blob: 6d6282029aee4f28588227cf7599207d0cfa7619 [file] [log] [blame]
Chris Lattner3b04a8a2004-06-28 06:33:13 +00001//===- GlobalsModRef.cpp - Simple Mod/Ref Analysis for Globals ------------===//
Misha Brukman2b37d7c2005-04-21 21:13:18 +00002//
Chris Lattner3b04a8a2004-06-28 06:33:13 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukman2b37d7c2005-04-21 21:13:18 +00007//
Chris Lattner3b04a8a2004-06-28 06:33:13 +00008//===----------------------------------------------------------------------===//
9//
10// This simple pass provides alias and mod/ref information for global values
Chris Lattnerfe98f272004-07-27 06:40:37 +000011// that do not have their address taken, and keeps track of whether functions
12// read or write memory (are "pure"). For this simple (but very common) case,
13// we can provide pretty accurate and useful information.
Chris Lattner3b04a8a2004-06-28 06:33:13 +000014//
15//===----------------------------------------------------------------------===//
16
Chris Lattner3b27d682006-12-19 22:30:33 +000017#define DEBUG_TYPE "globalsmodref-aa"
Chris Lattner3b04a8a2004-06-28 06:33:13 +000018#include "llvm/Analysis/Passes.h"
19#include "llvm/Module.h"
20#include "llvm/Pass.h"
21#include "llvm/Instructions.h"
22#include "llvm/Constants.h"
Chris Lattnerab383582006-10-01 22:36:45 +000023#include "llvm/DerivedTypes.h"
Chris Lattner3b04a8a2004-06-28 06:33:13 +000024#include "llvm/Analysis/AliasAnalysis.h"
25#include "llvm/Analysis/CallGraph.h"
Reid Spencerd7d83db2007-02-05 23:42:17 +000026#include "llvm/Support/Compiler.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000027#include "llvm/Support/CommandLine.h"
Reid Spencerd7d83db2007-02-05 23:42:17 +000028#include "llvm/Support/InstIterator.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000029#include "llvm/ADT/Statistic.h"
30#include "llvm/ADT/SCCIterator.h"
Chris Lattner3b04a8a2004-06-28 06:33:13 +000031#include <set>
32using namespace llvm;
33
Chris Lattner3b27d682006-12-19 22:30:33 +000034STATISTIC(NumNonAddrTakenGlobalVars,
35 "Number of global vars without address taken");
36STATISTIC(NumNonAddrTakenFunctions,"Number of functions without address taken");
37STATISTIC(NumNoMemFunctions, "Number of functions that do not access memory");
38STATISTIC(NumReadMemFunctions, "Number of functions that only read memory");
39STATISTIC(NumIndirectGlobalVars, "Number of indirect global objects");
40
Chris Lattner3b04a8a2004-06-28 06:33:13 +000041namespace {
Chris Lattnerfe98f272004-07-27 06:40:37 +000042 /// FunctionRecord - One instance of this structure is stored for every
43 /// function in the program. Later, the entries for these functions are
44 /// removed if the function is found to call an external function (in which
45 /// case we know nothing about it.
Reid Spencerd7d83db2007-02-05 23:42:17 +000046 struct VISIBILITY_HIDDEN FunctionRecord {
Chris Lattnerfe98f272004-07-27 06:40:37 +000047 /// GlobalInfo - Maintain mod/ref info for all of the globals without
48 /// addresses taken that are read or written (transitively) by this
49 /// function.
50 std::map<GlobalValue*, unsigned> GlobalInfo;
51
52 unsigned getInfoForGlobal(GlobalValue *GV) const {
53 std::map<GlobalValue*, unsigned>::const_iterator I = GlobalInfo.find(GV);
54 if (I != GlobalInfo.end())
55 return I->second;
56 return 0;
57 }
Misha Brukman2b37d7c2005-04-21 21:13:18 +000058
Chris Lattnerfe98f272004-07-27 06:40:37 +000059 /// FunctionEffect - Capture whether or not this function reads or writes to
60 /// ANY memory. If not, we can do a lot of aggressive analysis on it.
