859 lines
36 KiB
C++
859 lines
36 KiB
C++
/*
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* Cppcheck - A tool for static C/C++ code analysis
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* Copyright (C) 2007-2015 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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// Check for condition mismatches
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//---------------------------------------------------------------------------
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#include "checkcondition.h"
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#include "checkother.h"
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#include "symboldatabase.h"
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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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CheckCondition instance;
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}
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void CheckCondition::assignIf()
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{
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if (!_settings->isEnabled("style"))
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return;
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for (const Token *tok = _tokenizer->tokens(); tok; tok = tok->next()) {
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if (tok->str() != "=")
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continue;
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if (Token::Match(tok->tokAt(-2), "[;{}] %var% =")) {
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const Variable *var = tok->previous()->variable();
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if (var == 0)
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continue;
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char bitop = '\0';
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MathLib::bigint num = 0;
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if (Token::Match(tok->next(), "%num% [&|]")) {
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bitop = tok->strAt(2).at(0);
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num = MathLib::toLongNumber(tok->next()->str());
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} else {
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const Token *endToken = Token::findsimplematch(tok, ";");
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// Casting address
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if (endToken && Token::Match(endToken->tokAt(-4), "* ) & %any% ;"))
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endToken = nullptr;
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if (endToken && Token::Match(endToken->tokAt(-2), "[&|] %num% ;")) {
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bitop = endToken->strAt(-2).at(0);
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num = MathLib::toLongNumber(endToken->previous()->str());
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}
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}
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if (bitop == '\0')
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continue;
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if (num < 0 && bitop == '|')
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continue;
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assignIfParseScope(tok, tok->tokAt(4), var->declarationId(), var->isLocal(), bitop, num);
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}
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}
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}
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/** parse scopes recursively */
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bool CheckCondition::assignIfParseScope(const Token * const assignTok,
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const Token * const startTok,
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const unsigned int varid,
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const bool islocal,
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const char bitop,
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const MathLib::bigint num)
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{
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bool ret = false;
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for (const Token *tok2 = startTok; tok2; tok2 = tok2->next()) {
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if ((bitop == '&') && Token::Match(tok2->tokAt(2), "%varid% %cop% %num% ;", varid) && tok2->strAt(3) == std::string(1U, bitop)) {
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const MathLib::bigint num2 = MathLib::toLongNumber(tok2->strAt(4));
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if (0 == (num & num2))
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mismatchingBitAndError(assignTok, num, tok2, num2);
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}
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if (Token::Match(tok2, "%varid% =", varid)) {
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if ((bitop == '&') && Token::Match(tok2->tokAt(2), "%varid% %cop% %num% ;", varid) && tok2->strAt(3) == std::string(1U, bitop)) {
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const MathLib::bigint num2 = MathLib::toLongNumber(tok2->strAt(4));
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if (0 == (num & num2))
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mismatchingBitAndError(assignTok, num, tok2, num2);
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}
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return true;
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}
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if (Token::Match(tok2, "++|-- %varid%", varid) || Token::Match(tok2, "%varid% ++|--", varid))
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return true;
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if (Token::Match(tok2, "[(,] &| %varid% [,)]", varid)) {
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unsigned int argumentNumber = 0;
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const Token *ftok;
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for (ftok = tok2; ftok && ftok->str() != "("; ftok = ftok->previous()) {
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if (ftok->str() == ")")
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ftok = ftok->link();
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else if (ftok->str() == ",")
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argumentNumber++;
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}
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ftok = ftok ? ftok->previous() : nullptr;
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if (!(ftok && ftok->function()))
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return true;
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const Variable *par = ftok->function()->getArgumentVar(argumentNumber);
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if (par == nullptr || par->isReference() || par->isPointer())
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return true;
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}
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if (tok2->str() == "}")
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return false;
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if (Token::Match(tok2, "break|continue|return"))
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ret = true;
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if (ret && tok2->str() == ";")
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return false;
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if (!islocal && Token::Match(tok2, "%var% (") && !Token::simpleMatch(tok2->next()->link(), ") {"))
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return true;
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if (Token::Match(tok2, "if|while (")) {
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if (!islocal && tok2->str() == "while")
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continue;
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// parse condition
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const Token * const end = tok2->next()->link();
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for (; tok2 != end; tok2 = tok2->next()) {
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if (Token::Match(tok2, "[(,] &| %varid% [,)]", varid)) {
