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/*
This file is part of solidity .
solidity 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 .
solidity 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 solidity . If not , see < http : //www.gnu.org/licenses/>.
*/
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// SPDX-License-Identifier: GPL-3.0
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# include <libsolidity/analysis/ViewPureChecker.h>
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# include <libsolidity/ast/ExperimentalFeatures.h>
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# include <libyul/AsmData.h>
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# include <libyul/backends/evm/EVMDialect.h>
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# include <liblangutil/ErrorReporter.h>
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# include <libevmasm/SemanticInformation.h>
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# include <functional>
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# include <utility>
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# include <variant>
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using namespace std ;
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using namespace solidity ;
using namespace solidity : : langutil ;
using namespace solidity : : frontend ;
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namespace
{
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class AssemblyViewPureChecker
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{
public :
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explicit AssemblyViewPureChecker (
yul : : Dialect const & _dialect ,
std : : function < void ( StateMutability , SourceLocation const & ) > _reportMutability
) :
m_dialect ( _dialect ) ,
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m_reportMutability ( std : : move ( _reportMutability ) ) { }
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void operator ( ) ( yul : : Literal const & ) { }
void operator ( ) ( yul : : Identifier const & ) { }
void operator ( ) ( yul : : ExpressionStatement const & _expr )
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{
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std : : visit ( * this , _expr . expression ) ;
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}
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void operator ( ) ( yul : : Assignment const & _assignment )
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{
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std : : visit ( * this , * _assignment . value ) ;
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}
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void operator ( ) ( yul : : VariableDeclaration const & _varDecl )
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{
if ( _varDecl . value )
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std : : visit ( * this , * _varDecl . value ) ;
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}
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void operator ( ) ( yul : : FunctionDefinition const & _funDef )
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{
( * this ) ( _funDef . body ) ;
}
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void operator ( ) ( yul : : FunctionCall const & _funCall )
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{
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if ( yul : : EVMDialect const * dialect = dynamic_cast < decltype ( dialect ) > ( & m_dialect ) )
if ( yul : : BuiltinFunctionForEVM const * fun = dialect - > builtin ( _funCall . functionName . name ) )
if ( fun - > instruction )
checkInstruction ( _funCall . location , * fun - > instruction ) ;
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for ( auto const & arg : _funCall . arguments )
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std : : visit ( * this , arg ) ;
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}
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void operator ( ) ( yul : : If const & _if )
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{
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std : : visit ( * this , * _if . condition ) ;
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( * this ) ( _if . body ) ;
}
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void operator ( ) ( yul : : Switch const & _switch )
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{
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std : : visit ( * this , * _switch . expression ) ;
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for ( auto const & _case : _switch . cases )
{
if ( _case . value )
( * this ) ( * _case . value ) ;
( * this ) ( _case . body ) ;
}
}
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void operator ( ) ( yul : : ForLoop const & _for )
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{
( * this ) ( _for . pre ) ;
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std : : visit ( * this , * _for . condition ) ;
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( * this ) ( _for . body ) ;
( * this ) ( _for . post ) ;
}
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void operator ( ) ( yul : : Break const & )
{
}
void operator ( ) ( yul : : Continue const & )
{
}
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void operator ( ) ( yul : : Leave const & )
{
}
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void operator ( ) ( yul : : Block const & _block )
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{
for ( auto const & s : _block . statements )
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std : : visit ( * this , s ) ;
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}
private :
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void checkInstruction ( SourceLocation _location , evmasm : : Instruction _instruction )
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{
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if ( evmasm : : SemanticInformation : : invalidInViewFunctions ( _instruction ) )
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m_reportMutability ( StateMutability : : NonPayable , _location ) ;
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else if ( evmasm : : SemanticInformation : : invalidInPureFunctions ( _instruction ) )
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m_reportMutability ( StateMutability : : View , _location ) ;
}
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yul : : Dialect const & m_dialect ;
std : : function < void ( StateMutability , SourceLocation const & ) > m_reportMutability ;
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} ;
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}
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bool ViewPureChecker : : check ( )
{
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for ( auto const & source : m_ast )
source - > accept ( * this ) ;
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return ! m_errors ;