61 unsigned FunctionEffect;
Chris Lattner105d26a2004-07-27 07:46:26 +000062
63 FunctionRecord() : FunctionEffect(0) {}
Chris Lattnerfe98f272004-07-27 06:40:37 +000064 };
65
66 /// GlobalsModRef - The actual analysis pass.
Reid Spencerd7d83db2007-02-05 23:42:17 +000067 class VISIBILITY_HIDDEN GlobalsModRef
68 : public ModulePass, public AliasAnalysis {
Chris Lattnerfe98f272004-07-27 06:40:37 +000069 /// NonAddressTakenGlobals - The globals that do not have their addresses
70 /// taken.
71 std::set<GlobalValue*> NonAddressTakenGlobals;
Chris Lattner3b04a8a2004-06-28 06:33:13 +000072
Chris Lattnerab383582006-10-01 22:36:45 +000073 /// IndirectGlobals - The memory pointed to by this global is known to be
74 /// 'owned' by the global.
75 std::set<GlobalValue*> IndirectGlobals;
76
77 /// AllocsForIndirectGlobals - If an instruction allocates memory for an
78 /// indirect global, this map indicates which one.
79 std::map<Value*, GlobalValue*> AllocsForIndirectGlobals;
80
Chris Lattner3b04a8a2004-06-28 06:33:13 +000081 /// FunctionInfo - For each function, keep track of what globals are
82 /// modified or read.
Chris Lattnerfe98f272004-07-27 06:40:37 +000083 std::map<Function*, FunctionRecord> FunctionInfo;
Chris Lattner3b04a8a2004-06-28 06:33:13 +000084
85 public:
Devang Patel19974732007-05-03 01:11:54 +000086 static char ID;
Devang Patelc7582092008-03-19 21:56:59 +000087 GlobalsModRef() : ModulePass((intptr_t)&ID) {}
Devang Patel1cee94f2008-03-18 00:39:19 +000088
Chris Lattnerb12914b2004-09-20 04:48:05 +000089 bool runOnModule(Module &M) {
Chris Lattner3b04a8a2004-06-28 06:33:13 +000090 InitializeAliasAnalysis(this); // set up super class
91 AnalyzeGlobals(M); // find non-addr taken globals
92 AnalyzeCallGraph(getAnalysis<CallGraph>(), M); // Propagate on CG
93 return false;
94 }
95
96 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
97 AliasAnalysis::getAnalysisUsage(AU);
98 AU.addRequired<CallGraph>();
99 AU.setPreservesAll(); // Does not transform code
100 }
101
102 //------------------------------------------------
103 // Implement the AliasAnalysis API
Misha Brukman2b37d7c2005-04-21 21:13:18 +0000104 //
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000105 AliasResult alias(const Value *V1, unsigned V1Size,
106 const Value *V2, unsigned V2Size);
107 ModRefResult getModRefInfo(CallSite CS, Value *P, unsigned Size);
Reid Spencer4a7ebfa2004-12-07 08:11:24 +0000108 ModRefResult getModRefInfo(CallSite CS1, CallSite CS2) {
109 return AliasAnalysis::getModRefInfo(CS1,CS2);
110 }
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000111 bool hasNoModRefInfoForCalls() const { return false; }
112
Chris Lattner0af024c2004-12-15 07:22:13 +0000113 /// getModRefBehavior - Return the behavior of the specified function if
114 /// called from the specified call site. The call site may be null in which
115 /// case the most generic behavior of this function should be returned.
Chris Lattner41925f82004-12-17 17:12:24 +0000116 virtual ModRefBehavior getModRefBehavior(Function *F, CallSite CS,
117 std::vector<PointerAccessInfo> *Info) {
Anton Korobeynikovae9f3a32008-02-20 11:08:44 +0000118 if (FunctionRecord *FR = getFunctionInfo(F)) {
Chris Lattnerfe98f272004-07-27 06:40:37 +0000119 if (FR->FunctionEffect == 0)
Chris Lattner0af024c2004-12-15 07:22:13 +0000120 return DoesNotAccessMemory;
Misha Brukmandedf2bd2005-04-22 04:01:18 +0000121 else if ((FR->FunctionEffect & Mod) == 0)
122 return OnlyReadsMemory;
Anton Korobeynikovae9f3a32008-02-20 11:08:44 +0000123 }
Misha Brukman2b37d7c2005-04-21 21:13:18 +0000124 return AliasAnalysis::getModRefBehavior(F, CS, Info);
Chris Lattnerfe98f272004-07-27 06:40:37 +0000125 }
Chris Lattnerfe98f272004-07-27 06:40:37 +0000126
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000127 virtual void deleteValue(Value *V);
128 virtual void copyValue(Value *From, Value *To);
129
130 private:
Chris Lattnerfe98f272004-07-27 06:40:37 +0000131 /// getFunctionInfo - Return the function info for the function, or null if
132 /// the function calls an external function (in which case we don't have
133 /// anything useful to say about it).
