mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
157 lines
5.7 KiB
C++
157 lines
5.7 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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/**
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* Yul interpreter module that evaluates EVM instructions.
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*/
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#pragma once
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#include <libyul/ASTForward.h>
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#include <libsolutil/CommonData.h>
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#include <libsolutil/Numeric.h>
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#include <liblangutil/EVMVersion.h>
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#include <vector>
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namespace solidity::evmasm
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{
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enum class Instruction: uint8_t;
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}
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namespace solidity::yul
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{
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class YulString;
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struct BuiltinFunctionForEVM;
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}
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namespace solidity::yul::test
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{
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/// Copy @a _size bytes of @a _source at offset @a _sourceOffset to
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/// @a _target at offset @a _targetOffset. Behaves as if @a _source would
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/// continue with an infinite sequence of zero bytes beyond its end.
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void copyZeroExtended(
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std::map<u256, uint8_t>& _target, bytes const& _source,
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size_t _targetOffset, size_t _sourceOffset, size_t _size
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);
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struct InterpreterState;
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/**
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* Interprets EVM instructions based on the current state and logs instructions with
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* side-effects.
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*
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* Since this is mainly meant to be used for differential fuzz testing, it is focused
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* on a single contract only, does not do any gas counting and differs from the correct
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* implementation in many ways:
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*
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* - If memory access to a "large" memory position is performed, a deterministic
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* value is returned. Data that is stored in a "large" memory position is not
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* retained.
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* - The blockhash instruction returns a fixed value if the argument is in range.
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* - Extcodesize returns a deterministic value depending on the address.
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* - Extcodecopy copies a deterministic value depending on the address.
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* - And many other things
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*
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* The main focus is that the generated execution trace is the same for equivalent executions
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* and likely to be different for non-equivalent executions.
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*/
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class EVMInstructionInterpreter
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{
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public:
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explicit EVMInstructionInterpreter(langutil::EVMVersion _evmVersion, InterpreterState& _state, bool _disableMemWriteTrace):
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m_evmVersion(_evmVersion),
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m_state(_state),
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m_disableMemoryWriteInstructions(_disableMemWriteTrace)
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{}
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/// Evaluate instruction
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u256 eval(evmasm::Instruction _instruction, std::vector<u256> const& _arguments);
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/// Evaluate builtin function
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u256 evalBuiltin(
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BuiltinFunctionForEVM const& _fun,
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std::vector<Expression> const& _arguments,
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std::vector<u256> const& _evaluatedArguments
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);
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private:
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/// Checks if the memory access is valid and adjusts msize accordingly.
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/// @returns true if memory access is valid, false otherwise
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/// A valid memory access must satisfy all of the following pre-requisites:
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/// - Sum of @param _offset and @param _size do not overflow modulo u256
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/// - Sum of @param _offset, @param _size, and 31 do not overflow modulo u256 (see note below)
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/// - @param _size is lesser than or equal to @a s_maxRangeSize
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/// - @param _offset is lesser than or equal to the difference of numeric_limits<size_t>::max()
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/// and @a s_maxRangeSize
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/// Note: Memory expansion is carried out in multiples of 32 bytes.
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bool accessMemory(u256 const& _offset, u256 const& _size = 32);
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/// @returns the memory contents at the provided address.
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/// Does not adjust msize, use @a accessMemory for that
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bytes readMemory(u256 const& _offset, u256 const& _size = 32);
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/// @returns the memory contents at the provided address.
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/// Does not adjust msize, use @a accessMemory for that
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u256 readMemoryWord(u256 const& _offset);
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/// @returns writes a word to memory
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/// Does not adjust msize, use @a accessMemory for that
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void writeMemoryWord(u256 const& _offset, u256 const& _value);
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void logTrace(
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evmasm::Instruction _instruction,
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std::vector<u256> const& _arguments = {},
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bytes const& _data = {}
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);
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/// Appends a log to the trace representing an instruction or similar operation by string,
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/// with arguments and auxiliary data (if nonempty). Flag @param _writesToMemory indicates
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/// whether the instruction writes to (true) or does not write to (false) memory.
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void logTrace(
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std::string const& _pseudoInstruction,
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bool _writesToMemory,
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std::vector<u256> const& _arguments = {},
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bytes const& _data = {}
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);
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/// @returns a pair of boolean and size_t whose first value is true if @param _pseudoInstruction
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/// is a Yul instruction that the Yul optimizer's loadResolver step rewrites the input
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/// memory pointer value to zero if that instruction's read length (contained within @param
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// _arguments) is zero, and whose second value is the positional index of the input memory
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// pointer argument.
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/// If the Yul instruction is unaffected or affected but read length is non-zero, the first
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/// value is false.
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std::pair<bool, size_t> isInputMemoryPtrModified(
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std::string const& _pseudoInstruction,
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std::vector<u256> const& _arguments
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);
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/// @returns disable trace flag.
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bool memWriteTracingDisabled()
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{
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return m_disableMemoryWriteInstructions;
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}
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langutil::EVMVersion m_evmVersion;
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InterpreterState& m_state;
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/// Flag to disable trace of instructions that write to memory.
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bool m_disableMemoryWriteInstructions;
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public:
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/// Maximum length for range-based memory access operations.
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static constexpr unsigned s_maxRangeSize = 0xffff;
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};
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} // solidity::yul::test
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