mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
190 lines
5.2 KiB
C++
190 lines
5.2 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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/**
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* EVM execution host, i.e. component that implements a simulated Ethereum blockchain
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* for testing purposes.
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*/
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#pragma once
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#include <test/evmc/evmc.hpp>
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#include <test/evmc/evmc.h>
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#include <test/evmc/helpers.hpp>
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#include <liblangutil/EVMVersion.h>
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#include <libdevcore/FixedHash.h>
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namespace dev
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{
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namespace test
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{
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using Address = h160;
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class EVMHost: public evmc::Host
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{
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public:
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/// Tries to dynamically load libevmone. @returns nullptr on failure.
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/// The path has to be provided for the first successful run and will be ignored
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/// afterwards.
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static evmc::vm* getVM(std::string const& _path = {});
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explicit EVMHost(langutil::EVMVersion _evmVersion, evmc::vm* _vm = getVM());
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struct Account
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{
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evmc_uint256be balance = {};
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size_t nonce = 0;
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bytes code;
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evmc_bytes32 codeHash = {};
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std::map<evmc_bytes32, evmc_bytes32> storage;
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};
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struct LogEntry
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{
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Address address;
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std::vector<h256> topics;
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bytes data;
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};
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struct State
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{
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size_t blockNumber;
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uint64_t timestamp;
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std::map<evmc_address, Account> accounts;
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std::vector<LogEntry> logs;
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};
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Account* account(evmc_address const& _address)
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{
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// Make all precompiled contracts exist.
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// Be future-proof and consider everything below 1024 as precompiled contract.
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if (u160(convertFromEVMC(_address)) < 1024)
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m_state.accounts[_address];
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auto it = m_state.accounts.find(_address);
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return it == m_state.accounts.end() ? nullptr : &it->second;
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}
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void reset() { m_state = State{}; m_currentAddress = {}; }
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void newBlock()
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{
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m_state.blockNumber++;
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m_state.timestamp += 15;
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m_state.logs.clear();
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}
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bool account_exists(evmc_address const& _addr) noexcept final
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{
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return account(_addr) != nullptr;
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}
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evmc_bytes32 get_storage(evmc_address const& _addr, evmc_bytes32 const& _key) noexcept final
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{
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if (Account* acc = account(_addr))
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return acc->storage[_key];
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return {};
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}
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evmc_storage_status set_storage(
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evmc_address const& _addr,
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evmc_bytes32 const& _key,
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evmc_bytes32 const& _value
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) noexcept;
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evmc_uint256be get_balance(evmc_address const& _addr) noexcept final
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{
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if (Account const* acc = account(_addr))
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return acc->balance;
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return {};
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}
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size_t get_code_size(evmc_address const& _addr) noexcept final
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{
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if (Account const* acc = account(_addr))
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return acc->code.size();
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return 0;
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}
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evmc_bytes32 get_code_hash(evmc_address const& _addr) noexcept final
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{
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if (Account const* acc = account(_addr))
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return acc->codeHash;
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return {};
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}
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size_t copy_code(
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evmc_address const& _addr,
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size_t _codeOffset,
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uint8_t* _bufferData,
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size_t _bufferSize
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) noexcept final
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{
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size_t i = 0;
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if (Account const* acc = account(_addr))
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for (; i < _bufferSize && _codeOffset + i < acc->code.size(); i++)
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_bufferData[i] = acc->code[_codeOffset + i];
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return i;
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}
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void selfdestruct(evmc_address const& _addr, evmc_address const& _beneficiary) noexcept;
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evmc::result call(evmc_message const& _message) noexcept;
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evmc_tx_context get_tx_context() noexcept;
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evmc_bytes32 get_block_hash(int64_t number) noexcept;
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void emit_log(
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evmc_address const& _addr,
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uint8_t const* _data,
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size_t _dataSize,
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evmc_bytes32 const _topics[],
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size_t _topicsCount
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) noexcept;
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static Address convertFromEVMC(evmc_address const& _addr);
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static evmc_address convertToEVMC(Address const& _addr);
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static h256 convertFromEVMC(evmc_bytes32 const& _data);
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static evmc_bytes32 convertToEVMC(h256 const& _data);
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State m_state;
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evmc_address m_currentAddress = {};
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evmc_address m_coinbase = convertToEVMC(Address("0x7878787878787878787878787878787878787878"));
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private:
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evmc::result precompileECRecover(evmc_message const& _message) noexcept;
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evmc::result precompileSha256(evmc_message const& _message) noexcept;
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evmc::result precompileRipeMD160(evmc_message const& _message) noexcept;
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evmc::result precompileIdentity(evmc_message const& _message) noexcept;
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evmc::result precompileModExp(evmc_message const& _message) noexcept;
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evmc::result precompileALTBN128G1Add(evmc_message const& _message) noexcept;
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evmc::result precompileALTBN128G1Mul(evmc_message const& _message) noexcept;
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evmc::result precompileALTBN128PairingProduct(evmc_message const& _message) noexcept;
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evmc::result precompileGeneric(evmc_message const& _message, std::map<bytes, bytes> const& _inOut) noexcept;
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/// @returns a result object with no gas usage and result data taken from @a _data.
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/// @note The return value is only valid as long as @a _data is alive!
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static evmc::result resultWithGas(evmc_message const& _message, bytes const& _data) noexcept;
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evmc::vm* m_vm = nullptr;
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evmc_revision m_evmVersion;
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};
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}
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}
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