2021-09-14 16:53:41 +00:00
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// Copyright 2014 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 types
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import (
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"bytes"
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"errors"
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"fmt"
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"io"
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"math/big"
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"unsafe"
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"github.com/openrelayxyz/plugeth-utils/core"
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"github.com/openrelayxyz/plugeth-utils/restricted/crypto"
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"github.com/openrelayxyz/plugeth-utils/restricted/hexutil"
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"github.com/openrelayxyz/plugeth-utils/restricted/params"
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"github.com/openrelayxyz/plugeth-utils/restricted/rlp"
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)
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2023-06-05 06:44:25 +00:00
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//go:generate go run github.com/fjl/gencodec -type Receipt -field-override receiptMarshaling -out gen_receipt_json.go
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var (
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receiptStatusFailedRLP = []byte{}
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receiptStatusSuccessfulRLP = []byte{0x01}
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)
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// This error is returned when a typed receipt is decoded, but the string is empty.
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var errEmptyTypedReceipt = errors.New("empty typed receipt bytes")
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const (
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// ReceiptStatusFailed is the status code of a transaction if execution failed.
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ReceiptStatusFailed = uint64(0)
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// ReceiptStatusSuccessful is the status code of a transaction if execution succeeded.
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ReceiptStatusSuccessful = uint64(1)
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)
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// Receipt represents the results of a transaction.
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type Receipt struct {
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// Consensus fields: These fields are defined by the Yellow Paper
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Type uint8 `json:"type,omitempty"`
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PostState []byte `json:"root"`
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Status uint64 `json:"status"`
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CumulativeGasUsed uint64 `json:"cumulativeGasUsed" gencodec:"required"`
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Bloom Bloom `json:"logsBloom" gencodec:"required"`
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Logs []*Log `json:"logs" gencodec:"required"`
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// Implementation fields: These fields are added by geth when processing a transaction.
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TxHash core.Hash `json:"transactionHash" gencodec:"required"`
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ContractAddress core.Address `json:"contractAddress"`
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GasUsed uint64 `json:"gasUsed" gencodec:"required"`
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EffectiveGasPrice *big.Int `json:"effectiveGasPrice"` // required, but tag omitted for backwards compatibility
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// Inclusion information: These fields provide information about the inclusion of the
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// transaction corresponding to this receipt.
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BlockHash core.Hash `json:"blockHash,omitempty"`
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BlockNumber *big.Int `json:"blockNumber,omitempty"`
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TransactionIndex uint `json:"transactionIndex"`
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}
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type receiptMarshaling struct {
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Type hexutil.Uint64
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PostState hexutil.Bytes
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Status hexutil.Uint64
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CumulativeGasUsed hexutil.Uint64
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GasUsed hexutil.Uint64
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EffectiveGasPrice *hexutil.Big
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BlockNumber *hexutil.Big
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TransactionIndex hexutil.Uint
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}
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// receiptRLP is the consensus encoding of a receipt.
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type receiptRLP struct {
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PostStateOrStatus []byte
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CumulativeGasUsed uint64
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Bloom Bloom
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Logs []*Log
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}
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// storedReceiptRLP is the storage encoding of a receipt.
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type storedReceiptRLP struct {
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PostStateOrStatus []byte
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CumulativeGasUsed uint64
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Logs []*Log
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}
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// NewReceipt creates a barebone transaction receipt, copying the init fields.
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// Deprecated: create receipts using a struct literal instead.
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func NewReceipt(root []byte, failed bool, cumulativeGasUsed uint64) *Receipt {
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r := &Receipt{
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Type: LegacyTxType,
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PostState: core.CopyBytes(root),
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CumulativeGasUsed: cumulativeGasUsed,
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}
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if failed {
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r.Status = ReceiptStatusFailed
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} else {
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r.Status = ReceiptStatusSuccessful
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}
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return r
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}
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// EncodeRLP implements rlp.Encoder, and flattens the consensus fields of a receipt
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// into an RLP stream. If no post state is present, byzantium fork is assumed.
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// For a legacy Receipt this returns RLP([PostStateOrStatus, CumulativeGasUsed, Bloom, Logs])
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// For a EIP-2718 Receipt this returns RLP(TxType || ReceiptPayload)
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// For a EIP-2930 Receipt, TxType == 0x01 and ReceiptPayload == RLP([PostStateOrStatus, CumulativeGasUsed, Bloom, Logs])
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func (r *Receipt) EncodeRLP(w io.Writer) error {
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data := &receiptRLP{r.statusEncoding(), r.CumulativeGasUsed, r.Bloom, r.Logs}
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if r.Type == LegacyTxType {
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return rlp.Encode(w, data)
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}
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buf := encodeBufferPool.Get().(*bytes.Buffer)
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defer encodeBufferPool.Put(buf)
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buf.Reset()
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if err := r.encodeTyped(data, buf); err != nil {
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return err
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}
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return rlp.Encode(w, buf.Bytes())
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}
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// encodeTyped writes the canonical encoding of a typed receipt to w.