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return true;
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}
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if (Token::Match(tok2,"&&|%oror%|( %varid% %any% %num% &&|%oror%|)", varid)) {
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const Token *vartok = tok2->next();
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const std::string& op(vartok->strAt(1));
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const MathLib::bigint num2 = MathLib::toLongNumber(vartok->strAt(2));
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const std::string condition(vartok->str() + op + vartok->strAt(2));
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if (op == "==" && (num & num2) != ((bitop=='&') ? num2 : num))
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assignIfError(assignTok, tok2, condition, false);
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else if (op == "!=" && (num & num2) != ((bitop=='&') ? num2 : num))
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assignIfError(assignTok, tok2, condition, true);
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}
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}
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bool ret1 = assignIfParseScope(assignTok, end->tokAt(2), varid, islocal, bitop, num);
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bool ret2 = false;
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if (Token::simpleMatch(end->next()->link(), "} else {"))
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ret2 = assignIfParseScope(assignTok, end->next()->link()->tokAt(3), varid, islocal, bitop, num);
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if (ret1 || ret2)
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return true;
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}
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}
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return false;
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}
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void CheckCondition::assignIfError(const Token *tok1, const Token *tok2, const std::string &condition, bool result)
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{
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std::list<const Token *> locations;
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locations.push_back(tok1);
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locations.push_back(tok2);
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reportError(locations,
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Severity::style,
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"assignIfError",
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"Mismatching assignment and comparison, comparison '" + condition + "' is always " + std::string(result ? "true" : "false") + ".");
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}
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void CheckCondition::mismatchingBitAndError(const Token *tok1, const MathLib::bigint num1, const Token *tok2, const MathLib::bigint num2)
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{
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std::list<const Token *> locations;
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locations.push_back(tok1);
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locations.push_back(tok2);
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std::ostringstream msg;
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msg << "Mismatching bitmasks. Result is always 0 ("
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<< "X = Y & 0x" << std::hex << num1 << "; Z = X & 0x" << std::hex << num2 << "; => Z=0).";
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reportError(locations,
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Severity::style,
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"mismatchingBitAnd",
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msg.str());
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}
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static void getnumchildren(const Token *tok, std::list<MathLib::bigint> &numchildren)
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{
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if (tok->astOperand1() && tok->astOperand1()->isNumber())
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numchildren.push_back(MathLib::toLongNumber(tok->astOperand1()->str()));
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else if (tok->astOperand1() && tok->str() == tok->astOperand1()->str())
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getnumchildren(tok->astOperand1(), numchildren);
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if (tok->astOperand2() && tok->astOperand2()->isNumber())
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numchildren.push_back(MathLib::toLongNumber(tok->astOperand2()->str()));
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else if (tok->astOperand2() && tok->str() == tok->astOperand2()->str())
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getnumchildren(tok->astOperand2(), numchildren);
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}
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void CheckCondition::comparison()
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{
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if (!_settings->isEnabled("style"))
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return;
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// Experimental code based on AST
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for (const Token *tok = _tokenizer->tokens(); tok; tok = tok->next()) {
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if (Token::Match(tok, "==|!=")) {
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const Token *expr1 = tok->astOperand1();
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const Token *expr2 = tok->astOperand2();
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if (!expr1 || !expr2)
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continue;
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if (expr1->isNumber())
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std::swap(expr1,expr2);
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if (!expr2->isNumber())
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continue;
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const MathLib::bigint num2 = MathLib::toLongNumber(expr2->str());
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if (num2 < 0)
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continue;
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if (!Token::Match(expr1,"[&|]"))
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continue;
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std::list<MathLib::bigint> numbers;
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getnumchildren(expr1, numbers);
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for (std::list<MathLib::bigint>::const_iterator num = numbers.begin(); num != numbers.end(); ++num) {
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const MathLib::bigint num1 = *num;
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if (num1 < 0)
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continue;
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if ((expr1->str() == "&" && (num1 & num2) != num2) ||
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(expr1->str() == "|" && (num1 | num2) != num2)) {
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const std::string& op(tok->str());
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comparisonError(expr1, expr1->str(), num1, op, num2, op=="==" ? false : true);
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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 CheckCondition::comparisonError(const Token *tok, const std::string &bitop, MathLib::bigint value1, const std::string &op, MathLib::bigint value2, bool result)
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{
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std::ostringstream expression;
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expression << std::hex << "(X " << bitop << " 0x" << value1 << ") " << op << " 0x" << value2;
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const std::string errmsg("Expression '" + expression.str() + "' is always " + (result?"true":"false") + ".\n"
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"The expression '" + expression.str() + "' is always " + (result?"true":"false") +
