Fix CheckClass::operatorEqToSelf (#3088)
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@ -1518,27 +1518,41 @@ void CheckClass::operatorEqToSelf()
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if (Token::Match(func.retDef, "%type% &") && func.retDef->str() == scope->className) {
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// find the parameter name
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const Token *rhs = func.argumentList.begin()->nameToken();
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if (!hasAssignSelf(&func, rhs)) {
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const Token* out_ifStatementScopeStart = nullptr;
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if (!hasAssignSelf(&func, rhs, &out_ifStatementScopeStart)) {
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if (hasAllocation(&func, scope))
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operatorEqToSelfError(func.token);
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}
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else if (out_ifStatementScopeStart != nullptr) {
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if(hasAllocationInIfScope(&func, scope, out_ifStatementScopeStart))
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operatorEqToSelfError(func.token);
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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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bool CheckClass::hasAllocationInIfScope(const Function *func, const Scope* scope, const Token *ifStatementScopeStart) const
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{
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const Token *end;
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if (ifStatementScopeStart->str() == "{")
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end = ifStatementScopeStart->link();
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else
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end = func->functionScope->bodyEnd;
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return hasAllocation(func, scope, ifStatementScopeStart, end);
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}
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bool CheckClass::hasAllocation(const Function *func, const Scope* scope) const
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{
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// This function is called when no simple check was found for assignment
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// to self. We are currently looking for:
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// - deallocate member ; ... member =
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// - alloc member
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// That is not ideal because it can cause false negatives but its currently
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// necessary to prevent false positives.
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const Token *last = func->functionScope->bodyEnd;
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for (const Token *tok = func->functionScope->bodyStart; tok && (tok != last); tok = tok->next()) {
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return hasAllocation(func, scope, func->functionScope->bodyStart, func->functionScope->bodyEnd);
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}
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bool CheckClass::hasAllocation(const Function *func, const Scope* scope, const Token *start, const Token *end) const
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{
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if (!end)
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end = func->functionScope->bodyEnd;
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for (const Token *tok = start; tok && (tok != end); tok = tok->next()) {
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if (Token::Match(tok, "%var% = malloc|realloc|calloc|new") && isMemberVar(scope, tok))
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return true;
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@ -1554,7 +1568,7 @@ bool CheckClass::hasAllocation(const Function *func, const Scope* scope) const
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continue;
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// Check for assignment to the deleted pointer (only if its a member of the class)
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if (isMemberVar(scope, var)) {
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for (const Token *tok1 = var->next(); tok1 && (tok1 != last); tok1 = tok1->next()) {
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for (const Token *tok1 = var->next(); tok1 && (tok1 != end); tok1 = tok1->next()) {
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if (Token::Match(tok1, "%varid% =", var->varId()))
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return true;
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}
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@ -1564,7 +1578,70 @@ bool CheckClass::hasAllocation(const Function *func, const Scope* scope) const
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return false;
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}
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bool CheckClass::hasAssignSelf(const Function *func, const Token *rhs)
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static bool isTrueKeyword(const Token* tok)
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{
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return tok->hasKnownIntValue() && tok->getKnownIntValue() == 1;
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}
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static bool isFalseKeyword(const Token* tok)
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{
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return tok->hasKnownIntValue() && tok->getKnownIntValue() == 0;
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}
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/*
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* Checks if self-assignment test is inverse
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* For example 'if (this == &rhs)'
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*/
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CheckClass::Bool CheckClass::isInverted(const Token *tok, const Token *rhs)
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{
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bool res = true;
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for (const Token *itr = tok; itr && itr->str()!="("; itr=itr->astParent()) {
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if (Token::simpleMatch(itr, "!=") && (isTrueKeyword(itr->astOperand1()) || isTrueKeyword(itr->astOperand2()))) {
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res = !res;
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}
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else if (Token::simpleMatch(itr, "!=") && ( (Token::simpleMatch(itr->astOperand1(), "this") && Token::simpleMatch(itr->astOperand2(), "&") && Token::simpleMatch(itr->astOperand2()->next(), rhs->str().c_str(), rhs->str().size()))
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|| (Token::simpleMatch(itr->astOperand2(), "this") && Token::simpleMatch(itr->astOperand1(), "&") && Token::simpleMatch(itr->astOperand1()->next(), rhs->str().c_str(), rhs->str().size())))) {
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res = !res;
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}
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else if (Token::simpleMatch(itr, "!=") && (isFalseKeyword(itr->astOperand1()) || isFalseKeyword(itr->astOperand2()))) {
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//Do nothing
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}
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else if (Token::simpleMatch(itr, "!")) {
