FunctionAttrs.cpp revision 93bb60d3793e6354866e2820a030f3baebb55a38
1//===- FunctionAttrs.cpp - Pass which marks functions readnone or readonly ===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements a simple interprocedural pass which walks the
11// call-graph, looking for functions which do not access or only read
12// non-local memory, and marking them readnone/readonly.  In addition,
13// it marks function arguments (of pointer type) 'nocapture' if a call
14// to the function does not create any copies of the pointer value that
15// outlive the call.  This more or less means that the pointer is only
16// dereferenced, and not returned from the function or stored in a global.
17// This pass is implemented as a bottom-up traversal of the call-graph.
18//
19//===----------------------------------------------------------------------===//
20
21#define DEBUG_TYPE "functionattrs"
22#include "llvm/Transforms/IPO.h"
23#include "llvm/CallGraphSCCPass.h"
24#include "llvm/GlobalVariable.h"
25#include "llvm/IntrinsicInst.h"
26#include "llvm/Analysis/AliasAnalysis.h"
27#include "llvm/Analysis/CallGraph.h"
28#include "llvm/Analysis/CaptureTracking.h"
29#include "llvm/Analysis/MallocHelper.h"
30#include "llvm/ADT/SmallSet.h"
31#include "llvm/ADT/Statistic.h"
32#include "llvm/ADT/UniqueVector.h"
33#include "llvm/Support/Compiler.h"
34#include "llvm/Support/InstIterator.h"
35using namespace llvm;
36
37STATISTIC(NumReadNone, "Number of functions marked readnone");
38STATISTIC(NumReadOnly, "Number of functions marked readonly");
39STATISTIC(NumNoCapture, "Number of arguments marked nocapture");
40STATISTIC(NumNoAlias, "Number of function returns marked noalias");
41
42namespace {
43  struct VISIBILITY_HIDDEN FunctionAttrs : public CallGraphSCCPass {
44    static char ID; // Pass identification, replacement for typeid
45    FunctionAttrs() : CallGraphSCCPass(&ID) {}
46
47    // runOnSCC - Analyze the SCC, performing the transformation if possible.
48    bool runOnSCC(std::vector<CallGraphNode *> &SCC);
49
50    // AddReadAttrs - Deduce readonly/readnone attributes for the SCC.
51    bool AddReadAttrs(const std::vector<CallGraphNode *> &SCC);
52
53    // AddNoCaptureAttrs - Deduce nocapture attributes for the SCC.
54    bool AddNoCaptureAttrs(const std::vector<CallGraphNode *> &SCC);
55
56    // IsFunctionMallocLike - Does this function allocate new memory?
57    bool IsFunctionMallocLike(Function *F,
58                              SmallPtrSet<Function*, 8> &) const;
59
60    // AddNoAliasAttrs - Deduce noalias attributes for the SCC.
61    bool AddNoAliasAttrs(const std::vector<CallGraphNode *> &SCC);
62
63    virtual void getAnalysisUsage(AnalysisUsage &AU) const {
64      AU.setPreservesCFG();
65      CallGraphSCCPass::getAnalysisUsage(AU);
66    }
67
68    bool PointsToLocalMemory(Value *V);
69  };
70}
71
72char FunctionAttrs::ID = 0;
73static RegisterPass<FunctionAttrs>
74X("functionattrs", "Deduce function attributes");
75
76Pass *llvm::createFunctionAttrsPass() { return new FunctionAttrs(); }
77
78
79/// PointsToLocalMemory - Returns whether the given pointer value points to
80/// memory that is local to the function.  Global constants are considered
81/// local to all functions.
82bool FunctionAttrs::PointsToLocalMemory(Value *V) {
83  V = V->getUnderlyingObject();
84  // An alloca instruction defines local memory.
85  if (isa<AllocaInst>(V))
86    return true;
87  // A global constant counts as local memory for our purposes.
88  if (GlobalVariable *GV = dyn_cast<GlobalVariable>(V))
89    return GV->isConstant();
90  // Could look through phi nodes and selects here, but it doesn't seem
91  // to be useful in practice.
92  return false;
93}
94
95/// AddReadAttrs - Deduce readonly/readnone attributes for the SCC.
96bool FunctionAttrs::AddReadAttrs(const std::vector<CallGraphNode *> &SCC) {
97  SmallPtrSet<Function*, 8> SCCNodes;
98
99  // Fill SCCNodes with the elements of the SCC.  Used for quickly
100  // looking up whether a given CallGraphNode is in this SCC.
