturnInst(CleanupReturnInst &CRI) {
1491 // FIXME: It's not clear that a single instruction is an accurate model for
1492 // the inline cost of a cleanupret instruction.
1493 return false;
1494}
1495
1496bool CallAnalyzer::visitCatchReturnInst(CatchReturnInst &CRI) {
1497 // FIXME: It's not clear that a single instruction is an accurate model for
Joseph Tremoulet8220bcc2015-08-23 00:26:33 +00001498 // the inline cost of a catchret instruction.
David Majnemer654e1302015-07-31 17:58:14 +00001499 return false;
1500}
1501
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001502bool CallAnalyzer::visitUnreachableInst(UnreachableInst &I) {
1503 // FIXME: It might be reasonably to discount the cost of instructions leading
1504 // to unreachable as they have the lowest possible impact on both runtime and
1505 // code size.
1506 return true; // No actual code is needed for unreachable.
1507}
1508
Chandler Carruth0539c072012-03-31 12:42:41 +00001509bool CallAnalyzer::visitInstruction(Instruction &I) {
Chandler Carruthda7513a2012-05-04 00:58:03 +00001510 // Some instructions are free. All of the free intrinsics can also be
1511 // handled by SROA, etc.
Chandler Carruthb8cf5102013-01-21 12:05:16 +00001512 if (TargetTransformInfo::TCC_Free == TTI.getUserCost(&I))
Chandler Carruthda7513a2012-05-04 00:58:03 +00001513 return true;
1514
Chandler Carruth0539c072012-03-31 12:42:41 +00001515 // We found something we don't understand or can't handle. Mark any SROA-able
1516 // values in the operand list as no longer viable.
1517 for (User::op_iterator OI = I.op_begin(), OE = I.op_end(); OI != OE; ++OI)
1518 disableSROA(*OI);
1519
1520 return false;
1521}
1522
Chandler Carruth0539c072012-03-31 12:42:41 +00001523/// \brief Analyze a basic block for its contribution to the inline cost.
1524///
1525/// This method walks the analyzer over every instruction in the given basic
1526/// block and accounts for their cost during inlining at this callsite. It
1527/// aborts early if the threshold has been exceeded or an impossible to inline
1528/// construct has been detected. It returns false if inlining is no longer
1529/// viable, and true if inlining remains viable.
Hal Finkel57f03dd2014-09-07 13:49:57 +00001530bool CallAnalyzer::analyzeBlock(BasicBlock *BB,
1531 SmallPtrSetImpl<const Value *> &EphValues) {
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001532 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I) {
Chandler Carruth6b4cc8b2014-02-01 10:38:17 +00001533 // FIXME: Currently, the number of instructions in a function regardless of
1534 // our ability to simplify them during inline to constants or dead code,
1535 // are actually used by the vector bonus heuristic. As long as that's true,
1536 // we have to special case debug intrinsics here to prevent differences in
1537 // inlining due to debug symbols. Eventually, the number of unsimplified
1538 // instructions shouldn't factor into the cost computation, but until then,
1539 // hack around it here.
1540 if (isa<DbgInfoIntrinsic>(I))
1541 continue;
1542
Hal Finkel57f03dd2014-09-07 13:49:57 +00001543 // Skip ephemeral values.
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00001544 if (EphValues.count(&*I))
Hal Finkel57f03dd2014-09-07 13:49:57 +00001545 continue;
1546
Chandler Carruth0539c072012-03-31 12:42:41 +00001547 ++NumInstructions;
1548 if (isa<ExtractElementInst>(I) || I->getType()->isVectorTy())
1549 ++NumVectorInstructions;
1550
Sanjay Patele9434e82015-09-15 15:26:25 +00001551 // If the instruction is floating point, and the target says this operation
1552 // is expensive or the function has the "use-soft-float" attribute, this may
1553 // eventually become a library call. Treat the cost as such.
Cameron Esfahani17177d12015-02-05 02:09:33 +00001554 if (I->getType()->isFloatingPointTy()) {
Sanjay Patele9434e82015-09-15 15:26:25 +00001555 // If the function has the "use-soft-float" attribute, mark it as
1556 // expensive.
Cameron Esfahani17177d12015-02-05 02:09:33 +00001557 if (TTI.getFPOpCost(I->getType()) == TargetTransformInfo::TCC_Expensive ||
Eric Christopher908ed7f2017-04-15 06:14:52 +00001558 (F.getFnAttribute("use-soft-float").getValueAsString() == "true"))
Cameron Esfahani17177d12015-02-05 02:09:33 +00001559 Cost += InlineConstants::CallPenalty;
1560 }
1561
Chandler Carruth0539c072012-03-31 12:42:41 +00001562 // If the instruction simplified to a constant, there is no cost to this
1563 // instruction. Visit the instructions using our InstVisitor to account for
1564 // all of the per-instruction logic. The visit tree returns true if we
1565 // consumed the instruction in any way, and false if the instruction's base
1566 // cost should count against inlining.
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00001567 if (Base::visit(&*I))
Chandler Carruth0539c072012-03-31 12:42:41 +00001568 ++NumInstructionsSimplified;
1569 else
1570 Cost += InlineConstants::InstrCost;
1571
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001572 using namespace ore;
Chandler Carruth0539c072012-03-31 12:42:41 +00001573 // If the visit this instruction detected an uninlinable pattern, abort.
