mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
c8759b8031
Co-authored-by: Kamil Śliwak <kamil.sliwak@codepoets.it>
162 lines
5.5 KiB
C++
162 lines
5.5 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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/** @file FixedHash.h
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* @author Gav Wood <i@gavwood.com>
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* @date 2014
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*
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* The FixedHash fixed-size "hash" container type.
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*/
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#pragma once
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#include <libsolutil/CommonData.h>
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#include <boost/functional/hash.hpp>
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#include <boost/io/ios_state.hpp>
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#include <array>
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#include <cstdint>
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#include <algorithm>
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namespace solidity::util
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{
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/// Fixed-size raw-byte array container type, with an API optimised for storing hashes.
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/// Transparently converts to/from the corresponding arithmetic type; this will
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/// assume the data contained in the hash is big-endian.
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template <unsigned N>
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class FixedHash
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{
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public:
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/// The corresponding arithmetic type.
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using Arith = boost::multiprecision::number<boost::multiprecision::cpp_int_backend<N * 8, N * 8, boost::multiprecision::unsigned_magnitude, boost::multiprecision::unchecked, void>>;
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/// The size of the container.
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enum { size = N };
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/// Method to convert from a string.
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enum ConstructFromStringType { FromHex, FromBinary };
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/// Method to convert from a string.
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enum ConstructFromHashType { AlignLeft, AlignRight, FailIfDifferent };
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/// Construct an empty hash.
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explicit FixedHash() { m_data.fill(0); }
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/// Construct from another hash, filling with zeroes or cropping as necessary.
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template <unsigned M> explicit FixedHash(FixedHash<M> const& _h, ConstructFromHashType _t = AlignLeft) { m_data.fill(0); unsigned c = std::min(M, N); for (unsigned i = 0; i < c; ++i) m_data[_t == AlignRight ? N - 1 - i : i] = _h[_t == AlignRight ? M - 1 - i : i]; }
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/// Convert from the corresponding arithmetic type.
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FixedHash(Arith const& _arith) { toBigEndian(_arith, m_data); }
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/// Explicitly construct, copying from a byte array.
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explicit FixedHash(bytes const& _array, ConstructFromHashType _sizeMismatchBehavior = FailIfDifferent)
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{
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if (_array.size() == N)
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memcpy(m_data.data(), _array.data(), _array.size());
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else
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{
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m_data.fill(0);
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if (_sizeMismatchBehavior != FailIfDifferent)
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{
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auto bytesToCopy = std::min<size_t>(_array.size(), N);
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for (size_t i = 0; i < bytesToCopy; ++i)
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if (_sizeMismatchBehavior == AlignRight)
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m_data[N - 1 - i] = _array[_array.size() - 1 - i];
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else
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m_data[i] = _array[i];
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}
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}
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}
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/// Explicitly construct, copying from a byte array.
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explicit FixedHash(bytesConstRef _b, ConstructFromHashType _t = FailIfDifferent)
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{
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if (_b.size() == N)
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memcpy(m_data.data(), _b.data(), std::min<size_t>(_b.size(), N));
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else
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{
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m_data.fill(0);
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if (_t != FailIfDifferent)
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{
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auto c = std::min<size_t>(_b.size(), N);
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for (size_t i = 0; i < c; ++i)
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if (_t == AlignRight)
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m_data[N - 1 - i] = _b[_b.size() - 1 - i];
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else
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m_data[i] = _b[i];
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}
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}
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}
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/// Explicitly construct, copying from a string.
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explicit FixedHash(std::string const& _s, ConstructFromStringType _t = FromHex, ConstructFromHashType _ht = FailIfDifferent): FixedHash(_t == FromHex ? fromHex(_s, WhenError::Throw) : solidity::util::asBytes(_s), _ht) {}
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/// Convert to arithmetic type.
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operator Arith() const { return fromBigEndian<Arith>(m_data); }
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// The obvious comparison operators.
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bool operator==(FixedHash const& _c) const { return m_data == _c.m_data; }
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bool operator!=(FixedHash const& _c) const { return m_data != _c.m_data; }
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/// Required to sort objects of this type or use them as map keys.
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bool operator<(FixedHash const& _c) const { for (unsigned i = 0; i < N; ++i) if (m_data[i] < _c.m_data[i]) return true; else if (m_data[i] > _c.m_data[i]) return false; return false; }
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/// @returns a particular byte from the hash.
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uint8_t& operator[](unsigned _i) { return m_data[_i]; }
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/// @returns a particular byte from the hash.
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uint8_t operator[](unsigned _i) const { return m_data[_i]; }
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/// @returns the hash as a user-readable hex string.
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std::string hex() const { return toHex(asBytes()); }
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/// @returns a mutable byte vector_ref to the object's data.
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bytesRef ref() { return bytesRef(m_data.data(), N); }
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/// @returns a constant byte vector_ref to the object's data.
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bytesConstRef ref() const { return bytesConstRef(m_data.data(), N); }
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/// @returns a mutable byte pointer to the object's data.
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uint8_t* data() { return m_data.data(); }
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/// @returns a constant byte pointer to the object's data.
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uint8_t const* data() const { return m_data.data(); }
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/// @returns a copy of the object's data as a byte vector.
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bytes asBytes() const { return bytes(data(), data() + N); }
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private:
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std::array<uint8_t, N> m_data; ///< The binary data.
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};
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/// Stream I/O for the FixedHash class.
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template <unsigned N>
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inline std::ostream& operator<<(std::ostream& _out, FixedHash<N> const& _h)
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{
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boost::io::ios_all_saver guard(_out);
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_out << std::noshowbase << std::hex << std::setfill('0');
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for (unsigned i = 0; i < N; ++i)
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_out << std::setw(2) << (int)_h[i];
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_out << std::dec;
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return _out;
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}
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// Common types of FixedHash.
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using h256 = FixedHash<32>;
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using h160 = FixedHash<20>;
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}
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