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/*
* Cppcheck - A tool for static C / C + + code analysis
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* Copyright ( C ) 2007 - 2021 Cppcheck team .
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*
* This program is free software : you can redistribute it and / or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation , either version 3 of the License , or
* ( at your option ) any later version .
*
* This program is distributed in the hope that it will be useful ,
* but WITHOUT ANY WARRANTY ; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
* GNU General Public License for more details .
*
* You should have received a copy of the GNU General Public License
* along with this program . If not , see < http : //www.gnu.org/licenses/>.
*/
//---------------------------------------------------------------------------
# include "symboldatabase.h"
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# include "astutils.h"
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# include "errorlogger.h"
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# include "library.h"
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# include "mathlib.h"
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# include "platform.h"
# include "settings.h"
# include "token.h"
# include "tokenize.h"
# include "tokenlist.h"
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# include "utils.h"
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# include "valueflow.h"
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# include <algorithm>
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# include <cassert>
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# include <cstring>
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# include <iomanip>
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# include <iostream>
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# include <limits>
# include <string>
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# include <unordered_map>
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//---------------------------------------------------------------------------
SymbolDatabase : : SymbolDatabase ( const Tokenizer * tokenizer , const Settings * settings , ErrorLogger * errorLogger )
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: mTokenizer ( tokenizer ) , mSettings ( settings ) , mErrorLogger ( errorLogger )
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{
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if ( ! tokenizer | | ! tokenizer - > tokens ( ) )
return ;
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mIsCpp = isCPP ( ) ;
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if ( mSettings - > defaultSign = = ' s ' | | mSettings - > defaultSign = = ' S ' )
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mDefaultSignedness = ValueType : : SIGNED ;
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else if ( mSettings - > defaultSign = = ' u ' | | mSettings - > defaultSign = = ' U ' )
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mDefaultSignedness = ValueType : : UNSIGNED ;
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else
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mDefaultSignedness = ValueType : : UNKNOWN_SIGN ;
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createSymbolDatabaseFindAllScopes ( ) ;
createSymbolDatabaseClassInfo ( ) ;
createSymbolDatabaseVariableInfo ( ) ;
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createSymbolDatabaseCopyAndMoveConstructors ( ) ;
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createSymbolDatabaseFunctionScopes ( ) ;
createSymbolDatabaseClassAndStructScopes ( ) ;
createSymbolDatabaseFunctionReturnTypes ( ) ;
createSymbolDatabaseNeedInitialization ( ) ;
createSymbolDatabaseVariableSymbolTable ( ) ;
createSymbolDatabaseSetScopePointers ( ) ;
createSymbolDatabaseSetVariablePointers ( ) ;
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setValueTypeInTokenList ( false ) ;
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createSymbolDatabaseSetFunctionPointers ( true ) ;
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createSymbolDatabaseSetTypePointers ( ) ;
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createSymbolDatabaseSetSmartPointerType ( ) ;
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createSymbolDatabaseEnums ( ) ;
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createSymbolDatabaseEscapeFunctions ( ) ;
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createSymbolDatabaseIncompleteVars ( ) ;
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createSymbolDatabaseExprIds ( ) ;
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}
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static const Token * skipScopeIdentifiers ( const Token * tok )
{
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if ( Token : : Match ( tok , " :: %name% " ) )
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tok = tok - > next ( ) ;
while ( Token : : Match ( tok , " %name% :: " ) | |
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( Token : : Match ( tok , " %name% < " ) & & Token : : Match ( tok - > linkAt ( 1 ) , " >|>> :: " ) ) ) {
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if ( tok - > strAt ( 1 ) = = " :: " )
tok = tok - > tokAt ( 2 ) ;
else
tok = tok - > linkAt ( 1 ) - > tokAt ( 2 ) ;
}
return tok ;
}
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static bool isExecutableScope ( const Token * tok )
{
if ( ! Token : : simpleMatch ( tok , " { " ) )
return false ;
const Token * tok2 = tok - > link ( ) - > previous ( ) ;
if ( Token : : simpleMatch ( tok2 , " ; } " ) )
return true ;
if ( Token : : Match ( tok2 , " {|} } " ) ) {
const Token * startTok = tok2 - > str ( ) = = " { " ? tok2 : tok2 - > link ( ) ;
if ( Token : : Match ( startTok - > previous ( ) , " do|try|else { " ) )
return true ;
if ( Token : : simpleMatch ( startTok - > previous ( ) , " ) { " ) )
return ! findLambdaStartToken ( tok2 ) ;
if ( tok - > str ( ) = = " { " )
return false ;
else
return isExecutableScope ( startTok ) ;
}
return false ;
}
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void SymbolDatabase : : createSymbolDatabaseFindAllScopes ( )
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{
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// create global scope
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scopeList . emplace_back ( this , nullptr , nullptr ) ;
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// pointer to current scope
Scope * scope = & scopeList . back ( ) ;
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// Store current access in each scope (depends on evaluation progress)
std : : map < const Scope * , AccessControl > access ;
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// find all scopes
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for ( const Token * tok = mTokenizer - > tokens ( ) ; tok ; tok = tok ? tok - > next ( ) : nullptr ) {
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// #5593 suggested to add here:
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if ( mErrorLogger )
mErrorLogger - > reportProgress ( mTokenizer - > list . getSourceFilePath ( ) ,
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" SymbolDatabase " ,
tok - > progressValue ( ) ) ;
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// Locate next class
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if ( ( mTokenizer - > isCPP ( ) & & tok - > isKeyword ( ) & &
( ( Token : : Match ( tok , " class|struct|union|namespace ::| %name% {|:|::|< " ) & &
! Token : : Match ( tok - > previous ( ) , " new|friend|const|enum|typedef|mutable|volatile|using|)|(|< " ) ) | |
( Token : : Match ( tok , " enum class| %name% { " ) | |
Token : : Match ( tok , " enum class| %name% : %name% { " ) ) ) )
| | ( mTokenizer - > isC ( ) & & tok - > isKeyword ( ) & & Token : : Match ( tok , " struct|union|enum %name% { " ) ) ) {
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const Token * tok2 = tok - > tokAt ( 2 ) ;
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if ( tok - > strAt ( 1 ) = = " :: " )
tok2 = tok2 - > next ( ) ;
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else if ( mTokenizer - > isCPP ( ) & & tok - > strAt ( 1 ) = = " class " )
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tok2 = tok2 - > next ( ) ;
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while ( Token : : Match ( tok2 , " :: %name% " ) )
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tok2 = tok2 - > tokAt ( 2 ) ;
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while ( Token : : Match ( tok2 , " %name% :: %name% " ) )
tok2 = tok2 - > tokAt ( 2 ) ;
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// skip over template args
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while ( tok2 & & tok2 - > str ( ) = = " < " & & tok2 - > link ( ) ) {
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tok2 = tok2 - > link ( ) - > next ( ) ;
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while ( Token : : Match ( tok2 , " :: %name% " ) )
tok2 = tok2 - > tokAt ( 2 ) ;
}
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// skip over final
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if ( mTokenizer - > isCPP ( ) & & Token : : simpleMatch ( tok2 , " final " ) )
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tok2 = tok2 - > next ( ) ;
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// make sure we have valid code
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if ( ! Token : : Match ( tok2 , " {|: " ) ) {
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// check for qualified variable
if ( tok2 & & tok2 - > next ( ) ) {
if ( tok2 - > next ( ) - > str ( ) = = " ; " )
tok = tok2 - > next ( ) ;
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else if ( Token : : simpleMatch ( tok2 - > next ( ) , " = { " ) &&
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Token : : simpleMatch ( tok2 - > linkAt ( 2 ) , " } ; " ) )
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tok = tok2 - > linkAt ( 2 ) - > next ( ) ;
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else if ( Token : : Match ( tok2 - > next ( ) , " (| { " ) &&
tok2 - > next ( ) - > link ( ) - > strAt ( 1 ) = = " ; " )
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tok = tok2 - > next ( ) - > link ( ) - > next ( ) ;
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// skip variable declaration
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else if ( Token : : Match ( tok2 , " *|&|> " ) )
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continue ;
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else if ( Token : : Match ( tok2 , " %name% ( " ) & & mTokenizer - > isFunctionHead ( tok2 - > next ( ) , " { ; " ))
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continue ;
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else if ( Token : : Match ( tok2 , " %name% [ " ) )
continue ;
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// skip template
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else if ( Token : : simpleMatch ( tok2 , " ; " ) & &
Token : : Match ( tok - > previous ( ) , " template|> class|struct " ) ) {
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tok = tok2 ;
continue ;
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}
// forward declaration
else if ( Token : : simpleMatch ( tok2 , " ; " ) & &
Token : : Match ( tok , " class|struct|union " ) ) {
// TODO: see if it can be used
tok = tok2 ;
continue ;
}
// skip constructor
else if ( Token : : simpleMatch ( tok2 , " ( " ) & &
Token : : simpleMatch ( tok2 - > link ( ) , " ) ; " ) ) {
tok = tok2 - > link ( ) - > next ( ) ;
continue ;
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} else
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throw InternalError ( tok2 , " SymbolDatabase bailout; unhandled code " , InternalError : : SYNTAX ) ;
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continue ;
}
break ; // bail
}
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const Token * name = tok - > next ( ) ;
if ( name - > str ( ) = = " class " & & name - > strAt ( - 1 ) = = " enum " )
name = name - > next ( ) ;
Scope * new_scope = findScope ( name , scope ) ;
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if ( new_scope ) {
// only create base list for classes and structures
if ( new_scope - > isClassOrStruct ( ) ) {
// goto initial '{'
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if ( ! new_scope - > definedType )
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mTokenizer - > syntaxError ( nullptr ) ; // #6808
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tok2 = new_scope - > definedType - > initBaseInfo ( tok , tok2 ) ;
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// make sure we have valid code
if ( ! tok2 ) {
break ;
}
}
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// definition may be different than declaration
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if ( mTokenizer - > isCPP ( ) & & tok - > str ( ) = = " class " ) {
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access [ new_scope ] = AccessControl : : Private ;
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new_scope - > type = Scope : : eClass ;
} else if ( tok - > str ( ) = = " struct " ) {
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access [ new_scope ] = AccessControl : : Public ;
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new_scope - > type = Scope : : eStruct ;
}
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new_scope - > classDef = tok ;
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new_scope - > bodyStart = tok2 ;
new_scope - > bodyEnd = tok2 - > link ( ) ;
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// make sure we have valid code
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if ( ! new_scope - > bodyEnd ) {
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mTokenizer - > syntaxError ( tok ) ;
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}
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scope = new_scope ;
tok = tok2 ;
} else {
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scopeList . emplace_back ( this , tok , scope ) ;
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new_scope = & scopeList . back ( ) ;
if ( tok - > str ( ) = = " class " )
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access [ new_scope ] = AccessControl : : Private ;
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else if ( tok - > str ( ) = = " struct " | | tok - > str ( ) = = " union " )
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access [ new_scope ] = AccessControl : : Public ;
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// fill typeList...
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if ( new_scope - > isClassOrStructOrUnion ( ) | | new_scope - > type = = Scope : : eEnum ) {
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Type * new_type = findType ( name , scope ) ;
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if ( ! new_type ) {
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typeList . emplace_back ( new_scope - > classDef , new_scope , scope ) ;
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new_type = & typeList . back ( ) ;
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scope - > definedTypesMap [ new_type - > name ( ) ] = new_type ;
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} else
new_type - > classScope = new_scope ;
new_scope - > definedType = new_type ;
}
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// only create base list for classes and structures
if ( new_scope - > isClassOrStruct ( ) ) {
// goto initial '{'
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tok2 = new_scope - > definedType - > initBaseInfo ( tok , tok2 ) ;
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// make sure we have valid code
if ( ! tok2 ) {
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mTokenizer - > syntaxError ( tok ) ;
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}
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} else if ( new_scope - > type = = Scope : : eEnum ) {
if ( tok2 - > str ( ) = = " : " )
tok2 = tok2 - > tokAt ( 2 ) ;
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}
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new_scope - > bodyStart = tok2 ;
new_scope - > bodyEnd = tok2 - > link ( ) ;
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// make sure we have valid code
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if ( ! new_scope - > bodyEnd ) {
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mTokenizer - > syntaxError ( tok ) ;
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}
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if ( new_scope - > type = = Scope : : eEnum ) {
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tok2 = new_scope - > addEnum ( tok , mTokenizer - > isCPP ( ) ) ;
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scope - > nestedList . push_back ( new_scope ) ;
if ( ! tok2 )
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mTokenizer - > syntaxError ( tok ) ;
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} else {
// make the new scope the current scope
scope - > nestedList . push_back ( new_scope ) ;
scope = new_scope ;
}
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tok = tok2 ;
}
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}
// Namespace and unknown macro (#3854)
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else if ( mTokenizer - > isCPP ( ) & & tok - > isKeyword ( ) & &
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Token : : Match ( tok , " namespace %name% %type% ( " ) & &
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tok - > tokAt ( 2 ) - > isUpperCaseName ( ) & &
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Token : : simpleMatch ( tok - > linkAt ( 3 ) , " ) { " ) ) {
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scopeList . emplace_back ( this , tok , scope ) ;
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Scope * new_scope = & scopeList . back ( ) ;
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access [ new_scope ] = AccessControl : : Public ;
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const Token * tok2 = tok - > linkAt ( 3 ) - > next ( ) ;
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new_scope - > bodyStart = tok2 ;
new_scope - > bodyEnd = tok2 - > link ( ) ;
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// make sure we have valid code
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if ( ! new_scope - > bodyEnd ) {
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scopeList . pop_back ( ) ;
break ;
}
// make the new scope the current scope
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scope - > nestedList . push_back ( new_scope ) ;
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scope = & scopeList . back ( ) ;
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tok = tok2 ;
}
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// forward declaration
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else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " class|struct|union %name% ; " ) &&
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tok - > strAt ( - 1 ) ! = " friend " ) {
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if ( ! findType ( tok - > next ( ) , scope ) ) {
// fill typeList..
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typeList . emplace_back ( tok , nullptr , scope ) ;
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Type * new_type = & typeList . back ( ) ;
scope - > definedTypesMap [ new_type - > name ( ) ] = new_type ;
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}
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tok = tok - > tokAt ( 2 ) ;
}
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// using namespace
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else if ( mTokenizer - > isCPP ( ) & & tok - > isKeyword ( ) & & Token : : Match ( tok , " using namespace ::| %type% ; | : : " )) {
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Scope : : UsingInfo using_info ;
using_info . start = tok ; // save location
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using_info . scope = findNamespace ( tok - > tokAt ( 2 ) , scope ) ;
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scope - > usingList . push_back ( using_info ) ;
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// check for global namespace
if ( tok - > strAt ( 2 ) = = " :: " )
tok = tok - > tokAt ( 4 ) ;
else
tok = tok - > tokAt ( 3 ) ;
// skip over qualification
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while ( Token : : Match ( tok , " %type% :: " ) )
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tok = tok - > tokAt ( 2 ) ;
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}
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// using type alias
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else if ( mTokenizer - > isCPP ( ) & & tok - > isKeyword ( ) & & Token : : Match ( tok , " using %name% = " ) ) {
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if ( tok - > strAt ( - 1 ) ! = " > " & & ! findType ( tok - > next ( ) , scope ) ) {
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// fill typeList..
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typeList . emplace_back ( tok , nullptr , scope ) ;
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Type * new_type = & typeList . back ( ) ;
scope - > definedTypesMap [ new_type - > name ( ) ] = new_type ;
}
tok = tok - > tokAt ( 3 ) ;
while ( tok & & tok - > str ( ) ! = " ; " )
tok = tok - > next ( ) ;
}
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// unnamed struct and union
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else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " struct|union { " ) &&
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Token : : Match ( tok - > next ( ) - > link ( ) , " } *|&| %name% ;|[|= " ) ) {
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scopeList . emplace_back ( this , tok , scope ) ;
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Scope * new_scope = & scopeList . back ( ) ;
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access [ new_scope ] = AccessControl : : Public ;
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const Token * varNameTok = tok - > next ( ) - > link ( ) - > next ( ) ;
if ( varNameTok - > str ( ) = = " * " ) {
varNameTok = varNameTok - > next ( ) ;
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} else if ( varNameTok - > str ( ) = = " & " ) {
varNameTok = varNameTok - > next ( ) ;
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}
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typeList . emplace_back ( tok , new_scope , scope ) ;
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{
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Type * new_type = & typeList . back ( ) ;
new_scope - > definedType = new_type ;
scope - > definedTypesMap [ new_type - > name ( ) ] = new_type ;
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}
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scope - > addVariable ( varNameTok , tok , tok , access [ scope ] , new_scope - > definedType , scope , mSettings ) ;
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const Token * tok2 = tok - > next ( ) ;
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new_scope - > bodyStart = tok2 ;
new_scope - > bodyEnd = tok2 - > link ( ) ;
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// make sure we have valid code
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if ( ! new_scope - > bodyEnd ) {
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scopeList . pop_back ( ) ;
break ;
}
// make the new scope the current scope
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scope - > nestedList . push_back ( new_scope ) ;
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scope = new_scope ;
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tok = tok2 ;
}
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// anonymous struct, union and namespace
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else if ( tok - > isKeyword ( ) & & ( ( Token : : Match ( tok , " struct|union { " ) &&
Token : : simpleMatch ( tok - > next ( ) - > link ( ) , " } ; " ) ) | |
Token : : simpleMatch ( tok , " namespace { " ) ) ) {
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scopeList . emplace_back ( this , tok , scope ) ;
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Scope * new_scope = & scopeList . back ( ) ;
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access [ new_scope ] = AccessControl : : Public ;
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const Token * tok2 = tok - > next ( ) ;
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new_scope - > bodyStart = tok2 ;
new_scope - > bodyEnd = tok2 - > link ( ) ;
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typeList . emplace_back ( tok , new_scope , scope ) ;
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{
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Type * new_type = & typeList . back ( ) ;
new_scope - > definedType = new_type ;
scope - > definedTypesMap [ new_type - > name ( ) ] = new_type ;
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}
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// make sure we have valid code
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if ( ! new_scope - > bodyEnd ) {
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scopeList . pop_back ( ) ;
break ;
}
// make the new scope the current scope
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scope - > nestedList . push_back ( new_scope ) ;
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scope = new_scope ;
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tok = tok2 ;
}
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// forward declared enum
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else if ( tok - > isKeyword ( ) & & ( Token : : Match ( tok , " enum class| %name% ; " ) || Token::Match(tok, " enum class | % name % : % name % ; " ))) {
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typeList . emplace_back ( tok , nullptr , scope ) ;
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Type * new_type = & typeList . back ( ) ;
scope - > definedTypesMap [ new_type - > name ( ) ] = new_type ;
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tok = tok - > tokAt ( 2 ) ;
}
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// check for end of scope
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else if ( tok = = scope - > bodyEnd ) {
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access . erase ( scope ) ;
scope = const_cast < Scope * > ( scope - > nestedIn ) ;
continue ;
}
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// check if in class or structure or union
else if ( scope - > isClassOrStructOrUnion ( ) ) {
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const Token * funcStart = nullptr ;
const Token * argStart = nullptr ;
const Token * declEnd = nullptr ;
// What section are we in..
if ( tok - > str ( ) = = " private: " )
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access [ scope ] = AccessControl : : Private ;
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else if ( tok - > str ( ) = = " protected: " )
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access [ scope ] = AccessControl : : Protected ;
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else if ( tok - > str ( ) = = " public: " | | tok - > str ( ) = = " __published: " )
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access [ scope ] = AccessControl : : Public ;
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else if ( Token : : Match ( tok , " public|protected|private %name% : " ) ) {
if ( tok - > str ( ) = = " private " )
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access [ scope ] = AccessControl : : Private ;
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else if ( tok - > str ( ) = = " protected " )
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access [ scope ] = AccessControl : : Protected ;
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else
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access [ scope ] = AccessControl : : Public ;
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tok = tok - > tokAt ( 2 ) ;
}
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// class function?
else if ( isFunction ( tok , scope , & funcStart , & argStart , & declEnd ) ) {
if ( tok - > previous ( ) - > str ( ) ! = " :: " | | tok - > strAt ( - 2 ) = = scope - > className ) {
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Function function ( mTokenizer , tok , scope , funcStart , argStart ) ;
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// save the access type
function . access = access [ scope ] ;
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const Token * end = function . argDef - > link ( ) ;
// count the number of constructors
if ( function . isConstructor ( ) )
scope - > numConstructors + + ;
// assume implementation is inline (definition and implementation same)
function . token = function . tokenDef ;
function . arg = function . argDef ;
// out of line function
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if ( const Token * endTok = mTokenizer - > isFunctionHead ( end , " ; " ) ) {
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tok = endTok ;
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scope - > addFunction ( function ) ;
}
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// inline function
else {
// find start of function '{'
bool foundInitList = false ;
while ( end & & end - > str ( ) ! = " { " & & end - > str ( ) ! = " ; " ) {
if ( end - > link ( ) & & Token : : Match ( end , " (|< " ) ) {
end = end - > link ( ) ;
} else if ( foundInitList & &
Token : : Match ( end , " %name%|> { " ) & &
Token : : Match ( end - > linkAt ( 1 ) , " } ,|{ " ) ) {
end = end - > linkAt ( 1 ) ;
} else {
if ( end - > str ( ) = = " : " )
foundInitList = true ;
end = end - > next ( ) ;
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}
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}
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if ( ! end | | end - > str ( ) = = " ; " )
continue ;
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scope - > addFunction ( function ) ;
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Function * funcptr = & scope - > functionList . back ( ) ;
const Token * tok2 = funcStart ;
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addNewFunction ( & scope , & tok2 ) ;
if ( scope ) {
scope - > functionOf = function . nestedIn ;
scope - > function = funcptr ;
scope - > function - > functionScope = scope ;
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}
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tok = tok2 ;
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}
}
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// nested class or friend function?
else {
/** @todo check entire qualification for match */
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const Scope * const nested = scope - > findInNestedListRecursive ( tok - > strAt ( - 2 ) ) ;
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if ( nested )
addClassFunction ( & scope , & tok , argStart ) ;
else {
/** @todo handle friend functions */
}
}
}
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// friend class declaration?
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else if ( mTokenizer - > isCPP ( ) & & tok - > isKeyword ( ) & & Token : : Match ( tok , " friend class| ::| %any% ; | : : " )) {
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Type : : FriendInfo friendInfo ;
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// save the name start
friendInfo . nameStart = tok - > strAt ( 1 ) = = " class " ? tok - > tokAt ( 2 ) : tok - > next ( ) ;
friendInfo . nameEnd = friendInfo . nameStart ;
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// skip leading "::"
if ( friendInfo . nameEnd - > str ( ) = = " :: " )
friendInfo . nameEnd = friendInfo . nameEnd - > next ( ) ;
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// skip qualification "name ::"
while ( friendInfo . nameEnd & & friendInfo . nameEnd - > strAt ( 1 ) = = " :: " )
friendInfo . nameEnd = friendInfo . nameEnd - > tokAt ( 2 ) ;
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// fill this in after parsing is complete
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friendInfo . type = nullptr ;
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if ( ! scope - > definedType )
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mTokenizer - > syntaxError ( tok ) ;
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2017-01-09 22:48:05 +01:00
scope - > definedType - > friendList . push_back ( friendInfo ) ;
}
} else if ( scope - > type = = Scope : : eNamespace | | scope - > type = = Scope : : eGlobal ) {
const Token * funcStart = nullptr ;
const Token * argStart = nullptr ;
const Token * declEnd = nullptr ;
// function?
if ( isFunction ( tok , scope , & funcStart , & argStart , & declEnd ) ) {
// has body?
if ( declEnd & & declEnd - > str ( ) = = " { " ) {
tok = funcStart ;
// class function
if ( tok - > previous ( ) & & tok - > previous ( ) - > str ( ) = = " :: " )
addClassFunction ( & scope , & tok , argStart ) ;
// class destructor
else if ( tok - > previous ( ) & &
tok - > previous ( ) - > str ( ) = = " ~ " & &
tok - > strAt ( - 2 ) = = " :: " )
addClassFunction ( & scope , & tok , argStart ) ;
// regular function
else {
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const Function * const function = addGlobalFunction ( scope , tok , argStart , funcStart ) ;
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2017-01-09 22:48:05 +01:00
if ( ! function )
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mTokenizer - > syntaxError ( tok ) ;
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}
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2017-01-09 22:48:05 +01:00
// syntax error?
if ( ! scope )
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mTokenizer - > syntaxError ( tok ) ;
2017-01-09 22:48:05 +01:00
}
// function prototype?
else if ( declEnd & & declEnd - > str ( ) = = " ; " ) {
2019-10-06 07:21:12 +02:00
if ( tok - > previous ( ) & & tok - > previous ( ) - > str ( ) = = " :: " & &
Token : : Match ( declEnd - > previous ( ) , " default|delete " ) ) {
addClassFunction ( & scope , & tok , argStart ) ;
continue ;
}
2017-01-09 22:48:05 +01:00
bool newFunc = true ; // Is this function already in the database?
for ( std : : multimap < std : : string , const Function * > : : const_iterator i = scope - > functionMap . find ( tok - > str ( ) ) ; i ! = scope - > functionMap . end ( ) & & i - > first = = tok - > str ( ) ; + + i ) {
2021-01-18 19:01:04 +01:00
if ( i - > second - > argsMatch ( scope , i - > second - > argDef , argStart , emptyString , 0 ) ) {
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newFunc = false ;
break ;
}
}
2014-04-10 16:17:10 +02:00
2017-01-09 22:48:05 +01:00
// save function prototype in database
if ( newFunc ) {
2018-04-25 12:05:49 +02:00
addGlobalFunctionDecl ( scope , tok , argStart , funcStart ) ;
2011-03-14 03:59:25 +01:00
}
2017-01-09 22:48:05 +01:00
tok = declEnd ;
continue ;
2010-11-20 07:26:50 +01:00
}
2017-01-09 22:48:05 +01:00
}
} else if ( scope - > isExecutable ( ) ) {
2020-05-17 17:32:31 +02:00
if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " else|try|do { " ) ) {
2017-01-09 22:48:05 +01:00
const Token * tok1 = tok - > next ( ) ;
if ( tok - > str ( ) = = " else " )
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scopeList . emplace_back ( this , tok , scope , Scope : : eElse , tok1 ) ;
2017-04-30 08:58:41 +02:00
else if ( tok - > str ( ) = = " do " )
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scopeList . emplace_back ( this , tok , scope , Scope : : eDo , tok1 ) ;
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else //if (tok->str() == "try")
2018-04-11 09:44:35 +02:00
scopeList . emplace_back ( this , tok , scope , Scope : : eTry , tok1 ) ;
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tok = tok1 ;
scope - > nestedList . push_back ( & scopeList . back ( ) ) ;
scope = & scopeList . back ( ) ;
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} else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " if|for|while|catch|switch ( " ) & & Token : : simpleMatch ( tok - > next ( ) - > link ( ) , " ) { " )) {
2017-01-09 22:48:05 +01:00
const Token * scopeStartTok = tok - > next ( ) - > link ( ) - > next ( ) ;
if ( tok - > str ( ) = = " if " )
2018-04-11 09:44:35 +02:00
scopeList . emplace_back ( this , tok , scope , Scope : : eIf , scopeStartTok ) ;
2017-01-09 22:48:05 +01:00
else if ( tok - > str ( ) = = " for " ) {
2018-04-11 09:44:35 +02:00
scopeList . emplace_back ( this , tok , scope , Scope : : eFor , scopeStartTok ) ;
2017-01-09 22:48:05 +01:00
} else if ( tok - > str ( ) = = " while " )
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scopeList . emplace_back ( this , tok , scope , Scope : : eWhile , scopeStartTok ) ;
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else if ( tok - > str ( ) = = " catch " ) {
2018-04-11 09:44:35 +02:00
scopeList . emplace_back ( this , tok , scope , Scope : : eCatch , scopeStartTok ) ;
2017-01-09 22:48:05 +01:00
} else // if (tok->str() == "switch")
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scopeList . emplace_back ( this , tok , scope , Scope : : eSwitch , scopeStartTok ) ;
2017-01-09 22:48:05 +01:00
scope - > nestedList . push_back ( & scopeList . back ( ) ) ;
scope = & scopeList . back ( ) ;
if ( scope - > type = = Scope : : eFor )
2019-07-23 14:29:02 +02:00
scope - > checkVariable ( tok - > tokAt ( 2 ) , AccessControl : : Local , mSettings ) ; // check for variable declaration and add it to new scope if found
2017-01-09 22:48:05 +01:00
else if ( scope - > type = = Scope : : eCatch )
2019-07-23 14:29:02 +02:00
scope - > checkVariable ( tok - > tokAt ( 2 ) , AccessControl : : Throw , mSettings ) ; // check for variable declaration and add it to new scope if found
2017-01-09 22:48:05 +01:00
tok = scopeStartTok ;
2019-03-30 10:32:36 +01:00
} else if ( Token : : Match ( tok , " %var% { " ) ) {
tok = tok - > linkAt ( 1 ) ;
} else if ( const Token * lambdaEndToken = findLambdaEndToken ( tok ) ) {
const Token * lambdaStartToken = lambdaEndToken - > link ( ) ;
2019-07-05 12:30:42 +02:00
const Token * argStart = lambdaStartToken - > astParent ( ) ;
const Token * funcStart = Token : : simpleMatch ( argStart , " [ " ) ? argStart : argStart - > astParent ( ) ;
2019-07-06 10:46:17 +02:00
const Function * function = addGlobalFunction ( scope , tok , argStart , funcStart ) ;
if ( ! function )
mTokenizer - > syntaxError ( tok ) ;
2019-03-30 10:32:36 +01:00
tok = lambdaStartToken ;
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} else if ( tok - > str ( ) = = " { " ) {
2019-04-15 06:37:27 +02:00
if ( isExecutableScope ( tok ) ) {
2019-03-30 10:32:36 +01:00
scopeList . emplace_back ( this , tok , scope , Scope : : eUnconditional , tok ) ;
scope - > nestedList . push_back ( & scopeList . back ( ) ) ;
scope = & scopeList . back ( ) ;
} else {
2017-01-09 22:48:05 +01:00
tok = tok - > link ( ) ;
2011-02-26 21:53:57 +01:00
}
}
2019-07-06 10:46:17 +02:00
// syntax error?
if ( ! scope )
mTokenizer - > syntaxError ( tok ) ;
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}
2010-11-13 08:08:45 +01:00
}
2017-01-01 11:34:05 +01:00
}
2010-11-13 08:08:45 +01:00
2017-01-01 11:34:05 +01:00
void SymbolDatabase : : createSymbolDatabaseClassInfo ( )
{
2018-06-16 16:10:28 +02:00
if ( mTokenizer - > isC ( ) )
2018-04-04 10:50:10 +02:00
return ;
// fill in using info
2020-09-21 19:30:47 +02:00
for ( Scope & scope : scopeList ) {
for ( Scope : : UsingInfo & usingInfo : scope . usingList ) {
2018-04-04 10:50:10 +02:00
// only find if not already found
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if ( usingInfo . scope = = nullptr ) {
2018-04-04 10:50:10 +02:00
// check scope for match
2020-09-21 19:30:47 +02:00
const Scope * const found = findScope ( usingInfo . start - > tokAt ( 2 ) , & scope ) ;
if ( found ) {
2018-04-04 10:50:10 +02:00
// set found scope
2020-09-21 19:48:04 +02:00
usingInfo . scope = found ;
2018-04-04 10:50:10 +02:00
break ;
2017-07-16 01:14:15 +02:00
}
}
}
2018-04-04 10:50:10 +02:00
}
2017-07-16 01:14:15 +02:00
2018-04-04 10:50:10 +02:00
// fill in base class info
2020-09-21 19:30:47 +02:00
for ( Type & type : typeList ) {
2018-04-04 10:50:10 +02:00
// finish filling in base class info
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for ( Type : : BaseInfo & i : type . derivedFrom ) {
const Type * found = findType ( i . nameTok , type . enclosingScope ) ;
if ( found & & found - > findDependency ( & type ) ) {
// circular dependency
//mTokenizer->syntaxError(nullptr);
} else {
i . type = found ;
2015-07-01 07:50:13 +02:00
}
2014-09-01 17:01:05 +02:00
}
2018-04-04 10:50:10 +02:00
}
2010-11-13 08:08:45 +01:00
2018-04-04 10:50:10 +02:00
// fill in friend info
2020-09-21 19:30:47 +02:00
for ( Type & type : typeList ) {
for ( Type : : FriendInfo & friendInfo : type . friendList ) {
friendInfo . type = findType ( friendInfo . nameStart , type . enclosingScope ) ;
2012-02-24 20:45:56 +01:00
}
2012-12-20 06:53:04 +01:00
}
2017-01-01 11:34:05 +01:00
}
2012-12-20 06:53:04 +01:00
2017-01-01 11:34:05 +01:00
void SymbolDatabase : : createSymbolDatabaseVariableInfo ( )
{
2010-12-02 07:35:01 +01:00
// fill in variable info
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for ( Scope & scope : scopeList ) {
2011-02-26 21:57:16 +01:00
// find variables
2020-09-21 19:48:04 +02:00
scope . getVariableList ( mSettings ) ;
2010-12-02 07:35:01 +01:00
}
2011-02-26 21:51:12 +01:00
// fill in function arguments
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for ( Scope & scope : scopeList ) {
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std : : list < Function > : : iterator func ;
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for ( func = scope . functionList . begin ( ) ; func ! = scope . functionList . end ( ) ; + + func ) {
2011-02-26 21:51:12 +01:00
// add arguments
2020-09-21 19:30:47 +02:00
func - > addArguments ( this , & scope ) ;
2011-02-26 21:51:12 +01:00
}
}
2017-01-01 11:34:05 +01:00
}
2011-02-26 21:51:12 +01:00
2018-01-07 14:20:19 +01:00
void SymbolDatabase : : createSymbolDatabaseCopyAndMoveConstructors ( )
{
// fill in class and struct copy/move constructors
2020-09-21 19:30:47 +02:00
for ( Scope & scope : scopeList ) {
if ( ! scope . isClassOrStruct ( ) )
2018-01-07 14:20:19 +01:00
continue ;
std : : list < Function > : : iterator func ;
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for ( func = scope . functionList . begin ( ) ; func ! = scope . functionList . end ( ) ; + + func ) {
2018-01-07 14:20:19 +01:00
if ( ! func - > isConstructor ( ) | | func - > minArgCount ( ) ! = 1 )
continue ;
const Variable * firstArg = func - > getArgumentVar ( 0 ) ;
2020-09-21 19:30:47 +02:00
if ( firstArg - > type ( ) = = scope . definedType ) {
2018-01-07 14:20:19 +01:00
if ( firstArg - > isRValueReference ( ) )
func - > type = Function : : eMoveConstructor ;
2018-01-20 14:46:09 +01:00
else if ( firstArg - > isReference ( ) & & ! firstArg - > isPointer ( ) )
2018-01-07 14:20:19 +01:00
func - > type = Function : : eCopyConstructor ;
}
if ( func - > type = = Function : : eCopyConstructor | |
func - > type = = Function : : eMoveConstructor )
2020-09-21 19:30:47 +02:00
scope . numCopyOrMoveConstructors + + ;
2018-01-07 14:20:19 +01:00
}
}
}
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void SymbolDatabase : : createSymbolDatabaseFunctionScopes ( )
{
2012-10-10 20:42:07 +02:00
// fill in function scopes
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for ( Scope & scope : scopeList ) {
if ( scope . type = = Scope : : eFunction )
functionScopes . push_back ( & scope ) ;
2012-10-10 20:42:07 +02:00
}
2017-01-01 11:34:05 +01:00
}
2012-10-10 20:42:07 +02:00
2017-01-01 11:34:05 +01:00
void SymbolDatabase : : createSymbolDatabaseClassAndStructScopes ( )
{
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// fill in class and struct scopes
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for ( Scope & scope : scopeList ) {
if ( scope . isClassOrStruct ( ) )
classAndStructScopes . push_back ( & scope ) ;
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}
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}
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void SymbolDatabase : : createSymbolDatabaseFunctionReturnTypes ( )
{
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// fill in function return types
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for ( Scope & scope : scopeList ) {
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std : : list < Function > : : iterator func ;
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for ( func = scope . functionList . begin ( ) ; func ! = scope . functionList . end ( ) ; + + func ) {
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// add return types
if ( func - > retDef ) {
const Token * type = func - > retDef ;
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while ( Token : : Match ( type , " static|const|struct|union|enum " ) )
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type = type - > next ( ) ;
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if ( type ) {
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func - > retType = findVariableTypeInBase ( & scope , type ) ;
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if ( ! func - > retType )
func - > retType = findTypeInNested ( type , func - > nestedIn ) ;
}
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}
}
}
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}
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void SymbolDatabase : : createSymbolDatabaseNeedInitialization ( )
{
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if ( mTokenizer - > isC ( ) ) {
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// For C code it is easy, as there are no constructors and no default values
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for ( Scope & scope : scopeList ) {
if ( scope . definedType )
scope . definedType - > needInitialization = Type : : NeedInitialization : : True ;
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}
} else {
// For C++, it is more difficult: Determine if user defined type needs initialization...
unsigned int unknowns = 0 ; // stop checking when there are no unknowns
unsigned int retry = 0 ; // bail if we don't resolve all the variable types for some reason
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do {
unknowns = 0 ;
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for ( Scope & scope : scopeList ) {
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if ( ! scope . isClassOrStructOrUnion ( ) )
continue ;
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if ( ! scope . definedType ) {
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mBlankTypes . emplace_back ( ) ;
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scope . definedType = & mBlankTypes . back ( ) ;
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}
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if ( scope . isClassOrStruct ( ) & & scope . definedType - > needInitialization = = Type : : NeedInitialization : : Unknown ) {
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// check for default constructor
bool hasDefaultConstructor = false ;
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std : : list < Function > : : const_iterator func ;
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for ( func = scope . functionList . begin ( ) ; func ! = scope . functionList . end ( ) ; + + func ) {
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if ( func - > type = = Function : : eConstructor ) {
// check for no arguments: func ( )
if ( func - > argCount ( ) = = 0 ) {
hasDefaultConstructor = true ;
break ;
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}
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/** check for arguments with default values */
else if ( func - > argCount ( ) = = func - > initializedArgCount ( ) ) {
hasDefaultConstructor = true ;
break ;
}
}
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}
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// User defined types with user defined default constructor doesn't need initialization.
// We assume the default constructor initializes everything.
// Another check will figure out if the constructor actually initializes everything.
if ( hasDefaultConstructor )
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scope . definedType - > needInitialization = Type : : NeedInitialization : : False ;
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// check each member variable to see if it needs initialization
else {
bool needInitialization = false ;
bool unknown = false ;
std : : list < Variable > : : const_iterator var ;
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for ( var = scope . varlist . begin ( ) ; var ! = scope . varlist . end ( ) & & ! needInitialization ; + + var ) {
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if ( var - > isClass ( ) ) {
if ( var - > type ( ) ) {
// does this type need initialization?