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001574 if (IsRecursiveCall || ExposesReturnsTwice || HasDynamicAlloca ||
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001575 HasIndirectBr || HasFrameEscape) {
1576 if (ORE)
Vivek Pandya95906582017-10-11 17:12:59 +00001577 ORE->emit([&]() {
1578 return OptimizationRemarkMissed(DEBUG_TYPE, "NeverInline",
1579 CandidateCS.getInstruction())
1580 << NV("Callee", &F)
1581 << " has uninlinable pattern and cost is not fully computed";
1582 });
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001583 return false;
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001584 }
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001585
1586 // If the caller is a recursive function then we don't want to inline
1587 // functions which allocate a lot of stack space because it would increase
1588 // the caller stack usage dramatically.
1589 if (IsCallerRecursive &&
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001590 AllocatedSize > InlineConstants::TotalAllocaSizeRecursiveCaller) {
1591 if (ORE)
Vivek Pandya95906582017-10-11 17:12:59 +00001592 ORE->emit([&]() {
1593 return OptimizationRemarkMissed(DEBUG_TYPE, "NeverInline",
1594 CandidateCS.getInstruction())
1595 << NV("Callee", &F)
1596 << " is recursive and allocates too much stack space. Cost is "
1597 "not fully computed";
1598 });
Chandler Carruth0539c072012-03-31 12:42:41 +00001599 return false;
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001600 }
Chandler Carruth0539c072012-03-31 12:42:41 +00001601
Chandler Carrutha004f222015-05-27 02:49:05 +00001602 // Check if we've past the maximum possible threshold so we don't spin in
1603 // huge basic blocks that will never inline.
Haicheng Wu61995362017-08-25 19:00:33 +00001604 if (Cost >= Threshold && !ComputeFullInlineCost)
Chandler Carruth0539c072012-03-31 12:42:41 +00001605 return false;
1606 }
1607
1608 return true;
1609}
1610
1611/// \brief Compute the base pointer and cumulative constant offsets for V.
1612///
1613/// This strips all constant offsets off of V, leaving it the base pointer, and
1614/// accumulates the total constant offset applied in the returned constant. It
1615/// returns 0 if V is not a pointer, and returns the constant '0' if there are
1616/// no constant offsets applied.
1617ConstantInt *CallAnalyzer::stripAndComputeInBoundsConstantOffsets(Value *&V) {
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001618 if (!V->getType()->isPointerTy())
Craig Topper353eda42014-04-24 06:44:33 +00001619 return nullptr;
Chandler Carruth0539c072012-03-31 12:42:41 +00001620
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001621 unsigned IntPtrWidth = DL.getPointerSizeInBits();
Chandler Carruth0539c072012-03-31 12:42:41 +00001622 APInt Offset = APInt::getNullValue(IntPtrWidth);
1623
1624 // Even though we don't look through PHI nodes, we could be called on an
1625 // instruction in an unreachable block, which may be on a cycle.
1626 SmallPtrSet<Value *, 4> Visited;
1627 Visited.insert(V);
1628 do {
1629 if (GEPOperator *GEP = dyn_cast<GEPOperator>(V)) {
1630 if (!GEP->isInBounds() || !accumulateGEPOffset(*GEP, Offset))
Craig Topper353eda42014-04-24 06:44:33 +00001631 return nullptr;
Chandler Carruth0539c072012-03-31 12:42:41 +00001632 V = GEP->getPointerOperand();
1633 } else if (Operator::getOpcode(V) == Instruction::BitCast) {
1634 V = cast<Operator>(V)->getOperand(0);
1635 } else if (GlobalAlias *GA = dyn_cast<GlobalAlias>(V)) {
Sanjoy Das5ce32722016-04-08 00:48:30 +00001636 if (GA->isInterposable())
Chandler Carruth0539c072012-03-31 12:42:41 +00001637 break;
1638 V = GA->getAliasee();
1639 } else {
1640 break;
1641 }
1642 assert(V->getType()->isPointerTy() && "Unexpected operand type!");
David Blaikie70573dc2014-11-19 07:49:26 +00001643 } while (Visited.insert(V).second);
Chandler Carruth0539c072012-03-31 12:42:41 +00001644
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001645 Type *IntPtrTy = DL.getIntPtrType(V->getContext());
Chandler Carruth0539c072012-03-31 12:42:41 +00001646 return cast<ConstantInt>(ConstantInt::get(IntPtrTy, Offset));
1647}
1648
Haicheng Wu3739e142017-12-14 14:36:18 +00001649/// \brief Find dead blocks due to deleted CFG edges during inlining.
1650///
1651/// If we know the successor of the current block, \p CurrBB, has to be \p
1652/// NextBB, the other successors of \p CurrBB are dead if these successors have
1653/// no live incoming CFG edges. If one block is found to be dead, we can
1654/// continue growing the dead block list by checking the successors of the dead
1655/// blocks to see if all their incoming edges are dead or not.
1656void CallAnalyzer::findDeadBlocks(BasicBlock *CurrBB, BasicBlock *NextBB) {
1657 auto IsEdgeDead = [&](BasicBlock *Pred, BasicBlock *Succ) {
1658 // A CFG edge is dead if the predecessor is dead or the predessor has a
1659 // known successor which is not the one under exam.