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". Check carefully constants and operators used, these errors might be hard to "
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"spot sometimes. In case of complex expression it might help to split it to "
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"separate expressions.");
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reportError(tok, Severity::style, "comparisonError", errmsg);
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}
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static bool isOverlappingCond(const Token * const cond1, const Token * const cond2, const std::set<std::string> &constFunctions)
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{
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if (!cond1 || !cond2)
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return false;
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// same expressions
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if (isSameExpression(cond1,cond2,constFunctions))
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return true;
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// bitwise overlap for example 'x&7' and 'x==1'
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if (cond1->str() == "&" && cond1->astOperand1() && cond2->astOperand2()) {
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const Token *expr1 = cond1->astOperand1();
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const Token *num1 = cond1->astOperand2();
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if (!num1) // unary operator&
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return false;
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if (!num1->isNumber())
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std::swap(expr1,num1);
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if (!num1->isNumber() || MathLib::isNegative(num1->str()))
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return false;
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if (!Token::Match(cond2, "&|==") || !cond2->astOperand1() || !cond2->astOperand2())
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return false;
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const Token *expr2 = cond2->astOperand1();
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const Token *num2 = cond2->astOperand2();
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if (!num2->isNumber())
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std::swap(expr2,num2);
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if (!num2->isNumber() || MathLib::isNegative(num2->str()))
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return false;
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if (!isSameExpression(expr1,expr2,constFunctions))
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return false;
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const MathLib::bigint value1 = MathLib::toLongNumber(num1->str());
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const MathLib::bigint value2 = MathLib::toLongNumber(num2->str());
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return ((value1 & value2) == value2);
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}
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return false;
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}
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void CheckCondition::multiCondition()
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{
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if (!_settings->isEnabled("style"))
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return;
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const SymbolDatabase* const symbolDatabase = _tokenizer->getSymbolDatabase();
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for (std::list<Scope>::const_iterator i = symbolDatabase->scopeList.begin(); i != symbolDatabase->scopeList.end(); ++i) {
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if (i->type != Scope::eIf || !Token::simpleMatch(i->classDef, "if ("))
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continue;
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const Token * const cond1 = i->classDef->next()->astOperand2();
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const Token * tok2 = i->classDef->next();
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while (tok2) {
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tok2 = tok2->link();
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if (!Token::simpleMatch(tok2, ") {"))
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break;
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tok2 = tok2->linkAt(1);
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if (!Token::simpleMatch(tok2, "} else { if ("))
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break;
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tok2 = tok2->tokAt(4);
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if (isOverlappingCond(cond1, tok2->astOperand2(), _settings->library.functionpure))
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multiConditionError(tok2, cond1->linenr());
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}
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}
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}
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void CheckCondition::multiConditionError(const Token *tok, unsigned int line1)
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{
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std::ostringstream errmsg;
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errmsg << "Expression is always false because 'else if' condition matches previous condition at line "
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<< line1 << ".";
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reportError(tok, Severity::style, "multiCondition", errmsg.str());
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}
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//---------------------------------------------------------------------------
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// Detect oppositing inner and outer conditions
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//---------------------------------------------------------------------------
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static bool isOppositeCond(const Token * const cond1, const Token * const cond2, const std::set<std::string> &constFunctions)
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{
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if (!cond1 || !cond2)
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return false;
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if (cond1->str() == "!")
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return isSameExpression(cond1->astOperand1(), cond2, constFunctions);
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if (cond2->str() == "!")
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return isSameExpression(cond1, cond2->astOperand1(), constFunctions);
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if (!cond1->isComparisonOp() || !cond2->isComparisonOp())
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return false;
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const std::string &comp1 = cond1->str();
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// condition found .. get comparator
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std::string comp2;
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if (isSameExpression(cond1->astOperand1(), cond2->astOperand1(), constFunctions) &&
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isSameExpression(cond1->astOperand2(), cond2->astOperand2(), constFunctions)) {
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comp2 = cond2->str();
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} else if (isSameExpression(cond1->astOperand1(), cond2->astOperand2(), constFunctions) &&
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isSameExpression(cond1->astOperand2(), cond2->astOperand1(), constFunctions)) {
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comp2 = cond2->str();
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if (comp2[0] == '>')
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comp2[0] = '<';
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else if (comp2[0] == '<')
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comp2[0] = '>';
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}
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// is condition opposite?
