More methods in Account, documentation and tests.
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@ -1,5 +1,6 @@
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use std::collections::HashMap;
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use util::hash::*;
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use util::sha3::*;
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use util::hashdb::*;
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use util::bytes::*;
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use util::trie::*;
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@ -32,7 +33,7 @@ impl Account {
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nonce: nonce,
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storage_root: SHA3_NULL_RLP,
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storage_overlay: storage,
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code_hash: None,
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code_hash: Some(code.sha3()),
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code_cache: code
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}
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}
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@ -49,6 +50,19 @@ impl Account {
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}
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}
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/// Create a new account from RLP.
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pub fn from_rlp(rlp: &[u8]) -> Account {
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let r: Rlp = Rlp::new(rlp);
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Account {
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nonce: r.val_at(0),
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balance: r.val_at(1),
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storage_root: r.val_at(2),
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storage_overlay: HashMap::new(),
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code_hash: Some(r.val_at(3)),
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code_cache: vec![],
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}
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}
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/// Create a new contract account.
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/// NOTE: make sure you use `set_code` on this before `commit`ing.
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pub fn new_contract(balance: U256) -> Account {
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@ -62,19 +76,6 @@ impl Account {
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}
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}
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/// Create a new account from RLP.
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pub fn from_rlp(_rlp: &[u8]) -> Account {
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// unimplemented!();
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Account {
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balance: U256::from(0u8),
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nonce: U256::from(0u8),
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storage_root: SHA3_NULL_RLP,
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storage_overlay: HashMap::new(),
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code_hash: Some(SHA3_EMPTY),
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code_cache: vec![],
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}
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}
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/// Set this account's code to the given code.
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/// NOTE: Account should have been created with `new_contract`.
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pub fn set_code(&mut self, code: Bytes) {
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@ -82,6 +83,10 @@ impl Account {
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self.code_cache = code;
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}
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pub fn set_storage(&mut self, key: H256, value: H256) {
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self.storage_overlay.insert(key, value);
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}
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/// return the balance associated with this account.
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pub fn balance(&self) -> &U256 { &self.balance }
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/// return the nonce associated with this account.
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@ -90,8 +95,44 @@ impl Account {
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pub fn code_hash(&self) -> H256 {
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self.code_hash.clone().unwrap_or(SHA3_EMPTY)
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}
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/// returns the account's code. If `None` then the code cache isn't available -
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/// get someone who knows to call `note_code`.
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pub fn code(&self) -> Option<&[u8]> {
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match self.code_hash {
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Some(SHA3_EMPTY) | None if self.code_cache.is_empty() => Some(&self.code_cache),
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Some(_) if !self.code_cache.is_empty() => Some(&self.code_cache),
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_ => None,
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}
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}
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/// Provide a byte array which hashes to the `code_hash`. returns the hash as a result.
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pub fn note_code(&mut self, code: Bytes) -> Result<H256, H256> {
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let h = code.sha3();
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match self.code_hash {
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Some(ref i) if h == *i => {
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self.code_cache = code;
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Ok(h)
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},
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_ => Err(h)
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}
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}
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/// return the storage root associated with this account.
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pub fn base_root(&self) -> &H256 { &self.storage_root }
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/// return the storage root associated with this account or None if it has been altered via the overlay.
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pub fn storage_root(&self) -> Option<&H256> { if self.storage_overlay.is_empty() {Some(&self.storage_root)} else {None} }
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/// rturn the storage overlay.
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pub fn storage_overlay(&self) -> &HashMap<H256, H256> { &self.storage_overlay }
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/// Increment the nonce of the account by one.
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pub fn inc_nonce(&mut self) { self.nonce = self.nonce + U256::from(1u8); }
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/// Increment the nonce of the account by one.
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pub fn add_balance(&mut self, x: &U256) { self.balance = self.balance + *x; }
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/// Increment the nonce of the account by one.
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pub fn sub_balance(&mut self, x: &U256) { self.balance = self.balance - *x; }
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/// Commit the `storage_overlay` to the backing DB and update `storage_root`.
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pub fn commit_storage(&mut self, db: &mut HashDB) {
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@ -104,7 +145,7 @@ impl Account {
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self.storage_overlay.clear();
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}
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/// Commit any unsaved code and ensure code is not `HashOrData::Data`.
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/// Commit any unsaved code. `code_hash` will always return the hash of the `code_cache` after this.
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pub fn commit_code(&mut self, db: &mut HashDB) {
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if self.code_hash.is_none() && !self.code_cache.is_empty() {
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self.code_hash = Some(db.insert(&self.code_cache));
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@ -121,3 +162,23 @@ impl Account {
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stream.out()
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}
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}
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#[test]
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fn playpen() {
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}
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#[test]
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fn new_account() {
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let a = Account::new(U256::from(69u8), U256::from(0u8), HashMap::new(), Bytes::new());
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assert_eq!(a.rlp().to_hex(), "f8448045a056e81f171bcc55a6ff8345e692c0f86e5b48e01b996cadc001622fb5e363b421a0c5d2460186f7233c927e7db2dcc703c0e500b653ca82273b7bfad8045d85a470");
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assert_eq!(a.balance(), &U256::from(69u8));
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assert_eq!(a.nonce(), &U256::from(0u8));
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assert_eq!(a.code_hash(), SHA3_EMPTY);
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assert_eq!(a.storage_root().unwrap(), &SHA3_NULL_RLP);
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}
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#[test]
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fn create_account() {
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let a = Account::new(U256::from(69u8), U256::from(0u8), HashMap::new(), Bytes::new());
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assert_eq!(a.rlp().to_hex(), "f8448045a056e81f171bcc55a6ff8345e692c0f86e5b48e01b996cadc001622fb5e363b421a0c5d2460186f7233c927e7db2dcc703c0e500b653ca82273b7bfad8045d85a470");
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}
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