1660 return (DeadBlocks.count(Pred) ||
1661 (KnownSuccessors[Pred] && KnownSuccessors[Pred] != Succ));
1662 };
1663
1664 auto IsNewlyDead = [&](BasicBlock *BB) {
1665 // If all the edges to a block are dead, the block is also dead.
1666 return (!DeadBlocks.count(BB) &&
1667 llvm::all_of(predecessors(BB),
1668 [&](BasicBlock *P) { return IsEdgeDead(P, BB); }));
1669 };
1670
1671 for (BasicBlock *Succ : successors(CurrBB)) {
1672 if (Succ == NextBB || !IsNewlyDead(Succ))
1673 continue;
1674 SmallVector<BasicBlock *, 4> NewDead;
1675 NewDead.push_back(Succ);
1676 while (!NewDead.empty()) {
1677 BasicBlock *Dead = NewDead.pop_back_val();
1678 if (DeadBlocks.insert(Dead))
1679 // Continue growing the dead block lists.
1680 for (BasicBlock *S : successors(Dead))
1681 if (IsNewlyDead(S))
1682 NewDead.push_back(S);
1683 }
1684 }
1685}
1686
Chandler Carruth0539c072012-03-31 12:42:41 +00001687/// \brief Analyze a call site for potential inlining.
1688///
1689/// Returns true if inlining this call is viable, and false if it is not
1690/// viable. It computes the cost and adjusts the threshold based on numerous
1691/// factors and heuristics. If this method returns false but the computed cost
1692/// is below the computed threshold, then inlining was forcibly disabled by
Bob Wilson266802d2012-11-19 07:04:30 +00001693/// some artifact of the routine.
Chandler Carruth0539c072012-03-31 12:42:41 +00001694bool CallAnalyzer::analyzeCall(CallSite CS) {
Chandler Carruth7ae90d42012-04-11 10:15:10 +00001695 ++NumCallsAnalyzed;
1696
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001697 // Perform some tweaks to the cost and threshold based on the direct
1698 // callsite information.
Chandler Carruth0539c072012-03-31 12:42:41 +00001699
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001700 // We want to more aggressively inline vector-dense kernels, so up the
1701 // threshold, and we'll lower it if the % of vector instructions gets too
Chandler Carrutha004f222015-05-27 02:49:05 +00001702 // low. Note that these bonuses are some what arbitrary and evolved over time
1703 // by accident as much as because they are principled bonuses.
1704 //
1705 // FIXME: It would be nice to remove all such bonuses. At least it would be
1706 // nice to base the bonus values on something more scientific.
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001707 assert(NumInstructions == 0);
1708 assert(NumVectorInstructions == 0);
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +00001709
1710 // Update the threshold based on callsite properties
1711 updateThreshold(CS, F);
1712
Chandler Carrutha004f222015-05-27 02:49:05 +00001713 // Speculatively apply all possible bonuses to Threshold. If cost exceeds
1714 // this Threshold any time, and cost cannot decrease, we can stop processing
1715 // the rest of the function body.
Easwaran Raman51b809b2017-07-28 21:47:36 +00001716 Threshold += (SingleBBBonus + VectorBonus);
Chandler Carrutha004f222015-05-27 02:49:05 +00001717
Xinliang David Li351d9b02017-05-02 05:38:41 +00001718 // Give out bonuses for the callsite, as the instructions setting them up
1719 // will be gone after inlining.
1720 Cost -= getCallsiteCost(CS, DL);
Benjamin Kramerc99d0e92012-08-07 11:13:19 +00001721
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001722 // If this function uses the coldcc calling convention, prefer not to inline
1723 // it.
1724 if (F.getCallingConv() == CallingConv::Cold)
1725 Cost += InlineConstants::ColdccPenalty;
1726
1727 // Check if we're done. This can happen due to bonuses and penalties.
Haicheng Wu61995362017-08-25 19:00:33 +00001728 if (Cost >= Threshold && !ComputeFullInlineCost)
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001729 return false;
1730
Chandler Carruth0539c072012-03-31 12:42:41 +00001731 if (F.empty())
1732 return true;
1733
Davide Italiano9d939c82017-11-30 22:10:35 +00001734 Function *Caller = CS.getInstruction()->getFunction();
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001735 // Check if the caller function is recursive itself.
Chandler Carruthcdf47882014-03-09 03:16:01 +00001736 for (User *U : Caller->users()) {
1737 CallSite Site(U);
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001738 if (!Site)
1739 continue;
1740 Instruction *I = Site.getInstruction();
Davide Italiano9d939c82017-11-30 22:10:35 +00001741 if (I->getFunction() == Caller) {
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001742 IsCallerRecursive = true;
1743 break;
1744 }
1745 }
1746
Chandler Carruth0539c072012-03-31 12:42:41 +00001747 // Populate our simplified values by mapping from function arguments to call
1748 // arguments with known important simplifications.