134 FunctionRecord *getFunctionInfo(Function *F) {
135 std::map<Function*, FunctionRecord>::iterator I = FunctionInfo.find(F);
136 if (I != FunctionInfo.end())
137 return &I->second;
138 return 0;
139 }
140
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000141 void AnalyzeGlobals(Module &M);
142 void AnalyzeCallGraph(CallGraph &CG, Module &M);
Chris Lattnerfe98f272004-07-27 06:40:37 +0000143 void AnalyzeSCC(std::vector<CallGraphNode *> &SCC);
Chris Lattnerab383582006-10-01 22:36:45 +0000144 bool AnalyzeUsesOfPointer(Value *V, std::vector<Function*> &Readers,
145 std::vector<Function*> &Writers,
146 GlobalValue *OkayStoreDest = 0);
147 bool AnalyzeIndirectGlobalMemory(GlobalValue *GV);
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000148 };
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000149}
150
Dan Gohman844731a2008-05-13 00:00:25 +0000151char GlobalsModRef::ID = 0;
152static RegisterPass<GlobalsModRef>
153X("globalsmodref-aa", "Simple mod/ref analysis for globals", false, true);
154static RegisterAnalysisGroup<AliasAnalysis> Y(X);
155
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000156Pass *llvm::createGlobalsModRefPass() { return new GlobalsModRef(); }
157
Chris Lattnerab383582006-10-01 22:36:45 +0000158/// getUnderlyingObject - This traverses the use chain to figure out what object
159/// the specified value points to. If the value points to, or is derived from,
160/// a global object, return it.
161static Value *getUnderlyingObject(Value *V) {
162 if (!isa<PointerType>(V->getType())) return V;
163
164 // If we are at some type of object... return it.
165 if (GlobalValue *GV = dyn_cast<GlobalValue>(V)) return GV;
166
167 // Traverse through different addressing mechanisms.
168 if (Instruction *I = dyn_cast<Instruction>(V)) {
Reid Spencer3da59db2006-11-27 01:05:10 +0000169 if (isa<BitCastInst>(I) || isa<GetElementPtrInst>(I))
Chris Lattnerab383582006-10-01 22:36:45 +0000170 return getUnderlyingObject(I->getOperand(0));
171 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(V)) {
Reid Spencer3da59db2006-11-27 01:05:10 +0000172 if (CE->getOpcode() == Instruction::BitCast ||
Chris Lattnerab383582006-10-01 22:36:45 +0000173 CE->getOpcode() == Instruction::GetElementPtr)
174 return getUnderlyingObject(CE->getOperand(0));
175 }
176
177 // Othewise, we don't know what this is, return it as the base pointer.
178 return V;
179}
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000180
Chris Lattnerab383582006-10-01 22:36:45 +0000181/// AnalyzeGlobals - Scan through the users of all of the internal
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000182/// GlobalValue's in the program. If none of them have their "Address taken"
183/// (really, their address passed to something nontrivial), record this fact,
184/// and record the functions that they are used directly in.
185void GlobalsModRef::AnalyzeGlobals(Module &M) {
186 std::vector<Function*> Readers, Writers;
187 for (Module::iterator I = M.begin(), E = M.end(); I != E; ++I)
188 if (I->hasInternalLinkage()) {
Chris Lattnerab383582006-10-01 22:36:45 +0000189 if (!AnalyzeUsesOfPointer(I, Readers, Writers)) {
Chris Lattnerfe98f272004-07-27 06:40:37 +0000190 // Remember that we are tracking this global.
