Roy Crihfield
688b5c817a
Most notable changes are the updates to the test contracts: due to https://eips.ethereum.org/EIPS/eip-6780, SELFDESTRUCT no longer destroys a contract (unless it occurs in the creating transaction), so CREATE2 can no longer redeploy contracts to the same address. Reviewed-on: #264
305 lines
11 KiB
Go
305 lines
11 KiB
Go
// VulcanizeDB
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// Copyright © 2019 Vulcanize
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero 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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// This program 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 Affero General Public License for more details.
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package eth
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import (
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"errors"
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"fmt"
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"math/big"
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"strconv"
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"github.com/cerc-io/ipld-eth-server/v5/pkg/log"
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"github.com/cerc-io/plugeth-statediff/indexer/models"
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sdtypes "github.com/cerc-io/plugeth-statediff/types"
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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/core"
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"github.com/ethereum/go-ethereum/core/types"
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)
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// RPCTransaction represents a transaction that will serialize to the RPC representation of a transaction
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// Note: copied from go-ethereum/internal/ethapi
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type RPCTransaction struct {
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BlockHash *common.Hash `json:"blockHash"`
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BlockNumber *hexutil.Big `json:"blockNumber"`
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From common.Address `json:"from"`
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Gas hexutil.Uint64 `json:"gas"`
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GasPrice *hexutil.Big `json:"gasPrice"`
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GasFeeCap *hexutil.Big `json:"maxFeePerGas,omitempty"`
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GasTipCap *hexutil.Big `json:"maxPriorityFeePerGas,omitempty"`
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MaxFeePerBlobGas *hexutil.Big `json:"maxFeePerBlobGas,omitempty"`
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Hash common.Hash `json:"hash"`
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Input hexutil.Bytes `json:"input"`
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Nonce hexutil.Uint64 `json:"nonce"`
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To *common.Address `json:"to"`
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TransactionIndex *hexutil.Uint64 `json:"transactionIndex"`
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Value *hexutil.Big `json:"value"`
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Type hexutil.Uint64 `json:"type"`
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Accesses *types.AccessList `json:"accessList,omitempty"`
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ChainID *hexutil.Big `json:"chainId,omitempty"`
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BlobVersionedHashes []common.Hash `json:"blobVersionedHashes,omitempty"`
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V *hexutil.Big `json:"v"`
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R *hexutil.Big `json:"r"`
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S *hexutil.Big `json:"s"`
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YParity *hexutil.Uint64 `json:"yParity,omitempty"`
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}
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// RPCReceipt represents a receipt that will serialize to the RPC representation of a receipt
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type RPCReceipt struct {
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BlockHash *common.Hash `json:"blockHash"`
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BlockNumber *hexutil.Big `json:"blockNumber"`
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TransactionHash *common.Hash `json:"transactionHash"`
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TransactionIndex *hexutil.Uint64 `json:"transactionIndex"`
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From common.Address `json:"from"`
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To *common.Address `json:"to"`
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GasUsed hexutil.Uint64 `json:"gasUsed"`
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CumulativeGsUsed hexutil.Uint64 `json:"cumulativeGasUsed"`
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ContractAddress *common.Address `json:"contractAddress"`
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Logs []*types.Log `json:"logs"`
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Bloom types.Bloom `json:"logsBloom"`
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Root []byte `json:"root"`
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Status uint64 `json:"status"`
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}
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// AccountResult struct for GetProof
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type AccountResult struct {
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Address common.Address `json:"address"`
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AccountProof []string `json:"accountProof"`
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Balance *hexutil.Big `json:"balance"`
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CodeHash common.Hash `json:"codeHash"`
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Nonce hexutil.Uint64 `json:"nonce"`
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StorageHash common.Hash `json:"storageHash"`
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StorageProof []StorageResult `json:"storageProof"`
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}
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// StorageResult for GetProof
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type StorageResult struct {
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Key string `json:"key"`
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Value *hexutil.Big `json:"value"`
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Proof []string `json:"proof"`
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}
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// CallArgs represents the arguments for a call.
