614 lines
27 KiB
C++
614 lines
27 KiB
C++
/*
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* Cppcheck - A tool for static C/C++ code analysis
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* Copyright (C) 2007-2014 Daniel Marjamäki and 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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#include "checknullpointer.h"
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#include "mathlib.h"
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#include "symboldatabase.h"
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#include <cctype>
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//---------------------------------------------------------------------------
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// Register this check class (by creating a static instance of it)
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namespace {
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CheckNullPointer instance;
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}
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//---------------------------------------------------------------------------
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static bool checkNullpointerFunctionCallPlausibility(const Function* func, unsigned int arg)
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{
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return !func || (func->argCount() >= arg && func->getArgumentVar(arg - 1) && func->getArgumentVar(arg - 1)->isPointer());
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}
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/**
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* @brief parse a function call and extract information about variable usage
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* @param tok first token
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* @param var variables that the function read / write.
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* @param library --library files data
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* @param value 0 => invalid with null pointers as parameter.
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* 1-.. => only invalid with uninitialized data.
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*/
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void CheckNullPointer::parseFunctionCall(const Token &tok, std::list<const Token *> &var, const Library *library, unsigned char value)
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{
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if (Token::Match(&tok, "%var% ( )") || !tok.tokAt(2))
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return;
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const Token* firstParam = tok.tokAt(2);
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const Token* secondParam = firstParam->nextArgument();
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// 1st parameter..
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if ((Token::Match(firstParam, "%var% ,|)") && firstParam->varId() > 0) ||
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(value == 0 && Token::Match(firstParam, "0|NULL ,|)"))) {
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if (value == 0 && Token::Match(&tok, "snprintf|vsnprintf|fnprintf|vfnprintf") && secondParam && secondParam->str() != "0") // Only if length (second parameter) is not zero
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var.push_back(firstParam);
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else if (value == 0 && library != nullptr && library->isnullargbad(tok.str(), 1) && checkNullpointerFunctionCallPlausibility(tok.function(), 1))
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var.push_back(firstParam);
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else if (value == 1 && library != nullptr && library->isuninitargbad(tok.str(), 1))
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var.push_back(firstParam);
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}
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// 2nd parameter..
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if ((value == 0 && Token::Match(secondParam, "0|NULL ,|)")) || (secondParam && secondParam->varId() > 0 && Token::Match(secondParam->next(),"[,)]"))) {
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if (value == 0 && library != nullptr && library->isnullargbad(tok.str(), 2) && checkNullpointerFunctionCallPlausibility(tok.function(), 2))
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var.push_back(secondParam);
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else if (value == 1 && library != nullptr && library->isuninitargbad(tok.str(), 2))
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var.push_back(secondParam);
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}
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if (Token::Match(&tok, "printf|sprintf|snprintf|fprintf|fnprintf|scanf|sscanf|fscanf|wprintf|swprintf|fwprintf|wscanf|swscanf|fwscanf")) {
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const Token* argListTok = 0; // Points to first va_list argument
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std::string formatString;
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bool scan = Token::Match(&tok, "scanf|sscanf|fscanf|wscanf|swscanf|fwscanf");
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if (Token::Match(&tok, "printf|scanf|wprintf|wscanf ( %str%")) {
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formatString = firstParam->strValue();
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argListTok = secondParam;
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} else if (Token::Match(&tok, "sprintf|fprintf|sscanf|fscanf|fwprintf|fwscanf|swscanf")) {
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const Token* formatStringTok = secondParam; // Find second parameter (format string)
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if (formatStringTok && formatStringTok->type() == Token::eString) {
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argListTok = formatStringTok->nextArgument(); // Find third parameter (first argument of va_args)
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formatString = formatStringTok->strValue();
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}
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} else if (Token::Match(&tok, "snprintf|fnprintf|swprintf") && secondParam) {
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const Token* formatStringTok = secondParam->nextArgument(); // Find third parameter (format string)
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if (formatStringTok && formatStringTok->type() == Token::eString) {
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argListTok = formatStringTok->nextArgument(); // Find fourth parameter (first argument of va_args)
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formatString = formatStringTok->strValue();
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}
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}
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if (argListTok) {
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bool percent = false;
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for (std::string::iterator i = formatString.begin(); i != formatString.end(); ++i) {
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if (*i == '%') {
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percent = !percent;
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} else if (percent) {
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percent = false;
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bool _continue = false;
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while (!std::isalpha((unsigned char)*i)) {
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if (*i == '*') {
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if (scan)
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_continue = true;
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else
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argListTok = argListTok->nextArgument();
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}
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++i;
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if (!argListTok || i == formatString.end())
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return;
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}
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if (_continue)
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continue;
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if ((*i == 'n' || *i == 's' || scan) && (!scan || value == 0)) {
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if ((value == 0 && argListTok->str() == "0") || (argListTok->varId() > 0 && Token::Match(argListTok,"%var% [,)]"))) {
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var.push_back(argListTok);
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}
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}
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if (*i != 'm') // %m is a non-standard glibc extension that requires no parameter
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argListTok = argListTok->nextArgument(); // Find next argument
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if (!argListTok)
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break;
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}
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}
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}
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}
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}
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/**
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* Is there a pointer dereference? Everything that should result in
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* a nullpointer dereference error message will result in a true
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* return value. If it's unknown if the pointer is dereferenced false
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* is returned.