191 NonAddressTakenGlobals.insert(I);
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000192 ++NumNonAddrTakenFunctions;
193 }
194 Readers.clear(); Writers.clear();
195 }
196
Chris Lattnerf5eaf3c2005-03-23 23:51:12 +0000197 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
198 I != E; ++I)
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000199 if (I->hasInternalLinkage()) {
Chris Lattnerab383582006-10-01 22:36:45 +0000200 if (!AnalyzeUsesOfPointer(I, Readers, Writers)) {
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000201 // Remember that we are tracking this global, and the mod/ref fns
Chris Lattnerfe98f272004-07-27 06:40:37 +0000202 NonAddressTakenGlobals.insert(I);
203 for (unsigned i = 0, e = Readers.size(); i != e; ++i)
204 FunctionInfo[Readers[i]].GlobalInfo[I] |= Ref;
205
206 if (!I->isConstant()) // No need to keep track of writers to constants
207 for (unsigned i = 0, e = Writers.size(); i != e; ++i)
208 FunctionInfo[Writers[i]].GlobalInfo[I] |= Mod;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000209 ++NumNonAddrTakenGlobalVars;
Chris Lattnerab383582006-10-01 22:36:45 +0000210
211 // If this global holds a pointer type, see if it is an indirect global.
212 if (isa<PointerType>(I->getType()->getElementType()) &&
213 AnalyzeIndirectGlobalMemory(I))
214 ++NumIndirectGlobalVars;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000215 }
216 Readers.clear(); Writers.clear();
217 }
218}
219
Chris Lattnerab383582006-10-01 22:36:45 +0000220/// AnalyzeUsesOfPointer - Look at all of the users of the specified pointer.
221/// If this is used by anything complex (i.e., the address escapes), return
222/// true. Also, while we are at it, keep track of those functions that read and
223/// write to the value.
224///
225/// If OkayStoreDest is non-null, stores into this global are allowed.
226bool GlobalsModRef::AnalyzeUsesOfPointer(Value *V,
227 std::vector<Function*> &Readers,
228 std::vector<Function*> &Writers,
229 GlobalValue *OkayStoreDest) {
Chris Lattnerfe98f272004-07-27 06:40:37 +0000230 if (!isa<PointerType>(V->getType())) return true;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000231
232 for (Value::use_iterator UI = V->use_begin(), E = V->use_end(); UI != E; ++UI)
233 if (LoadInst *LI = dyn_cast<LoadInst>(*UI)) {
234 Readers.push_back(LI->getParent()->getParent());
235 } else if (StoreInst *SI = dyn_cast<StoreInst>(*UI)) {
Chris Lattnerab383582006-10-01 22:36:45 +0000236 if (V == SI->getOperand(1)) {
237 Writers.push_back(SI->getParent()->getParent());
238 } else if (SI->getOperand(1) != OkayStoreDest) {
239 return true; // Storing the pointer
240 }
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000241 } else if (GetElementPtrInst *GEP = dyn_cast<GetElementPtrInst>(*UI)) {
Chris Lattnerab383582006-10-01 22:36:45 +0000242 if (AnalyzeUsesOfPointer(GEP, Readers, Writers)) return true;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000243 } else if (CallInst *CI = dyn_cast<CallInst>(*UI)) {
244 // Make sure that this is just the function being called, not that it is
245 // passing into the function.
246 for (unsigned i = 1, e = CI->getNumOperands(); i != e; ++i)
247 if (CI->getOperand(i) == V) return true;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000248 } else if (InvokeInst *II = dyn_cast<InvokeInst>(*UI)) {
249 // Make sure that this is just the function being called, not that it is
250 // passing into the function.