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return ((comp1 == "==" && comp2 == "!=") ||
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(comp1 == "!=" && comp2 == "==") ||
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(comp1 == "<" && comp2 == ">=") ||
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(comp1 == "<" && comp2 == ">") ||
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(comp1 == "<=" && comp2 == ">") ||
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(comp1 == ">" && comp2 == "<=") ||
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(comp1 == ">" && comp2 == "<") ||
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(comp1 == ">=" && comp2 == "<"));
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}
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void CheckCondition::oppositeInnerCondition()
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{
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if (!_settings->isEnabled("warning"))
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return;
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const SymbolDatabase *symbolDatabase = _tokenizer->getSymbolDatabase();
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for (std::list<Scope>::const_iterator scope = symbolDatabase->scopeList.begin(); scope != symbolDatabase->scopeList.end(); ++scope) {
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if (scope->type != Scope::eIf)
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continue;
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if (!Token::simpleMatch(scope->classDef->linkAt(1), ") {"))
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continue;
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bool nonlocal = false; // nonlocal variable used in condition
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std::set<unsigned int> vars; // variables used in condition
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for (const Token *cond = scope->classDef; cond != scope->classDef->linkAt(1); cond = cond->next()) {
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if (cond->varId()) {
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vars.insert(cond->varId());
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const Variable *var = cond->variable();
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nonlocal |= (var && (!var->isLocal() || var->isStatic()) && !var->isArgument());
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// TODO: if var is pointer check what it points at
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nonlocal |= (var && (var->isPointer() || var->isReference()));
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} else if (cond->isName()) {
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// varid is 0. this is possibly a nonlocal variable..
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nonlocal |= (cond->astParent() && cond->astParent()->isConstOp());
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}
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}
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// parse until inner condition is reached..
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const Token *ifToken = nullptr;
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for (const Token *tok = scope->classStart; tok && tok != scope->classEnd; tok = tok->next()) {
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if (Token::simpleMatch(tok, "if (")) {
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ifToken = tok;
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break;
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}
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if (Token::Match(tok, "%type% (") && nonlocal) // function call -> bailout if there are nonlocal variables
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break;
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else if ((tok->varId() && vars.find(tok->varId()) != vars.end()) ||
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(!tok->varId() && nonlocal)) {
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if (Token::Match(tok, "%var% ++|--|="))
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break;
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if (Token::Match(tok, "%var% [")) {
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const Token *tok2 = tok->linkAt(1);
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while (Token::simpleMatch(tok2, "] ["))
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tok2 = tok2->linkAt(1);
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if (Token::simpleMatch(tok2, "] ="))
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break;
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}
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if (Token::Match(tok->previous(), "++|--|& %var%"))
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break;
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if (tok->variable() &&
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Token::Match(tok, "%var% . %var% (") &&
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!tok->variable()->isConst() &&
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!(tok->tokAt(2)->function() && tok->tokAt(2)->function()->isConst()))
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break;
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if (Token::Match(tok->previous(), "[(,] %var% [,)]")) {
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// is variable unchanged? default is false..
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bool unchanged = false;
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// locate start parentheses in function call..
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unsigned int argumentNumber = 0;
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const Token *start = tok->previous();
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while (start && start->str() == ",") {
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start = start->astParent();
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++argumentNumber;
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}
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start = start ? start->previous() : nullptr;
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if (start && start->function()) {
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const Variable *arg = start->function()->getArgumentVar(argumentNumber);
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if (arg && !arg->isPointer() && !arg->isReference())
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unchanged = true;
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}
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if (!unchanged)
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break;
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}
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}
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}
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if (!ifToken)
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continue;
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// Condition..