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* @param tok token for the pointer
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* @param unknown it is not known if there is a pointer dereference (could be reported as a debug message)
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* @return true => there is a dereference
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*/
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bool CheckNullPointer::isPointerDeRef(const Token *tok, bool &unknown)
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{
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// THIS ARRAY MUST BE ORDERED ALPHABETICALLY
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static const char* const stl_stream [] = {
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"fstream", "ifstream", "iostream", "istream",
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"istringstream", "ofstream", "ostream", "ostringstream",
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"stringstream", "wistringstream", "wostringstream", "wstringstream"
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};
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unknown = false;
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const Token* parent = tok->astParent();
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if (!parent)
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return false;
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bool firstOperand = parent->astOperand1() == tok;
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while (parent->str() == "(" && (parent->astOperand2() == nullptr && parent->strAt(1) != ")")) { // Skip over casts
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parent = parent->astParent();
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if (!parent)
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return false;
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}
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// Dereferencing pointer..
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if (parent->str() == "*" && !parent->astOperand2() && !Token::Match(parent->tokAt(-2), "sizeof|decltype|typeof"))
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return true;
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// array access
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if (parent->str() == "[" && (!parent->astParent() || parent->astParent()->str() != "&"))
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return true;
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// read/write member variable
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if (firstOperand && parent->str() == "." && (!parent->astParent() || parent->astParent()->str() != "&")) {
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if (!parent->astParent() || parent->astParent()->str() != "(" || parent->astParent() == tok->previous())
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return true;
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unknown = true;
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return false;
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}
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if (Token::Match(tok, "%var% ("))
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return true;
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if (Token::Match(tok, "%var% = %var% .") &&
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tok->varId() > 0 &&
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tok->varId() == tok->tokAt(2)->varId())
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return true;
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// std::string dereferences nullpointers
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if (Token::Match(parent->tokAt(-3), "std :: string|wstring (") && tok->strAt(1) == ")")
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return true;
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if (Token::Match(parent->previous(), "%var% (") && tok->strAt(1) == ")") {
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const Variable* var = tok->tokAt(-2)->variable();
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if (var && !var->isPointer() && !var->isArray() && var->isStlStringType())
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return true;
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}
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// streams dereference nullpointers
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if (Token::Match(parent, "<<|>>") && !firstOperand) {
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const Variable* var = tok->variable();
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if (var && var->isPointer() && Token::Match(var->typeStartToken(), "char|wchar_t")) { // Only outputting or reading to char* can cause problems
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const Token* tok2 = parent; // Find start of statement
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for (; tok2; tok2 = tok2->previous()) {
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if (Token::Match(tok2->previous(), ";|{|}|:"))
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break;
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}
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if (Token::Match(tok2, "std :: cout|cin|cerr"))
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return true;
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if (tok2 && tok2->varId() != 0) {
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const Variable* var2 = tok2->variable();
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if (var2 && var2->isStlType(stl_stream))
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return true;
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}
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}
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}
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const Variable *ovar = nullptr;
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if (Token::Match(parent, "+|==|!=") || (parent->str() == "=" && !firstOperand)) {
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if (parent->astOperand1() == tok && parent->astOperand2())
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ovar = parent->astOperand2()->variable();
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else if (parent->astOperand1() && parent->astOperand2() == tok)
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ovar = parent->astOperand1()->variable();
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}
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if (ovar && !ovar->isPointer() && !ovar->isArray() && ovar->isStlStringType())
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return true;
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// assume that it's not a dereference (no false positives)
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return false;
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}
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void CheckNullPointer::nullPointerLinkedList()
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{
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const SymbolDatabase* const symbolDatabase = _tokenizer->getSymbolDatabase();
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// looping through items in a linked list in a inner loop.