1749 CallSite::arg_iterator CAI = CS.arg_begin();
1750 for (Function::arg_iterator FAI = F.arg_begin(), FAE = F.arg_end();
1751 FAI != FAE; ++FAI, ++CAI) {
1752 assert(CAI != CS.arg_end());
1753 if (Constant *C = dyn_cast<Constant>(CAI))
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00001754 SimplifiedValues[&*FAI] = C;
Chandler Carruth0539c072012-03-31 12:42:41 +00001755
1756 Value *PtrArg = *CAI;
1757 if (ConstantInt *C = stripAndComputeInBoundsConstantOffsets(PtrArg)) {
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00001758 ConstantOffsetPtrs[&*FAI] = std::make_pair(PtrArg, C->getValue());
Chandler Carruth0539c072012-03-31 12:42:41 +00001759
1760 // We can SROA any pointer arguments derived from alloca instructions.
1761 if (isa<AllocaInst>(PtrArg)) {
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00001762 SROAArgValues[&*FAI] = PtrArg;
Chandler Carruth0539c072012-03-31 12:42:41 +00001763 SROAArgCosts[PtrArg] = 0;
1764 }
1765 }
1766 }
1767 NumConstantArgs = SimplifiedValues.size();
1768 NumConstantOffsetPtrArgs = ConstantOffsetPtrs.size();
1769 NumAllocaArgs = SROAArgValues.size();
1770
Hal Finkel57f03dd2014-09-07 13:49:57 +00001771 // FIXME: If a caller has multiple calls to a callee, we end up recomputing
1772 // the ephemeral values multiple times (and they're completely determined by
1773 // the callee, so this is purely duplicate work).
1774 SmallPtrSet<const Value *, 32> EphValues;
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001775 CodeMetrics::collectEphemeralValues(&F, &GetAssumptionCache(F), EphValues);
Hal Finkel57f03dd2014-09-07 13:49:57 +00001776
Chandler Carruth0539c072012-03-31 12:42:41 +00001777 // The worklist of live basic blocks in the callee *after* inlining. We avoid
1778 // adding basic blocks of the callee which can be proven to be dead for this
1779 // particular call site in order to get more accurate cost estimates. This
1780 // requires a somewhat heavyweight iteration pattern: we need to walk the
1781 // basic blocks in a breadth-first order as we insert live successors. To
1782 // accomplish this, prioritizing for small iterations because we exit after
1783 // crossing our threshold, we use a small-size optimized SetVector.
1784 typedef SetVector<BasicBlock *, SmallVector<BasicBlock *, 16>,
Chad Rosier567556a2016-04-28 14:47:23 +00001785 SmallPtrSet<BasicBlock *, 16>>
1786 BBSetVector;
Chandler Carruth0539c072012-03-31 12:42:41 +00001787 BBSetVector BBWorklist;
1788 BBWorklist.insert(&F.getEntryBlock());
Easwaran Raman51b809b2017-07-28 21:47:36 +00001789 bool SingleBB = true;
Chandler Carruth0539c072012-03-31 12:42:41 +00001790 // Note that we *must not* cache the size, this loop grows the worklist.
1791 for (unsigned Idx = 0; Idx != BBWorklist.size(); ++Idx) {
1792 // Bail out the moment we cross the threshold. This means we'll under-count
1793 // the cost, but only when undercounting doesn't matter.
Haicheng Wu61995362017-08-25 19:00:33 +00001794 if (Cost >= Threshold && !ComputeFullInlineCost)
Chandler Carruth0539c072012-03-31 12:42:41 +00001795 break;
1796
1797 BasicBlock *BB = BBWorklist[Idx];
1798 if (BB->empty())
Chandler Carruth4d1d34f2012-03-14 23:19:53 +00001799 continue;
Dan Gohman4552e3c2009-10-13 18:30:07 +00001800
Gerolf Hoflehner734f4c82014-07-01 00:19:34 +00001801 // Disallow inlining a blockaddress. A blockaddress only has defined
1802 // behavior for an indirect branch in the same function, and we do not
1803 // currently support inlining indirect branches. But, the inliner may not
1804 // see an indirect branch that ends up being dead code at a particular call
1805 // site. If the blockaddress escapes the function, e.g., via a global
1806 // variable, inlining may lead to an invalid cross-function reference.
1807 if (BB->hasAddressTaken())
1808 return false;
1809
Chandler Carruth0539c072012-03-31 12:42:41 +00001810 // Analyze the cost of this block. If we blow through the threshold, this
1811 // returns false, and we can bail on out.
Easwaran Ramand295b002016-04-13 21:20:22 +00001812 if (!analyzeBlock(BB, EphValues))
1813 return false;
Eric Christopher46308e62011-02-01 01:16:32 +00001814
Chandler Carruth0814d2a2013-12-13 07:59:56 +00001815 TerminatorInst *TI = BB->getTerminator();
1816
Chandler Carruth0539c072012-03-31 12:42:41 +00001817 // Add in the live successors by first checking whether we have terminator
1818 // that may be simplified based on the values simplified by this call.
