Refactored the AST checking of CheckOther::checkIncorrectLogicOperator()
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@ -1261,6 +1261,24 @@ static bool checkRelation(Relation relation, const std::string &value1, const st
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(relation == MoreEqual && MathLib::isGreaterEqual(value1, value2));
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}
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static bool checkIntRelation(const std::string &op, const MathLib::bigint value1, const MathLib::bigint value2)
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{
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return (op == "==" && value1 == value2) ||
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(op == "!=" && value1 != value2) ||
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(op == ">" && value1 > value2) ||
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(op == ">=" && value1 >= value2) ||
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(op == "<" && value1 < value2) ||
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(op == "<=" && value1 <= value2);
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}
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static bool checkFloatRelation(const std::string &op, const double value1, const double value2)
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{
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return (op == ">" && value1 > value2) ||
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(op == ">=" && value1 >= value2) ||
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(op == "<" && value1 < value2) ||
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(op == "<=" && value1 <= value2);
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}
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static bool analyzeLogicOperatorCondition(const Condition& c1, const Condition& c2,
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bool inv1, bool inv2,
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bool varFirst1, bool varFirst2,
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@ -1296,50 +1314,6 @@ void CheckOther::checkIncorrectLogicOperator()
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const Scope * scope = symbolDatabase->functionScopes[ii];
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if (_settings->ast) {
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enum LogicError { AlwaysFalse, AlwaysTrue, FirstTrue, FirstFalse, SecondTrue, SecondFalse };
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static const struct {
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const char *c1;
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const char *logicOp;
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const char *c2;
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Relation relation;
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LogicError error;
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} conditions[] = {
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{ "!=", "||", "!=", NotEqual , AlwaysTrue }, // (x != 1) || (x != 3) <- always true
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{ "==", "&&", "==", NotEqual , AlwaysFalse }, // (x == 1) && (x == 3) <- always false
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{ ">" , "||", "<" , Less , AlwaysTrue }, // (x > 3) || (x < 10) <- always true
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{ ">=", "||", "<" , LessEqual, AlwaysTrue }, // (x >= 3) || (x < 10) <- always true
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{ ">=", "||", "<=", LessEqual, AlwaysTrue }, // (x >= 3) || (x < 10) <- always true
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{ ">" , "||", "<=", LessEqual, AlwaysTrue }, // (x > 3) || (x <= 10) <- always true
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{ "<" , "&&", ">" , LessEqual, AlwaysFalse }, // (x < 1) && (x > 3) <- always false
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{ "<=", "&&", ">" , Less, AlwaysFalse }, // (x <= 1) && (x > 3) <- always false
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{ "<" , "&&", ">=", Less, AlwaysFalse }, // (x < 1) && (x >= 3) <- always false
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{ ">" , "&&", "==", MoreEqual, AlwaysFalse }, // (x > 5) && (x == 1) <- always false
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{ "<" , "&&", "==", LessEqual, AlwaysFalse }, // (x < 1) && (x == 3) <- always false
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{ ">=", "&&", "==", More, AlwaysFalse }, // (x >= 5) && (x == 1) <- always false
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{ "<=", "&&", "==", Less, AlwaysFalse }, // (x <= 1) && (x == 3) <- always false
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{ "==", "||", ">" , More, SecondTrue }, // (x == 4) || (x > 3) <- second expression always true
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{ "==", "||", "<" , Less, SecondTrue }, // (x == 4) || (x < 5) <- second expression always true
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{ "==", "||", ">=", MoreEqual, SecondTrue }, // (x == 4) || (x >= 3) <- second expression always true
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{ "==", "||", "<=", LessEqual, SecondTrue }, // (x == 4) || (x <= 5) <- second expression always true
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{ ">" , "||", "!=", MoreEqual, SecondTrue }, // (x > 5) || (x != 1) <- second expression always true
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{ "<" , "||", "!=", LessEqual, SecondTrue }, // (x < 1) || (x != 3) <- second expression always true
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{ ">=", "||", "!=", More, SecondTrue }, // (x >= 5) || (x != 1) <- second expression always true
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{ "<=", "||", "!=", Less, SecondTrue }, // (x <= 1) || (x != 3) <- second expression always true
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{ ">" , "&&", "!=", MoreEqual, SecondTrue }, // (x > 5) && (x != 1) <- second expression always true
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{ "<" , "&&", "!=", LessEqual, SecondTrue }, // (x < 1) && (x != 3) <- second expression always true
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{ ">=", "&&", "!=", More, SecondTrue }, // (x >= 5) && (x != 1) <- second expression always true
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{ "<=", "&&", "!=", Less, SecondTrue }, // (x <= 1) && (x != 3) <- second expression always true
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{ ">" , "||", ">" , LessEqual, SecondTrue }, // (x > 4) || (x > 5) <- second expression always true
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{ "<" , "||", "<" , MoreEqual, SecondTrue }, // (x < 5) || (x < 4) <- second expression always true
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{ ">" , "&&", ">" , MoreEqual, SecondTrue }, // (x > 4) && (x > 5) <- second expression always true
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{ "<" , "&&", "<" , MoreEqual, SecondTrue }, // (x < 5) && (x < 4) <- second expression always true
