use bitcoin::blockdata::block::{Block, BlockHeader};
use bitcoin::blockdata::transaction::Transaction;
use bitcoin::blockdata::script::Script;
use bitcoin::blockdata::constants::genesis_block;
use bitcoin::util::hash::Sha256dHash;
use bitcoin::network::constants::Network;
use bitcoin::network::serialize::BitcoinHash;
use util::logger::Logger;
use std::sync::{Mutex,Weak,MutexGuard,Arc};
use std::sync::atomic::{AtomicUsize, Ordering};
use std::collections::HashSet;
pub enum ChainError {
NotSupported,
NotWatched,
UnknownTx,
}
pub trait ChainWatchInterface: Sync + Send {
fn install_watch_tx(&self, txid: &Sha256dHash, script_pub_key: &Script);
fn install_watch_outpoint(&self, outpoint: (Sha256dHash, u32), out_script: &Script);
fn watch_all_txn(&self);
fn register_listener(&self, listener: Weak<ChainListener>);
fn get_chain_utxo(&self, genesis_hash: Sha256dHash, unspent_tx_output_identifier: u64) -> Result<(Script, u64), ChainError>;
}
pub trait BroadcasterInterface: Sync + Send {
fn broadcast_transaction(&self, tx: &Transaction);
}
pub trait ChainListener: Sync + Send {
fn block_connected(&self, header: &BlockHeader, height: u32, txn_matched: &[&Transaction], indexes_of_txn_matched: &[u32]);
fn block_disconnected(&self, header: &BlockHeader);
}
pub enum ConfirmationTarget {
Background,
Normal,
HighPriority,
}
pub trait FeeEstimator: Sync + Send {
fn get_est_sat_per_1000_weight(&self, confirmation_target: ConfirmationTarget) -> u64;
}
pub struct ChainWatchedUtil {
watch_all: bool,
#[cfg(test)]
watched_txn: HashSet<(Sha256dHash, Script)>,
#[cfg(not(test))]
watched_txn: HashSet<Script>,
watched_outpoints: HashSet<(Sha256dHash, u32)>,
}
impl ChainWatchedUtil {
pub fn new() -> Self {
Self {
watch_all: false,
watched_txn: HashSet::new(),
watched_outpoints: HashSet::new(),
}
}
pub fn register_tx(&mut self, txid: &Sha256dHash, script_pub_key: &Script) -> bool {
if self.watch_all { return false; }
#[cfg(test)]
{
self.watched_txn.insert((txid.clone(), script_pub_key.clone()))
}
#[cfg(not(test))]
{
let _tx_unused = txid; self.watched_txn.insert(script_pub_key.clone())
}
}
pub fn register_outpoint(&mut self, outpoint: (Sha256dHash, u32), _script_pub_key: &Script) -> bool {
if self.watch_all { return false; }
self.watched_outpoints.insert(outpoint)
}
pub fn watch_all(&mut self) -> bool {
if self.watch_all { return false; }
self.watch_all = true;
true
}
pub fn does_match_tx(&self, tx: &Transaction) -> bool {
if self.watch_all {
return true;
}
for out in tx.output.iter() {
#[cfg(test)]
for &(ref txid, ref script) in self.watched_txn.iter() {
if *script == out.script_pubkey {
if tx.txid() == *txid {
return true;
}
}
}
#[cfg(not(test))]
for script in self.watched_txn.iter() {
if *script == out.script_pubkey {
return true;
}
}
}
for input in tx.input.iter() {
for outpoint in self.watched_outpoints.iter() {
let &(outpoint_hash, outpoint_index) = outpoint;
if outpoint_hash == input.previous_output.txid && outpoint_index == input.previous_output.vout {
return true;
}
}
}
false
}
}
pub struct ChainWatchInterfaceUtil {
network: Network,
watched: Mutex<ChainWatchedUtil>,
listeners: Mutex<Vec<Weak<ChainListener>>>,
reentered: AtomicUsize,
logger: Arc<Logger>,
}
impl ChainWatchInterface for ChainWatchInterfaceUtil {
fn install_watch_tx(&self, txid: &Sha256dHash, script_pub_key: &Script) {
let mut watched = self.watched.lock().unwrap();
if watched.register_tx(txid, script_pub_key) {
self.reentered.fetch_add(1, Ordering::Relaxed);
}
}
fn install_watch_outpoint(&self, outpoint: (Sha256dHash, u32), out_script: &Script) {
let mut watched = self.watched.lock().unwrap();
if watched.register_outpoint(outpoint, out_script) {
self.reentered.fetch_add(1, Ordering::Relaxed);
}
}
fn watch_all_txn(&self) {
let mut watched = self.watched.lock().unwrap();
if watched.watch_all() {
self.reentered.fetch_add(1, Ordering::Relaxed);
}
}
fn register_listener(&self, listener: Weak<ChainListener>) {
let mut vec = self.listeners.lock().unwrap();
vec.push(listener);
}
fn get_chain_utxo(&self, genesis_hash: Sha256dHash, _unspent_tx_output_identifier: u64) -> Result<(Script, u64), ChainError> {
if genesis_hash != genesis_block(self.network).header.bitcoin_hash() {
return Err(ChainError::NotWatched);
}
Err(ChainError::NotSupported)
}
}
impl ChainWatchInterfaceUtil {
pub fn new(network: Network, logger: Arc<Logger>) -> ChainWatchInterfaceUtil {
ChainWatchInterfaceUtil {
network: network,
watched: Mutex::new(ChainWatchedUtil::new()),
listeners: Mutex::new(Vec::new()),
reentered: AtomicUsize::new(1),
logger: logger,
}
}
pub fn block_connected_with_filtering(&self, block: &Block, height: u32) {
let mut reentered = true;
while reentered {
let mut matched = Vec::new();
let mut matched_index = Vec::new();
{
let watched = self.watched.lock().unwrap();
for (index, transaction) in block.txdata.iter().enumerate() {
if self.does_match_tx_unguarded(transaction, &watched) {
matched.push(transaction);
matched_index.push(index as u32);
}
}
}
reentered = self.block_connected_checked(&block.header, height, matched.as_slice(), matched_index.as_slice());
}
}
pub fn block_disconnected(&self, header: &BlockHeader) {
let listeners = self.listeners.lock().unwrap().clone();
for listener in listeners.iter() {
match listener.upgrade() {
Some(arc) => arc.block_disconnected(header),
None => ()
}
}
}
pub fn block_connected_checked(&self, header: &BlockHeader, height: u32, txn_matched: &[&Transaction], indexes_of_txn_matched: &[u32]) -> bool {
let last_seen = self.reentered.load(Ordering::Relaxed);
let listeners = self.listeners.lock().unwrap().clone();
for listener in listeners.iter() {
match listener.upgrade() {
Some(arc) => arc.block_connected(header, height, txn_matched, indexes_of_txn_matched),
None => ()
}
}
return last_seen != self.reentered.load(Ordering::Relaxed);
}
pub fn does_match_tx(&self, tx: &Transaction) -> bool {
let watched = self.watched.lock().unwrap();
self.does_match_tx_unguarded (tx, &watched)
}
fn does_match_tx_unguarded(&self, tx: &Transaction, watched: &MutexGuard<ChainWatchedUtil>) -> bool {
watched.does_match_tx(tx)
}
}