269 lines
8.2 KiB
Rust
269 lines
8.2 KiB
Rust
use std::{collections::HashMap, fmt::Display, str::FromStr, thread};
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use bytes::Bytes;
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use ethers::{
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abi::ethereum_types::BigEndianHash,
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prelude::{Address, H160, H256, U256},
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types::transaction::eip2930::AccessListItem,
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};
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use eyre::Result;
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use futures::future::join_all;
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use log::trace;
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use revm::{AccountInfo, Bytecode, Database, Env, TransactOut, TransactTo, EVM};
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use tokio::runtime::Runtime;
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use consensus::types::ExecutionPayload;
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use crate::{
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rpc::Rpc,
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types::{Account, CallOpts},
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};
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use super::ExecutionClient;
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pub struct Evm<R: Rpc> {
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evm: EVM<ProofDB<R>>,
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chain_id: u64,
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}
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impl<R: Rpc> Evm<R> {
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pub fn new(execution: ExecutionClient<R>, payload: ExecutionPayload, chain_id: u64) -> Self {
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let mut evm: EVM<ProofDB<R>> = EVM::new();
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let db = ProofDB::new(execution, payload);
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evm.database(db);
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Evm { evm, chain_id }
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}
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pub fn call(&mut self, opts: &CallOpts) -> Result<Vec<u8>> {
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let account_map = self.batch_fetch_accounts(opts)?;
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self.evm.db.as_mut().unwrap().set_accounts(account_map);
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self.evm.env = self.get_env(opts);
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let output = self.evm.transact().1;
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if let Some(err) = &self.evm.db.as_ref().unwrap().error {
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return Err(eyre::eyre!(err.clone()));
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}
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match output {
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TransactOut::None => Err(eyre::eyre!("Invalid Call")),
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TransactOut::Create(..) => Err(eyre::eyre!("Invalid Call")),
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TransactOut::Call(bytes) => Ok(bytes.to_vec()),
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}
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}
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pub fn estimate_gas(&mut self, opts: &CallOpts) -> Result<u64> {
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let account_map = self.batch_fetch_accounts(opts)?;
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self.evm.db.as_mut().unwrap().set_accounts(account_map);
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self.evm.env = self.get_env(opts);
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let gas = self.evm.transact().2;
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if let Some(err) = &self.evm.db.as_ref().unwrap().error {
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return Err(eyre::eyre!(err.clone()));
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}
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let gas_scaled = (1.10 * gas as f64) as u64;
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Ok(gas_scaled)
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}
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fn batch_fetch_accounts(&self, opts: &CallOpts) -> Result<HashMap<Address, Account>> {
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let db = self.evm.db.as_ref().unwrap();
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let rpc = db.execution.rpc.clone();
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let payload = db.payload.clone();
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let execution = db.execution.clone();
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let block = db.payload.block_number;
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let opts_moved = CallOpts {
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from: opts.from,
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to: opts.to,
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value: opts.value,
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data: opts.data.clone(),
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gas: opts.gas,
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gas_price: opts.gas_price,
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};
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let block_moved = block.clone();
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let handle = thread::spawn(move || {
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let list_fut = rpc.create_access_list(&opts_moved, block_moved);
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let runtime = Runtime::new()?;
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let mut list = runtime.block_on(list_fut)?.0;
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let from_access_entry = AccessListItem {
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address: opts_moved.from.unwrap_or_default(),
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storage_keys: Vec::default(),
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};
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let to_access_entry = AccessListItem {
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address: opts_moved.to,
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storage_keys: Vec::default(),
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};
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let producer_account = AccessListItem {
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address: Address::from_slice(&payload.fee_recipient),
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storage_keys: Vec::default(),
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};
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list.push(from_access_entry);
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list.push(to_access_entry);
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list.push(producer_account);
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let account_futs = list.iter().map(|account| {
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let addr_fut = futures::future::ready(account.address);
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let account_fut = execution.get_account(
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&account.address,
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Some(account.storage_keys.as_slice()),
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&payload,
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);
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async move { (addr_fut.await, account_fut.await) }
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});
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let accounts = runtime.block_on(join_all(account_futs));
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Ok::<_, eyre::Error>(accounts)
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});
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let accounts = handle.join().unwrap()?;
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let mut account_map = HashMap::new();
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accounts.iter().for_each(|account| {
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let addr = account.0;
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if let Ok(account) = &account.1 {
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account_map.insert(addr, account.clone());
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}
