This adds support for EIP-2718 typed transactions as well as EIP-2930 access list transactions (tx type 1). These EIPs are scheduled for the Berlin fork. There very few changes to existing APIs in core/types, and several new APIs to deal with access list transactions. In particular, there are two new constructor functions for transactions: types.NewTx and types.SignNewTx. Since the canonical encoding of typed transactions is not RLP-compatible, Transaction now has new methods for encoding and decoding: MarshalBinary and UnmarshalBinary. The existing EIP-155 signer does not support the new transaction types. All code dealing with transaction signatures should be updated to use the newer EIP-2930 signer. To make this easier for future updates, we have added new constructor functions for types.Signer: types.LatestSigner and types.LatestSignerForChainID. This change also adds support for the YoloV3 testnet. Co-authored-by: Martin Holst Swende <martin@swende.se> Co-authored-by: Felix Lange <fjl@twurst.com> Co-authored-by: Ryan Schneider <ryanleeschneider@gmail.com>
		
			
				
	
	
		
			91 lines
		
	
	
		
			3.5 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			91 lines
		
	
	
		
			3.5 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// Copyright 2016 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser 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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//
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// The go-ethereum library 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 Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package vm
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import (
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	"math/big"
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	"github.com/ethereum/go-ethereum/common"
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	"github.com/ethereum/go-ethereum/core/types"
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)
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// StateDB is an EVM database for full state querying.
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type StateDB interface {
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	CreateAccount(common.Address)
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	SubBalance(common.Address, *big.Int)
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	AddBalance(common.Address, *big.Int)
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	GetBalance(common.Address) *big.Int
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	GetNonce(common.Address) uint64
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	SetNonce(common.Address, uint64)
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	GetCodeHash(common.Address) common.Hash
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	GetCode(common.Address) []byte
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	SetCode(common.Address, []byte)
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	GetCodeSize(common.Address) int
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	AddRefund(uint64)
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	SubRefund(uint64)
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	GetRefund() uint64
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	GetCommittedState(common.Address, common.Hash) common.Hash
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	GetState(common.Address, common.Hash) common.Hash
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	SetState(common.Address, common.Hash, common.Hash)
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	Suicide(common.Address) bool
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	HasSuicided(common.Address) bool
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	// Exist reports whether the given account exists in state.
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	// Notably this should also return true for suicided accounts.
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	Exist(common.Address) bool
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	// Empty returns whether the given account is empty. Empty
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	// is defined according to EIP161 (balance = nonce = code = 0).
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	Empty(common.Address) bool
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	PrepareAccessList(sender common.Address, dest *common.Address, precompiles []common.Address, txAccesses types.AccessList)
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	AddressInAccessList(addr common.Address) bool
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	SlotInAccessList(addr common.Address, slot common.Hash) (addressOk bool, slotOk bool)
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	// AddAddressToAccessList adds the given address to the access list. This operation is safe to perform
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	// even if the feature/fork is not active yet
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	AddAddressToAccessList(addr common.Address)
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	// AddSlotToAccessList adds the given (address,slot) to the access list. This operation is safe to perform
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	// even if the feature/fork is not active yet
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	AddSlotToAccessList(addr common.Address, slot common.Hash)
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	RevertToSnapshot(int)
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	Snapshot() int
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	AddLog(*types.Log)
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	AddPreimage(common.Hash, []byte)
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	ForEachStorage(common.Address, func(common.Hash, common.Hash) bool) error
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}
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// CallContext provides a basic interface for the EVM calling conventions. The EVM
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// depends on this context being implemented for doing subcalls and initialising new EVM contracts.
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type CallContext interface {
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	// Call another contract
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	Call(env *EVM, me ContractRef, addr common.Address, data []byte, gas, value *big.Int) ([]byte, error)
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	// Take another's contract code and execute within our own context
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	CallCode(env *EVM, me ContractRef, addr common.Address, data []byte, gas, value *big.Int) ([]byte, error)
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	// Same as CallCode except sender and value is propagated from parent to child scope
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	DelegateCall(env *EVM, me ContractRef, addr common.Address, data []byte, gas *big.Int) ([]byte, error)
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	// Create a new contract
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	Create(env *EVM, me ContractRef, data []byte, gas, value *big.Int) ([]byte, common.Address, error)
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}
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