251 for (unsigned i = 3, e = II->getNumOperands(); i != e; ++i)
252 if (II->getOperand(i) == V) return true;
253 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(*UI)) {
Reid Spencer3da59db2006-11-27 01:05:10 +0000254 if (CE->getOpcode() == Instruction::GetElementPtr ||
255 CE->getOpcode() == Instruction::BitCast) {
Chris Lattnerab383582006-10-01 22:36:45 +0000256 if (AnalyzeUsesOfPointer(CE, Readers, Writers))
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000257 return true;
258 } else {
259 return true;
Misha Brukman2b37d7c2005-04-21 21:13:18 +0000260 }
Reid Spencere4d87aa2006-12-23 06:05:41 +0000261 } else if (ICmpInst *ICI = dyn_cast<ICmpInst>(*UI)) {
262 if (!isa<ConstantPointerNull>(ICI->getOperand(1)))
Chris Lattnerab383582006-10-01 22:36:45 +0000263 return true; // Allow comparison against null.
264 } else if (FreeInst *F = dyn_cast<FreeInst>(*UI)) {
265 Writers.push_back(F->getParent()->getParent());
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000266 } else {
267 return true;
268 }
269 return false;
270}
271
Chris Lattnerab383582006-10-01 22:36:45 +0000272/// AnalyzeIndirectGlobalMemory - We found an non-address-taken global variable
273/// which holds a pointer type. See if the global always points to non-aliased
274/// heap memory: that is, all initializers of the globals are allocations, and
275/// those allocations have no use other than initialization of the global.
276/// Further, all loads out of GV must directly use the memory, not store the
277/// pointer somewhere. If this is true, we consider the memory pointed to by
278/// GV to be owned by GV and can disambiguate other pointers from it.
279bool GlobalsModRef::AnalyzeIndirectGlobalMemory(GlobalValue *GV) {
280 // Keep track of values related to the allocation of the memory, f.e. the
281 // value produced by the malloc call and any casts.
282 std::vector<Value*> AllocRelatedValues;
283
284 // Walk the user list of the global. If we find anything other than a direct
285 // load or store, bail out.
286 for (Value::use_iterator I = GV->use_begin(), E = GV->use_end(); I != E; ++I){
287 if (LoadInst *LI = dyn_cast<LoadInst>(*I)) {
288 // The pointer loaded from the global can only be used in simple ways:
289 // we allow addressing of it and loading storing to it. We do *not* allow
290 // storing the loaded pointer somewhere else or passing to a function.
291 std::vector<Function*> ReadersWriters;
292 if (AnalyzeUsesOfPointer(LI, ReadersWriters, ReadersWriters))
293 return false; // Loaded pointer escapes.
294 // TODO: Could try some IP mod/ref of the loaded pointer.
295 } else if (StoreInst *SI = dyn_cast<StoreInst>(*I)) {
296 // Storing the global itself.
297 if (SI->getOperand(0) == GV) return false;
298
299 // If storing the null pointer, ignore it.
300 if (isa<ConstantPointerNull>(SI->getOperand(0)))
301 continue;
302
303 // Check the value being stored.
304 Value *Ptr = getUnderlyingObject(SI->getOperand(0));
305
Chris Lattnerab383582006-10-01 22:36:45 +0000306 if (isa<MallocInst>(Ptr)) {
307 // Okay, easy case.
308 } else if (CallInst *CI = dyn_cast<CallInst>(Ptr)) {
309 Function *F = CI->getCalledFunction();
Reid Spencer5cbf9852007-01-30 20:08:39 +0000310 if (!F || !F->isDeclaration()) return false; // Too hard to analyze.
Chris Lattnerab383582006-10-01 22:36:45 +0000311 if (F->getName() != "calloc") return false; // Not calloc.
312 } else {
313 return false; // Too hard to analyze.
314 }
315
316 // Analyze all uses of the allocation. If any of them are used in a
317 // non-simple way (e.g. stored to another global) bail out.
318 std::vector<Function*> ReadersWriters;
319 if (AnalyzeUsesOfPointer(Ptr, ReadersWriters, ReadersWriters, GV))
320 return false; // Loaded pointer escapes.
321
322 // Remember that this allocation is related to the indirect global.
323 AllocRelatedValues.push_back(Ptr);
324 } else {
325 // Something complex, bail out.
326 return false;
327 }
328 }
329
330 // Okay, this is an indirect global. Remember all of the allocations for
331 // this global in AllocsForIndirectGlobals.
