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// Copyright 2021 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 gethclient provides an RPC client for geth-specific APIs.
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package gethclient
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import (
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"context"
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"encoding/json"
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"fmt"
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"math/big"
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"runtime"
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"runtime/debug"
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"github.com/ethereum/go-ethereum"
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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/core/types"
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"github.com/ethereum/go-ethereum/p2p"
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"github.com/ethereum/go-ethereum/rpc"
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)
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// Client is a wrapper around rpc.Client that implements geth-specific functionality.
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//
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// If you want to use the standardized Ethereum RPC functionality, use ethclient.Client instead.
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type Client struct {
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c *rpc.Client
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}
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// New creates a client that uses the given RPC client.
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func New(c *rpc.Client) *Client {
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return &Client{c}
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}
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// CreateAccessList tries to create an access list for a specific transaction based on the
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// current pending state of the blockchain.
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func (ec *Client) CreateAccessList(ctx context.Context, msg ethereum.CallMsg) (*types.AccessList, uint64, string, error) {
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type accessListResult struct {
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Accesslist *types.AccessList `json:"accessList"`
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Error string `json:"error,omitempty"`
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GasUsed hexutil.Uint64 `json:"gasUsed"`
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}
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var result accessListResult
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if err := ec.c.CallContext(ctx, &result, "eth_createAccessList", toCallArg(msg)); err != nil {
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return nil, 0, "", err
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}
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return result.Accesslist, uint64(result.GasUsed), result.Error, nil
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}
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// AccountResult is the result of a GetProof operation.
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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 *big.Int `json:"balance"`
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CodeHash common.Hash `json:"codeHash"`
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Nonce 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 provides a proof for a key-value pair.
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type StorageResult struct {
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Key string `json:"key"`
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Value *big.Int `json:"value"`
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Proof []string `json:"proof"`
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}
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// GetProof returns the account and storage values of the specified account including the Merkle-proof.
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// The block number can be nil, in which case the value is taken from the latest known block.
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func (ec *Client) GetProof(ctx context.Context, account common.Address, keys []string, blockNumber *big.Int) (*AccountResult, error) {
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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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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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// Avoid keys being 'null'.
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if keys == nil {
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keys = []string{}
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}
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var res accountResult
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err := ec.c.CallContext(ctx, &res, "eth_getProof", account, keys, toBlockNumArg(blockNumber))
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// Turn hexutils back to normal datatypes
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storageResults := make([]StorageResult, 0, len(res.StorageProof))
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for _, st := range res.StorageProof {
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storageResults = append(storageResults, StorageResult{
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Key: st.Key,
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Value: st.Value.ToInt(),
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Proof: st.Proof,
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})
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}
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result := AccountResult{
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Address: res.Address,
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AccountProof: res.AccountProof,
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Balance: res.Balance.ToInt(),
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Nonce: uint64(res.Nonce),
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CodeHash: res.CodeHash,
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StorageHash: res.StorageHash,
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StorageProof: storageResults,
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}
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return &result, err
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}
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// CallContract executes a message call transaction, which is directly executed in the VM
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// of the node, but never mined into the blockchain.
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//
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// blockNumber selects the block height at which the call runs. It can be nil, in which
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// case the code is taken from the latest known block. Note that state from very old
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// blocks might not be available.
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//
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// overrides specifies a map of contract states that should be overwritten before executing
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// the message call.
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// Please use ethclient.CallContract instead if you don't need the override functionality.
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func (ec *Client) CallContract(ctx context.Context, msg ethereum.CallMsg, blockNumber *big.Int, overrides *map[common.Address]OverrideAccount) ([]byte, error) {
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var hex hexutil.Bytes
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err := ec.c.CallContext(
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ctx, &hex, "eth_call", toCallArg(msg),
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toBlockNumArg(blockNumber), overrides,
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)
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return hex, err
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}
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// CallContractWithBlockOverrides executes a message call transaction, which is directly executed
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// in the VM of the node, but never mined into the blockchain.
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//
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// blockNumber selects the block height at which the call runs. It can be nil, in which
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// case the code is taken from the latest known block. Note that state from very old
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// blocks might not be available.
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//
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// overrides specifies a map of contract states that should be overwritten before executing
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// the message call.
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//
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// blockOverrides specifies block fields exposed to the EVM that can be overridden for the call.
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//
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// Please use ethclient.CallContract instead if you don't need the override functionality.
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func (ec *Client) CallContractWithBlockOverrides(ctx context.Context, msg ethereum.CallMsg, blockNumber *big.Int, overrides *map[common.Address]OverrideAccount, blockOverrides BlockOverrides) ([]byte, error) {
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var hex hexutil.Bytes
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err := ec.c.CallContext(
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ctx, &hex, "eth_call", toCallArg(msg),
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toBlockNumArg(blockNumber), overrides, blockOverrides,
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)
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return hex, err
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}
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// GCStats retrieves the current garbage collection stats from a geth node.
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func (ec *Client) GCStats(ctx context.Context) (*debug.GCStats, error) {
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var result debug.GCStats
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err := ec.c.CallContext(ctx, &result, "debug_gcStats")
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return &result, err
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}
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// MemStats retrieves the current memory stats from a geth node.
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func (ec *Client) MemStats(ctx context.Context) (*runtime.MemStats, error) {
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var result runtime.MemStats
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err := ec.c.CallContext(ctx, &result, "debug_memStats")
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return &result, err
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}
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// SetHead sets the current head of the local chain by block number.
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// Note, this is a destructive action and may severely damage your chain.
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// Use with extreme caution.
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func (ec *Client) SetHead(ctx context.Context, number *big.Int) error {
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return ec.c.CallContext(ctx, nil, "debug_setHead", toBlockNumArg(number))
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}
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// GetNodeInfo retrieves the node info of a geth node.