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if ( var - > type ( ) - > needInitialization = = Type : : NeedInitialization : : True )
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needInitialization = true ;
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else if ( var - > type ( ) - > needInitialization = = Type : : NeedInitialization : : Unknown ) {
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if ( ! ( var - > valueType ( ) & & var - > valueType ( ) - > type = = ValueType : : CONTAINER ) )
unknown = true ;
}
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}
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} else if ( ! var - > hasDefault ( ) & & ! var - > isStatic ( ) )
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needInitialization = true ;
}
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if ( needInitialization )
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scope . definedType - > needInitialization = Type : : NeedInitialization : : True ;
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else if ( ! unknown )
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scope . definedType - > needInitialization = Type : : NeedInitialization : : False ;
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else {
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if ( scope . definedType - > needInitialization = = Type : : NeedInitialization : : Unknown )
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unknowns + + ;
}
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}
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} else if ( scope . type = = Scope : : eUnion & & scope . definedType - > needInitialization = = Type : : NeedInitialization : : Unknown )
scope . definedType - > needInitialization = Type : : NeedInitialization : : True ;
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}
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retry + + ;
} while ( unknowns & & retry < 100 ) ;
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// this shouldn't happen so output a debug warning
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if ( retry = = 100 & & mSettings - > debugwarnings ) {
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for ( const Scope & scope : scopeList ) {
if ( scope . isClassOrStruct ( ) & & scope . definedType - > needInitialization = = Type : : NeedInitialization : : Unknown )
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debugMessage ( scope . classDef , " debug " , " SymbolDatabase couldn't resolve all user defined types. " ) ;
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}
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}
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}
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}
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void SymbolDatabase : : createSymbolDatabaseVariableSymbolTable ( )
{
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// create variable symbol table
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mVariableList . resize ( mTokenizer - > varIdCount ( ) + 1 ) ;
std : : fill_n ( mVariableList . begin ( ) , mVariableList . size ( ) , ( const Variable * ) nullptr ) ;
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// check all scopes for variables
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for ( Scope & scope : scopeList ) {
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// add all variables
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for ( std : : list < Variable > : : iterator var = scope . varlist . begin ( ) ; var ! = scope . varlist . end ( ) ; + + var ) {
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const unsigned int varId = var - > declarationId ( ) ;
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if ( varId )
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mVariableList [ varId ] = & ( * var ) ;
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// fix up variables without type
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if ( ! var - > type ( ) & & ! var - > typeStartToken ( ) - > isStandardType ( ) ) {
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const Type * type = findType ( var - > typeStartToken ( ) , & scope ) ;
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if ( type )
var - > type ( type ) ;
}
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}
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// add all function parameters
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for ( Function & func : scope . functionList ) {
for ( std : : list < Variable > : : iterator arg = func . argumentList . begin ( ) ; arg ! = func . argumentList . end ( ) ; + + arg ) {
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// check for named parameters
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if ( arg - > nameToken ( ) & & arg - > declarationId ( ) ) {
const unsigned int declarationId = arg - > declarationId ( ) ;
if ( declarationId > 0U )
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mVariableList [ declarationId ] = & ( * arg ) ;
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// fix up parameters without type
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if ( ! arg - > type ( ) & & ! arg - > typeStartToken ( ) - > isStandardType ( ) ) {
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const Type * type = findTypeInNested ( arg - > typeStartToken ( ) , & scope ) ;
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if ( type )
arg - > type ( type ) ;
}
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}
}
}
}
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// fill in missing variables if possible
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const std : : size_t functions = functionScopes . size ( ) ;
for ( std : : size_t i = 0 ; i < functions ; + + i ) {
const Scope * func = functionScopes [ i ] ;
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for ( const Token * tok = func - > bodyStart - > next ( ) ; tok & & tok ! = func - > bodyEnd ; tok = tok - > next ( ) ) {
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// check for member variable
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if ( tok - > varId ( ) & & tok - > next ( ) & &
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( tok - > next ( ) - > str ( ) = = " . " | |
( tok - > next ( ) - > str ( ) = = " [ " & & tok - > linkAt ( 1 ) - > strAt ( 1 ) = = " . " ) ) ) {
const Token * tok1 = tok - > next ( ) - > str ( ) = = " . " ? tok - > tokAt ( 2 ) : tok - > linkAt ( 1 ) - > tokAt ( 2 ) ;
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if ( tok1 & & tok1 - > varId ( ) & & mVariableList [ tok1 - > varId ( ) ] = = nullptr ) {
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const Variable * var = mVariableList [ tok - > varId ( ) ] ;
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if ( var & & var - > typeScope ( ) ) {
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// find the member variable of this variable
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const Variable * var1 = var - > typeScope ( ) - > getVariable ( tok1 - > str ( ) ) ;
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if ( var1 ) {
// add this variable to the look up table
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mVariableList [ tok1 - > varId ( ) ] = var1 ;
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}
}
}
}
}
}
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}
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void SymbolDatabase : : createSymbolDatabaseSetScopePointers ( )
{
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// Set scope pointers
for ( std : : list < Scope > : : iterator it = scopeList . begin ( ) ; it ! = scopeList . end ( ) ; + + it ) {
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Token * start = const_cast < Token * > ( it - > bodyStart ) ;
Token * end = const_cast < Token * > ( it - > bodyEnd ) ;
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if ( it - > type = = Scope : : eGlobal ) {
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start = const_cast < Token * > ( mTokenizer - > list . front ( ) ) ;
end = const_cast < Token * > ( mTokenizer - > list . back ( ) ) ;
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}
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assert ( start ) ;
assert ( end ) ;
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end - > scope ( & * it ) ;
for ( Token * tok = start ; tok ! = end ; tok = tok - > next ( ) ) {
if ( start ! = end & & tok - > str ( ) = = " { " ) {
bool isEndOfScope = false ;
for ( std : : list < Scope * > : : const_iterator innerScope = it - > nestedList . begin ( ) ; innerScope ! = it - > nestedList . end ( ) ; + + innerScope ) {
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if ( tok = = ( * innerScope ) - > bodyStart ) { // Is begin of inner scope
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tok = tok - > link ( ) ;
if ( tok - > next ( ) = = end | | ! tok - > next ( ) ) {
isEndOfScope = true ;
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break ;
}
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tok = tok - > next ( ) ;
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break ;
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}
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}
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if ( isEndOfScope )
break ;
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}
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tok - > scope ( & * it ) ;
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}
}
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}
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void SymbolDatabase : : createSymbolDatabaseSetFunctionPointers ( bool firstPass )
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{
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if ( firstPass ) {
// Set function definition and declaration pointers
for ( std : : list < Scope > : : iterator it = scopeList . begin ( ) ; it ! = scopeList . end ( ) ; + + it ) {
for ( std : : list < Function > : : const_iterator func = it - > functionList . begin ( ) ; func ! = it - > functionList . end ( ) ; + + func ) {
if ( func - > tokenDef )
const_cast < Token * > ( func - > tokenDef ) - > function ( & * func ) ;
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if ( func - > token )
const_cast < Token * > ( func - > token ) - > function ( & * func ) ;
}
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}
}
// Set function call pointers
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for ( const Token * tok = mTokenizer - > list . front ( ) ; tok ! = mTokenizer - > list . back ( ) ; tok = tok - > next ( ) ) {
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if ( tok - > isName ( ) & & ! tok - > function ( ) & & tok - > varId ( ) = = 0 & & Token : : Match ( tok , " %name% [(,)>] " ) & & ! isReservedName ( tok - > str ( ) ) ) {
if ( tok - > next ( ) - > str ( ) = = " > " & & ! tok - > next ( ) - > link ( ) )
continue ;
if ( tok - > next ( ) - > str ( ) ! = " ( " ) {
const Token * start = tok ;
while ( Token : : Match ( start - > tokAt ( - 2 ) , " %name% :: " ) )
start = start - > tokAt ( - 2 ) ;
if ( ! Token : : Match ( start - > previous ( ) , " [(,<] " ) & & ! Token : : Match ( start - > tokAt ( - 2 ) , " [(,<] & " ) )
continue ;
}
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const Function * function = findFunction ( tok ) ;
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if ( ! function )
continue ;
const_cast < Token * > ( tok ) - > function ( function ) ;
if ( tok - > next ( ) - > str ( ) ! = " ( " )
const_cast < Function * > ( function ) - > functionPointerUsage = tok ;
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}
}
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// Set C++ 11 delegate constructor function call pointers
for ( std : : list < Scope > : : iterator it = scopeList . begin ( ) ; it ! = scopeList . end ( ) ; + + it ) {
for ( std : : list < Function > : : const_iterator func = it - > functionList . begin ( ) ; func ! = it - > functionList . end ( ) ; + + func ) {
// look for initializer list
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if ( func - > isConstructor ( ) & & func - > functionScope & & func - > functionScope - > functionOf & & func - > arg ) {
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const Token * tok = func - > arg - > link ( ) - > next ( ) ;
if ( tok - > str ( ) = = " noexcept " ) {
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const Token * closingParenTok = tok - > linkAt ( 1 ) ;
if ( ! closingParenTok | | ! closingParenTok - > next ( ) ) {
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continue ;
}
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tok = closingParenTok - > next ( ) ;
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}
if ( tok - > str ( ) ! = " : " ) {
continue ;
}
tok = tok - > next ( ) ;
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while ( tok & & tok ! = func - > functionScope - > bodyStart ) {
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if ( Token : : Match ( tok , " %name% {|( " ) ) {
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if ( tok - > str ( ) = = func - > tokenDef - > str ( ) ) {
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const Function * function = func - > functionScope - > functionOf - > findFunction ( tok ) ;
if ( function )
const_cast < Token * > ( tok ) - > function ( function ) ;
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break ;
}
tok = tok - > linkAt ( 1 ) ;
}
tok = tok - > next ( ) ;
}
}
}
}
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}
2014-11-13 06:29:51 +01:00
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void SymbolDatabase : : createSymbolDatabaseSetTypePointers ( )
{
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std : : set < std : : string > typenames ;
for ( const Type & t : typeList ) {
typenames . insert ( t . name ( ) ) ;
}
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// Set type pointers
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for ( const Token * tok = mTokenizer - > list . front ( ) ; tok ! = mTokenizer - > list . back ( ) ; tok = tok - > next ( ) ) {
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if ( ! tok - > isName ( ) | | tok - > varId ( ) | | tok - > function ( ) | | tok - > type ( ) | | tok - > enumerator ( ) )
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continue ;
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if ( typenames . find ( tok - > str ( ) ) = = typenames . end ( ) )
continue ;
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const Type * type = findVariableType ( tok - > scope ( ) , tok ) ;
if ( type )
const_cast < Token * > ( tok ) - > type ( type ) ;
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}
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}
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2020-02-14 09:40:27 +01:00
void SymbolDatabase : : createSymbolDatabaseSetSmartPointerType ( )
{
for ( Scope & scope : scopeList ) {
for ( Variable & var : scope . varlist ) {
if ( var . valueType ( ) & & var . valueType ( ) - > smartPointerTypeToken & & ! var . valueType ( ) - > smartPointerType ) {
ValueType vt ( * var . valueType ( ) ) ;
vt . smartPointerType = vt . smartPointerTypeToken - > type ( ) ;
var . setValueType ( vt ) ;
}
}
}
}
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void SymbolDatabase : : fixVarId ( VarIdMap & varIds , const Token * vartok , Token * membertok , const Variable * membervar )
{
VarIdMap : : iterator varId = varIds . find ( vartok - > varId ( ) ) ;
if ( varId = = varIds . end ( ) ) {
MemberIdMap memberId ;
if ( membertok - > varId ( ) = = 0 ) {
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memberId [ membervar - > nameToken ( ) - > varId ( ) ] = const_cast < Tokenizer * > ( mTokenizer ) - > newVarId ( ) ;
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mVariableList . push_back ( membervar ) ;
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} else
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mVariableList [ membertok - > varId ( ) ] = membervar ;
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varIds . insert ( std : : make_pair ( vartok - > varId ( ) , memberId ) ) ;
varId = varIds . find ( vartok - > varId ( ) ) ;
}
MemberIdMap : : iterator memberId = varId - > second . find ( membervar - > nameToken ( ) - > varId ( ) ) ;
if ( memberId = = varId - > second . end ( ) ) {
if ( membertok - > varId ( ) = = 0 ) {
2018-06-16 16:10:28 +02:00
varId - > second . insert ( std : : make_pair ( membervar - > nameToken ( ) - > varId ( ) , const_cast < Tokenizer * > ( mTokenizer ) - > newVarId ( ) ) ) ;
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mVariableList . push_back ( membervar ) ;
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memberId = varId - > second . find ( membervar - > nameToken ( ) - > varId ( ) ) ;
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} else
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mVariableList [ membertok - > varId ( ) ] = membervar ;
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}
if ( membertok - > varId ( ) = = 0 )
membertok - > varId ( memberId - > second ) ;
}
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void SymbolDatabase : : createSymbolDatabaseSetVariablePointers ( )
{
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VarIdMap varIds ;
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// Set variable pointers
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for ( const Token * tok = mTokenizer - > list . front ( ) ; tok ! = mTokenizer - > list . back ( ) ; tok = tok - > next ( ) ) {
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if ( tok - > varId ( ) )
const_cast < Token * > ( tok ) - > variable ( getVariableFromVarId ( tok - > varId ( ) ) ) ;
// Set Token::variable pointer for array member variable
// Since it doesn't point at a fixed location it doesn't have varid
if ( tok - > variable ( ) ! = nullptr & &
2019-10-15 19:33:11 +02:00
( tok - > variable ( ) - > typeScope ( ) | | tok - > variable ( ) - > isSmartPointer ( ) | | ( tok - > valueType ( ) & & tok - > valueType ( ) - > type = = ValueType : : CONTAINER ) ) & &
2015-01-31 10:50:39 +01:00
Token : : Match ( tok , " %name% [|. " ) ) {
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Token * tok2 = tok - > next ( ) ;
// Locate "]"
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while ( tok2 & & tok2 - > str ( ) = = " [ " )
tok2 = tok2 - > link ( ) - > next ( ) ;
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Token * membertok = nullptr ;
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if ( Token : : Match ( tok2 , " . %name% " ) )
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membertok = tok2 - > next ( ) ;
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else if ( Token : : Match ( tok2 , " ) . %name% " ) & & tok - > strAt ( - 1 ) = = " ( " )
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membertok = tok2 - > tokAt ( 2 ) ;
if ( membertok ) {
const Variable * var = tok - > variable ( ) ;
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if ( var - > typeScope ( ) ) {
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const Variable * membervar = var - > typeScope ( ) - > getVariable ( membertok - > str ( ) ) ;
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if ( membervar ) {
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membertok - > variable ( membervar ) ;
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if ( membertok - > varId ( ) = = 0 | | mVariableList [ membertok - > varId ( ) ] = = nullptr )
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fixVarId ( varIds , tok , const_cast < Token * > ( membertok ) , membervar ) ;
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}
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} else if ( const : : Type * type = var - > smartPointerType ( ) ) {
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const Scope * classScope = type - > classScope ;
const Variable * membervar = classScope ? classScope - > getVariable ( membertok - > str ( ) ) : nullptr ;
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if ( membervar ) {
membertok - > variable ( membervar ) ;
if ( membertok - > varId ( ) = = 0 | | mVariableList [ membertok - > varId ( ) ] = = nullptr )
fixVarId ( varIds , tok , const_cast < Token * > ( membertok ) , membervar ) ;
}
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} else if ( tok - > valueType ( ) & & tok - > valueType ( ) - > type = = ValueType : : CONTAINER ) {
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if ( Token : : Match ( var - > typeStartToken ( ) , " std :: %type% < %type% *| *| > " ) ) {
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const Type * type2 = var - > typeStartToken ( ) - > tokAt ( 4 ) - > type ( ) ;
if ( type2 & & type2 - > classScope & & type2 - > classScope - > definedType ) {
const Variable * membervar = type2 - > classScope - > getVariable ( membertok - > str ( ) ) ;
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if ( membervar ) {
membertok - > variable ( membervar ) ;
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if ( membertok - > varId ( ) = = 0 | | mVariableList [ membertok - > varId ( ) ] = = nullptr )
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fixVarId ( varIds , tok , const_cast < Token * > ( membertok ) , membervar ) ;
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}
}
}
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}
}
}
// check for function returning record type
// func(...).var
// func(...)[...].var
else if ( tok - > function ( ) & & tok - > next ( ) - > str ( ) = = " ( " & &
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( Token : : Match ( tok - > next ( ) - > link ( ) , " ) . %name% !!( " ) | |
( Token : : Match ( tok - > next ( ) - > link ( ) , " ) [ " ) & & Token : : Match ( tok - > next ( ) - > link ( ) - > next ( ) - > link ( ) , " ] . %name% !!( " ) ) ) ) {
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const Type * type = tok - > function ( ) - > retType ;
if ( type ) {
Token * membertok ;
if ( tok - > next ( ) - > link ( ) - > next ( ) - > str ( ) = = " . " )
membertok = tok - > next ( ) - > link ( ) - > next ( ) - > next ( ) ;
else
membertok = tok - > next ( ) - > link ( ) - > next ( ) - > link ( ) - > next ( ) - > next ( ) ;
const Variable * membervar = membertok - > variable ( ) ;
if ( ! membervar ) {
if ( type - > classScope ) {
membervar = type - > classScope - > getVariable ( membertok - > str ( ) ) ;
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if ( membervar ) {
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membertok - > variable ( membervar ) ;
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if ( membertok - > varId ( ) = = 0 | | mVariableList [ membertok - > varId ( ) ] = = nullptr ) {
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if ( tok - > function ( ) - > retDef )
fixVarId ( varIds , tok - > function ( ) - > retDef , const_cast < Token * > ( membertok ) , membervar ) ;
}
}
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}
}
}
}
}
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}
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void SymbolDatabase : : createSymbolDatabaseEnums ( )
{
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// fill in enumerators in enum
for ( std : : list < Scope > : : iterator it = scopeList . begin ( ) ; it ! = scopeList . end ( ) ; + + it ) {
if ( it - > type ! = Scope : : eEnum )
continue ;
// add enumerators to enumerator tokens
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for ( Enumerator & i : it - > enumeratorList )
const_cast < Token * > ( i . name ) - > enumerator ( & i ) ;
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}
for ( std : : list < Scope > : : iterator it = scopeList . begin ( ) ; it ! = scopeList . end ( ) ; + + it ) {
if ( it - > type ! = Scope : : eEnum )
continue ;
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for ( Enumerator & enumerator : it - > enumeratorList ) {
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// look for initialization tokens that can be converted to enumerators and convert them
if ( enumerator . start ) {
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if ( ! enumerator . end )
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mTokenizer - > syntaxError ( enumerator . start ) ;
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for ( const Token * tok3 = enumerator . start ; tok3 & & tok3 ! = enumerator . end - > next ( ) ; tok3 = tok3 - > next ( ) ) {
if ( tok3 - > tokType ( ) = = Token : : eName ) {
const Enumerator * e = findEnumerator ( tok3 ) ;
if ( e )
const_cast < Token * > ( tok3 ) - > enumerator ( e ) ;
}
}
}
}
}
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// find enumerators
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for ( const Token * tok = mTokenizer - > list . front ( ) ; tok ! = mTokenizer - > list . back ( ) ; tok = tok - > next ( ) ) {
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if ( tok - > tokType ( ) ! = Token : : eName )
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continue ;
const Enumerator * enumerator = findEnumerator ( tok ) ;
if ( enumerator )
const_cast < Token * > ( tok ) - > enumerator ( enumerator ) ;
}
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}
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2019-08-05 07:18:06 +02:00
void SymbolDatabase : : createSymbolDatabaseIncompleteVars ( )
{
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static const std : : unordered_set < std : : string > cpp20keywords = {
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" alignas " ,
" alignof " ,
" axiom " ,
" co_await " ,
" co_return " ,
" co_yield " ,
" concept " ,
" synchronized " ,
" consteval " ,
" reflexpr " ,
" requires " ,
} ;
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static const std : : unordered_set < std : : string > cppkeywords = {
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" asm " ,
" auto " ,
" catch " ,
" char " ,
" class " ,
" const " ,
" constexpr " ,
" decltype " ,
" default " ,
" do " ,
" enum " ,
" explicit " ,
" export " ,
" extern " ,
" final " ,
" friend " ,
" inline " ,
" mutable " ,
" namespace " ,
" new " ,
" noexcept " ,
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" nullptr " ,
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" override " ,
" private " ,
" protected " ,
" public " ,
" register " ,
" sizeof " ,
" static " ,
" static_assert " ,
" struct " ,
" template " ,
" this " ,
" thread_local " ,
" throw " ,
" try " ,
" typedef " ,
" typeid " ,
" typename " ,
" union " ,
" using " ,
" virtual " ,
" void " ,
" volatile " ,
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" NULL " ,
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} ;
for ( const Token * tok = mTokenizer - > list . front ( ) ; tok ! = mTokenizer - > list . back ( ) ; tok = tok - > next ( ) ) {
const Scope * scope = tok - > scope ( ) ;
if ( ! scope )
continue ;
if ( ! scope - > isExecutable ( ) )
continue ;
if ( ! Token : : Match ( tok , " %name% " ) )
continue ;
if ( ! tok - > isNameOnly ( ) )
continue ;
if ( Token : : Match ( tok , " %var% " ) )
continue ;
if ( tok - > type ( ) )
continue ;
if ( Token : : Match ( tok - > next ( ) , " ::|.|(|:|%var% " ) )
continue ;
if ( Token : : Match ( tok - > next ( ) , " &|&&|* )|%var% " ) )
continue ;
if ( Token : : simpleMatch ( tok - > next ( ) , " ) " ) & & Token : : simpleMatch ( tok - > next ( ) - > link ( ) - > previous ( ) , " catch ( " ) )
continue ;
// Very likely a typelist
if ( Token : : Match ( tok - > tokAt ( - 2 ) , " %type% , " ) )
continue ;
// Inside template brackets
if ( Token : : Match ( tok - > next ( ) , " <|> " ) & & tok - > next ( ) - > link ( ) )
continue ;
if ( Token : : simpleMatch ( tok - > previous ( ) , " < " ) & & tok - > previous ( ) - > link ( ) )
continue ;
// Skip goto labels
if ( Token : : simpleMatch ( tok - > previous ( ) , " goto " ) )
continue ;
if ( cppkeywords . count ( tok - > str ( ) ) > 0 )
continue ;
if ( mSettings - > standards . cpp > = Standards : : CPP20 & & cpp20keywords . count ( tok - > str ( ) ) > 0 )
continue ;
const_cast < Token * > ( tok ) - > isIncompleteVar ( true ) ;
}
}
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void SymbolDatabase : : createSymbolDatabaseEscapeFunctions ( )
{
for ( Scope & scope : scopeList ) {
if ( scope . type ! = Scope : : eFunction )
continue ;
Function * function = scope . function ;
if ( ! function )
continue ;
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function - > isEscapeFunction ( isReturnScope ( scope . bodyEnd , & mSettings - > library , nullptr , true ) ) ;
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}
}
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void SymbolDatabase : : createSymbolDatabaseExprIds ( )
{
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nonneg int base = 0 ;
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// Find highest varId
for ( const Variable * var : mVariableList ) {
if ( ! var )
continue ;
base = std : : max < MathLib : : bigint > ( base , var - > declarationId ( ) ) ;
}
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nonneg int id = base + 1 ;
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for ( const Scope * scope : functionScopes ) {
std : : unordered_map < std : : string , std : : vector < Token * > > exprs ;
// Assign IDs
for ( Token * tok = const_cast < Token * > ( scope - > bodyStart ) ; tok ! = scope - > bodyEnd ; tok = tok - > next ( ) ) {
if ( tok - > varId ( ) > 0 ) {
tok - > exprId ( tok - > varId ( ) ) ;
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} else if ( Token : : Match ( tok , " (|.|[|%cop% " ) ) {
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exprs [ tok - > str ( ) ] . push_back ( tok ) ;
tok - > exprId ( id + + ) ;
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if ( id = = std : : numeric_limits < nonneg int > : : max ( ) ) {
throw InternalError ( nullptr , " Ran out of expression ids. " , InternalError : : INTERNAL ) ;
}
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}
}
// Apply CSE
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for ( const auto & p : exprs ) {
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const std : : vector < Token * > & tokens = p . second ;
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for ( Token * tok1 : tokens ) {
for ( Token * tok2 : tokens ) {
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if ( tok1 = = tok2 )
continue ;
if ( tok1 - > exprId ( ) = = tok2 - > exprId ( ) )
continue ;
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if ( ! isSameExpression ( isCPP ( ) , true , tok1 , tok2 , mSettings - > library , false , false ) )
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continue ;
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nonneg int cid = std : : min ( tok1 - > exprId ( ) , tok2 - > exprId ( ) ) ;
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tok1 - > exprId ( cid ) ;
tok2 - > exprId ( cid ) ;
}
}
}
}
}
2019-03-15 19:00:42 +01:00
void SymbolDatabase : : setArrayDimensionsUsingValueFlow ( )
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{
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// set all unknown array dimensions
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for ( const Variable * var : mVariableList ) {
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// check each array variable
2019-03-14 19:57:58 +01:00
if ( ! var | | ! var - > isArray ( ) )
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continue ;
// check each array dimension
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for ( const Dimension & const_dimension : var - > dimensions ( ) ) {
Dimension & dimension = const_cast < Dimension & > ( const_dimension ) ;
2019-03-15 19:00:42 +01:00
if ( dimension . num ! = 0 | | ! dimension . tok )
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continue ;
2020-02-19 07:36:02 +01:00
if ( Token : : Match ( dimension . tok - > previous ( ) , " [<,] " ) ) {
if ( dimension . known )
continue ;
if ( ! Token : : Match ( dimension . tok - > previous ( ) , " [<,] " ) )
continue ;
// In template arguments, there might not be AST
// Determine size by using the "raw tokens"
TokenList tokenList ( mSettings ) ;
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tokenList . addtoken ( " ; " , 0 , 0 , 0 , false ) ;
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bool fail = false ;
for ( const Token * tok = dimension . tok ; tok & & ! Token : : Match ( tok , " [,>] " ) ; tok = tok - > next ( ) ) {
if ( ! tok - > isName ( ) )
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tokenList . addtoken ( tok - > str ( ) , 0 , 0 , 0 , false ) ;
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else if ( tok - > hasKnownIntValue ( ) )
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tokenList . addtoken ( std : : to_string ( tok - > getKnownIntValue ( ) ) , 0 , 0 , 0 , false ) ;
2020-02-19 07:36:02 +01:00
else {
fail = true ;
break ;
}
}
if ( fail )
continue ;
2020-12-08 10:34:23 +01:00
tokenList . addtoken ( " ; " , 0 , 0 , 0 , false ) ;
2020-02-19 07:36:02 +01:00
for ( Token * tok = tokenList . front ( ) ; tok ; ) {
if ( TemplateSimplifier : : simplifyNumericCalculations ( tok , false ) )
tok = tokenList . front ( ) ;
else
tok = tok - > next ( ) ;
}
if ( Token : : Match ( tokenList . front ( ) , " ; %num% ; " ) ) {
dimension . known = true ;
dimension . num = MathLib : : toLongNumber ( tokenList . front ( ) - > next ( ) - > str ( ) ) ;
}
continue ;
}
// Normal array [..dimension..]
2019-03-14 19:53:45 +01:00
dimension . known = false ;
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// check for a single token dimension
if ( dimension . tok - > hasKnownIntValue ( ) ) {
dimension . known = true ;
dimension . num = dimension . tok - > getKnownIntValue ( ) ;
continue ;
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}
2019-03-14 19:53:45 +01:00
2019-03-15 19:00:42 +01:00
else if ( dimension . tok - > valueType ( ) & & dimension . tok - > valueType ( ) - > pointer = = 0 ) {
int bits = 0 ;
switch ( dimension . tok - > valueType ( ) - > type ) {
case ValueType : : Type : : CHAR :
bits = mSettings - > char_bit ;
break ;
case ValueType : : Type : : SHORT :
bits = mSettings - > short_bit ;
break ;
case ValueType : : Type : : INT :
bits = mSettings - > int_bit ;
break ;
case ValueType : : Type : : LONG :
bits = mSettings - > long_bit ;
break ;
case ValueType : : Type : : LONGLONG :
bits = mSettings - > long_long_bit ;
break ;
default :
break ;
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}
2019-03-14 19:53:45 +01:00
2019-06-15 13:23:21 +02:00
if ( bits > 0 & & bits < = 62 ) {
2019-03-16 19:41:13 +01:00
if ( dimension . tok - > valueType ( ) - > sign = = ValueType : : Sign : : UNSIGNED )
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dimension . num = 1LL < < bits ;
2019-03-16 19:41:13 +01:00
else
dimension . num = 1LL < < ( bits - 1 ) ;
2019-03-14 19:53:45 +01:00
}
}
2016-04-22 06:02:54 +02:00
}
}
2010-11-13 08:08:45 +01:00
}
2014-11-02 10:36:52 +01:00
SymbolDatabase : : ~ SymbolDatabase ( )
{
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// Clear scope, type, function and variable pointers
2018-06-16 16:10:28 +02:00
for ( const Token * tok = mTokenizer - > list . front ( ) ; tok ; tok = tok - > next ( ) ) {
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const_cast < Token * > ( tok ) - > scope ( nullptr ) ;
const_cast < Token * > ( tok ) - > type ( nullptr ) ;
const_cast < Token * > ( tok ) - > function ( nullptr ) ;
const_cast < Token * > ( tok ) - > variable ( nullptr ) ;
const_cast < Token * > ( tok ) - > enumerator ( nullptr ) ;
const_cast < Token * > ( tok ) - > setValueType ( nullptr ) ;
2014-11-02 10:36:52 +01:00
}
}
2016-07-17 15:47:32 +02:00
bool SymbolDatabase : : isFunction ( const Token * tok , const Scope * outerScope , const Token * * funcStart , const Token * * argStart , const Token * * declEnd ) const
2010-11-13 08:08:45 +01:00
{
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if ( tok - > varId ( ) )
return false ;
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// function returning function pointer? '... ( ... %name% ( ... ))( ... ) {'
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// function returning reference to array '... ( & %name% ( ... ))[ ... ] {'
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// TODO: Activate this again
if ( false & & tok - > str ( ) = = " ( " & & tok - > strAt ( 1 ) ! = " * " & &
2018-01-24 09:51:22 +01:00
( tok - > link ( ) - > previous ( ) - > str ( ) = = " ) " | | Token : : simpleMatch ( tok - > link ( ) - > tokAt ( - 2 ) , " ) const " ) ) ) {
2014-04-01 10:13:00 +02:00
const Token * tok2 = tok - > link ( ) - > next ( ) ;
if ( tok2 & & tok2 - > str ( ) = = " ( " & & Token : : Match ( tok2 - > link ( ) - > next ( ) , " {|;|const|= " ) ) {
2018-01-24 09:51:22 +01:00
const Token * argStartTok ;
if ( tok - > link ( ) - > previous ( ) - > str ( ) = = " const " )
argStartTok = tok - > link ( ) - > linkAt ( - 2 ) ;
else
argStartTok = tok - > link ( ) - > linkAt ( - 1 ) ;
2014-11-30 13:00:27 +01:00
* funcStart = argStartTok - > previous ( ) ;
* argStart = argStartTok ;
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* declEnd = Token : : findmatch ( tok2 - > link ( ) - > next ( ) , " {|; " ) ;
2014-04-01 10:13:00 +02:00
return true ;
2018-01-24 09:51:22 +01:00
} else if ( tok2 & & tok2 - > str ( ) = = " [ " ) {
while ( tok2 & & tok2 - > str ( ) = = " [ " )
tok2 = tok2 - > link ( ) - > next ( ) ;
if ( Token : : Match ( tok2 , " {|;|const|= " ) ) {
const Token * argStartTok ;
if ( tok - > link ( ) - > previous ( ) - > str ( ) = = " const " )
argStartTok = tok - > link ( ) - > linkAt ( - 2 ) ;
else
argStartTok = tok - > link ( ) - > linkAt ( - 1 ) ;
* funcStart = argStartTok - > previous ( ) ;
* argStart = argStartTok ;
* declEnd = Token : : findmatch ( tok2 , " {|; " ) ;
return true ;
}
2014-04-01 10:13:00 +02:00
}
2010-11-13 08:08:45 +01:00
}
2020-05-17 17:32:31 +02:00
else if ( ! tok - > isName ( ) | | ! tok - > next ( ) | | ! tok - > next ( ) - > link ( ) )
return false ;
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// regular function?
2015-05-26 00:28:08 +02:00
else if ( Token : : Match ( tok , " %name% ( " ) & & ! isReservedName ( tok - > str ( ) ) & & tok - > previous ( ) & &
2016-11-18 22:01:15 +01:00
( Token : : Match ( tok - > previous ( ) , " %name%|>|&|*|::|~ " ) | | // Either a return type or scope qualifier in front of tok
2017-10-15 11:49:36 +02:00
outerScope - > isClassOrStructOrUnion ( ) ) ) { // or a ctor/dtor
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const Token * tok1 = tok - > previous ( ) ;
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const Token * tok2 = tok - > next ( ) - > link ( ) - > next ( ) ;
2015-02-24 06:11:31 +01:00
2018-06-16 16:10:28 +02:00
if ( ! mTokenizer - > isFunctionHead ( tok - > next ( ) , " ;:{ " ) )
2018-04-27 10:24:02 +02:00
return false ;
2015-02-24 06:11:31 +01:00
// skip over destructor "~"
if ( tok1 - > str ( ) = = " ~ " )
tok1 = tok1 - > previous ( ) ;
// skip over qualification
while ( Token : : simpleMatch ( tok1 , " :: " ) ) {
2016-12-06 22:11:40 +01:00
tok1 = tok1 - > previous ( ) ;
if ( Token : : Match ( tok1 , " %name% " ) )
tok1 = tok1 - > previous ( ) ;
else if ( tok1 & & tok1 - > str ( ) = = " > " & & tok1 - > link ( ) & & Token : : Match ( tok1 - > link ( ) - > previous ( ) , " %name% " ) )
tok1 = tok1 - > link ( ) - > tokAt ( - 2 ) ;
2015-02-24 06:11:31 +01:00
}
2018-05-10 07:40:01 +02:00
// skip over const, noexcept, throw, override, final and volatile specifiers
2018-12-13 06:34:10 +01:00
while ( Token : : Match ( tok2 , " const|noexcept|throw|override|final|volatile|&|&& " ) ) {
2016-07-17 15:47:32 +02:00
tok2 = tok2 - > next ( ) ;
if ( tok2 & & tok2 - > str ( ) = = " ( " )
tok2 = tok2 - > link ( ) - > next ( ) ;
}
2018-12-13 06:34:10 +01:00
// skip over trailing return type
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if ( tok2 & & tok2 - > str ( ) = = " . " ) {
for ( tok2 = tok2 - > next ( ) ; tok2 ; tok2 = tok2 - > next ( ) ) {
2018-12-13 06:34:10 +01:00
if ( Token : : Match ( tok2 , " ;|{|=|override|final " ) )
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break ;
if ( tok2 - > link ( ) & & Token : : Match ( tok2 , " <|[|( " ) )
tok2 = tok2 - > link ( ) ;
}
}
2015-04-04 11:33:25 +02:00
// done if constructor or destructor
if ( ! Token : : Match ( tok1 , " {|}|;|public:|protected:|private: " ) & & tok1 ) {
// skip over pointers and references
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while ( Token : : Match ( tok1 , " %type%|*|& " ) & & ! endsWith ( tok1 - > str ( ) , ' : ' ) & & ( ! isReservedName ( tok1 - > str ( ) ) | | tok1 - > str ( ) = = " const " ) )
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tok1 = tok1 - > previous ( ) ;
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// skip over template
if ( tok1 & & tok1 - > str ( ) = = " > " ) {
if ( tok1 - > link ( ) )
tok1 = tok1 - > link ( ) - > previous ( ) ;
else
return false ;
}
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// function can't have number or variable as return type
if ( tok1 & & ( tok1 - > isNumber ( ) | | tok1 - > varId ( ) ) )
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return false ;
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// skip over return type
if ( Token : : Match ( tok1 , " %name% " ) ) {
if ( tok1 - > str ( ) = = " return " )
return false ;
tok1 = tok1 - > previous ( ) ;
}
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// skip over qualification
while ( Token : : simpleMatch ( tok1 , " :: " ) ) {
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tok1 = tok1 - > previous ( ) ;
if ( Token : : Match ( tok1 , " %name% " ) )
tok1 = tok1 - > previous ( ) ;
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else if ( tok1 & & tok1 - > str ( ) = = " > " & & tok1 - > link ( ) & & Token : : Match ( tok1 - > link ( ) - > previous ( ) , " %name% " ) )
tok1 = tok1 - > link ( ) - > tokAt ( - 2 ) ;
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}
// skip over modifiers and other stuff
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while ( Token : : Match ( tok1 , " const|static|extern|template|virtual|struct|class|enum|%name% " ) ) {
// friend type func(); is not a function
if ( isCPP ( ) & & tok1 - > str ( ) = = " friend " & & tok2 - > str ( ) = = " ; " )
return false ;
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tok1 = tok1 - > previous ( ) ;
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}
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// should be at a sequence point if this is a function
if ( ! Token : : Match ( tok1 , " >|{|}|;|public:|protected:|private: " ) & & tok1 )
return false ;
}
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if ( tok2 & &
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( Token : : Match ( tok2 , " ;|{|= " ) | |
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( tok2 - > isUpperCaseName ( ) & & Token : : Match ( tok2 , " %name% ;|{ " ) ) | |
( tok2 - > isUpperCaseName ( ) & & Token : : Match ( tok2 , " %name% ( " ) & & tok2 - > next ( ) - > link ( ) - > strAt ( 1 ) = = " { " ) | |
Token : : Match ( tok2 , " : ::| %name% (|::|<|{ " ) | |
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Token : : Match ( tok2 , " &|&&| ;|{ " ) | |
Token : : Match ( tok2 , " = delete|default ; " ) ) ) {
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* funcStart = tok ;
* argStart = tok - > next ( ) ;
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* declEnd = Token : : findmatch ( tok2 , " {|; " ) ;
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return true ;
}
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}
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// UNKNOWN_MACRO(a,b) { ... }
else if ( outerScope - > type = = Scope : : eGlobal & &
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Token : : Match ( tok , " %name% ( " ) & &
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tok - > isUpperCaseName ( ) & &
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Token : : simpleMatch ( tok - > linkAt ( 1 ) , " ) { " ) & &
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( ! tok - > previous ( ) | | Token : : Match ( tok - > previous ( ) , " [;{}] " ) ) ) {
* funcStart = tok ;
* argStart = tok - > next ( ) ;
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* declEnd = tok - > linkAt ( 1 ) - > next ( ) ;
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return true ;
}
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// template constructor?