332 while (!AllocRelatedValues.empty()) {
333 AllocsForIndirectGlobals[AllocRelatedValues.back()] = GV;
334 AllocRelatedValues.pop_back();
335 }
336 IndirectGlobals.insert(GV);
337 return true;
338}
339
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000340/// AnalyzeCallGraph - At this point, we know the functions where globals are
341/// immediately stored to and read from. Propagate this information up the call
Chris Lattnerfe98f272004-07-27 06:40:37 +0000342/// graph to all callers and compute the mod/ref info for all memory for each
Misha Brukman2b37d7c2005-04-21 21:13:18 +0000343/// function.
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000344void GlobalsModRef::AnalyzeCallGraph(CallGraph &CG, Module &M) {
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000345 // We do a bottom-up SCC traversal of the call graph. In other words, we
346 // visit all callees before callers (leaf-first).
Chris Lattnerfe98f272004-07-27 06:40:37 +0000347 for (scc_iterator<CallGraph*> I = scc_begin(&CG), E = scc_end(&CG); I!=E; ++I)
Chris Lattner105d26a2004-07-27 07:46:26 +0000348 if ((*I).size() != 1) {
Chris Lattnerfe98f272004-07-27 06:40:37 +0000349 AnalyzeSCC(*I);
Chris Lattner105d26a2004-07-27 07:46:26 +0000350 } else if (Function *F = (*I)[0]->getFunction()) {
Reid Spencer5cbf9852007-01-30 20:08:39 +0000351 if (!F->isDeclaration()) {
Chris Lattner105d26a2004-07-27 07:46:26 +0000352 // Nonexternal function.
353 AnalyzeSCC(*I);
354 } else {
355 // Otherwise external function. Handle intrinsics and other special
356 // cases here.
357 if (getAnalysis<AliasAnalysis>().doesNotAccessMemory(F))
358 // If it does not access memory, process the function, causing us to
359 // realize it doesn't do anything (the body is empty).
360 AnalyzeSCC(*I);
361 else {
362 // Otherwise, don't process it. This will cause us to conservatively
363 // assume the worst.
364 }
365 }
366 } else {
367 // Do not process the external node, assume the worst.
368 }
Chris Lattnerfe98f272004-07-27 06:40:37 +0000369}
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000370
Chris Lattnerfe98f272004-07-27 06:40:37 +0000371void GlobalsModRef::AnalyzeSCC(std::vector<CallGraphNode *> &SCC) {
372 assert(!SCC.empty() && "SCC with no functions?");
373 FunctionRecord &FR = FunctionInfo[SCC[0]->getFunction()];
374
375 bool CallsExternal = false;
376 unsigned FunctionEffect = 0;
377
378 // Collect the mod/ref properties due to called functions. We only compute
379 // one mod-ref set
380 for (unsigned i = 0, e = SCC.size(); i != e && !CallsExternal; ++i)
381 for (CallGraphNode::iterator CI = SCC[i]->begin(), E = SCC[i]->end();
382 CI != E; ++CI)
Chris Lattnerd85340f2006-07-12 18:29:36 +0000383 if (Function *Callee = CI->second->getFunction()) {
Chris Lattnerfe98f272004-07-27 06:40:37 +0000384 if (FunctionRecord *CalleeFR = getFunctionInfo(Callee)) {
385 // Propagate function effect up.
386 FunctionEffect |= CalleeFR->FunctionEffect;
387
388 // Incorporate callee's effects on globals into our info.
389 for (std::map<GlobalValue*, unsigned>::iterator GI =
390 CalleeFR->GlobalInfo.begin(), E = CalleeFR->GlobalInfo.end();
391 GI != E; ++GI)
392 FR.GlobalInfo[GI->first] |= GI->second;
393
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000394 } else {
Chris Lattnerec6518d2005-03-23 23:49:47 +0000395 // Okay, if we can't say anything about it, maybe some other alias
396 // analysis can.
397 ModRefBehavior MRB =
Duncan Sandsdff67102007-12-01 07:51:45 +0000398 AliasAnalysis::getModRefBehavior(Callee);
Chris Lattnerec6518d2005-03-23 23:49:47 +0000399 if (MRB != DoesNotAccessMemory) {
Chris Lattner62da3152005-03-24 02:41:19 +0000400 // FIXME: could make this more aggressive for functions that just
401 // read memory. We should just say they read all globals.
