mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
252 lines
8.6 KiB
C++
252 lines
8.6 KiB
C++
/*
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This file is part of solidity.
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solidity is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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solidity is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with solidity. If not, see <http://www.gnu.org/licenses/>.
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*/
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// SPDX-License-Identifier: GPL-3.0
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#pragma once
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#include <libsolidity/formal/SymbolicTypes.h>
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#include <libsolidity/formal/SymbolicVariables.h>
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#include <libsmtutil/Sorts.h>
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#include <libsmtutil/SolverInterface.h>
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namespace solidity::frontend::smt
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{
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class EncodingContext;
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class SymbolicAddressVariable;
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class SymbolicArrayVariable;
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class BlockchainVariable
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{
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public:
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BlockchainVariable(std::string _name, std::map<std::string, smtutil::SortPointer> _members, EncodingContext& _context);
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/// @returns the variable data as a tuple.
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smtutil::Expression value() const { return m_tuple->currentValue(); }
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smtutil::Expression value(unsigned _idx) const { return m_tuple->valueAtIndex(_idx); }
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smtutil::SortPointer const& sort() const { return m_tuple->sort(); }
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unsigned index() const { return m_tuple->index(); }
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void newVar() { m_tuple->increaseIndex(); }
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void reset() { m_tuple->resetIndex(); }
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/// @returns the symbolic _member.
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smtutil::Expression member(std::string const& _member) const;
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/// Generates a new tuple where _member is assigned _value.
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smtutil::Expression assignMember(std::string const& _member, smtutil::Expression const& _value);
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private:
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std::string const m_name;
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std::map<std::string, smtutil::SortPointer> const m_members;
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EncodingContext& m_context;
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std::map<std::string, unsigned> m_componentIndices;
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std::unique_ptr<SymbolicTupleVariable> m_tuple;
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};
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/**
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* Symbolic representation of the blockchain context:
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* - error flag
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* - this (the address of the currently executing contract)
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* - state, represented as a tuple of:
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* - balances
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* - TODO: potentially storage of contracts
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* - block and transaction properties, represented as a tuple of:
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* - blockhash
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* - block chainid
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* - block coinbase
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* - block difficulty
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* - block gaslimit
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* - block number
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* - block timestamp
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* - TODO gasleft
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* - msg data
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* - msg sender
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* - msg sig
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* - msg value
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* - tx gasprice
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* - tx origin
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*/
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class SymbolicState
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{
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public:
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SymbolicState(EncodingContext& _context): m_context(_context) {}
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void reset();
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/// Error flag.
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//@{
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SymbolicIntVariable& errorFlag() { return m_error; }
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SymbolicIntVariable const& errorFlag() const { return m_error; }
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smtutil::SortPointer const& errorFlagSort() const { return m_error.sort(); }
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//@}
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/// This.
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//@{
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/// @returns the symbolic value of the currently executing contract's address.
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smtutil::Expression thisAddress() const { return m_thisAddress.currentValue(); }
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smtutil::Expression thisAddress(unsigned _idx) const { return m_thisAddress.valueAtIndex(_idx); }
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smtutil::SortPointer const& thisAddressSort() const { return m_thisAddress.sort(); }
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//@}
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/// Blockchain state.
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//@{
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smtutil::Expression state() const { return m_state.value(); }
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smtutil::Expression state(unsigned _idx) const { return m_state.value(_idx); }
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smtutil::SortPointer const& stateSort() const { return m_state.sort(); }
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void newState() { m_state.newVar(); }
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/// @returns the symbolic balances.
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smtutil::Expression balances() const;
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/// @returns the symbolic balance of address `this`.
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smtutil::Expression balance() const;
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/// @returns the symbolic balance of an address.
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smtutil::Expression balance(smtutil::Expression _address) const;
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/// Transfer _value from _from to _to.
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void transfer(smtutil::Expression _from, smtutil::Expression _to, smtutil::Expression _value);
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//@}
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/// Transaction data.
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//@{
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/// @returns the tx data as a tuple.
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smtutil::Expression tx() const { return m_tx.value(); }
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smtutil::Expression tx(unsigned _idx) const { return m_tx.value(_idx); }
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smtutil::SortPointer const& txSort() const { return m_tx.sort(); }
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void newTx() { m_tx.newVar(); }
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smtutil::Expression txMember(std::string const& _member) const;
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smtutil::Expression txFunctionConstraints(FunctionDefinition const& _function) const;
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smtutil::Expression txTypeConstraints() const;
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smtutil::Expression txNonPayableConstraint() const;
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smtutil::Expression blockhash(smtutil::Expression _blockNumber) const;
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//@}
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/// Crypto functions.
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//@{
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/// @returns the crypto functions represented as a tuple of arrays.
