5807402a0b
* Switch to 'trie' crates, there is an unpublished deps to staging parity-common triehash still. * Use crates.io dependency. * indentation * Update util/journaldb/src/traits.rs indentation Co-Authored-By: cheme <emericchevalier.pro@gmail.com> * Rem import braces * switch deps to simple-codec branch (code broken) * painfull update of trie and memdb, plus rework codec to be compatible with simple_codec changes * Removed useless implementation from trait. * Remove some malloc size until update and patch triehash, seems ok otherwhise. * Update parity-util-mem. * Switch to published triehash 0.8. * Avoid redundancy in encode_partial functions. Use better namings. * Update util/patricia-trie-ethereum/src/rlp_node_codec.rs Co-Authored-By: Andronik Ordian <write@reusable.software> * Update util/patricia-trie-ethereum/src/rlp_node_codec.rs Co-Authored-By: Andronik Ordian <write@reusable.software> * Restore previous child rlp header length check. Better comments and formatting. * Update util/patricia-trie-ethereum/src/rlp_node_codec.rs Co-Authored-By: David <dvdplm@gmail.com> * Update util/patricia-trie-ethereum/src/rlp_node_codec.rs Co-Authored-By: David <dvdplm@gmail.com>
263 lines
9.0 KiB
Rust
263 lines
9.0 KiB
Rust
// Copyright 2015-2019 Parity Technologies (UK) Ltd.
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// This file is part of Parity Ethereum.
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// Parity Ethereum is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Ethereum is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Ethereum. If not, see <http://www.gnu.org/licenses/>.
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//! Account system expressed in Plain Old Data.
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use log::warn;
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use std::collections::BTreeMap;
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use itertools::Itertools;
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use keccak_hash::keccak;
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use ethereum_types::{H256, U256, BigEndianHash};
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use hash_db::HashDB;
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use kvdb::DBValue;
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use keccak_hasher::KeccakHasher;
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use triehash::sec_trie_root;
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use parity_bytes::Bytes;
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use trie_db::TrieFactory;
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use ethtrie::Layout;
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use ethjson;
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use common_types::account_diff::*;
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use rlp::{self, RlpStream};
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use serde::{Serializer, Serialize};
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use rustc_hex::ToHex;
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#[derive(Debug, Clone, PartialEq, Eq, Serialize)]
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/// An account, expressed as Plain-Old-Data (hence the name).
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/// Does not have a DB overlay cache, code hash or anything like that.
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pub struct PodAccount {
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/// The balance of the account.
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pub balance: U256,
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/// The nonce of the account.
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pub nonce: U256,
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#[serde(serialize_with="opt_bytes_to_hex")]
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/// The code of the account or `None` in the special case that it is unknown.
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pub code: Option<Bytes>,
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/// The storage of the account.
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pub storage: BTreeMap<H256, H256>,
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/// The version of the account.
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#[serde(default)]
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pub version: U256,
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}
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fn opt_bytes_to_hex<S>(opt_bytes: &Option<Bytes>, serializer: S) -> Result<S::Ok, S::Error>
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where S: Serializer
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{
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let readable = opt_bytes.as_ref().map(|b| b.to_hex()).unwrap_or_default();
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serializer.collect_str(&format_args!("0x{}", readable))
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}
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impl PodAccount {
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/// Returns the RLP for this account.
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pub fn rlp(&self) -> Bytes {
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let mut stream = RlpStream::new_list(4);
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stream.append(&self.nonce);
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stream.append(&self.balance);
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stream.append(&sec_trie_root(self.storage.iter().map(|(k, v)| (k, rlp::encode(&v.into_uint())))));
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stream.append(&keccak(&self.code.as_ref().unwrap_or(&vec![])));
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stream.out()
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}
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/// Place additional data into given hash DB.