101  for (unsigned i = 0, e = SCC.size(); i != e; ++i)
102    SCCNodes.insert(SCC[i]->getFunction());
103
104  // Check if any of the functions in the SCC read or write memory.  If they
105  // write memory then they can't be marked readnone or readonly.
106  bool ReadsMemory = false;
107  for (unsigned i = 0, e = SCC.size(); i != e; ++i) {
108    Function *F = SCC[i]->getFunction();
109
110    if (F == 0)
111      // External node - may write memory.  Just give up.
112      return false;
113
114    if (F->doesNotAccessMemory())
115      // Already perfect!
116      continue;
117
118    // Definitions with weak linkage may be overridden at linktime with
119    // something that writes memory, so treat them like declarations.
120    if (F->isDeclaration() || F->mayBeOverridden()) {
121      if (!F->onlyReadsMemory())
122        // May write memory.  Just give up.
123        return false;
124
125      ReadsMemory = true;
126      continue;
127    }
128
129    // Scan the function body for instructions that may read or write memory.
130    for (inst_iterator II = inst_begin(F), E = inst_end(F); II != E; ++II) {
131      Instruction *I = &*II;
132
133      // Some instructions can be ignored even if they read or write memory.
134      // Detect these now, skipping to the next instruction if one is found.
135      CallSite CS = CallSite::get(I);
136      if (CS.getInstruction() && CS.getCalledFunction()) {
137        // Ignore calls to functions in the same SCC.
138        if (SCCNodes.count(CS.getCalledFunction()))
139          continue;
140      } else if (LoadInst *LI = dyn_cast<LoadInst>(I)) {
141        // Ignore loads from local memory.
142        if (PointsToLocalMemory(LI->getPointerOperand()))
143          continue;
144      } else if (StoreInst *SI = dyn_cast<StoreInst>(I)) {
145        // Ignore stores to local memory.
146        if (PointsToLocalMemory(SI->getPointerOperand()))
147          continue;
148      }
149
150      // Any remaining instructions need to be taken seriously!  Check if they
151      // read or write memory.
152      if (I->mayWriteToMemory())
153        // Writes memory.  Just give up.
154        return false;
155
156      if (isMalloc(I))
157        // malloc claims not to write memory!  PR3754.
158        return false;
159
160      // If this instruction may read memory, remember that.
161      ReadsMemory |= I->mayReadFromMemory();
162    }
163  }
164
165  // Success!  Functions in this SCC do not access memory, or only read memory.
166  // Give them the appropriate attribute.
167  bool MadeChange = false;
168  for (unsigned i = 0, e = SCC.size(); i != e; ++i) {
169    Function *F = SCC[i]->getFunction();
170
171    if (F->doesNotAccessMemory())
172      // Already perfect!
173      continue;
174
175    if (F->onlyReadsMemory() && ReadsMemory)
176      // No change.
177      continue;
178
179    MadeChange = true;
180
181    // Clear out any existing attributes.
182    F->removeAttribute(~0, Attribute::ReadOnly | Attribute::ReadNone);
183
184    // Add in the new attribute.
185    F->addAttribute(~0, ReadsMemory? Attribute::ReadOnly : Attribute::ReadNone);
186
187    if (ReadsMemory)
188      ++NumReadOnly;
189    else
190      ++NumReadNone;
191  }
192
193  return MadeChange;
194}
195
196/// AddNoCaptureAttrs - Deduce nocapture attributes for the SCC.
197bool FunctionAttrs::AddNoCaptureAttrs(const std::vector<CallGraphNode *> &SCC) {
198  bool Changed = false;
199
200  // Check each function in turn, determining which pointer arguments are not
201  // captured.
202  for (unsigned i = 0, e = SCC.size(); i != e; ++i) {
203    Function *F = SCC[i]->getFunction();
204
205    if (F == 0)
206      // External node - skip it;
207      continue;
208
209    // Definitions with weak linkage may be overridden at linktime with
210    // something that writes memory, so treat them like declarations.
211    if (F->isDeclaration() || F->mayBeOverridden())
212      continue;
213
214    for (Function::arg_iterator A = F->arg_begin(), E = F->arg_end(); A!=E; ++A)
215      if (isa<PointerType>(A->getType()) && !A->hasNoCaptureAttr() &&
216          !PointerMayBeCaptured(A, true)) {
217        A->addAttr(Attribute::NoCapture);
218        ++NumNoCapture;
219        Changed = true;
220      }
221  }
222
223  return Changed;
224}
225
226/// IsFunctionMallocLike - A function is malloc-like if it returns either null
227/// or a pointer that doesn't alias any other pointer visible to the caller.