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const Token *cond1 = scope->classDef->next()->astOperand2();
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const Token *cond2 = ifToken->next()->astOperand2();
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if (isOppositeCond(cond1, cond2, _settings->library.functionpure))
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oppositeInnerConditionError(scope->classDef, cond2);
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}
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}
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|
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void CheckCondition::oppositeInnerConditionError(const Token *tok1, const Token* tok2)
|
|
{
|
|
std::list<const Token*> callstack;
|
|
callstack.push_back(tok1);
|
|
callstack.push_back(tok2);
|
|
reportError(callstack, Severity::warning, "oppositeInnerCondition", "Opposite conditions in nested 'if' blocks lead to a dead code block.");
|
|
}
|
|
|
|
//---------------------------------------------------------------------------
|
|
// if ((x != 1) || (x != 3)) // expression always true
|
|
// if ((x == 1) && (x == 3)) // expression always false
|
|
// if ((x < 1) && (x > 3)) // expression always false
|
|
// if ((x > 3) || (x < 10)) // expression always true
|
|
// if ((x > 5) && (x != 1)) // second comparison always true
|
|
//
|
|
// Check for suspect logic for an expression consisting of 2 comparison
|
|
// expressions with a shared variable and constants and a logical operator
|
|
// between them.
|
|
//
|
|
// Suggest a different logical operator when the logical operator between
|
|
// the comparisons is probably wrong.
|
|
//
|
|
// Inform that second comparison is always true when first comparison is true.
|
|
//---------------------------------------------------------------------------
|
|
|
|
static std::string invertOperatorForOperandSwap(std::string s)
|
|
{
|
|
if (s[0] == '<')
|
|
s[0] = '>';
|
|
else if (s[0] == '>')
|
|
s[0] = '<';
|
|
return s;
|
|
}
|
|
|
|
static bool checkIntRelation(const std::string &op, const MathLib::bigint value1, const MathLib::bigint value2)
|
|
{
|
|
return (op == "==" && value1 == value2) ||
|
|
(op == "!=" && value1 != value2) ||
|
|
(op == ">" && value1 > value2) ||
|
|
(op == ">=" && value1 >= value2) ||
|
|
(op == "<" && value1 < value2) ||
|
|
(op == "<=" && value1 <= value2);
|
|
}
|
|
|
|
static bool checkFloatRelation(const std::string &op, const double value1, const double value2)
|
|
{
|
|
return (op == ">" && value1 > value2) ||
|
|
(op == ">=" && value1 >= value2) ||
|
|
(op == "<" && value1 < value2) ||
|
|
(op == "<=" && value1 <= value2);
|
|
}
|
|
|
|
template<class T> static T getvalue(const int test, const T value1, const T value2)
|
|
{
|
|
// test:
|
|
// 1 => return value that is less than both value1 and value2
|
|
// 2 => return value1
|
|
// 3 => return value that is between value1 and value2
|
|
// 4 => return value2
|
|
// 5 => return value that is larger than both value1 and value2
|
|
switch (test) {
|
|
case 1: {
|
|
T ret = std::min(value1, value2);
|
|
if ((ret - (T)1) < ret)
|
|
return ret - (T)1;
|
|
else if ((ret / (T)2) < ret)
|
|
return ret / (T)2;
|
|
else if ((ret * (T)2) < ret)
|
|
return ret * (T)2;
|
|
return ret;
|
|
}
|
|
case 2:
|
|
return value1;
|
|
case 3:
|
|
return (value1 + value2) / (T)2;
|
|
case 4:
|
|
return value2;
|
|
case 5: {
|
|
T ret = std::max(value1, value2);
|
|
if ((ret + (T)1) > ret)
|
|
return ret + (T)1;
|
|
else if ((ret / (T)2) > ret)
|
|
return ret / (T)2;
|
|
else if ((ret * (T)2) > ret)
|
|
return ret * (T)2;
|
|
return ret;
|
|
}
|
|
};
|
|
return 0;
|
|
}
|
|
|
|
void CheckCondition::checkIncorrectLogicOperator()
|
|
{
|
|
bool style = _settings->isEnabled("style");
|