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});
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Ok(account_map)
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}
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fn get_env(&self, opts: &CallOpts) -> Env {
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let mut env = Env::default();
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let payload = &self.evm.db.as_ref().unwrap().payload;
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env.tx.transact_to = TransactTo::Call(opts.to);
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env.tx.caller = opts.from.unwrap_or(Address::zero());
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env.tx.value = opts.value.unwrap_or(U256::from(0));
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env.tx.data = Bytes::from(opts.data.clone().unwrap_or(vec![]));
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env.tx.gas_limit = opts.gas.map(|v| v.as_u64()).unwrap_or(u64::MAX);
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env.tx.gas_price = opts.gas_price.unwrap_or(U256::zero());
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env.block.number = U256::from(payload.block_number);
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env.block.coinbase = Address::from_slice(&payload.fee_recipient);
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env.block.timestamp = U256::from(payload.timestamp);
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env.block.difficulty = U256::from_little_endian(&payload.prev_randao);
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env.cfg.chain_id = self.chain_id.into();
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env
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}
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}
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struct ProofDB<R: Rpc> {
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execution: ExecutionClient<R>,
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payload: ExecutionPayload,
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accounts: HashMap<Address, Account>,
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error: Option<String>,
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}
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impl<R: Rpc> ProofDB<R> {
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pub fn new(execution: ExecutionClient<R>, payload: ExecutionPayload) -> Self {
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ProofDB {
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execution,
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payload,
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accounts: HashMap::new(),
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error: None,
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}
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}
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pub fn safe_unwrap<T: Default, E: Display>(&mut self, res: Result<T, E>) -> T {
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match res {
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Ok(value) => value,
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Err(err) => {
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self.error = Some(err.to_string());
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T::default()
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}
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}
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}
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pub fn set_accounts(&mut self, accounts: HashMap<Address, Account>) {
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self.accounts = accounts;
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}
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fn get_account(&mut self, address: Address, slots: &[H256]) -> Account {
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let execution = self.execution.clone();
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let addr = address.clone();
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let payload = self.payload.clone();
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let slots = slots.to_owned();
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let handle = thread::spawn(move || {
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let account_fut = execution.get_account(&addr, Some(&slots), &payload);
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let runtime = Runtime::new()?;
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runtime.block_on(account_fut)
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});
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self.safe_unwrap(handle.join().unwrap())
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}
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}
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impl<R: Rpc> Database for ProofDB<R> {
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fn basic(&mut self, address: H160) -> AccountInfo {
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if is_precompile(&address) {
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return AccountInfo::default();
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}
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trace!(
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"fetch basic evm state for addess=0x{}",
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hex::encode(address.as_bytes())
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);
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let account = match self.accounts.get(&address) {
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Some(account) => account.clone(),
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None => self.get_account(address, &[]),
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};
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let bytecode = Bytecode::new_raw(Bytes::from(account.code.clone()));
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AccountInfo::new(account.balance, account.nonce, bytecode)
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}
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fn block_hash(&mut self, _number: U256) -> H256 {
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H256::default()
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}
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fn storage(&mut self, address: H160, slot: U256) -> U256 {
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trace!(
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"fetch evm state for address=0x{}, slot={}",
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hex::encode(address.as_bytes()),
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slot
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);
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let slot = H256::from_uint(&slot);
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match self.accounts.get(&address) {
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Some(account) => match account.slots.get(&slot) {
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Some(slot) => slot.clone(),
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None => self
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.get_account(address, &[slot])
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.slots
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.get(&slot)
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.unwrap()
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.clone(),
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},
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None => self
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.get_account(address, &[slot])
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.slots
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.get(&slot)
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.unwrap()
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.clone(),
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}
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}
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fn code_by_hash(&mut self, _code_hash: H256) -> Bytecode {
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panic!("should never be called");
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}
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}
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fn is_precompile(address: &Address) -> bool {
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address.le(&Address::from_str("0x0000000000000000000000000000000000000009").unwrap())
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&& address.gt(&Address::zero())
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}
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