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func (ec *Client) GetNodeInfo(ctx context.Context) (*p2p.NodeInfo, error) {
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var result p2p.NodeInfo
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err := ec.c.CallContext(ctx, &result, "admin_nodeInfo")
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return &result, err
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}
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// SubscribeFullPendingTransactions subscribes to new pending transactions.
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func (ec *Client) SubscribeFullPendingTransactions(ctx context.Context, ch chan<- *types.Transaction) (*rpc.ClientSubscription, error) {
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return ec.c.EthSubscribe(ctx, ch, "newPendingTransactions", true)
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}
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// SubscribePendingTransactions subscribes to new pending transaction hashes.
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func (ec *Client) SubscribePendingTransactions(ctx context.Context, ch chan<- common.Hash) (*rpc.ClientSubscription, error) {
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return ec.c.EthSubscribe(ctx, ch, "newPendingTransactions")
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}
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func toBlockNumArg(number *big.Int) string {
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if number == nil {
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return "latest"
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}
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if number.Sign() >= 0 {
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return hexutil.EncodeBig(number)
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}
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// It's negative.
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if number.IsInt64() {
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return rpc.BlockNumber(number.Int64()).String()
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}
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// It's negative and large, which is invalid.
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return fmt.Sprintf("<invalid %d>", number)
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}
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func toCallArg(msg ethereum.CallMsg) interface{} {
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arg := map[string]interface{}{
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"from": msg.From,
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"to": msg.To,
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}
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if len(msg.Data) > 0 {
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arg["input"] = hexutil.Bytes(msg.Data)
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}
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if msg.Value != nil {
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arg["value"] = (*hexutil.Big)(msg.Value)
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}
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if msg.Gas != 0 {
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arg["gas"] = hexutil.Uint64(msg.Gas)
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}
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if msg.GasPrice != nil {
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arg["gasPrice"] = (*hexutil.Big)(msg.GasPrice)
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}
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if msg.GasFeeCap != nil {
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arg["maxFeePerGas"] = (*hexutil.Big)(msg.GasFeeCap)
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}
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if msg.GasTipCap != nil {
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arg["maxPriorityFeePerGas"] = (*hexutil.Big)(msg.GasTipCap)
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}
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if msg.AccessList != nil {
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arg["accessList"] = msg.AccessList
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}
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return arg
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}
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// OverrideAccount specifies the state of an account to be overridden.
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type OverrideAccount struct {
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// Nonce sets nonce of the account. Note: the nonce override will only
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// be applied when it is set to a non-zero value.
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Nonce uint64
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// Code sets the contract code. The override will be applied
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// when the code is non-nil, i.e. setting empty code is possible
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// using an empty slice.
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Code []byte
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// Balance sets the account balance.
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Balance *big.Int
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// State sets the complete storage. The override will be applied
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// when the given map is non-nil. Using an empty map wipes the
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// entire contract storage during the call.
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State map[common.Hash]common.Hash
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// StateDiff allows overriding individual storage slots.
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StateDiff map[common.Hash]common.Hash
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}
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func (a OverrideAccount) MarshalJSON() ([]byte, error) {
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type acc struct {
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Nonce hexutil.Uint64 `json:"nonce,omitempty"`
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Code string `json:"code,omitempty"`
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Balance *hexutil.Big `json:"balance,omitempty"`
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State interface{} `json:"state,omitempty"`
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StateDiff map[common.Hash]common.Hash `json:"stateDiff,omitempty"`
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}
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output := acc{
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Nonce: hexutil.Uint64(a.Nonce),
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Balance: (*hexutil.Big)(a.Balance),
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StateDiff: a.StateDiff,
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}
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if a.Code != nil {
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output.Code = hexutil.Encode(a.Code)
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}
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if a.State != nil {
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output.State = a.State
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}
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return json.Marshal(output)
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}
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// BlockOverrides specifies the set of header fields to override.
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type BlockOverrides struct {
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// Number overrides the block number.
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Number *big.Int
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// Difficulty overrides the block difficulty.
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Difficulty *big.Int
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// Time overrides the block timestamp. Time is applied only when
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// it is non-zero.
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Time uint64
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// GasLimit overrides the block gas limit. GasLimit is applied only when
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// it is non-zero.
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GasLimit uint64
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// Coinbase overrides the block coinbase. Coinbase is applied only when
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// it is different from the zero address.
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Coinbase common.Address
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// Random overrides the block extra data which feeds into the RANDOM opcode.
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// Random is applied only when it is a non-zero hash.
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Random common.Hash
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// BaseFee overrides the block base fee.
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BaseFee *big.Int
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}
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func (o BlockOverrides) MarshalJSON() ([]byte, error) {
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type override struct {
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Number *hexutil.Big `json:"number,omitempty"`
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Difficulty *hexutil.Big `json:"difficulty,omitempty"`
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Time hexutil.Uint64 `json:"time,omitempty"`
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GasLimit hexutil.Uint64 `json:"gasLimit,omitempty"`
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Coinbase *common.Address `json:"coinbase,omitempty"`
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Random *common.Hash `json:"random,omitempty"`
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BaseFee *hexutil.Big `json:"baseFee,omitempty"`
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}
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output := override{
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Number: (*hexutil.Big)(o.Number),
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Difficulty: (*hexutil.Big)(o.Difficulty),
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Time: hexutil.Uint64(o.Time),
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GasLimit: hexutil.Uint64(o.GasLimit),
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BaseFee: (*hexutil.Big)(o.BaseFee),
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}
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if o.Coinbase != (common.Address{}) {
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output.Coinbase = &o.Coinbase
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}
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if o.Random != (common.Hash{}) {
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output.Random = &o.Random
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}
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return json.Marshal(output)
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}
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