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res = !res;
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}
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else if (Token::simpleMatch(itr, "==") && (isFalseKeyword(itr->astOperand1()) || isFalseKeyword(itr->astOperand2()))) {
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res = !res;
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}
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else if (Token::simpleMatch(itr, "==") && (isTrueKeyword(itr->astOperand1()) || isTrueKeyword(itr->astOperand2()))) {
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//Do nothing
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}
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else if (Token::simpleMatch(itr, "==") && ( (Token::simpleMatch(itr->astOperand1(), "this") && Token::simpleMatch(itr->astOperand2(), "&") && Token::simpleMatch(itr->astOperand2()->next(), rhs->str().c_str(), rhs->str().size()))
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|| (Token::simpleMatch(itr->astOperand2(), "this") && Token::simpleMatch(itr->astOperand1(), "&") && Token::simpleMatch(itr->astOperand1()->next(), rhs->str().c_str(), rhs->str().size())))) {
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//Do nothing
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}
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else {
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return Bool::BAILOUT;
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}
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}
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if (res)
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return Bool::TRUE;
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return Bool::FALSE;
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}
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const Token * CheckClass::getIfStmtBodyStart(const Token *tok, const Token *rhs)
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{
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const Token *top = tok->astTop();
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if (Token::simpleMatch(top->link(), ") {")) {
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switch (isInverted(tok->astParent(), rhs)) {
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case Bool::BAILOUT: return nullptr;
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case Bool::TRUE: return top->link()->next();
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case Bool::FALSE: return top->link()->next()->link();
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}
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}
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return nullptr;
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}
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bool CheckClass::hasAssignSelf(const Function *func, const Token *rhs, const Token **out_ifStatementScopeStart)
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{
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if (!rhs)
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return false;
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@ -1586,6 +1663,9 @@ bool CheckClass::hasAssignSelf(const Function *func, const Token *rhs)
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return ChildrenToVisit::op1_and_op2;
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if (tok2 && tok2->isUnaryOp("&") && tok2->astOperand1()->str() == rhs->str())
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ret = true;
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if (ret) {
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*out_ifStatementScopeStart = getIfStmtBodyStart(tok2, rhs);
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}
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return ret ? ChildrenToVisit::done : ChildrenToVisit::op1_and_op2;
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});
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if (ret)
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@ -263,7 +263,12 @@ private:
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// operatorEqToSelf helper functions
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bool hasAllocation(const Function *func, const Scope* scope) const;
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static bool hasAssignSelf(const Function *func, const Token *rhs);
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bool hasAllocation(const Function *func, const Scope* scope, const Token *start, const Token *end) const;
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bool hasAllocationInIfScope(const Function *func, const Scope* scope, const Token *ifStatementScopeStart) const;
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static bool hasAssignSelf(const Function *func, const Token *rhs, const Token **out_ifStatementScopeStart);
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enum class Bool { TRUE, FALSE, BAILOUT };
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static Bool isInverted(const Token *tok, const Token *rhs);
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static const Token * getIfStmtBodyStart(const Token *tok, const Token *rhs);
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// checkConst helper functions
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bool isMemberVar(const Scope *scope, const Token *tok) const;
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@ -1548,6 +1548,145 @@ private:
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"}");
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ASSERT_EQUALS("", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if (&a == this)\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if ((&a == this) == true)\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if ((&a == this) != false)\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if (!((&a == this) == false))\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if ((&a != this) == false)\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if (&a != this)\n"
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" {\n"
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" }\n"
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" else\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test and has the inverse test
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checkOpertorEqToSelf(
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"class A\n"
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"{\n"
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"public:\n"
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" char *s;\n"
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" A & operator=(const A &);\n"
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"};\n"
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"A & A::operator=(const A &a)\n"
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"{\n"
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" if (&a != this)\n"
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" free(s);\n"
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" else\n"
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" {\n"
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" free(s);\n"
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" s = strdup(a.s);\n"
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" }\n"
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" return *this;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:7]: (warning) 'operator=' should check for assignment to self to avoid problems with dynamic memory.\n", errout.str());
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// this test needs an assignment test but doesn’t have it
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checkOpertorEqToSelf(
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"class A\n"
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