|
bool warning = _settings->isEnabled("warning");
|
|
if (!style && !warning)
|
|
return;
|
|
|
|
const SymbolDatabase *symbolDatabase = _tokenizer->getSymbolDatabase();
|
|
const std::size_t functions = symbolDatabase->functionScopes.size();
|
|
for (std::size_t ii = 0; ii < functions; ++ii) {
|
|
const Scope * scope = symbolDatabase->functionScopes[ii];
|
|
|
|
for (const Token* tok = scope->classStart->next(); tok != scope->classEnd; tok = tok->next()) {
|
|
// Opposite comparisons
|
|
if (Token::Match(tok, "%oror%|&&") &&
|
|
tok->astOperand1() &&
|
|
tok->astOperand2() &&
|
|
(tok->astOperand1()->isName() || tok->astOperand2()->isName()) &&
|
|
isOppositeCond(tok->astOperand1(), tok->astOperand2(), _settings->library.functionpure)) {
|
|
|
|
const bool alwaysTrue(tok->str() == "||");
|
|
incorrectLogicOperatorError(tok, tok->expressionString(), alwaysTrue);
|
|
}
|
|
|
|
else if (Token::Match(tok, "&&|%oror%")) {
|
|
// Comparison #1 (LHS)
|
|
const Token *comp1 = tok->astOperand1();
|
|
if (comp1 && comp1->str() == tok->str())
|
|
comp1 = comp1->astOperand2();
|
|
|
|
// Comparison #2 (RHS)
|
|
const Token *comp2 = tok->astOperand2();
|
|
|
|
if (!comp1 || !comp1->isComparisonOp() || !comp1->astOperand1() || !comp1->astOperand2())
|
|
continue;
|
|
if (!comp2 || !comp2->isComparisonOp() || !comp2->astOperand1() || !comp2->astOperand2())
|
|
continue;
|
|
|
|
std::string op1, value1;
|
|
const Token *expr1;
|
|
if (comp1->astOperand1()->isLiteral()) {
|
|
op1 = invertOperatorForOperandSwap(comp1->str());
|
|
value1 = comp1->astOperand1()->str();
|
|
expr1 = comp1->astOperand2();
|
|
} else if (comp1->astOperand2()->isLiteral()) {
|
|
op1 = comp1->str();
|
|
value1 = comp1->astOperand2()->str();
|
|
expr1 = comp1->astOperand1();
|
|
} else {
|
|
continue;
|
|
}
|
|
|
|
std::string op2, value2;
|
|
const Token *expr2;
|
|
if (comp2->astOperand1()->isLiteral()) {
|
|
op2 = invertOperatorForOperandSwap(comp2->str());
|
|
value2 = comp2->astOperand1()->str();
|
|
expr2 = comp2->astOperand2();
|
|
} else if (comp2->astOperand2()->isLiteral()) {
|
|
op2 = comp2->str();
|
|
value2 = comp2->astOperand2()->str();
|
|
expr2 = comp2->astOperand1();
|
|
} else {
|
|
continue;
|
|
}
|
|
|
|
// Only float and int values are currently handled
|
|
if (!MathLib::isInt(value1) && !MathLib::isFloat(value1))
|
|
continue;
|
|
if (!MathLib::isInt(value2) && !MathLib::isFloat(value2))
|
|
continue;
|
|
|
|
if (isSameExpression(comp1, comp2, _settings->library.functionpure))
|
|
continue; // same expressions => only report that there are same expressions
|
|
if (!isSameExpression(expr1, expr2, _settings->library.functionpure))
|
|
continue;
|
|
|
|
const bool isfloat = astIsFloat(expr1, true) || MathLib::isFloat(value1) || astIsFloat(expr2, true) || MathLib::isFloat(value2);
|
|
|
|
// don't check floating point equality comparisons. that is bad
|
|
// and deserves different warnings.
|
|
if (isfloat && (op1 == "==" || op1 == "!=" || op2 == "==" || op2 == "!="))
|
|
continue;
|
|
|
|
// evaluate if expression is always true/false
|
|
bool alwaysTrue = true, alwaysFalse = true;
|
|
bool firstTrue = true, secondTrue = true;
|
|
for (int test = 1; test <= 5; ++test) {
|
|
// test:
|
|
// 1 => testvalue is less than both value1 and value2
|
|
// 2 => testvalue is value1
|
|
// 3 => testvalue is between value1 and value2
|
|
// 4 => testvalue value2
|
|
// 5 => testvalue is larger than both value1 and value2
|
|
bool result1, result2;
|
|
if (isfloat) {
|
|
const double d1 = MathLib::toDoubleNumber(value1);
|
|
const double d2 = MathLib::toDoubleNumber(value2);
|
|
const double testvalue = getvalue<double>(test, d1, d2);
|
|
result1 = checkFloatRelation(op1, testvalue, d1);
|
|
result2 = checkFloatRelation(op2, testvalue, d2);
|
|
} else {
|
|