}
bool ViewPureChecker : : visit ( FunctionDefinition const & _funDef )
{
solAssert ( ! m_currentFunction , " " ) ;
m_currentFunction = & _funDef ;
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m_bestMutabilityAndLocation = { StateMutability : : Pure , _funDef . location ( ) } ;
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return true ;
}
void ViewPureChecker : : endVisit ( FunctionDefinition const & _funDef )
{
solAssert ( m_currentFunction = = & _funDef , " " ) ;
if (
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m_bestMutabilityAndLocation . mutability < _funDef . stateMutability ( ) & &
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_funDef . stateMutability ( ) ! = StateMutability : : Payable & &
_funDef . isImplemented ( ) & &
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! _funDef . body ( ) . statements ( ) . empty ( ) & &
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! _funDef . isConstructor ( ) & &
! _funDef . isFallback ( ) & &
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! _funDef . isReceive ( ) & &
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! _funDef . virtualSemantics ( )
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)
m_errorReporter . warning (
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2018 _error ,
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_funDef . location ( ) ,
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" Function state mutability can be restricted to " + stateMutabilityToString ( m_bestMutabilityAndLocation . mutability )
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) ;
m_currentFunction = nullptr ;
}
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bool ViewPureChecker : : visit ( ModifierDefinition const & _modifier )
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{
solAssert ( m_currentFunction = = nullptr , " " ) ;
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m_bestMutabilityAndLocation = { StateMutability : : Pure , _modifier . location ( ) } ;
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return true ;
}
void ViewPureChecker : : endVisit ( ModifierDefinition const & _modifierDef )
{
solAssert ( m_currentFunction = = nullptr , " " ) ;
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m_inferredMutability [ & _modifierDef ] = std : : move ( m_bestMutabilityAndLocation ) ;
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}
void ViewPureChecker : : endVisit ( Identifier const & _identifier )
{
Declaration const * declaration = _identifier . annotation ( ) . referencedDeclaration ;
solAssert ( declaration , " " ) ;
StateMutability mutability = StateMutability : : Pure ;
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bool writes = _identifier . annotation ( ) . willBeWrittenTo ;
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if ( VariableDeclaration const * varDecl = dynamic_cast < VariableDeclaration const * > ( declaration ) )
{
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if ( varDecl - > immutable ( ) )
{
// Immutables that are assigned literals are pure.
if ( ! ( varDecl - > value ( ) & & varDecl - > value ( ) - > annotation ( ) . type - > category ( ) = = Type : : Category : : RationalNumber ) )
mutability = StateMutability : : View ;
}
else if ( varDecl - > isStateVariable ( ) & & ! varDecl - > isConstant ( ) )
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mutability = writes ? StateMutability : : NonPayable : StateMutability : : View ;
}
else if ( MagicVariableDeclaration const * magicVar = dynamic_cast < MagicVariableDeclaration const * > ( declaration ) )
{
switch ( magicVar - > type ( ) - > category ( ) )
{
case Type : : Category : : Contract :
solAssert ( _identifier . name ( ) = = " this " | | _identifier . name ( ) = = " super " , " " ) ;
if ( ! dynamic_cast < ContractType const & > ( * magicVar - > type ( ) ) . isSuper ( ) )
// reads the address
mutability = StateMutability : : View ;
break ;
case Type : : Category : : Integer :
solAssert ( _identifier . name ( ) = = " now " , " " ) ;
mutability = StateMutability : : View ;
break ;
default :
break ;
}
}
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reportMutability ( mutability , _identifier . location ( ) ) ;
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}
void ViewPureChecker : : endVisit ( InlineAssembly const & _inlineAssembly )
{
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AssemblyViewPureChecker {
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_inlineAssembly . dialect ( ) ,
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[ & ] ( StateMutability _mutability , SourceLocation const & _location ) { reportMutability ( _mutability , _location ) ; }
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} ( _inlineAssembly . operations ( ) ) ;
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}
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void ViewPureChecker : : reportMutability (
StateMutability _mutability ,
SourceLocation const & _location ,
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std : : optional < SourceLocation > const & _nestedLocation
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)
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{
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if ( _mutability > m_bestMutabilityAndLocation . mutability )
m_bestMutabilityAndLocation = MutabilityAndLocation { _mutability , _location } ;
if ( ! m_currentFunction | | _mutability < = m_currentFunction - > stateMutability ( ) )
return ;
// Check for payable here, because any occurrence of `msg.value`
// will set mutability to payable.
if ( _mutability = = StateMutability : : View | | (
_mutability = = StateMutability : : Payable & &
m_currentFunction - > stateMutability ( ) = = StateMutability : : Pure
) )
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{
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m_errorReporter . typeError (
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2527 _error ,
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_location ,
" Function declared as pure, but this expression (potentially) reads from the "
" environment or state and thus requires \" view \" . "
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) ;
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m_errors = true ;
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}
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else if ( _mutability = = StateMutability : : NonPayable )
{
m_errorReporter . typeError (
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8961 _error ,
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_location ,
" Function declared as " +
stateMutabilityToString ( m_currentFunction - > stateMutability ( ) ) +
" , but this expression (potentially) modifies the state and thus "
" requires non-payable (the default) or payable. "
) ;
m_errors = true ;
}
else if ( _mutability = = StateMutability : : Payable )
{
// We do not warn for library functions because they cannot be payable anyway.
