redundant variable assignments: avoid FPs for initializations
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2f66b31d43
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22f736eae2
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@ -553,17 +553,28 @@ void CheckOther::checkRedundantAssignment()
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if ((tok->isAssignmentOp() || Token::Match(tok, "++|--")) && tok->astOperand1()) {
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if (tok->astParent())
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continue;
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// Do not warn about redundant initialization
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// TODO : do not simplify the variable declarations
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if (Token::Match(tok->tokAt(-3), "%var% ; %var% =") && tok->previous()->variable() && tok->previous()->variable()->nameToken() == tok->tokAt(-3))
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continue;
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// Do not warn about assignment with 0 / NULL
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if (Token::simpleMatch(tok->astOperand2(), "0"))
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continue;
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if (tok->astOperand1()->variable() && tok->astOperand1()->variable()->isReference())
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// todo: check references
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continue;
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if (tok->astOperand1()->variable() && tok->astOperand1()->variable()->isStatic())
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// todo: check static variables
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continue;
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if (hasOperand(tok->astOperand2(), tok->astOperand1(), mTokenizer->isCPP(), mSettings->library))
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continue;
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// If there is a custom assignment operator => this is inconclusive
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bool inconclusive = false;
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if (mTokenizer->isCPP() && tok->astOperand1()->valueType() && tok->astOperand1()->valueType()->typeScope) {
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const std::string op = "operator" + tok->str();
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@ -577,6 +588,7 @@ void CheckOther::checkRedundantAssignment()
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if (inconclusive && !mSettings->inconclusive)
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continue;
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// Is there a redundant assignment?
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bool read = false;
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const Token *start;
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if (tok->isAssignmentOp())
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@ -587,6 +599,7 @@ void CheckOther::checkRedundantAssignment()
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if (read || !nextAssign)
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continue;
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// there is redundant assignment. Is there a case between the assignments?
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bool hasCase = false;
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for (const Token *tok2 = tok; tok2 != nextAssign; tok2 = tok2->next()) {
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if (tok2->str() == "case") {
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@ -595,6 +608,7 @@ void CheckOther::checkRedundantAssignment()
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}
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}
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// warn
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if (hasCase)
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redundantAssignmentInSwitchError(tok, nextAssign, tok->astOperand1()->expressionString());
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else
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@ -5601,13 +5601,15 @@ private:
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check("void f() {\n"
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" int i;\n"
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" dostuff();\n"
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" i = 1;\n"
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" i = 1;\n"
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"}", nullptr, false, false, false);
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ASSERT_EQUALS("[test.cpp:3] -> [test.cpp:4]: (style) Variable 'i' is reassigned a value before the old one has been used.\n", errout.str());
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"}");
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ASSERT_EQUALS("[test.cpp:4] -> [test.cpp:5]: (style) Variable 'i' is reassigned a value before the old one has been used.\n", errout.str());
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check("void f() {\n"
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" static int i;\n"
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" dostuff();\n"
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" i = 1;\n"
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" i = 1;\n"
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"}");
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@ -5617,7 +5619,7 @@ private:
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" int i[10];\n"
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" i[2] = 1;\n"
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" i[2] = 1;\n"
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"}", nullptr, false, false, false);
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"}");
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ASSERT_EQUALS("[test.cpp:3] -> [test.cpp:4]: (style) Variable 'i[2]' is reassigned a value before the old one has been used.\n", errout.str());
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check("void f(int x) {\n"
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@ -5625,14 +5627,14 @@ private:
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" i[x] = 1;\n"
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" x=1;\n"
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" i[x] = 1;\n"
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"}", nullptr, false, false, false);
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"}");
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ASSERT_EQUALS("", errout.str());
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check("void f(const int x) {\n"
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" int i[10];\n"
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" i[x] = 1;\n"
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" i[x] = 1;\n"
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"}", nullptr, false, false, false);
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"}");
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ASSERT_EQUALS("[test.cpp:3] -> [test.cpp:4]: (style) Variable 'i[x]' is reassigned a value before the old one has been used.\n", errout.str());
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// Testing different types
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@ -5683,18 +5685,19 @@ private:
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check("void f() {\n"
