//===--- PlistDiagnostics.cpp - Plist Diagnostics for Paths -----*- C++ -*-===// // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open Source // License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // // This file defines the PlistDiagnostics object. // //===----------------------------------------------------------------------===// #include "clang/StaticAnalyzer/Core/PathDiagnosticConsumers.h" #include "clang/StaticAnalyzer/Core/BugReporter/PathDiagnostic.h" #include "clang/Basic/SourceManager.h" #include "clang/Basic/FileManager.h" #include "clang/Lex/Preprocessor.h" #include "llvm/Support/raw_ostream.h" #include "llvm/Support/Casting.h" #include "llvm/ADT/DenseMap.h" #include "llvm/ADT/SmallVector.h" using namespace clang; using namespace ento; typedef llvm::DenseMap FIDMap; namespace { class PlistDiagnostics : public PathDiagnosticConsumer { const std::string OutputFile; const LangOptions &LangOpts; OwningPtr SubPD; bool flushed; const bool SupportsCrossFileDiagnostics; public: PlistDiagnostics(const std::string& prefix, const LangOptions &LangOpts, bool supportsMultipleFiles, PathDiagnosticConsumer *subPD); virtual ~PlistDiagnostics() {} void FlushDiagnosticsImpl(std::vector &Diags, SmallVectorImpl *FilesMade); virtual StringRef getName() const { return "PlistDiagnostics"; } PathGenerationScheme getGenerationScheme() const; bool supportsLogicalOpControlFlow() const { return true; } bool supportsAllBlockEdges() const { return true; } virtual bool useVerboseDescription() const { return false; } virtual bool supportsCrossFileDiagnostics() const { return SupportsCrossFileDiagnostics; } }; } // end anonymous namespace PlistDiagnostics::PlistDiagnostics(const std::string& output, const LangOptions &LO, bool supportsMultipleFiles, PathDiagnosticConsumer *subPD) : OutputFile(output), LangOpts(LO), SubPD(subPD), flushed(false), SupportsCrossFileDiagnostics(supportsMultipleFiles) {} PathDiagnosticConsumer* ento::createPlistDiagnosticConsumer(const std::string& s, const Preprocessor &PP, PathDiagnosticConsumer *subPD) { return new PlistDiagnostics(s, PP.getLangOpts(), false, subPD); } PathDiagnosticConsumer* ento::createPlistMultiFileDiagnosticConsumer(const std::string &s, const Preprocessor &PP) { return new PlistDiagnostics(s, PP.getLangOpts(), true, 0); } PathDiagnosticConsumer::PathGenerationScheme PlistDiagnostics::getGenerationScheme() const { if (const PathDiagnosticConsumer *PD = SubPD.get()) return PD->getGenerationScheme(); return Extensive; } static void AddFID(FIDMap &FIDs, SmallVectorImpl &V, const SourceManager* SM, SourceLocation L) { FileID FID = SM->getFileID(SM->getExpansionLoc(L)); FIDMap::iterator I = FIDs.find(FID); if (I != FIDs.end()) return; FIDs[FID] = V.size(); V.push_back(FID); } static unsigned GetFID(const FIDMap& FIDs, const SourceManager &SM, SourceLocation L) { FileID FID = SM.getFileID(SM.getExpansionLoc(L)); FIDMap::const_iterator I = FIDs.find(FID); assert(I != FIDs.end()); return I->second; } static raw_ostream &Indent(raw_ostream &o, const unsigned indent) { for (unsigned i = 0; i < indent; ++i) o << ' '; return o; } static void EmitLocation(raw_ostream &o, const SourceManager &SM, const LangOptions &LangOpts, SourceLocation L, const FIDMap &FM, unsigned indent, bool extend = false) { FullSourceLoc Loc(SM.getExpansionLoc(L), const_cast(SM)); // Add in the length of the token, so that we cover multi-char tokens. unsigned offset = extend ? Lexer::MeasureTokenLength(Loc, SM, LangOpts) - 1 : 0; Indent(o, indent) << "\n"; Indent(o, indent) << " line" << Loc.getExpansionLineNumber() << "\n"; Indent(o, indent) << " col" << Loc.getExpansionColumnNumber() + offset << "\n"; Indent(o, indent) << " file" << GetFID(FM, SM, Loc) << "\n"; Indent(o, indent) << "\n"; } static void EmitLocation(raw_ostream &o, const SourceManager &SM, const LangOptions &LangOpts, const PathDiagnosticLocation &L, const FIDMap& FM, unsigned indent, bool extend = false) { EmitLocation(o, SM, LangOpts, L.asLocation(), FM, indent, extend); } static void EmitRange(raw_ostream &o, const SourceManager &SM, const LangOptions &LangOpts, PathDiagnosticRange R, const FIDMap &FM, unsigned