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func (r *Receipt) encodeTyped(data *receiptRLP, w *bytes.Buffer) error {
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w.WriteByte(r.Type)
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return rlp.Encode(w, data)
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}
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// MarshalBinary returns the consensus encoding of the receipt.
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func (r *Receipt) MarshalBinary() ([]byte, error) {
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if r.Type == LegacyTxType {
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return rlp.EncodeToBytes(r)
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}
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data := &receiptRLP{r.statusEncoding(), r.CumulativeGasUsed, r.Bloom, r.Logs}
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var buf bytes.Buffer
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err := r.encodeTyped(data, &buf)
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return buf.Bytes(), err
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}
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// DecodeRLP implements rlp.Decoder, and loads the consensus fields of a receipt
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// from an RLP stream.
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func (r *Receipt) DecodeRLP(s *rlp.Stream) error {
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kind, _, err := s.Kind()
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switch {
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case err != nil:
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return err
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case kind == rlp.List:
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// It's a legacy receipt.
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var dec receiptRLP
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if err := s.Decode(&dec); err != nil {
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return err
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}
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r.Type = LegacyTxType
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return r.setFromRLP(dec)
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default:
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// It's an EIP-2718 typed tx receipt.
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b, err := s.Bytes()
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if err != nil {
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return err
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}
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return r.decodeTyped(b)
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}
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}
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// UnmarshalBinary decodes the consensus encoding of receipts.
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// It supports legacy RLP receipts and EIP-2718 typed receipts.
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func (r *Receipt) UnmarshalBinary(b []byte) error {
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if len(b) > 0 && b[0] > 0x7f {
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// It's a legacy receipt decode the RLP
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var data receiptRLP
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err := rlp.DecodeBytes(b, &data)
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if err != nil {
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return err
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}
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r.Type = LegacyTxType
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return r.setFromRLP(data)
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}
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// It's an EIP2718 typed transaction envelope.
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return r.decodeTyped(b)
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}
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// decodeTyped decodes a typed receipt from the canonical format.
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func (r *Receipt) decodeTyped(b []byte) error {
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if len(b) <= 1 {
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return errEmptyTypedReceipt
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}
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switch b[0] {
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case DynamicFeeTxType, AccessListTxType:
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var data receiptRLP
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err := rlp.DecodeBytes(b[1:], &data)
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if err != nil {
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return err
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}
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r.Type = b[0]
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return r.setFromRLP(data)
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default:
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return ErrTxTypeNotSupported
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}
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}
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func (r *Receipt) setFromRLP(data receiptRLP) error {
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r.CumulativeGasUsed, r.Bloom, r.Logs = data.CumulativeGasUsed, data.Bloom, data.Logs
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return r.setStatus(data.PostStateOrStatus)
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}
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func (r *Receipt) setStatus(postStateOrStatus []byte) error {
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switch {
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case bytes.Equal(postStateOrStatus, receiptStatusSuccessfulRLP):
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r.Status = ReceiptStatusSuccessful
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case bytes.Equal(postStateOrStatus, receiptStatusFailedRLP):
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r.Status = ReceiptStatusFailed
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case len(postStateOrStatus) == len(core.Hash{}):
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r.PostState = postStateOrStatus
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default:
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return fmt.Errorf("invalid receipt status %x", postStateOrStatus)
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}
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return nil
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}
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func (r *Receipt) statusEncoding() []byte {
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if len(r.PostState) == 0 {
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if r.Status == ReceiptStatusFailed {
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return receiptStatusFailedRLP
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}
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return receiptStatusSuccessfulRLP
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}
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return r.PostState
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}
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// Size returns the approximate memory used by all internal contents. It is used
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// to approximate and limit the memory consumption of various caches.
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func (r *Receipt) Size() float64 {
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size := float64(unsafe.Sizeof(*r)) + float64(len(r.PostState))
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size += float64(len(r.Logs)) * float64(unsafe.Sizeof(Log{}))
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for _, log := range r.Logs {
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size += float64(len(log.Topics)*32 + len(log.Data))
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}
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return size
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}
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// ReceiptForStorage is a wrapper around a Receipt with RLP serialization
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// that omits the Bloom field and deserialization that re-computes it.
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type ReceiptForStorage Receipt
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// EncodeRLP implements rlp.Encoder.