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else if ( Token : : Match ( tok , " %name% < " ) & & Token : : simpleMatch ( tok - > next ( ) - > link ( ) , " > ( " ) ) {
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const Token * tok2 = tok - > next ( ) - > link ( ) - > next ( ) - > link ( ) ;
if ( Token : : Match ( tok2 , " ) const| ;|{|= " ) | |
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Token : : Match ( tok2 , " ) : ::| %name% (|::|<|{ " ) | |
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Token : : Match ( tok2 , " ) const| noexcept {|;|( " ) ) {
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* funcStart = tok ;
* argStart = tok2 - > link ( ) ;
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* declEnd = Token : : findmatch ( tok2 - > next ( ) , " {|; " ) ;
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return true ;
}
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}
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// regular C function with missing return or invalid C++ ?
else if ( Token : : Match ( tok , " %name% ( " ) & & ! isReservedName ( tok - > str ( ) ) & &
Token : : simpleMatch ( tok - > linkAt ( 1 ) , " ) { " ) & &
( ! tok - > previous ( ) | | Token : : Match ( tok - > previous ( ) , " ;|} " ) ) ) {
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if ( mTokenizer - > isC ( ) ) {
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debugMessage ( tok , " debug " , " SymbolDatabase::isFunction found C function ' " + tok - > str ( ) + " ' without a return type. " ) ;
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* funcStart = tok ;
* argStart = tok - > next ( ) ;
* declEnd = tok - > linkAt ( 1 ) - > next ( ) ;
return true ;
}
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mTokenizer - > syntaxError ( tok ) ;
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}
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return false ;
}
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void SymbolDatabase : : validateExecutableScopes ( ) const
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{
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const std : : size_t functions = functionScopes . size ( ) ;
for ( std : : size_t i = 0 ; i < functions ; + + i ) {
const Scope * const scope = functionScopes [ i ] ;
const Function * const function = scope - > function ;
if ( scope - > isExecutable ( ) & & ! function ) {
const std : : list < const Token * > callstack ( 1 , scope - > classDef ) ;
const std : : string msg = std : : string ( " Executable scope ' " ) + scope - > classDef - > str ( ) + " ' with unknown function. " ;
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const ErrorMessage errmsg ( callstack , & mTokenizer - > list , Severity : : debug ,
" symbolDatabaseWarning " ,
msg ,
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Certainty : : normal ) ;
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mErrorLogger - > reportErr ( errmsg ) ;
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}
}
}
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namespace {
const Function * getFunctionForArgumentvariable ( const Variable * const var , const std : : vector < const Scope * > & functionScopes )
{
const std : : size_t functions = functionScopes . size ( ) ;
for ( std : : size_t i = 0 ; i < functions ; + + i ) {
const Scope * const scope = functionScopes [ i ] ;
const Function * const function = scope - > function ;
if ( function ) {
for ( std : : size_t arg = 0 ; arg < function - > argCount ( ) ; + + arg ) {
if ( var = = function - > getArgumentVar ( arg ) )
return function ;
}
}
}
return nullptr ;
}
}
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void SymbolDatabase : : validateVariables ( ) const
{
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for ( std : : vector < const Variable * > : : const_iterator iter = mVariableList . begin ( ) ; iter ! = mVariableList . end ( ) ; + + iter ) {
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const Variable * const var = * iter ;
if ( var ) {
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if ( ! var - > scope ( ) ) {
const Function * function = getFunctionForArgumentvariable ( var , functionScopes ) ;
if ( ! var - > isArgument ( ) | | ( function & & function - > hasBody ( ) ) ) {
throw InternalError ( var - > nameToken ( ) , " Analysis failed (variable without scope). If the code is valid then please report this failure. " , InternalError : : INTERNAL ) ;
//std::cout << "!!!Variable found without scope: " << var->nameToken()->str() << std::endl;
}
}
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}
}
}
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void SymbolDatabase : : validate ( ) const
{
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if ( mSettings - > debugwarnings ) {
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validateExecutableScopes ( ) ;
}
//validateVariables();
}
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void SymbolDatabase : : clangSetVariables ( const std : : vector < const Variable * > & variableList )
{
mVariableList = variableList ;
}
Variable : : Variable ( const Token * name_ , const std : : string & clangType , const Token * typeStart ,
const Token * typeEnd , nonneg int index_ , AccessControl access_ ,
const Type * type_ , const Scope * scope_ )
: mNameToken ( name_ ) ,
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mTypeStartToken ( typeStart ) ,
mTypeEndToken ( typeEnd ) ,
mIndex ( index_ ) ,
mAccess ( access_ ) ,
mFlags ( 0 ) ,
mType ( type_ ) ,
mScope ( scope_ ) ,
mValueType ( nullptr )
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{
if ( ! mTypeStartToken & & mTypeEndToken ) {
mTypeStartToken = mTypeEndToken ;
while ( Token : : Match ( mTypeStartToken - > previous ( ) , " %type%|*|& " ) )
mTypeStartToken = mTypeStartToken - > previous ( ) ;
}
while ( Token : : Match ( mTypeStartToken , " const|struct|static " ) ) {
if ( mTypeStartToken - > str ( ) = = " static " )
setFlag ( fIsStatic , true ) ;
mTypeStartToken = mTypeStartToken - > next ( ) ;
}
if ( Token : : simpleMatch ( mTypeEndToken , " & " ) )
setFlag ( fIsReference , true ) ;
else if ( Token : : simpleMatch ( mTypeEndToken , " && " ) ) {
setFlag ( fIsReference , true ) ;
setFlag ( fIsRValueRef , true ) ;
}
std : : string : : size_type pos = clangType . find ( " [ " ) ;
if ( pos ! = std : : string : : npos ) {
setFlag ( fIsArray , true ) ;
do {
const std : : string : : size_type pos1 = pos + 1 ;
pos = clangType . find ( " ] " , pos1 ) ;
Dimension dim ;
dim . tok = nullptr ;
dim . known = pos > pos1 ;
if ( pos > pos1 )
dim . num = MathLib : : toLongNumber ( clangType . substr ( pos1 , pos - pos1 ) ) ;
else
dim . num = 0 ;
mDimensions . push_back ( dim ) ;
+ + pos ;
} while ( pos < clangType . size ( ) & & clangType [ pos ] = = ' [ ' ) ;
}
// Is there initialization in variable declaration
const Token * initTok = mNameToken ? mNameToken - > next ( ) : nullptr ;
while ( initTok & & initTok - > str ( ) = = " [ " )
initTok = initTok - > link ( ) - > next ( ) ;
if ( Token : : Match ( initTok , " =|{ " ) | | ( initTok & & initTok - > isSplittedVarDeclEq ( ) ) )
setFlag ( fIsInit , true ) ;
}
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Variable : : Variable ( const Variable & var , const Scope * scope )
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: mValueType ( nullptr )
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{
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* this = var ;
mScope = scope ;
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}
Variable : : Variable ( const Variable & var )
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: mValueType ( nullptr )
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{
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* this = var ;
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}
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Variable : : ~ Variable ( )
{
delete mValueType ;
}
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Variable & Variable : : operator = ( const Variable & var )
{
if ( this = = & var )
return * this ;
mNameToken = var . mNameToken ;
mTypeStartToken = var . mTypeStartToken ;
mTypeEndToken = var . mTypeEndToken ;
mIndex = var . mIndex ;
mAccess = var . mAccess ;
mFlags = var . mFlags ;
mType = var . mType ;
mScope = var . mScope ;
mDimensions = var . mDimensions ;
delete mValueType ;
if ( var . mValueType )
mValueType = new ValueType ( * var . mValueType ) ;
else
mValueType = nullptr ;
return * this ;
}
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bool Variable : : isPointerArray ( ) const
{
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return isArray ( ) & & nameToken ( ) & & nameToken ( ) - > previous ( ) & & ( nameToken ( ) - > previous ( ) - > str ( ) = = " * " ) ;
}
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bool Variable : : isUnsigned ( ) const
{
return mValueType ? ( mValueType - > sign = = ValueType : : Sign : : UNSIGNED ) : mTypeStartToken - > isUnsigned ( ) ;
}
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const Token * Variable : : declEndToken ( ) const
{
Token const * declEnd = typeStartToken ( ) ;
while ( declEnd & & ! Token : : Match ( declEnd , " [;,)={] " ) ) {
if ( declEnd - > link ( ) & & Token : : Match ( declEnd , " (|[ " ) )
declEnd = declEnd - > link ( ) ;
declEnd = declEnd - > next ( ) ;
}
return declEnd ;
}
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void Variable : : evaluate ( const Settings * settings )
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{
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// Is there initialization in variable declaration
const Token * initTok = mNameToken ? mNameToken - > next ( ) : nullptr ;
while ( initTok & & initTok - > str ( ) = = " [ " )
initTok = initTok - > link ( ) - > next ( ) ;
if ( Token : : Match ( initTok , " =|{ " ) | | ( initTok & & initTok - > isSplittedVarDeclEq ( ) ) )
setFlag ( fIsInit , true ) ;
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if ( ! settings )
return ;
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const Library * const lib = & settings - > library ;
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if ( mNameToken )
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setFlag ( fIsArray , arrayDimensions ( settings ) ) ;
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if ( mTypeStartToken )
setValueType ( ValueType : : parseDecl ( mTypeStartToken , settings ) ) ;
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const Token * tok = mTypeStartToken ;
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while ( tok & & tok - > previous ( ) & & tok - > previous ( ) - > isName ( ) )
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tok = tok - > previous ( ) ;
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const Token * end = mTypeEndToken ;
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if ( end )
end = end - > next ( ) ;
while ( tok ! = end ) {
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if ( tok - > str ( ) = = " static " )
setFlag ( fIsStatic , true ) ;
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else if ( tok - > str ( ) = = " extern " )
setFlag ( fIsExtern , true ) ;
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else if ( tok - > str ( ) = = " volatile " | | Token : : simpleMatch ( tok , " std :: atomic < " ) )
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setFlag ( fIsVolatile , true ) ;
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else if ( tok - > str ( ) = = " mutable " )
setFlag ( fIsMutable , true ) ;
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else if ( tok - > str ( ) = = " const " )
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setFlag ( fIsConst , true ) ;
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else if ( tok - > str ( ) = = " constexpr " ) {
setFlag ( fIsConst , true ) ;
setFlag ( fIsStatic , true ) ;
} else if ( tok - > str ( ) = = " * " ) {
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setFlag ( fIsPointer , ! isArray ( ) | | Token : : Match ( tok - > previous ( ) , " ( * %name% ) " ) ) ;
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setFlag ( fIsConst , false ) ; // Points to const, isn't necessarily const itself
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} else if ( tok - > str ( ) = = " & " ) {
if ( isReference ( ) )
setFlag ( fIsRValueRef , true ) ;
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setFlag ( fIsReference , true ) ;
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} else if ( tok - > str ( ) = = " && " ) { // Before simplification, && isn't split up
setFlag ( fIsRValueRef , true ) ;
setFlag ( fIsReference , true ) ; // Set also fIsReference
}
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if ( tok - > isAttributeMaybeUnused ( ) ) {
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setFlag ( fIsMaybeUnused , true ) ;
}
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if ( tok - > str ( ) = = " < " & & tok - > link ( ) )
tok = tok - > link ( ) ;
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else
tok = tok - > next ( ) ;
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}
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while ( Token : : Match ( mTypeStartToken , " static|const|constexpr|volatile %any% " ) )
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mTypeStartToken = mTypeStartToken - > next ( ) ;
while ( mTypeEndToken & & mTypeEndToken - > previous ( ) & & Token : : Match ( mTypeEndToken , " const|volatile " ) )
mTypeEndToken = mTypeEndToken - > previous ( ) ;
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if ( mTypeStartToken ) {
std : : string strtype = mTypeStartToken - > str ( ) ;
for ( const Token * typeToken = mTypeStartToken ; Token : : Match ( typeToken , " %type% :: %type% " ) ; typeToken = typeToken - > tokAt ( 2 ) )
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strtype + = " :: " + typeToken - > strAt ( 2 ) ;
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setFlag ( fIsClass , ! lib - > podtype ( strtype ) & & ! mTypeStartToken - > isStandardType ( ) & & ! isEnumType ( ) & & ! isPointer ( ) & & ! isReference ( ) & & strtype ! = " ... " ) ;
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setFlag ( fIsStlType , Token : : simpleMatch ( mTypeStartToken , " std :: " ) ) ;
setFlag ( fIsStlString , isStlType ( ) & & ( Token : : Match ( mTypeStartToken - > tokAt ( 2 ) , " string|wstring|u16string|u32string !!:: " ) | | ( Token : : simpleMatch ( mTypeStartToken - > tokAt ( 2 ) , " basic_string < " ) & & ! Token : : simpleMatch ( mTypeStartToken - > linkAt ( 3 ) , " > :: " ) ) ) ) ;
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setFlag ( fIsSmartPointer , lib - > isSmartPointer ( mTypeStartToken ) ) ;
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}
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if ( mAccess = = AccessControl : : Argument ) {
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tok = mNameToken ;
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if ( ! tok ) {
// Argument without name
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tok = mTypeEndToken ;
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// back up to start of array dimensions
while ( tok & & tok - > str ( ) = = " ] " )
tok = tok - > link ( ) - > previous ( ) ;
// add array dimensions if present
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if ( tok & & tok - > next ( ) - > str ( ) = = " [ " )
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setFlag ( fIsArray , arrayDimensions ( settings ) ) ;
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}
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if ( ! tok )
return ;
tok = tok - > next ( ) ;
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while ( tok - > str ( ) = = " [ " )
tok = tok - > link ( ) ;
setFlag ( fHasDefault , tok - > str ( ) = = " = " ) ;
}
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// check for C++11 member initialization
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if ( mScope & & mScope - > isClassOrStruct ( ) ) {
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// type var = x or
// type var = {x}
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// type var = x; gets simplified to: type var ; var = x ;
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Token const * declEnd = declEndToken ( ) ;
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if ( ( Token : : Match ( declEnd , " ; %name% = " ) & & declEnd - > strAt ( 1 ) = = mNameToken - > str ( ) ) | |
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Token : : Match ( declEnd , " =|{ " ) )
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setFlag ( fHasDefault , true ) ;
}
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if ( mTypeStartToken ) {
if ( Token : : Match ( mTypeStartToken , " float|double " ) )
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setFlag ( fIsFloatType , true ) ;
}
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}
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void Variable : : setValueType ( const ValueType & valueType )
{
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if ( valueType . type = = ValueType : : Type : : UNKNOWN_TYPE ) {
const Token * declType = Token : : findsimplematch ( mTypeStartToken , " decltype ( " , mTypeEndToken ) ;
if ( declType & & ! declType - > next ( ) - > valueType ( ) )
return ;
}
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delete mValueType ;
mValueType = new ValueType ( valueType ) ;
if ( ( mValueType - > pointer > 0 ) & & ( ! isArray ( ) | | Token : : Match ( mNameToken - > previous ( ) , " ( * %name% ) " ) ) )
setFlag ( fIsPointer , true ) ;
setFlag ( fIsConst , mValueType - > constness & ( 1U < < mValueType - > pointer ) ) ;
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if ( mValueType - > smartPointerType )
setFlag ( fIsSmartPointer , true ) ;
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}
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const Type * Variable : : smartPointerType ( ) const
{
if ( ! isSmartPointer ( ) )
return nullptr ;
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if ( mValueType - > smartPointerType )
return mValueType - > smartPointerType ;
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// TODO: Cache result
const Token * ptrType = typeStartToken ( ) ;
while ( Token : : Match ( ptrType , " %name%|:: " ) )
ptrType = ptrType - > next ( ) ;
if ( Token : : Match ( ptrType , " < %name% > " ) )
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return ptrType - > scope ( ) - > findType ( ptrType - > next ( ) - > str ( ) ) ;
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return nullptr ;
}
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std : : string Variable : : getTypeName ( ) const
{
std : : string ret ;
// TODO: For known types, generate the full type name
for ( const Token * typeTok = mTypeStartToken ; Token : : Match ( typeTok , " %name%|:: " ) & & typeTok - > varId ( ) = = 0 ; typeTok = typeTok - > next ( ) )
ret + = typeTok - > str ( ) ;
return ret ;
}
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static bool isOperator ( const Token * tokenDef )
{
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if ( ! tokenDef )
return false ;
if ( tokenDef - > isOperatorKeyword ( ) )
return true ;
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const std : : string & name = tokenDef - > str ( ) ;
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return name . size ( ) > 8 & & name . compare ( 0 , 8 , " operator " ) = = 0 & & std : : strchr ( " +-*/%&|~^<>!=[( " , name [ 8 ] ) ;
}
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Function : : Function ( const Tokenizer * mTokenizer ,
const Token * tok ,
const Scope * scope ,
const Token * tokDef ,
const Token * tokArgDef )
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: tokenDef ( tokDef ) ,
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argDef ( tokArgDef ) ,
token ( nullptr ) ,
arg ( nullptr ) ,
retDef ( nullptr ) ,
retType ( nullptr ) ,
functionScope ( nullptr ) ,
nestedIn ( scope ) ,
initArgCount ( 0 ) ,
type ( eFunction ) ,
access ( AccessControl : : Public ) ,
noexceptArg ( nullptr ) ,
throwArg ( nullptr ) ,
templateDef ( nullptr ) ,
functionPointerUsage ( nullptr ) ,
mFlags ( 0 )
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{
// operator function
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if ( : : isOperator ( tokenDef ) ) {
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isOperator ( true ) ;
// 'operator =' is special
if ( tokenDef - > str ( ) = = " operator= " )
type = Function : : eOperatorEqual ;
}
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else if ( tokenDef - > str ( ) = = " [ " ) {
type = Function : : eLambda ;
}
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// class constructor/destructor
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else if ( ( ( tokenDef - > str ( ) = = scope - > className ) | |
( tokenDef - > str ( ) . substr ( 0 , scope - > className . size ( ) ) = = scope - > className & &
tokenDef - > str ( ) . size ( ) > scope - > className . size ( ) + 1 & &
tokenDef - > str ( ) [ scope - > className . size ( ) + 1 ] = = ' < ' ) ) & &
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scope - > type ! = Scope : : ScopeType : : eNamespace ) {
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// destructor
if ( tokenDef - > previous ( ) - > str ( ) = = " ~ " )
type = Function : : eDestructor ;
// constructor of any kind
else
type = Function : : eConstructor ;
isExplicit ( tokenDef - > previous ( ) - > str ( ) = = " explicit " ) ;
}
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const Token * tok1 = setFlags ( tok , scope ) ;
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// find the return type
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if ( ! isConstructor ( ) & & ! isDestructor ( ) & & ! isLambda ( ) ) {
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// @todo auto type deduction should be checked
// @todo attributes and exception specification can also precede trailing return type
if ( Token : : Match ( argDef - > link ( ) - > next ( ) , " const|volatile| &|&&| . " ) ) { // Trailing return type
hasTrailingReturnType ( true ) ;
if ( argDef - > link ( ) - > strAt ( 1 ) = = " . " )
retDef = argDef - > link ( ) - > tokAt ( 2 ) ;
else if ( argDef - > link ( ) - > strAt ( 2 ) = = " . " )
retDef = argDef - > link ( ) - > tokAt ( 3 ) ;
else if ( argDef - > link ( ) - > strAt ( 3 ) = = " . " )
retDef = argDef - > link ( ) - > tokAt ( 4 ) ;
} else {
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if ( tok1 - > str ( ) = = " > " )
tok1 = tok1 - > next ( ) ;
while ( Token : : Match ( tok1 , " extern|virtual|static|friend|struct|union|enum " ) )
tok1 = tok1 - > next ( ) ;
retDef = tok1 ;
}
}
const Token * end = argDef - > link ( ) ;
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// parse function attributes..
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tok = end - > next ( ) ;
while ( tok ) {
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if ( tok - > str ( ) = = " const " )
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isConst ( true ) ;
else if ( tok - > str ( ) = = " & " )
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hasLvalRefQualifier ( true ) ;
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else if ( tok - > str ( ) = = " && " )
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hasRvalRefQualifier ( true ) ;
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else if ( tok - > str ( ) = = " override " )
setFlag ( fHasOverrideSpecifier , true ) ;
else if ( tok - > str ( ) = = " final " )
setFlag ( fHasFinalSpecifier , true ) ;
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else if ( tok - > str ( ) = = " volatile " )
isVolatile ( true ) ;
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else if ( tok - > str ( ) = = " noexcept " ) {
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isNoExcept ( ! Token : : simpleMatch ( tok - > next ( ) , " ( false ) " ) ) ;
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if ( tok - > next ( ) - > str ( ) = = " ( " )
tok = tok - > linkAt ( 1 ) ;
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} else if ( Token : : simpleMatch ( tok , " throw ( " ) ) {
isThrow ( true ) ;
if ( tok - > strAt ( 2 ) ! = " ) " )
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throwArg = tok - > next ( ) ;
tok = tok - > linkAt ( 1 ) ;
} else if ( Token : : Match ( tok , " = 0|default|delete ; " ) ) {
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const std : : string & modifier = tok - > strAt ( 1 ) ;
isPure ( modifier = = " 0 " ) ;
isDefault ( modifier = = " default " ) ;
isDelete ( modifier = = " delete " ) ;
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} else if ( tok - > str ( ) = = " . " ) { // trailing return type
// skip over return type
while ( tok & & ! Token : : Match ( tok - > next ( ) , " ;|{|override|final " ) )
tok = tok - > next ( ) ;
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} else
break ;
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if ( tok )
tok = tok - > next ( ) ;
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}
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if ( mTokenizer - > isFunctionHead ( end , " :{ " ) ) {
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// assume implementation is inline (definition and implementation same)
token = tokenDef ;
arg = argDef ;
isInline ( true ) ;
hasBody ( true ) ;
}
}
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Function : : Function ( const Token * tokenDef , const std : : string & clangType )
: tokenDef ( tokenDef ) ,
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argDef ( nullptr ) ,
token ( nullptr ) ,
arg ( nullptr ) ,
retDef ( nullptr ) ,
retType ( nullptr ) ,
functionScope ( nullptr ) ,
nestedIn ( nullptr ) ,
initArgCount ( 0 ) ,
type ( eFunction ) ,
access ( AccessControl : : Public ) ,
noexceptArg ( nullptr ) ,
throwArg ( nullptr ) ,
templateDef ( nullptr ) ,
functionPointerUsage ( nullptr ) ,
mFlags ( 0 )
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{
// operator function
if ( : : isOperator ( tokenDef ) ) {
isOperator ( true ) ;
// 'operator =' is special
if ( tokenDef - > str ( ) = = " operator= " )
type = Function : : eOperatorEqual ;
}
setFlags ( tokenDef , tokenDef - > scope ( ) ) ;
if ( endsWith ( clangType , " const " , 6 ) )
isConst ( true ) ;
}
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const Token * Function : : setFlags ( const Token * tok1 , const Scope * scope )
{
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if ( tok1 - > isInline ( ) )
isInlineKeyword ( true ) ;
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// look for end of previous statement
while ( tok1 - > previous ( ) & & ! Token : : Match ( tok1 - > previous ( ) , " ;|}|{|public:|protected:|private: " ) ) {
tok1 = tok1 - > previous ( ) ;
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if ( tok1 - > isInline ( ) )
isInlineKeyword ( true ) ;
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// extern function
if ( tok1 - > str ( ) = = " extern " ) {
isExtern ( true ) ;
}
// virtual function
else if ( tok1 - > str ( ) = = " virtual " ) {
hasVirtualSpecifier ( true ) ;
}
// static function
else if ( tok1 - > str ( ) = = " static " ) {
isStatic ( true ) ;
if ( scope - > type = = Scope : : eNamespace | | scope - > type = = Scope : : eGlobal )
isStaticLocal ( true ) ;
}
// friend function
else if ( tok1 - > str ( ) = = " friend " ) {
isFriend ( true ) ;
}
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// constexpr function
else if ( tok1 - > str ( ) = = " constexpr " ) {
isConstexpr ( true ) ;
}
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// Function template
else if ( tok1 - > link ( ) & & tok1 - > str ( ) = = " > " & & Token : : simpleMatch ( tok1 - > link ( ) - > previous ( ) , " template < " ) ) {
templateDef = tok1 - > link ( ) - > previous ( ) ;
break ;
}
}
return tok1 ;
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}
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std : : string Function : : fullName ( ) const
{
std : : string ret = name ( ) ;
for ( const Scope * s = nestedIn ; s ; s = s - > nestedIn ) {
if ( ! s - > className . empty ( ) )
ret = s - > className + " :: " + ret ;
}
ret + = " ( " ;
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for ( const Variable & a : argumentList )
ret + = ( a . index ( ) = = 0 ? " " : " , " ) + a . name ( ) ;
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return ret + " ) " ;
}
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static std : : string qualifiedName ( const Scope * scope )
{
std : : string name = scope - > className ;
while ( scope - > nestedIn ) {
if ( ! scope - > nestedIn - > className . empty ( ) )
name = ( scope - > nestedIn - > className + " :: " ) + name ;
scope = scope - > nestedIn ;
}
return name ;
}
static bool usingNamespace ( const Scope * scope , const Token * first , const Token * second , int & offset )
{
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// check if qualifications match first before checking if using is needed
const Token * tok1 = first ;
const Token * tok2 = second ;
bool match = false ;
while ( Token : : Match ( tok1 , " %type% :: %type% " ) & & Token : : Match ( tok2 , " %type% :: %type% " ) ) {
if ( tok1 - > str ( ) = = tok2 - > str ( ) ) {
tok1 = tok1 - > tokAt ( 2 ) ;
tok2 = tok2 - > tokAt ( 2 ) ;
match = true ;
} else {
match = false ;
break ;
}
}
if ( match )
return false ;
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offset = 0 ;
std : : string name = first - > str ( ) ;
while ( Token : : Match ( first , " %type% :: %type% " ) ) {
if ( offset )
name + = ( " :: " + first - > str ( ) ) ;
offset + = 2 ;
first = first - > tokAt ( 2 ) ;
if ( first - > str ( ) = = second - > str ( ) ) {
break ;
}
}
if ( offset ) {
while ( scope ) {
for ( const auto & info : scope - > usingList ) {
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if ( info . scope ) {
if ( name = = qualifiedName ( info . scope ) )
return true ;
}
// no scope so get name from using
else {
const Token * start = info . start - > tokAt ( 2 ) ;
std : : string nsName ;
while ( start & & start - > str ( ) ! = " ; " ) {
if ( ! nsName . empty ( ) )
nsName + = " " ;
nsName + = start - > str ( ) ;
start = start - > next ( ) ;
}
if ( nsName = = name )
return true ;
}
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}
scope = scope - > nestedIn ;
}
}
return false ;
}
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static bool typesMatch (
const Scope * first_scope ,
const Token * first_token ,
const Scope * second_scope ,
const Token * second_token ,
const Token * * new_first ,
const Token * * new_second )
{
// get first type
const Type * first_type = first_scope - > check - > findType ( first_token , first_scope ) ;
if ( first_type ) {
// get second type
const Type * second_type = second_scope - > check - > findType ( second_token , second_scope ) ;
// check if types match
if ( first_type = = second_type ) {
const Token * tok1 = first_token ;
while ( tok1 & & tok1 - > str ( ) ! = first_type - > name ( ) )
tok1 = tok1 - > next ( ) ;
const Token * tok2 = second_token ;
while ( tok2 & & tok2 - > str ( ) ! = second_type - > name ( ) )
tok2 = tok2 - > next ( ) ;
// update parser token positions
if ( tok1 & & tok2 ) {
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* new_first = tok1 - > previous ( ) ;
* new_second = tok2 - > previous ( ) ;
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return true ;
}
}
}
return false ;
}
bool Function : : argsMatch ( const Scope * scope , const Token * first , const Token * second , const std : : string & path , nonneg int path_length ) const
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{
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const bool isCPP = scope - > check - > isCPP ( ) ;
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if ( ! isCPP ) // C does not support overloads
return true ;
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int arg_path_length = path_length ;
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int offset = 0 ;
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int openParen = 0 ;
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// check for () == (void) and (void) == ()
if ( ( Token : : simpleMatch ( first , " ( ) " ) & & Token : : simpleMatch ( second , " ( void ) " ) ) | |
( Token : : simpleMatch ( first , " ( void ) " ) & & Token : : simpleMatch ( second , " ( ) " ) ) )
return true ;
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while ( first - > str ( ) = = second - > str ( ) & &
first - > isLong ( ) = = second - > isLong ( ) & &
first - > isUnsigned ( ) = = second - > isUnsigned ( ) ) {
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if ( first - > str ( ) = = " ( " )
openParen + + ;
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// at end of argument list
else if ( first - > str ( ) = = " ) " ) {
if ( openParen = = 1 )
return true ;
else
- - openParen ;
}
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// skip optional type information
if ( Token : : Match ( first - > next ( ) , " struct|enum|union|class " ) )
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first = first - > next ( ) ;
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if ( Token : : Match ( second - > next ( ) , " struct|enum|union|class " ) )
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second = second - > next ( ) ;
// skip const on type passed by value
if ( Token : : Match ( first - > next ( ) , " const %type% %name%|,|) " ) & &
! Token : : Match ( first - > next ( ) , " const %type% %name%| [ " ) )
first = first - > next ( ) ;
if ( Token : : Match ( second - > next ( ) , " const %type% %name%|,|) " ) & &
! Token : : Match ( second - > next ( ) , " const %type% %name%| [ " ) )
second = second - > next ( ) ;
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// skip default value assignment
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else if ( first - > next ( ) - > str ( ) = = " = " ) {
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first = first - > nextArgument ( ) ;
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if ( first )
first = first - > tokAt ( - 2 ) ;
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if ( second - > next ( ) - > str ( ) = = " = " ) {
second = second - > nextArgument ( ) ;
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if ( second )
second = second - > tokAt ( - 2 ) ;
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if ( ! first | | ! second ) { // End of argument list (first or second)
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return ! first & & ! second ;
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}
} else if ( ! first ) { // End of argument list (first)
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return ! second - > nextArgument ( ) ; // End of argument list (second)
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}
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} else if ( second - > next ( ) - > str ( ) = = " = " ) {
second = second - > nextArgument ( ) ;
if ( second )
second = second - > tokAt ( - 2 ) ;
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if ( ! second ) { // End of argument list (second)
return false ;
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}
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}
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// definition missing variable name
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else if ( ( first - > next ( ) - > str ( ) = = " , " & & second - > next ( ) - > str ( ) ! = " , " ) | |
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( Token : : Match ( first , " !!( ) " ) & & second - > next ( ) - > str ( ) ! = " ) " ) ) {
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second = second - > next ( ) ;
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// skip default value assignment
if ( second - > next ( ) - > str ( ) = = " = " ) {
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do {
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second = second - > next ( ) ;
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} while ( ! Token : : Match ( second - > next ( ) , " ,|) " ) ) ;
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}
} else if ( first - > next ( ) - > str ( ) = = " [ " & & second - > next ( ) - > str ( ) ! = " [ " )
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second = second - > next ( ) ;
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// function missing variable name
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else if ( ( second - > next ( ) - > str ( ) = = " , " & & first - > next ( ) - > str ( ) ! = " , " ) | |
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( Token : : Match ( second , " !!( ) " ) & & first - > next ( ) - > str ( ) ! = " ) " ) ) {
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first = first - > next ( ) ;
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// skip default value assignment
if ( first - > next ( ) - > str ( ) = = " = " ) {
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do {
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first = first - > next ( ) ;
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} while ( ! Token : : Match ( first - > next ( ) , " ,|) " ) ) ;
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}
} else if ( second - > next ( ) - > str ( ) = = " [ " & & first - > next ( ) - > str ( ) ! = " [ " )
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first = first - > next ( ) ;
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// argument list has different number of arguments
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else if ( openParen = = 1 & & second - > str ( ) = = " ) " & & first - > str ( ) ! = " ) " )
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break ;
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// ckeck for type * x == type x[]
else if ( Token : : Match ( first - > next ( ) , " * %name%| ,|)|= " ) & &
Token : : Match ( second - > next ( ) , " %name%| [ ] ,|) " ) ) {
do {
first = first - > next ( ) ;
} while ( ! Token : : Match ( first - > next ( ) , " ,|) " ) ) ;
do {
second = second - > next ( ) ;
} while ( ! Token : : Match ( second - > next ( ) , " ,|) " ) ) ;
}
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// const after *
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else if ( first - > next ( ) - > str ( ) = = " * " & & second - > next ( ) - > str ( ) = = " * " & &
( ( first - > strAt ( 2 ) ! = " const " & & second - > strAt ( 2 ) = = " const " ) | |
( first - > strAt ( 2 ) = = " const " & & second - > strAt ( 2 ) ! = " const " ) ) ) {
if ( first - > strAt ( 2 ) ! = " const " ) {
first = first - > next ( ) ;
second = second - > tokAt ( 2 ) ;
} else {
first = first - > tokAt ( 2 ) ;
second = second - > next ( ) ;
}
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}
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// variable names are different
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else if ( ( Token : : Match ( first - > next ( ) , " %name% ,|)|=|[ " ) & &
Token : : Match ( second - > next ( ) , " %name% ,|)|[ " ) ) & &
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( first - > next ( ) - > str ( ) ! = second - > next ( ) - > str ( ) ) ) {
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// skip variable names
first = first - > next ( ) ;
second = second - > next ( ) ;
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// skip default value assignment
if ( first - > next ( ) - > str ( ) = = " = " ) {
do {
first = first - > next ( ) ;
} while ( ! Token : : Match ( first - > next ( ) , " ,|) " ) ) ;
}
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}
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// using namespace
else if ( usingNamespace ( scope , first - > next ( ) , second - > next ( ) , offset ) )
first = first - > tokAt ( offset ) ;
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// same type with different qualification
else if ( typesMatch ( scope , first - > next ( ) , nestedIn , second - > next ( ) , & first , & second ) )
;
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// variable with class path
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else if ( arg_path_length & & Token : : Match ( first - > next ( ) , " %name% " ) & & first - > strAt ( 1 ) ! = " const " ) {
std : : string param = path ;
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if ( Token : : simpleMatch ( second - > next ( ) , param . c_str ( ) , param . size ( ) ) ) {
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// check for redundant qualification before skipping it
if ( ! Token : : simpleMatch ( first - > next ( ) , param . c_str ( ) , param . size ( ) ) ) {
second = second - > tokAt ( int ( arg_path_length ) ) ;
arg_path_length = 0 ;
}
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}
// nested or base class variable
else if ( arg_path_length < = 2 & & Token : : Match ( first - > next ( ) , " %name% " ) & &
( Token : : Match ( second - > next ( ) , " %name% :: %name% " ) | |
( Token : : Match ( second - > next ( ) , " %name% < " ) & &
Token : : Match ( second - > linkAt ( 1 ) , " > :: %name% " ) ) ) & &
( ( second - > next ( ) - > str ( ) = = scope - > className ) | |
( scope - > definedType & & scope - > definedType - > isDerivedFrom ( second - > next ( ) - > str ( ) ) ) ) & &
( first - > next ( ) - > str ( ) = = second - > strAt ( 3 ) ) ) {
if ( Token : : Match ( second - > next ( ) , " %name% < " ) )
second = second - > linkAt ( 1 ) - > next ( ) ;
else
second = second - > tokAt ( 2 ) ;
}
// remove class name
2018-11-05 06:55:30 +01:00
else if ( arg_path_length > 2 & & first - > strAt ( 1 ) ! = second - > strAt ( 1 ) ) {
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std : : string short_path = path ;
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unsigned int short_path_length = arg_path_length ;
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// remove last " :: "
short_path . resize ( short_path . size ( ) - 4 ) ;
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short_path_length - - ;
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// remove last name
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std : : string : : size_type lastSpace = short_path . find_last_of ( ' ' ) ;
if ( lastSpace ! = std : : string : : npos ) {
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short_path . resize ( lastSpace + 1 ) ;
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short_path_length - - ;
if ( short_path [ short_path . size ( ) - 1 ] = = ' > ' ) {
short_path . resize ( short_path . size ( ) - 3 ) ;
while ( short_path [ short_path . size ( ) - 1 ] = = ' < ' ) {
lastSpace = short_path . find_last_of ( ' ' ) ;
short_path . resize ( lastSpace + 1 ) ;
short_path_length - - ;
}
}
}
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2018-05-01 07:32:19 +02:00
param = short_path ;
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if ( Token : : simpleMatch ( second - > next ( ) , param . c_str ( ) , param . size ( ) ) ) {
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second = second - > tokAt ( int ( short_path_length ) ) ;
arg_path_length = 0 ;
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}
}
}
first = first - > next ( ) ;
second = second - > next ( ) ;
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// reset path length
if ( first - > str ( ) = = " , " | | second - > str ( ) = = " , " )
arg_path_length = path_length ;
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}
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return false ;
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}
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static bool isUnknownType ( const Token * start , const Token * end )
{
while ( Token : : Match ( start , " const|volatile " ) )
start = start - > next ( ) ;
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start = skipScopeIdentifiers ( start ) ;
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if ( start - > tokAt ( 1 ) = = end & & ! start - > type ( ) & & ! start - > isStandardType ( ) )
return true ;
// TODO: Try to deduce the type of the expression
if ( Token : : Match ( start , " decltype|typeof " ) )
return true ;
return false ;
}
bool Function : : returnsConst ( const Function * function , bool unknown )
{
if ( ! function )
return false ;
if ( function - > type ! = Function : : eFunction )
return false ;
const Token * defEnd = function - > returnDefEnd ( ) ;
if ( Token : : findsimplematch ( function - > retDef , " const " , defEnd ) )
return true ;
// Check for unknown types, which could be a const
if ( isUnknownType ( function - > retDef , defEnd ) )
return unknown ;
return false ;
}
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bool Function : : returnsReference ( const Function * function , bool unknown )
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{
if ( ! function )
return false ;
if ( function - > type ! = Function : : eFunction )
return false ;
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const Token * defEnd = function - > returnDefEnd ( ) ;
if ( defEnd - > strAt ( - 1 ) = = " & " )
return true ;
// Check for unknown types, which could be a reference
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if ( isUnknownType ( function - > retDef , defEnd ) )
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return unknown ;
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return false ;
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}
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bool Function : : returnsVoid ( const Function * function , bool unknown )
{
if ( ! function )
return false ;
if ( function - > type ! = Function : : eFunction )
return false ;
const Token * defEnd = function - > returnDefEnd ( ) ;
if ( defEnd - > strAt ( - 1 ) = = " void " )
return true ;
// Check for unknown types, which could be a void type
if ( isUnknownType ( function - > retDef , defEnd ) )
return unknown ;
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if ( unknown ) {
// void STDCALL foo()
const Token * def ;
bool isVoid = false ;
for ( def = function - > retDef ; def & & def - > isName ( ) ; def = def - > next ( ) )
isVoid | = ( def - > str ( ) = = " void " ) ;
if ( isVoid & & def & & ! Token : : Match ( def , " *|&|&& " ) )
return true ;
}
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return false ;
}
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std : : vector < const Token * > Function : : findReturns ( const Function * f )
{
std : : vector < const Token * > result ;
if ( ! f )
return result ;
const Scope * scope = f - > functionScope ;
if ( ! scope )
return result ;
for ( const Token * tok = scope - > bodyStart - > next ( ) ; tok & & tok ! = scope - > bodyEnd ; tok = tok - > next ( ) ) {
if ( tok - > str ( ) = = " { " & & tok - > scope ( ) & &
( tok - > scope ( ) - > type = = Scope : : eLambda | | tok - > scope ( ) - > type = = Scope : : eClass ) ) {
tok = tok - > link ( ) ;
continue ;
}
if ( Token : : simpleMatch ( tok - > astParent ( ) , " return " ) ) {
result . push_back ( tok ) ;
}
// Skip lambda functions since the scope may not be set correctly
const Token * lambdaEndToken = findLambdaEndToken ( tok ) ;
if ( lambdaEndToken ) {
tok = lambdaEndToken ;
}
}
return result ;
}
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const Token * Function : : constructorMemberInitialization ( ) const
{
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if ( ! isConstructor ( ) | | ! arg )
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return nullptr ;
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if ( Token : : simpleMatch ( arg - > link ( ) , " ) : " ) )
return arg - > link ( ) - > next ( ) ;
if ( Token : : simpleMatch ( arg - > link ( ) , " ) noexcept ( " ) & & arg - > link ( ) - > linkAt ( 2 ) - > strAt ( 1 ) = = " : " )
return arg - > link ( ) - > linkAt ( 2 ) - > next ( ) ;
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return nullptr ;
}
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bool Function : : isSafe ( const Settings * settings ) const
{
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if ( settings - > safeChecks . externalFunctions ) {
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if ( nestedIn - > type = = Scope : : ScopeType : : eNamespace & & token - > fileIndex ( ) ! = 0 )
return true ;
if ( nestedIn - > type = = Scope : : ScopeType : : eGlobal & & ( token - > fileIndex ( ) ! = 0 | | ! isStatic ( ) ) )
return true ;
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}
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if ( settings - > safeChecks . internalFunctions ) {
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if ( nestedIn - > type = = Scope : : ScopeType : : eNamespace & & token - > fileIndex ( ) = = 0 )
return true ;
if ( nestedIn - > type = = Scope : : ScopeType : : eGlobal & & ( token - > fileIndex ( ) = = 0 | | isStatic ( ) ) )
return true ;
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}
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if ( settings - > safeChecks . classes & & access = = AccessControl : : Public & & ( nestedIn - > type = = Scope : : ScopeType : : eClass | | nestedIn - > type = = Scope : : ScopeType : : eStruct ) )
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return true ;
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return false ;
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}
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Function * SymbolDatabase : : addGlobalFunction ( Scope * & scope , const Token * & tok , const Token * argStart , const Token * funcStart )
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{
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Function * function = nullptr ;
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// Lambda functions are always unique
if ( tok - > str ( ) ! = " [ " ) {
for ( std : : multimap < std : : string , const Function * > : : iterator i = scope - > functionMap . find ( tok - > str ( ) ) ; i ! = scope - > functionMap . end ( ) & & i - > first = = tok - > str ( ) ; + + i ) {
const Function * f = i - > second ;
if ( f - > hasBody ( ) )
continue ;
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if ( f - > argsMatch ( scope , f - > argDef , argStart , emptyString , 0 ) ) {
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function = const_cast < Function * > ( i - > second ) ;
break ;
}
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}
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}
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if ( ! function )
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function = addGlobalFunctionDecl ( scope , tok , argStart , funcStart ) ;
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function - > arg = argStart ;
function - > token = funcStart ;
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function - > hasBody ( true ) ;
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addNewFunction ( & scope , & tok ) ;
if ( scope ) {
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scope - > function = function ;
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function - > functionScope = scope ;
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return function ;
}
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return nullptr ;
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}
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Function * SymbolDatabase : : addGlobalFunctionDecl ( Scope * & scope , const Token * tok , const Token * argStart , const Token * funcStart )
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{
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Function function ( mTokenizer , tok , scope , funcStart , argStart ) ;
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scope - > addFunction ( function ) ;
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return & scope - > functionList . back ( ) ;
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}
void SymbolDatabase : : addClassFunction ( Scope * * scope , const Token * * tok , const Token * argStart )
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{
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const bool destructor ( ( * tok ) - > previous ( ) - > str ( ) = = " ~ " ) ;
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const bool has_const ( argStart - > link ( ) - > strAt ( 1 ) = = " const " ) ;
const bool lval ( argStart - > link ( ) - > strAt ( has_const ? 2 : 1 ) = = " & " ) ;
const bool rval ( argStart - > link ( ) - > strAt ( has_const ? 2 : 1 ) = = " && " ) ;
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int count = 0 ;
std : : string path ;
unsigned int path_length = 0 ;
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const Token * tok1 = ( * tok ) ;
if ( destructor )
tok1 = tok1 - > previous ( ) ;
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// back up to head of path
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while ( tok1 & & tok1 - > previous ( ) & & tok1 - > previous ( ) - > str ( ) = = " :: " & & tok1 - > tokAt ( - 2 ) & &
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( ( tok1 - > tokAt ( - 2 ) - > isName ( ) & & ! tok1 - > tokAt ( - 2 ) - > isStandardType ( ) ) | |
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( tok1 - > strAt ( - 2 ) = = " > " & & tok1 - > linkAt ( - 2 ) & & Token : : Match ( tok1 - > linkAt ( - 2 ) - > previous ( ) , " %name% " ) ) ) ) {
count + + ;
const Token * tok2 = tok1 - > tokAt ( - 2 ) ;
if ( tok2 - > str ( ) = = " > " )
tok2 = tok2 - > link ( ) - > previous ( ) ;
if ( tok2 ) {
do {
path = tok1 - > previous ( ) - > str ( ) + " " + path ;
tok1 = tok1 - > previous ( ) ;
path_length + + ;
} while ( tok1 ! = tok2 ) ;
} else
return ; // syntax error ?