402 CallsExternal = true;
403 break;
Chris Lattnerec6518d2005-03-23 23:49:47 +0000404 }
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000405 }
Chris Lattnerfe98f272004-07-27 06:40:37 +0000406 } else {
407 CallsExternal = true;
408 break;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000409 }
Chris Lattnerfe98f272004-07-27 06:40:37 +0000410
411 // If this SCC calls an external function, we can't say anything about it, so
412 // remove all SCC functions from the FunctionInfo map.
413 if (CallsExternal) {
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000414 for (unsigned i = 0, e = SCC.size(); i != e; ++i)
Chris Lattnerfe98f272004-07-27 06:40:37 +0000415 FunctionInfo.erase(SCC[i]->getFunction());
416 return;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000417 }
Misha Brukman2b37d7c2005-04-21 21:13:18 +0000418
Chris Lattnerfe98f272004-07-27 06:40:37 +0000419 // Otherwise, unless we already know that this function mod/refs memory, scan
420 // the function bodies to see if there are any explicit loads or stores.
421 if (FunctionEffect != ModRef) {
422 for (unsigned i = 0, e = SCC.size(); i != e && FunctionEffect != ModRef;++i)
423 for (inst_iterator II = inst_begin(SCC[i]->getFunction()),
Misha Brukman2b37d7c2005-04-21 21:13:18 +0000424 E = inst_end(SCC[i]->getFunction());
Chris Lattnerfe98f272004-07-27 06:40:37 +0000425 II != E && FunctionEffect != ModRef; ++II)
426 if (isa<LoadInst>(*II))
427 FunctionEffect |= Ref;
428 else if (isa<StoreInst>(*II))
429 FunctionEffect |= Mod;
Chris Lattner3fe4d3c2005-04-22 05:36:59 +0000430 else if (isa<MallocInst>(*II) || isa<FreeInst>(*II))
431 FunctionEffect |= ModRef;
Chris Lattnerfe98f272004-07-27 06:40:37 +0000432 }
433
434 if ((FunctionEffect & Mod) == 0)
435 ++NumReadMemFunctions;
436 if (FunctionEffect == 0)
437 ++NumNoMemFunctions;
438 FR.FunctionEffect = FunctionEffect;
439
440 // Finally, now that we know the full effect on this SCC, clone the
441 // information to each function in the SCC.
442 for (unsigned i = 1, e = SCC.size(); i != e; ++i)
443 FunctionInfo[SCC[i]->getFunction()] = FR;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000444}
445
446
447
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000448/// alias - If one of the pointers is to a global that we are tracking, and the
449/// other is some random pointer, we know there cannot be an alias, because the
450/// address of the global isn't taken.
451AliasAnalysis::AliasResult
452GlobalsModRef::alias(const Value *V1, unsigned V1Size,
453 const Value *V2, unsigned V2Size) {
Chris Lattnerab383582006-10-01 22:36:45 +0000454 // Get the base object these pointers point to.
455 Value *UV1 = getUnderlyingObject(const_cast<Value*>(V1));
456 Value *UV2 = getUnderlyingObject(const_cast<Value*>(V2));
457
458 // If either of the underlying values is a global, they may be non-addr-taken
459 // globals, which we can answer queries about.
460 GlobalValue *GV1 = dyn_cast<GlobalValue>(UV1);
461 GlobalValue *GV2 = dyn_cast<GlobalValue>(UV2);
462 if (GV1 || GV2) {
463 // If the global's address is taken, pretend we don't know it's a pointer to
464 // the global.
465 if (GV1 && !NonAddressTakenGlobals.count(GV1)) GV1 = 0;
466 if (GV2 && !NonAddressTakenGlobals.count(GV2)) GV2 = 0;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000467
Chris Lattnerab383582006-10-01 22:36:45 +0000468 // If the the two pointers are derived from two different non-addr-taken
469 // globals, or if one is and the other isn't, we know these can't alias.
470 if ((GV1 || GV2) && GV1 != GV2)
471 return NoAlias;
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000472
Chris Lattnerab383582006-10-01 22:36:45 +0000473 // Otherwise if they are both derived from the same addr-taken global, we
474 // can't know the two accesses don't overlap.