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func (r *ReceiptForStorage) EncodeRLP(w io.Writer) error {
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enc := &storedReceiptRLP{
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PostStateOrStatus: (*Receipt)(r).statusEncoding(),
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CumulativeGasUsed: r.CumulativeGasUsed,
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Logs: r.Logs,
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}
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return rlp.Encode(w, enc)
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}
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// DecodeRLP implements rlp.Decoder, and loads both consensus and implementation
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// fields of a receipt from an RLP stream.
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func (r *ReceiptForStorage) DecodeRLP(s *rlp.Stream) error {
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var stored storedReceiptRLP
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if err := s.Decode(&stored); err != nil {
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return err
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}
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if err := (*Receipt)(r).setStatus(stored.PostStateOrStatus); err != nil {
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return err
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}
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r.CumulativeGasUsed = stored.CumulativeGasUsed
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r.Logs = stored.Logs
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r.Bloom = CreateBloom(Receipts{(*Receipt)(r)})
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return nil
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}
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// Receipts implements DerivableList for receipts.
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type Receipts []*Receipt
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// Len returns the number of receipts in this list.
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func (rs Receipts) Len() int { return len(rs) }
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// EncodeIndex encodes the i'th receipt to w.
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func (rs Receipts) EncodeIndex(i int, w *bytes.Buffer) {
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r := rs[i]
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data := &receiptRLP{r.statusEncoding(), r.CumulativeGasUsed, r.Bloom, r.Logs}
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switch r.Type {
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case LegacyTxType:
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rlp.Encode(w, data)
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case AccessListTxType:
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w.WriteByte(AccessListTxType)
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rlp.Encode(w, data)
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case DynamicFeeTxType:
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w.WriteByte(DynamicFeeTxType)
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rlp.Encode(w, data)
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default:
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// For unsupported types, write nothing. Since this is for
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// DeriveSha, the error will be caught matching the derived hash
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// to the block.
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}
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}
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// DeriveFields fills the receipts with their computed fields based on consensus
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// data and contextual infos like containing block and transactions.
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func (rs Receipts) DeriveFields(config *params.ChainConfig, hash core.Hash, number uint64, baseFee *big.Int, txs []*Transaction) error {
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signer := MakeSigner(config, new(big.Int).SetUint64(number))
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logIndex := uint(0)
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if len(txs) != len(rs) {
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return errors.New("transaction and receipt count mismatch")
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}
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for i := 0; i < len(rs); i++ {
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// The transaction type and hash can be retrieved from the transaction itself
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rs[i].Type = txs[i].Type()
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rs[i].TxHash = txs[i].Hash()
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rs[i].EffectiveGasPrice = txs[i].inner.effectiveGasPrice(new(big.Int), baseFee)
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// block location fields
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rs[i].BlockHash = hash
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rs[i].BlockNumber = new(big.Int).SetUint64(number)
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rs[i].TransactionIndex = uint(i)
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// The contract address can be derived from the transaction itself
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if txs[i].To() == nil {
|
|
|
|
// Deriving the signer is expensive, only do if it's actually needed
|
|
|
|
from, _ := Sender(signer, txs[i])
|
2023-06-05 06:44:25 +00:00
|
|
|
rs[i].ContractAddress = crypto.CreateAddress(from, txs[i].Nonce())
|
|
|
|
} else {
|
|
|
|
rs[i].ContractAddress = core.Address{}
|
2021-09-14 16:53:41 +00:00
|
|
|
}
|
2023-06-05 06:44:25 +00:00
|
|
|
|
2021-09-14 16:53:41 +00:00
|
|
|
// The used gas can be calculated based on previous r
|
|
|
|
if i == 0 {
|
2023-06-05 06:44:25 +00:00
|
|
|
rs[i].GasUsed = rs[i].CumulativeGasUsed
|
2021-09-14 16:53:41 +00:00
|
|
|
} else {
|
2023-06-05 06:44:25 +00:00
|
|
|
rs[i].GasUsed = rs[i].CumulativeGasUsed - rs[i-1].CumulativeGasUsed
|
2021-09-14 16:53:41 +00:00
|
|
|
}
|
2023-06-05 06:44:25 +00:00
|
|
|
|
2021-09-14 16:53:41 +00:00
|
|
|
// The derived log fields can simply be set from the block and transaction
|
2023-06-05 06:44:25 +00:00
|
|
|
for j := 0; j < len(rs[i].Logs); j++ {
|
|
|
|
rs[i].Logs[j].BlockNumber = number
|
|
|
|
rs[i].Logs[j].BlockHash = hash
|
|
|
|
rs[i].Logs[j].TxHash = rs[i].TxHash
|
|
|
|
rs[i].Logs[j].TxIndex = uint(i)
|
|
|
|
rs[i].Logs[j].Index = logIndex
|
2021-09-14 16:53:41 +00:00
|
|
|
logIndex++
|
|
|
|
}
|
|
|
|
}
|
|
|
|
return nil
|
|
|
|
}
|