// Also internal functions should be allowed to use `msg.value`.
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if ( ( m_currentFunction - > isConstructor ( ) | | m_currentFunction - > isPublic ( ) ) & & ! m_currentFunction - > libraryFunction ( ) )
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{
if ( _nestedLocation )
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m_errorReporter . typeError (
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4006 _error ,
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_location ,
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SecondarySourceLocation ( ) . append ( " \" msg.value \" or \" callvalue() \" appear here inside the modifier. " , * _nestedLocation ) ,
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m_currentFunction - > isConstructor ( ) ?
" This modifier uses \" msg.value \" or \" callvalue() \" and thus the constructor has to be payable. "
: " This modifier uses \" msg.value \" or \" callvalue() \" and thus the function has to be payable or internal. "
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) ;
else
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m_errorReporter . typeError (
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5887 _error ,
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_location ,
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m_currentFunction - > isConstructor ( ) ?
" \" msg.value \" and \" callvalue() \" can only be used in payable constructors. Make the constructor \" payable \" to avoid this error. "
: " \" msg.value \" and \" callvalue() \" can only be used in payable public functions. Make the function \" payable \" or use an internal function to avoid this error. "
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) ;
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m_errors = true ;
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}
}
else
solAssert ( false , " " ) ;
solAssert (
m_currentFunction - > stateMutability ( ) = = StateMutability : : View | |
m_currentFunction - > stateMutability ( ) = = StateMutability : : Pure | |
m_currentFunction - > stateMutability ( ) = = StateMutability : : NonPayable ,
" "
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) ;
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}
ViewPureChecker : : MutabilityAndLocation const & ViewPureChecker : : modifierMutability (
ModifierDefinition const & _modifier
)
{
if ( ! m_inferredMutability . count ( & _modifier ) )
{
MutabilityAndLocation bestMutabilityAndLocation { } ;
FunctionDefinition const * currentFunction = nullptr ;
swap ( bestMutabilityAndLocation , m_bestMutabilityAndLocation ) ;
swap ( currentFunction , m_currentFunction ) ;
_modifier . accept ( * this ) ;
swap ( bestMutabilityAndLocation , m_bestMutabilityAndLocation ) ;
swap ( currentFunction , m_currentFunction ) ;
}
return m_inferredMutability . at ( & _modifier ) ;
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}
void ViewPureChecker : : endVisit ( FunctionCall const & _functionCall )
{
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if ( * _functionCall . annotation ( ) . kind ! = FunctionCallKind : : FunctionCall )
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return ;
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StateMutability mutability = dynamic_cast < FunctionType const & > ( * _functionCall . expression ( ) . annotation ( ) . type ) . stateMutability ( ) ;
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// We only require "nonpayable" to call a payble function.
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if ( mutability = = StateMutability : : Payable )
mutability = StateMutability : : NonPayable ;
reportMutability ( mutability , _functionCall . location ( ) ) ;
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}
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bool ViewPureChecker : : visit ( MemberAccess const & _memberAccess )
{
// Catch the special case of `this.f.selector` which is a pure expression.
ASTString const & member = _memberAccess . memberName ( ) ;
if (
_memberAccess . expression ( ) . annotation ( ) . type - > category ( ) = = Type : : Category : : Function & &
member = = " selector "
)
if ( auto const * expr = dynamic_cast < MemberAccess const * > ( & _memberAccess . expression ( ) ) )
if ( auto const * exprInt = dynamic_cast < Identifier const * > ( & expr - > expression ( ) ) )
if ( exprInt - > name ( ) = = " this " )
// Do not continue visiting.
