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381 lines
12 KiB
381 lines
12 KiB
3 years ago
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// Copyright 2021 The go-ethereum Authors
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// This file is part of go-ethereum.
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//
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// go-ethereum 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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//
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// go-ethereum 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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//
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// You should have received a copy of the GNU General Public License
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// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
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package t8ntool
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import (
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"crypto/ecdsa"
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"encoding/json"
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"errors"
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"fmt"
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"math/big"
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"os"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/common/hexutil"
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"github.com/ethereum/go-ethereum/common/math"
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"github.com/ethereum/go-ethereum/consensus/clique"
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"github.com/ethereum/go-ethereum/consensus/ethash"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/log"
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"github.com/ethereum/go-ethereum/rlp"
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"gopkg.in/urfave/cli.v1"
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)
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//go:generate gencodec -type header -field-override headerMarshaling -out gen_header.go
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type header struct {
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ParentHash common.Hash `json:"parentHash"`
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OmmerHash *common.Hash `json:"sha3Uncles"`
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Coinbase *common.Address `json:"miner"`
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Root common.Hash `json:"stateRoot" gencodec:"required"`
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TxHash *common.Hash `json:"transactionsRoot"`
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ReceiptHash *common.Hash `json:"receiptsRoot"`
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Bloom types.Bloom `json:"logsBloom"`
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Difficulty *big.Int `json:"difficulty"`
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Number *big.Int `json:"number" gencodec:"required"`
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GasLimit uint64 `json:"gasLimit" gencodec:"required"`
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GasUsed uint64 `json:"gasUsed"`
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Time uint64 `json:"timestamp" gencodec:"required"`
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Extra []byte `json:"extraData"`
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MixDigest common.Hash `json:"mixHash"`
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Nonce *types.BlockNonce `json:"nonce"`
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BaseFee *big.Int `json:"baseFeePerGas" rlp:"optional"`
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}
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type headerMarshaling struct {
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Difficulty *math.HexOrDecimal256
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Number *math.HexOrDecimal256
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GasLimit math.HexOrDecimal64
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GasUsed math.HexOrDecimal64
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Time math.HexOrDecimal64
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Extra hexutil.Bytes
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BaseFee *math.HexOrDecimal256
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}
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type bbInput struct {
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Header *header `json:"header,omitempty"`
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OmmersRlp []string `json:"ommers,omitempty"`
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TxRlp string `json:"txs,omitempty"`
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Clique *cliqueInput `json:"clique,omitempty"`
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Ethash bool `json:"-"`
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EthashDir string `json:"-"`
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PowMode ethash.Mode `json:"-"`
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Txs []*types.Transaction `json:"-"`
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Ommers []*types.Header `json:"-"`
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}
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type cliqueInput struct {
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Key *ecdsa.PrivateKey
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Voted *common.Address
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Authorize *bool
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Vanity common.Hash
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}
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// UnmarshalJSON implements json.Unmarshaler interface.
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func (c *cliqueInput) UnmarshalJSON(input []byte) error {
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var x struct {
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Key *common.Hash `json:"secretKey"`
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Voted *common.Address `json:"voted"`
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Authorize *bool `json:"authorize"`
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Vanity common.Hash `json:"vanity"`
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}
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if err := json.Unmarshal(input, &x); err != nil {
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return err
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}
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if x.Key == nil {
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return errors.New("missing required field 'secretKey' for cliqueInput")
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}
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if ecdsaKey, err := crypto.ToECDSA(x.Key[:]); err != nil {
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return err
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} else {
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c.Key = ecdsaKey
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}
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c.Voted = x.Voted
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c.Authorize = x.Authorize
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c.Vanity = x.Vanity
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return nil
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}
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// ToBlock converts i into a *types.Block
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func (i *bbInput) ToBlock() *types.Block {
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header := &types.Header{
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ParentHash: i.Header.ParentHash,
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UncleHash: types.EmptyUncleHash,
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Coinbase: common.Address{},
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Root: i.Header.Root,
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TxHash: types.EmptyRootHash,
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ReceiptHash: types.EmptyRootHash,
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Bloom: i.Header.Bloom,
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Difficulty: common.Big0,
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Number: i.Header.Number,
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GasLimit: i.Header.GasLimit,
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GasUsed: i.Header.GasUsed,
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Time: i.Header.Time,
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Extra: i.Header.Extra,
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MixDigest: i.Header.MixDigest,
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BaseFee: i.Header.BaseFee,
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}
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// Fill optional values.
