182 lines
6.4 KiB
C++
182 lines
6.4 KiB
C++
/*
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* Cppcheck - A tool for static C/C++ code analysis
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* Copyright (C) 2007-2022 Cppcheck team.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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//---------------------------------------------------------------------------
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#ifndef checkleakautovarH
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#define checkleakautovarH
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//---------------------------------------------------------------------------
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#include "check.h"
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#include "config.h"
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#include "library.h"
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#include <map>
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#include <set>
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#include <string>
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#include <utility>
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class ErrorLogger;
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class Settings;
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class Token;
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class Tokenizer;
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class CPPCHECKLIB VarInfo {
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public:
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enum AllocStatus { REALLOC = -3, OWNED = -2, DEALLOC = -1, NOALLOC = 0, ALLOC = 1 };
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struct AllocInfo {
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AllocStatus status;
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/** Allocation type. If it is a positive value then it corresponds to
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* a Library allocation id. A negative value is a builtin
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* checkleakautovar allocation type.
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*/
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int type;
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int reallocedFromType = -1;
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const Token * allocTok;
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AllocInfo(int type_ = 0, AllocStatus status_ = NOALLOC, const Token* allocTok_ = nullptr) : status(status_), type(type_), allocTok(allocTok_) {}
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bool managed() const {
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return status < 0;
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}
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};
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std::map<int, AllocInfo> alloctype;
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std::map<int, std::string> possibleUsage;
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std::set<int> conditionalAlloc;
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std::set<int> referenced;
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void clear() {
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alloctype.clear();
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possibleUsage.clear();
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conditionalAlloc.clear();
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referenced.clear();
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}
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void erase(nonneg int varid) {
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alloctype.erase(varid);
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possibleUsage.erase(varid);
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conditionalAlloc.erase(varid);
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referenced.erase(varid);
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}
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void swap(VarInfo &other) {
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alloctype.swap(other.alloctype);
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possibleUsage.swap(other.possibleUsage);
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conditionalAlloc.swap(other.conditionalAlloc);
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referenced.swap(other.referenced);
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}
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void reallocToAlloc(nonneg int varid) {
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const AllocInfo& alloc = alloctype[varid];
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if (alloc.reallocedFromType >= 0) {
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const std::map<int, VarInfo::AllocInfo>::iterator it = alloctype.find(alloc.reallocedFromType);
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if (it != alloctype.end() && it->second.status == REALLOC) {
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it->second.status = ALLOC;
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}
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}
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}
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/** set possible usage for all variables */
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void possibleUsageAll(const std::string &functionName);
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void print();
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};
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/// @addtogroup Checks
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/// @{
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/**
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* @brief Check for leaks
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*/
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class CPPCHECKLIB CheckLeakAutoVar : public Check {
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public:
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/** This constructor is used when registering the CheckLeakAutoVar */
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CheckLeakAutoVar() : Check(myName()) {}
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/** This constructor is used when running checks. */
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CheckLeakAutoVar(const Tokenizer *tokenizer, const Settings *settings, ErrorLogger *errorLogger)
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: Check(myName(), tokenizer, settings, errorLogger) {}
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void runChecks(const Tokenizer *tokenizer, const Settings *settings, ErrorLogger *errorLogger) override {
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CheckLeakAutoVar checkLeakAutoVar(tokenizer, settings, errorLogger);
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checkLeakAutoVar.check();
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}
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private:
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/** check for leaks in all scopes */
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void check();
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/** check for leaks in a function scope */
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void checkScope(const Token * const startToken,
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VarInfo *varInfo,
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std::set<int> notzero,
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nonneg int recursiveCount);
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/** Check token inside expression.
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* @param tok token inside expression.
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* @param varInfo Variable info
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* @return next token to process (if no other checks needed for this token). NULL if other checks could be performed.
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*/
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const Token * checkTokenInsideExpression(const Token * const tok, VarInfo *varInfo);
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/** parse function call */
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void functionCall(const Token *tokName, const Token *tokOpeningPar, VarInfo *varInfo, const VarInfo::AllocInfo& allocation, const Library::AllocFunc* af);
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/** parse changes in allocation status */
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void changeAllocStatus(VarInfo *varInfo, const VarInfo::AllocInfo& allocation, const Token* tok, const Token* arg);
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/** update allocation status if reallocation function */
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void changeAllocStatusIfRealloc(std::map<int, VarInfo::AllocInfo> &alloctype, const Token *fTok, const Token *retTok);
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/** return. either "return" or end of variable scope is seen */
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void ret(const Token *tok, VarInfo &varInfo, const bool isEndOfScope = false);
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/** if variable is allocated then there is a leak */
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void leakIfAllocated(const Token *vartok, const VarInfo &varInfo);
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void leakError(const Token* tok, const std::string &varname, int type);
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void mismatchError(const Token* deallocTok, const Token* allocTok, const std::string &varname);
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void deallocUseError(const Token *tok, const std::string &varname);
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void deallocReturnError(const Token *tok, const Token *deallocTok, const std::string &varname);
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void doubleFreeError(const Token *tok, const Token *prevFreeTok, const std::string &varname, int type);
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/** message: user configuration is needed to complete analysis */
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void configurationInfo(const Token* tok, const std::string &functionName);
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void getErrorMessages(ErrorLogger *errorLogger, const Settings *settings) const override {
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CheckLeakAutoVar c(nullptr, settings, errorLogger);
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c.deallocReturnError(nullptr, nullptr, "p");
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c.configurationInfo(nullptr, "f"); // user configuration is needed to complete analysis
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c.doubleFreeError(nullptr, nullptr, "varname", 0);
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}
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static std::string myName() {
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return "Leaks (auto variables)";
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}
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std::string classInfo() const override {
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return "Detect when a auto variable is allocated but not deallocated or deallocated twice.\n";
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}
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};
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/// @}
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//---------------------------------------------------------------------------
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#endif // checkleakautovarH
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