1819 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
1820 if (BI->isConditional()) {
1821 Value *Cond = BI->getCondition();
Chad Rosier567556a2016-04-28 14:47:23 +00001822 if (ConstantInt *SimpleCond =
1823 dyn_cast_or_null<ConstantInt>(SimplifiedValues.lookup(Cond))) {
Haicheng Wu3739e142017-12-14 14:36:18 +00001824 BasicBlock *NextBB = BI->getSuccessor(SimpleCond->isZero() ? 1 : 0);
1825 BBWorklist.insert(NextBB);
1826 KnownSuccessors[BB] = NextBB;
1827 findDeadBlocks(BB, NextBB);
Chandler Carruth0539c072012-03-31 12:42:41 +00001828 continue;
Eric Christopher46308e62011-02-01 01:16:32 +00001829 }
Chandler Carruth0539c072012-03-31 12:42:41 +00001830 }
1831 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
1832 Value *Cond = SI->getCondition();
Chad Rosier567556a2016-04-28 14:47:23 +00001833 if (ConstantInt *SimpleCond =
1834 dyn_cast_or_null<ConstantInt>(SimplifiedValues.lookup(Cond))) {
Haicheng Wu3739e142017-12-14 14:36:18 +00001835 BasicBlock *NextBB = SI->findCaseValue(SimpleCond)->getCaseSuccessor();
1836 BBWorklist.insert(NextBB);
1837 KnownSuccessors[BB] = NextBB;
1838 findDeadBlocks(BB, NextBB);
Chandler Carruth0539c072012-03-31 12:42:41 +00001839 continue;
1840 }
1841 }
Eric Christopher46308e62011-02-01 01:16:32 +00001842
Chandler Carruth0539c072012-03-31 12:42:41 +00001843 // If we're unable to select a particular successor, just count all of
1844 // them.
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001845 for (unsigned TIdx = 0, TSize = TI->getNumSuccessors(); TIdx != TSize;
1846 ++TIdx)
Chandler Carruth0539c072012-03-31 12:42:41 +00001847 BBWorklist.insert(TI->getSuccessor(TIdx));
1848
1849 // If we had any successors at this point, than post-inlining is likely to
1850 // have them as well. Note that we assume any basic blocks which existed
1851 // due to branches or switches which folded above will also fold after
1852 // inlining.
1853 if (SingleBB && TI->getNumSuccessors() > 1) {
1854 // Take off the bonus we applied to the threshold.
1855 Threshold -= SingleBBBonus;
1856 SingleBB = false;
Eric Christopher46308e62011-02-01 01:16:32 +00001857 }
1858 }
Andrew Trickcaa500b2011-10-01 01:27:56 +00001859
Easwaran Raman51b809b2017-07-28 21:47:36 +00001860 bool OnlyOneCallAndLocalLinkage =
1861 F.hasLocalLinkage() && F.hasOneUse() && &F == CS.getCalledFunction();
Chandler Carruthcb5beb32013-12-12 11:59:26 +00001862 // If this is a noduplicate call, we can still inline as long as
James Molloy4f6fb952012-12-20 16:04:27 +00001863 // inlining this would cause the removal of the caller (so the instruction
1864 // is not actually duplicated, just moved).
1865 if (!OnlyOneCallAndLocalLinkage && ContainsNoDuplicateCall)
1866 return false;
1867
Chandler Carrutha004f222015-05-27 02:49:05 +00001868 // We applied the maximum possible vector bonus at the beginning. Now,
1869 // subtract the excess bonus, if any, from the Threshold before
1870 // comparing against Cost.
1871 if (NumVectorInstructions <= NumInstructions / 10)
Easwaran Raman51b809b2017-07-28 21:47:36 +00001872 Threshold -= VectorBonus;
Chandler Carrutha004f222015-05-27 02:49:05 +00001873 else if (NumVectorInstructions <= NumInstructions / 2)
Easwaran Raman51b809b2017-07-28 21:47:36 +00001874 Threshold -= VectorBonus/2;
Chandler Carruth0539c072012-03-31 12:42:41 +00001875
Hans Wennborg00ab73d2016-02-05 20:32:42 +00001876 return Cost < std::max(1, Threshold);
Eric Christopher2dfbd7e2011-02-05 00:49:15 +00001877}
1878
Aaron Ballman615eb472017-10-15 14:32:27 +00001879#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Chandler Carruth0539c072012-03-31 12:42:41 +00001880/// \brief Dump stats about this call's analysis.
Yaron Kereneb2a2542016-01-29 20:50:44 +00001881LLVM_DUMP_METHOD void CallAnalyzer::dump() {
Eric Christophera13839f2014-02-26 23:27:16 +00001882#define DEBUG_PRINT_STAT(x) dbgs() << " " #x ": " << x << "\n"
Chandler Carruth0539c072012-03-31 12:42:41 +00001883 DEBUG_PRINT_STAT(NumConstantArgs);
1884 DEBUG_PRINT_STAT(NumConstantOffsetPtrArgs);
1885 DEBUG_PRINT_STAT(NumAllocaArgs);
1886 DEBUG_PRINT_STAT(NumConstantPtrCmps);
1887 DEBUG_PRINT_STAT(NumConstantPtrDiffs);
1888 DEBUG_PRINT_STAT(NumInstructionsSimplified);
Chandler Carrutha004f222015-05-27 02:49:05 +00001889 DEBUG_PRINT_STAT(NumInstructions);
Chandler Carruth0539c072012-03-31 12:42:41 +00001890 DEBUG_PRINT_STAT(SROACostSavings);
1891 DEBUG_PRINT_STAT(SROACostSavingsLost);
Haicheng Wua4461512017-12-15 14:34:41 +00001892 DEBUG_PRINT_STAT(LoadEliminationCost);
James Molloy4f6fb952012-12-20 16:04:27 +00001893 DEBUG_PRINT_STAT(ContainsNoDuplicateCall);
Chandler Carruth394e34f2014-01-31 22:32:32 +00001894 DEBUG_PRINT_STAT(Cost);
1895 DEBUG_PRINT_STAT(Threshold);
Chandler Carruth0539c072012-03-31 12:42:41 +00001896#undef DEBUG_PRINT_STAT
Eric Christopher2dfbd7e2011-02-05 00:49:15 +00001897}
Manman Renc3366cc2012-09-06 19:55:56 +00001898#endif
Eric Christopher2dfbd7e2011-02-05 00:49:15 +00001899
Evgeniy Stepanov2ad36982013-08-08 08:22:39 +00001900/// \brief Test that there are no attribute conflicts between Caller and Callee
1901/// that prevent inlining.