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// Here is an example:
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// for (const Token *tok = tokens; tok; tok = tok->next) {
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// if (tok->str() == "hello")
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// tok = tok->next; // <- tok might become a null pointer!
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// }
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for (std::list<Scope>::const_iterator i = symbolDatabase->scopeList.begin(); i != symbolDatabase->scopeList.end(); ++i) {
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const Token* const tok1 = i->classDef;
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// search for a "for" scope..
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if (i->type != Scope::eFor || !tok1)
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continue;
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// is there any dereferencing occurring in the for statement
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const Token* end2 = tok1->linkAt(1);
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for (const Token *tok2 = tok1->tokAt(2); tok2 != end2; tok2 = tok2->next()) {
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// Dereferencing a variable inside the "for" parentheses..
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if (Token::Match(tok2, "%var% . %var%")) {
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// Is this variable a pointer?
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const Variable *var = tok2->variable();
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if (!var || !var->isPointer())
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continue;
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// Variable id for dereferenced variable
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const unsigned int varid(tok2->varId());
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// We don't support variables without a varid
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if (varid == 0)
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continue;
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if (Token::Match(tok2->tokAt(-2), "%varid% ?", varid))
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continue;
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// Check usage of dereferenced variable in the loop..
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for (std::list<Scope*>::const_iterator j = i->nestedList.begin(); j != i->nestedList.end(); ++j) {
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Scope* scope = *j;
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if (scope->type != Scope::eWhile)
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continue;
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// TODO: are there false negatives for "while ( %varid% ||"
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if (Token::Match(scope->classDef->next(), "( %varid% &&|)", varid)) {
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// Make sure there is a "break" or "return" inside the loop.
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// Without the "break" a null pointer could be dereferenced in the
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// for statement.
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for (const Token *tok4 = scope->classStart; tok4; tok4 = tok4->next()) {
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if (tok4 == i->classEnd) {
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nullPointerError(tok1, var->name(), scope->classDef);
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break;
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}
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// There is a "break" or "return" inside the loop.
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// TODO: there can be false negatives. There could still be
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// execution paths that are not properly terminated
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else if (tok4->str() == "break" || tok4->str() == "return")
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break;
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}
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}
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}
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}
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}
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}
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}
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void CheckNullPointer::nullPointerByDeRefAndChec()
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{
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for (const Token *tok = _tokenizer->tokens(); tok; tok = tok->next()) {
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const Variable *var = tok->variable();
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if (!var || !var->isPointer() || tok == var->nameToken())
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continue;
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// Can pointer be NULL?
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const ValueFlow::Value *value = tok->getValue(0);
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if (!value)
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continue;
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if (!_settings->inconclusive && value->inconclusive)
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continue;
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// Is pointer used as function parameter?
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if (Token::Match(tok->previous(), "[(,] %var% [,)]")) {
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const Token *ftok = tok->previous();
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while (ftok && ftok->str() != "(") {
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if (ftok->str() == ")")
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ftok = ftok->link();
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ftok = ftok->previous();
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}
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if (!ftok || !ftok->previous())
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continue;
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std::list<const Token *> varlist;
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parseFunctionCall(*ftok->previous(), varlist, &_settings->library, 0);
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if (std::find(varlist.begin(), varlist.end(), tok) != varlist.end()) {
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if (value->condition == nullptr)
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nullPointerError(tok, tok->str());
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else if (_settings->isEnabled("warning"))
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nullPointerError(tok, tok->str(), value->condition, value->inconclusive);
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}
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continue;
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}
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// Pointer dereference.