228bool FunctionAttrs::IsFunctionMallocLike(Function *F,
229                              SmallPtrSet<Function*, 8> &SCCNodes) const {
230  UniqueVector<Value *> FlowsToReturn;
231  for (Function::iterator I = F->begin(), E = F->end(); I != E; ++I)
232    if (ReturnInst *Ret = dyn_cast<ReturnInst>(I->getTerminator()))
233      FlowsToReturn.insert(Ret->getReturnValue());
234
235  for (unsigned i = 0; i != FlowsToReturn.size(); ++i) {
236    Value *RetVal = FlowsToReturn[i+1];   // UniqueVector[0] is reserved.
237
238    if (Constant *C = dyn_cast<Constant>(RetVal)) {
239      if (!C->isNullValue() && !isa<UndefValue>(C))
240        return false;
241
242      continue;
243    }
244
245    if (isa<Argument>(RetVal))
246      return false;
247
248    if (Instruction *RVI = dyn_cast<Instruction>(RetVal))
249      switch (RVI->getOpcode()) {
250        // Extend the analysis by looking upwards.
251        case Instruction::BitCast:
252        case Instruction::GetElementPtr:
253          FlowsToReturn.insert(RVI->getOperand(0));
254          continue;
255        case Instruction::Select: {
256          SelectInst *SI = cast<SelectInst>(RVI);
257          FlowsToReturn.insert(SI->getTrueValue());
258          FlowsToReturn.insert(SI->getFalseValue());
259          continue;
260        }
261        case Instruction::PHI: {
262          PHINode *PN = cast<PHINode>(RVI);
263          for (int i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
264            FlowsToReturn.insert(PN->getIncomingValue(i));
265          continue;
266        }
267
268        // Check whether the pointer came from an allocation.
269        case Instruction::Alloca:
270          break;
271        case Instruction::Call:
272        case Instruction::Invoke: {
273          CallSite CS(RVI);
274          if (CS.paramHasAttr(0, Attribute::NoAlias))
275            break;
276          if (CS.getCalledFunction() &&
277              SCCNodes.count(CS.getCalledFunction()))
278            break;
279        } // fall-through
280        default:
281          return false;  // Did not come from an allocation.
282      }
283
284    if (PointerMayBeCaptured(RetVal, false))
285      return false;
286  }
287
288  return true;
289}
290
291/// AddNoAliasAttrs - Deduce noalias attributes for the SCC.
292bool FunctionAttrs::AddNoAliasAttrs(const std::vector<CallGraphNode *> &SCC) {
293  SmallPtrSet<Function*, 8> SCCNodes;
294
295  // Fill SCCNodes with the elements of the SCC.  Used for quickly
296  // looking up whether a given CallGraphNode is in this SCC.
297  for (unsigned i = 0, e = SCC.size(); i != e; ++i)
298    SCCNodes.insert(SCC[i]->getFunction());
299
300  // Check each function in turn, determining which functions return noalias
301  // pointers.
302  for (unsigned i = 0, e = SCC.size(); i != e; ++i) {
303    Function *F = SCC[i]->getFunction();
304
305    if (F == 0)
306      // External node - skip it;
307      return false;
308
309    // Already noalias.
310    if (F->doesNotAlias(0))
311      continue;
312
313    // Definitions with weak linkage may be overridden at linktime, so
314    // treat them like declarations.
315    if (F->isDeclaration() || F->mayBeOverridden())
316      return false;
317
318    // We annotate noalias return values, which are only applicable to
319    // pointer types.
320    if (!isa<PointerType>(F->getReturnType()))
321      continue;
322
323    if (!IsFunctionMallocLike(F, SCCNodes))
324      return false;
325  }
326
327  bool MadeChange = false;
328  for (unsigned i = 0, e = SCC.size(); i != e; ++i) {
329    Function *F = SCC[i]->getFunction();
330    if (F->doesNotAlias(0) || !isa<PointerType>(F->getReturnType()))
331      continue;
332
333    F->setDoesNotAlias(0);
334    ++NumNoAlias;
335    MadeChange = true;
336  }
337
338  return MadeChange;
339}
340
341bool FunctionAttrs::runOnSCC(std::vector<CallGraphNode *> &SCC) {
342  bool Changed = AddReadAttrs(SCC);
343  Changed |= AddNoCaptureAttrs(SCC);
344  Changed |= AddNoAliasAttrs(SCC);
345  return Changed;
346}
347