forked from cerc-io/plugeth
core: update DAO soft-fork number, clean up the code
This commit is contained in:
parent
c4de28938f
commit
ba784bdf36
@ -169,6 +169,7 @@ participating.
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utils.MiningGPUFlag,
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utils.AutoDAGFlag,
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utils.TargetGasLimitFlag,
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utils.DAOSoftForkFlag,
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utils.NATFlag,
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utils.NatspecEnabledFlag,
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utils.NoDiscoverFlag,
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@ -128,6 +128,7 @@ var AppHelpFlagGroups = []flagGroup{
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utils.TargetGasLimitFlag,
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utils.GasPriceFlag,
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utils.ExtraDataFlag,
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utils.DAOSoftForkFlag,
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},
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},
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{
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@ -163,10 +163,6 @@ var (
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}
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// Miner settings
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// TODO: refactor CPU vs GPU mining flags
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BlockedCodeHashesFlag = cli.StringFlag{
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Name: "blocked-code-hashes",
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Usage: "Comma separated list of code-hashes to ignore any interaction from",
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}
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MiningEnabledFlag = cli.BoolFlag{
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Name: "mine",
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Usage: "Enable mining",
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@ -185,6 +181,10 @@ var (
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Usage: "Target gas limit sets the artificial target gas floor for the blocks to mine",
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Value: params.GenesisGasLimit.String(),
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}
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DAOSoftForkFlag = cli.BoolFlag{
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Name: "dao-soft-fork",
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Usage: "Vote for the DAO soft-fork, temporarilly decreasing the gas limits",
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}
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AutoDAGFlag = cli.BoolFlag{
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Name: "autodag",
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Usage: "Enable automatic DAG pregeneration",
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@ -644,16 +644,6 @@ func MakePasswordList(ctx *cli.Context) []string {
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return lines
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}
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// MakeBlockedCodeHashes parses a comma separated list of hashes.
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func MakeBlockedCodeHashes(ctx *cli.Context) map[common.Hash]struct{} {
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splittedHexHashes := strings.Split(ctx.GlobalString(BlockedCodeHashesFlag.Name), ",")
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illegalCodeHashes := make(map[common.Hash]struct{})
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for _, hexHash := range splittedHexHashes {
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illegalCodeHashes[common.HexToHash(strings.TrimSpace(hexHash))] = struct{}{}
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}
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return illegalCodeHashes
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}
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// MakeSystemNode sets up a local node, configures the services to launch and
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// assembles the P2P protocol stack.
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func MakeSystemNode(name, version string, relconf release.Config, extra []byte, ctx *cli.Context) *node.Node {
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@ -690,8 +680,9 @@ func MakeSystemNode(name, version string, relconf release.Config, extra []byte,
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}
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// Configure the Ethereum service
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accman := MakeAccountManager(ctx)
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// parse the blocked code hashes and set them to the core package.
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core.BlockedCodeHashes = MakeBlockedCodeHashes(ctx)
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// Handle some miner strategies arrising from the DAO fiasco
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core.DAOSoftFork = ctx.GlobalBool(DAOSoftForkFlag.Name)
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// initialise new random number generator
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rand := rand.New(rand.NewSource(time.Now().UnixNano()))
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@ -371,5 +371,10 @@ func CalcGasLimit(parent *types.Block) *big.Int {
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gl.Add(parent.GasLimit(), decay)
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gl.Set(common.BigMin(gl, params.TargetGasLimit))
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}
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// Temporary special case: if DAO rupture is requested, cap the gas limit
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if DAOSoftFork && parent.NumberU64() <= ruptureBlock && gl.Cmp(ruptureTarget) > 0 {
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gl.Sub(parent.GasLimit(), decay)
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gl.Set(common.BigMax(gl, ruptureTarget))
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}
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return gl
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}
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@ -84,12 +84,10 @@ func exec(env vm.Environment, caller vm.ContractRef, address, codeAddr *common.A
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address = &addr
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createAccount = true
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}
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// mark the code hash if the execution is a call, callcode or delegate.
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// Mark all contracts doing outbound value transfers to allow DAO filtering.
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if value.Cmp(common.Big0) > 0 {
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env.MarkCodeHash(env.Db().GetCodeHash(caller.Address()))
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}
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snapshotPreTransfer := env.MakeSnapshot()
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var (
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from = env.Db().GetAccount(caller.Address())
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@ -148,7 +146,7 @@ func execDelegateCall(env vm.Environment, caller vm.ContractRef, originAddr, toA
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caller.ReturnGas(gas, gasPrice)
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return nil, common.Address{}, vm.DepthError
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}
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// Mark all contracts doing outbound value transfers to allow DAO filtering.