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smtutil::Expression crypto() const { return m_crypto.value(); }
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smtutil::Expression crypto(unsigned _idx) const { return m_crypto.value(_idx); }
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smtutil::SortPointer const& cryptoSort() const { return m_crypto.sort(); }
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void newCrypto() { m_crypto.newVar(); }
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smtutil::Expression cryptoFunction(std::string const& _member) const { return m_crypto.member(_member); }
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//@}
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/// ABI functions.
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//@{
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/// Calls the internal methods that build the symbolic ABI functions
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/// based on the abi.* calls in _source and referenced sources.
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void prepareForSourceUnit(SourceUnit const& _source);
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smtutil::Expression abiFunction(FunctionCall const* _funCall);
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using SymbolicABIFunction = std::tuple<
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std::string,
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std::vector<frontend::Type const*>,
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std::vector<frontend::Type const*>
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>;
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SymbolicABIFunction const& abiFunctionTypes(FunctionCall const* _funCall) const;
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smtutil::Expression abi() const { solAssert(m_abi, ""); return m_abi->value(); }
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smtutil::Expression abi(unsigned _idx) const { solAssert(m_abi, ""); return m_abi->value(_idx); }
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smtutil::SortPointer const& abiSort() const { solAssert(m_abi, ""); return m_abi->sort(); }
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void newABI() { solAssert(m_abi, ""); m_abi->newVar(); }
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//@}
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private:
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/// Adds _value to _account's balance.
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void addBalance(smtutil::Expression _account, smtutil::Expression _value);
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/// Builds m_abi based on the abi.* calls _abiFunctions.
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void buildABIFunctions(std::set<FunctionCall const*> const& _abiFunctions);
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EncodingContext& m_context;
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SymbolicIntVariable m_error{
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TypeProvider::uint256(),
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TypeProvider::uint256(),
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"error",
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m_context
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};
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SymbolicAddressVariable m_thisAddress{
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"this",
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m_context
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};
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BlockchainVariable m_state{
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"state",
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{{"balances", std::make_shared<smtutil::ArraySort>(smtutil::SortProvider::uintSort, smtutil::SortProvider::uintSort)}},
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m_context
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};
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BlockchainVariable m_tx{
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"tx",
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{
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{"block.chainid", smtutil::SortProvider::uintSort},
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{"block.coinbase", smt::smtSort(*TypeProvider::address())},
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{"block.difficulty", smtutil::SortProvider::uintSort},
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{"block.gaslimit", smtutil::SortProvider::uintSort},
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{"block.number", smtutil::SortProvider::uintSort},
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{"block.timestamp", smtutil::SortProvider::uintSort},
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{"blockhash", std::make_shared<smtutil::ArraySort>(smtutil::SortProvider::uintSort, smtutil::SortProvider::uintSort)},
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// TODO gasleft
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{"msg.data", smt::smtSort(*TypeProvider::bytesMemory())},
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{"msg.sender", smt::smtSort(*TypeProvider::address())},
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{"msg.sig", smtutil::SortProvider::uintSort},
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{"msg.value", smtutil::SortProvider::uintSort},
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{"tx.gasprice", smtutil::SortProvider::uintSort},
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{"tx.origin", smt::smtSort(*TypeProvider::address())}
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},
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m_context
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};
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BlockchainVariable m_crypto{
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"crypto",
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{
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{"keccak256", std::make_shared<smtutil::ArraySort>(
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smt::smtSort(*TypeProvider::bytesStorage()),
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smtSort(*TypeProvider::fixedBytes(32))
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)},
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{"sha256", std::make_shared<smtutil::ArraySort>(
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smt::smtSort(*TypeProvider::bytesStorage()),
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smtSort(*TypeProvider::fixedBytes(32))
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)},
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{"ripemd160", std::make_shared<smtutil::ArraySort>(
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smt::smtSort(*TypeProvider::bytesStorage()),
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smtSort(*TypeProvider::fixedBytes(20))
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)},
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{"ecrecover", std::make_shared<smtutil::ArraySort>(
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std::make_shared<smtutil::TupleSort>(
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"ecrecover_input_type",
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std::vector<std::string>{"hash", "v", "r", "s"},
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std::vector<smtutil::SortPointer>{
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smt::smtSort(*TypeProvider::fixedBytes(32)),
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smt::smtSort(*TypeProvider::uint(8)),
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smt::smtSort(*TypeProvider::fixedBytes(32)),
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smt::smtSort(*TypeProvider::fixedBytes(32))
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}
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),
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smtSort(*TypeProvider::address())
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)}
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},
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m_context
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};
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/// Tuple containing all used ABI functions.
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std::unique_ptr<BlockchainVariable> m_abi;
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/// Maps ABI functions calls to their tuple names generated by
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/// `buildABIFunctions`.
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std::map<FunctionCall const*, SymbolicABIFunction> m_abiMembers;
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};
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}
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