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pub fn insert_additional(&self, db: &mut dyn HashDB<KeccakHasher, DBValue>, factory: &TrieFactory<Layout>) {
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match self.code {
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Some(ref c) if !c.is_empty() => { db.insert(hash_db::EMPTY_PREFIX, c); }
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_ => {}
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}
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let mut r = H256::zero();
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let mut t = factory.create(db, &mut r);
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for (k, v) in &self.storage {
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if let Err(e) = t.insert(k.as_bytes(), &rlp::encode(&v.into_uint())) {
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warn!("Encountered potential DB corruption: {}", e);
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}
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}
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}
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}
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impl From<ethjson::blockchain::Account> for PodAccount {
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fn from(a: ethjson::blockchain::Account) -> Self {
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PodAccount {
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balance: a.balance.into(),
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nonce: a.nonce.into(),
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code: Some(a.code.into()),
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storage: a.storage.into_iter().map(|(key, value)| {
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let key: U256 = key.into();
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let value: U256 = value.into();
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(BigEndianHash::from_uint(&key), BigEndianHash::from_uint(&value))
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}).collect(),
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version: a.version.into(),
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}
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}
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}
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impl From<ethjson::spec::Account> for PodAccount {
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fn from(a: ethjson::spec::Account) -> Self {
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PodAccount {
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balance: a.balance.map_or_else(U256::zero, Into::into),
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nonce: a.nonce.map_or_else(U256::zero, Into::into),
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code: Some(a.code.map_or_else(Vec::new, Into::into)),
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storage: a.storage.map_or_else(BTreeMap::new, |s| s.into_iter().map(|(key, value)| {
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let key: U256 = key.into();
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let value: U256 = value.into();
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(BigEndianHash::from_uint(&key), BigEndianHash::from_uint(&value))
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}).collect()),
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version: a.version.map_or_else(U256::zero, Into::into),
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}
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}
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}
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/// Determine difference between two optionally existant `Account`s. Returns None
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/// if they are the same.
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pub fn diff_pod(pre: Option<&PodAccount>, post: Option<&PodAccount>) -> Option<AccountDiff> {
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match (pre, post) {
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(None, Some(x)) => Some(AccountDiff {
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balance: Diff::Born(x.balance),
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nonce: Diff::Born(x.nonce),
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code: Diff::Born(x.code.as_ref().expect("account is newly created; newly created accounts must be given code; all caches should remain in place; qed").clone()),
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storage: x.storage.iter().map(|(k, v)| (k.clone(), Diff::Born(v.clone()))).collect(),
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}),
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(Some(x), None) => Some(AccountDiff {
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balance: Diff::Died(x.balance),
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nonce: Diff::Died(x.nonce),
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code: Diff::Died(x.code.as_ref().expect("account is deleted; only way to delete account is running SUICIDE; account must have had own code cached to make operation; all caches should remain in place; qed").clone()),
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storage: x.storage.iter().map(|(k, v)| (k.clone(), Diff::Died(v.clone()))).collect(),
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}),
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(Some(pre), Some(post)) => {
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let storage: Vec<_> = pre.storage.keys().merge(post.storage.keys())
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.filter(|k| pre.storage.get(k).unwrap_or(&H256::zero()) != post.storage.get(k).unwrap_or(&H256::zero()))
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.collect();
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let r = AccountDiff {
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balance: Diff::new(pre.balance, post.balance),
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nonce: Diff::new(pre.nonce, post.nonce),
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code: match (pre.code.clone(), post.code.clone()) {
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(Some(pre_code), Some(post_code)) => Diff::new(pre_code, post_code),
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_ => Diff::Same,
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},
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storage: storage.into_iter().map(|k|
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(k.clone(), Diff::new(
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pre.storage.get(k).cloned().unwrap_or_else(H256::zero),
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post.storage.get(k).cloned().unwrap_or_else(H256::zero)
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))).collect(),
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};
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if r.balance.is_same() && r.nonce.is_same() && r.code.is_same() && r.storage.is_empty() {
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None
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} else {
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Some(r)
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}
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},
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_ => None,
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}
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}
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#[cfg(test)]
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mod test {
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use std::collections::BTreeMap;