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bool unknown = false;
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if (!isPointerDeRef(tok,unknown)) {
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if (_settings->inconclusive && unknown) {
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if (value->condition == nullptr)
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nullPointerError(tok, tok->str(), true);
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else
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nullPointerError(tok, tok->str(), value->condition, true);
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}
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continue;
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}
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if (value->condition == nullptr)
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nullPointerError(tok, tok->str(), value->inconclusive);
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else if (_settings->isEnabled("warning"))
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nullPointerError(tok, tok->str(), value->condition, value->inconclusive);
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}
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}
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void CheckNullPointer::nullPointer()
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{
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nullPointerLinkedList();
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nullPointerByDeRefAndChec();
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nullPointerDefaultArgument();
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}
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/** Dereferencing null constant (simplified token list) */
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void CheckNullPointer::nullConstantDereference()
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{
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const SymbolDatabase *symbolDatabase = _tokenizer->getSymbolDatabase();
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// THIS ARRAY MUST BE ORDERED ALPHABETICALLY
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static const char* const stl_stream[] = {
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"fstream", "ifstream", "iostream", "istream",
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"istringstream", "stringstream", "wistringstream", "wstringstream"
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};
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const std::size_t functions = symbolDatabase->functionScopes.size();
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for (std::size_t i = 0; i < functions; ++i) {
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const Scope * scope = symbolDatabase->functionScopes[i];
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if (scope->function == 0 || !scope->function->hasBody) // We only look for functions with a body
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continue;
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const Token *tok = scope->classStart;
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if (scope->function && scope->function->isConstructor())
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tok = scope->function->token; // Check initialization list
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for (; tok != scope->classEnd; tok = tok->next()) {
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if (Token::Match(tok, "sizeof|decltype|typeid|typeof ("))
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tok = tok->next()->link();
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else if (Token::simpleMatch(tok, "* 0")) {
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if (Token::Match(tok->previous(), "return|throw|;|{|}|:|[|(|,") || tok->previous()->isOp()) {
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nullPointerError(tok);
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}
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}
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else if (Token::Match(tok, "0 [") && (tok->previous()->str() != "&" || !Token::Match(tok->next()->link()->next(), "[.(]")))
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nullPointerError(tok);
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else if (Token::Match(tok->previous(), "!!. %var% (") && (tok->previous()->str() != "::" || tok->strAt(-2) == "std")) {
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if (Token::simpleMatch(tok->tokAt(2), "0 )") && tok->varId()) { // constructor call
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const Variable *var = tok->variable();
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if (var && !var->isPointer() && !var->isArray() && var->isStlStringType())
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nullPointerError(tok);
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} else { // function call
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std::list<const Token *> var;
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parseFunctionCall(*tok, var, &_settings->library, 0);
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// is one of the var items a NULL pointer?
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for (std::list<const Token *>::const_iterator it = var.begin(); it != var.end(); ++it) {
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if (Token::Match(*it, "0|NULL [,)]")) {
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nullPointerError(*it);
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}
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}
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}
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} else if (Token::Match(tok, "std :: string|wstring ( 0 )"))
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nullPointerError(tok);
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else if (Token::simpleMatch(tok->previous(), ">> 0")) { // Only checking input stream operations is safe here, because otherwise 0 can be an integer as well
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const Token* tok2 = tok->previous(); // Find start of statement
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for (; tok2; tok2 = tok2->previous()) {
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if (Token::Match(tok2->previous(), ";|{|}|:|("))
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break;
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}
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if (tok2 && tok2->previous() && tok2->previous()->str()=="(")
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continue;
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if (Token::simpleMatch(tok2, "std :: cin"))
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nullPointerError(tok);
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if (tok2 && tok2->varId() != 0) {
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const Variable *var = tok2->variable();
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if (var && var->isStlType(stl_stream))
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nullPointerError(tok);
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}
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}
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const Variable *ovar = nullptr;
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if (Token::Match(tok, "0 ==|!=|>|>=|<|<= %var% !!."))