1902static bool functionsHaveCompatibleAttributes(Function *Caller,
Eric Christopher4371b132015-07-02 01:11:47 +00001903 Function *Callee,
1904 TargetTransformInfo &TTI) {
Eric Christopherd566fb12015-07-29 22:09:48 +00001905 return TTI.areInlineCompatible(Caller, Callee) &&
Akira Hatanaka1cb242e2015-12-22 23:57:37 +00001906 AttributeFuncs::areInlineCompatible(*Caller, *Callee);
Evgeniy Stepanov2ad36982013-08-08 08:22:39 +00001907}
1908
Xinliang David Li351d9b02017-05-02 05:38:41 +00001909int llvm::getCallsiteCost(CallSite CS, const DataLayout &DL) {
1910 int Cost = 0;
1911 for (unsigned I = 0, E = CS.arg_size(); I != E; ++I) {
1912 if (CS.isByValArgument(I)) {
1913 // We approximate the number of loads and stores needed by dividing the
1914 // size of the byval type by the target's pointer size.
1915 PointerType *PTy = cast<PointerType>(CS.getArgument(I)->getType());
1916 unsigned TypeSize = DL.getTypeSizeInBits(PTy->getElementType());
1917 unsigned PointerSize = DL.getPointerSizeInBits();
1918 // Ceiling division.
1919 unsigned NumStores = (TypeSize + PointerSize - 1) / PointerSize;
1920
1921 // If it generates more than 8 stores it is likely to be expanded as an
1922 // inline memcpy so we take that as an upper bound. Otherwise we assume
1923 // one load and one store per word copied.
1924 // FIXME: The maxStoresPerMemcpy setting from the target should be used
1925 // here instead of a magic number of 8, but it's not available via
1926 // DataLayout.
1927 NumStores = std::min(NumStores, 8U);
1928
1929 Cost += 2 * NumStores * InlineConstants::InstrCost;
1930 } else {
1931 // For non-byval arguments subtract off one instruction per call
1932 // argument.
1933 Cost += InlineConstants::InstrCost;
1934 }
1935 }
1936 // The call instruction also disappears after inlining.
1937 Cost += InlineConstants::InstrCost + InlineConstants::CallPenalty;
1938 return Cost;
1939}
1940
Sean Silvaab6a6832016-07-23 04:22:50 +00001941InlineCost llvm::getInlineCost(
Easwaran Raman1c57cc22016-08-10 00:48:04 +00001942 CallSite CS, const InlineParams &Params, TargetTransformInfo &CalleeTTI,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001943 std::function<AssumptionCache &(Function &)> &GetAssumptionCache,
Easwaran Raman12585b02017-01-20 22:44:04 +00001944 Optional<function_ref<BlockFrequencyInfo &(Function &)>> GetBFI,
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001945 ProfileSummaryInfo *PSI, OptimizationRemarkEmitter *ORE) {
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001946 return getInlineCost(CS, CS.getCalledFunction(), Params, CalleeTTI,
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001947 GetAssumptionCache, GetBFI, PSI, ORE);
Easwaran Ramanb9f71202015-12-28 20:28:19 +00001948}
1949
Sean Silvaab6a6832016-07-23 04:22:50 +00001950InlineCost llvm::getInlineCost(
Easwaran Raman1c57cc22016-08-10 00:48:04 +00001951 CallSite CS, Function *Callee, const InlineParams &Params,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001952 TargetTransformInfo &CalleeTTI,
1953 std::function<AssumptionCache &(Function &)> &GetAssumptionCache,
Easwaran Raman12585b02017-01-20 22:44:04 +00001954 Optional<function_ref<BlockFrequencyInfo &(Function &)>> GetBFI,
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001955 ProfileSummaryInfo *PSI, OptimizationRemarkEmitter *ORE) {
Easwaran Ramanf4bb2f02016-01-14 23:16:29 +00001956
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001957 // Cannot inline indirect calls.
1958 if (!Callee)
1959 return llvm::InlineCost::getNever();
1960
1961 // Calls to functions with always-inline attributes should be inlined
1962 // whenever possible.