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use common_types::account_diff::*;
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use super::{PodAccount, diff_pod};
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use ethereum_types::H256;
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use macros::map;
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#[test]
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fn existence() {
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let a = PodAccount {
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balance: 69.into(), nonce: 0.into(), code: Some(vec![]), storage: map![], version: 0.into(),
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};
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assert_eq!(diff_pod(Some(&a), Some(&a)), None);
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assert_eq!(diff_pod(None, Some(&a)), Some(AccountDiff{
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balance: Diff::Born(69.into()),
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nonce: Diff::Born(0.into()),
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code: Diff::Born(vec![]),
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storage: map![],
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}));
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}
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#[test]
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fn basic() {
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let a = PodAccount {
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balance: 69.into(), nonce: 0.into(), code: Some(vec![]), storage: map![], version: 0.into(),
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};
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let b = PodAccount {
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balance: 42.into(), nonce: 1.into(), code: Some(vec![]), storage: map![], version: 0.into(),
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};
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assert_eq!(diff_pod(Some(&a), Some(&b)), Some(AccountDiff {
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balance: Diff::Changed(69.into(), 42.into()),
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nonce: Diff::Changed(0.into(), 1.into()),
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code: Diff::Same,
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storage: map![],
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}));
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}
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#[test]
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fn code() {
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let a = PodAccount {
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balance: 0.into(), nonce: 0.into(), code: Some(vec![]), storage: map![], version: 0.into(),
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};
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let b = PodAccount {
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balance: 0.into(), nonce: 1.into(), code: Some(vec![0]), storage: map![], version: 0.into(),
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};
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assert_eq!(diff_pod(Some(&a), Some(&b)), Some(AccountDiff {
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balance: Diff::Same,
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nonce: Diff::Changed(0.into(), 1.into()),
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code: Diff::Changed(vec![], vec![0]),
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storage: map![],
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}));
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}
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#[test]
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fn storage() {
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let a = PodAccount {
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balance: 0.into(),
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nonce: 0.into(),
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code: Some(vec![]),
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storage: map![
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H256::from_low_u64_be(1) => H256::from_low_u64_be(1),
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H256::from_low_u64_be(2) => H256::from_low_u64_be(2),
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H256::from_low_u64_be(3) => H256::from_low_u64_be(3),
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H256::from_low_u64_be(4) => H256::from_low_u64_be(4),
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H256::from_low_u64_be(5) => H256::from_low_u64_be(0),
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H256::from_low_u64_be(6) => H256::from_low_u64_be(0),
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H256::from_low_u64_be(7) => H256::from_low_u64_be(0)
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],
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version: 0.into(),
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};
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let b = PodAccount {
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balance: 0.into(),
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nonce: 0.into(),
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code: Some(vec![]),
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storage: map![
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H256::from_low_u64_be(1) => H256::from_low_u64_be(1),
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H256::from_low_u64_be(2) => H256::from_low_u64_be(3),
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H256::from_low_u64_be(3) => H256::from_low_u64_be(0),
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H256::from_low_u64_be(5) => H256::from_low_u64_be(0),
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H256::from_low_u64_be(7) => H256::from_low_u64_be(7),
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H256::from_low_u64_be(8) => H256::from_low_u64_be(0),
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H256::from_low_u64_be(9) => H256::from_low_u64_be(9)
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],
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version: 0.into(),
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};
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assert_eq!(diff_pod(Some(&a), Some(&b)), Some(AccountDiff {
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balance: Diff::Same,
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nonce: Diff::Same,
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code: Diff::Same,
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storage: map![
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H256::from_low_u64_be(2) => Diff::new(H256::from_low_u64_be(2), H256::from_low_u64_be(3)),
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H256::from_low_u64_be(3) => Diff::new(H256::from_low_u64_be(3), H256::from_low_u64_be(0)),
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H256::from_low_u64_be(4) => Diff::new(H256::from_low_u64_be(4), H256::from_low_u64_be(0)),
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H256::from_low_u64_be(7) => Diff::new(H256::from_low_u64_be(0), H256::from_low_u64_be(7)),
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H256::from_low_u64_be(9) => Diff::new(H256::from_low_u64_be(0), H256::from_low_u64_be(9))
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],
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}));
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}
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}
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