use std::collections::HashMap;
use parking_lot::RwLock;
use itertools;
use crypto::publickey::Address;
use {SafeAccount, Error};
use super::KeyDirectory;
#[derive(Default)]
pub struct MemoryDirectory {
accounts: RwLock<HashMap<Address, Vec<SafeAccount>>>,
}
impl KeyDirectory for MemoryDirectory {
fn load(&self) -> Result<Vec<SafeAccount>, Error> {
Ok(itertools::Itertools::flatten(self.accounts.read().values().cloned()).collect())
}
fn update(&self, account: SafeAccount) -> Result<SafeAccount, Error> {
let mut lock = self.accounts.write();
let accounts = lock.entry(account.address.clone()).or_insert_with(Vec::new);
accounts.retain(|acc| acc.filename != account.filename);
accounts.push(account.clone());
Ok(account)
}
fn insert(&self, account: SafeAccount) -> Result<SafeAccount, Error> {
let mut lock = self.accounts.write();
let accounts = lock.entry(account.address.clone()).or_insert_with(Vec::new);
accounts.push(account.clone());
Ok(account)
}
fn remove(&self, account: &SafeAccount) -> Result<(), Error> {
let mut accounts = self.accounts.write();
let is_empty = if let Some(accounts) = accounts.get_mut(&account.address) {
if let Some(position) = accounts.iter().position(|acc| acc == account) {
accounts.remove(position);
}
accounts.is_empty()
} else {
false
};
if is_empty {
accounts.remove(&account.address);
}
Ok(())
}
fn unique_repr(&self) -> Result<u64, Error> {
let mut val = 0u64;
let accounts = self.accounts.read();
for acc in accounts.keys() { val = val ^ acc.to_low_u64_be() }
Ok(val)
}
}