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type CallArgs struct {
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From *common.Address `json:"from"`
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To *common.Address `json:"to"`
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Gas *hexutil.Uint64 `json:"gas"`
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GasPrice *hexutil.Big `json:"gasPrice"`
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MaxFeePerGas *hexutil.Big `json:"maxFeePerGas"`
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MaxPriorityFeePerGas *hexutil.Big `json:"maxPriorityFeePerGas"`
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Value *hexutil.Big `json:"value"`
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Data *hexutil.Bytes `json:"data"`
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AccessList *types.AccessList `json:"accessList,omitempty"`
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Input *hexutil.Bytes `json:"input"`
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}
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// from retrieves the transaction sender address.
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func (arg *CallArgs) from() common.Address {
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if arg.From == nil {
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return common.Address{}
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}
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return *arg.From
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}
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// data retrieves the transaction calldata. Input field is preferred.
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func (arg *CallArgs) data() []byte {
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if arg.Input != nil {
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return *arg.Input
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}
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if arg.Data != nil {
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return *arg.Data
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}
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return nil
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}
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// ToMessage converts the transaction arguments to the Message type used by the
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// core evm. This method is used in calls and traces that do not require a real
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// live transaction.
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func (arg *CallArgs) ToMessage(globalGasCap uint64, baseFee *big.Int) (*core.Message, error) {
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// Reject invalid combinations of pre- and post-1559 fee styles
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if arg.GasPrice != nil && (arg.MaxFeePerGas != nil || arg.MaxPriorityFeePerGas != nil) {
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return nil, errors.New("both gasPrice and (maxFeePerGas or maxPriorityFeePerGas) specified")
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}
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// Set sender address or use zero address if none specified.
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addr := arg.from()
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// Set default gas & gas price if none were set
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gas := globalGasCap
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if gas == 0 {
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gas = uint64(math.MaxUint64 / 2)
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}
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if arg.Gas != nil {
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gas = uint64(*arg.Gas)
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}
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if globalGasCap != 0 && globalGasCap < gas {
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log.Warn("Caller gas above allowance, capping", "requested", gas, "cap", globalGasCap)
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gas = globalGasCap
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}
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var (
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gasPrice *big.Int
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gasFeeCap *big.Int
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gasTipCap *big.Int
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)
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if baseFee == nil {
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// If there's no basefee, then it must be a non-1559 execution
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gasPrice = new(big.Int)
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if arg.GasPrice != nil {
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gasPrice = arg.GasPrice.ToInt()
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}
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gasFeeCap, gasTipCap = gasPrice, gasPrice
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} else {
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// A basefee is provided, necessitating 1559-type execution
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if arg.GasPrice != nil {
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// User specified the legacy gas field, convert to 1559 gas typing
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gasPrice = arg.GasPrice.ToInt()
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gasFeeCap, gasTipCap = gasPrice, gasPrice
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} else {
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// User specified 1559 gas feilds (or none), use those
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gasFeeCap = new(big.Int)
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if arg.MaxFeePerGas != nil {
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gasFeeCap = arg.MaxFeePerGas.ToInt()
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}
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gasTipCap = new(big.Int)
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if arg.MaxPriorityFeePerGas != nil {
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gasTipCap = arg.MaxPriorityFeePerGas.ToInt()
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}
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// Backfill the legacy gasPrice for EVM execution, unless we're all zeroes
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gasPrice = new(big.Int)
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if gasFeeCap.BitLen() > 0 || gasTipCap.BitLen() > 0 {
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gasPrice = math.BigMin(new(big.Int).Add(gasTipCap, baseFee), gasFeeCap)
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}
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}
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}
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value := new(big.Int)
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if arg.Value != nil {
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value = arg.Value.ToInt()
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}
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data := arg.data()
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var accessList types.AccessList
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if arg.AccessList != nil {
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accessList = *arg.AccessList
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}
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msg := &core.Message{
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Nonce: 0,
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GasLimit: gas,
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GasPrice: gasPrice,
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GasFeeCap: gasFeeCap,
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GasTipCap: gasTipCap,
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To: arg.To,
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Value: value,
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Data: data,
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AccessList: accessList,
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SkipAccountChecks: true,
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From: addr,
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}
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return msg, nil
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}
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// ConvertedPayload is a custom type which packages raw ETH data for publishing to IPFS and filtering to subscribers
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// Returned by PayloadConverter
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// Passed to IPLDPublisher and ResponseFilterer
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type ConvertedPayload struct {
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TotalDifficulty *big.Int
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Block *types.Block
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TxMetaData []models.TxModel
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Receipts types.Receipts
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ReceiptMetaData []models.ReceiptModel
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StateNodes []sdtypes.StateLeafNode
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StorageNodes map[string][]sdtypes.StorageLeafNode
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}
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// LogResult represent a log.