const MathLib::bigint i1 = MathLib::toLongNumber(value1);
|
|
const MathLib::bigint i2 = MathLib::toLongNumber(value2);
|
|
const MathLib::bigint testvalue = getvalue<MathLib::bigint>(test, i1, i2);
|
|
result1 = checkIntRelation(op1, testvalue, i1);
|
|
result2 = checkIntRelation(op2, testvalue, i2);
|
|
}
|
|
if (tok->str() == "&&") {
|
|
alwaysTrue &= (result1 && result2);
|
|
alwaysFalse &= !(result1 && result2);
|
|
} else {
|
|
alwaysTrue &= (result1 || result2);
|
|
alwaysFalse &= !(result1 || result2);
|
|
}
|
|
firstTrue &= !(!result1 && result2);
|
|
secondTrue &= !(result1 && !result2);
|
|
}
|
|
|
|
const std::string cond1str = (expr1->isName() ? expr1->str() : "EXPR") + " " + op1 + " " + value1;
|
|
const std::string cond2str = (expr2->isName() ? expr2->str() : "EXPR") + " " + op2 + " " + value2;
|
|
if (warning && (alwaysTrue || alwaysFalse)) {
|
|
const std::string text = cond1str + " " + tok->str() + " " + cond2str;
|
|
incorrectLogicOperatorError(tok, text, alwaysTrue);
|
|
} else if (style && secondTrue) {
|
|
const std::string text = "If " + cond1str + ", the comparison " + cond2str +
|
|
" is always " + (secondTrue ? "true" : "false") + ".";
|
|
redundantConditionError(tok, text);
|
|
} else if (style && firstTrue) {
|
|
//const std::string text = "The comparison " + cond1str + " is always " +
|
|
// (firstTrue ? "true" : "false") + " when " +
|
|
// cond2str + ".";
|
|
const std::string text = "If " + cond2str + ", the comparison " + cond1str +
|
|
" is always " + (firstTrue ? "true" : "false") + ".";
|
|
redundantConditionError(tok, text);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void CheckCondition::incorrectLogicOperatorError(const Token *tok, const std::string &condition, bool always)
|
|
{
|
|
if (always)
|
|
reportError(tok, Severity::warning, "incorrectLogicOperator",
|
|
"Logical disjunction always evaluates to true: " + condition + ".\n"
|
|
"Logical disjunction always evaluates to true: " + condition + ". "
|
|
"Are these conditions necessary? Did you intend to use && instead? Are the numbers correct? Are you comparing the correct variables?");
|
|
else
|
|
reportError(tok, Severity::warning, "incorrectLogicOperator",
|
|
"Logical conjunction always evaluates to false: " + condition + ".\n"
|
|
"Logical conjunction always evaluates to false: " + condition + ". "
|
|
"Are these conditions necessary? Did you intend to use || instead? Are the numbers correct? Are you comparing the correct variables?");
|
|
}
|
|
|
|
void CheckCondition::redundantConditionError(const Token *tok, const std::string &text)
|
|
{
|
|
reportError(tok, Severity::style, "redundantCondition", "Redundant condition: " + text);
|
|
}
|
|
|
|
//-----------------------------------------------------------------------------
|
|
// Detect "(var % val1) > val2" where val2 is >= val1.
|
|
//-----------------------------------------------------------------------------
|
|
void CheckCondition::checkModuloAlwaysTrueFalse()
|
|
{
|
|
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];
|
|
for (const Token* tok = scope->classStart->next(); tok != scope->classEnd; tok = tok->next()) {
|
|
if (!tok->isComparisonOp())
|
|
continue;
|
|
const Token *num, *modulo;
|
|
if (Token::simpleMatch(tok->astOperand1(), "%") && Token::Match(tok->astOperand2(), "%num%")) {
|
|
modulo = tok->astOperand1();
|
|
num = tok->astOperand2();
|
|
} else if (Token::Match(tok->astOperand1(), "%num%") && Token::simpleMatch(tok->astOperand2(), "%")) {
|
|
num = tok->astOperand1();
|
|
modulo = tok->astOperand2();
|
|
} else {
|
|
continue;
|
|
}
|
|
|
|
if (Token::Match(modulo->astOperand2(), "%num%") &&
|
|
MathLib::isLessEqual(modulo->astOperand2()->str(), num->str()))
|
|
moduloAlwaysTrueFalseError(tok, modulo->astOperand2()->str());
|
|
}
|
|
}
|
|
}
|
|
|
|