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" int i;\n"
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" dostuff();\n"
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" i = 1;\n"
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" bar();\n"
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" i = 1;\n"
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"}", nullptr, false, false, false);
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ASSERT_EQUALS("[test.cpp:3] -> [test.cpp:5]: (style) Variable 'i' is reassigned a value before the old one has been used.\n", errout.str());
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"}");
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ASSERT_EQUALS("[test.cpp:4] -> [test.cpp:6]: (style) Variable 'i' is reassigned a value before the old one has been used.\n", errout.str());
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check("void bar(int i) {}\n"
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"void f(int i) {\n"
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" i = 1;\n"
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" bar(i);\n" // Passed as argument
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" i = 1;\n"
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"}", nullptr, false, false, false);
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"}");
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ASSERT_EQUALS("", errout.str());
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check("void f() {\n"
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@ -5749,7 +5752,7 @@ private:
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check("class C {\n"
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" int x;\n"
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" void g() { return x*x; }\n"
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" void g() { return x * x; }\n"
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" void f();\n"
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"};\n"
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"\n"
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@ -5774,15 +5777,17 @@ private:
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// from #3103 (avoid a false negative)
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check("int foo(){\n"
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" int x;\n"
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" dostuff();\n"
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" x = 1;\n"
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" x = 1;\n"
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" return x + 1;\n"
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"}", nullptr, false, false, false);
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ASSERT_EQUALS("[test.cpp:3] -> [test.cpp:4]: (style) Variable 'x' is reassigned a value before the old one has been used.\n", errout.str());
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"}");
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ASSERT_EQUALS("[test.cpp:4] -> [test.cpp:5]: (style) Variable 'x' is reassigned a value before the old one has been used.\n", errout.str());
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// from #3103 (avoid a false positive)
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check("int foo(){\n"
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" int x;\n"
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" dostuff();\n"
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" x = 1;\n"
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" if (y)\n" // <-- cppcheck does not know anything about 'y'
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" x = 2;\n"
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@ -5790,23 +5795,25 @@ private:
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"}");
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ASSERT_EQUALS("", errout.str());
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// initialization, assignment with 0
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check("void f() {\n" // Ticket #4356
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" int x = 0;\n" // <- ignore assignment with 0
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" int x = 0;\n" // <- ignore initialization with 0
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" x = 3;\n"
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"}", 0, false, false, false);
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"}");
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ASSERT_EQUALS("", errout.str());
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check("void f() {\n"
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" int i = 54;\n"
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" i = 0;\n"
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"}", 0, false, false, false);
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ASSERT_EQUALS("[test.cpp:2] -> [test.cpp:3]: (style) Variable 'i' is reassigned a value before the old one has been used.\n", errout.str());
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" state_t *x = NULL;\n"
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" x = dostuff();\n"
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"}");
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ASSERT_EQUALS("", errout.str());
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check("void f() {\n"
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" int i = 54;\n"
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" i = 1;\n"
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"}", 0, false, false, false);
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ASSERT_EQUALS("[test.cpp:2] -> [test.cpp:3]: (style) Variable 'i' is reassigned a value before the old one has been used.\n", errout.str());
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" state_t *x;\n"
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" x = NULL;\n"
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" x = dostuff();\n"
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"}");
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ASSERT_EQUALS("", errout.str());
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check("int foo() {\n" // #4420
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" int x;\n"
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@ -6008,10 +6015,11 @@ private:
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check("class C { void operator=(int x); };\n" // #8368 - assignment operator might have side effects => inconclusive
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"void f() {\n"
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" C c;\n"
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" dostuff();\n"
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" c = x;\n"
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" c = x;\n"
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"}");
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ASSERT_EQUALS("[test.cpp:4] -> [test.cpp:5]: (style, inconclusive) Variable 'c' is reassigned a value before the old one has been used if variable is no semaphore variable.\n", errout.str());
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ASSERT_EQUALS("[test.cpp:5] -> [test.cpp:6]: (style, inconclusive) Variable 'c' is reassigned a value before the old one has been used if variable is no semaphore variable.\n", errout.str());
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}
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void redundantVarAssignment_stackoverflow() {
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