475 }
476
477 // These pointers may be based on the memory owned by an indirect global. If
478 // so, we may be able to handle this. First check to see if the base pointer
479 // is a direct load from an indirect global.
480 GV1 = GV2 = 0;
481 if (LoadInst *LI = dyn_cast<LoadInst>(UV1))
482 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(LI->getOperand(0)))
483 if (IndirectGlobals.count(GV))
484 GV1 = GV;
485 if (LoadInst *LI = dyn_cast<LoadInst>(UV2))
486 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(LI->getOperand(0)))
487 if (IndirectGlobals.count(GV))
488 GV2 = GV;
489
490 // These pointers may also be from an allocation for the indirect global. If
491 // so, also handle them.
492 if (AllocsForIndirectGlobals.count(UV1))
493 GV1 = AllocsForIndirectGlobals[UV1];
494 if (AllocsForIndirectGlobals.count(UV2))
495 GV2 = AllocsForIndirectGlobals[UV2];
496
497 // Now that we know whether the two pointers are related to indirect globals,
498 // use this to disambiguate the pointers. If either pointer is based on an
499 // indirect global and if they are not both based on the same indirect global,
500 // they cannot alias.
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000501 if ((GV1 || GV2) && GV1 != GV2)
502 return NoAlias;
Chris Lattnerab383582006-10-01 22:36:45 +0000503
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000504 return AliasAnalysis::alias(V1, V1Size, V2, V2Size);
505}
506
507AliasAnalysis::ModRefResult
508GlobalsModRef::getModRefInfo(CallSite CS, Value *P, unsigned Size) {
509 unsigned Known = ModRef;
510
511 // If we are asking for mod/ref info of a direct call with a pointer to a
Chris Lattnerfe98f272004-07-27 06:40:37 +0000512 // global we are tracking, return information if we have it.
Chris Lattnerab383582006-10-01 22:36:45 +0000513 if (GlobalValue *GV = dyn_cast<GlobalValue>(getUnderlyingObject(P)))
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000514 if (GV->hasInternalLinkage())
Chris Lattnerfe98f272004-07-27 06:40:37 +0000515 if (Function *F = CS.getCalledFunction())
516 if (NonAddressTakenGlobals.count(GV))
517 if (FunctionRecord *FR = getFunctionInfo(F))
518 Known = FR->getInfoForGlobal(GV);
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000519
520 if (Known == NoModRef)
521 return NoModRef; // No need to query other mod/ref analyses
522 return ModRefResult(Known & AliasAnalysis::getModRefInfo(CS, P, Size));
523}
524
525
526//===----------------------------------------------------------------------===//
527// Methods to update the analysis as a result of the client transformation.
528//
529void GlobalsModRef::deleteValue(Value *V) {
Chris Lattnerab383582006-10-01 22:36:45 +0000530 if (GlobalValue *GV = dyn_cast<GlobalValue>(V)) {
531 if (NonAddressTakenGlobals.erase(GV)) {
532 // This global might be an indirect global. If so, remove it and remove
533 // any AllocRelatedValues for it.
534 if (IndirectGlobals.erase(GV)) {
535 // Remove any entries in AllocsForIndirectGlobals for this global.
536 for (std::map<Value*, GlobalValue*>::iterator
537 I = AllocsForIndirectGlobals.begin(),
538 E = AllocsForIndirectGlobals.end(); I != E; ) {
539 if (I->second == GV) {
540 AllocsForIndirectGlobals.erase(I++);
541 } else {
542 ++I;
543 }
544 }
545 }
546 }
547 }
548
549 // Otherwise, if this is an allocation related to an indirect global, remove
550 // it.
551 AllocsForIndirectGlobals.erase(V);
Chris Lattnercd883f22007-11-30 18:52:58 +0000552
553 AliasAnalysis::deleteValue(V);
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000554}
555
556void GlobalsModRef::copyValue(Value *From, Value *To) {
Chris Lattnercd883f22007-11-30 18:52:58 +0000557 AliasAnalysis::copyValue(From, To);
Chris Lattner3b04a8a2004-06-28 06:33:13 +0000558}