Peter Collingbourne68a88972014-05-19 18:25:54 +00001963 if (CS.hasFnAttr(Attribute::AlwaysInline)) {
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001964 if (isInlineViable(*Callee))
1965 return llvm::InlineCost::getAlways();
1966 return llvm::InlineCost::getNever();
1967 }
1968
Evgeniy Stepanov2ad36982013-08-08 08:22:39 +00001969 // Never inline functions with conflicting attributes (unless callee has
1970 // always-inline attribute).
Chad Rosier5ce28f42017-08-02 14:50:27 +00001971 Function *Caller = CS.getCaller();
1972 if (!functionsHaveCompatibleAttributes(Caller, Callee, CalleeTTI))
Evgeniy Stepanov2ad36982013-08-08 08:22:39 +00001973 return llvm::InlineCost::getNever();
1974
Paul Robinsondcbe35b2013-11-18 21:44:03 +00001975 // Don't inline this call if the caller has the optnone attribute.
Chad Rosier5ce28f42017-08-02 14:50:27 +00001976 if (Caller->hasFnAttribute(Attribute::OptimizeNone))
Paul Robinsondcbe35b2013-11-18 21:44:03 +00001977 return llvm::InlineCost::getNever();
1978
Sanjoy Das5ce32722016-04-08 00:48:30 +00001979 // Don't inline functions which can be interposed at link-time. Don't inline
1980 // functions marked noinline or call sites marked noinline.
Craig Topper107b1872016-12-09 02:18:04 +00001981 // Note: inlining non-exact non-interposable functions is fine, since we know
Sanjoy Das5ce32722016-04-08 00:48:30 +00001982 // we have *a* correct implementation of the source level function.
Chad Rosier567556a2016-04-28 14:47:23 +00001983 if (Callee->isInterposable() || Callee->hasFnAttribute(Attribute::NoInline) ||
1984 CS.isNoInline())
Dan Gohman4552e3c2009-10-13 18:30:07 +00001985 return llvm::InlineCost::getNever();
1986
Nadav Rotem4eb3d4b2012-09-19 08:08:04 +00001987 DEBUG(llvm::dbgs() << " Analyzing call of " << Callee->getName()
Chad Rosier4eb18742017-08-21 19:56:46 +00001988 << "... (caller:" << Caller->getName() << ")\n");
Andrew Trickcaa500b2011-10-01 01:27:56 +00001989
Haicheng Wu0812c5b2017-08-21 20:00:09 +00001990 CallAnalyzer CA(CalleeTTI, GetAssumptionCache, GetBFI, PSI, ORE, *Callee, CS,
Easwaran Raman12585b02017-01-20 22:44:04 +00001991 Params);
Chandler Carruth0539c072012-03-31 12:42:41 +00001992 bool ShouldInline = CA.analyzeCall(CS);
Dan Gohman4552e3c2009-10-13 18:30:07 +00001993
Chandler Carruth0539c072012-03-31 12:42:41 +00001994 DEBUG(CA.dump());
1995
1996 // Check if there was a reason to force inlining or no inlining.
1997 if (!ShouldInline && CA.getCost() < CA.getThreshold())
Dan Gohman4552e3c2009-10-13 18:30:07 +00001998 return InlineCost::getNever();
Bob Wilsona5b0dc82012-11-19 07:04:35 +00001999 if (ShouldInline && CA.getCost() >= CA.getThreshold())
Dan Gohman4552e3c2009-10-13 18:30:07 +00002000 return InlineCost::getAlways();
Andrew Trickcaa500b2011-10-01 01:27:56 +00002001
Chandler Carruth0539c072012-03-31 12:42:41 +00002002 return llvm::InlineCost::get(CA.getCost(), CA.getThreshold());
Dan Gohman4552e3c2009-10-13 18:30:07 +00002003}
Bob Wilsona5b0dc82012-11-19 07:04:35 +00002004
Easwaran Ramanb9f71202015-12-28 20:28:19 +00002005bool llvm::isInlineViable(Function &F) {
Duncan P. N. Exon Smithb3fc83c2015-02-14 00:12:15 +00002006 bool ReturnsTwice = F.hasFnAttribute(Attribute::ReturnsTwice);
Bob Wilsona5b0dc82012-11-19 07:04:35 +00002007 for (Function::iterator BI = F.begin(), BE = F.end(); BI != BE; ++BI) {
Gerolf Hoflehner734f4c82014-07-01 00:19:34 +00002008 // Disallow inlining of functions which contain indirect branches or
2009 // blockaddresses.
2010 if (isa<IndirectBrInst>(BI->getTerminator()) || BI->hasAddressTaken())
Bob Wilsona5b0dc82012-11-19 07:04:35 +00002011 return false;
2012
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00002013 for (auto &II : *BI) {
2014 CallSite CS(&II);
Bob Wilsona5b0dc82012-11-19 07:04:35 +00002015 if (!CS)
2016 continue;
2017
2018 // Disallow recursive calls.
2019 if (&F == CS.getCalledFunction())
2020 return false;
2021
2022 // Disallow calls which expose returns-twice to a function not previously
2023 // attributed as such.
2024 if (!ReturnsTwice && CS.isCall() &&
2025 cast<CallInst>(CS.getInstruction())->canReturnTwice())
2026 return false;
Reid Kleckner223de262015-04-14 20:38:14 +00002027
Reid Kleckner60381792015-07-07 22:25:32 +00002028 // Disallow inlining functions that call @llvm.localescape. Doing this
Reid Kleckner223de262015-04-14 20:38:14 +00002029 // correctly would require major changes to the inliner.
