forked from OSchip/llvm-project
281 lines
11 KiB
C++
281 lines
11 KiB
C++
//== InvalidPtrChecker.cpp ------------------------------------- -*- C++ -*--=//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines InvalidPtrChecker which finds usages of possibly
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// invalidated pointer.
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// CERT SEI Rules ENV31-C and ENV34-C
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// For more information see:
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// https://wiki.sei.cmu.edu/confluence/x/8tYxBQ
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// https://wiki.sei.cmu.edu/confluence/x/5NUxBQ
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//===----------------------------------------------------------------------===//
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#include "clang/StaticAnalyzer/Checkers/BuiltinCheckerRegistration.h"
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#include "clang/StaticAnalyzer/Core/BugReporter/BugType.h"
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#include "clang/StaticAnalyzer/Core/Checker.h"
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#include "clang/StaticAnalyzer/Core/CheckerManager.h"
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#include "clang/StaticAnalyzer/Core/PathSensitive/CallDescription.h"
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#include "clang/StaticAnalyzer/Core/PathSensitive/CallEvent.h"
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#include "clang/StaticAnalyzer/Core/PathSensitive/CheckerContext.h"
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using namespace clang;
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using namespace ento;
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namespace {
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class InvalidPtrChecker
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: public Checker<check::Location, check::BeginFunction, check::PostCall> {
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private:
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BugType BT{this, "Use of invalidated pointer", categories::MemoryError};
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void EnvpInvalidatingCall(const CallEvent &Call, CheckerContext &C) const;
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using HandlerFn = void (InvalidPtrChecker::*)(const CallEvent &Call,
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CheckerContext &C) const;
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// SEI CERT ENV31-C
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const CallDescriptionMap<HandlerFn> EnvpInvalidatingFunctions = {
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{{"setenv", 3}, &InvalidPtrChecker::EnvpInvalidatingCall},
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{{"unsetenv", 1}, &InvalidPtrChecker::EnvpInvalidatingCall},
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{{"putenv", 1}, &InvalidPtrChecker::EnvpInvalidatingCall},
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{{"_putenv_s", 2}, &InvalidPtrChecker::EnvpInvalidatingCall},
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{{"_wputenv_s", 2}, &InvalidPtrChecker::EnvpInvalidatingCall},
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};
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void postPreviousReturnInvalidatingCall(const CallEvent &Call,
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CheckerContext &C) const;
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// SEI CERT ENV34-C
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const CallDescriptionMap<HandlerFn> PreviousCallInvalidatingFunctions = {
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{{"getenv", 1}, &InvalidPtrChecker::postPreviousReturnInvalidatingCall},
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{{"setlocale", 2},
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&InvalidPtrChecker::postPreviousReturnInvalidatingCall},
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{{"strerror", 1}, &InvalidPtrChecker::postPreviousReturnInvalidatingCall},
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{{"localeconv", 0},
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&InvalidPtrChecker::postPreviousReturnInvalidatingCall},
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{{"asctime", 1}, &InvalidPtrChecker::postPreviousReturnInvalidatingCall},
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};
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public:
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// Obtain the environment pointer from 'main()' (if present).
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void checkBeginFunction(CheckerContext &C) const;
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// Handle functions in EnvpInvalidatingFunctions, that invalidate environment
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// pointer from 'main()'
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// Handle functions in PreviousCallInvalidatingFunctions.
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// Also, check if invalidated region is passed to a
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// conservatively evaluated function call as an argument.
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void checkPostCall(const CallEvent &Call, CheckerContext &C) const;
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// Check if invalidated region is being dereferenced.
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void checkLocation(SVal l, bool isLoad, const Stmt *S,
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CheckerContext &C) const;
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};
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} // namespace
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// Set of memory regions that were invalidated
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REGISTER_SET_WITH_PROGRAMSTATE(InvalidMemoryRegions, const MemRegion *)
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// Stores the region of the environment pointer of 'main' (if present).