indent) { Indent(o, indent) << "\n"; EmitLocation(o, SM, LangOpts, R.getBegin(), FM, indent+1); EmitLocation(o, SM, LangOpts, R.getEnd(), FM, indent+1, !R.isPoint); Indent(o, indent) << "\n"; } static raw_ostream &EmitString(raw_ostream &o, StringRef s) { o << ""; for (StringRef::const_iterator I = s.begin(), E = s.end(); I != E; ++I) { char c = *I; switch (c) { default: o << c; break; case '&': o << "&"; break; case '<': o << "<"; break; case '>': o << ">"; break; case '\'': o << "'"; break; case '\"': o << """; break; } } o << ""; return o; } static void ReportControlFlow(raw_ostream &o, const PathDiagnosticControlFlowPiece& P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts, unsigned indent) { Indent(o, indent) << "\n"; ++indent; Indent(o, indent) << "kindcontrol\n"; // Emit edges. Indent(o, indent) << "edges\n"; ++indent; Indent(o, indent) << "\n"; ++indent; for (PathDiagnosticControlFlowPiece::const_iterator I=P.begin(), E=P.end(); I!=E; ++I) { Indent(o, indent) << "\n"; ++indent; Indent(o, indent) << "start\n"; EmitRange(o, SM, LangOpts, I->getStart().asRange(), FM, indent+1); Indent(o, indent) << "end\n"; EmitRange(o, SM, LangOpts, I->getEnd().asRange(), FM, indent+1); --indent; Indent(o, indent) << "\n"; } --indent; Indent(o, indent) << "\n"; --indent; // Output any helper text. const std::string& s = P.getString(); if (!s.empty()) { Indent(o, indent) << "alternate"; EmitString(o, s) << '\n'; } --indent; Indent(o, indent) << "\n"; } static void ReportEvent(raw_ostream &o, const PathDiagnosticPiece& P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts, unsigned indent, unsigned depth) { Indent(o, indent) << "\n"; ++indent; Indent(o, indent) << "kindevent\n"; // Output the location. FullSourceLoc L = P.getLocation().asLocation(); Indent(o, indent) << "location\n"; EmitLocation(o, SM, LangOpts, L, FM, indent); // Output the ranges (if any). PathDiagnosticPiece::range_iterator RI = P.ranges_begin(), RE = P.ranges_end(); if (RI != RE) { Indent(o, indent) << "ranges\n"; Indent(o, indent) << "\n"; ++indent; for (; RI != RE; ++RI) EmitRange(o, SM, LangOpts, *RI, FM, indent+1); --indent; Indent(o, indent) << "\n"; } // Output the call depth. Indent(o, indent) << "depth" << "" << depth << "\n"; // Output the text. assert(!P.getString().empty()); Indent(o, indent) << "extended_message\n"; Indent(o, indent); EmitString(o, P.getString()) << '\n'; // Output the short text. // FIXME: Really use a short string. Indent(o, indent) << "message\n"; EmitString(o, P.getString()) << '\n'; // Finish up. --indent; Indent(o, indent); o << "\n"; } static void ReportPiece(raw_ostream &o, const PathDiagnosticPiece &P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts, unsigned indent, unsigned depth, bool includeControlFlow); static void ReportCall(raw_ostream &o, const PathDiagnosticCallPiece &P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts, unsigned indent, unsigned depth) { IntrusiveRefCntPtr callEnter = P.getCallEnterEvent(); if (callEnter) ReportPiece(o, *callEnter, FM, SM, LangOpts, indent, depth, true); IntrusiveRefCntPtr callEnterWithinCaller = P.getCallEnterWithinCallerEvent(); ++depth; if (callEnterWithinCaller) ReportPiece(o, *callEnterWithinCaller, FM, SM, LangOpts, indent, depth, true); for (PathPieces::const_iterator I = P.path.begin(), E = P.path.end();I!=E;++I) ReportPiece(o, **I, FM, SM, LangOpts, indent, depth, true); IntrusiveRefCntPtr callExit = P.getCallExitEvent(); if (callExit) ReportPiece(o, *callExit, FM, SM, LangOpts, indent, depth, true); } static void ReportMacro(raw_ostream &o, const PathDiagnosticMacroPiece& P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts, unsigned indent, unsigned depth) { for (PathPieces::const_iterator I = P.subPieces.begin(), E=P.subPieces.end(); I!