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// Copyright 2015 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package runtime
import (
"math"
"math/big"
"time"
"github.com/holiman/uint256"
"github.com/ledgerwatch/erigon-lib/kv"
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"github.com/ledgerwatch/erigon-lib/kv/memdb"
"github.com/ledgerwatch/erigon/ethdb/olddb"
"github.com/ledgerwatch/erigon/common"
"github.com/ledgerwatch/erigon/core/state"
"github.com/ledgerwatch/erigon/core/vm"
"github.com/ledgerwatch/erigon/crypto"
"github.com/ledgerwatch/erigon/params"
)
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// Config is a basic type specifying certain configuration flags for running
// the EVM.
type Config struct {
ChainConfig *params.ChainConfig
Difficulty *big.Int
Origin common.Address
Coinbase common.Address
BlockNumber *big.Int
Time *big.Int
GasLimit uint64
GasPrice *big.Int
Value *uint256.Int
Debug bool
EVMConfig vm.Config
BaseFee *uint256.Int
State *state.IntraBlockState
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r state.StateReader
w state.StateWriter
kv kv.Has
GetHashFn func(n uint64) common.Hash
}
// sets defaults on the config
func setDefaults(cfg *Config) {
if cfg.ChainConfig == nil {
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cfg.ChainConfig = &params.ChainConfig{
ChainID: big.NewInt(1),
HomesteadBlock: new(big.Int),
DAOForkBlock: new(big.Int),
DAOForkSupport: false,
TangerineWhistleBlock: new(big.Int),
TangerineWhistleHash: common.Hash{},
SpuriousDragonBlock: new(big.Int),
ByzantiumBlock: new(big.Int),
ConstantinopleBlock: new(big.Int),
PetersburgBlock: new(big.Int),
IstanbulBlock: new(big.Int),
MuirGlacierBlock: new(big.Int),
BerlinBlock: new(big.Int),
LondonBlock: new(big.Int),
ArrowGlacierBlock: new(big.Int),
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GrayGlacierBlock: new(big.Int),
ShanghaiBlock: new(big.Int),
CancunBlock: new(big.Int),
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}
}
if cfg.Difficulty == nil {
cfg.Difficulty = new(big.Int)
}
if cfg.Time == nil {
cfg.Time = big.NewInt(time.Now().Unix())
}
if cfg.GasLimit == 0 {
cfg.GasLimit = math.MaxUint64
}
if cfg.GasPrice == nil {
cfg.GasPrice = new(big.Int)
}
if cfg.Value == nil {
cfg.Value = new(uint256.Int)
}
if cfg.BlockNumber == nil {
cfg.BlockNumber = new(big.Int)
}
if cfg.GetHashFn == nil {
cfg.GetHashFn = func(n uint64) common.Hash {
return common.BytesToHash(crypto.Keccak256([]byte(new(big.Int).SetUint64(n).String())))
}
}
}
// Execute executes the code using the input as call data during the execution.
// It returns the EVM's return value, the new state and an error if it failed.
//
// Execute sets up an in-memory, temporary, environment for the execution of
// the given code. It makes sure that it's restored to its original state afterwards.
func Execute(code, input []byte, cfg *Config, blockNr uint64) ([]byte, *state.IntraBlockState, error) {
if cfg == nil {
cfg = new(Config)
}
setDefaults(cfg)
if cfg.State == nil {
db := olddb.NewObjectDatabase(memdb.New())
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defer db.Close()
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cfg.r = state.NewDbStateReader(db)
cfg.w = state.NewDbStateWriter(db, 0)
cfg.kv = db
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cfg.State = state.New(cfg.r)
}
var (
address = common.BytesToAddress([]byte("contract"))
vmenv = NewEnv(cfg)
sender = vm.AccountRef(cfg.Origin)
)
if rules := cfg.ChainConfig.Rules(vmenv.Context().BlockNumber); rules.IsBerlin {
cfg.State.PrepareAccessList(cfg.Origin, &address, vm.ActivePrecompiles(rules), nil)
}
cfg.State.CreateAccount(address, true)
// set the receiver's (the executing contract) code for execution.
cfg.State.SetCode(address, code)
// Call the code with the given configuration.
ret, _, err := vmenv.Call(
sender,
common.BytesToAddress([]byte("contract")),
input,
cfg.GasLimit,
cfg.Value,
false, /* bailout */
)
return ret, cfg.State, err
}
// Create executes the code using the EVM create method
func Create(input []byte, cfg *Config, blockNr uint64) ([]byte, common.Address, uint64, error) {
if cfg == nil {
cfg = new(Config)
}
setDefaults(cfg)
if cfg.State == nil {
db := olddb.NewObjectDatabase(memdb.New())
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defer db.Close()
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cfg.r = state.NewDbStateReader(db)
cfg.w = state.NewDbStateWriter(db, 0)
cfg.kv = db
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cfg.State = state.New(cfg.r)
}
var (
vmenv = NewEnv(cfg)
sender = vm.AccountRef(cfg.Origin)
)
if rules := cfg.ChainConfig.Rules(vmenv.Context().BlockNumber); rules.IsBerlin {
cfg.State.PrepareAccessList(cfg.Origin, nil, vm.ActivePrecompiles(rules), nil)
}
// Call the code with the given configuration.
code, address, leftOverGas, err := vmenv.Create(
sender,
input,
cfg.GasLimit,
cfg.Value,
)
return code, address, leftOverGas, err
}
// Call executes the code given by the contract's address. It will return the
// EVM's return value or an error if it failed.
//
// Call, unlike Execute, requires a config and also requires the State field to
// be set.
func Call(address common.Address, input []byte, cfg *Config) ([]byte, uint64, error) {
setDefaults(cfg)
vmenv := NewEnv(cfg)
sender := cfg.State.GetOrNewStateObject(cfg.Origin)
all: add support for EIP-2718, EIP-2930 transactions (#21502) 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> # Conflicts: # accounts/abi/bind/backends/simulated.go # cmd/evm/internal/t8ntool/execution.go # cmd/evm/internal/t8ntool/transition.go # cmd/geth/main.go # cmd/geth/usage.go # core/bench_test.go # core/state/statedb.go # core/state_prefetcher.go # core/state_processor.go # core/state_transition.go # core/tx_pool.go # core/types/block.go # core/types/derive_sha.go # core/types/gen_tx_json.go # core/types/receipt.go # core/types/receipt_test.go # core/types/transaction.go # core/types/transaction_signing.go # core/types/transaction_test.go # ethclient/ethclient.go # ethclient/signer.go # graphql/graphql.go # internal/ethapi/api.go # internal/guide/guide_test.go # les/benchmark.go # les/odr_test.go # light/odr_test.go # light/txpool.go # miner/worker.go # miner/worker_test.go # signer/core/api.go # tests/state_test_util.go # trie/stacktrie_test.go # turbo/stages/blockchain_test.go
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statedb := cfg.State
if rules := cfg.ChainConfig.Rules(vmenv.Context().BlockNumber); rules.IsBerlin {
statedb.PrepareAccessList(cfg.Origin, &address, vm.ActivePrecompiles(rules), nil)
}
// Call the code with the given configuration.
ret, leftOverGas, err := vmenv.Call(
sender,
address,
input,
cfg.GasLimit,
cfg.Value,
false, /* bailout */
)
return ret, leftOverGas, err
}