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{ "==", "&&", "!=", NotEqual, SecondTrue }, // (x == 3) && (x != 4) <- second expression always true
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{ "==", "||", "!=", NotEqual, SecondTrue }, // (x == 3) || (x != 4) <- second expression always true
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{ "!=", "&&", "==", Equal, AlwaysFalse }, // (x != 3) && (x == 3) <- expression always false
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{ "!=", "||", "==", Equal, AlwaysTrue }, // (x != 3) || (x == 3) <- expression always true
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};
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for (const Token* tok = scope->classStart->next(); tok != scope->classEnd; tok = tok->next()) {
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if (Token::Match(tok, "&&|%oror%")) {
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if (!tok->astOperand1() || !tok->astOperand1()->astOperand1() || !tok->astOperand1()->astOperand2())
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@ -1377,46 +1351,62 @@ void CheckOther::checkIncorrectLogicOperator()
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continue;
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}
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if (MathLib::isInt(value1) != MathLib::isInt(value2))
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continue;
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const std::set<std::string> constStandardFunctions;
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if (isSameExpression(tok->astOperand1(), tok->astOperand2(), constStandardFunctions))
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continue; // same expressions => only report that
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if (!isSameExpression(expr1, expr2, constStandardFunctions))
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continue;
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for (unsigned int i = 0; i < sizeof(conditions) / sizeof(conditions[0]); i++) {
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std::string cond1str;
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std::string cond2str;
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const bool isfloat = MathLib::isFloat(value1) || MathLib::isFloat(value2);
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if (conditions[i].c1 == op1 &&
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conditions[i].logicOp == tok->str() &&
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conditions[i].c2 == op2 &&
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checkRelation(conditions[i].relation, value1, value2)) {
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cond1str = (expr1->isName() ? expr1->str() : "EXPR") + " " + op1 + " " + value1;
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cond2str = (expr2->isName() ? expr2->str() : "EXPR") + " " + op2 + " " + value2;
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}
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else if (conditions[i].c1 == op2 &&
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conditions[i].logicOp == tok->str() &&
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conditions[i].c2 == op1 &&
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checkRelation(conditions[i].relation, value2, value1)) {
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cond1str = (expr2->isName() ? expr2->str() : "EXPR") + " " + op2 + " " + value2;
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cond2str = (expr1->isName() ? expr1->str() : "EXPR") + " " + op1 + " " + value1;
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}
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else
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continue;
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if (conditions[i].error == AlwaysFalse || conditions[i].error == AlwaysTrue) {
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if (warning) {
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const std::string text = cond1str + " " + tok->str() + " " + cond2str;
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incorrectLogicOperatorError(tok, text, conditions[i].error == AlwaysTrue);
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}
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// evaluate if expression is always true/false
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bool alwaysTrue = true, alwaysFalse = true;
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bool firstTrue = true, firstFalse = true;
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bool secondTrue = true, secondFalse = true;
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for (int offset = -3; offset <=3; ++offset) {
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for (int selvalue = 1; selvalue <= 2; selvalue++) {
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bool res1,res2;
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if (isfloat) {
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const double varvalue = MathLib::toDoubleNumber(selvalue==1 ? value1 : value2) + (double)offset;
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res1 = checkFloatRelation(op1, varvalue, MathLib::toDoubleNumber(value1));
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res2 = checkFloatRelation(op2, varvalue, MathLib::toDoubleNumber(value2));
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} else {
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if (style) {
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const MathLib::bigint varvalue = MathLib::toLongNumber(selvalue==1 ? value1 : value2) + offset;
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res1 = checkIntRelation(op1, varvalue, MathLib::toLongNumber(value1));
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res2 = checkIntRelation(op2, varvalue, MathLib::toLongNumber(value2));
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}
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if (tok->str() == "&&") {
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alwaysTrue &= (res1 && res2);
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alwaysFalse &= !(res1 && res2);
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secondTrue &= !(res1 && !res2);
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firstTrue &= !(!res1 && res2);
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} else {
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alwaysTrue &= (res1 || res2);
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alwaysFalse &= !(res1 || res2);
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secondTrue &= !(res1 && !res2);
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firstTrue &= !(!res1 && res2);
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}
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firstFalse = false;
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secondFalse = false;
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}
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}
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const std::string cond1str = (expr1->isName() ? expr1->str() : "EXPR") + " " + op1 + " " + value1;