2030 if (CS.getCalledFunction() &&
2031 CS.getCalledFunction()->getIntrinsicID() ==
Reid Kleckner60381792015-07-07 22:25:32 +00002032 llvm::Intrinsic::localescape)
Reid Kleckner223de262015-04-14 20:38:14 +00002033 return false;
Bob Wilsona5b0dc82012-11-19 07:04:35 +00002034 }
2035 }
2036
2037 return true;
2038}
Easwaran Raman1c57cc22016-08-10 00:48:04 +00002039
2040// APIs to create InlineParams based on command line flags and/or other
2041// parameters.
2042
2043InlineParams llvm::getInlineParams(int Threshold) {
2044 InlineParams Params;
2045
2046 // This field is the threshold to use for a callee by default. This is
2047 // derived from one or more of:
2048 // * optimization or size-optimization levels,
2049 // * a value passed to createFunctionInliningPass function, or
2050 // * the -inline-threshold flag.
2051 // If the -inline-threshold flag is explicitly specified, that is used
2052 // irrespective of anything else.
2053 if (InlineThreshold.getNumOccurrences() > 0)
2054 Params.DefaultThreshold = InlineThreshold;
2055 else
2056 Params.DefaultThreshold = Threshold;
2057
2058 // Set the HintThreshold knob from the -inlinehint-threshold.
2059 Params.HintThreshold = HintThreshold;
2060
2061 // Set the HotCallSiteThreshold knob from the -hot-callsite-threshold.
2062 Params.HotCallSiteThreshold = HotCallSiteThreshold;
2063
Easwaran Raman974d4ee2017-08-03 22:23:33 +00002064 // If the -locally-hot-callsite-threshold is explicitly specified, use it to
2065 // populate LocallyHotCallSiteThreshold. Later, we populate
2066 // Params.LocallyHotCallSiteThreshold from -locally-hot-callsite-threshold if
2067 // we know that optimization level is O3 (in the getInlineParams variant that
2068 // takes the opt and size levels).
2069 // FIXME: Remove this check (and make the assignment unconditional) after
2070 // addressing size regression issues at O2.
2071 if (LocallyHotCallSiteThreshold.getNumOccurrences() > 0)
2072 Params.LocallyHotCallSiteThreshold = LocallyHotCallSiteThreshold;
2073
Easwaran Raman12585b02017-01-20 22:44:04 +00002074 // Set the ColdCallSiteThreshold knob from the -inline-cold-callsite-threshold.
2075 Params.ColdCallSiteThreshold = ColdCallSiteThreshold;
2076
Easwaran Raman1c57cc22016-08-10 00:48:04 +00002077 // Set the OptMinSizeThreshold and OptSizeThreshold params only if the
Easwaran Raman1c57cc22016-08-10 00:48:04 +00002078 // -inlinehint-threshold commandline option is not explicitly given. If that
2079 // option is present, then its value applies even for callees with size and
2080 // minsize attributes.
2081 // If the -inline-threshold is not specified, set the ColdThreshold from the
2082 // -inlinecold-threshold even if it is not explicitly passed. If
2083 // -inline-threshold is specified, then -inlinecold-threshold needs to be
2084 // explicitly specified to set the ColdThreshold knob
2085 if (InlineThreshold.getNumOccurrences() == 0) {
2086 Params.OptMinSizeThreshold = InlineConstants::OptMinSizeThreshold;
2087 Params.OptSizeThreshold = InlineConstants::OptSizeThreshold;
2088 Params.ColdThreshold = ColdThreshold;
2089 } else if (ColdThreshold.getNumOccurrences() > 0) {
2090 Params.ColdThreshold = ColdThreshold;
2091 }
2092 return Params;
2093}
2094
2095InlineParams llvm::getInlineParams() {
2096 return getInlineParams(InlineThreshold);
2097}
2098
2099// Compute the default threshold for inlining based on the opt level and the
2100// size opt level.
2101static int computeThresholdFromOptLevels(unsigned OptLevel,
2102 unsigned SizeOptLevel) {
2103 if (OptLevel > 2)
2104 return InlineConstants::OptAggressiveThreshold;
2105 if (SizeOptLevel == 1) // -Os
2106 return InlineConstants::OptSizeThreshold;
2107 if (SizeOptLevel == 2) // -Oz
2108 return InlineConstants::OptMinSizeThreshold;
2109 return InlineThreshold;
2110}
2111
2112InlineParams llvm::getInlineParams(unsigned OptLevel, unsigned SizeOptLevel) {
Easwaran Raman974d4ee2017-08-03 22:23:33 +00002113 auto Params =
2114 getInlineParams(computeThresholdFromOptLevels(OptLevel, SizeOptLevel));
2115 // At O3, use the value of -locally-hot-callsite-threshold option to populate
2116 // Params.LocallyHotCallSiteThreshold. Below O3, this flag has effect only
2117 // when it is specified explicitly.
2118 if (OptLevel > 2)
2119 Params.LocallyHotCallSiteThreshold = LocallyHotCallSiteThreshold;
2120 return Params;
Easwaran Raman1c57cc22016-08-10 00:48:04 +00002121}