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if i.Header.OmmerHash != nil {
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header.UncleHash = *i.Header.OmmerHash
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} else if len(i.Ommers) != 0 {
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// Calculate the ommer hash if none is provided and there are ommers to hash
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header.UncleHash = types.CalcUncleHash(i.Ommers)
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}
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if i.Header.Coinbase != nil {
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header.Coinbase = *i.Header.Coinbase
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}
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if i.Header.TxHash != nil {
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header.TxHash = *i.Header.TxHash
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}
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if i.Header.ReceiptHash != nil {
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header.ReceiptHash = *i.Header.ReceiptHash
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}
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if i.Header.Nonce != nil {
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header.Nonce = *i.Header.Nonce
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}
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if header.Difficulty != nil {
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header.Difficulty = i.Header.Difficulty
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}
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return types.NewBlockWithHeader(header).WithBody(i.Txs, i.Ommers)
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}
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// SealBlock seals the given block using the configured engine.
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func (i *bbInput) SealBlock(block *types.Block) (*types.Block, error) {
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switch {
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case i.Ethash:
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return i.sealEthash(block)
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case i.Clique != nil:
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return i.sealClique(block)
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default:
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return block, nil
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}
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}
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// sealEthash seals the given block using ethash.
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func (i *bbInput) sealEthash(block *types.Block) (*types.Block, error) {
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if i.Header.Nonce != nil {
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return nil, NewError(ErrorConfig, fmt.Errorf("sealing with ethash will overwrite provided nonce"))
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}
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ethashConfig := ethash.Config{
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PowMode: i.PowMode,
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DatasetDir: i.EthashDir,
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CacheDir: i.EthashDir,
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DatasetsInMem: 1,
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DatasetsOnDisk: 2,
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CachesInMem: 2,
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CachesOnDisk: 3,
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}
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engine := ethash.New(ethashConfig, nil, true)
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defer engine.Close()
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// Use a buffered chan for results.
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// If the testmode is used, the sealer will return quickly, and complain
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// "Sealing result is not read by miner" if it cannot write the result.
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results := make(chan *types.Block, 1)
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if err := engine.Seal(nil, block, results, nil); err != nil {
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panic(fmt.Sprintf("failed to seal block: %v", err))
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}
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found := <-results
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return block.WithSeal(found.Header()), nil
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}
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// sealClique seals the given block using clique.
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func (i *bbInput) sealClique(block *types.Block) (*types.Block, error) {
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// If any clique value overwrites an explicit header value, fail
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// to avoid silently building a block with unexpected values.
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if i.Header.Extra != nil {
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return nil, NewError(ErrorConfig, fmt.Errorf("sealing with clique will overwrite provided extra data"))
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}
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header := block.Header()
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if i.Clique.Voted != nil {
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if i.Header.Coinbase != nil {
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return nil, NewError(ErrorConfig, fmt.Errorf("sealing with clique and voting will overwrite provided coinbase"))
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}
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header.Coinbase = *i.Clique.Voted
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}
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if i.Clique.Authorize != nil {
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if i.Header.Nonce != nil {
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return nil, NewError(ErrorConfig, fmt.Errorf("sealing with clique and voting will overwrite provided nonce"))
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}
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if *i.Clique.Authorize {
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header.Nonce = [8]byte{}
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} else {
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header.Nonce = [8]byte{0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff}
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}
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}
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// Extra is fixed 32 byte vanity and 65 byte signature
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header.Extra = make([]byte, 32+65)
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copy(header.Extra[0:32], i.Clique.Vanity.Bytes()[:])
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// Sign the seal hash and fill in the rest of the extra data
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h := clique.SealHash(header)
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sighash, err := crypto.Sign(h[:], i.Clique.Key)
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if err != nil {
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return nil, err
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}
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copy(header.Extra[32:], sighash)
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block = block.WithSeal(header)
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return block, nil
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}
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// BuildBlock constructs a block from the given inputs.
