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http://llvm.org/svn/llvm-project/cfe/branches/release_28@114020 Approved by: rpaulo (mentor)
202 lines
6 KiB
C++
202 lines
6 KiB
C++
//== AnalysisManager.h - Path sensitive analysis data manager ------*- C++ -*-//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the AnalysisManager class that manages the data and policy
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// for path sensitive analysis.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_CLANG_ANALYSIS_ANALYSISMANAGER_H
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#define LLVM_CLANG_ANALYSIS_ANALYSISMANAGER_H
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#include "clang/Analysis/AnalysisContext.h"
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#include "clang/Checker/BugReporter/BugReporter.h"
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#include "clang/Checker/BugReporter/PathDiagnostic.h"
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namespace clang {
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namespace idx {
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class Indexer;
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class TranslationUnit;
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}
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class AnalysisManager : public BugReporterData {
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AnalysisContextManager AnaCtxMgr;
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LocationContextManager LocCtxMgr;
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ASTContext &Ctx;
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Diagnostic &Diags;
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const LangOptions &LangInfo;
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llvm::OwningPtr<PathDiagnosticClient> PD;
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// Configurable components creators.
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StoreManagerCreator CreateStoreMgr;
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ConstraintManagerCreator CreateConstraintMgr;
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/// \brief Provide function definitions in other translation units. This is
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/// NULL if we don't have multiple translation units. AnalysisManager does
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/// not own the Indexer.
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idx::Indexer *Idxer;
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enum AnalysisScope { ScopeTU, ScopeDecl } AScope;
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// The maximum number of exploded nodes the analyzer will generate.
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unsigned MaxNodes;
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// The maximum number of times the analyzer will go through a loop.
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unsigned MaxLoop;
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bool VisualizeEGDot;
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bool VisualizeEGUbi;
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bool PurgeDead;
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/// EargerlyAssume - A flag indicating how the engine should handle
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// expressions such as: 'x = (y != 0)'. When this flag is true then
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// the subexpression 'y != 0' will be eagerly assumed to be true or false,
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// thus evaluating it to the integers 0 or 1 respectively. The upside
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// is that this can increase analysis precision until we have a better way
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// to lazily evaluate such logic. The downside is that it eagerly
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// bifurcates paths.
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bool EagerlyAssume;
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bool TrimGraph;
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bool InlineCall;
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public:
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AnalysisManager(ASTContext &ctx, Diagnostic &diags,
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const LangOptions &lang, PathDiagnosticClient *pd,
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StoreManagerCreator storemgr,
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ConstraintManagerCreator constraintmgr,
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idx::Indexer *idxer,
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unsigned maxnodes, unsigned maxloop,
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bool vizdot, bool vizubi, bool purge, bool eager, bool trim,
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bool inlinecall, bool useUnoptimizedCFG)
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: AnaCtxMgr(useUnoptimizedCFG), Ctx(ctx), Diags(diags), LangInfo(lang),
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PD(pd),
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CreateStoreMgr(storemgr), CreateConstraintMgr(constraintmgr),Idxer(idxer),
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AScope(ScopeDecl), MaxNodes(maxnodes), MaxLoop(maxloop),
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VisualizeEGDot(vizdot), VisualizeEGUbi(vizubi), PurgeDead(purge),
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EagerlyAssume(eager), TrimGraph(trim), InlineCall(inlinecall) {}
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~AnalysisManager() { FlushDiagnostics(); }
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void ClearContexts() {
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LocCtxMgr.clear();
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AnaCtxMgr.clear();
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}
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AnalysisContextManager& getAnalysisContextManager() {
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return AnaCtxMgr;
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}
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StoreManagerCreator getStoreManagerCreator() {
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return CreateStoreMgr;
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}
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ConstraintManagerCreator getConstraintManagerCreator() {
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return CreateConstraintMgr;
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}
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idx::Indexer *getIndexer() const { return Idxer; }
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virtual ASTContext &getASTContext() {
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return Ctx;
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}
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virtual SourceManager &getSourceManager() {
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return getASTContext().getSourceManager();
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}
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virtual Diagnostic &getDiagnostic() {
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return Diags;
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}
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const LangOptions &getLangOptions() const {
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return LangInfo;
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}
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virtual PathDiagnosticClient *getPathDiagnosticClient() {
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return PD.get();
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}
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void FlushDiagnostics() {
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if (PD.get())
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PD->FlushDiagnostics();
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}
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unsigned getMaxNodes() const { return MaxNodes; }
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unsigned getMaxLoop() const { return MaxLoop; }
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bool shouldVisualizeGraphviz() const { return VisualizeEGDot; }
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bool shouldVisualizeUbigraph() const { return VisualizeEGUbi; }
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bool shouldVisualize() const {
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return VisualizeEGDot || VisualizeEGUbi;
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}
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bool shouldTrimGraph() const { return TrimGraph; }
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bool shouldPurgeDead() const { return PurgeDead; }
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bool shouldEagerlyAssume() const { return EagerlyAssume; }
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bool shouldInlineCall() const { return InlineCall; }
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bool hasIndexer() const { return Idxer != 0; }
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const AnalysisContext *getAnalysisContextInAnotherTU(const Decl *D);
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CFG *getCFG(Decl const *D) {
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return AnaCtxMgr.getContext(D)->getCFG();
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}
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LiveVariables *getLiveVariables(Decl const *D) {
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return AnaCtxMgr.getContext(D)->getLiveVariables();
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}
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ParentMap &getParentMap(Decl const *D) {
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return AnaCtxMgr.getContext(D)->getParentMap();
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}
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AnalysisContext *getAnalysisContext(const Decl *D) {
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return AnaCtxMgr.getContext(D);
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}
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AnalysisContext *getAnalysisContext(const Decl *D, idx::TranslationUnit *TU) {
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return AnaCtxMgr.getContext(D, TU);
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}
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const StackFrameContext *getStackFrame(AnalysisContext *Ctx,
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LocationContext const *Parent,
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Stmt const *S, const CFGBlock *Blk,
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unsigned Idx) {
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return LocCtxMgr.getStackFrame(Ctx, Parent, S, Blk, Idx);
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}
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// Get the top level stack frame.
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const StackFrameContext *getStackFrame(Decl const *D,
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idx::TranslationUnit *TU) {
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return LocCtxMgr.getStackFrame(AnaCtxMgr.getContext(D, TU), 0, 0, 0, 0);
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}
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// Get a stack frame with parent.
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StackFrameContext const *getStackFrame(Decl const *D,
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LocationContext const *Parent,
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Stmt const *S, const CFGBlock *Blk,
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unsigned Idx) {
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return LocCtxMgr.getStackFrame(AnaCtxMgr.getContext(D), Parent, S, Blk,Idx);
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}
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};
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}
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#endif
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