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}
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// syntax error?
if ( ! tok1 )
return ;
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// add global namespace if present
if ( tok1 - > strAt ( - 1 ) = = " :: " ) {
path_length + + ;
path . insert ( 0 , " :: " ) ;
}
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std : : list < Scope > : : iterator it1 ;
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// search for match
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for ( it1 = scopeList . begin ( ) ; it1 ! = scopeList . end ( ) ; + + it1 ) {
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Scope * scope1 = & ( * it1 ) ;
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bool match = false ;
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// check in namespace if using found
if ( * scope = = scope1 & & ! scope1 - > usingList . empty ( ) ) {
std : : list < Scope : : UsingInfo > : : const_iterator it2 ;
for ( it2 = scope1 - > usingList . begin ( ) ; it2 ! = scope1 - > usingList . end ( ) ; + + it2 ) {
if ( it2 - > scope ) {
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Function * func = findFunctionInScope ( tok1 , it2 - > scope , path , path_length ) ;
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if ( func ) {
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if ( ! func - > hasBody ( ) ) {
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const Token * closeParen = ( * tok ) - > next ( ) - > link ( ) ;
if ( closeParen ) {
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const Token * eq = mTokenizer - > isFunctionHead ( closeParen , " ; " ) ;
if ( eq & & Token : : simpleMatch ( eq - > tokAt ( - 2 ) , " = default ; " ) ) {
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func - > isDefault ( true ) ;
return ;
}
}
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func - > hasBody ( true ) ;
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func - > token = * tok ;
func - > arg = argStart ;
addNewFunction ( scope , tok ) ;
if ( * scope ) {
( * scope ) - > functionOf = func - > nestedIn ;
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( * scope ) - > function = func ;
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( * scope ) - > function - > functionScope = * scope ;
}
return ;
}
}
}
}
}
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if ( scope1 - > className = = tok1 - > str ( ) & & ( scope1 - > type ! = Scope : : eFunction ) ) {
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// do the scopes match (same scope) or do their names match (multiple namespaces)
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if ( ( * scope = = scope1 - > nestedIn ) | | ( * scope & &
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( * scope ) - > className = = scope1 - > nestedIn - > className & &
! ( * scope ) - > className . empty ( ) & &
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( * scope ) - > type = = scope1 - > nestedIn - > type ) ) {
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// nested scopes => check that they match
{
const Scope * s1 = * scope ;
const Scope * s2 = scope1 - > nestedIn ;
while ( s1 & & s2 ) {
if ( s1 - > className ! = s2 - > className )
break ;
s1 = s1 - > nestedIn ;
s2 = s2 - > nestedIn ;
}
// Not matching scopes
if ( s1 | | s2 )
continue ;
}
2011-01-21 07:42:41 +01:00
Scope * scope2 = scope1 ;
2010-11-13 08:08:45 +01:00
2018-05-01 07:32:19 +02:00
while ( scope2 & & count > 1 ) {
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count - - ;
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if ( tok1 - > strAt ( 1 ) = = " < " )
tok1 = tok1 - > linkAt ( 1 ) - > tokAt ( 2 ) ;
else
tok1 = tok1 - > tokAt ( 2 ) ;
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scope2 = scope2 - > findRecordInNestedList ( tok1 - > str ( ) ) ;
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}
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if ( count = = 1 & & scope2 ) {
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match = true ;
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scope1 = scope2 ;
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}
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}
}
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if ( match ) {
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for ( std : : multimap < std : : string , const Function * > : : iterator it = scope1 - > functionMap . find ( ( * tok ) - > str ( ) ) ; it ! = scope1 - > functionMap . end ( ) & & it - > first = = ( * tok ) - > str ( ) ; + + it ) {
Function * func = const_cast < Function * > ( it - > second ) ;
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if ( ! func - > hasBody ( ) ) {
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if ( func - > argsMatch ( scope1 , func - > argDef , ( * tok ) - > next ( ) , path , path_length ) ) {
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if ( func - > type = = Function : : eDestructor & & destructor ) {
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func - > hasBody ( true ) ;
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} else if ( func - > type ! = Function : : eDestructor & & ! destructor ) {
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// normal function?
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const Token * closeParen = ( * tok ) - > next ( ) - > link ( ) ;
if ( closeParen ) {
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const Token * eq = mTokenizer - > isFunctionHead ( closeParen , " ; " ) ;
if ( eq & & Token : : simpleMatch ( eq - > tokAt ( - 2 ) , " = default ; " ) ) {
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func - > isDefault ( true ) ;
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return ;
}
const bool hasConstKeyword = closeParen - > next ( ) - > str ( ) = = " const " ;
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if ( ( func - > isConst ( ) = = hasConstKeyword ) & &
( func - > hasLvalRefQualifier ( ) = = lval ) & &
( func - > hasRvalRefQualifier ( ) = = rval ) ) {
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func - > hasBody ( true ) ;
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}
}
}
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if ( func - > hasBody ( ) ) {
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func - > token = * tok ;
func - > arg = argStart ;
addNewFunction ( scope , tok ) ;
if ( * scope ) {
( * scope ) - > functionOf = scope1 ;
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( * scope ) - > function = func ;
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( * scope ) - > function - > functionScope = * scope ;
}
return ;
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}
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}
}
}
}
}
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// class function of unknown class
addNewFunction ( scope , tok ) ;
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}
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void SymbolDatabase : : addNewFunction ( Scope * * scope , const Token * * tok )
2010-11-13 08:08:45 +01:00
{
const Token * tok1 = * tok ;
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scopeList . emplace_back ( this , tok1 , * scope ) ;
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Scope * newScope = & scopeList . back ( ) ;
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2015-04-06 19:47:21 +02:00
// find start of function '{'
bool foundInitList = false ;
while ( tok1 & & tok1 - > str ( ) ! = " { " & & tok1 - > str ( ) ! = " ; " ) {
if ( tok1 - > link ( ) & & Token : : Match ( tok1 , " (|< " ) ) {
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tok1 = tok1 - > link ( ) ;
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} else if ( foundInitList & &
Token : : Match ( tok1 , " %name%|> { " ) & &
Token : : Match ( tok1 - > linkAt ( 1 ) , " } ,|{ " ) ) {
tok1 = tok1 - > linkAt ( 1 ) ;
} else {
if ( tok1 - > str ( ) = = " : " )
foundInitList = true ;
tok1 = tok1 - > next ( ) ;
}
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}
2010-11-13 08:08:45 +01:00
2015-04-06 19:47:21 +02:00
if ( tok1 & & tok1 - > str ( ) = = " { " ) {
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newScope - > bodyStart = tok1 ;
newScope - > bodyEnd = tok1 - > link ( ) ;
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// syntax error?
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if ( ! newScope - > bodyEnd ) {
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scopeList . pop_back ( ) ;
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while ( tok1 - > next ( ) )
tok1 = tok1 - > next ( ) ;
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* scope = nullptr ;
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* tok = tok1 ;
return ;
}
2015-09-04 16:00:44 +02:00
( * scope ) - > nestedList . push_back ( newScope ) ;
* scope = newScope ;
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* tok = tok1 ;
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} else {
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scopeList . pop_back ( ) ;
2014-02-16 10:32:10 +01:00
* scope = nullptr ;
* tok = nullptr ;
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}
2010-11-13 08:08:45 +01:00
}
2020-10-02 20:22:09 +02:00
bool Type : : isClassType ( ) const
{
return classScope & & classScope - > type = = Scope : : ScopeType : : eClass ;
}
bool Type : : isEnumType ( ) const
{
2020-10-30 18:32:35 +01:00
//We explicitly check for "enum" because a forward declared enum doesn't get its own scope
return ( classDef & & classDef - > str ( ) = = " enum " ) | |
( classScope & & classScope - > type = = Scope : : ScopeType : : eEnum ) ;
2020-10-02 20:22:09 +02:00
}
bool Type : : isStructType ( ) const
{
return classScope & & classScope - > type = = Scope : : ScopeType : : eStruct ;
}
bool Type : : isUnionType ( ) const
{
return classScope & & classScope - > type = = Scope : : ScopeType : : eUnion ;
}
2013-03-05 15:28:40 +01:00
const Token * Type : : initBaseInfo ( const Token * tok , const Token * tok1 )
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{
// goto initial '{'
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const Token * tok2 = tok1 ;
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while ( tok2 & & tok2 - > str ( ) ! = " { " ) {
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// skip unsupported templates
if ( tok2 - > str ( ) = = " < " )
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tok2 = tok2 - > link ( ) ;
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// check for base classes
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else if ( Token : : Match ( tok2 , " :|, " ) ) {
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tok2 = tok2 - > next ( ) ;
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// check for invalid code
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if ( ! tok2 | | ! tok2 - > next ( ) )
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return nullptr ;
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Type : : BaseInfo base ;
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if ( tok2 - > str ( ) = = " virtual " ) {
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base . isVirtual = true ;
tok2 = tok2 - > next ( ) ;
}
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if ( tok2 - > str ( ) = = " public " ) {
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base . access = AccessControl : : Public ;
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tok2 = tok2 - > next ( ) ;
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} else if ( tok2 - > str ( ) = = " protected " ) {
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base . access = AccessControl : : Protected ;
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tok2 = tok2 - > next ( ) ;
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} else if ( tok2 - > str ( ) = = " private " ) {
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base . access = AccessControl : : Private ;
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tok2 = tok2 - > next ( ) ;
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} else {
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if ( tok - > str ( ) = = " class " )
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base . access = AccessControl : : Private ;
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else if ( tok - > str ( ) = = " struct " )
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base . access = AccessControl : : Public ;
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}
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if ( ! tok2 )
return nullptr ;
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if ( tok2 - > str ( ) = = " virtual " ) {
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base . isVirtual = true ;
tok2 = tok2 - > next ( ) ;
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}
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if ( ! tok2 )
return nullptr ;
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base . nameTok = tok2 ;
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// handle global namespace
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if ( tok2 - > str ( ) = = " :: " ) {
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tok2 = tok2 - > next ( ) ;
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}
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// handle derived base classes
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while ( Token : : Match ( tok2 , " %name% :: " ) ) {
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tok2 = tok2 - > tokAt ( 2 ) ;
}
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if ( ! tok2 )
return nullptr ;
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base . name = tok2 - > str ( ) ;
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tok2 = tok2 - > next ( ) ;
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// add unhandled templates
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if ( tok2 & & tok2 - > link ( ) & & tok2 - > str ( ) = = " < " ) {
for ( const Token * const end = tok2 - > link ( ) - > next ( ) ; tok2 ! = end ; tok2 = tok2 - > next ( ) ) {
base . name + = tok2 - > str ( ) ;
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}
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}
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const Type * baseType = classScope - > check - > findType ( base . nameTok , enclosingScope ) ;
if ( baseType & & ! baseType - > findDependency ( this ) )
base . type = baseType ;
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// save pattern for base class name
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derivedFrom . push_back ( base ) ;
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} else
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tok2 = tok2 - > next ( ) ;
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}
return tok2 ;
}
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const std : : string & Type : : name ( ) const
{
const Token * next = classDef - > next ( ) ;
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if ( classScope & & classScope - > enumClass & & isEnumType ( ) )
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return next - > strAt ( 1 ) ;
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else if ( next - > str ( ) = = " class " )
return next - > strAt ( 1 ) ;
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else if ( next - > isName ( ) )
return next - > str ( ) ;
return emptyString ;
}
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void SymbolDatabase : : debugMessage ( const Token * tok , const std : : string & type , const std : : string & msg ) const
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{
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if ( tok & & mSettings - > debugwarnings ) {
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const std : : list < const Token * > locationList ( 1 , tok ) ;
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const ErrorMessage errmsg ( locationList , & mTokenizer - > list ,
Severity : : debug ,
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type ,
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msg ,
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Certainty : : normal ) ;
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if ( mErrorLogger )
mErrorLogger - > reportErr ( errmsg ) ;
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}
}
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const Function * Type : : getFunction ( const std : : string & funcName ) const
{
if ( classScope ) {
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const std : : multimap < std : : string , const Function * > : : const_iterator it = classScope - > functionMap . find ( funcName ) ;
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if ( it ! = classScope - > functionMap . end ( ) )
return it - > second ;
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}
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for ( const Type : : BaseInfo & i : derivedFrom ) {
if ( i . type ) {
const Function * const func = i . type - > getFunction ( funcName ) ;
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if ( func )
return func ;
}
}
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return nullptr ;
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}
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bool Type : : hasCircularDependencies ( std : : set < BaseInfo > * ancestors ) const
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{
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std : : set < BaseInfo > knownAncestors ;
if ( ! ancestors ) {
ancestors = & knownAncestors ;
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}
for ( std : : vector < BaseInfo > : : const_iterator parent = derivedFrom . begin ( ) ; parent ! = derivedFrom . end ( ) ; + + parent ) {
if ( ! parent - > type )
continue ;
else if ( this = = parent - > type )
return true ;
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else if ( ancestors - > find ( * parent ) ! = ancestors - > end ( ) )
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return true ;
else {
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ancestors - > insert ( * parent ) ;
if ( parent - > type - > hasCircularDependencies ( ancestors ) )
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return true ;
}
}
return false ;
}
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bool Type : : findDependency ( const Type * ancestor ) const
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{
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if ( this = = ancestor )
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return true ;
for ( std : : vector < BaseInfo > : : const_iterator parent = derivedFrom . begin ( ) ; parent ! = derivedFrom . end ( ) ; + + parent ) {
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if ( parent - > type & & ( parent - > type = = this | | parent - > type - > findDependency ( ancestor ) ) )
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return true ;
}
return false ;
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}
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bool Type : : isDerivedFrom ( const std : : string & ancestor ) const
{
for ( std : : vector < BaseInfo > : : const_iterator parent = derivedFrom . begin ( ) ; parent ! = derivedFrom . end ( ) ; + + parent ) {
if ( parent - > name = = ancestor )
return true ;
if ( parent - > type & & parent - > type - > isDerivedFrom ( ancestor ) )
return true ;
}
return false ;
}
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bool Variable : : arrayDimensions ( const Settings * settings )
2011-06-23 04:41:11 +02:00
{
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const Library : : Container * container = settings - > library . detectContainer ( mTypeStartToken ) ;
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if ( container & & container - > arrayLike_indexOp & & container - > size_templateArgNo > 0 ) {
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const Token * tok = Token : : findsimplematch ( mTypeStartToken , " < " ) ;
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if ( tok ) {
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Dimension dimension_ ;
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tok = tok - > next ( ) ;
for ( int i = 0 ; i < container - > size_templateArgNo & & tok ; i + + ) {
tok = tok - > nextTemplateArgument ( ) ;
}
2020-02-19 07:36:02 +01:00
if ( Token : : Match ( tok , " %num% [,>] " ) ) {
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dimension_ . tok = tok ;
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dimension_ . known = true ;
dimension_ . num = MathLib : : toLongNumber ( tok - > str ( ) ) ;
} else if ( tok ) {
dimension_ . tok = tok ;
dimension_ . known = false ;
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}
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mDimensions . push_back ( dimension_ ) ;
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return true ;
}
}
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2018-06-16 15:57:16 +02:00
const Token * dim = mNameToken ;
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if ( ! dim ) {
// Argument without name
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dim = mTypeEndToken ;
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// back up to start of array dimensions
while ( dim & & dim - > str ( ) = = " ] " )
dim = dim - > link ( ) - > previous ( ) ;
}
if ( dim )
dim = dim - > next ( ) ;
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if ( dim & & dim - > str ( ) = = " ) " )
dim = dim - > next ( ) ;
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2015-01-30 22:04:26 +01:00
bool arr = false ;
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while ( dim & & dim - > next ( ) & & dim - > str ( ) = = " [ " ) {
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Dimension dimension_ ;
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dimension_ . known = false ;
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// check for empty array dimension []
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if ( dim - > next ( ) - > str ( ) ! = " ] " ) {
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dimension_ . tok = dim - > astOperand2 ( ) ;
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ValueFlow : : valueFlowConstantFoldAST ( const_cast < Token * > ( dimension_ . tok ) , settings ) ;
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if ( dimension_ . tok & & dimension_ . tok - > hasKnownIntValue ( ) ) {
dimension_ . num = dimension_ . tok - > getKnownIntValue ( ) ;
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dimension_ . known = true ;
}
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}
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mDimensions . push_back ( dimension_ ) ;
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dim = dim - > link ( ) - > next ( ) ;
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arr = true ;
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}
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return arr ;
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}
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static std : : ostream & operator < < ( std : : ostream & s , Scope : : ScopeType type )
{
s < < ( type = = Scope : : eGlobal ? " Global " :
type = = Scope : : eClass ? " Class " :
type = = Scope : : eStruct ? " Struct " :
type = = Scope : : eUnion ? " Union " :
type = = Scope : : eNamespace ? " Namespace " :
type = = Scope : : eFunction ? " Function " :
type = = Scope : : eIf ? " If " :
type = = Scope : : eElse ? " Else " :
type = = Scope : : eFor ? " For " :
type = = Scope : : eWhile ? " While " :
type = = Scope : : eDo ? " Do " :
type = = Scope : : eSwitch ? " Switch " :
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type = = Scope : : eTry ? " Try " :
type = = Scope : : eCatch ? " Catch " :
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type = = Scope : : eUnconditional ? " Unconditional " :
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type = = Scope : : eLambda ? " Lambda " :
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type = = Scope : : eEnum ? " Enum " :
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" Unknown " ) ;
return s ;
}
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static std : : string accessControlToString ( const AccessControl & access )
{
switch ( access ) {
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case AccessControl : : Public :
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return " Public " ;
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case AccessControl : : Protected :
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return " Protected " ;
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case AccessControl : : Private :
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return " Private " ;
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case AccessControl : : Global :
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return " Global " ;
2019-07-23 14:29:02 +02:00
case AccessControl : : Namespace :
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return " Namespace " ;
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case AccessControl : : Argument :
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return " Argument " ;
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case AccessControl : : Local :
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return " Local " ;
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case AccessControl : : Throw :
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return " Throw " ;
}
return " Unknown " ;
}
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static std : : string tokenToString ( const Token * tok , const Tokenizer * tokenizer )
2015-01-09 21:34:57 +01:00
{
std : : ostringstream oss ;
if ( tok ) {
oss < < tok - > str ( ) < < " " ;
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oss < < tokenizer - > list . fileLine ( tok ) < < " " ;
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}
oss < < tok ;
return oss . str ( ) ;
}
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static std : : string scopeToString ( const Scope * scope , const Tokenizer * tokenizer )
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{
std : : ostringstream oss ;
if ( scope ) {
oss < < scope - > type < < " " ;
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if ( ! scope - > className . empty ( ) )
oss < < scope - > className < < " " ;
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if ( scope - > classDef )
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oss < < tokenizer - > list . fileLine ( scope - > classDef ) < < " " ;
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}
oss < < scope ;
return oss . str ( ) ;
}
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static std : : string tokenType ( const Token * tok )
{
std : : ostringstream oss ;
if ( tok ) {
if ( tok - > isUnsigned ( ) )
oss < < " unsigned " ;
else if ( tok - > isSigned ( ) )
oss < < " signed " ;
if ( tok - > isComplex ( ) )
oss < < " _Complex " ;
if ( tok - > isLong ( ) )
oss < < " long " ;
oss < < tok - > str ( ) ;
}
return oss . str ( ) ;
}
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void SymbolDatabase : : printVariable ( const Variable * var , const char * indent ) const
{
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std : : cout < < indent < < " mNameToken: " < < tokenToString ( var - > nameToken ( ) , mTokenizer ) < < std : : endl ;
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if ( var - > nameToken ( ) ) {
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std : : cout < < indent < < " declarationId: " < < var - > declarationId ( ) < < std : : endl ;
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}
2018-06-16 16:10:28 +02:00
std : : cout < < indent < < " mTypeStartToken: " < < tokenToString ( var - > typeStartToken ( ) , mTokenizer ) < < std : : endl ;
std : : cout < < indent < < " mTypeEndToken: " < < tokenToString ( var - > typeEndToken ( ) , mTokenizer ) < < std : : endl ;
2017-04-08 01:57:10 +02:00
2020-01-05 19:18:32 +01:00
if ( var - > typeStartToken ( ) ) {
const Token * autoTok = nullptr ;
std : : cout < < indent < < " " ;
for ( const Token * tok = var - > typeStartToken ( ) ; tok ! = var - > typeEndToken ( ) - > next ( ) ; tok = tok - > next ( ) ) {
std : : cout < < " " < < tokenType ( tok ) ;
if ( tok - > str ( ) = = " auto " )
autoTok = tok ;
}
std : : cout < < std : : endl ;
if ( autoTok ) {
const ValueType * valueType = autoTok - > valueType ( ) ;
std : : cout < < indent < < " auto valueType: " < < valueType < < std : : endl ;
if ( var - > typeStartToken ( ) - > valueType ( ) ) {
std : : cout < < indent < < " " < < valueType - > str ( ) < < std : : endl ;
}
}
} else if ( var - > valueType ( ) ) {
std : : cout < < indent < < " " < < var - > valueType ( ) - > str ( ) < < std : : endl ;
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}
2018-06-16 16:11:40 +02:00
std : : cout < < indent < < " mIndex: " < < var - > index ( ) < < std : : endl ;
2018-11-04 13:29:29 +01:00
std : : cout < < indent < < " mAccess: " < < accessControlToString ( var - > accessControl ( ) ) < < std : : endl ;
2018-06-16 16:14:34 +02:00
std : : cout < < indent < < " mFlags: " < < std : : endl ;
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std : : cout < < indent < < " isMutable: " < < var - > isMutable ( ) < < std : : endl ;
std : : cout < < indent < < " isStatic: " < < var - > isStatic ( ) < < std : : endl ;
std : : cout < < indent < < " isExtern: " < < var - > isExtern ( ) < < std : : endl ;
std : : cout < < indent < < " isLocal: " < < var - > isLocal ( ) < < std : : endl ;
std : : cout < < indent < < " isConst: " < < var - > isConst ( ) < < std : : endl ;
std : : cout < < indent < < " isClass: " < < var - > isClass ( ) < < std : : endl ;
std : : cout < < indent < < " isArray: " < < var - > isArray ( ) < < std : : endl ;
std : : cout < < indent < < " isPointer: " < < var - > isPointer ( ) < < std : : endl ;
std : : cout < < indent < < " isReference: " < < var - > isReference ( ) < < std : : endl ;
std : : cout < < indent < < " isRValueRef: " < < var - > isRValueReference ( ) < < std : : endl ;
std : : cout < < indent < < " hasDefault: " < < var - > hasDefault ( ) < < std : : endl ;
std : : cout < < indent < < " isStlType: " < < var - > isStlType ( ) < < std : : endl ;
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std : : cout < < indent < < " mType: " ;
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if ( var - > type ( ) ) {
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std : : cout < < var - > type ( ) - > type ( ) < < " " < < var - > type ( ) - > name ( ) ;
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std : : cout < < " " < < mTokenizer - > list . fileLine ( var - > type ( ) - > classDef ) ;
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std : : cout < < " " < < var - > type ( ) < < std : : endl ;
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} else
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std : : cout < < " none " < < std : : endl ;
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if ( var - > nameToken ( ) ) {
const ValueType * valueType = var - > nameToken ( ) - > valueType ( ) ;
std : : cout < < indent < < " valueType: " < < valueType < < std : : endl ;
if ( valueType ) {
std : : cout < < indent < < " " < < valueType - > str ( ) < < std : : endl ;
}
}
2018-06-16 20:29:17 +02:00
std : : cout < < indent < < " mScope: " < < scopeToString ( var - > scope ( ) , mTokenizer ) < < std : : endl ;
2012-01-05 18:22:54 +01:00
2018-06-16 20:23:58 +02:00
std : : cout < < indent < < " mDimensions: " ;
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for ( std : : size_t i = 0 ; i < var - > dimensions ( ) . size ( ) ; i + + ) {
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std : : cout < < " " < < var - > dimension ( i ) ;
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if ( ! var - > dimensions ( ) [ i ] . known )
std : : cout < < " ? " ;
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}
std : : cout < < std : : endl ;
}
void SymbolDatabase : : printOut ( const char * title ) const
{
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std : : cout < < std : : setiosflags ( std : : ios : : boolalpha ) ;
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if ( title )
std : : cout < < " \n ### " < < title < < " ### \n " ;
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for ( std : : list < Scope > : : const_iterator scope = scopeList . begin ( ) ; scope ! = scopeList . end ( ) ; + + scope ) {
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std : : cout < < " Scope: " < < & * scope < < " " < < scope - > type < < std : : endl ;
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std : : cout < < " className: " < < scope - > className < < std : : endl ;
2018-06-16 16:10:28 +02:00
std : : cout < < " classDef: " < < tokenToString ( scope - > classDef , mTokenizer ) < < std : : endl ;
std : : cout < < " bodyStart: " < < tokenToString ( scope - > bodyStart , mTokenizer ) < < std : : endl ;
std : : cout < < " bodyEnd: " < < tokenToString ( scope - > bodyEnd , mTokenizer ) < < std : : endl ;
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std : : list < Function > : : const_iterator func ;
// find the function body if not implemented inline
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for ( func = scope - > functionList . begin ( ) ; func ! = scope - > functionList . end ( ) ; + + func ) {
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std : : cout < < " Function: " < < & * func < < std : : endl ;
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std : : cout < < " name: " < < tokenToString ( func - > tokenDef , mTokenizer ) < < std : : endl ;
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std : : cout < < " type: " < < ( func - > type = = Function : : eConstructor ? " Constructor " :
func - > type = = Function : : eCopyConstructor ? " CopyConstructor " :
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func - > type = = Function : : eMoveConstructor ? " MoveConstructor " :
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func - > type = = Function : : eOperatorEqual ? " OperatorEqual " :
func - > type = = Function : : eDestructor ? " Destructor " :
func - > type = = Function : : eFunction ? " Function " :
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func - > type = = Function : : eLambda ? " Lambda " :
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" Unknown " ) < < std : : endl ;
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std : : cout < < " access: " < < accessControlToString ( func - > access ) < < std : : endl ;
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std : : cout < < " hasBody: " < < func - > hasBody ( ) < < std : : endl ;
std : : cout < < " isInline: " < < func - > isInline ( ) < < std : : endl ;
std : : cout < < " isConst: " < < func - > isConst ( ) < < std : : endl ;
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std : : cout < < " hasVirtualSpecifier: " < < func - > hasVirtualSpecifier ( ) < < std : : endl ;
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std : : cout < < " isPure: " < < func - > isPure ( ) < < std : : endl ;
std : : cout < < " isStatic: " < < func - > isStatic ( ) < < std : : endl ;
std : : cout < < " isStaticLocal: " < < func - > isStaticLocal ( ) < < std : : endl ;
std : : cout < < " isExtern: " < < func - > isExtern ( ) < < std : : endl ;
std : : cout < < " isFriend: " < < func - > isFriend ( ) < < std : : endl ;
std : : cout < < " isExplicit: " < < func - > isExplicit ( ) < < std : : endl ;
std : : cout < < " isDefault: " < < func - > isDefault ( ) < < std : : endl ;
std : : cout < < " isDelete: " < < func - > isDelete ( ) < < std : : endl ;
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std : : cout < < " hasOverrideSpecifier: " < < func - > hasOverrideSpecifier ( ) < < std : : endl ;
std : : cout < < " hasFinalSpecifier: " < < func - > hasFinalSpecifier ( ) < < std : : endl ;
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std : : cout < < " isNoExcept: " < < func - > isNoExcept ( ) < < std : : endl ;
std : : cout < < " isThrow: " < < func - > isThrow ( ) < < std : : endl ;
std : : cout < < " isOperator: " < < func - > isOperator ( ) < < std : : endl ;
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std : : cout < < " hasLvalRefQual: " < < func - > hasLvalRefQualifier ( ) < < std : : endl ;
std : : cout < < " hasRvalRefQual: " < < func - > hasRvalRefQualifier ( ) < < std : : endl ;
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std : : cout < < " isVariadic: " < < func - > isVariadic ( ) < < std : : endl ;
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std : : cout < < " isVolatile: " < < func - > isVolatile ( ) < < std : : endl ;
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std : : cout < < " hasTrailingReturnType: " < < func - > hasTrailingReturnType ( ) < < std : : endl ;
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std : : cout < < " attributes: " ;
if ( func - > isAttributeConst ( ) )
std : : cout < < " const " ;
if ( func - > isAttributePure ( ) )
std : : cout < < " pure " ;
if ( func - > isAttributeNoreturn ( ) )
std : : cout < < " noreturn " ;
if ( func - > isAttributeNothrow ( ) )
std : : cout < < " nothrow " ;
if ( func - > isAttributeConstructor ( ) )
std : : cout < < " constructor " ;
if ( func - > isAttributeDestructor ( ) )
std : : cout < < " destructor " ;
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if ( func - > isAttributeNodiscard ( ) )
std : : cout < < " nodiscard " ;
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std : : cout < < std : : endl ;
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std : : cout < < " noexceptArg: " < < ( func - > noexceptArg ? func - > noexceptArg - > str ( ) : " none " ) < < std : : endl ;
std : : cout < < " throwArg: " < < ( func - > throwArg ? func - > throwArg - > str ( ) : " none " ) < < std : : endl ;
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std : : cout < < " tokenDef: " < < tokenToString ( func - > tokenDef , mTokenizer ) < < std : : endl ;
std : : cout < < " argDef: " < < tokenToString ( func - > argDef , mTokenizer ) < < std : : endl ;
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if ( ! func - > isConstructor ( ) & & ! func - > isDestructor ( ) )
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std : : cout < < " retDef: " < < tokenToString ( func - > retDef , mTokenizer ) < < std : : endl ;
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if ( func - > retDef ) {
std : : cout < < " " ;
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for ( const Token * tok = func - > retDef ; tok & & tok ! = func - > tokenDef & & ! Token : : Match ( tok , " {|;|override|final " ) ; tok = tok - > next ( ) )
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std : : cout < < " " < < tokenType ( tok ) ;
std : : cout < < std : : endl ;
}
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std : : cout < < " retType: " < < func - > retType < < std : : endl ;
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if ( func - > tokenDef - > next ( ) - > valueType ( ) ) {
const ValueType * valueType = func - > tokenDef - > next ( ) - > valueType ( ) ;
std : : cout < < " valueType: " < < valueType < < std : : endl ;
if ( valueType ) {
std : : cout < < " " < < valueType - > str ( ) < < std : : endl ;
}
}
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if ( func - > hasBody ( ) ) {
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std : : cout < < " token: " < < tokenToString ( func - > token , mTokenizer ) < < std : : endl ;
std : : cout < < " arg: " < < tokenToString ( func - > arg , mTokenizer ) < < std : : endl ;
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}
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std : : cout < < " nestedIn: " < < scopeToString ( func - > nestedIn , mTokenizer ) < < std : : endl ;
std : : cout < < " functionScope: " < < scopeToString ( func - > functionScope , mTokenizer ) < < std : : endl ;
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std : : list < Variable > : : const_iterator var ;
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for ( var = func - > argumentList . begin ( ) ; var ! = func - > argumentList . end ( ) ; + + var ) {
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std : : cout < < " Variable: " < < & * var < < std : : endl ;
printVariable ( & * var , " " ) ;
}
}
std : : list < Variable > : : const_iterator var ;
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for ( var = scope - > varlist . begin ( ) ; var ! = scope - > varlist . end ( ) ; + + var ) {
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std : : cout < < " Variable: " < < & * var < < std : : endl ;
printVariable ( & * var , " " ) ;
}
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if ( scope - > type = = Scope : : eEnum ) {
std : : cout < < " enumType: " ;
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if ( scope - > enumType ) {
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std : : cout < < scope - > enumType - > stringify ( false , true , false ) ;
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} else
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std : : cout < < " int " ;
std : : cout < < std : : endl ;
std : : cout < < " enumClass: " < < scope - > enumClass < < std : : endl ;
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for ( const Enumerator & enumerator : scope - > enumeratorList ) {
std : : cout < < " Enumerator: " < < enumerator . name - > str ( ) < < " = " ;
if ( enumerator . value_known )
std : : cout < < enumerator . value ;
if ( enumerator . start ) {
const Token * tok = enumerator . start ;
std : : cout < < ( enumerator . value_known ? " " : " " ) < < " [ " < < tok - > str ( ) ;
while ( tok & & tok ! = enumerator . end ) {
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if ( tok - > next ( ) )
std : : cout < < " " < < tok - > next ( ) - > str ( ) ;
tok = tok - > next ( ) ;
}
std : : cout < < " ] " ;
}
std : : cout < < std : : endl ;
}
}
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std : : cout < < " nestedIn: " < < scope - > nestedIn ;
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if ( scope - > nestedIn ) {
std : : cout < < " " < < scope - > nestedIn - > type < < " "
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< < scope - > nestedIn - > className ;
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}
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std : : cout < < std : : endl ;
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std : : cout < < " definedType: " < < scope - > definedType < < std : : endl ;
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std : : cout < < " nestedList[ " < < scope - > nestedList . size ( ) < < " ] = ( " ;
std : : list < Scope * > : : const_iterator nsi ;
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std : : size_t count = scope - > nestedList . size ( ) ;
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for ( nsi = scope - > nestedList . begin ( ) ; nsi ! = scope - > nestedList . end ( ) ; + + nsi ) {
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std : : cout < < " " < < ( * nsi ) < < " " < < ( * nsi ) - > type < < " " < < ( * nsi ) - > className ;
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if ( count - - > 1 )
std : : cout < < " , " ;
}
std : : cout < < " ) " < < std : : endl ;
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std : : list < Scope : : UsingInfo > : : const_iterator use ;
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for ( use = scope - > usingList . begin ( ) ; use ! = scope - > usingList . end ( ) ; + + use ) {
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std : : cout < < " using: " < < use - > scope < < " " < < use - > start - > strAt ( 2 ) ;
const Token * tok1 = use - > start - > tokAt ( 3 ) ;
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while ( tok1 & & tok1 - > str ( ) = = " :: " ) {
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std : : cout < < " :: " < < tok1 - > strAt ( 1 ) ;
tok1 = tok1 - > tokAt ( 2 ) ;
}
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std : : cout < < " " < < mTokenizer - > list . fileLine ( use - > start ) < < std : : endl ;
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}
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std : : cout < < " functionOf: " < < scopeToString ( scope - > functionOf , mTokenizer ) < < std : : endl ;
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std : : cout < < " function: " < < scope - > function ;
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if ( scope - > function )
std : : cout < < " " < < scope - > function - > name ( ) ;
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std : : cout < < std : : endl ;
}
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for ( std : : list < Type > : : const_iterator type = typeList . begin ( ) ; type ! = typeList . end ( ) ; + + type ) {
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std : : cout < < " Type: " < < & ( * type ) < < std : : endl ;
std : : cout < < " name: " < < type - > name ( ) < < std : : endl ;
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std : : cout < < " classDef: " < < tokenToString ( type - > classDef , mTokenizer ) < < std : : endl ;
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std : : cout < < " classScope: " < < type - > classScope < < std : : endl ;
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std : : cout < < " enclosingScope: " < < type - > enclosingScope ;
if ( type - > enclosingScope ) {
std : : cout < < " " < < type - > enclosingScope - > type < < " "
< < type - > enclosingScope - > className ;
}
std : : cout < < std : : endl ;
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std : : cout < < " needInitialization: " < < ( type - > needInitialization = = Type : : NeedInitialization : : Unknown ? " Unknown " :
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type - > needInitialization = = Type : : NeedInitialization : : True ? " True " :
type - > needInitialization = = Type : : NeedInitialization : : False ? " False " :
" Invalid " ) < < std : : endl ;
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std : : cout < < " derivedFrom[ " < < type - > derivedFrom . size ( ) < < " ] = ( " ;
std : : size_t count = type - > derivedFrom . size ( ) ;
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for ( const Type : : BaseInfo & i : type - > derivedFrom ) {
if ( i . isVirtual )
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std : : cout < < " Virtual " ;
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std : : cout < < ( i . access = = AccessControl : : Public ? " Public " :
i . access = = AccessControl : : Protected ? " Protected " :
i . access = = AccessControl : : Private ? " Private " :
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" Unknown " ) ;
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if ( i . type )
std : : cout < < " " < < i . type ;
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else
std : : cout < < " Unknown " ;
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std : : cout < < " " < < i . name ;
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if ( count - - > 1 )
std : : cout < < " , " ;
}
std : : cout < < " ) " < < std : : endl ;
std : : cout < < " friendList[ " < < type - > friendList . size ( ) < < " ] = ( " ;
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for ( size_t i = 0 ; i < type - > friendList . size ( ) ; i + + ) {
if ( type - > friendList [ i ] . type )
std : : cout < < type - > friendList [ i ] . type ;
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else
std : : cout < < " Unknown " ;
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std : : cout < < ' ' ;
if ( type - > friendList [ i ] . nameEnd )
std : : cout < < type - > friendList [ i ] . nameEnd - > str ( ) ;
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if ( i + 1 < type - > friendList . size ( ) )
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std : : cout < < ' , ' ;
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}
std : : cout < < " ) " < < std : : endl ;
}
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for ( std : : size_t i = 1 ; i < mVariableList . size ( ) ; i + + ) {
std : : cout < < " mVariableList[ " < < i < < " ]: " < < mVariableList [ i ] ;
if ( mVariableList [ i ] ) {
std : : cout < < " " < < mVariableList [ i ] - > name ( ) < < " "
< < mTokenizer - > list . fileLine ( mVariableList [ i ] - > nameToken ( ) ) ;
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}
std : : cout < < std : : endl ;
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}
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std : : cout < < std : : resetiosflags ( std : : ios : : boolalpha ) ;
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}
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void SymbolDatabase : : printXml ( std : : ostream & out ) const
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{
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out < < std : : setiosflags ( std : : ios : : boolalpha ) ;
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std : : set < const Variable * > variables ;
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// Scopes..
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out < < " <scopes> " < < std : : endl ;
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for ( std : : list < Scope > : : const_iterator scope = scopeList . begin ( ) ; scope ! = scopeList . end ( ) ; + + scope ) {
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out < < " <scope " ;
out < < " id= \" " < < & * scope < < " \" " ;
out < < " type= \" " < < scope - > type < < " \" " ;
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if ( ! scope - > className . empty ( ) )
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out < < " className= \" " < < ErrorLogger : : toxml ( scope - > className ) < < " \" " ;
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if ( scope - > bodyStart )
out < < " bodyStart= \" " < < scope - > bodyStart < < ' \" ' ;
if ( scope - > bodyEnd )
out < < " bodyEnd= \" " < < scope - > bodyEnd < < ' \" ' ;
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if ( scope - > nestedIn )
out < < " nestedIn= \" " < < scope - > nestedIn < < " \" " ;
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if ( scope - > function )
out < < " function= \" " < < scope - > function < < " \" " ;
if ( scope - > functionList . empty ( ) & & scope - > varlist . empty ( ) )
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out < < " /> " < < std : : endl ;
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else {
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out < < ' > ' < < std : : endl ;
if ( ! scope - > functionList . empty ( ) ) {
out < < " <functionList> " < < std : : endl ;
for ( std : : list < Function > : : const_iterator function = scope - > functionList . begin ( ) ; function ! = scope - > functionList . end ( ) ; + + function ) {
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out < < " <function id= \" " < < & * function
< < " \" token= \" " < < function - > token
< < " \" tokenDef= \" " < < function - > tokenDef
< < " \" name= \" " < < ErrorLogger : : toxml ( function - > name ( ) ) < < ' \" ' ;
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out < < " type= \" " < < ( function - > type = = Function : : eConstructor ? " Constructor " :
function - > type = = Function : : eCopyConstructor ? " CopyConstructor " :
function - > type = = Function : : eMoveConstructor ? " MoveConstructor " :
function - > type = = Function : : eOperatorEqual ? " OperatorEqual " :
function - > type = = Function : : eDestructor ? " Destructor " :
function - > type = = Function : : eFunction ? " Function " :
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function - > type = = Function : : eLambda ? " Lambda " :
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" Unknown " ) < < ' \" ' ;
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if ( function - > nestedIn - > definedType ) {
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if ( function - > hasVirtualSpecifier ( ) )
out < < " hasVirtualSpecifier= \" true \" " ;
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else if ( function - > isImplicitlyVirtual ( ) )
out < < " isImplicitlyVirtual= \" true \" " ;
}
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if ( function - > isInlineKeyword ( ) )
out < < " isInlineKeyword= \" true \" " ;
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if ( function - > isStatic ( ) )
out < < " isStatic= \" true \" " ;
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if ( function - > argCount ( ) = = 0U )
out < < " /> " < < std : : endl ;
else {
out < < " > " < < std : : endl ;
for ( unsigned int argnr = 0 ; argnr < function - > argCount ( ) ; + + argnr ) {
const Variable * arg = function - > getArgumentVar ( argnr ) ;
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out < < " <arg nr= \" " < < argnr + 1 < < " \" variable= \" " < < arg < < " \" /> " < < std : : endl ;
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variables . insert ( arg ) ;
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}
out < < " </function> " < < std : : endl ;
}
}
out < < " </functionList> " < < std : : endl ;
}
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if ( ! scope - > varlist . empty ( ) ) {
out < < " <varlist> " < < std : : endl ;
for ( std : : list < Variable > : : const_iterator var = scope - > varlist . begin ( ) ; var ! = scope - > varlist . end ( ) ; + + var )
out < < " <var id= \" " < < & * var < < " \" /> " < < std : : endl ;
out < < " </varlist> " < < std : : endl ;
}
out < < " </scope> " < < std : : endl ;
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}
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}
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out < < " </scopes> " < < std : : endl ;
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// Variables..