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func BuildBlock(ctx *cli.Context) error {
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// Configure the go-ethereum logger
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glogger := log.NewGlogHandler(log.StreamHandler(os.Stderr, log.TerminalFormat(false)))
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glogger.Verbosity(log.Lvl(ctx.Int(VerbosityFlag.Name)))
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log.Root().SetHandler(glogger)
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baseDir, err := createBasedir(ctx)
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if err != nil {
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return NewError(ErrorIO, fmt.Errorf("failed creating output basedir: %v", err))
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}
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inputData, err := readInput(ctx)
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if err != nil {
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return err
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}
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block := inputData.ToBlock()
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block, err = inputData.SealBlock(block)
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if err != nil {
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return err
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}
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return dispatchBlock(ctx, baseDir, block)
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}
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func readInput(ctx *cli.Context) (*bbInput, error) {
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var (
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headerStr = ctx.String(InputHeaderFlag.Name)
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ommersStr = ctx.String(InputOmmersFlag.Name)
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txsStr = ctx.String(InputTxsRlpFlag.Name)
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cliqueStr = ctx.String(SealCliqueFlag.Name)
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ethashOn = ctx.Bool(SealEthashFlag.Name)
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ethashDir = ctx.String(SealEthashDirFlag.Name)
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ethashMode = ctx.String(SealEthashModeFlag.Name)
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inputData = &bbInput{}
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)
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if ethashOn && cliqueStr != "" {
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return nil, NewError(ErrorConfig, fmt.Errorf("both ethash and clique sealing specified, only one may be chosen"))
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}
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if ethashOn {
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inputData.Ethash = ethashOn
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inputData.EthashDir = ethashDir
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switch ethashMode {
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case "normal":
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inputData.PowMode = ethash.ModeNormal
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case "test":
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inputData.PowMode = ethash.ModeTest
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case "fake":
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inputData.PowMode = ethash.ModeFake
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default:
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return nil, NewError(ErrorConfig, fmt.Errorf("unknown pow mode: %s, supported modes: test, fake, normal", ethashMode))
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}
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}
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if headerStr == stdinSelector || ommersStr == stdinSelector || txsStr == stdinSelector || cliqueStr == stdinSelector {
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decoder := json.NewDecoder(os.Stdin)
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if err := decoder.Decode(inputData); err != nil {
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return nil, NewError(ErrorJson, fmt.Errorf("failed unmarshaling stdin: %v", err))
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}
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}
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if cliqueStr != stdinSelector && cliqueStr != "" {
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var clique cliqueInput
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if err := readFile(cliqueStr, "clique", &clique); err != nil {
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return nil, err
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}
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inputData.Clique = &clique
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}
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if headerStr != stdinSelector {
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var env header
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if err := readFile(headerStr, "header", &env); err != nil {
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return nil, err
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}
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inputData.Header = &env
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}
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if ommersStr != stdinSelector && ommersStr != "" {
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var ommers []string
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if err := readFile(ommersStr, "ommers", &ommers); err != nil {
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return nil, err
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}
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inputData.OmmersRlp = ommers
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}
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if txsStr != stdinSelector {
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var txs string
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if err := readFile(txsStr, "txs", &txs); err != nil {
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return nil, err
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}
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inputData.TxRlp = txs
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}
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// Deserialize rlp txs and ommers
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var (
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ommers = []*types.Header{}
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txs = []*types.Transaction{}
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)
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if inputData.TxRlp != "" {
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if err := rlp.DecodeBytes(common.FromHex(inputData.TxRlp), &txs); err != nil {
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return nil, NewError(ErrorRlp, fmt.Errorf("unable to decode transaction from rlp data: %v", err))
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}
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inputData.Txs = txs
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}
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for _, str := range inputData.OmmersRlp {
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type extblock struct {
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Header *types.Header
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Txs []*types.Transaction
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Ommers []*types.Header
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}
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var ommer *extblock
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if err := rlp.DecodeBytes(common.FromHex(str), &ommer); err != nil {
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return nil, NewError(ErrorRlp, fmt.Errorf("unable to decode ommer from rlp data: %v", err))
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}
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ommers = append(ommers, ommer.Header)
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}
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inputData.Ommers = ommers
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return inputData, nil
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}
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// dispatchOutput writes the output data to either stderr or stdout, or to the specified
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// files
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func dispatchBlock(ctx *cli.Context, baseDir string, block *types.Block) error {
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raw, _ := rlp.EncodeToBytes(block)
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type blockInfo struct {
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Rlp hexutil.Bytes `json:"rlp"`
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Hash common.Hash `json:"hash"`
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}
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var enc blockInfo
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enc.Rlp = raw
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enc.Hash = block.Hash()
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b, err := json.MarshalIndent(enc, "", " ")
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if err != nil {
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return NewError(ErrorJson, fmt.Errorf("failed marshalling output: %v", err))
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}
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switch dest := ctx.String(OutputBlockFlag.Name); dest {
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case "stdout":
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os.Stdout.Write(b)
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os.Stdout.WriteString("\n")
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case "stderr":
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os.Stderr.Write(b)
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os.Stderr.WriteString("\n")
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default:
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if err := saveFile(baseDir, dest, enc); err != nil {
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return err
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}
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}
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return nil
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}
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