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ovar = tok->tokAt(2)->variable();
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else if (Token::Match(tok, "%var% ==|!=|>|>=|<|<= 0"))
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ovar = tok->variable();
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else if (Token::Match(tok, "%var% =|+ 0 )|]|,|;|+"))
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ovar = tok->variable();
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if (ovar && !ovar->isPointer() && !ovar->isArray() && ovar->isStlStringType() && tok->tokAt(2)->originalName() != "'\\0'")
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nullPointerError(tok);
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}
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}
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}
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/**
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* @brief If tok is a function call that passes in a pointer such that
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* the pointer may be modified, this function will remove that
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* pointer from pointerArgs.
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*/
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void CheckNullPointer::removeAssignedVarFromSet(const Token* tok, std::set<unsigned int>& pointerArgs)
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{
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// If a pointer's address is passed into a function, stop considering it
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if (Token::Match(tok->previous(), "[;{}] %var% (")) {
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// Common functions that are known NOT to modify their pointer argument
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const char safeFunctions[] = "printf|sprintf|fprintf|vprintf";
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const Token* endParen = tok->next()->link();
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for (const Token* tok2 = tok->next(); tok2 != endParen; tok2 = tok2->next()) {
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if (tok2->isName() && tok2->varId() > 0 && !Token::Match(tok, safeFunctions)) {
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pointerArgs.erase(tok2->varId());
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/**
|
|
* @brief Does one part of the check for nullPointer().
|
|
* -# default argument that sets a pointer to 0
|
|
* -# dereference pointer
|
|
*/
|
|
void CheckNullPointer::nullPointerDefaultArgument()
|
|
{
|
|
if (!_settings->isEnabled("warning"))
|
|
return;
|
|
|
|
const SymbolDatabase *symbolDatabase = _tokenizer->getSymbolDatabase();
|
|
const std::size_t functions = symbolDatabase->functionScopes.size();
|
|
for (std::size_t i = 0; i < functions; ++i) {
|
|
const Scope * scope = symbolDatabase->functionScopes[i];
|
|
if (scope->function == 0 || !scope->function->hasBody) // We only look for functions with a body
|
|
continue;
|
|
|
|
// Scan the argument list for default arguments that are pointers and
|
|
// which default to a NULL pointer if no argument is specified.
|
|
std::set<unsigned int> pointerArgs;
|
|
for (const Token *tok = scope->function->arg; tok != scope->function->arg->link(); tok = tok->next()) {
|
|
|
|
if (Token::Match(tok, "%var% = 0 ,|)") && tok->varId() != 0) {
|
|
const Variable *var = tok->variable();
|
|
if (var && var->isPointer())
|
|
pointerArgs.insert(tok->varId());
|
|
}
|
|
}
|
|
|
|
// Report an error if any of the default-NULL arguments are dereferenced
|
|
if (!pointerArgs.empty()) {
|
|
for (const Token *tok = scope->classStart; tok != scope->classEnd; tok = tok->next()) {
|
|
|
|
// If we encounter a possible NULL-pointer check, skip over its body
|
|
if (tok->str() == "?") { // TODO: Skip this if the condition is unrelated to the variables
|
|
// Find end of statement
|
|
tok = tok->astOperand2();
|
|
while (tok && !Token::Match(tok, ")|;")) {
|
|
if (tok->link() && Token::Match(tok, "(|[|<|{"))
|
|
tok = tok->link();
|
|
tok = tok->next();
|
|
}
|
|
if (!tok)
|
|
break;
|
|
} else if (Token::simpleMatch(tok, "if (")) {
|
|
bool dependsOnPointer = false;
|
|
const Token *endOfCondition = tok->next()->link();
|
|
if (!endOfCondition)
|
|
continue;
|
|
|
|
const Token *startOfIfBlock =
|
|
Token::simpleMatch(endOfCondition, ") {") ? endOfCondition->next() : nullptr;
|
|
if (!startOfIfBlock)
|
|
continue;
|
|
|
|
// If this if() statement may return, it may be a null
|
|
// pointer check for the pointers referenced in its condition
|
|
const Token *endOfIf = startOfIfBlock->link();
|
|
bool isExitOrReturn =
|
|
Token::findmatch(startOfIfBlock, "exit|return|throw", endOfIf) != nullptr;
|
|
|
|
if (Token::Match(tok, "if ( %var% == 0 )")) {
|
|
const unsigned int var = tok->tokAt(2)->varId();
|
|
if (var > 0 && pointerArgs.count(var) > 0) {
|
|
if (isExitOrReturn)
|
|
pointerArgs.erase(var);
|
|
else
|
|
dependsOnPointer = true;
|
|
}
|
|
} else {
|
|
for (const Token *tok2 = tok->next(); tok2 != endOfCondition; tok2 = tok2->next()) {
|
|
if (tok2->isName() && tok2->varId() > 0 &&
|
|
pointerArgs.count(tok2->varId()) > 0) {
|
|
|
|
// If the if() depends on a pointer and may return, stop
|
|
// considering that pointer because it may be a NULL-pointer
|
|
// check that returns if the pointer is NULL.