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for ( const Variable * var : mVariableList )
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variables . insert ( var ) ;
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out < < " <variables> " < < std : : endl ;
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for ( const Variable * var : variables ) {
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if ( ! var )
continue ;
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out < < " <var id= \" " < < var < < ' \" ' ;
out < < " nameToken= \" " < < var - > nameToken ( ) < < ' \" ' ;
out < < " typeStartToken= \" " < < var - > typeStartToken ( ) < < ' \" ' ;
out < < " typeEndToken= \" " < < var - > typeEndToken ( ) < < ' \" ' ;
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out < < " access= \" " < < accessControlToString ( var - > mAccess ) < < ' \" ' ;
out < < " scope= \" " < < var - > scope ( ) < < ' \" ' ;
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if ( var - > valueType ( ) )
out < < " constness= \" " < < var - > valueType ( ) - > constness < < ' \" ' ;
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out < < " isArgument= \" " < < var - > isArgument ( ) < < ' \" ' ;
out < < " isArray= \" " < < var - > isArray ( ) < < ' \" ' ;
out < < " isClass= \" " < < var - > isClass ( ) < < ' \" ' ;
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out < < " isConst= \" " < < var - > isConst ( ) < < ' \" ' ;
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out < < " isExtern= \" " < < var - > isExtern ( ) < < ' \" ' ;
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out < < " isLocal= \" " < < var - > isLocal ( ) < < ' \" ' ;
out < < " isPointer= \" " < < var - > isPointer ( ) < < ' \" ' ;
out < < " isReference= \" " < < var - > isReference ( ) < < ' \" ' ;
out < < " isStatic= \" " < < var - > isStatic ( ) < < ' \" ' ;
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out < < " /> " < < std : : endl ;
}
out < < " </variables> " < < std : : endl ;
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out < < std : : resetiosflags ( std : : ios : : boolalpha ) ;
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}
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//---------------------------------------------------------------------------
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static const Type * findVariableTypeIncludingUsedNamespaces ( const SymbolDatabase * symbolDatabase , const Scope * scope , const Token * typeTok )
{
const Type * argType = symbolDatabase - > findVariableType ( scope , typeTok ) ;
if ( argType )
return argType ;
// look for variable type in any using namespace in this scope or above
while ( scope ) {
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for ( const Scope : : UsingInfo & ui : scope - > usingList ) {
if ( ui . scope ) {
argType = symbolDatabase - > findVariableType ( ui . scope , typeTok ) ;
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if ( argType )
return argType ;
}
}
scope = scope - > nestedIn ;
}
return nullptr ;
}
//---------------------------------------------------------------------------
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void Function : : addArguments ( const SymbolDatabase * symbolDatabase , const Scope * scope )
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{
// check for non-empty argument list "( ... )"
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const Token * start = arg ? arg : argDef ;
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if ( ! Token : : simpleMatch ( start , " ( " ) )
return ;
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if ( ! ( start & & start - > link ( ) ! = start - > next ( ) & & ! Token : : simpleMatch ( start , " ( void ) " ) ) )
return ;
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unsigned int count = 0 ;
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for ( const Token * tok = start - > next ( ) ; tok ; tok = tok - > next ( ) ) {
if ( Token : : Match ( tok , " ,|) " ) )
return ; // Syntax error
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const Token * startTok = tok ;
const Token * endTok = nullptr ;
const Token * nameTok = nullptr ;
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do {
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if ( Token : : simpleMatch ( tok , " decltype ( " ) ) {
tok = tok - > linkAt ( 1 ) - > next ( ) ;
continue ;
}
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if ( tok ! = startTok & & ! nameTok & & Token : : Match ( tok , " ( & %var% ) [ " ) ) {
nameTok = tok - > tokAt ( 2 ) ;
endTok = nameTok - > previous ( ) ;
tok = tok - > link ( ) ;
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} else if ( tok ! = startTok & & ! nameTok & & Token : : Match ( tok , " ( * %var% ) ( ) [ , ) ] " )) {
nameTok = tok - > tokAt ( 2 ) ;
endTok = nameTok - > previous ( ) ;
tok = tok - > link ( ) - > tokAt ( 2 ) ;
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} else if ( tok - > varId ( ) ! = 0 ) {
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nameTok = tok ;
endTok = tok - > previous ( ) ;
} else if ( tok - > str ( ) = = " [ " ) {
// skip array dimension(s)
tok = tok - > link ( ) ;
while ( tok - > next ( ) - > str ( ) = = " [ " )
tok = tok - > next ( ) - > link ( ) ;
} else if ( tok - > str ( ) = = " < " ) {
tok = tok - > link ( ) ;
if ( ! tok ) // something is wrong so just bail out
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return ;
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}
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tok = tok - > next ( ) ;
if ( ! tok ) // something is wrong so just bail
return ;
} while ( tok - > str ( ) ! = " , " & & tok - > str ( ) ! = " ) " & & tok - > str ( ) ! = " = " ) ;
const Token * typeTok = startTok ;
// skip over stuff to get to type
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while ( Token : : Match ( typeTok , " const|volatile|enum|struct|:: " ) )
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typeTok = typeTok - > next ( ) ;
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if ( Token : : Match ( typeTok , " ,|) " ) ) { // #8333
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symbolDatabase - > mTokenizer - > syntaxError ( typeTok ) ;
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}
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// skip over qualification
while ( Token : : Match ( typeTok , " %type% :: " ) )
typeTok = typeTok - > tokAt ( 2 ) ;
// check for argument with no name or missing varid
if ( ! endTok ) {
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if ( tok - > previous ( ) - > isName ( ) & & ! Token : : Match ( tok - > tokAt ( - 1 ) , " const|volatile " ) ) {
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if ( tok - > previous ( ) ! = typeTok ) {
nameTok = tok - > previous ( ) ;
endTok = nameTok - > previous ( ) ;
if ( hasBody ( ) )
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symbolDatabase - > debugMessage ( nameTok , " varid0 " , " Function::addArguments found argument \' " + nameTok - > str ( ) + " \' with varid 0. " ) ;
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} else
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endTok = typeTok ;
} else
endTok = tok - > previous ( ) ;
}
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const : : Type * argType = nullptr ;
if ( ! typeTok - > isStandardType ( ) ) {
argType = findVariableTypeIncludingUsedNamespaces ( symbolDatabase , scope , typeTok ) ;
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// save type
const_cast < Token * > ( typeTok ) - > type ( argType ) ;
}
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// skip default values
if ( tok - > str ( ) = = " = " ) {
do {
if ( tok - > link ( ) & & Token : : Match ( tok , " [{[(<] " ) )
tok = tok - > link ( ) ;
tok = tok - > next ( ) ;
} while ( tok - > str ( ) ! = " , " & & tok - > str ( ) ! = " ) " ) ;
}
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// skip over stuff before type
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while ( Token : : Match ( startTok , " enum|struct|const|volatile " ) )
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startTok = startTok - > next ( ) ;
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if ( startTok = = nameTok )
break ;
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argumentList . emplace_back ( nameTok , startTok , endTok , count + + , AccessControl : : Argument , argType , functionScope , symbolDatabase - > mSettings ) ;
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if ( tok - > str ( ) = = " ) " ) {
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// check for a variadic function or a variadic template function
if ( Token : : simpleMatch ( endTok , " ... " ) )
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isVariadic ( true ) ;
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break ;
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}
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}
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// count default arguments
for ( const Token * tok = argDef - > next ( ) ; tok & & tok ! = argDef - > link ( ) ; tok = tok - > next ( ) ) {
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if ( tok - > str ( ) = = " = " ) {
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initArgCount + + ;
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if ( tok - > strAt ( 1 ) = = " [ " ) {
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const Token * lambdaStart = tok - > next ( ) ;
tok = findLambdaEndToken ( lambdaStart ) ;
if ( ! tok )
throw InternalError ( lambdaStart , " Analysis failed (lambda not recognized) . If the code is valid then please report this failure . " , InternalError::INTERNAL) ;
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}
}
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}
}
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bool Function : : isImplicitlyVirtual ( bool defaultVal ) const
{
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if ( hasVirtualSpecifier ( ) ) //If it has the virtual specifier it's definitely virtual
return true ;
if ( hasOverrideSpecifier ( ) ) //If it has the override specifier then it's either virtual or not going to compile
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return true ;
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bool foundAllBaseClasses = true ;
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if ( getOverriddenFunction ( & foundAllBaseClasses ) ) //If it overrides a base class's method then it's virtual
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return true ;
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if ( foundAllBaseClasses ) //If we've seen all the base classes and none of the above were true then it must not be virtual
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return false ;
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return defaultVal ; //If we can't see all the bases classes then we can't say conclusively
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}
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std : : vector < const Function * > Function : : getOverloadedFunctions ( ) const
{
std : : vector < const Function * > result ;
const Scope * scope = nestedIn ;
while ( scope ) {
const bool isMemberFunction = scope - > isClassOrStruct ( ) & & ! isStatic ( ) ;
for ( std : : multimap < std : : string , const Function * > : : const_iterator it = scope - > functionMap . find ( tokenDef - > str ( ) ) ;
it ! = scope - > functionMap . end ( ) & & it - > first = = tokenDef - > str ( ) ;
+ + it ) {
const Function * func = it - > second ;
if ( isMemberFunction = = func - > isStatic ( ) )
continue ;
result . push_back ( func ) ;
}
if ( isMemberFunction )
break ;
scope = scope - > nestedIn ;
}
return result ;
}
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const Function * Function : : getOverriddenFunction ( bool * foundAllBaseClasses ) const
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{
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if ( foundAllBaseClasses )
* foundAllBaseClasses = true ;
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if ( ! nestedIn - > isClassOrStruct ( ) )
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return nullptr ;
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return getOverriddenFunctionRecursive ( nestedIn - > definedType , foundAllBaseClasses ) ;
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}
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const Function * Function : : getOverriddenFunctionRecursive ( const : : Type * baseType , bool * foundAllBaseClasses ) const
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{
// check each base class
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for ( const : : Type : : BaseInfo & i : baseType - > derivedFrom ) {
const : : Type * derivedFromType = i . type ;
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// check if base class exists in database
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if ( ! derivedFromType | | ! derivedFromType - > classScope ) {
if ( foundAllBaseClasses )
* foundAllBaseClasses = false ;
continue ;
}
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const Scope * parent = derivedFromType - > classScope ;
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// check if function defined in base class
for ( std : : multimap < std : : string , const Function * > : : const_iterator it = parent - > functionMap . find ( tokenDef - > str ( ) ) ; it ! = parent - > functionMap . end ( ) & & it - > first = = tokenDef - > str ( ) ; + + it ) {
const Function * func = it - > second ;
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if ( func - > hasVirtualSpecifier ( ) ) { // Base is virtual and of same name
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const Token * temp1 = func - > tokenDef - > previous ( ) ;
const Token * temp2 = tokenDef - > previous ( ) ;
bool match = true ;
// check for matching return parameters
while ( temp1 - > str ( ) ! = " virtual " ) {
if ( temp1 - > str ( ) ! = temp2 - > str ( ) & &
! ( temp1 - > str ( ) = = derivedFromType - > name ( ) & &
temp2 - > str ( ) = = baseType - > name ( ) ) ) {
match = false ;
break ;
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}
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temp1 = temp1 - > previous ( ) ;
temp2 = temp2 - > previous ( ) ;
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}
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// check for matching function parameters
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match = match & & argsMatch ( baseType - > classScope , func - > argDef , argDef , emptyString , 0 ) ;
// check for matching cv-ref qualifiers
match = match
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& & isConst ( ) = = func - > isConst ( )
& & isVolatile ( ) = = func - > isVolatile ( )
& & hasRvalRefQualifier ( ) = = func - > hasRvalRefQualifier ( )
& & hasLvalRefQualifier ( ) = = func - > hasLvalRefQualifier ( ) ;
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// it's a match
if ( match ) {
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return func ;
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}
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}
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}
if ( ! derivedFromType - > derivedFrom . empty ( ) & & ! derivedFromType - > hasCircularDependencies ( ) ) {
// avoid endless recursion, see #5289 Crash: Stack overflow in isImplicitlyVirtual_rec when checking SVN and
// #5590 with a loop within the class hierarchy.
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const Function * func = getOverriddenFunctionRecursive ( derivedFromType , foundAllBaseClasses ) ;
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if ( func ) {
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return func ;
}
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}
}
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return nullptr ;
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}
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const Variable * Function : : getArgumentVar ( nonneg int num ) const
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{
for ( std : : list < Variable > : : const_iterator i = argumentList . begin ( ) ; i ! = argumentList . end ( ) ; + + i ) {
if ( i - > index ( ) = = num )
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return ( & * i ) ;
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else if ( i - > index ( ) > num )
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return nullptr ;
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}
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return nullptr ;
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}
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//---------------------------------------------------------------------------
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Scope : : Scope ( const SymbolDatabase * check_ , const Token * classDef_ , const Scope * nestedIn_ , ScopeType type_ , const Token * start_ ) :
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check ( check_ ) ,
classDef ( classDef_ ) ,
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bodyStart ( start_ ) ,
bodyEnd ( start_ - > link ( ) ) ,
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nestedIn ( nestedIn_ ) ,
numConstructors ( 0 ) ,
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numCopyOrMoveConstructors ( 0 ) ,
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type ( type_ ) ,
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definedType ( nullptr ) ,
functionOf ( nullptr ) ,
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function ( nullptr ) ,
enumType ( nullptr ) ,
enumClass ( false )
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{ }
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Scope : : Scope ( const SymbolDatabase * check_ , const Token * classDef_ , const Scope * nestedIn_ ) :
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check ( check_ ) ,
classDef ( classDef_ ) ,
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bodyStart ( nullptr ) ,
bodyEnd ( nullptr ) ,
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nestedIn ( nestedIn_ ) ,
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numConstructors ( 0 ) ,
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numCopyOrMoveConstructors ( 0 ) ,
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definedType ( nullptr ) ,
functionOf ( nullptr ) ,
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function ( nullptr ) ,
enumType ( nullptr ) ,
enumClass ( false )
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{
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const Token * nameTok = classDef ;
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if ( ! classDef ) {
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type = Scope : : eGlobal ;
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} else if ( classDef - > str ( ) = = " class " & & check & & check - > isCPP ( ) ) {
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type = Scope : : eClass ;
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nameTok = nameTok - > next ( ) ;
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} else if ( classDef - > str ( ) = = " struct " ) {
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type = Scope : : eStruct ;
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nameTok = nameTok - > next ( ) ;
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} else if ( classDef - > str ( ) = = " union " ) {
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type = Scope : : eUnion ;
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nameTok = nameTok - > next ( ) ;
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} else if ( classDef - > str ( ) = = " namespace " ) {
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type = Scope : : eNamespace ;
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nameTok = nameTok - > next ( ) ;
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} else if ( classDef - > str ( ) = = " enum " ) {
type = Scope : : eEnum ;
nameTok = nameTok - > next ( ) ;
if ( nameTok - > str ( ) = = " class " ) {
enumClass = true ;
nameTok = nameTok - > next ( ) ;
}
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} else if ( classDef - > str ( ) = = " [ " ) {
type = Scope : : eLambda ;
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} else {
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type = Scope : : eFunction ;
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}
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// skip over qualification if present
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nameTok = skipScopeIdentifiers ( nameTok ) ;
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if ( nameTok & & ( ( type = = Scope : : eEnum & & Token : : Match ( nameTok , " :|{ " ) ) | | nameTok - > str ( ) ! = " { " ) ) // anonymous and unnamed structs/unions don't have a name
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className = nameTok - > str ( ) ;
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}
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bool Scope : : hasDefaultConstructor ( ) const
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{
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if ( numConstructors ) {
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std : : list < Function > : : const_iterator func ;
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for ( func = functionList . begin ( ) ; func ! = functionList . end ( ) ; + + func ) {
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if ( func - > type = = Function : : eConstructor & & func - > argCount ( ) = = 0 )
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return true ;
}
}
return false ;
}
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AccessControl Scope : : defaultAccess ( ) const
{
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switch ( type ) {
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case eGlobal :
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return AccessControl : : Global ;
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case eClass :
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return AccessControl : : Private ;
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case eStruct :
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return AccessControl : : Public ;
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case eUnion :
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return AccessControl : : Public ;
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case eNamespace :
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return AccessControl : : Namespace ;
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default :
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return AccessControl : : Local ;
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}
}
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void Scope : : addVariable ( const Token * token_ , const Token * start_ , const Token * end_ ,
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AccessControl access_ , const Type * type_ , const Scope * scope_ , const Settings * settings )
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{
// keep possible size_t -> int truncation outside emplace_back() to have a single line
// C4267 VC++ warning instead of several dozens lines
const int varIndex = varlist . size ( ) ;
varlist . emplace_back ( token_ , start_ , end_ , varIndex , access_ , type_ , scope_ , settings ) ;
}
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// Get variable list..
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void Scope : : getVariableList ( const Settings * settings )
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{
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const Token * start ;
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if ( bodyStart )
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start = bodyStart - > next ( ) ;
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// global scope
else if ( className . empty ( ) )
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start = check - > mTokenizer - > tokens ( ) ;
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// forward declaration
else
return ;
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// Variable declared in condition: if (auto x = bar())
if ( Token : : Match ( classDef , " if|while ( %type% " ) & & Token : : simpleMatch ( classDef - > next ( ) - > astOperand2 ( ) , " = " ) ) {
checkVariable ( classDef - > tokAt ( 2 ) , defaultAccess ( ) , settings ) ;
}
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AccessControl varaccess = defaultAccess ( ) ;
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for ( const Token * tok = start ; tok & & tok ! = bodyEnd ; tok = tok - > next ( ) ) {
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// syntax error?
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if ( tok - > next ( ) = = nullptr )
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break ;
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// Is it a function?
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else if ( tok - > str ( ) = = " { " ) {
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tok = tok - > link ( ) ;
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continue ;
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}
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// Is it a nested class or structure?
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else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " class|struct|union|namespace %type% :| { " )) {
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tok = tok - > tokAt ( 2 ) ;
while ( tok & & tok - > str ( ) ! = " { " )
tok = tok - > next ( ) ;
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if ( tok ) {
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// skip implementation
tok = tok - > link ( ) ;
continue ;
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} else
2010-11-20 07:26:50 +01:00
break ;
2020-05-17 17:32:31 +02:00
} else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " struct|union { " )) {
2015-01-31 10:50:39 +01:00
if ( Token : : Match ( tok - > next ( ) - > link ( ) , " } %name% ;|[ " ) ) {
2014-06-25 20:41:22 +02:00
tok = tok - > next ( ) - > link ( ) - > tokAt ( 2 ) ;
continue ;
} else if ( Token : : simpleMatch ( tok - > next ( ) - > link ( ) , " } ; " )) {
tok = tok - > next ( ) ;
continue ;
}
2011-04-01 02:54:23 +02:00
}
2010-11-13 08:08:45 +01:00
// Borland C++: Skip all variables in the __published section.
2010-12-15 18:45:53 +01:00
// These are automatically initialized.
2011-10-13 20:53:06 +02:00
else if ( tok - > str ( ) = = " __published: " ) {
for ( ; tok ; tok = tok - > next ( ) ) {
2010-11-13 08:08:45 +01:00
if ( tok - > str ( ) = = " { " )
tok = tok - > link ( ) ;
if ( Token : : Match ( tok - > next ( ) , " private:|protected:|public: " ) )
break ;
}
if ( tok )
continue ;
else
break ;
}
// "private:" "public:" "protected:" etc
2011-10-13 20:53:06 +02:00
else if ( tok - > str ( ) = = " public: " ) {
2019-07-23 14:29:02 +02:00
varaccess = AccessControl : : Public ;
2010-11-20 07:26:50 +01:00
continue ;
2011-10-13 20:53:06 +02:00
} else if ( tok - > str ( ) = = " protected: " ) {
2019-07-23 14:29:02 +02:00
varaccess = AccessControl : : Protected ;
2010-11-20 07:26:50 +01:00
continue ;
2011-10-13 20:53:06 +02:00
} else if ( tok - > str ( ) = = " private: " ) {
2019-07-23 14:29:02 +02:00
varaccess = AccessControl : : Private ;
2010-11-13 08:08:45 +01:00
continue ;
2010-11-20 07:26:50 +01:00
}
2010-11-13 08:08:45 +01:00
// Is it a forward declaration?
2020-05-17 17:32:31 +02:00
else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " class|struct|union %name% ; " )) {
2010-11-13 08:08:45 +01:00
tok = tok - > tokAt ( 2 ) ;
continue ;
}
2010-11-20 07:26:50 +01:00
// Borland C++: Ignore properties..
else if ( tok - > str ( ) = = " __property " )
2010-11-13 08:08:45 +01:00
continue ;
2015-03-15 12:37:50 +01:00
// skip return, goto and delete
2020-05-17 17:32:31 +02:00
else if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " return|delete|goto " ) ) {
2013-08-31 14:22:06 +02:00
while ( tok - > next ( ) & &
tok - > next ( ) - > str ( ) ! = " ; " & &
tok - > next ( ) - > str ( ) ! = " } " /* ticket #4994 */ ) {
2011-02-27 16:13:40 +01:00
tok = tok - > next ( ) ;
2013-08-31 14:22:06 +02:00
}
2011-02-27 16:13:40 +01:00
continue ;
}
2011-12-30 20:01:33 +01:00
2018-09-04 06:39:02 +02:00
// skip case/default
2020-05-17 17:32:31 +02:00
if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " case|default " ) ) {
2018-09-04 06:39:02 +02:00
while ( tok - > next ( ) & & ! Token : : Match ( tok - > next ( ) , " [:;{}] " ) )
tok = tok - > next ( ) ;
continue ;
}
2010-11-20 07:26:50 +01:00
// Search for start of statement..
2019-10-09 22:27:48 +02:00
else if ( tok - > previous ( ) & & ! Token : : Match ( tok - > previous ( ) , " ; | { | } | public : | protected : | private : " ))
2010-11-13 08:08:45 +01:00
continue ;
2015-03-15 12:37:50 +01:00
else if ( tok - > str ( ) = = " ; " )
2010-12-02 07:35:01 +01:00
continue ;
2010-11-13 08:08:45 +01:00
2018-06-20 10:00:15 +02:00
tok = checkVariable ( tok , varaccess , settings ) ;
2011-03-16 03:33:14 +01:00
if ( ! tok )
break ;
2011-03-06 21:21:42 +01:00
}
}
2010-11-20 07:26:50 +01:00
2018-06-20 10:00:15 +02:00
const Token * Scope : : checkVariable ( const Token * tok , AccessControl varaccess , const Settings * settings )
2011-03-06 21:21:42 +01:00
{
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// Is it a throw..?
2020-05-17 17:32:31 +02:00
if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " throw %any% ( " ) & &
2012-01-26 04:05:29 +01:00
Token : : simpleMatch ( tok - > linkAt ( 2 ) , " ) ; " ) ) {
return tok - > linkAt ( 2 ) ;
2018-04-23 16:27:56 +02:00
}
2020-05-17 17:32:31 +02:00
if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " throw %any% :: %any% ( " ) & &
Token : : simpleMatch ( tok - > linkAt ( 4 ) , " ) ; " ) ) {
2012-01-26 04:05:29 +01:00
return tok - > linkAt ( 4 ) ;
}
2012-08-12 12:01:24 +02:00
// friend?
2020-05-17 17:32:31 +02:00
if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " friend %type% " ) & & tok - > next ( ) - > varId ( ) = = 0 ) {
2013-03-14 06:34:12 +01:00
const Token * next = Token : : findmatch ( tok - > tokAt ( 2 ) , " ;|{ " ) ;
if ( next & & next - > str ( ) = = " { " )
next = next - > link ( ) ;
return next ;
}
2012-08-12 12:01:24 +02:00
2018-05-10 07:40:01 +02:00
// skip const|volatile|static|mutable|extern
2021-07-22 07:22:26 +02:00
while ( tok - > isKeyword ( ) & & Token : : Match ( tok , " const|constexpr|volatile|static|mutable|extern " ) ) {
2011-03-06 21:21:42 +01:00
tok = tok - > next ( ) ;
}
2010-11-13 08:08:45 +01:00
2011-04-22 15:12:08 +02:00
// the start of the type tokens does not include the above modifiers
const Token * typestart = tok ;
2021-04-26 18:21:07 +02:00
// C++17 structured bindings
if ( settings - > standards . cpp > = Standards : : CPP17 & & Token : : Match ( tok , " auto &|&&| [ " ) ) {
const Token * typeend = Token : : findsimplematch ( typestart , " [ " ) - > previous ( ) ;
for ( tok = typeend - > tokAt ( 2 ) ; Token : : Match ( tok , " %name%|, " ) ; tok = tok - > next ( ) ) {
if ( tok - > varId ( ) )
addVariable ( tok , typestart , typeend , varaccess , nullptr , this , settings ) ;
}
return typeend - > linkAt ( 1 ) ;
}
2020-05-17 17:32:31 +02:00
if ( tok - > isKeyword ( ) & & Token : : Match ( tok , " class|struct|union|enum " ) ) {
2011-03-06 21:21:42 +01:00
tok = tok - > next ( ) ;
}
2010-11-13 08:08:45 +01:00
2014-09-19 09:29:31 +02:00
// This is the start of a statement
const Token * vartok = nullptr ;
const Token * typetok = nullptr ;
2012-05-11 17:56:47 +02:00
if ( tok & & isVariableDeclaration ( tok , vartok , typetok ) ) {
// If the vartok was set in the if-blocks above, create a entry for this variable..
tok = vartok - > next ( ) ;
2014-09-14 11:35:04 +02:00
while ( Token : : Match ( tok , " [|{ " ) )
2012-05-11 17:56:47 +02:00
tok = tok - > link ( ) - > next ( ) ;
2011-01-01 01:19:32 +01:00
2013-12-31 17:51:56 +01:00
if ( vartok - > varId ( ) = = 0 ) {
if ( ! vartok - > isBoolean ( ) )
2020-12-31 19:24:16 +01:00
check - > debugMessage ( vartok , " varid0 " , " Scope::checkVariable found variable \' " + vartok - > str ( ) + " \' with varid 0. " ) ;
2013-12-31 17:51:56 +01:00
return tok ;
}
2010-11-13 08:08:45 +01:00
2014-02-16 10:32:10 +01:00
const Type * vType = nullptr ;
2010-12-02 07:35:01 +01:00
2012-12-20 06:53:04 +01:00
if ( typetok ) {
2015-12-18 08:24:02 +01:00
vType = findVariableTypeIncludingUsedNamespaces ( check , this , typetok ) ;
2016-04-22 06:02:54 +02:00
const_cast < Token * > ( typetok ) - > type ( vType ) ;
2012-12-20 06:53:04 +01:00
}
2010-12-02 07:35:01 +01:00
2016-08-04 09:06:32 +02:00
// skip "enum" or "struct"
if ( Token : : Match ( typestart , " enum|struct " ) )
typestart = typestart - > next ( ) ;
2018-06-20 10:00:15 +02:00
addVariable ( vartok , typestart , vartok - > previous ( ) , varaccess , vType , this , settings ) ;
2010-12-02 07:35:01 +01:00
}
2011-03-06 21:21:42 +01:00
return tok ;
2010-12-02 07:35:01 +01:00
}
2011-09-03 03:07:29 +02:00
const Variable * Scope : : getVariable ( const std : : string & varname ) const
{
std : : list < Variable > : : const_iterator iter ;
2011-10-13 20:53:06 +02:00
for ( iter = varlist . begin ( ) ; iter ! = varlist . end ( ) ; + + iter ) {
2011-09-03 03:07:29 +02:00
if ( iter - > name ( ) = = varname )
return & * iter ;
}
2014-02-16 10:32:10 +01:00
return nullptr ;
2011-09-03 03:07:29 +02:00
}
2012-02-11 12:26:48 +01:00
static const Token * skipPointers ( const Token * tok )
2010-12-30 22:57:43 +01:00
{
2021-08-07 20:51:18 +02:00
while ( Token : : Match ( tok , " *|&|&& " ) | | ( Token : : Match ( tok , " ( [*&] " ) & & Token : : Match ( tok - > link ( ) - > next ( ) , " (|[ " ) ) ) {
2012-02-11 12:26:48 +01:00
tok = tok - > next ( ) ;
2014-04-12 11:43:10 +02:00
if ( tok - > strAt ( - 1 ) = = " ( " & & Token : : Match ( tok , " %type% :: " ) )
tok = tok - > tokAt ( 2 ) ;
2010-12-30 09:46:44 +01:00
}
2010-12-30 22:57:43 +01:00
2020-10-02 08:25:43 +02:00
if ( Token : : simpleMatch ( tok , " ( * " ) & & Token : : simpleMatch ( tok - > link ( ) - > previous ( ) , " ] ) ; " ) ) {
const Token * tok2 = skipPointers ( tok - > next ( ) ) ;
if ( Token : : Match ( tok2 , " %name% [ " ) & & Token : : simpleMatch ( tok2 - > linkAt ( 1 ) , " ] ) ; " ) )
return tok2 ;
}
2012-02-11 12:26:48 +01:00
return tok ;
2010-12-30 22:57:43 +01:00
}
2018-09-25 06:19:26 +02:00
static const Token * skipPointersAndQualifiers ( const Token * tok )
{
tok = skipPointers ( tok ) ;
while ( Token : : Match ( tok , " const|volatile " ) ) {
tok = tok - > next ( ) ;
tok = skipPointers ( tok ) ;
}
return tok ;
}
2016-01-30 14:04:48 +01:00
bool Scope : : isVariableDeclaration ( const Token * const tok , const Token * & vartok , const Token * & typetok ) const
2010-12-30 22:57:43 +01:00
{
2018-06-16 16:10:28 +02:00
const bool isCPP = check & & check - > mTokenizer - > isCPP ( ) ;
2018-01-10 22:16:18 +01:00
if ( isCPP & & Token : : Match ( tok , " throw|new " ) )
return false ;
2018-06-16 16:10:28 +02:00
const bool isCPP11 = isCPP & & check - > mSettings - > standards . cpp > = Standards : : CPP11 ;
2018-01-10 22:16:18 +01:00
if ( isCPP11 & & tok - > str ( ) = = " using " )
2012-01-28 01:24:01 +01:00
return false ;
2011-01-02 00:36:22 +01:00
const Token * localTypeTok = skipScopeIdentifiers ( tok ) ;
2014-02-16 10:32:10 +01:00
const Token * localVarTok = nullptr ;
2010-12-30 22:57:43 +01:00
2011-10-13 20:53:06 +02:00
if ( Token : : Match ( localTypeTok , " %type% < " ) ) {
2014-10-12 16:06:50 +02:00
if ( Token : : Match ( tok , " const_cast|dynamic_cast|reinterpret_cast|static_cast < " ) )
return false ;
2013-04-15 22:48:28 +02:00
const Token * closeTok = localTypeTok - > next ( ) - > link ( ) ;
if ( closeTok ) {
2011-01-18 10:51:57 +01:00
localVarTok = skipPointers ( closeTok - > next ( ) ) ;
2011-01-18 10:14:12 +01:00
2015-01-31 10:50:39 +01:00
if ( Token : : Match ( localVarTok , " :: %type% %name% [;=({] " ) ) {
2013-03-30 13:49:56 +01:00
if ( localVarTok - > strAt ( 3 ) ! = " ( " | |
2014-08-05 15:33:57 +02:00
Token : : Match ( localVarTok - > linkAt ( 3 ) , " [)}] ; " ) ) {
2013-03-30 13:49:56 +01:00
localTypeTok = localVarTok - > next ( ) ;
localVarTok = localVarTok - > tokAt ( 2 ) ;
}
2011-01-02 00:36:22 +01:00
}
}
2011-10-13 20:53:06 +02:00
} else if ( Token : : Match ( localTypeTok , " %type% " ) ) {
2020-11-16 20:11:26 +01:00
if ( isCPP11 & & Token : : simpleMatch ( localTypeTok , " decltype ( " ) & & Token : : Match ( localTypeTok - > linkAt ( 1 ) , " ) %name%|*|&|&& " ) )
localVarTok = skipPointersAndQualifiers ( localTypeTok - > linkAt ( 1 ) - > next ( ) ) ;
else {
localVarTok = skipPointersAndQualifiers ( localTypeTok - > next ( ) ) ;
if ( isCPP11 & & Token : : simpleMatch ( localVarTok , " decltype ( " ) & & Token : : Match ( localVarTok - > linkAt ( 1 ) , " ) %name%|*|&|&& " ) )