return false ;
return true ;
}
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void ViewPureChecker : : endVisit ( MemberAccess const & _memberAccess )
{
StateMutability mutability = StateMutability : : Pure ;
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bool writes = _memberAccess . annotation ( ) . willBeWrittenTo ;
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ASTString const & member = _memberAccess . memberName ( ) ;
switch ( _memberAccess . expression ( ) . annotation ( ) . type - > category ( ) )
{
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case Type : : Category : : Address :
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if ( member = = " balance " )
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mutability = StateMutability : : View ;
break ;
case Type : : Category : : Magic :
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{
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using MagicMember = pair < MagicType : : Kind , string > ;
set < MagicMember > static const pureMembers {
{ MagicType : : Kind : : ABI , " decode " } ,
{ MagicType : : Kind : : ABI , " encode " } ,
{ MagicType : : Kind : : ABI , " encodePacked " } ,
{ MagicType : : Kind : : ABI , " encodeWithSelector " } ,
{ MagicType : : Kind : : ABI , " encodeWithSignature " } ,
{ MagicType : : Kind : : Block , " blockhash " } ,
{ MagicType : : Kind : : Message , " data " } ,
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{ MagicType : : Kind : : Message , " sig " } ,
{ MagicType : : Kind : : MetaType , " creationCode " } ,
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{ MagicType : : Kind : : MetaType , " runtimeCode " } ,
{ MagicType : : Kind : : MetaType , " name " } ,
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{ MagicType : : Kind : : MetaType , " interfaceId " } ,
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{ MagicType : : Kind : : MetaType , " min " } ,
{ MagicType : : Kind : : MetaType , " max " } ,
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} ;
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set < MagicMember > static const payableMembers {
{ MagicType : : Kind : : Message , " value " }
} ;
auto const & type = dynamic_cast < MagicType const & > ( * _memberAccess . expression ( ) . annotation ( ) . type ) ;
MagicMember magicMember ( type . kind ( ) , member ) ;
if ( ! pureMembers . count ( magicMember ) )
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mutability = StateMutability : : View ;
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if ( payableMembers . count ( magicMember ) )
mutability = StateMutability : : Payable ;
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break ;
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}
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case Type : : Category : : Struct :
{
if ( _memberAccess . expression ( ) . annotation ( ) . type - > dataStoredIn ( DataLocation : : Storage ) )
mutability = writes ? StateMutability : : NonPayable : StateMutability : : View ;
break ;
}
case Type : : Category : : Array :
{
auto const & type = dynamic_cast < ArrayType const & > ( * _memberAccess . expression ( ) . annotation ( ) . type ) ;
if ( member = = " length " & & type . isDynamicallySized ( ) & & type . dataStoredIn ( DataLocation : : Storage ) )
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mutability = StateMutability : : View ;
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break ;
}
default :
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{
if ( VariableDeclaration const * varDecl = dynamic_cast < VariableDeclaration const * > (
_memberAccess . annotation ( ) . referencedDeclaration
) )
if ( varDecl - > isStateVariable ( ) & & ! varDecl - > isConstant ( ) )
mutability = writes ? StateMutability : : NonPayable : StateMutability : : View ;
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break ;
}
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}
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reportMutability ( mutability , _memberAccess . location ( ) ) ;
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}
void ViewPureChecker : : endVisit ( IndexAccess const & _indexAccess )
{
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if ( ! _indexAccess . indexExpression ( ) )
solAssert ( _indexAccess . annotation ( ) . type - > category ( ) = = Type : : Category : : TypeType , " " ) ;
else
{
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bool writes = _indexAccess . annotation ( ) . willBeWrittenTo ;
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if ( _indexAccess . baseExpression ( ) . annotation ( ) . type - > dataStoredIn ( DataLocation : : Storage ) )
reportMutability ( writes ? StateMutability : : NonPayable : StateMutability : : View , _indexAccess . location ( ) ) ;
}
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}
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void ViewPureChecker : : endVisit ( IndexRangeAccess const & _indexRangeAccess )
{
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bool writes = _indexRangeAccess . annotation ( ) . willBeWrittenTo ;
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if ( _indexRangeAccess . baseExpression ( ) . annotation ( ) . type - > dataStoredIn ( DataLocation : : Storage ) )
reportMutability ( writes ? StateMutability : : NonPayable : StateMutability : : View , _indexRangeAccess . location ( ) ) ;
}
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void ViewPureChecker : : endVisit ( ModifierInvocation const & _modifier )
{
solAssert ( _modifier . name ( ) , " " ) ;
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if ( ModifierDefinition const * mod = dynamic_cast < decltype ( mod ) > ( _modifier . name ( ) - > annotation ( ) . referencedDeclaration ) )
{
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MutabilityAndLocation const & mutAndLocation = modifierMutability ( * mod ) ;
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reportMutability ( mutAndLocation . mutability , _modifier . location ( ) , mutAndLocation . location ) ;
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}
else
solAssert ( dynamic_cast < ContractDefinition const * > ( _modifier . name ( ) - > annotation ( ) . referencedDeclaration ) , " " ) ;
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}