void CheckCondition::moduloAlwaysTrueFalseError(const Token* tok, const std::string& maxVal)
|
|
{
|
|
reportError(tok, Severity::warning, "moduloAlwaysTrueFalse",
|
|
"Comparison of modulo result is predetermined, because it is always less than " + maxVal + ".");
|
|
}
|
|
|
|
//---------------------------------------------------------------------------
|
|
// Clarify condition '(x = a < 0)' into '((x = a) < 0)' or '(x = (a < 0))'
|
|
// Clarify condition '(a & b == c)' into '((a & b) == c)' or '(a & (b == c))'
|
|
//---------------------------------------------------------------------------
|
|
void CheckCondition::clarifyCondition()
|
|
{
|
|
if (!_settings->isEnabled("style"))
|
|
return;
|
|
|
|
const bool isC = _tokenizer->isC();
|
|
|
|
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];
|
|
for (const Token* tok = scope->classStart->next(); tok != scope->classEnd; tok = tok->next()) {
|
|
if (Token::Match(tok, "( %var% [=&|^]")) {
|
|
for (const Token *tok2 = tok->tokAt(3); tok2; tok2 = tok2->next()) {
|
|
if (tok2->str() == "(" || tok2->str() == "[")
|
|
tok2 = tok2->link();
|
|
else if (tok2->type() == Token::eComparisonOp) {
|
|
// This might be a template
|
|
if (!isC && tok2->link())
|
|
break;
|
|
|
|
clarifyConditionError(tok, tok->strAt(2) == "=", false);
|
|
break;
|
|
} else if (!tok2->isName() && !tok2->isNumber() && tok2->str() != ".")
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// using boolean result in bitwise operation ! x [&|^]
|
|
for (std::size_t i = 0; i < functions; ++i) {
|
|
const Scope * scope = symbolDatabase->functionScopes[i];
|
|
for (const Token* tok = scope->classStart->next(); tok != scope->classEnd; tok = tok->next()) {
|
|
if (Token::Match(tok, "%comp%|!")) {
|
|
if (tok->link()) // don't write false positives when templates are used
|
|
continue;
|
|
|
|
const Token *tok2 = tok->next();
|
|
|
|
// Todo: There are false positives if '(' if encountered. It
|
|
// is assumed there is something like '(char *)&..' and therefore
|
|
// it bails out.
|
|
if (Token::Match(tok2, "(|&"))
|
|
continue;
|
|
|
|
while (tok2 && (tok2->isName() || tok2->isNumber() || Token::Match(tok2, ".|(|["))) {
|
|
if (Token::Match(tok2, "(|["))
|
|
tok2 = tok2->link();
|
|
tok2 = tok2->next();
|
|
}
|
|
|
|
if (Token::Match(tok2, "[&|^]")) {
|
|
// don't write false positives when templates are used
|
|
if (Token::Match(tok2, "&|* ,|>") || Token::simpleMatch(tok2->previous(), "const &"))
|
|
continue;
|
|
|
|
// #3609 - CWinTraits<WS_CHILD|WS_VISIBLE>::..
|
|
if (!isC && Token::Match(tok->previous(), "%var% <")) {
|
|
const Token *tok3 = tok2;
|
|
while (Token::Match(tok3, "[&|^] %var%"))
|
|
tok3 = tok3->tokAt(2);
|
|
if (Token::Match(tok3, ",|>"))
|
|
continue;
|
|
}
|
|
|
|
clarifyConditionError(tok, false, true);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void CheckCondition::clarifyConditionError(const Token *tok, bool assign, bool boolop)
|
|
{
|
|
std::string errmsg;
|
|
|
|
if (assign)
|
|
errmsg = "Suspicious condition (assignment + comparison); Clarify expression with parentheses.";
|
|
|
|
else if (boolop)
|
|
errmsg = "Boolean result is used in bitwise operation. Clarify expression with parentheses.\n"
|
|
"Suspicious expression. Boolean result is used in bitwise operation. The operator '!' "
|
|
"and the comparison operators have higher precedence than bitwise operators. "
|
|
"It is recommended that the expression is clarified with parentheses.";
|
|
else
|
|
errmsg = "Suspicious condition (bitwise operator + comparison); Clarify expression with parentheses.\n"
|
|
"Suspicious condition. Comparison operators have higher precedence than bitwise operators. "
|
|
"Please clarify the condition with parentheses.";
|
|
|
|
reportError(tok,
|
|
Severity::style,
|
|
"clarifyCondition",
|
|
errmsg);
|
|
}
|