localVarTok = skipPointersAndQualifiers ( localVarTok - > linkAt ( 1 ) - > next ( ) ) ;
}
2011-01-18 10:51:57 +01:00
}
2010-12-30 22:57:43 +01:00
2015-10-26 19:20:42 +01:00
if ( ! localVarTok )
return false ;
if ( localVarTok - > str ( ) = = " const " )
2012-05-14 21:47:02 +02:00
localVarTok = localVarTok - > next ( ) ;
2016-02-03 22:49:57 +01:00
if ( Token : : Match ( localVarTok , " %name% ;|= " ) | | ( localVarTok & & localVarTok - > varId ( ) & & localVarTok - > strAt ( 1 ) = = " : " ) ) {
2011-02-27 16:21:14 +01:00
vartok = localVarTok ;
typetok = localTypeTok ;
2015-01-31 10:50:39 +01:00
} else if ( Token : : Match ( localVarTok , " %name% ) | [ " ) && localVarTok->str() != " operator " ) {
2011-01-18 10:51:57 +01:00
vartok = localVarTok ;
typetok = localTypeTok ;
2016-02-03 22:49:57 +01:00
} else if ( localVarTok & & localVarTok - > varId ( ) & & Token : : Match ( localVarTok , " %name% (| { " ) &&
2014-08-05 15:33:57 +02:00
Token : : Match ( localVarTok - > next ( ) - > link ( ) , " )|} ; " ) ) {
2011-07-23 21:12:30 +02:00
vartok = localVarTok ;
typetok = localTypeTok ;
2012-01-26 04:05:29 +01:00
} else if ( type = = eCatch & &
2015-01-31 10:50:39 +01:00
Token : : Match ( localVarTok , " %name% ) " ) ) {
2012-01-26 04:05:29 +01:00
vartok = localVarTok ;
typetok = localTypeTok ;
2011-07-23 21:12:30 +02:00
}
2012-01-26 04:05:29 +01:00
2014-02-16 10:32:10 +01:00
return nullptr ! = vartok ;
2010-12-30 09:46:44 +01:00
}
2016-04-22 06:02:54 +02:00
const Token * Scope : : addEnum ( const Token * tok , bool isCpp )
{
const Token * tok2 = tok - > next ( ) ;
// skip over class if present
if ( isCpp & & tok2 - > str ( ) = = " class " )
tok2 = tok2 - > next ( ) ;
// skip over name
tok2 = tok2 - > next ( ) ;
// save type if present
if ( tok2 - > str ( ) = = " : " ) {
tok2 = tok2 - > next ( ) ;
enumType = tok2 ;
tok2 = tok2 - > next ( ) ;
}
// add enumerators
if ( tok2 - > str ( ) = = " { " ) {
const Token * end = tok2 - > link ( ) ;
tok2 = tok2 - > next ( ) ;
while ( Token : : Match ( tok2 , " %name% =|,|} " ) | |
( Token : : Match ( tok2 , " %name% ( " ) & & Token : : Match ( tok2 - > linkAt ( 1 ) , " ) ,|} " ) ) ) {
Enumerator enumerator ( this ) ;
// save enumerator name
enumerator . name = tok2 ;
// skip over name
tok2 = tok2 - > next ( ) ;
if ( tok2 - > str ( ) = = " = " ) {
// skip over "="
tok2 = tok2 - > next ( ) ;
if ( tok2 - > str ( ) = = " } " )
return nullptr ;
enumerator . start = tok2 ;
while ( ! Token : : Match ( tok2 , " ,|} " ) ) {
if ( tok2 - > link ( ) )
tok2 = tok2 - > link ( ) ;
enumerator . end = tok2 ;
tok2 = tok2 - > next ( ) ;
}
} else if ( tok2 - > str ( ) = = " ( " ) {
// skip over unknown macro
tok2 = tok2 - > link ( ) - > next ( ) ;
}
if ( tok2 - > str ( ) = = " , " ) {
enumeratorList . push_back ( enumerator ) ;
tok2 = tok2 - > next ( ) ;
} else if ( tok2 - > str ( ) = = " } " ) {
enumeratorList . push_back ( enumerator ) ;
break ;
}
}
if ( tok2 = = end ) {
tok2 = tok2 - > next ( ) ;
2016-05-25 13:14:34 +02:00
if ( tok2 & & tok2 - > str ( ) ! = " ; " )
2016-04-22 06:02:54 +02:00
tok2 = nullptr ;
} else
tok2 = nullptr ;
} else
tok2 = nullptr ;
return tok2 ;
}
const Enumerator * SymbolDatabase : : findEnumerator ( const Token * tok ) const
{
const Scope * scope = tok - > scope ( ) ;
2018-01-15 22:31:15 +01:00
const std : : string & tokStr = tok - > str ( ) ;
2017-10-18 18:01:36 +02:00
2018-06-17 17:20:16 +02:00
if ( mTokensThatAreNotEnumeratorValues . find ( tokStr ) ! = mTokensThatAreNotEnumeratorValues . end ( ) ) {
2017-10-20 01:53:20 +02:00
return nullptr ;
2017-10-18 18:01:36 +02:00
}
2016-04-22 06:02:54 +02:00
// check for qualified name
if ( tok - > strAt ( - 1 ) = = " :: " ) {
// find first scope
const Token * tok1 = tok ;
while ( Token : : Match ( tok1 - > tokAt ( - 2 ) , " %name% :: " ) )
tok1 = tok1 - > tokAt ( - 2 ) ;
if ( tok1 - > strAt ( - 1 ) = = " :: " )
scope = & scopeList . front ( ) ;
else {
// FIXME search base class here
// find first scope
while ( scope & & scope - > nestedIn ) {
const Scope * temp = scope - > nestedIn - > findRecordInNestedList ( tok1 - > str ( ) ) ;
if ( temp ) {
scope = temp ;
break ;
}
scope = scope - > nestedIn ;
}
}
if ( scope ) {
tok1 = tok1 - > tokAt ( 2 ) ;
while ( scope & & Token : : Match ( tok1 , " %name% :: " ) ) {
scope = scope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
tok1 = tok1 - > tokAt ( 2 ) ;
}
if ( scope ) {
2017-10-18 18:01:36 +02:00
const Enumerator * enumerator = scope - > findEnumerator ( tokStr ) ;
2016-04-22 06:02:54 +02:00
if ( enumerator ) // enum class
return enumerator ;
// enum
else {
for ( std : : list < Scope * > : : const_iterator it = scope - > nestedList . begin ( ) , end = scope - > nestedList . end ( ) ; it ! = end ; + + it ) {
2017-10-18 18:01:36 +02:00
enumerator = ( * it ) - > findEnumerator ( tokStr ) ;
2016-04-22 06:02:54 +02:00
if ( enumerator )
return enumerator ;
}
}
}
}
} else {
2017-10-18 18:01:36 +02:00
const Enumerator * enumerator = scope - > findEnumerator ( tokStr ) ;
2016-04-22 06:02:54 +02:00
if ( enumerator )
return enumerator ;
2016-04-25 11:12:35 +02:00
for ( std : : list < Scope * > : : const_iterator s = scope - > nestedList . begin ( ) ; s ! = scope - > nestedList . end ( ) ; + + s ) {
2017-10-18 18:01:36 +02:00
enumerator = ( * s ) - > findEnumerator ( tokStr ) ;
2016-04-22 06:02:54 +02:00
if ( enumerator )
return enumerator ;
}
if ( scope - > definedType ) {
2017-08-28 17:19:03 +02:00
const std : : vector < Type : : BaseInfo > & derivedFrom = scope - > definedType - > derivedFrom ;
2019-09-19 20:29:33 +02:00
for ( const Type : : BaseInfo & i : derivedFrom ) {
const Type * derivedFromType = i . type ;
2021-08-07 20:51:18 +02:00
if ( derivedFromType & & derivedFromType - > classScope ) {
2017-10-18 18:01:36 +02:00
enumerator = derivedFromType - > classScope - > findEnumerator ( tokStr ) ;
2016-04-22 06:02:54 +02:00
if ( enumerator )
return enumerator ;
}
}
}
2011-01-02 00:36:22 +01:00
2017-08-02 08:17:29 +02:00
while ( scope - > nestedIn ) {
2016-05-09 13:08:00 +02:00
if ( scope - > type = = Scope : : eFunction & & scope - > functionOf )
2016-05-09 12:40:56 +02:00
scope = scope - > functionOf ;
else
scope = scope - > nestedIn ;
2017-10-18 18:01:36 +02:00
enumerator = scope - > findEnumerator ( tokStr ) ;
2016-05-09 12:40:56 +02:00
if ( enumerator )
return enumerator ;
2016-05-09 13:05:08 +02:00
for ( std : : list < Scope * > : : const_iterator s = scope - > nestedList . begin ( ) ; s ! = scope - > nestedList . end ( ) ; + + s ) {
2017-10-18 18:01:36 +02:00
enumerator = ( * s ) - > findEnumerator ( tokStr ) ;
2016-05-09 12:40:56 +02:00
if ( enumerator )
return enumerator ;
}
}
2016-04-22 06:02:54 +02:00
}
2011-01-02 00:36:22 +01:00
2018-06-17 17:20:16 +02:00
mTokensThatAreNotEnumeratorValues . insert ( tokStr ) ;
2017-10-18 18:01:36 +02:00
2016-04-22 06:02:54 +02:00
return nullptr ;
}
2015-01-02 21:38:19 +01:00
2010-12-02 07:35:01 +01:00
//---------------------------------------------------------------------------
2016-08-13 21:25:57 +02:00
const Type * SymbolDatabase : : findVariableTypeInBase ( const Scope * scope , const Token * typeTok ) const
{
if ( scope & & scope - > definedType & & ! scope - > definedType - > derivedFrom . empty ( ) ) {
2017-09-04 16:55:45 +02:00
const std : : vector < Type : : BaseInfo > & derivedFrom = scope - > definedType - > derivedFrom ;
2019-09-19 20:29:33 +02:00
for ( const Type : : BaseInfo & i : derivedFrom ) {
const Type * base = i . type ;
2016-08-13 21:25:57 +02:00
if ( base & & base - > classScope ) {
2021-01-18 19:01:04 +01:00
if ( base - > classScope = = scope )
return nullptr ;
2016-08-13 21:25:57 +02:00
const Type * type = base - > classScope - > findType ( typeTok - > str ( ) ) ;
if ( type )
return type ;
type = findVariableTypeInBase ( base - > classScope , typeTok ) ;
if ( type )
return type ;
}
}
}
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return nullptr ;
}
//---------------------------------------------------------------------------
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const Type * SymbolDatabase : : findVariableType ( const Scope * start , const Token * typeTok ) const
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{
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const Scope * scope = start ;
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// check if type does not have a namespace
if ( typeTok - > strAt ( - 1 ) ! = " :: " & & typeTok - > strAt ( 1 ) ! = " :: " ) {
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// check if type same as scope
if ( start - > isClassOrStruct ( ) & & typeTok - > str ( ) = = start - > className )
return start - > definedType ;
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while ( scope ) {
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// look for type in this scope
const Type * type = scope - > findType ( typeTok - > str ( ) ) ;
if ( type )
return type ;
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// look for type in base classes if possible
if ( scope - > isClassOrStruct ( ) ) {
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type = findVariableTypeInBase ( scope , typeTok ) ;
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if ( type )
return type ;
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}
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// check if in member function class to see if it's present in class
if ( scope - > type = = Scope : : eFunction & & scope - > functionOf ) {
const Scope * scope1 = scope - > functionOf ;
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type = scope1 - > findType ( typeTok - > str ( ) ) ;
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if ( type )
return type ;
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type = findVariableTypeInBase ( scope1 , typeTok ) ;
if ( type )
return type ;
}
scope = scope - > nestedIn ;
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}
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}
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// check for a qualified name and use it when given
else if ( typeTok - > strAt ( - 1 ) = = " :: " ) {
// check if type is not part of qualification
if ( typeTok - > strAt ( 1 ) = = " :: " )
return nullptr ;
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// find start of qualified function name
const Token * tok1 = typeTok ;
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while ( Token : : Match ( tok1 - > tokAt ( - 2 ) , " %type% :: " ) | |
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( Token : : simpleMatch ( tok1 - > tokAt ( - 2 ) , " > :: " ) & & tok1 - > linkAt ( - 2 ) & & Token : : Match ( tok1 - > linkAt ( - 2 ) - > tokAt ( - 1 ) , " %type% " ) ) ) {
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if ( tok1 - > strAt ( - 1 ) = = " :: " )
tok1 = tok1 - > tokAt ( - 2 ) ;
else
tok1 = tok1 - > linkAt ( - 2 ) - > tokAt ( - 1 ) ;
}
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// check for global scope
if ( tok1 - > strAt ( - 1 ) = = " :: " ) {
scope = & scopeList . front ( ) ;
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scope = scope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
}
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// find start of qualification
else {
while ( scope ) {
if ( scope - > className = = tok1 - > str ( ) )
break ;
else {
const Scope * scope1 = scope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
if ( scope1 ) {
scope = scope1 ;
break ;
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} else if ( scope - > type = = Scope : : eFunction & & scope - > functionOf )
scope = scope - > functionOf ;
else
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scope = scope - > nestedIn ;
}
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}
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}
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if ( scope ) {
// follow qualification
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while ( scope & & ( Token : : Match ( tok1 , " %type% :: " ) | |
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( Token : : Match ( tok1 , " %type% < " ) & & Token : : simpleMatch ( tok1 - > linkAt ( 1 ) , " > :: " ) ) ) ) {
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if ( tok1 - > strAt ( 1 ) = = " :: " )
tok1 = tok1 - > tokAt ( 2 ) ;
else
tok1 = tok1 - > linkAt ( 1 ) - > tokAt ( 2 ) ;
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const Scope * temp = scope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
if ( ! temp ) {
// look in base classes
const Type * type = findVariableTypeInBase ( scope , tok1 ) ;
if ( type )
return type ;
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}
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scope = temp ;
}
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if ( scope & & scope - > definedType )
return scope - > definedType ;
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}
}
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return nullptr ;
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}
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bool Scope : : hasInlineOrLambdaFunction ( ) const
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{
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for ( const Scope * s : nestedList ) {
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// Inline function
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if ( s - > type = = Scope : : eUnconditional & & Token : : simpleMatch ( s - > bodyStart - > previous ( ) , " ) { " ) )
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return true ;
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// Lambda function
if ( s - > type = = Scope : : eLambda )
return true ;
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if ( s - > hasInlineOrLambdaFunction ( ) )
return true ;
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}
return false ;
}
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void Scope : : findFunctionInBase ( const std : : string & name , nonneg int args , std : : vector < const Function * > & matches ) const
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{
if ( isClassOrStruct ( ) & & definedType & & ! definedType - > derivedFrom . empty ( ) ) {
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const std : : vector < Type : : BaseInfo > & derivedFrom = definedType - > derivedFrom ;
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for ( const Type : : BaseInfo & i : derivedFrom ) {
const Type * base = i . type ;
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if ( base & & base - > classScope ) {
if ( base - > classScope = = this ) // Ticket #5120, #5125: Recursive class; tok should have been found already
continue ;
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for ( std : : multimap < std : : string , const Function * > : : const_iterator it = base - > classScope - > functionMap . find ( name ) ; it ! = base - > classScope - > functionMap . end ( ) & & it - > first = = name ; + + it ) {
const Function * func = it - > second ;
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if ( ( func - > isVariadic ( ) & & args > = ( func - > argCount ( ) - 1 ) ) | |
( args = = func - > argCount ( ) | | ( args < func - > argCount ( ) & & args > = func - > minArgCount ( ) ) ) ) {
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matches . push_back ( func ) ;
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}
}
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base - > classScope - > findFunctionInBase ( name , args , matches ) ;
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}
}
}
}
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const Scope * Scope : : findRecordInBase ( const std : : string & name ) const
{
if ( isClassOrStruct ( ) & & definedType & & ! definedType - > derivedFrom . empty ( ) ) {
const std : : vector < Type : : BaseInfo > & derivedFrom = definedType - > derivedFrom ;
for ( const Type : : BaseInfo & i : derivedFrom ) {
const Type * base = i . type ;
if ( base & & base - > classScope ) {
if ( base - > classScope = = this ) // Recursive class; tok should have been found already
continue ;
if ( base - > name ( ) = = name ) {
return base - > classScope ;
}
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const : : Type * t = base - > classScope - > findType ( name ) ;
if ( t )
return t - > classScope ;
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}
}
}
return nullptr ;
}
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//---------------------------------------------------------------------------
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static void checkVariableCallMatch ( const Variable * callarg , const Variable * funcarg , size_t & same , size_t & fallback1 , size_t & fallback2 )
{
if ( callarg ) {
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ValueType : : MatchResult res = ValueType : : matchParameter ( callarg - > valueType ( ) , callarg , funcarg ) ;
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if ( res = = ValueType : : MatchResult : : SAME ) {
same + + ;
return ;
}
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if ( res = = ValueType : : MatchResult : : FALLBACK1 ) {
fallback1 + + ;
return ;
}
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if ( res = = ValueType : : MatchResult : : FALLBACK2 ) {
fallback2 + + ;
return ;
}
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if ( res = = ValueType : : MatchResult : : NOMATCH )
return ;
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2017-03-15 18:36:59 +01:00
bool ptrequals = callarg - > isArrayOrPointer ( ) = = funcarg - > isArrayOrPointer ( ) ;
bool constEquals = ! callarg - > isArrayOrPointer ( ) | | ( ( callarg - > typeStartToken ( ) - > strAt ( - 1 ) = = " const " ) = = ( funcarg - > typeStartToken ( ) - > strAt ( - 1 ) = = " const " ) ) ;
if ( ptrequals & & constEquals & &
callarg - > typeStartToken ( ) - > str ( ) = = funcarg - > typeStartToken ( ) - > str ( ) & &
callarg - > typeStartToken ( ) - > isUnsigned ( ) = = funcarg - > typeStartToken ( ) - > isUnsigned ( ) & &
callarg - > typeStartToken ( ) - > isLong ( ) = = funcarg - > typeStartToken ( ) - > isLong ( ) ) {
same + + ;
} else if ( callarg - > isArrayOrPointer ( ) ) {
if ( ptrequals & & constEquals & & funcarg - > typeStartToken ( ) - > str ( ) = = " void " )
fallback1 + + ;
else if ( constEquals & & funcarg - > isStlStringType ( ) & & Token : : Match ( callarg - > typeStartToken ( ) , " char|wchar_t " ) )
fallback2 + + ;
} else if ( ptrequals ) {
2018-04-04 21:51:31 +02:00
const bool takesInt = Token : : Match ( funcarg - > typeStartToken ( ) , " char|short|int|long " ) ;
const bool takesFloat = Token : : Match ( funcarg - > typeStartToken ( ) , " float|double " ) ;
const bool passesInt = Token : : Match ( callarg - > typeStartToken ( ) , " char|short|int|long " ) ;
const bool passesFloat = Token : : Match ( callarg - > typeStartToken ( ) , " float|double " ) ;
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if ( ( takesInt & & passesInt ) | | ( takesFloat & & passesFloat ) )
fallback1 + + ;
else if ( ( takesInt & & passesFloat ) | | ( takesFloat & & passesInt ) )
fallback2 + + ;
}
}
}
2019-08-03 10:10:22 +02:00
static std : : string getTypeString ( const Token * typeToken )
{
if ( ! typeToken )
return " " ;
while ( Token : : Match ( typeToken , " %name%|*|&|:: " ) ) {
if ( typeToken - > str ( ) = = " :: " ) {
std : : string ret ;
while ( Token : : Match ( typeToken , " :: %name% " ) ) {
ret + = " :: " + typeToken - > strAt ( 1 ) ;
typeToken = typeToken - > tokAt ( 2 ) ;
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if ( typeToken - > str ( ) = = " < " ) {
for ( const Token * tok = typeToken ; tok ! = typeToken - > link ( ) ; tok = tok - > next ( ) )
ret + = tok - > str ( ) ;
ret + = " > " ;
typeToken = typeToken - > link ( ) - > next ( ) ;
}
2019-08-03 10:10:22 +02:00
}
return ret ;
}
if ( Token : : Match ( typeToken , " %name% const| %var%|*|& " ) ) {
return typeToken - > str ( ) ;
}
typeToken = typeToken - > next ( ) ;
}
return " " ;
}
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const Function * Scope : : findFunction ( const Token * tok , bool requireConst ) const
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{
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const bool isCall = Token : : Match ( tok - > next ( ) , " (|{ " ) ;
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const std : : vector < const Token * > arguments = getArguments ( tok ) ;
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std : : vector < const Function * > matches ;
// find all the possible functions that could match
const std : : size_t args = arguments . size ( ) ;
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auto addMatchingFunctions = [ & ] ( const Scope * scope ) {
for ( std : : multimap < std : : string , const Function * > : : const_iterator it = scope - > functionMap . find ( tok - > str ( ) ) ; it ! = scope - > functionMap . cend ( ) & & it - > first = = tok - > str ( ) ; + + it ) {
const Function * func = it - > second ;
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if ( ! isCall | | args = = func - > argCount ( ) | |
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( func - > isVariadic ( ) & & args > = ( func - > argCount ( ) - 1 ) ) | |
( args < func - > argCount ( ) & & args > = func - > minArgCount ( ) ) ) {
matches . push_back ( func ) ;
}
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}
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} ;
addMatchingFunctions ( this ) ;
// check in anonumous namespaces
for ( const Scope * nestedScope : nestedList ) {
if ( nestedScope - > type = = eNamespace & & nestedScope - > className . empty ( ) )
addMatchingFunctions ( nestedScope ) ;
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}
// check in base classes
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findFunctionInBase ( tok - > str ( ) , args , matches ) ;
2014-11-17 16:04:44 +01:00
2020-09-23 22:10:47 +02:00
// Non-call => Do not match parameters
if ( ! isCall ) {
return matches . empty ( ) ? nullptr : matches [ 0 ] ;
}
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const Function * fallback1Func = nullptr ;
const Function * fallback2Func = nullptr ;
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// check each function against the arguments in the function call for a match
2014-11-20 06:18:29 +01:00
for ( std : : size_t i = 0 ; i < matches . size ( ) ; ) {
2017-04-01 10:18:53 +02:00
bool constFallback = false ;
2014-11-17 16:04:44 +01:00
const Function * func = matches [ i ] ;
size_t same = 0 ;
2017-02-25 23:11:42 +01:00
2019-05-30 21:25:14 +02:00
if ( requireConst & & ! func - > isConst ( ) ) {
i + + ;
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continue ;
2019-05-30 21:25:14 +02:00
}
2019-05-30 20:26:45 +02:00
2017-02-28 22:08:18 +01:00
if ( ! requireConst | | ! func - > isConst ( ) ) {
2017-02-25 23:11:42 +01:00
// get the function this call is in
const Scope * scope = tok - > scope ( ) ;
// check if this function is a member function
2017-08-01 13:26:35 +02:00
if ( scope & & scope - > functionOf & & scope - > functionOf - > isClassOrStruct ( ) & & scope - > function ) {
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// check if isConst mismatches
2017-08-01 13:26:35 +02:00
if ( scope - > function - > isConst ( ) ! = func - > isConst ( ) ) {
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if ( scope - > function - > isConst ( ) ) {
2017-11-03 10:39:57 +01:00
+ + i ;
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continue ;
}
constFallback = true ;
2017-02-25 23:11:42 +01:00
}
}
}
size_t fallback1 = 0 ;
size_t fallback2 = 0 ;
2017-11-03 10:39:57 +01:00
bool erased = false ;
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for ( std : : size_t j = 0 ; j < args ; + + j ) {
2017-02-25 23:11:42 +01:00
2016-08-02 08:58:11 +02:00
// don't check variadic arguments
if ( func - > isVariadic ( ) & & j > ( func - > argCount ( ) - 1 ) ) {
break ;
}
2014-11-17 16:04:44 +01:00
const Variable * funcarg = func - > getArgumentVar ( j ) ;
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if ( ! arguments [ j ] - > valueType ( ) ) {
const Token * vartok = arguments [ j ] ;
int pointer = 0 ;
while ( vartok & & ( vartok - > isUnaryOp ( " & " ) | | vartok - > isUnaryOp ( " * " ) ) ) {
pointer + = vartok - > isUnaryOp ( " & " ) ? 1 : - 1 ;
vartok = vartok - > astOperand1 ( ) ;
2018-04-06 07:53:05 +02:00
}
2019-08-01 17:53:14 +02:00
if ( vartok & & vartok - > variable ( ) ) {
const Token * callArgTypeToken = vartok - > variable ( ) - > typeStartToken ( ) ;
2019-08-01 13:25:03 +02:00
const Token * funcArgTypeToken = funcarg - > typeStartToken ( ) ;
auto parseDecl = [ ] ( const Token * typeToken ) - > ValueType {
ValueType ret ;
while ( Token : : Match ( typeToken - > previous ( ) , " %name% " ) )
typeToken = typeToken - > previous ( ) ;
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while ( Token : : Match ( typeToken , " %name%|*|&|::|< " ) )
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{
if ( typeToken - > str ( ) = = " const " )
ret . constness | = ( 1 < < ret . pointer ) ;
else if ( typeToken - > str ( ) = = " * " )
ret . pointer + + ;
2019-08-03 10:10:22 +02:00
else if ( typeToken - > str ( ) = = " < " ) {
if ( ! typeToken - > link ( ) )
break ;
typeToken = typeToken - > link ( ) ;
}
2019-08-01 13:25:03 +02:00
typeToken = typeToken - > next ( ) ;
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}
2019-08-01 13:25:03 +02:00
return ret ;
} ;
2019-08-03 10:10:22 +02:00
const std : : string type1 = getTypeString ( callArgTypeToken ) ;
const std : : string type2 = getTypeString ( funcArgTypeToken ) ;
if ( ! type1 . empty ( ) & & type1 = = type2 ) {
ValueType callArgType = parseDecl ( callArgTypeToken ) ;
callArgType . pointer + = pointer ;
ValueType funcArgType = parseDecl ( funcArgTypeToken ) ;
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callArgType . sign = funcArgType . sign = ValueType : : Sign : : SIGNED ;
callArgType . type = funcArgType . type = ValueType : : Type : : INT ;
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2019-08-01 17:53:14 +02:00
ValueType : : MatchResult res = ValueType : : matchParameter ( & callArgType , & funcArgType ) ;
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if ( res = = ValueType : : MatchResult : : SAME )
+ + same ;
else if ( res = = ValueType : : MatchResult : : FALLBACK1 )
+ + fallback1 ;
else if ( res = = ValueType : : MatchResult : : FALLBACK2 )
+ + fallback2 ;
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continue ;
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}
}
}
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// check for a match with a variable
if ( Token : : Match ( arguments [ j ] , " %var% ,|) " ) ) {
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const Variable * callarg = arguments [ j ] - > variable ( ) ;
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checkVariableCallMatch ( callarg , funcarg , same , fallback1 , fallback2 ) ;
}
2019-08-01 16:14:00 +02:00
else if ( funcarg - > isStlStringType ( ) & & arguments [ j ] - > valueType ( ) & & arguments [ j ] - > valueType ( ) - > pointer = = 1 & & arguments [ j ] - > valueType ( ) - > type = = ValueType : : Type : : CHAR )
2019-08-01 17:53:14 +02:00
fallback2 + + ;
2016-08-02 08:58:11 +02:00
2017-02-28 22:43:47 +01:00
// check for a match with nullptr
2019-08-01 17:29:25 +02:00
else if ( funcarg - > isPointer ( ) & & Token : : Match ( arguments [ j ] , " nullptr|NULL ,|) " ) )
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same + + ;
2019-08-01 17:29:25 +02:00
2020-02-09 11:16:08 +01:00
else if ( funcarg - > isPointer ( ) & & MathLib : : isNullValue ( arguments [ j ] - > str ( ) ) )
2019-08-01 17:29:25 +02:00
fallback1 + + ;
2017-02-28 22:43:47 +01:00
2017-03-15 18:36:59 +01:00
// Try to evaluate the apparently more complex expression
2020-11-04 07:17:17 +01:00
else if ( check - > isCPP ( ) ) {
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const Token * vartok = arguments [ j ] ;
while ( vartok - > isUnaryOp ( " & " ) | | vartok - > isUnaryOp ( " * " ) )
vartok = vartok - > astOperand1 ( ) ;
ValueType : : MatchResult res = ValueType : : matchParameter ( arguments [ j ] - > valueType ( ) , vartok - > variable ( ) , funcarg ) ;
2019-07-31 18:35:56 +02:00
if ( res = = ValueType : : MatchResult : : SAME )
+ + same ;
else if ( res = = ValueType : : MatchResult : : FALLBACK1 )
+ + fallback1 ;
else if ( res = = ValueType : : MatchResult : : FALLBACK2 )
+ + fallback2 ;
2019-08-01 14:30:00 +02:00
else if ( res = = ValueType : : MatchResult : : NOMATCH ) {
// can't match so remove this function from possible matches
matches . erase ( matches . begin ( ) + i ) ;
erased = true ;
break ;
}
2017-03-15 18:36:59 +01:00
}
2020-11-04 07:17:17 +01:00
else
// C code: if number of arguments match then do not match types
fallback1 + + ;
2013-01-01 09:53:40 +01:00
}
2018-04-04 21:51:31 +02:00
const size_t hasToBe = func - > isVariadic ( ) ? ( func - > argCount ( ) - 1 ) : args ;
2017-02-28 22:43:47 +01:00
2014-11-17 16:04:44 +01:00
// check if all arguments matched
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if ( same = = hasToBe ) {
2019-05-30 19:24:27 +02:00
if ( constFallback | | ( ! requireConst & & func - > isConst ( ) ) )
2017-04-01 10:18:53 +02:00
fallback1Func = func ;
else
return func ;
}
2015-05-23 11:56:11 +02:00
2017-04-01 10:18:53 +02:00
else if ( ! fallback1Func ) {
2017-02-28 22:43:47 +01:00
if ( same + fallback1 = = hasToBe )
2017-02-25 23:11:42 +01:00
fallback1Func = func ;
2017-02-28 22:43:47 +01:00
else if ( ! fallback2Func & & same + fallback2 + fallback1 = = hasToBe )
2017-02-25 23:11:42 +01:00
fallback2Func = func ;
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}
2014-11-20 06:18:29 +01:00
if ( ! erased )
+ + i ;
2014-11-01 14:36:17 +01:00
}
2017-02-25 23:11:42 +01:00
// Fallback cases
if ( fallback1Func )
return fallback1Func ;
if ( fallback2Func )
return fallback2Func ;
// Only one candidate left
2017-02-24 20:56:47 +01:00
if ( matches . size ( ) = = 1 )
2014-11-17 16:04:44 +01:00
return matches [ 0 ] ;
2014-10-30 13:47:20 +01:00
return nullptr ;
2013-01-01 09:53:40 +01:00
}
//---------------------------------------------------------------------------
2013-01-28 06:47:48 +01:00
const Function * SymbolDatabase : : findFunction ( const Token * tok ) const
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{
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// find the scope this function is in
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const Scope * currScope = tok - > scope ( ) ;
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while ( currScope & & currScope - > isExecutable ( ) ) {
if ( currScope - > functionOf )
currScope = currScope - > functionOf ;
else
currScope = currScope - > nestedIn ;
}
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// check for a qualified name and use it when given
if ( tok - > strAt ( - 1 ) = = " :: " ) {
// find start of qualified function name
const Token * tok1 = tok ;
2018-05-01 07:32:19 +02:00
while ( Token : : Match ( tok1 - > tokAt ( - 2 ) , " >|%type% :: " ) ) {
if ( tok1 - > strAt ( - 2 ) = = " > " ) {
if ( tok1 - > linkAt ( - 2 ) )
tok1 = tok1 - > linkAt ( - 2 ) - > tokAt ( - 1 ) ;
else {
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if ( mSettings - > debugwarnings )
2020-12-31 19:24:16 +01:00
debugMessage ( tok1 - > tokAt ( - 2 ) , " debug " , " SymbolDatabase::findFunction found '>' without link. " ) ;
2018-05-01 07:32:19 +02:00
return nullptr ;
}
} else
tok1 = tok1 - > tokAt ( - 2 ) ;
}
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// check for global scope
if ( tok1 - > strAt ( - 1 ) = = " :: " ) {
currScope = & scopeList . front ( ) ;
2019-10-15 12:39:02 +02:00
if ( Token : : Match ( tok1 , " %name% ( " ) )
return currScope - > findFunction ( tok ) ;
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currScope = currScope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
}
// find start of qualification
else {
while ( currScope ) {
if ( currScope - > className = = tok1 - > str ( ) )
break ;
else {
const Scope * scope = currScope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
if ( scope ) {
currScope = scope ;
break ;
} else
currScope = currScope - > nestedIn ;
}
}
}
if ( currScope ) {
2021-01-30 06:33:09 +01:00
while ( currScope & & tok1 & & ! ( Token : : Match ( tok1 , " %type% :: %name% [(),>] " ) | |
( Token : : Match ( tok1 , " %type% < " ) & & Token : : Match ( tok1 - > linkAt ( 1 ) , " > :: %name% ( " ) ) ) ) {
2018-05-01 07:32:19 +02:00
if ( tok1 - > strAt ( 1 ) = = " :: " )
tok1 = tok1 - > tokAt ( 2 ) ;
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else if ( tok1 - > strAt ( 1 ) = = " < " )
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tok1 = tok1 - > linkAt ( 1 ) - > tokAt ( 2 ) ;
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else
tok1 = nullptr ;
if ( tok1 )
currScope = currScope - > findRecordInNestedList ( tok1 - > str ( ) ) ;
2013-01-22 06:55:25 +01:00
}
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if ( tok1 )
tok1 = tok1 - > tokAt ( 2 ) ;
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if ( currScope & & tok1 )
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return currScope - > findFunction ( tok1 ) ;
2013-01-22 06:55:25 +01:00
}
}
2013-01-23 16:53:55 +01:00
// check for member function
2013-07-08 06:38:33 +02:00
else if ( Token : : Match ( tok - > tokAt ( - 2 ) , " !!this . " ) ) {
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const Token * tok1 = tok - > tokAt ( - 2 ) ;
if ( Token : : Match ( tok1 , " %var% . " ) ) {
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const Variable * var = getVariableFromVarId ( tok1 - > varId ( ) ) ;
if ( var & & var - > typeScope ( ) )
2019-05-30 20:26:45 +02:00
return var - > typeScope ( ) - > findFunction ( tok , var - > valueType ( ) - > constness = = 1 ) ;
2019-07-08 17:43:45 +02:00
if ( var & & var - > smartPointerType ( ) & & var - > smartPointerType ( ) - > classScope & & tok1 - > next ( ) - > originalName ( ) = = " -> " )
return var - > smartPointerType ( ) - > classScope - > findFunction ( tok , var - > valueType ( ) - > constness = = 1 ) ;
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} else if ( Token : : simpleMatch ( tok - > previous ( ) - > astOperand1 ( ) , " ( " ) ) {
const Token * castTok = tok - > previous ( ) - > astOperand1 ( ) ;
if ( castTok - > isCast ( ) ) {
ValueType vt = ValueType : : parseDecl ( castTok - > next ( ) , mSettings ) ;
if ( vt . typeScope )
return vt . typeScope - > findFunction ( tok , vt . constness = = 1 ) ;
}
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}
}
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// check in enclosing scopes
else {
while ( currScope ) {
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const Function * func = currScope - > findFunction ( tok ) ;
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if ( func )
return func ;
currScope = currScope - > nestedIn ;
}
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}
2017-08-09 20:00:26 +02:00
return nullptr ;
2012-10-14 17:30:37 +02:00
}
2011-01-28 08:33:02 +01:00
//---------------------------------------------------------------------------
2010-11-13 08:08:45 +01:00
2013-01-03 22:37:19 +01:00
const Scope * SymbolDatabase : : findScopeByName ( const std : : string & name ) const
2012-02-24 20:45:56 +01:00
{
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for ( const Scope & scope : scopeList ) {
if ( scope . className = = name )
return & scope ;
2012-02-24 20:45:56 +01:00
}
2017-08-09 20:00:26 +02:00
return nullptr ;
2012-02-24 20:45:56 +01:00
}
//---------------------------------------------------------------------------
2013-01-03 22:37:19 +01:00
Scope * Scope : : findInNestedList ( const std : : string & name )
2010-11-13 08:08:45 +01:00
{
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for ( Scope * scope : nestedList ) {
if ( scope - > className = = name )
return scope ;
2010-11-13 08:08:45 +01:00
}
2017-08-09 20:00:26 +02:00
return nullptr ;
2010-11-13 08:08:45 +01:00
}
//---------------------------------------------------------------------------
2013-01-03 22:37:19 +01:00
const Scope * Scope : : findRecordInNestedList ( const std : : string & name ) const
2012-11-30 06:03:58 +01:00
{
2021-08-01 21:51:37 +02:00
for ( const Scope * scope : nestedList ) {
if ( scope - > className = = name & & scope - > type ! = eFunction )
return scope ;
2012-11-30 06:03:58 +01:00
}
2018-04-24 22:43:47 +02:00
const Type * nested_type = findType ( name ) ;
2019-01-31 16:53:51 +01:00
if ( nested_type ) {
if ( nested_type - > isTypeAlias ( ) ) {
if ( nested_type - > typeStart = = nested_type - > typeEnd )
return findRecordInNestedList ( nested_type - > typeStart - > str ( ) ) ;
} else
return nested_type - > classScope ;
}
2018-04-24 22:43:47 +02:00
2017-08-09 20:00:26 +02:00
return nullptr ;
2012-11-30 06:03:58 +01:00
}
//---------------------------------------------------------------------------
2013-03-05 13:33:38 +01:00
const Type * Scope : : findType ( const std : : string & name ) const
{
2017-10-15 02:53:41 +02:00
auto it = definedTypesMap . find ( name ) ;
2013-03-05 13:33:38 +01:00
2018-04-26 17:55:04 +02:00
// Type was found
if ( definedTypesMap . end ( ) ! = it )
2017-10-17 10:59:23 +02:00
return ( * it ) . second ;
2018-04-26 17:55:04 +02:00
// is type defined in anonymous namespace..