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// Note: This pointer has type 'const MemRegion *', however the trait is only
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// specialized to 'const void*' and 'void*'
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REGISTER_TRAIT_WITH_PROGRAMSTATE(EnvPtrRegion, const void *)
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// Stores key-value pairs, where key is function declaration and value is
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// pointer to memory region returned by previous call of this function
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REGISTER_MAP_WITH_PROGRAMSTATE(PreviousCallResultMap, const FunctionDecl *,
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const MemRegion *)
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void InvalidPtrChecker::EnvpInvalidatingCall(const CallEvent &Call,
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CheckerContext &C) const {
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StringRef FunctionName = Call.getCalleeIdentifier()->getName();
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ProgramStateRef State = C.getState();
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const auto *Reg = State->get<EnvPtrRegion>();
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if (!Reg)
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return;
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const auto *SymbolicEnvPtrRegion =
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reinterpret_cast<const MemRegion *>(const_cast<const void *>(Reg));
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State = State->add<InvalidMemoryRegions>(SymbolicEnvPtrRegion);
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const NoteTag *Note =
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C.getNoteTag([SymbolicEnvPtrRegion, FunctionName](
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PathSensitiveBugReport &BR, llvm::raw_ostream &Out) {
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if (!BR.isInteresting(SymbolicEnvPtrRegion))
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return;
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Out << '\'' << FunctionName
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<< "' call may invalidate the environment parameter of 'main'";
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});
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C.addTransition(State, Note);
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}
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void InvalidPtrChecker::postPreviousReturnInvalidatingCall(
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const CallEvent &Call, CheckerContext &C) const {
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ProgramStateRef State = C.getState();
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const NoteTag *Note = nullptr;
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const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(Call.getDecl());
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// Invalidate the region of the previously returned pointer - if there was
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// one.
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if (const MemRegion *const *Reg = State->get<PreviousCallResultMap>(FD)) {
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const MemRegion *PrevReg = *Reg;
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State = State->add<InvalidMemoryRegions>(PrevReg);
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Note = C.getNoteTag([PrevReg, FD](PathSensitiveBugReport &BR,
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llvm::raw_ostream &Out) {
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if (!BR.isInteresting(PrevReg))
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return;
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Out << '\'';
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FD->getNameForDiagnostic(Out, FD->getASTContext().getLangOpts(), true);
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Out << "' call may invalidate the the result of the previous " << '\'';
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FD->getNameForDiagnostic(Out, FD->getASTContext().getLangOpts(), true);
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Out << '\'';
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});
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}
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const LocationContext *LCtx = C.getLocationContext();
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const auto *CE = cast<CallExpr>(Call.getOriginExpr());
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// Function call will return a pointer to the new symbolic region.
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DefinedOrUnknownSVal RetVal = C.getSValBuilder().conjureSymbolVal(
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CE, LCtx, CE->getType(), C.blockCount());
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State = State->BindExpr(CE, LCtx, RetVal);
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// Remember to this region.
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const auto *SymRegOfRetVal = cast<SymbolicRegion>(RetVal.getAsRegion());
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const MemRegion *MR =
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const_cast<MemRegion *>(SymRegOfRetVal->getBaseRegion());
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State = State->set<PreviousCallResultMap>(FD, MR);
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ExplodedNode *Node = C.addTransition(State, Note);
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const NoteTag *PreviousCallNote =
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C.getNoteTag([MR](PathSensitiveBugReport &BR, llvm::raw_ostream &Out) {
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if (!BR.isInteresting(MR))
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return;
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Out << '\'' << "'previous function call was here" << '\'';
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});
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C.addTransition(State, Node, PreviousCallNote);
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}
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// TODO: This seems really ugly. Simplify this.
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static const MemRegion *findInvalidatedSymbolicBase(ProgramStateRef State,
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const MemRegion *Reg) {
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while (Reg) {
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if (State->contains<InvalidMemoryRegions>(Reg))
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return Reg;
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const auto *SymBase = Reg->getSymbolicBase();
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if (!SymBase)
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break;
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const auto *SRV = dyn_cast<SymbolRegionValue>(SymBase->getSymbol());
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if (!SRV)
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break;
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Reg = SRV->getRegion();
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if (const auto *VarReg = dyn_cast<VarRegion>(SRV->getRegion()))
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Reg = VarReg;
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}
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return nullptr;
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}
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// Handle functions in EnvpInvalidatingFunctions, that invalidate environment
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// pointer from 'main()' Also, check if invalidated region is passed to a
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// function call as an argument.