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type LogResult struct {
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LeafCID string `db:"cid"`
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ReceiptID string `db:"rct_id"`
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Address string `db:"address"`
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Index int64 `db:"index"`
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Data []byte `db:"log_data"`
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Topic0 string `db:"topic0"`
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Topic1 string `db:"topic1"`
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Topic2 string `db:"topic2"`
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Topic3 string `db:"topic3"`
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LogLeafData []byte `db:"data"`
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RctCID string `db:"rct_cid"`
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RctStatus uint64 `db:"post_status"`
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BlockNumber string `db:"block_number"`
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BlockHash string `db:"block_hash"`
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TxnIndex int64 `db:"txn_index"`
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TxHash string `db:"tx_hash"`
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}
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// GetSliceResponse holds response for the eth_getSlice method
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type GetSliceResponse struct {
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SliceID string `json:"sliceId"`
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MetaData GetSliceResponseMetadata `json:"metadata"`
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TrieNodes GetSliceResponseTrieNodes `json:"trieNodes"`
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Leaves map[string]GetSliceResponseAccount `json:"leaves"` // key: Keccak256Hash(address) in hex (leafKey)
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}
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func (sr *GetSliceResponse) init(path string, depth int, root common.Hash) {
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sr.SliceID = fmt.Sprintf("%s-%d-%s", path, depth, root.String())
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sr.MetaData = GetSliceResponseMetadata{
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NodeStats: make(map[string]string, 0),
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TimeStats: make(map[string]string, 0),
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}
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sr.Leaves = make(map[string]GetSliceResponseAccount)
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sr.TrieNodes = GetSliceResponseTrieNodes{
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Stem: make(map[string]string),
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Head: make(map[string]string),
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Slice: make(map[string]string),
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}
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}
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func (sr *GetSliceResponse) populateMetaData(metaData metaDataFields) {
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sr.MetaData.NodeStats["00-stem-and-head-nodes"] = strconv.Itoa(len(sr.TrieNodes.Stem) + len(sr.TrieNodes.Head))
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sr.MetaData.NodeStats["01-max-depth"] = strconv.Itoa(metaData.maxDepth)
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sr.MetaData.NodeStats["02-total-trie-nodes"] = strconv.Itoa(len(sr.TrieNodes.Stem) + len(sr.TrieNodes.Head) + len(sr.TrieNodes.Slice))
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sr.MetaData.NodeStats["03-leaves"] = strconv.Itoa(metaData.leafCount)
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sr.MetaData.NodeStats["04-smart-contracts"] = strconv.Itoa(len(sr.Leaves))
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sr.MetaData.TimeStats["00-trie-loading"] = strconv.FormatInt(metaData.trieLoadingTime, 10)
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sr.MetaData.TimeStats["01-fetch-stem-keys"] = strconv.FormatInt(metaData.stemNodesFetchTime, 10)
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sr.MetaData.TimeStats["02-fetch-slice-keys"] = strconv.FormatInt(metaData.sliceNodesFetchTime, 10)
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sr.MetaData.TimeStats["03-fetch-leaves-info"] = strconv.FormatInt(metaData.leavesFetchTime, 10)
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}
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type GetSliceResponseMetadata struct {
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TimeStats map[string]string `json:"timeStats"` // stem, state, storage (one by one)
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NodeStats map[string]string `json:"nodeStats"` // total, leaves, smart contracts
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}
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type GetSliceResponseTrieNodes struct {
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Stem map[string]string `json:"stem"` // key: Keccak256Hash(data) in hex, value: trie node data in hex
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Head map[string]string `json:"head"`
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Slice map[string]string `json:"sliceNodes"`
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}
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type GetSliceResponseAccount struct {
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StorageRoot string `json:"storageRoot"`
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EVMCode string `json:"evmCode"`
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}
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type metaDataFields struct {
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maxDepth int
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leafCount int
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trieLoadingTime int64
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stemNodesFetchTime int64
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sliceNodesFetchTime int64
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leavesFetchTime int64
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}
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