it = definedTypesMap . find ( " " ) ;
if ( it ! = definedTypesMap . end ( ) ) {
for ( const Scope * scope : nestedList ) {
if ( scope - > className . empty ( ) & & ( scope - > type = = eNamespace | | scope - > isClassOrStructOrUnion ( ) ) ) {
const Type * t = scope - > findType ( name ) ;
if ( t )
return t ;
}
}
2013-03-05 13:33:38 +01:00
}
2018-04-26 17:55:04 +02:00
// Type was not found
return nullptr ;
2013-03-05 13:33:38 +01:00
}
//---------------------------------------------------------------------------
2013-01-03 22:37:19 +01:00
Scope * Scope : : findInNestedListRecursive ( const std : : string & name )
2011-02-03 07:57:10 +01:00
{
2021-08-01 21:51:37 +02:00
for ( Scope * scope : nestedList ) {
if ( scope - > className = = name )
return scope ;
2011-02-03 07:57:10 +01:00
}
2021-08-01 21:51:37 +02:00
for ( Scope * scope : nestedList ) {
Scope * child = scope - > findInNestedListRecursive ( name ) ;
2011-02-19 19:40:02 +01:00
if ( child )
return child ;
2011-02-03 07:57:10 +01:00
}
2017-08-09 20:00:26 +02:00
return nullptr ;
2011-02-03 07:57:10 +01:00
}
//---------------------------------------------------------------------------
2011-01-17 18:29:19 +01:00
const Function * Scope : : getDestructor ( ) const
2010-11-13 08:08:45 +01:00
{
2021-08-01 21:51:37 +02:00
for ( const Function & function : functionList ) {
if ( function . type = = Function : : eDestructor )
return & function ;
2010-11-13 08:08:45 +01:00
}
2017-08-09 20:00:26 +02:00
return nullptr ;
2010-11-13 08:08:45 +01:00
}
//---------------------------------------------------------------------------
2012-11-26 16:34:44 +01:00
bool SymbolDatabase : : isCPP ( ) const
{
2018-06-16 16:10:28 +02:00
return mTokenizer - > isCPP ( ) ;
2012-11-26 16:34:44 +01:00
}
2012-11-30 06:03:58 +01:00
//---------------------------------------------------------------------------
2013-01-03 22:37:19 +01:00
const Scope * SymbolDatabase : : findScope ( const Token * tok , const Scope * startScope ) const
2012-11-30 06:03:58 +01:00
{
2014-02-16 11:47:52 +01:00
const Scope * scope = nullptr ;
2012-11-30 06:03:58 +01:00
// absolute path
if ( tok - > str ( ) = = " :: " ) {
tok = tok - > next ( ) ;
2013-03-05 13:33:38 +01:00
scope = & scopeList . front ( ) ;
}
// relative path
else if ( tok - > isName ( ) ) {
scope = startScope ;
}
2012-11-30 06:03:58 +01:00
2013-03-05 13:33:38 +01:00
while ( scope & & tok & & tok - > isName ( ) ) {
if ( tok - > strAt ( 1 ) = = " :: " ) {
2012-11-30 06:03:58 +01:00
scope = scope - > findRecordInNestedList ( tok - > str ( ) ) ;
2013-03-05 13:33:38 +01:00
tok = tok - > tokAt ( 2 ) ;
2018-05-06 08:23:07 +02:00
} else if ( tok - > strAt ( 1 ) = = " < " & & Token : : simpleMatch ( tok - > linkAt ( 1 ) , " > :: " ) ) {
2018-05-01 07:32:19 +02:00
scope = scope - > findRecordInNestedList ( tok - > str ( ) ) ;
tok = tok - > linkAt ( 1 ) - > tokAt ( 2 ) ;
2013-03-05 13:33:38 +01:00
} else
return scope - > findRecordInNestedList ( tok - > str ( ) ) ;
}
2012-11-30 06:03:58 +01:00
2013-03-05 13:33:38 +01:00
// not a valid path
2017-08-09 20:00:26 +02:00
return nullptr ;
2013-03-05 13:33:38 +01:00
}
2012-11-30 06:03:58 +01:00
2013-08-12 06:21:03 +02:00
//---------------------------------------------------------------------------
2013-03-05 15:28:40 +01:00
const Type * SymbolDatabase : : findType ( const Token * startTok , const Scope * startScope ) const
2013-03-05 13:33:38 +01:00
{
2013-08-12 06:21:03 +02:00
// skip over struct or union
if ( Token : : Match ( startTok , " struct|union " ) )
startTok = startTok - > next ( ) ;
// type same as scope
2016-08-21 16:11:23 +02:00
if ( startTok - > str ( ) = = startScope - > className & & startScope - > isClassOrStruct ( ) & & startTok - > strAt ( 1 ) ! = " :: " )
2013-08-12 06:21:03 +02:00
return startScope - > definedType ;
2017-07-16 01:14:15 +02:00
const Scope * start_scope = startScope ;
2013-03-05 15:28:40 +01:00
// absolute path - directly start in global scope
if ( startTok - > str ( ) = = " :: " ) {
startTok = startTok - > next ( ) ;
2017-07-16 01:14:15 +02:00
start_scope = & scopeList . front ( ) ;
2013-03-05 13:33:38 +01:00
}
2012-11-30 06:03:58 +01:00
2013-03-05 15:28:40 +01:00
const Token * tok = startTok ;
2017-07-16 01:14:15 +02:00
const Scope * scope = start_scope ;
2013-03-05 15:28:40 +01:00
2013-03-05 13:33:38 +01:00
while ( scope & & tok & & tok - > isName ( ) ) {
2018-05-06 08:23:07 +02:00
if ( tok - > strAt ( 1 ) = = " :: " | | ( tok - > strAt ( 1 ) = = " < " & & Token : : simpleMatch ( tok - > linkAt ( 1 ) , " > :: " ) ) ) {
2012-11-30 06:03:58 +01:00
scope = scope - > findRecordInNestedList ( tok - > str ( ) ) ;
2013-03-05 15:28:40 +01:00
if ( scope ) {
2018-05-01 07:32:19 +02:00
if ( tok - > strAt ( 1 ) = = " :: " )
tok = tok - > tokAt ( 2 ) ;
else
tok = tok - > linkAt ( 1 ) - > tokAt ( 2 ) ;
2013-03-05 15:28:40 +01:00
} else {
2017-07-16 01:14:15 +02:00
start_scope = start_scope - > nestedIn ;
if ( ! start_scope )
2013-03-05 15:28:40 +01:00
break ;
2017-07-16 01:14:15 +02:00
scope = start_scope ;
2013-03-05 15:28:40 +01:00
tok = startTok ;
}
2017-07-16 01:14:15 +02:00
} else {
const Type * type = scope - > findType ( tok - > str ( ) ) ;
2021-01-18 19:01:04 +01:00
const Scope * scope1 ;
2017-07-16 01:14:15 +02:00
if ( type )
return type ;
2021-01-18 19:01:04 +01:00
else if ( ( scope1 = scope - > findRecordInBase ( tok - > str ( ) ) ) ) {
type = scope1 - > definedType ;
if ( type )
return type ;
} else
2017-07-16 01:14:15 +02:00
break ;
}
}
// check using namespaces
while ( startScope ) {
for ( std : : list < Scope : : UsingInfo > : : const_iterator it = startScope - > usingList . begin ( ) ;
it ! = startScope - > usingList . end ( ) ; + + it ) {
tok = startTok ;
scope = it - > scope ;
start_scope = startScope ;
while ( scope & & tok & & tok - > isName ( ) ) {
2018-05-06 08:23:07 +02:00
if ( tok - > strAt ( 1 ) = = " :: " | | ( tok - > strAt ( 1 ) = = " < " & & Token : : simpleMatch ( tok - > linkAt ( 1 ) , " > :: " ) ) ) {
2017-07-16 01:14:15 +02:00
scope = scope - > findRecordInNestedList ( tok - > str ( ) ) ;
if ( scope ) {
2018-05-01 07:32:19 +02:00
if ( tok - > strAt ( 1 ) = = " :: " )
tok = tok - > tokAt ( 2 ) ;
else
tok = tok - > linkAt ( 1 ) - > tokAt ( 2 ) ;
2017-07-16 01:14:15 +02:00
} else {
start_scope = start_scope - > nestedIn ;
if ( ! start_scope )
break ;
scope = start_scope ;
tok = startTok ;
}
} else {
const Type * type = scope - > findType ( tok - > str ( ) ) ;
2021-01-18 19:01:04 +01:00
const Scope * scope1 ;
2017-07-16 01:14:15 +02:00
if ( type )
return type ;
2021-01-18 19:01:04 +01:00
else if ( ( scope1 = scope - > findRecordInBase ( tok - > str ( ) ) ) ) {
type = scope1 - > definedType ;
if ( type )
return type ;
} else
2017-07-16 01:14:15 +02:00
break ;
}
}
}
startScope = startScope - > nestedIn ;
2012-11-30 06:03:58 +01:00
}
// not a valid path
2017-08-09 20:00:26 +02:00
return nullptr ;
2012-11-30 06:03:58 +01:00
}
2014-04-10 16:11:11 +02:00
2013-08-17 18:43:15 +02:00
//---------------------------------------------------------------------------
const Type * SymbolDatabase : : findTypeInNested ( const Token * startTok , const Scope * startScope ) const
{
// skip over struct or union
2016-04-22 06:02:54 +02:00
if ( Token : : Match ( startTok , " struct|union|enum " ) )
2013-08-17 18:43:15 +02:00
startTok = startTok - > next ( ) ;
// type same as scope
if ( startTok - > str ( ) = = startScope - > className & & startScope - > isClassOrStruct ( ) )
return startScope - > definedType ;
bool hasPath = false ;
// absolute path - directly start in global scope
if ( startTok - > str ( ) = = " :: " ) {
hasPath = true ;
startTok = startTok - > next ( ) ;
startScope = & scopeList . front ( ) ;
}
const Token * tok = startTok ;
const Scope * scope = startScope ;
while ( scope & & tok & & tok - > isName ( ) ) {
2018-05-06 08:23:07 +02:00
if ( tok - > strAt ( 1 ) = = " :: " | | ( tok - > strAt ( 1 ) = = " < " & & Token : : simpleMatch ( tok - > linkAt ( 1 ) , " > :: " ) ) ) {
2013-08-17 18:43:15 +02:00
hasPath = true ;
scope = scope - > findRecordInNestedList ( tok - > str ( ) ) ;
if ( scope ) {
2018-05-01 07:32:19 +02:00
if ( tok - > strAt ( 1 ) = = " :: " )
tok = tok - > tokAt ( 2 ) ;
else
tok = tok - > linkAt ( 1 ) - > tokAt ( 2 ) ;
2013-08-17 18:43:15 +02:00
} else {
startScope = startScope - > nestedIn ;
if ( ! startScope )
break ;
scope = startScope ;
tok = startTok ;
}
} else {
const Type * type = scope - > findType ( tok - > str ( ) ) ;
if ( hasPath | | type )
return type ;
else {
scope = scope - > nestedIn ;
if ( ! scope )
break ;
}
}
}
// not a valid path
2017-08-09 20:00:26 +02:00
return nullptr ;
2013-08-17 18:43:15 +02:00
}
2014-04-10 16:11:11 +02:00
//---------------------------------------------------------------------------
const Scope * SymbolDatabase : : findNamespace ( const Token * tok , const Scope * scope ) const
{
const Scope * s = findScope ( tok , scope ) ;
if ( s )
return s ;
else if ( scope - > nestedIn )
return findNamespace ( tok , scope - > nestedIn ) ;
2017-08-09 20:00:26 +02:00
return nullptr ;
2014-04-10 16:11:11 +02:00
}
//---------------------------------------------------------------------------
2019-07-22 11:25:51 +02:00
Function * SymbolDatabase : : findFunctionInScope ( const Token * func , const Scope * ns , const std : : string & path , nonneg int path_length )
2014-04-10 16:11:11 +02:00
{
2014-04-11 05:40:37 +02:00
const Function * function = nullptr ;
2015-01-12 06:11:22 +01:00
const bool destructor = func - > strAt ( - 1 ) = = " ~ " ;
2014-04-11 05:40:37 +02:00
2015-01-02 21:38:19 +01:00
for ( std : : multimap < std : : string , const Function * > : : const_iterator it = ns - > functionMap . find ( func - > str ( ) ) ;
it ! = ns - > functionMap . end ( ) & & it - > first = = func - > str ( ) ; + + it ) {
2015-01-12 06:11:22 +01:00
2021-01-18 19:01:04 +01:00
if ( it - > second - > argsMatch ( ns , it - > second - > argDef , func - > next ( ) , path , path_length ) & &
2015-01-12 06:11:22 +01:00
it - > second - > isDestructor ( ) = = destructor ) {
2015-01-02 21:38:19 +01:00
function = it - > second ;
break ;
2014-04-11 05:40:37 +02:00
}
}
2014-04-10 16:11:11 +02:00
if ( ! function ) {
const Scope * scope = ns - > findRecordInNestedList ( func - > str ( ) ) ;
2018-05-01 07:32:19 +02:00
if ( scope & & Token : : Match ( func - > tokAt ( 1 ) , " ::|< " ) ) {
if ( func - > strAt ( 1 ) = = " :: " )
func = func - > tokAt ( 2 ) ;
2018-05-06 08:23:07 +02:00
else if ( func - > linkAt ( 1 ) )
2018-05-01 07:32:19 +02:00
func = func - > linkAt ( 1 ) - > tokAt ( 2 ) ;
2018-05-06 08:23:07 +02:00
else
return nullptr ;
2014-12-09 21:36:09 +01:00
if ( func - > str ( ) = = " ~ " )
func = func - > next ( ) ;
2018-05-01 07:32:19 +02:00
function = findFunctionInScope ( func , scope , path , path_length ) ;
2014-04-10 16:11:11 +02:00
}
}
return const_cast < Function * > ( function ) ;
}
2015-05-22 22:18:42 +02:00
//---------------------------------------------------------------------------
2015-06-18 19:07:51 +02:00
namespace {
2018-04-08 22:54:10 +02:00
2021-08-07 20:51:18 +02:00
# define C_KEYWORDS \
2020-11-29 15:01:29 +01:00
" _Alignas " , " _Alignof " , " _Atomic " , " _Bool " , " _Complex " , " _Generic " , " _Imaginary " , " _Noreturn " , \
" _Static_assert " , " _Thread_local " , " auto " , " break " , " case " , " char " , " const " , " continue " , " default " , \
" do " , " double " , " else " , " enum " , " extern " , " float " , " for " , " goto " , " if " , " inline " , " int " , " long " , \
" register " , " return " , " short " , " signed " , " sizeof " , " static " , " struct " , " switch " , " typedef " , \
" union " , " unsigned " , " void " , " volatile " , " while "
2018-04-08 22:54:10 +02:00
2021-01-16 13:52:09 +01:00
const std : : unordered_set < std : : string > c_keywords = { C_KEYWORDS , " restrict " } ;
const std : : unordered_set < std : : string > cpp_keywords = {
2018-04-08 22:54:10 +02:00
C_KEYWORDS ,
2020-11-29 15:01:29 +01:00
" alignas " , " alignof " , " and " , " and_eq " , " asm " , " bitand " , " bitor " , " bool " , " catch " , " char8_t " , " char16_t " ,
" char32_t " , " class " , " compl " , " concept " , " consteval " , " constexpr " , " constinit " , " const_cast " , " co_await " ,
" co_return " , " co_yield " , " decltype " ,
2018-06-17 17:05:36 +02:00
" delete " , " dynamic_cast " , " explicit " , " export " , " false " , " friend " ,
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" mutable " , " namespace " , " new " , " noexcept " , " not " , " not_eq " , " nullptr " , " operator " ,
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" or " , " or_eq " , " private " , " protected " , " public " , " reinterpret_cast " ,
" requires " , " static_assert " ,
" static_cast " , " template " , " this " , " thread_local " , " throw " ,
" true " , " try " , " typeid " , " typename " , " using " ,
" virtual " , " wchar_t " , " xor " , " xor_eq "
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} ;
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}
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bool SymbolDatabase : : isReservedName ( const std : : string & iName ) const
{
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if ( isCPP ( ) )
return cpp_keywords . find ( iName ) ! = cpp_keywords . cend ( ) ;
else
return c_keywords . find ( iName ) ! = c_keywords . cend ( ) ;
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}
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nonneg int SymbolDatabase : : sizeOfType ( const Token * type ) const
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{
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int size = mTokenizer - > sizeOfType ( type ) ;
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if ( size = = 0 & & type - > type ( ) & & type - > type ( ) - > isEnumType ( ) & & type - > type ( ) - > classScope ) {
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size = mSettings - > sizeof_int ;
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const Token * enum_type = type - > type ( ) - > classScope - > enumType ;
if ( enum_type )
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size = mTokenizer - > sizeOfType ( enum_type ) ;
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}
return size ;
}
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static const Token * parsedecl ( const Token * type , ValueType * const valuetype , ValueType : : Sign defaultSignedness , const Settings * settings ) ;
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void SymbolDatabase : : setValueType ( Token * tok , const Variable & var )
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{
ValueType valuetype ;
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if ( var . nameToken ( ) )
valuetype . bits = var . nameToken ( ) - > bits ( ) ;
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valuetype . pointer = var . dimensions ( ) . size ( ) ;
valuetype . typeScope = var . typeScope ( ) ;
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if ( var . valueType ( ) ) {
valuetype . container = var . valueType ( ) - > container ;
}
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valuetype . smartPointerType = var . smartPointerType ( ) ;
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if ( parsedecl ( var . typeStartToken ( ) , & valuetype , mDefaultSignedness , mSettings ) ) {
if ( tok - > str ( ) = = " . " & & tok - > astOperand1 ( ) ) {
const ValueType * const vt = tok - > astOperand1 ( ) - > valueType ( ) ;
if ( vt & & ( vt - > constness & 1 ) ! = 0 )
valuetype . constness | = 1 ;
}
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setValueType ( tok , valuetype ) ;
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}
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}
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void SymbolDatabase : : setValueType ( Token * tok , const Enumerator & enumerator )
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{
ValueType valuetype ;
valuetype . typeScope = enumerator . scope ;
const Token * type = enumerator . scope - > enumType ;
if ( type ) {
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valuetype . type = ValueType : : typeFromString ( type - > str ( ) , type - > isLong ( ) ) ;
if ( valuetype . type = = ValueType : : Type : : UNKNOWN_TYPE & & type - > isStandardType ( ) )
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valuetype . fromLibraryType ( type - > str ( ) , mSettings ) ;
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if ( valuetype . isIntegral ( ) ) {
if ( type - > isSigned ( ) )
valuetype . sign = ValueType : : Sign : : SIGNED ;
else if ( type - > isUnsigned ( ) )
valuetype . sign = ValueType : : Sign : : UNSIGNED ;
else if ( valuetype . type = = ValueType : : Type : : CHAR )
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valuetype . sign = mDefaultSignedness ;
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else
valuetype . sign = ValueType : : Sign : : SIGNED ;
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}
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setValueType ( tok , valuetype ) ;
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} else {
valuetype . sign = ValueType : : SIGNED ;
valuetype . type = ValueType : : INT ;
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setValueType ( tok , valuetype ) ;
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}
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}
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static void setAutoTokenProperties ( Token * const autoTok )
{
const ValueType * valuetype = autoTok - > valueType ( ) ;
if ( valuetype - > isIntegral ( ) | | valuetype - > isFloat ( ) )
autoTok - > isStandardType ( true ) ;
}
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void SymbolDatabase : : setValueType ( Token * tok , const ValueType & valuetype )
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{
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tok - > setValueType ( new ValueType ( valuetype ) ) ;
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Token * parent = tok - > astParent ( ) ;
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if ( ! parent | | parent - > valueType ( ) )
return ;
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if ( ! parent - > astOperand1 ( ) )
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return ;
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const ValueType * vt1 = parent - > astOperand1 ( ) ? parent - > astOperand1 ( ) - > valueType ( ) : nullptr ;
const ValueType * vt2 = parent - > astOperand2 ( ) ? parent - > astOperand2 ( ) - > valueType ( ) : nullptr ;
if ( vt1 & & Token : : Match ( parent , " <<|>> " ) ) {
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if ( ! mIsCpp | | ( vt2 & & vt2 - > isIntegral ( ) ) ) {
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if ( vt1 - > type < ValueType : : Type : : BOOL | | vt1 - > type > = ValueType : : Type : : INT ) {
ValueType vt ( * vt1 ) ;
vt . reference = Reference : : None ;
setValueType ( parent , vt ) ;
} else {
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ValueType vt ( * vt1 ) ;
vt . type = ValueType : : Type : : INT ; // Integer promotion
vt . sign = ValueType : : Sign : : SIGNED ;
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vt . reference = Reference : : None ;
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setValueType ( parent , vt ) ;
}
}
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return ;
}
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if ( vt1 & & vt1 - > container & & vt1 - > containerTypeToken & & Token : : Match ( parent , " . %name% ( " ) & & vt1 - > container - > getYield ( parent - > next ( ) - > str ( ) ) = = Library : : Container : : Yield : : ITEM ) {
ValueType item ;
if ( parsedecl ( vt1 - > containerTypeToken , & item , mDefaultSignedness , mSettings ) )
setValueType ( parent - > tokAt ( 2 ) , item ) ;
}
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if ( vt1 & & vt1 - > smartPointerType & & Token : : Match ( parent , " . %name% ( " ) & & parent - > originalName ( ) = = " -> " & & ! parent - > next ( ) - > function ( ) ) {
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const Scope * scope = vt1 - > smartPointerType - > classScope ;
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const Function * f = scope ? scope - > findFunction ( parent - > next ( ) , false ) : nullptr ;
if ( f )
parent - > next ( ) - > function ( f ) ;
}
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if ( parent - > isAssignmentOp ( ) ) {
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if ( vt1 ) {
auto vt = * vt1 ;
vt . reference = Reference : : None ;
setValueType ( parent , vt ) ;
} else if ( mIsCpp & & ( ( Token : : Match ( parent - > tokAt ( - 3 ) , " %var% ; % var % = " ) && parent->strAt(-3) == parent->strAt(-1)) ||
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Token : : Match ( parent - > tokAt ( - 1 ) , " %var% = " ) ) ) {
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Token * var1Tok = parent - > strAt ( - 2 ) = = " ; " ? parent - > tokAt ( - 3 ) : parent - > tokAt ( - 1 ) ;
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Token * autoTok = nullptr ;
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if ( Token : : Match ( var1Tok - > tokAt ( - 2 ) , " ;|{|}|(|const auto " ) )
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autoTok = var1Tok - > previous ( ) ;
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else if ( Token : : Match ( var1Tok - > tokAt ( - 3 ) , " ; | { | } | ( | const auto * " ))
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autoTok = var1Tok - > tokAt ( - 2 ) ;
if ( autoTok ) {
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ValueType vt ( * vt2 ) ;
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if ( vt . constness & ( 1 < < vt . pointer ) )
vt . constness & = ~ ( 1 < < vt . pointer ) ;
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if ( autoTok - > strAt ( 1 ) = = " * " & & vt . pointer )
vt . pointer - - ;
if ( autoTok - > strAt ( - 1 ) = = " const " )
vt . constness | = 1 ;
setValueType ( autoTok , vt ) ;
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setAutoTokenProperties ( autoTok ) ;
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if ( vt2 - > pointer > vt . pointer )
vt . pointer + + ;
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setValueType ( var1Tok , vt ) ;
if ( var1Tok ! = parent - > previous ( ) )
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setValueType ( parent - > previous ( ) , vt ) ;
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Variable * var = const_cast < Variable * > ( parent - > previous ( ) - > variable ( ) ) ;
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if ( var ) {
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ValueType vt2_ ( * vt2 ) ;
if ( vt2_ . pointer = = 0 & & autoTok - > strAt ( 1 ) = = " * " )
vt2_ . pointer = 1 ;
if ( ( vt . constness & ( 1 < < vt2 - > pointer ) ) ! = 0 )
vt2_ . constness | = ( 1 < < vt2 - > pointer ) ;
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if ( ! Token : : Match ( autoTok - > tokAt ( 1 ) , " *|& " ) )
vt2_ . constness = vt . constness ;
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var - > setValueType ( vt2_ ) ;
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if ( vt2 - > typeScope & & vt2 - > typeScope - > definedType ) {
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var - > type ( vt2 - > typeScope - > definedType ) ;
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if ( autoTok - > valueType ( ) - > pointer = = 0 )
autoTok - > type ( vt2 - > typeScope - > definedType ) ;
}
}
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}
}
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return ;
}
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if ( parent - > str ( ) = = " [ " & & ( ! mIsCpp | | parent - > astOperand1 ( ) = = tok ) & & valuetype . pointer > 0U & & ! Token : : Match ( parent - > previous ( ) , " [{,] " ) ) {
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const Token * op1 = parent - > astOperand1 ( ) ;
while ( op1 & & op1 - > str ( ) = = " [ " )
op1 = op1 - > astOperand1 ( ) ;
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ValueType vt ( valuetype ) ;
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// the "[" is a dereference unless this is a variable declaration
if ( ! ( op1 & & op1 - > variable ( ) & & op1 - > variable ( ) - > nameToken ( ) = = op1 ) )
vt . pointer - = 1U ;
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setValueType ( parent , vt ) ;
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return ;
}
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if ( Token : : Match ( parent - > previous ( ) , " %name% ( " ) & & parent - > astOperand1 ( ) = = tok & & valuetype . pointer > 0U ) {
ValueType vt ( valuetype ) ;
vt . pointer - = 1U ;
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setValueType ( parent , vt ) ;
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return ;
}
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// std::move
if ( vt2 & & parent - > str ( ) = = " ( " & & Token : : simpleMatch ( parent - > tokAt ( - 3 ) , " std :: move ( " ) ) {
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ValueType vt = valuetype ;
vt . reference = Reference : : RValue ;
setValueType ( parent , vt ) ;
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return ;
}
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if ( parent - > str ( ) = = " * " & & ! parent - > astOperand2 ( ) & & valuetype . pointer > 0U ) {
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ValueType vt ( valuetype ) ;
vt . pointer - = 1U ;
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setValueType ( parent , vt ) ;
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return ;
}
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if ( parent - > str ( ) = = " * " & & Token : : simpleMatch ( parent - > astOperand2 ( ) , " [ " ) & & valuetype . pointer > 0U ) {
const Token * op1 = parent - > astOperand2 ( ) - > astOperand1 ( ) ;
while ( op1 & & op1 - > str ( ) = = " [ " )
op1 = op1 - > astOperand1 ( ) ;
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const ValueType & vt ( valuetype ) ;
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if ( op1 & & op1 - > variable ( ) & & op1 - > variable ( ) - > nameToken ( ) = = op1 ) {
setValueType ( parent , vt ) ;
return ;
}
}
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if ( parent - > str ( ) = = " & " & & ! parent - > astOperand2 ( ) ) {
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ValueType vt ( valuetype ) ;
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vt . reference = Reference : : None ; //Given int& x; the type of &x is int* not int&*
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vt . pointer + = 1U ;
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setValueType ( parent , vt ) ;
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return ;
}
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if ( ( parent - > str ( ) = = " . " | | parent - > str ( ) = = " :: " ) & &
parent - > astOperand2 ( ) & & parent - > astOperand2 ( ) - > isName ( ) ) {
const Variable * var = parent - > astOperand2 ( ) - > variable ( ) ;
if ( ! var & & valuetype . typeScope & & vt1 ) {
const std : : string & name = parent - > astOperand2 ( ) - > str ( ) ;
const Scope * typeScope = vt1 - > typeScope ;
if ( ! typeScope )
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return ;
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for ( std : : list < Variable > : : const_iterator it = typeScope - > varlist . begin ( ) ; it ! = typeScope - > varlist . end ( ) ; + + it ) {
if ( it - > nameToken ( ) - > str ( ) = = name ) {
var = & * it ;
break ;
}
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}
}
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if ( var )
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setValueType ( parent , * var ) ;
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return ;
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}
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// range for loop, auto
if ( vt2 & &
parent - > str ( ) = = " : " & &
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Token : : Match ( parent - > astParent ( ) , " ( const| auto *|&| %var% : " ) & &
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! parent - > previous ( ) - > valueType ( ) & &
Token : : simpleMatch ( parent - > astParent ( ) - > astOperand1 ( ) , " for " ) ) {
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const bool isconst = Token : : simpleMatch ( parent - > astParent ( ) - > next ( ) , " const " ) ;
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Token * const autoToken = parent - > astParent ( ) - > tokAt ( isconst ? 2 : 1 ) ;
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if ( vt2 - > pointer ) {
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ValueType autovt ( * vt2 ) ;
autovt . pointer - - ;
autovt . constness = 0 ;
setValueType ( autoToken , autovt ) ;
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setAutoTokenProperties ( autoToken ) ;
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ValueType varvt ( * vt2 ) ;
varvt . pointer - - ;
if ( isconst )
varvt . constness | = 1 ;
setValueType ( parent - > previous ( ) , varvt ) ;
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Variable * var = const_cast < Variable * > ( parent - > previous ( ) - > variable ( ) ) ;
if ( var ) {
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var - > setValueType ( varvt ) ;
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if ( vt2 - > typeScope & & vt2 - > typeScope - > definedType ) {
var - > type ( vt2 - > typeScope - > definedType ) ;
autoToken - > type ( vt2 - > typeScope - > definedType ) ;
}
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}
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} else if ( vt2 - > container ) {
// TODO: Determine exact type of RHS
const Token * typeStart = parent - > astOperand2 ( ) ;
while ( typeStart ) {
if ( typeStart - > variable ( ) )
typeStart = typeStart - > variable ( ) - > typeStartToken ( ) ;
else if ( typeStart - > str ( ) = = " ( " & & typeStart - > previous ( ) & & typeStart - > previous ( ) - > function ( ) )
typeStart = typeStart - > previous ( ) - > function ( ) - > retDef ;
else
break ;
}
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// Try to determine type of "auto" token.
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// TODO: Get type better
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bool setType = false ;
ValueType autovt ;
const Type * templateArgType = nullptr ; // container element type / smart pointer type
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if ( vt2 - > containerTypeToken ) {
if ( mSettings - > library . isSmartPointer ( vt2 - > containerTypeToken ) ) {
const Token * smartPointerTypeTok = vt2 - > containerTypeToken ;
while ( Token : : Match ( smartPointerTypeTok , " %name%|:: " ) )
smartPointerTypeTok = smartPointerTypeTok - > next ( ) ;
if ( Token : : Match ( smartPointerTypeTok , " < %name% > > " ) & & smartPointerTypeTok - > next ( ) - > type ( ) ) {
setType = true ;
templateArgType = smartPointerTypeTok - > next ( ) - > type ( ) ;
autovt . smartPointerType = templateArgType ;
autovt . type = ValueType : : Type : : NONSTD ;
}
} else if ( parsedecl ( vt2 - > containerTypeToken , & autovt , mDefaultSignedness , mSettings ) ) {
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setType = true ;
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templateArgType = vt2 - > containerTypeToken - > type ( ) ;
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}
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}
if ( setType ) {
// Type of "auto" has been determined.. set type information for "auto" and variable tokens
setValueType ( autoToken , autovt ) ;
setAutoTokenProperties ( autoToken ) ;
ValueType varvt ( autovt ) ;
if ( isconst )
varvt . constness | = 1 ;
setValueType ( parent - > previous ( ) , varvt ) ;
Variable * var = const_cast < Variable * > ( parent - > previous ( ) - > variable ( ) ) ;
if ( var ) {
var - > setValueType ( varvt ) ;
if ( templateArgType & & templateArgType - > classScope & & templateArgType - > classScope - > definedType ) {
autoToken - > type ( templateArgType - > classScope - > definedType ) ;
var - > type ( templateArgType - > classScope - > definedType ) ;
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}
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}
}
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}
}
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if ( vt1 & & vt1 - > containerTypeToken & & parent - > str ( ) = = " [ " ) {
ValueType vtParent ;
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if ( parsedecl ( vt1 - > containerTypeToken , & vtParent , mDefaultSignedness , mSettings ) ) {
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setValueType ( parent , vtParent ) ;
return ;
}
}
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if ( mIsCpp & & vt2 & & Token : : simpleMatch ( parent - > previous ( ) , " decltype ( " ) ) {
setValueType ( parent , * vt2 ) ;
return ;
}
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// c++17 auto type deduction of braced init list
if ( mIsCpp & & mSettings - > standards . cpp > = Standards : : CPP17 & & vt2 & & Token : : Match ( parent - > tokAt ( - 2 ) , " auto %var% { " ) ) {
Token * autoTok = parent - > tokAt ( - 2 ) ;
setValueType ( autoTok , * vt2 ) ;
setAutoTokenProperties ( autoTok ) ;
const_cast < Variable * > ( parent - > previous ( ) - > variable ( ) ) - > setValueType ( * vt2 ) ;
return ;
}
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if ( ! vt1 )
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return ;
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if ( parent - > astOperand2 ( ) & & ! vt2 )
return ;
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const bool ternary = parent - > str ( ) = = " : " & & parent - > astParent ( ) & & parent - > astParent ( ) - > str ( ) = = " ? " ;
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if ( ternary ) {
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if ( vt2 & & vt1 - > pointer = = vt2 - > pointer & & vt1 - > type = = vt2 - > type & & vt1 - > sign = = vt2 - > sign )
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setValueType ( parent , * vt2 ) ;
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parent = parent - > astParent ( ) ;
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}
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if ( ternary | | parent - > isArithmeticalOp ( ) | | parent - > tokType ( ) = = Token : : eIncDecOp ) {
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// CONTAINER + x => CONTAINER
if ( parent - > str ( ) = = " + " & & vt1 - > type = = ValueType : : Type : : CONTAINER & & vt2 & & vt2 - > isIntegral ( ) ) {
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setValueType ( parent , * vt1 ) ;
return ;
}
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// x + CONTAINER => CONTAINER
if ( parent - > str ( ) = = " + " & & vt1 - > isIntegral ( ) & & vt2 & & vt2 - > type = = ValueType : : Type : : CONTAINER ) {
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setValueType ( parent , * vt2 ) ;
return ;
}
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if ( vt1 - > pointer ! = 0U & & vt2 & & vt2 - > pointer = = 0U ) {
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setValueType ( parent , * vt1 ) ;
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return ;
}
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if ( vt1 - > pointer = = 0U & & vt2 & & vt2 - > pointer ! = 0U ) {
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setValueType ( parent , * vt2 ) ;
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return ;
}
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if ( vt1 - > pointer ! = 0U ) {
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if ( ternary | | parent - > tokType ( ) = = Token : : eIncDecOp ) // result is pointer
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setValueType ( parent , * vt1 ) ;
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else // result is pointer diff
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setValueType ( parent , ValueType ( ValueType : : Sign : : SIGNED , ValueType : : Type : : INT , 0U , 0U , " ptrdiff_t " ) ) ;
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return ;
}
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if ( vt1 - > type = = ValueType : : Type : : LONGDOUBLE | | ( vt2 & & vt2 - > type = = ValueType : : Type : : LONGDOUBLE ) ) {
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setValueType ( parent , ValueType ( ValueType : : Sign : : UNKNOWN_SIGN , ValueType : : Type : : LONGDOUBLE , 0U ) ) ;
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return ;
}
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if ( vt1 - > type = = ValueType : : Type : : DOUBLE | | ( vt2 & & vt2 - > type = = ValueType : : Type : : DOUBLE ) ) {
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setValueType ( parent , ValueType ( ValueType : : Sign : : UNKNOWN_SIGN , ValueType : : Type : : DOUBLE , 0U ) ) ;
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return ;
}
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if ( vt1 - > type = = ValueType : : Type : : FLOAT | | ( vt2 & & vt2 - > type = = ValueType : : Type : : FLOAT ) ) {
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setValueType ( parent , ValueType ( ValueType : : Sign : : UNKNOWN_SIGN , ValueType : : Type : : FLOAT , 0U ) ) ;
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return ;
}
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// iterator +/- integral = iterator
if ( vt1 - > type = = ValueType : : Type : : ITERATOR & & vt2 & & vt2 - > isIntegral ( ) & &
( parent - > str ( ) = = " + " | | parent - > str ( ) = = " - " ) ) {
setValueType ( parent , * vt1 ) ;
return ;
}
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if ( parent - > str ( ) = = " + " & & vt1 - > type = = ValueType : : Type : : CONTAINER & & vt2 & & vt2 - > type = = ValueType : : Type : : CONTAINER & & vt1 - > container = = vt2 - > container ) {
setValueType ( parent , * vt1 ) ;
return ;
}
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}
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if ( vt1 - > isIntegral ( ) & & vt1 - > pointer = = 0U & &
( ! vt2 | | ( vt2 - > isIntegral ( ) & & vt2 - > pointer = = 0U ) ) & &
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( ternary | | parent - > isArithmeticalOp ( ) | | parent - > tokType ( ) = = Token : : eBitOp | | parent - > tokType ( ) = = Token : : eIncDecOp | | parent - > isAssignmentOp ( ) ) ) {
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ValueType vt ;
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if ( ! vt2 | | vt1 - > type > vt2 - > type ) {
vt . type = vt1 - > type ;
vt . sign = vt1 - > sign ;
vt . originalTypeName = vt1 - > originalTypeName ;
} else if ( vt1 - > type = = vt2 - > type ) {
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vt . type = vt1 - > type ;
if ( vt1 - > sign = = ValueType : : Sign : : UNSIGNED | | vt2 - > sign = = ValueType : : Sign : : UNSIGNED )
vt . sign = ValueType : : Sign : : UNSIGNED ;
else if ( vt1 - > sign = = ValueType : : Sign : : UNKNOWN_SIGN | | vt2 - > sign = = ValueType : : Sign : : UNKNOWN_SIGN )
vt . sign = ValueType : : Sign : : UNKNOWN_SIGN ;
else
vt . sign = ValueType : : Sign : : SIGNED ;
vt . originalTypeName = ( vt1 - > originalTypeName . empty ( ) ? vt2 : vt1 ) - > originalTypeName ;
} else {
vt . type = vt2 - > type ;
vt . sign = vt2 - > sign ;
vt . originalTypeName = vt2 - > originalTypeName ;
}
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if ( vt . type < ValueType : : Type : : INT & & ! ( ternary & & vt . type = = ValueType : : Type : : BOOL ) ) {
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vt . type = ValueType : : Type : : INT ;
vt . sign = ValueType : : Sign : : SIGNED ;
vt . originalTypeName . clear ( ) ;
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}
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setValueType ( parent , vt ) ;
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return ;
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}
}
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static const Token * parsedecl ( const Token * type , ValueType * const valuetype , ValueType : : Sign defaultSignedness , const Settings * settings )
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{
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const Token * const previousType = type ;
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const unsigned int pointer0 = valuetype - > pointer ;
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while ( Token : : Match ( type - > previous ( ) , " %name% " ) & & ! endsWith ( type - > previous ( ) - > str ( ) , ' : ' ) )
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type = type - > previous ( ) ;
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valuetype - > sign = ValueType : : Sign : : UNKNOWN_SIGN ;
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if ( ! valuetype - > typeScope & & ! valuetype - > smartPointerType )
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valuetype - > type = ValueType : : Type : : UNKNOWN_TYPE ;
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else if ( valuetype - > smartPointerType )
valuetype - > type = ValueType : : Type : : NONSTD ;
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else if ( valuetype - > typeScope - > type = = Scope : : eEnum ) {
const Token * enum_type = valuetype - > typeScope - > enumType ;
if ( enum_type ) {
if ( enum_type - > isSigned ( ) )
valuetype - > sign = ValueType : : Sign : : SIGNED ;
else if ( enum_type - > isUnsigned ( ) )
valuetype - > sign = ValueType : : Sign : : UNSIGNED ;
else
valuetype - > sign = defaultSignedness ;
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const ValueType : : Type t = ValueType : : typeFromString ( enum_type - > str ( ) , enum_type - > isLong ( ) ) ;
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if ( t ! = ValueType : : Type : : UNKNOWN_TYPE )
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valuetype - > type = t ;
else if ( enum_type - > isStandardType ( ) )
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valuetype - > fromLibraryType ( enum_type - > str ( ) , settings ) ;
} else
valuetype - > type = ValueType : : Type : : INT ;
} else
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valuetype - > type = ValueType : : Type : : RECORD ;
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bool par = false ;
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while ( Token : : Match ( type , " %name%|*|&|&&|::|( " ) & & ! Token : : Match ( type , " typename|template " ) & & type - > varId ( ) = = 0 & &
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! type - > variable ( ) & & ! type - > function ( ) ) {
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if ( type - > str ( ) = = " ( " ) {
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if ( Token : : Match ( type - > link ( ) , " ) const| { " ) )
break ;
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if ( par )
break ;
par = true ;
}
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if ( Token : : simpleMatch ( type , " decltype ( " ) & & type - > next ( ) - > valueType ( ) ) {
const ValueType * vt2 = type - > next ( ) - > valueType ( ) ;
if ( valuetype - > sign = = ValueType : : Sign : : UNKNOWN_SIGN )
valuetype - > sign = vt2 - > sign ;
if ( valuetype - > type = = ValueType : : Type : : UNKNOWN_TYPE )
valuetype - > type = vt2 - > type ;
valuetype - > constness + = vt2 - > constness ;
valuetype - > pointer + = vt2 - > pointer ;
type = type - > linkAt ( 1 ) - > next ( ) ;
continue ;
} else if ( type - > isSigned ( ) )
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valuetype - > sign = ValueType : : Sign : : SIGNED ;
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else if ( type - > isUnsigned ( ) )
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valuetype - > sign = ValueType : : Sign : : UNSIGNED ;
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if ( valuetype - > type = = ValueType : : Type : : UNKNOWN_TYPE & &
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type - > type ( ) & & type - > type ( ) - > isTypeAlias ( ) & & type - > type ( ) - > typeStart & &
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type - > type ( ) - > typeStart - > str ( ) ! = type - > str ( ) & & type - > type ( ) - > typeStart ! = previousType )
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parsedecl ( type - > type ( ) - > typeStart , valuetype , defaultSignedness , settings ) ;
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else if ( Token : : Match ( type , " const|constexpr " ) )
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valuetype - > constness | = ( 1 < < ( valuetype - > pointer - pointer0 ) ) ;
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else if ( settings - > clang & & type - > str ( ) . size ( ) > 2 & & type - > str ( ) . find ( " :: " ) < type - > str ( ) . find ( " < " ) ) {
TokenList typeTokens ( settings ) ;
std : : string : : size_type pos1 = 0 ;
do {
std : : string : : size_type pos2 = type - > str ( ) . find ( " :: " , pos1 ) ;
if ( pos2 = = std : : string : : npos ) {
typeTokens . addtoken ( type - > str ( ) . substr ( pos1 ) , 0 , 0 , 0 , false ) ;
break ;
}
typeTokens . addtoken ( type - > str ( ) . substr ( pos1 , pos2 - pos1 ) , 0 , 0 , 0 , false ) ;
typeTokens . addtoken ( " :: " , 0 , 0 , 0 , false ) ;
pos1 = pos2 + 2 ;
} while ( pos1 < type - > str ( ) . size ( ) ) ;
const Library : : Container * container = settings - > library . detectContainer ( typeTokens . front ( ) ) ;
if ( container ) {
valuetype - > type = ValueType : : Type : : CONTAINER ;
valuetype - > container = container ;
} else {
const Scope * scope = type - > scope ( ) ;
valuetype - > typeScope = scope - > check - > findScope ( typeTokens . front ( ) , scope ) ;
if ( valuetype - > typeScope )
valuetype - > type = ( scope - > type = = Scope : : ScopeType : : eClass ) ? ValueType : : Type : : RECORD : ValueType : : Type : : NONSTD ;
}
} else if ( const Library : : Container * container = settings - > library . detectContainer ( type ) ) {
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valuetype - > type = ValueType : : Type : : CONTAINER ;
valuetype - > container = container ;
while ( Token : : Match ( type , " %name%|::|< " ) ) {
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if ( type - > str ( ) = = " < " & & type - > link ( ) ) {
if ( container - > type_templateArgNo > = 0 ) {
const Token * templateType = type - > next ( ) ;
for ( int j = 0 ; templateType & & j < container - > type_templateArgNo ; j + + )
templateType = templateType - > nextTemplateArgument ( ) ;
valuetype - > containerTypeToken = templateType ;
}
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type = type - > link ( ) ;
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}
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type = type - > next ( ) ;
}
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if ( type & & type - > str ( ) = = " ( " & & type - > previous ( ) - > function ( ) )
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// we are past the end of the type
type = type - > previous ( ) ;
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continue ;
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} else if ( const Library : : SmartPointer * smartPointer = settings - > library . detectSmartPointer ( type ) ) {
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const Token * argTok = Token : : findsimplematch ( type , " < " ) ;
if ( ! argTok )
continue ;
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valuetype - > smartPointer = smartPointer ;
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valuetype - > smartPointerTypeToken = argTok - > next ( ) ;
valuetype - > smartPointerType = argTok - > next ( ) - > type ( ) ;
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valuetype - > type = ValueType : : Type : : NONSTD ;
type = argTok - > link ( ) ;
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if ( type )
type = type - > next ( ) ;
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continue ;
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} else if ( Token : : Match ( type , " %name% :: %name% " ) ) {
std : : string typestr ;
const Token * end = type ;
while ( Token : : Match ( end , " %name% :: %name% " ) ) {
typestr + = end - > str ( ) + " :: " ;
end = end - > tokAt ( 2 ) ;
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}
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typestr + = end - > str ( ) ;
if ( valuetype - > fromLibraryType ( typestr , settings ) )
type = end ;
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} else if ( ValueType : : Type : : UNKNOWN_TYPE ! = ValueType : : typeFromString ( type - > str ( ) , type - > isLong ( ) ) ) {
ValueType : : Type t0 = valuetype - > type ;
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valuetype - > type = ValueType : : typeFromString ( type - > str ( ) , type - > isLong ( ) ) ;
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if ( t0 = = ValueType : : Type : : LONG ) {
if ( valuetype - > type = = ValueType : : Type : : LONG )
valuetype - > type = ValueType : : Type : : LONGLONG ;
else if ( valuetype - > type = = ValueType : : Type : : DOUBLE )
valuetype - > type = ValueType : : Type : : LONGDOUBLE ;
}
} else if ( type - > str ( ) = = " auto " ) {
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const ValueType * vt = type - > valueType ( ) ;
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if ( ! vt )
return nullptr ;
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valuetype - > type = vt - > type ;
valuetype - > pointer = vt - > pointer ;
if ( vt - > sign ! = ValueType : : Sign : : UNKNOWN_SIGN )
valuetype - > sign = vt - > sign ;
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valuetype - > constness = vt - > constness ;
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valuetype - > originalTypeName = vt - > originalTypeName ;
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while ( Token : : Match ( type , " %name%|*|&|:: " ) & & ! type - > variable ( ) ) {
if ( type - > str ( ) = = " * " )
valuetype - > pointer + + ;
if ( type - > str ( ) = = " const " )
valuetype - > constness | = ( 1 < < valuetype - > pointer ) ;
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type = type - > next ( ) ;
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}
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break ;
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} else if ( ! valuetype - > typeScope & & ( type - > str ( ) = = " struct " | | type - > str ( ) = = " enum " ) )
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valuetype - > type = type - > str ( ) = = " struct " ? ValueType : : Type : : RECORD : ValueType : : Type : : NONSTD ;
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else if ( ! valuetype - > typeScope & & type - > type ( ) & & type - > type ( ) - > classScope ) {
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if ( type - > type ( ) - > classScope - > type = = Scope : : ScopeType : : eEnum ) {
valuetype - > type = ValueType : : Type : : INT ;
valuetype - > sign = ValueType : : Sign : : SIGNED ;
} else {
valuetype - > type = ValueType : : Type : : RECORD ;
}
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valuetype - > typeScope = type - > type ( ) - > classScope ;
} else if ( type - > isName ( ) & & valuetype - > sign ! = ValueType : : Sign : : UNKNOWN_SIGN & & valuetype - > pointer = = 0U )
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return nullptr ;
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else if ( type - > str ( ) = = " * " )
valuetype - > pointer + + ;
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else if ( type - > str ( ) = = " & " )
valuetype - > reference = Reference : : LValue ;
else if ( type - > str ( ) = = " && " )
valuetype - > reference = Reference : : RValue ;
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else if ( type - > isStandardType ( ) )
valuetype - > fromLibraryType ( type - > str ( ) , settings ) ;
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else if ( Token : : Match ( type - > previous ( ) , " !!:: %name% !!:: " ) )
valuetype - > fromLibraryType ( type - > str ( ) , settings ) ;
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if ( ! type - > originalName ( ) . empty ( ) )
valuetype - > originalTypeName = type - > originalName ( ) ;
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type = type - > next ( ) ;
}
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// Set signedness for integral types..
if ( valuetype - > isIntegral ( ) & & valuetype - > sign = = ValueType : : Sign : : UNKNOWN_SIGN ) {
if ( valuetype - > type = = ValueType : : Type : : CHAR )
valuetype - > sign = defaultSignedness ;
else if ( valuetype - > type > = ValueType : : Type : : SHORT )
valuetype - > sign = ValueType : : Sign : : SIGNED ;
}
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2020-09-03 18:44:44 +02:00
return ( type & & ( valuetype - > type ! = ValueType : : Type : : UNKNOWN_TYPE | | valuetype - > pointer > 0 | | valuetype - > reference ! = Reference : : None ) ) ? type : nullptr ;
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}
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static const Scope * getClassScope ( const Token * tok )
{
return tok & & tok - > valueType ( ) & & tok - > valueType ( ) - > typeScope & & tok - > valueType ( ) - > typeScope - > isClassOrStruct ( ) ?
tok - > valueType ( ) - > typeScope :
nullptr ;
}
static const Function * getOperatorFunction ( const Token * const tok )
{
const std : : string functionName ( " operator " + tok - > str ( ) ) ;
std : : multimap < std : : string , const Function * > : : const_iterator it ;
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const Scope * classScope = getClassScope ( tok - > astOperand1 ( ) ) ;
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if ( classScope ) {
it = classScope - > functionMap . find ( functionName ) ;
if ( it ! = classScope - > functionMap . end ( ) )
return it - > second ;
}
classScope = getClassScope ( tok - > astOperand2 ( ) ) ;
if ( classScope ) {
it = classScope - > functionMap . find ( functionName ) ;
if ( it ! = classScope - > functionMap . end ( ) )
return it - > second ;
}
return nullptr ;
}
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void SymbolDatabase : : setValueTypeInTokenList ( bool reportDebugWarnings , Token * tokens )
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{
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if ( ! tokens )
tokens = const_cast < Tokenizer * > ( mTokenizer ) - > list . front ( ) ;
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2015-10-04 19:42:58 +02:00
for ( Token * tok = tokens ; tok ; tok = tok - > next ( ) )
tok - > setValueType ( nullptr ) ;
for ( Token * tok = tokens ; tok ; tok = tok - > next ( ) ) {
if ( tok - > isNumber ( ) ) {
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if ( MathLib : : isFloat ( tok - > str ( ) ) ) {
ValueType : : Type type = ValueType : : Type : : DOUBLE ;
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const char suffix = tok - > str ( ) [ tok - > str ( ) . size ( ) - 1 ] ;
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if ( suffix = = ' f ' | | suffix = = ' F ' )
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type = ValueType : : Type : : FLOAT ;
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else if ( suffix = = ' L ' | | suffix = = ' l ' )
type = ValueType : : Type : : LONGDOUBLE ;
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setValueType ( tok , ValueType ( ValueType : : Sign : : UNKNOWN_SIGN , type , 0U ) ) ;
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} else if ( MathLib : : isInt ( tok - > str ( ) ) ) {
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const std : : string tokStr = MathLib : : abs ( tok - > str ( ) ) ;
const bool unsignedSuffix = ( tokStr . find_last_of ( " uU " ) ! = std : : string : : npos ) ;
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ValueType : : Sign sign = unsignedSuffix ? ValueType : : Sign : : UNSIGNED : ValueType : : Sign : : SIGNED ;
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ValueType : : Type type = ValueType : : Type : : INT ;
const MathLib : : biguint value = MathLib : : toULongNumber ( tokStr ) ;
for ( std : : size_t pos = tokStr . size ( ) - 1U ; pos > 0U ; - - pos ) {
const char suffix = tokStr [ pos ] ;
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if ( suffix = = ' u ' | | suffix = = ' U ' )
sign = ValueType : : Sign : : UNSIGNED ;
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else if ( suffix = = ' l ' | | suffix = = ' L ' )
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type = ( type = = ValueType : : Type : : INT ) ? ValueType : : Type : : LONG : ValueType : : Type : : LONGLONG ;
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else if ( pos > 2U & & suffix = = ' 4 ' & & tokStr [ pos - 1 ] = = ' 6 ' & & tokStr [ pos - 2 ] = = ' i ' ) {
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type = ValueType : : Type : : LONGLONG ;
pos - = 2 ;
} else break ;
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}
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if ( mSettings - > platformType ! = cppcheck : : Platform : : Unspecified ) {
if ( type < = ValueType : : Type : : INT & & mSettings - > isIntValue ( unsignedSuffix ? ( value > > 1 ) : value ) )
type = ValueType : : Type : : INT ;
else if ( type < = ValueType : : Type : : INT & & ! MathLib : : isDec ( tokStr ) & & mSettings - > isIntValue ( value > > 2 ) ) {
type = ValueType : : Type : : INT ;
sign = ValueType : : Sign : : UNSIGNED ;
} else if ( type < = ValueType : : Type : : LONG & & mSettings - > isLongValue ( unsignedSuffix ? ( value > > 1 ) : value ) )
type = ValueType : : Type : : LONG ;
else if ( type < = ValueType : : Type : : LONG & & ! MathLib : : isDec ( tokStr ) & & mSettings - > isLongValue ( value > > 2 ) ) {
type = ValueType : : Type : : LONG ;
sign = ValueType : : Sign : : UNSIGNED ;
} else if ( mSettings - > isLongLongValue ( unsignedSuffix ? ( value > > 1 ) : value ) )
type = ValueType : : Type : : LONGLONG ;
else {
type = ValueType : : Type : : LONGLONG ;
sign = ValueType : : Sign : : UNSIGNED ;
}
}
2017-03-22 02:55:22 +01:00
setValueType ( tok , ValueType ( sign , type , 0U ) ) ;
2015-10-07 18:10:48 +02:00
}
2016-05-25 13:56:36 +02:00
} else if ( tok - > isComparisonOp ( ) | | tok - > tokType ( ) = = Token : : eLogicalOp ) {
2018-06-16 23:30:00 +02:00
if ( mIsCpp & & tok - > isComparisonOp ( ) & & ( getClassScope ( tok - > astOperand1 ( ) ) | | getClassScope ( tok - > astOperand2 ( ) ) ) ) {
2016-05-25 13:56:36 +02:00
const Function * function = getOperatorFunction ( tok ) ;
if ( function ) {
ValueType vt ;
2018-06-16 23:25:35 +02:00
parsedecl ( function - > retDef , & vt , mDefaultSignedness , mSettings ) ;
2017-03-22 02:55:22 +01:00
setValueType ( tok , vt ) ;
2016-05-25 13:56:36 +02:00
continue ;
}
}
2017-03-22 02:55:22 +01:00
setValueType ( tok , ValueType ( ValueType : : Sign : : UNKNOWN_SIGN , ValueType : : Type : : BOOL , 0U ) ) ;
2019-03-09 17:27:27 +01:00
} else if ( tok - > isBoolean ( ) ) {
setValueType ( tok , ValueType ( ValueType : : Sign : : UNKNOWN_SIGN , ValueType : : Type : : BOOL , 0U ) ) ;
Set correct type and size of string and char literals (#2275)
* Set correct type and size of string and char literals
Use that string and char literal tokens store the prefix. This makes
it possible to distinghuish between different type of string literals
(i.e., utf8 encoded strings, utf16, wide strings, etc) which have
different type.
