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//===- CFLAliasAnalysis.h - CFL-Based Alias Analysis Interface ---*- C++ -*-==//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
/// \file
/// This is the interface for LLVM's primary stateless and local alias analysis.
///
//===----------------------------------------------------------------------===//
#ifndef LLVM_ANALYSIS_CFLALIASANALYSIS_H
#define LLVM_ANALYSIS_CFLALIASANALYSIS_H
#include "llvm/Analysis/AliasAnalysis.h"
#include "llvm/ADT/DenseMap.h"
#include "llvm/ADT/None.h"
#include "llvm/ADT/Optional.h"
#include "llvm/IR/Function.h"
#include "llvm/IR/Module.h"
#include "llvm/IR/ValueHandle.h"
#include "llvm/Pass.h"
#include <forward_list>
namespace llvm {
class CFLAAResult : public AAResultBase<CFLAAResult> {
friend AAResultBase<CFLAAResult>;
struct FunctionInfo;
public:
explicit CFLAAResult(const TargetLibraryInfo &TLI);
CFLAAResult(CFLAAResult &&Arg);
/// Handle invalidation events from the new pass manager.
///
/// By definition, this result is stateless and so remains valid.
bool invalidate(Function &, const PreservedAnalyses &) { return false; }
/// \brief Inserts the given Function into the cache.
void scan(Function *Fn);
void evict(Function *Fn);
/// \brief Ensures that the given function is available in the cache.
/// Returns the appropriate entry from the cache.
const Optional<FunctionInfo> &ensureCached(Function *Fn);
AliasResult query(const MemoryLocation &LocA, const MemoryLocation &LocB);
AliasResult alias(const MemoryLocation &LocA, const MemoryLocation &LocB) {
if (LocA.Ptr == LocB.Ptr) {
if (LocA.Size == LocB.Size) {
return MustAlias;
} else {
return PartialAlias;
}
}
// Comparisons between global variables and other constants should be
// handled by BasicAA.
// TODO: ConstantExpr handling -- CFLAA may report NoAlias when comparing
// a GlobalValue and ConstantExpr, but every query needs to have at least
// one Value tied to a Function, and neither GlobalValues nor ConstantExprs
// are.
if (isa<Constant>(LocA.Ptr) && isa<Constant>(LocB.Ptr)) {
return AAResultBase::alias(LocA, LocB);
}
AliasResult QueryResult = query(LocA, LocB);
if (QueryResult == MayAlias)
return AAResultBase::alias(LocA, LocB);
return QueryResult;
}
private:
struct FunctionHandle final : public CallbackVH {
FunctionHandle(Function *Fn, CFLAAResult *Result)
: CallbackVH(Fn), Result(Result) {
assert(Fn != nullptr);
assert(Result != nullptr);
}
void deleted() override { removeSelfFromCache(); }
void allUsesReplacedWith(Value *) override { removeSelfFromCache(); }
private:
CFLAAResult *Result;
void removeSelfFromCache() {
assert(Result != nullptr);
auto *Val = getValPtr();
Result->evict(cast<Function>(Val));
setValPtr(nullptr);
}
};
/// \brief Cached mapping of Functions to their StratifiedSets.
/// If a function's sets are currently being built, it is marked
/// in the cache as an Optional without a value. This way, if we
/// have any kind of recursion, it is discernable from a function
/// that simply has empty sets.
DenseMap<Function *, Optional<FunctionInfo>> Cache;
std::forward_list<FunctionHandle> Handles;
FunctionInfo buildSetsFrom(Function *F);
};
/// Analysis pass providing a never-invalidated alias analysis result.
///
/// FIXME: We really should refactor CFL to use the analysis more heavily, and
/// in particular to leverage invalidation to trigger re-computation of sets.
class CFLAA {
public:
typedef CFLAAResult Result;
/// \brief Opaque, unique identifier for this analysis pass.
static void *ID() { return (void *)&PassID; }
CFLAAResult run(Function &F, AnalysisManager<Function> *AM);
/// \brief Provide access to a name for this pass for debugging purposes.
static StringRef name() { return "CFLAA"; }
private:
static char PassID;
};
/// Legacy wrapper pass to provide the CFLAAResult object.
class CFLAAWrapperPass : public ImmutablePass {
std::unique_ptr<CFLAAResult> Result;
public:
static char ID;
CFLAAWrapperPass();
CFLAAResult &getResult() { return *Result; }
const CFLAAResult &getResult() const { return *Result; }
bool doInitialization(Module &M) override;
bool doFinalization(Module &M) override;
void getAnalysisUsage(AnalysisUsage &AU) const override;
};
//===--------------------------------------------------------------------===//
//
// createCFLAAWrapperPass - This pass implements a set-based approach to
// alias analysis.
//
ImmutablePass *createCFLAAWrapperPass();
}
#endif