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const std::string cond2str = (expr2->isName() ? expr2->str() : "EXPR") + " " + op2 + " " + value2;
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if (warning && (alwaysTrue || alwaysFalse)) {
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const std::string text = cond1str + " " + tok->str() + " " + cond2str;
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incorrectLogicOperatorError(tok, text, alwaysTrue);
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} else if (style && (secondTrue || secondFalse)) {
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const std::string text = "If " + cond1str + ", the comparison " + cond2str +
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" is always " + ((conditions[i].error == SecondTrue || conditions[i].error == AlwaysTrue) ? "true" : "false") + ".";
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" is always " + (secondTrue ? "true" : "false") + ".";
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redundantConditionError(tok, text);
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} else if (style && (firstTrue || firstFalse)) {
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const std::string text = "If " + cond2str + ", the comparison " + cond1str +
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" is always " + (firstTrue ? "true" : "false") + ".";
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redundantConditionError(tok, text);
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}
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}
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break;
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}
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}
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}
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@ -3849,7 +3849,7 @@ private:
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" a++;\n"
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"}\n"
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);
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x < 1 && x > 1.0.\n", errout.str());
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ASSERT_EQUALS("", errout.str());
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check("void f(int x) {\n"
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" if (x < 1 && x > 3)\n"
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@ -3969,14 +3969,14 @@ private:
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" a++;\n"
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"}\n"
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);
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x != 3 && x == 3.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x == 3 && x != 3.\n", errout.str());
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check("void f(int x) {\n"
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" if ((x==6) || (x!=6))\n"
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" a++;\n"
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"}\n"
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);
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical disjunction always evaluates to true: x != 6 || x == 6.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical disjunction always evaluates to true: x == 6 || x != 6.\n", errout.str());
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check("void f(int x) {\n"
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" if (x > 10 || x < 3)\n"
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@ -3997,7 +3997,7 @@ private:
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" a++;\n"
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"}\n"
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);
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ASSERT_EQUALS("", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (style) Redundant condition: If x == 6, the comparison x > 5 is always true.\n", errout.str());
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// #3419
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check("void f() {\n"
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@ -4098,9 +4098,9 @@ private:
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" e = x < 5 || x < 6;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:2]: (style) Redundant condition: If x > 6, the comparison x > 5 is always true.\n"
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"[test.cpp:3]: (style) Redundant condition: If x > 5, the comparison x > 6 is always true.\n"
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"[test.cpp:4]: (style) Redundant condition: If x < 6, the comparison x < 5 is always true.\n"
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"[test.cpp:5]: (style) Redundant condition: If x < 6, the comparison x < 5 is always true.\n", errout.str());
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"[test.cpp:3]: (style) Redundant condition: If x > 6, the comparison x > 5 is always true.\n"
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"[test.cpp:4]: (style) Redundant condition: If x < 5, the comparison x < 6 is always true.\n"
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"[test.cpp:5]: (style) Redundant condition: If x < 5, the comparison x < 6 is always true.\n", errout.str());
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}
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void incorrectLogicOp_condSwapping() {
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@ -4132,25 +4132,25 @@ private:
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" if (x > 3 && x < 1)\n"
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" a++;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x < 1 && x > 3.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x > 3 && x < 1.\n", errout.str());
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check("void f(int x) {\n"
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" if (3 < x && x < 1)\n"
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" a++;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x < 1 && x > 3.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x > 3 && x < 1.\n", errout.str());
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check("void f(int x) {\n"
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" if (x > 3 && 1 > x)\n"
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" a++;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x < 1 && x > 3.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x > 3 && x < 1.\n", errout.str());
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check("void f(int x) {\n"
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" if (3 < x && 1 > x)\n"
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" a++;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x < 1 && x > 3.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:2]: (warning) Logical conjunction always evaluates to false: x > 3 && x < 1.\n", errout.str());
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}
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void sameExpression() {
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