Add process_packets() benchmark
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@ -18,7 +18,7 @@ use std::result;
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use std::sync::RwLock;
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use transaction::Transaction;
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const MAX_ENTRY_IDS: usize = 1024 * 4;
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pub const MAX_ENTRY_IDS: usize = 1024 * 4;
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#[derive(Debug, PartialEq, Eq)]
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pub enum AccountingError {
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@ -453,7 +453,7 @@ mod bench {
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}
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assert!(
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acc.process_verified_transactions(&transactions)
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acc.process_verified_transactions(transactions.clone())
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.iter()
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.all(|x| x.is_ok())
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);
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@ -304,3 +304,79 @@ mod tests {
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assert_matches!(memfind(&packet, &tx), Some(ecdsa::TX_OFFSET));
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}
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}
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#[cfg(all(feature = "unstable", test))]
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mod bench {
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extern crate test;
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use self::test::Bencher;
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use accountant_skel::*;
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use accountant::{Accountant, MAX_ENTRY_IDS};
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use signature::{KeyPair, KeyPairUtil};
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use mint::Mint;
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use transaction::Transaction;
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use std::collections::HashSet;
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use std::io::sink;
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use std::time::Instant;
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use bincode::serialize;
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use hash::hash;
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#[bench]
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fn process_packets_bench(_bencher: &mut Bencher) {
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let mint = Mint::new(100_000_000);
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let acc = Accountant::new(&mint);
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let rsp_addr: SocketAddr = "0.0.0.0:0".parse().expect("socket address");
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// Create transactions between unrelated parties.
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let txs = 100_000;
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let last_ids: Mutex<HashSet<Hash>> = Mutex::new(HashSet::new());
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let transactions: Vec<_> = (0..txs)
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.into_par_iter()
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.map(|i| {
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// Seed the 'to' account and a cell for its signature.
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let dummy_id = i % (MAX_ENTRY_IDS as i32);
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let last_id = hash(&serialize(&dummy_id).unwrap()); // Semi-unique hash
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{
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let mut last_ids = last_ids.lock().unwrap();
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if !last_ids.contains(&last_id) {
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last_ids.insert(last_id);
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acc.register_entry_id(&last_id);
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}
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}
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// Seed the 'from' account.
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let rando0 = KeyPair::new();
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let tr = Transaction::new(&mint.keypair(), rando0.pubkey(), 1_000, last_id);
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acc.process_verified_transaction(&tr).unwrap();
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let rando1 = KeyPair::new();
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let tr = Transaction::new(&rando0, rando1.pubkey(), 2, last_id);
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acc.process_verified_transaction(&tr).unwrap();
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// Finally, return a transaction that's unique
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Transaction::new(&rando0, rando1.pubkey(), 1, last_id)
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})
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.collect();
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let req_vers = transactions
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.into_iter()
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.map(|tr| (Request::Transaction(tr), rsp_addr, 1_u8))
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.collect();
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let historian = Historian::new(&mint.last_id(), None);
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let mut skel = AccountantSkel::new(acc, mint.last_id(), sink(), historian);
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let now = Instant::now();
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assert!(skel.process_packets(req_vers).is_ok());
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let duration = now.elapsed();
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let sec = duration.as_secs() as f64 + duration.subsec_nanos() as f64 / 1_000_000_000.0;
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let tps = txs as f64 / sec;
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// Ensure that all transactions were successfully logged.
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skel.historian.sender.send(Signal::Tick).unwrap();
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drop(skel.historian.sender);
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let entries: Vec<Entry> = skel.historian.receiver.iter().collect();
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assert_eq!(entries.len(), 1);
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assert_eq!(entries[0].events.len(), txs as usize);
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println!("{} tps", tps);
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}
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}
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