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if value.Cmp(common.Big0) > 0 {
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env.MarkCodeHash(env.Db().GetCodeHash(caller.Address()))
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}
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@ -51,8 +51,6 @@ type StateDB struct {
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txIndex int
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logs map[common.Hash]vm.Logs
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logSize uint
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reducedDao bool
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}
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// Create a new state from a given trie
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@ -35,7 +35,10 @@ var (
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blockedCodeHashErr = errors.New("core: blocked code-hash found during execution")
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// DAO attack chain rupture mechanism
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ruptureBlock = uint64(1760000) // Block number of the voted soft fork
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DAOSoftFork bool // Flag whether to vote for DAO rupture
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ruptureBlock = uint64(1775000) // Block number of the voted soft fork
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ruptureTarget = big.NewInt(3141592) // Gas target (hard) for miners voting to fork
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ruptureThreshold = big.NewInt(4000000) // Gas threshold for passing a fork vote
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ruptureGasCache = make(map[common.Hash]*big.Int) // Amount of gas in the point of rupture
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ruptureCodeHashes = map[common.Hash]struct{}{
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@ -141,21 +144,13 @@ func ApplyTransaction(config *ChainConfig, bc *BlockChain, gp *GasPool, statedb
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}
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}
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}
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// Iterate over the bullshit blacklist to keep waste some time while keeping random Joe's happy
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if len(BlockedCodeHashes) > 0 {
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for hash, _ := range env.GetMarkedCodeHashes() {
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// Figure out whether this contract should in general be blocked
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if _, blocked := BlockedCodeHashes[hash]; blocked {
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return nil, nil, nil, blockedCodeHashErr
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}
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}
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}
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// Actually verify the DAO soft fork
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recipient := tx.To()
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if blockRuptureCodes && (recipient == nil || !ruptureWhitelist[*recipient]) {
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for hash, _ := range env.GetMarkedCodeHashes() {
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if _, blocked := ruptureCodeHashes[hash]; blocked {
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return nil, nil, nil, blockedCodeHashErr
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// Verify if the DAO soft fork kicks in
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if blockRuptureCodes {
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if recipient := tx.To(); recipient == nil || !ruptureWhitelist[*recipient] {
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for hash, _ := range env.GetMarkedCodeHashes() {
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if _, blocked := ruptureCodeHashes[hash]; blocked {
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return nil, nil, nil, blockedCodeHashErr
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}
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}
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}
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}
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@ -27,10 +27,9 @@ import (
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// Env is a basic runtime environment required for running the EVM.
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type Env struct {
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ruleSet vm.RuleSet
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depth int
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state *state.StateDB
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illegalHashes []common.Hash
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ruleSet vm.RuleSet
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depth int
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state *state.StateDB
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origin common.Address
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coinbase common.Address
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@ -50,15 +49,14 @@ type Env struct {
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// NewEnv returns a new vm.Environment
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func NewEnv(cfg *Config, state *state.StateDB) vm.Environment {
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env := &Env{
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ruleSet: cfg.RuleSet,
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illegalHashes: cfg.illegalHashes,
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state: state,
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origin: cfg.Origin,
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coinbase: cfg.Coinbase,
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number: cfg.BlockNumber,
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time: cfg.Time,
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difficulty: cfg.Difficulty,
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gasLimit: cfg.GasLimit,
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ruleSet: cfg.RuleSet,
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state: state,
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origin: cfg.Origin,
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coinbase: cfg.Coinbase,
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number: cfg.BlockNumber,
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time: cfg.Time,
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difficulty: cfg.Difficulty,
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gasLimit: cfg.GasLimit,
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}
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env.evm = vm.New(env, vm.Config{
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Debug: cfg.Debug,
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@ -35,18 +35,17 @@ func (ruleSet) IsHomestead(*big.Int) bool { return true }
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// Config is a basic type specifying certain configuration flags for running
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// the EVM.
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type Config struct {
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RuleSet vm.RuleSet
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Difficulty *big.Int
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Origin common.Address
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Coinbase common.Address
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BlockNumber *big.Int
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Time *big.Int
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GasLimit *big.Int
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GasPrice *big.Int
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Value *big.Int
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DisableJit bool // "disable" so it's enabled by default
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Debug bool
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illegalHashes []common.Hash
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RuleSet vm.RuleSet
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Difficulty *big.Int
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Origin common.Address
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Coinbase common.Address
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BlockNumber *big.Int
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Time *big.Int
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GasLimit *big.Int
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GasPrice *big.Int
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Value *big.Int
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DisableJit bool // "disable" so it's enabled by default
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Debug bool
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State *state.StateDB
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GetHashFn func(n uint64) common.Hash
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@ -25,10 +25,6 @@ import (
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"github.com/ethereum/go-ethereum/core/vm"
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)
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// BlockedCodeHashes is a set of EVM code hashes that this node should block
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// sending funds from.
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var BlockedCodeHashes map[common.Hash]struct{}
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// GetHashFn returns a function for which the VM env can query block hashes through
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// up to the limit defined by the Yellow Paper and uses the given block chain
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// to query for information.
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