|
|
if (isExitOrReturn)
|
|
pointerArgs.erase(tok2->varId());
|
|
else
|
|
dependsOnPointer = true;
|
|
}
|
|
}
|
|
}
|
|
|
|
if (dependsOnPointer && endOfIf) {
|
|
for (; tok != endOfIf; tok = tok->next()) {
|
|
// If a pointer is assigned a new value, stop considering it.
|
|
if (Token::Match(tok, "%var% ="))
|
|
pointerArgs.erase(tok->varId());
|
|
else
|
|
removeAssignedVarFromSet(tok, pointerArgs);
|
|
}
|
|
continue;
|
|
}
|
|
}
|
|
|
|
// If there is a noreturn function (e.g. exit()), stop considering the rest of
|
|
// this function.
|
|
bool unknown = false;
|
|
if (Token::Match(tok, "return|throw|exit") ||
|
|
(_tokenizer->IsScopeNoReturn(tok, &unknown) && !unknown))
|
|
break;
|
|
|
|
removeAssignedVarFromSet(tok, pointerArgs);
|
|
|
|
if (tok->varId() == 0 || pointerArgs.count(tok->varId()) == 0)
|
|
continue;
|
|
|
|
// If a pointer is assigned a new value, stop considering it.
|
|
if (Token::Match(tok, "%var% ="))
|
|
pointerArgs.erase(tok->varId());
|
|
|
|
// If a pointer dereference is preceded by an && or ||,
|
|
// they serve as a sequence point so the dereference
|
|
// may not be executed.
|
|
if (isPointerDeRef(tok, unknown) && !unknown &&
|
|
tok->strAt(-1) != "&&" && tok->strAt(-1) != "||" &&
|
|
tok->strAt(-2) != "&&" && tok->strAt(-2) != "||")
|
|
nullPointerDefaultArgError(tok, tok->str());
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void CheckNullPointer::nullPointerError(const Token *tok)
|
|
{
|
|
reportError(tok, Severity::error, "nullPointer", "Null pointer dereference");
|
|
}
|
|
|
|
void CheckNullPointer::nullPointerError(const Token *tok, const std::string &varname, bool inconclusive)
|
|
{
|
|
reportError(tok, Severity::error, "nullPointer", "Possible null pointer dereference: " + varname, inconclusive);
|
|
}
|
|
|
|
void CheckNullPointer::nullPointerError(const Token *tok, const std::string &varname, const Token* nullCheck, bool inconclusive)
|
|
{
|
|
std::list<const Token*> callstack;
|
|
callstack.push_back(tok);
|
|
callstack.push_back(nullCheck);
|
|
const std::string errmsg("Possible null pointer dereference: " + varname + " - otherwise it is redundant to check it against null.");
|
|
reportError(callstack, Severity::warning, "nullPointer", errmsg, inconclusive);
|
|
}
|
|
|
|
void CheckNullPointer::nullPointerDefaultArgError(const Token *tok, const std::string &varname)
|
|
{
|
|
reportError(tok, Severity::warning, "nullPointer", "Possible null pointer dereference if the default parameter value is used: " + varname);
|
|
}
|