=E; ++I) { ReportPiece(o, **I, FM, SM, LangOpts, indent, depth, false); } } static void ReportDiag(raw_ostream &o, const PathDiagnosticPiece& P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts) { ReportPiece(o, P, FM, SM, LangOpts, 4, 0, true); } static void ReportPiece(raw_ostream &o, const PathDiagnosticPiece &P, const FIDMap& FM, const SourceManager &SM, const LangOptions &LangOpts, unsigned indent, unsigned depth, bool includeControlFlow) { switch (P.getKind()) { case PathDiagnosticPiece::ControlFlow: if (includeControlFlow) ReportControlFlow(o, cast(P), FM, SM, LangOpts, indent); break; case PathDiagnosticPiece::Call: ReportCall(o, cast(P), FM, SM, LangOpts, indent, depth); break; case PathDiagnosticPiece::Event: ReportEvent(o, cast(P), FM, SM, LangOpts, indent, depth); break; case PathDiagnosticPiece::Macro: ReportMacro(o, cast(P), FM, SM, LangOpts, indent, depth); break; } } void PlistDiagnostics::FlushDiagnosticsImpl( std::vector &Diags, SmallVectorImpl *FilesMade) { // Build up a set of FIDs that we use by scanning the locations and // ranges of the diagnostics. FIDMap FM; SmallVector Fids; const SourceManager* SM = 0; if (!Diags.empty()) SM = &(*(*Diags.begin())->path.begin())->getLocation().getManager(); for (std::vector::iterator DI = Diags.begin(), DE = Diags.end(); DI != DE; ++DI) { const PathDiagnostic *D = *DI; llvm::SmallVector WorkList; WorkList.push_back(&D->path); while (!WorkList.empty()) { const PathPieces &path = *WorkList.back(); WorkList.pop_back(); for (PathPieces::const_iterator I = path.begin(), E = path.end(); I!=E; ++I) { const PathDiagnosticPiece *piece = I->getPtr(); AddFID(FM, Fids, SM, piece->getLocation().asLocation()); for (PathDiagnosticPiece::range_iterator RI = piece->ranges_begin(), RE= piece->ranges_end(); RI != RE; ++RI) { AddFID(FM, Fids, SM, RI->getBegin()); AddFID(FM, Fids, SM, RI->getEnd()); } if (const PathDiagnosticCallPiece *call = dyn_cast(piece)) { WorkList.push_back(&call->path); } else if (const PathDiagnosticMacroPiece *macro = dyn_cast(piece)) { WorkList.push_back(¯o->subPieces); } } } } // Open the file. std::string ErrMsg; llvm::raw_fd_ostream o(OutputFile.c_str(), ErrMsg); if (!ErrMsg.empty()) { llvm::errs() << "warning: could not create file: " << OutputFile << '\n'; return; } // Write the plist header. o << "\n" "\n" "\n"; // Write the root object: a containing... // - "files", an mapping from FIDs to file names // - "diagnostics", an containing the path diagnostics o << "\n" " files\n" " \n"; for (SmallVectorImpl::iterator I=Fids.begin(), E=Fids.end(); I!=E; ++I) { o << " "; EmitString(o, SM->getFileEntryForID(*I)->getName()) << '\n'; } o << " \n" " diagnostics\n" " \n"; for (std::vector::iterator DI=Diags.begin(), DE = Diags.end(); DI!=DE; ++DI) { o << " \n" " path\n"; const PathDiagnostic *D = *DI; o << " \n"; for (PathPieces::const_iterator I = D->path.begin(), E = D->path.end(); I != E; ++I) ReportDiag(o, **I, FM, *SM, LangOpts); o << " \n"; // Output the bug type and bug category. o << " description"; EmitString(o, D->getDescription()) << '\n'; o << " category"; EmitString(o, D->getCategory()) << '\n'; o << " type"; EmitString(o, D->getBugType()) << '\n'; // Output information about the semantic context where // the issue occurred. if (const Decl *DeclWithIssue = D->getDeclWithIssue()) { // FIXME: handle blocks, which have no name. if (const NamedDecl *ND = dyn_cast(DeclWithIssue)) { StringRef declKind; switch (ND->getKind()) { case Decl::CXXRecord: declKind = "C++ class"; break; case Decl::CXXMethod: declKind = "C++ method"; break; case Decl::ObjCMethod: declKind = "Objective-C method"; break; case Decl::Function: declKind = "function"; break; default: break; } if (!declKind.empty()) { const std::string &declName = ND->getDeclName().getAsString(); o << " issue_context_kind"; EmitString(o, declKind) << '\n'; o << " issue_context"; EmitString(o, declName) << '\n'; } } } // Output the location of the bug. o << " location\n"; EmitLocation(o, *SM, LangOpts, D->getLocation(), FM, 2); // Output the diagnostic to the sub-diagnostic client, if any. if (SubPD) { std::vector SubDiags; SubDiags.push_back(D); SmallVector SubFilesMade; SubPD->FlushDiagnosticsImpl(SubDiags, &SubFilesMade); if (!SubFilesMade.empty()) { o << " " << SubPD->getName() << "_files\n"; o << " \n"; for (size_t i = 0, n = SubFilesMade.size(); i < n ; ++i) o << " " << SubFilesMade[i] << "\n"; o << " \n"; } } // Close up the entry. o << " \n"; } o << " \n"; // Finish. o << "\n"; if (FilesMade) FilesMade->push_back(OutputFile); }