When the tokens holding the string and character values have the correct
type, it is possible to improve Token::getStrSize() to give the correct
result for all string types. Previously, it would return the number of
characters in the string, i.e., it would give the wrong size unless
the type of the string was char*.
Since strings now can have different size (in number of bytes) and
length (in number of elements), add a new helper function that returns
the number of characters. Checkers have been updated to use the correct
functions.
Having the size makes it possible to find more problems with prefixed
strings, and to reduce false positives, for example in the buffer
overflow checker.
Also, improve the stringLiteralWrite error message to also print the
prefix of the string (if there is one).
* Add comment and update string length
2019-10-20 07:11:57 +02:00
} else if ( tok - > tokType ( ) = = Token : : eChar | | tok - > tokType ( ) = = Token : : eString ) {
nonneg int pointer = tok - > tokType ( ) = = Token : : eChar ? 0U : 1U ;
nonneg int constness = tok - > tokType ( ) = = Token : : eChar ? 0U : 1U ;
ValueType valuetype ( ValueType : : Sign : : UNKNOWN_SIGN , ValueType : : Type : : CHAR , pointer , constness ) ;
if ( mIsCpp & & mSettings - > standards . cpp > = Standards : : CPP20 & & tok - > isUtf8 ( ) ) {
valuetype . originalTypeName = " char8_t " ;
valuetype . fromLibraryType ( valuetype . originalTypeName , mSettings ) ;
} else if ( tok - > isUtf16 ( ) ) {
valuetype . originalTypeName = " char16_t " ;
valuetype . fromLibraryType ( valuetype . originalTypeName , mSettings ) ;
} else if ( tok - > isUtf32 ( ) ) {
valuetype . originalTypeName = " char32_t " ;
valuetype . fromLibraryType ( valuetype . originalTypeName , mSettings ) ;
} else if ( tok - > isLong ( ) ) {
2015-10-11 08:13:30 +02:00
valuetype . originalTypeName = " wchar_t " ;
2019-05-01 16:34:28 +02:00
valuetype . type = ValueType : : Type : : WCHAR_T ;
Set correct type and size of string and char literals (#2275)
* Set correct type and size of string and char literals
Use that string and char literal tokens store the prefix. This makes
it possible to distinghuish between different type of string literals
(i.e., utf8 encoded strings, utf16, wide strings, etc) which have
different type.
When the tokens holding the string and character values have the correct
type, it is possible to improve Token::getStrSize() to give the correct
result for all string types. Previously, it would return the number of
characters in the string, i.e., it would give the wrong size unless
the type of the string was char*.
Since strings now can have different size (in number of bytes) and
length (in number of elements), add a new helper function that returns
the number of characters. Checkers have been updated to use the correct
functions.
Having the size makes it possible to find more problems with prefixed
strings, and to reduce false positives, for example in the buffer
overflow checker.
Also, improve the stringLiteralWrite error message to also print the
prefix of the string (if there is one).
* Add comment and update string length
2019-10-20 07:11:57 +02:00
} else if ( ( tok - > tokType ( ) = = Token : : eChar ) & & ( ( tok - > isCChar ( ) & & ! mIsCpp ) | | ( tok - > isCMultiChar ( ) ) ) ) {
valuetype . type = ValueType : : Type : : INT ;
valuetype . sign = ValueType : : Sign : : SIGNED ;
2015-10-11 08:13:30 +02:00
}
2017-03-22 02:55:22 +01:00
setValueType ( tok , valuetype ) ;
2020-09-09 04:54:38 +02:00
} else if ( tok - > link ( ) & & Token : : Match ( tok , " (| { " )) {
const Token * start = tok - > astOperand1 ( ) ? tok - > astOperand1 ( ) - > findExpressionStartEndTokens ( ) . first : nullptr ;
2015-10-04 19:42:58 +02:00
// cast
2019-02-23 17:29:53 +01:00
if ( tok - > isCast ( ) & & ! tok - > astOperand2 ( ) & & Token : : Match ( tok , " ( %name% " ) ) {
2015-10-04 20:32:16 +02:00
ValueType valuetype ;
2018-06-16 23:25:35 +02:00
if ( Token : : simpleMatch ( parsedecl ( tok - > next ( ) , & valuetype , mDefaultSignedness , mSettings ) , " ) " ) )
2017-03-22 02:55:22 +01:00
setValueType ( tok , valuetype ) ;
2015-10-04 19:42:58 +02:00
}
2015-10-11 08:42:31 +02:00
2015-12-26 15:20:17 +01:00
// C++ cast
2019-02-23 17:29:53 +01:00
else if ( tok - > astOperand2 ( ) & & Token : : Match ( tok - > astOperand1 ( ) , " static_cast|const_cast|dynamic_cast|reinterpret_cast < %name% " ) & & tok - > astOperand1 ( ) - > linkAt ( 1 ) ) {
2015-12-26 15:20:17 +01:00
ValueType valuetype ;
2018-06-16 23:25:35 +02:00
if ( Token : : simpleMatch ( parsedecl ( tok - > astOperand1 ( ) - > tokAt ( 2 ) , & valuetype , mDefaultSignedness , mSettings ) , " > " ) )
2017-03-22 02:55:22 +01:00
setValueType ( tok , valuetype ) ;
2015-12-26 15:20:17 +01:00
}
2020-09-09 04:54:38 +02:00
// Construct smart pointer
else if ( mSettings - > library . isSmartPointer ( start ) ) {
ValueType valuetype ;
if ( parsedecl ( start , & valuetype , mDefaultSignedness , mSettings ) ) {
setValueType ( tok , valuetype ) ;
setValueType ( tok - > astOperand1 ( ) , valuetype ) ;
}
}
2015-10-11 08:42:31 +02:00
// function
2015-10-11 12:20:40 +02:00
else if ( tok - > previous ( ) & & tok - > previous ( ) - > function ( ) & & tok - > previous ( ) - > function ( ) - > retDef ) {
2015-10-11 08:42:31 +02:00
ValueType valuetype ;
2018-06-16 23:25:35 +02:00
if ( parsedecl ( tok - > previous ( ) - > function ( ) - > retDef , & valuetype , mDefaultSignedness , mSettings ) )
2017-03-22 02:55:22 +01:00
setValueType ( tok , valuetype ) ;
2015-10-11 08:42:31 +02:00
}
2015-10-11 12:20:40 +02:00
else if ( Token : : simpleMatch ( tok - > previous ( ) , " sizeof ( " ) ) {
// TODO: use specified size_t type
ValueType valuetype ( ValueType : : Sign : : UNSIGNED , ValueType : : Type : : LONG , 0U ) ;
valuetype . originalTypeName = " size_t " ;
2017-03-22 02:55:22 +01:00
setValueType ( tok , valuetype ) ;
2016-07-20 09:39:48 +02:00
if ( Token : : Match ( tok , " ( %type% %type%| *| *| ) " ) ) {
ValueType vt ;
2018-06-16 23:25:35 +02:00
if ( parsedecl ( tok - > next ( ) , & vt , mDefaultSignedness , mSettings ) ) {
2017-03-22 02:55:22 +01:00
setValueType ( tok - > next ( ) , vt ) ;
2016-07-20 09:39:48 +02:00
}
}
2015-10-11 12:20:40 +02:00
}
2016-10-23 23:20:36 +02:00
2018-05-20 22:58:05 +02:00
// function style cast
else if ( tok - > previous ( ) & & tok - > previous ( ) - > isStandardType ( ) ) {
ValueType valuetype ;
2019-10-08 17:53:29 +02:00
if ( tok - > astOperand1 ( ) & & valuetype . fromLibraryType ( tok - > astOperand1 ( ) - > expressionString ( ) , mSettings ) ) {
2019-10-08 11:24:54 +02:00
setValueType ( tok , valuetype ) ;
continue ;
}
2018-05-20 22:58:05 +02:00
valuetype . type = ValueType : : typeFromString ( tok - > previous ( ) - > str ( ) , tok - > previous ( ) - > isLong ( ) ) ;
2019-02-23 17:29:53 +01:00
if ( tok - > previous ( ) - > isUnsigned ( ) )
valuetype . sign = ValueType : : Sign : : UNSIGNED ;
else if ( tok - > previous ( ) - > isSigned ( ) )
valuetype . sign = ValueType : : Sign : : SIGNED ;
2018-05-20 22:58:05 +02:00
setValueType ( tok , valuetype ) ;
}
2019-10-14 09:19:16 +02:00
// constructor call
else if ( tok - > previous ( ) & & tok - > previous ( ) - > function ( ) & & tok - > previous ( ) - > function ( ) - > isConstructor ( ) ) {
2018-05-22 06:42:37 +02:00
ValueType valuetype ;
valuetype . type = ValueType : : RECORD ;
2019-10-14 09:19:16 +02:00
valuetype . typeScope = tok - > previous ( ) - > function ( ) - > token - > scope ( ) ;
2018-05-22 06:42:37 +02:00
setValueType ( tok , valuetype ) ;
}
2019-10-08 11:24:54 +02:00
// library type/function
2016-10-23 23:20:36 +02:00
else if ( tok - > previous ( ) ) {
2019-10-08 11:24:54 +02:00
if ( tok - > astParent ( ) & & Token : : Match ( tok - > astOperand1 ( ) , " %name%|:: " ) ) {
2019-10-23 19:54:59 +02:00
const Token * typeStartToken = tok - > astOperand1 ( ) ;
while ( typeStartToken & & typeStartToken - > str ( ) = = " :: " )
typeStartToken = typeStartToken - > astOperand1 ( ) ;
if ( const Library : : Container * c = mSettings - > library . detectContainer ( typeStartToken ) ) {
2019-10-08 11:24:54 +02:00
ValueType vt ;
vt . pointer = 0 ;
vt . container = c ;
vt . type = ValueType : : Type : : CONTAINER ;
setValueType ( tok , vt ) ;
continue ;
}
2019-10-08 12:51:23 +02:00
const std : : string e = tok - > astOperand1 ( ) - > expressionString ( ) ;
if ( ( e = = " std::make_shared " | | e = = " std::make_unique " ) & & Token : : Match ( tok - > astOperand1 ( ) , " :: %name% < %name% " ) ) {
ValueType vt ;
parsedecl ( tok - > astOperand1 ( ) - > tokAt ( 3 ) , & vt , mDefaultSignedness , mSettings ) ;
if ( vt . typeScope ) {
vt . smartPointerType = vt . typeScope - > definedType ;
vt . typeScope = nullptr ;
setValueType ( tok , vt ) ;
continue ;
}
}
2019-10-22 20:40:36 +02:00
ValueType podtype ;
if ( podtype . fromLibraryType ( e , mSettings ) ) {
setValueType ( tok , podtype ) ;
continue ;
}
2019-10-08 11:24:54 +02:00
}
2018-06-16 16:10:28 +02:00
const std : : string & typestr ( mSettings - > library . returnValueType ( tok - > previous ( ) ) ) ;
2019-09-28 14:57:24 +02:00
if ( ! typestr . empty ( ) ) {
ValueType valuetype ;
2020-09-02 07:13:15 +02:00
TokenList tokenList ( mSettings ) ;
std : : istringstream istr ( typestr + " ; " ) ;
tokenList . createTokens ( istr ) ;
2020-10-16 07:56:31 +02:00
tokenList . simplifyStdType ( ) ;
2020-09-02 07:13:15 +02:00
if ( parsedecl ( tokenList . front ( ) , & valuetype , mDefaultSignedness , mSettings ) ) {
valuetype . originalTypeName = typestr ;
2019-09-28 14:57:24 +02:00
setValueType ( tok , valuetype ) ;
}
}
2017-03-05 14:53:32 +01:00
if ( typestr . empty ( ) | | typestr = = " iterator " ) {
if ( Token : : simpleMatch ( tok - > astOperand1 ( ) , " . " ) & &
tok - > astOperand1 ( ) - > astOperand1 ( ) & &
tok - > astOperand1 ( ) - > astOperand2 ( ) & &
tok - > astOperand1 ( ) - > astOperand1 ( ) - > valueType ( ) & &
tok - > astOperand1 ( ) - > astOperand1 ( ) - > valueType ( ) - > container ) {
const Library : : Container * cont = tok - > astOperand1 ( ) - > astOperand1 ( ) - > valueType ( ) - > container ;
2018-04-04 21:51:31 +02:00
const std : : map < std : : string , Library : : Container : : Function > : : const_iterator it = cont - > functions . find ( tok - > astOperand1 ( ) - > astOperand2 ( ) - > str ( ) ) ;
2017-03-05 14:53:32 +01:00
if ( it ! = cont - > functions . end ( ) ) {
if ( it - > second . yield = = Library : : Container : : Yield : : START_ITERATOR | |
it - > second . yield = = Library : : Container : : Yield : : END_ITERATOR | |
it - > second . yield = = Library : : Container : : Yield : : ITERATOR ) {
ValueType vt ;
vt . type = ValueType : : Type : : ITERATOR ;
vt . container = cont ;
2017-03-22 02:55:22 +01:00
setValueType ( tok , vt ) ;
2017-03-05 14:53:32 +01:00
}
}
}
2016-10-23 23:20:36 +02:00
continue ;
2017-03-05 14:53:32 +01:00
}
2018-06-16 16:10:28 +02:00
TokenList tokenList ( mSettings ) ;
2016-10-23 23:20:36 +02:00
std : : istringstream istr ( typestr + " ; " ) ;
if ( tokenList . createTokens ( istr ) ) {
ValueType vt ;
2019-02-15 13:29:52 +01:00
tokenList . simplifyPlatformTypes ( ) ;
2017-10-03 22:10:13 +02:00
tokenList . simplifyStdType ( ) ;
2018-06-16 23:25:35 +02:00
if ( parsedecl ( tokenList . front ( ) , & vt , mDefaultSignedness , mSettings ) ) {
2020-09-02 07:13:15 +02:00
vt . originalTypeName = typestr ;
2017-03-22 02:55:22 +01:00
setValueType ( tok , vt ) ;
2016-10-23 23:20:36 +02:00
}
}
}
2020-06-10 21:13:53 +02:00
} else if ( tok - > str ( ) = = " return " ) {
const Scope * functionScope = tok - > scope ( ) ;
while ( functionScope & & functionScope - > isExecutable ( ) & & functionScope - > type ! = Scope : : eLambda & & functionScope - > type ! = Scope : : eFunction )
functionScope = functionScope - > nestedIn ;
if ( functionScope & & functionScope - > type = = Scope : : eFunction & & functionScope - > function & & functionScope - > function - > retDef )
setValueType ( tok , ValueType : : parseDecl ( functionScope - > function - > retDef , mSettings ) ) ;
2015-10-04 19:42:58 +02:00
} else if ( tok - > variable ( ) ) {
2017-03-22 02:55:22 +01:00
setValueType ( tok , * tok - > variable ( ) ) ;
2020-11-16 20:11:26 +01:00
if ( ! tok - > variable ( ) - > valueType ( ) & & tok - > valueType ( ) )
const_cast < Variable * > ( tok - > variable ( ) ) - > setValueType ( * tok - > valueType ( ) ) ;
2016-04-22 06:02:54 +02:00
} else if ( tok - > enumerator ( ) ) {
2017-03-22 02:55:22 +01:00
setValueType ( tok , * tok - > enumerator ( ) ) ;
2020-05-17 17:32:31 +02:00
} else if ( tok - > isKeyword ( ) & & tok - > str ( ) = = " new " ) {
2017-03-05 10:02:47 +01:00
const Token * typeTok = tok - > next ( ) ;
if ( Token : : Match ( typeTok , " ( std| ::| nothrow ) " ) )
typeTok = typeTok - > link ( ) - > next ( ) ;
2018-06-16 16:10:28 +02:00
if ( const Library : : Container * c = mSettings - > library . detectContainer ( typeTok ) ) {
2017-04-05 22:05:29 +02:00
ValueType vt ;
vt . pointer = 1 ;
vt . container = c ;
vt . type = ValueType : : Type : : CONTAINER ;
setValueType ( tok , vt ) ;
continue ;
}
2017-03-05 10:24:51 +01:00
std : : string typestr ;
while ( Token : : Match ( typeTok , " %name% :: %name% " ) ) {
typestr + = typeTok - > str ( ) + " :: " ;
typeTok = typeTok - > tokAt ( 2 ) ;
}
2017-03-05 10:02:47 +01:00
if ( ! Token : : Match ( typeTok , " %type% ;|[|( " ) )
2017-04-01 22:22:37 +02:00
continue ;
2017-03-05 10:24:51 +01:00
typestr + = typeTok - > str ( ) ;
2017-03-05 10:02:47 +01:00
ValueType vt ;
vt . pointer = 1 ;
if ( typeTok - > type ( ) & & typeTok - > type ( ) - > classScope ) {
2017-03-05 14:53:32 +01:00
vt . type = ValueType : : Type : : RECORD ;
2017-03-05 10:02:47 +01:00
vt . typeScope = typeTok - > type ( ) - > classScope ;
} else {
2017-03-05 10:24:51 +01:00
vt . type = ValueType : : typeFromString ( typestr , typeTok - > isLong ( ) ) ;
2017-03-02 22:24:26 +01:00
if ( vt . type = = ValueType : : Type : : UNKNOWN_TYPE )
2018-06-16 16:10:28 +02:00
vt . fromLibraryType ( typestr , mSettings ) ;
2017-03-05 10:02:47 +01:00
if ( vt . type = = ValueType : : Type : : UNKNOWN_TYPE )
2017-04-01 22:22:37 +02:00
continue ;
2017-02-27 20:57:28 +01:00
if ( typeTok - > isUnsigned ( ) )
vt . sign = ValueType : : Sign : : UNSIGNED ;
else if ( typeTok - > isSigned ( ) )
vt . sign = ValueType : : Sign : : SIGNED ;
if ( vt . sign = = ValueType : : Sign : : UNKNOWN_SIGN & & vt . isIntegral ( ) )
2018-06-16 23:25:35 +02:00
vt . sign = ( vt . type = = ValueType : : Type : : CHAR ) ? mDefaultSignedness : ValueType : : Sign : : SIGNED ;
2017-02-27 20:57:28 +01:00
}
2017-03-22 02:55:22 +01:00
setValueType ( tok , vt ) ;
2020-11-07 18:12:47 +01:00
if ( Token : : simpleMatch ( tok - > astOperand1 ( ) , " ( " ) ) {
vt . pointer - - ;
setValueType ( tok - > astOperand1 ( ) , vt ) ;
}
2020-05-17 17:32:31 +02:00
} else if ( tok - > isKeyword ( ) & & tok - > str ( ) = = " return " & & tok - > scope ( ) ) {
2019-10-12 11:40:02 +02:00
const Scope * fscope = tok - > scope ( ) ;
while ( fscope & & ! fscope - > function )
fscope = fscope - > nestedIn ;
if ( fscope & & fscope - > function & & fscope - > function - > retDef ) {
2019-03-19 06:25:10 +01:00
ValueType vt ;
2019-10-12 11:40:02 +02:00
parsedecl ( fscope - > function - > retDef , & vt , mDefaultSignedness , mSettings ) ;
2019-03-19 06:25:10 +01:00
setValueType ( tok , vt ) ;
}
2015-10-04 19:42:58 +02:00
}
}
2017-03-23 03:09:40 +01:00
2019-08-05 13:42:00 +02:00
if ( reportDebugWarnings & & mSettings - > debugwarnings ) {
2019-03-31 17:38:00 +02:00
for ( Token * tok = tokens ; tok ; tok = tok - > next ( ) ) {
if ( tok - > str ( ) = = " auto " & & ! tok - > valueType ( ) )
2021-04-16 15:19:29 +02:00
debugMessage ( tok , " autoNoType " , " auto token with no type. " ) ;
2019-03-31 17:38:00 +02:00
}
}
2017-03-24 12:19:14 +01:00
// Update functions with new type information.
createSymbolDatabaseSetFunctionPointers ( false ) ;
2017-03-23 03:09:40 +01:00
// Update auto variables with new type information.
createSymbolDatabaseSetVariablePointers ( ) ;
2015-10-04 19:42:58 +02:00
}
2015-10-07 13:38:34 +02:00
2016-12-18 14:03:48 +01:00
ValueType ValueType : : parseDecl ( const Token * type , const Settings * settings )
{
ValueType vt ;
parsedecl ( type , & vt , settings - > defaultSign = = ' u ' ? Sign : : UNSIGNED : Sign : : SIGNED , settings ) ;
return vt ;
}
2017-03-01 18:09:50 +01:00
ValueType : : Type ValueType : : typeFromString ( const std : : string & typestr , bool longType )
{
if ( typestr = = " void " )
return ValueType : : Type : : VOID ;
2017-03-04 11:13:28 +01:00
if ( typestr = = " bool " | | typestr = = " _Bool " )
2017-03-01 18:09:50 +01:00
return ValueType : : Type : : BOOL ;
if ( typestr = = " char " )
return ValueType : : Type : : CHAR ;
if ( typestr = = " short " )
return ValueType : : Type : : SHORT ;
2019-05-01 16:34:28 +02:00
if ( typestr = = " wchar_t " )
return ValueType : : Type : : WCHAR_T ;
2017-03-01 18:09:50 +01:00
if ( typestr = = " int " )
return ValueType : : Type : : INT ;
if ( typestr = = " long " )
return longType ? ValueType : : Type : : LONGLONG : ValueType : : Type : : LONG ;
if ( typestr = = " float " )
return ValueType : : Type : : FLOAT ;
if ( typestr = = " double " )
return longType ? ValueType : : Type : : LONGDOUBLE : ValueType : : Type : : DOUBLE ;
return ValueType : : Type : : UNKNOWN_TYPE ;
}
2016-07-31 19:47:34 +02:00
bool ValueType : : fromLibraryType ( const std : : string & typestr , const Settings * settings )
{
const Library : : PodType * podtype = settings - > library . podtype ( typestr ) ;
if ( podtype & & ( podtype - > sign = = ' s ' | | podtype - > sign = = ' u ' ) ) {
if ( podtype - > size = = 1 )
type = ValueType : : Type : : CHAR ;
else if ( podtype - > size = = settings - > sizeof_int )
type = ValueType : : Type : : INT ;
else if ( podtype - > size = = settings - > sizeof_short )
type = ValueType : : Type : : SHORT ;
else if ( podtype - > size = = settings - > sizeof_long )
type = ValueType : : Type : : LONG ;
else if ( podtype - > size = = settings - > sizeof_long_long )
type = ValueType : : Type : : LONGLONG ;
2021-01-08 10:29:01 +01:00
else if ( podtype - > stdtype = = Library : : PodType : : Type : : BOOL )
2019-09-29 16:48:25 +02:00
type = ValueType : : Type : : BOOL ;
2021-01-08 10:29:01 +01:00
else if ( podtype - > stdtype = = Library : : PodType : : Type : : CHAR )
2019-09-29 16:48:25 +02:00
type = ValueType : : Type : : CHAR ;
2021-01-08 10:29:01 +01:00
else if ( podtype - > stdtype = = Library : : PodType : : Type : : SHORT )
2019-09-29 16:48:25 +02:00
type = ValueType : : Type : : SHORT ;
2021-01-08 10:29:01 +01:00
else if ( podtype - > stdtype = = Library : : PodType : : Type : : INT )
2019-09-29 16:48:25 +02:00
type = ValueType : : Type : : INT ;
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else if ( podtype - > stdtype = = Library : : PodType : : Type : : LONG )
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type = ValueType : : Type : : LONG ;
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else if ( podtype - > stdtype = = Library : : PodType : : Type : : LONGLONG )
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type = ValueType : : Type : : LONGLONG ;
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else
type = ValueType : : Type : : UNKNOWN_INT ;
sign = ( podtype - > sign = = ' u ' ) ? ValueType : : UNSIGNED : ValueType : : SIGNED ;
return true ;
}
const Library : : PlatformType * platformType = settings - > library . platform_type ( typestr , settings - > platformString ( ) ) ;
if ( platformType ) {
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if ( platformType - > mType = = " char " )
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type = ValueType : : Type : : CHAR ;
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else if ( platformType - > mType = = " short " )
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type = ValueType : : Type : : SHORT ;
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else if ( platformType - > mType = = " wchar_t " )
type = ValueType : : Type : : WCHAR_T ;
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else if ( platformType - > mType = = " int " )
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type = platformType - > mLong ? ValueType : : Type : : LONG : ValueType : : Type : : INT ;
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else if ( platformType - > mType = = " long " )
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type = platformType - > mLong ? ValueType : : Type : : LONGLONG : ValueType : : Type : : LONG ;
if ( platformType - > mSigned )
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sign = ValueType : : SIGNED ;
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else if ( platformType - > mUnsigned )
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sign = ValueType : : UNSIGNED ;
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if ( platformType - > mPointer )
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pointer = 1 ;
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if ( platformType - > mPtrPtr )
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pointer = 2 ;
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if ( platformType - > mConstPtr )
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constness = 1 ;
return true ;
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} else if ( ! podtype & & ( typestr = = " size_t " | | typestr = = " std::size_t " ) ) {
originalTypeName = " size_t " ;
sign = ValueType : : UNSIGNED ;
if ( settings - > sizeof_size_t = = settings - > sizeof_long )
type = ValueType : : Type : : LONG ;
else if ( settings - > sizeof_size_t = = settings - > sizeof_long_long )
type = ValueType : : Type : : LONGLONG ;
else if ( settings - > sizeof_size_t = = settings - > sizeof_int )
type = ValueType : : Type : : INT ;
else
type = ValueType : : Type : : UNKNOWN_INT ;
return true ;
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}
return false ;
}
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std : : string ValueType : : dump ( ) const
{
std : : ostringstream ret ;
switch ( type ) {
case UNKNOWN_TYPE :
return " " ;
case NONSTD :
ret < < " valueType-type= \" nonstd \" " ;
break ;
case RECORD :
ret < < " valueType-type= \" record \" " ;
break ;
case CONTAINER :
ret < < " valueType-type= \" container \" " ;
break ;
case ITERATOR :
ret < < " valueType-type= \" iterator \" " ;
break ;
case VOID :
ret < < " valueType-type= \" void \" " ;
break ;
case BOOL :
ret < < " valueType-type= \" bool \" " ;
break ;
case CHAR :
ret < < " valueType-type= \" char \" " ;
break ;
case SHORT :
ret < < " valueType-type= \" short \" " ;
break ;
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case WCHAR_T :
ret < < " valueType-type= \" wchar_t \" " ;
break ;
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case INT :
ret < < " valueType-type= \" int \" " ;
break ;
case LONG :
ret < < " valueType-type= \" long \" " ;
break ;
case LONGLONG :
ret < < " valueType-type= \" long long \" " ;
break ;
case UNKNOWN_INT :
ret < < " valueType-type= \" unknown int \" " ;
break ;
case FLOAT :
ret < < " valueType-type= \" float \" " ;
break ;
case DOUBLE :
ret < < " valueType-type= \" double \" " ;
break ;
case LONGDOUBLE :
ret < < " valueType-type= \" long double \" " ;
break ;
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}
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switch ( sign ) {
case Sign : : UNKNOWN_SIGN :
break ;
case Sign : : SIGNED :
ret < < " valueType-sign= \" signed \" " ;
break ;
case Sign : : UNSIGNED :
ret < < " valueType-sign= \" unsigned \" " ;
break ;
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}
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if ( bits > 0 )
ret < < " valueType-bits= \" " < < bits < < ' \" ' ;
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if ( pointer > 0 )
ret < < " valueType-pointer= \" " < < pointer < < ' \" ' ;
if ( constness > 0 )
ret < < " valueType-constness= \" " < < constness < < ' \" ' ;
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if ( reference = = Reference : : None )
ret < < " valueType-reference= \" None \" " ;
else if ( reference = = Reference : : LValue )
ret < < " valueType-reference= \" LValue \" " ;
else if ( reference = = Reference : : RValue )
ret < < " valueType-reference= \" RValue \" " ;
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if ( typeScope )
ret < < " valueType-typeScope= \" " < < typeScope < < ' \" ' ;
if ( ! originalTypeName . empty ( ) )
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ret < < " valueType-originalTypeName= \" " < < ErrorLogger : : toxml ( originalTypeName ) < < ' \" ' ;
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return ret . str ( ) ;
}
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MathLib : : bigint ValueType : : typeSize ( const cppcheck : : Platform & platform , bool p ) const
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{
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if ( p & & pointer )
return platform . sizeof_pointer ;
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if ( typeScope & & typeScope - > definedType & & typeScope - > definedType - > sizeOf )
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return typeScope - > definedType - > sizeOf ;
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switch ( type ) {
case ValueType : : Type : : BOOL :
return platform . sizeof_bool ;
case ValueType : : Type : : CHAR :
return 1 ;
case ValueType : : Type : : SHORT :
return platform . sizeof_short ;
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case ValueType : : Type : : WCHAR_T :
return platform . sizeof_wchar_t ;
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case ValueType : : Type : : INT :
return platform . sizeof_int ;
case ValueType : : Type : : LONG :
return platform . sizeof_long ;
case ValueType : : Type : : LONGLONG :
return platform . sizeof_long_long ;
case ValueType : : Type : : FLOAT :
return platform . sizeof_float ;
case ValueType : : Type : : DOUBLE :
return platform . sizeof_double ;
case ValueType : : Type : : LONGDOUBLE :
return platform . sizeof_long_double ;
default :
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break ;
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}
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// Unknown invalid size
return 0 ;
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}
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std : : string ValueType : : str ( ) const
{
std : : string ret ;
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if ( constness & 1 )
ret = " const " ;
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if ( type = = VOID )
ret + = " void " ;
else if ( isIntegral ( ) ) {
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if ( sign = = SIGNED )
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ret + = " signed " ;
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else if ( sign = = UNSIGNED )
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ret + = " unsigned " ;
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if ( type = = BOOL )
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ret + = " bool " ;
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else if ( type = = CHAR )
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ret + = " char " ;
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else if ( type = = SHORT )
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ret + = " short " ;
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else if ( type = = WCHAR_T )
ret + = " wchar_t " ;
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else if ( type = = INT )
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ret + = " int " ;
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else if ( type = = LONG )
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ret + = " long " ;
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else if ( type = = LONGLONG )
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ret + = " long long " ;
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else if ( type = = UNKNOWN_INT )
ret + = " unknown_int " ;
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} else if ( type = = FLOAT )
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ret + = " float " ;
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else if ( type = = DOUBLE )
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ret + = " double " ;
else if ( type = = LONGDOUBLE )
ret + = " long double " ;
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else if ( ( type = = ValueType : : Type : : NONSTD | | type = = ValueType : : Type : : RECORD ) & & typeScope ) {
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std : : string className ( typeScope - > className ) ;
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const Scope * scope = typeScope - > definedType ? typeScope - > definedType - > enclosingScope : typeScope - > nestedIn ;
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while ( scope & & scope - > type ! = Scope : : eGlobal ) {
if ( scope - > type = = Scope : : eClass | | scope - > type = = Scope : : eStruct | | scope - > type = = Scope : : eNamespace )
className = scope - > className + " :: " + className ;
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scope = ( scope - > definedType & & scope - > definedType - > enclosingScope ) ? scope - > definedType - > enclosingScope : scope - > nestedIn ;
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}
ret + = ' ' + className ;
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} else if ( type = = ValueType : : Type : : CONTAINER & & container ) {
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ret + = " container( " + container - > startPattern + ' ) ' ;
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} else if ( type = = ValueType : : Type : : ITERATOR & & container ) {
ret + = " iterator( " + container - > startPattern + ' ) ' ;
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} else if ( smartPointerType ) {
ret + = " smart-pointer< " + smartPointerType - > name ( ) + " > " ;
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}
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for ( unsigned int p = 0 ; p < pointer ; p + + ) {
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ret + = " * " ;
if ( constness & ( 2 < < p ) )
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ret + = " const " ;
}
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if ( reference = = Reference : : LValue )
ret + = " & " ;
else if ( reference = = Reference : : RValue )
ret + = " && " ;
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return ret . empty ( ) ? ret : ret . substr ( 1 ) ;
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}
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ValueType : : MatchResult ValueType : : matchParameter ( const ValueType * call , const ValueType * func )
{
if ( ! call | | ! func )
return ValueType : : MatchResult : : UNKNOWN ;
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if ( call - > pointer ! = func - > pointer ) {
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if ( call - > pointer > 1 & & func - > pointer = = 1 & & func - > type = = ValueType : : Type : : VOID )
return ValueType : : MatchResult : : FALLBACK1 ;
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if ( call - > pointer = = 1 & & func - > pointer = = 0 & & func - > isIntegral ( ) & & func - > sign ! = ValueType : : Sign : : SIGNED )
return ValueType : : MatchResult : : FALLBACK1 ;
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if ( call - > pointer = = 1 & & call - > type = = ValueType : : Type : : CHAR & & func - > pointer = = 0 & & func - > container & & func - > container - > stdStringLike )
return ValueType : : MatchResult : : FALLBACK2 ;
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return ValueType : : MatchResult : : NOMATCH ; // TODO
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}
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if ( call - > pointer > 0 & & ( ( call - > constness | func - > constness ) ! = func - > constness ) )
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return ValueType : : MatchResult : : NOMATCH ;
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if ( call - > type ! = func - > type ) {
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if ( call - > type = = ValueType : : Type : : VOID | | func - > type = = ValueType : : Type : : VOID )
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return ValueType : : MatchResult : : FALLBACK1 ;
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if ( call - > pointer > 0 & & func - > pointer > 0 )
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return func - > type = = ValueType : : UNKNOWN_TYPE ? ValueType : : MatchResult : : UNKNOWN : ValueType : : MatchResult : : NOMATCH ;
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if ( call - > isIntegral ( ) & & func - > isIntegral ( ) )
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return call - > type < func - > type ?
ValueType : : MatchResult : : FALLBACK1 :
ValueType : : MatchResult : : FALLBACK2 ;
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else if ( call - > isFloat ( ) & & func - > isFloat ( ) )
return ValueType : : MatchResult : : FALLBACK1 ;
else if ( call - > isIntegral ( ) & & func - > isFloat ( ) )
return ValueType : : MatchResult : : FALLBACK2 ;
else if ( call - > isFloat ( ) & & func - > isIntegral ( ) )
return ValueType : : MatchResult : : FALLBACK2 ;
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return ValueType : : MatchResult : : UNKNOWN ; // TODO
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}
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if ( call - > typeScope ! = nullptr | | func - > typeScope ! = nullptr ) {
if ( call - > typeScope ! = func - > typeScope )
return ValueType : : MatchResult : : NOMATCH ;
}
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if ( call - > container ! = nullptr | | func - > container ! = nullptr ) {
if ( call - > container ! = func - > container )
return ValueType : : MatchResult : : NOMATCH ;
}
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if ( func - > typeScope ! = nullptr & & func - > container ! = nullptr ) {
if ( func - > type < ValueType : : Type : : VOID | | func - > type = = ValueType : : Type : : UNKNOWN_INT )
return ValueType : : MatchResult : : UNKNOWN ;
}
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if ( call - > isIntegral ( ) & & func - > isIntegral ( ) & & call - > sign ! = ValueType : : Sign : : UNKNOWN_SIGN & & func - > sign ! = ValueType : : Sign : : UNKNOWN_SIGN & & call - > sign ! = func - > sign )
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return ValueType : : MatchResult : : FALLBACK1 ;
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if ( func - > reference ! = Reference : : None & & func - > constness > call - > constness )
return ValueType : : MatchResult : : FALLBACK1 ;
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return ValueType : : MatchResult : : SAME ;
}
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ValueType : : MatchResult ValueType : : matchParameter ( const ValueType * call , const Variable * callVar , const Variable * funcVar )
{
ValueType : : MatchResult res = ValueType : : matchParameter ( call , funcVar - > valueType ( ) ) ;
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if ( callVar & & ( ( res = = ValueType : : MatchResult : : SAME & & call - > container ) | | res = = ValueType : : MatchResult : : UNKNOWN ) ) {
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const std : : string type1 = getTypeString ( callVar - > typeStartToken ( ) ) ;
const std : : string type2 = getTypeString ( funcVar - > typeStartToken ( ) ) ;
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const bool templateVar =
funcVar - > scope ( ) & & funcVar - > scope ( ) - > function & & funcVar - > scope ( ) - > function - > templateDef ;
if ( type1 = = type2 )
return ValueType : : MatchResult : : SAME ;
if ( ! templateVar & & type1 . find ( " auto " ) = = std : : string : : npos & & type2 . find ( " auto " ) = = std : : string : : npos & &
type1 ! = type2 )
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return ValueType : : MatchResult : : NOMATCH ;
}
return res ;
}