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void InvalidPtrChecker::checkPostCall(const CallEvent &Call,
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CheckerContext &C) const {
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// Check if function invalidates 'envp' argument of 'main'
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if (const auto *Handler = EnvpInvalidatingFunctions.lookup(Call))
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(this->**Handler)(Call, C);
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// Check if function invalidates the result of previous call
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if (const auto *Handler = PreviousCallInvalidatingFunctions.lookup(Call))
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(this->**Handler)(Call, C);
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// Check if one of the arguments of the function call is invalidated
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// If call was inlined, don't report invalidated argument
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if (C.wasInlined)
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return;
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ProgramStateRef State = C.getState();
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for (unsigned I = 0, NumArgs = Call.getNumArgs(); I < NumArgs; ++I) {
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if (const auto *SR = dyn_cast_or_null<SymbolicRegion>(
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Call.getArgSVal(I).getAsRegion())) {
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if (const MemRegion *InvalidatedSymbolicBase =
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findInvalidatedSymbolicBase(State, SR)) {
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ExplodedNode *ErrorNode = C.generateNonFatalErrorNode();
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if (!ErrorNode)
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return;
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SmallString<256> Msg;
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llvm::raw_svector_ostream Out(Msg);
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Out << "use of invalidated pointer '";
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Call.getArgExpr(I)->printPretty(Out, /*Helper=*/nullptr,
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C.getASTContext().getPrintingPolicy());
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Out << "' in a function call";
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auto Report =
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std::make_unique<PathSensitiveBugReport>(BT, Out.str(), ErrorNode);
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Report->markInteresting(InvalidatedSymbolicBase);
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Report->addRange(Call.getArgSourceRange(I));
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C.emitReport(std::move(Report));
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}
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}
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}
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}
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// Obtain the environment pointer from 'main()', if present.
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void InvalidPtrChecker::checkBeginFunction(CheckerContext &C) const {
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if (!C.inTopFrame())
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return;
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const auto *FD = dyn_cast<FunctionDecl>(C.getLocationContext()->getDecl());
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if (!FD || FD->param_size() != 3 || !FD->isMain())
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return;
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ProgramStateRef State = C.getState();
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const MemRegion *EnvpReg =
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State->getRegion(FD->parameters()[2], C.getLocationContext());
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// Save the memory region pointed by the environment pointer parameter of
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// 'main'.
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State = State->set<EnvPtrRegion>(
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reinterpret_cast<void *>(const_cast<MemRegion *>(EnvpReg)));
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C.addTransition(State);
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}
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// Check if invalidated region is being dereferenced.
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void InvalidPtrChecker::checkLocation(SVal Loc, bool isLoad, const Stmt *S,
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CheckerContext &C) const {
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ProgramStateRef State = C.getState();
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// Ignore memory operations involving 'non-invalidated' locations.
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const MemRegion *InvalidatedSymbolicBase =
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findInvalidatedSymbolicBase(State, Loc.getAsRegion());
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if (!InvalidatedSymbolicBase)
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return;
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ExplodedNode *ErrorNode = C.generateNonFatalErrorNode();
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if (!ErrorNode)
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return;
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auto Report = std::make_unique<PathSensitiveBugReport>(
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BT, "dereferencing an invalid pointer", ErrorNode);
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Report->markInteresting(InvalidatedSymbolicBase);
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C.emitReport(std::move(Report));
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}
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void ento::registerInvalidPtrChecker(CheckerManager &Mgr) {
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Mgr.registerChecker<InvalidPtrChecker>();
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}
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bool ento::shouldRegisterInvalidPtrChecker(const CheckerManager &) {
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return true;
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}
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