solana/core/src/sigverify_stage.rs

158 lines
5.1 KiB
Rust

//! The `sigverify_stage` implements the signature verification stage of the TPU. It
//! receives a list of lists of packets and outputs the same list, but tags each
//! top-level list with a list of booleans, telling the next stage whether the
//! signature in that packet is valid. It assumes each packet contains one
//! transaction. All processing is done on the CPU by default and on a GPU
//! if perf-libs are available
use crate::packet::Packets;
use crate::result::{Error, Result};
use crate::sigverify;
use crate::streamer::{self, PacketReceiver};
use crossbeam_channel::Sender as CrossbeamSender;
use solana_measure::measure::Measure;
use solana_metrics::{datapoint_debug, inc_new_counter_info};
use solana_perf::perf_libs;
use solana_sdk::timing;
use std::sync::mpsc::{Receiver, RecvTimeoutError};
use std::sync::{Arc, Mutex};
use std::thread::{self, Builder, JoinHandle};
const RECV_BATCH_MAX_CPU: usize = 1_000;
const RECV_BATCH_MAX_GPU: usize = 5_000;
pub struct SigVerifyStage {
thread_hdls: Vec<JoinHandle<()>>,
}
pub trait SigVerifier {
fn verify_batch(&self, batch: Vec<Packets>) -> Vec<Packets>;
}
#[derive(Default, Clone)]
pub struct DisabledSigVerifier {}
impl SigVerifier for DisabledSigVerifier {
fn verify_batch(&self, mut batch: Vec<Packets>) -> Vec<Packets> {
let r = sigverify::ed25519_verify_disabled(&batch);
sigverify::mark_disabled(&mut batch, &r);
batch
}
}
impl SigVerifyStage {
#[allow(clippy::new_ret_no_self)]
pub fn new<T: SigVerifier + 'static + Send + Clone>(
packet_receiver: Receiver<Packets>,
verified_sender: CrossbeamSender<Vec<Packets>>,
verifier: T,
) -> Self {
let thread_hdls = Self::verifier_services(packet_receiver, verified_sender, verifier);
Self { thread_hdls }
}
fn verifier<T: SigVerifier>(
recvr: &Arc<Mutex<PacketReceiver>>,
sendr: &CrossbeamSender<Vec<Packets>>,
id: usize,
verifier: &T,
) -> Result<()> {
let (batch, len, recv_time) = streamer::recv_batch(
&recvr.lock().expect("'recvr' lock in fn verifier"),
if perf_libs::api().is_some() {
RECV_BATCH_MAX_GPU
} else {
RECV_BATCH_MAX_CPU
},
)?;
inc_new_counter_info!("sigverify_stage-packets_received", len);
let mut verify_batch_time = Measure::start("sigverify_batch_time");
let batch_len = batch.len();
debug!(
"@{:?} verifier: verifying: {} id: {}",
timing::timestamp(),
len,
id
);
let verified_batch = verifier.verify_batch(batch);
inc_new_counter_info!("sigverify_stage-verified_packets_send", len);
for v in verified_batch {
if sendr.send(vec![v]).is_err() {
return Err(Error::SendError);
}
}
verify_batch_time.stop();
inc_new_counter_info!(
"sigverify_stage-time_ms",
(verify_batch_time.as_ms() + recv_time) as usize
);
debug!(
"@{:?} verifier: done. batches: {} total verify time: {:?} id: {} verified: {} v/s {}",
timing::timestamp(),
batch_len,
verify_batch_time.as_ms(),
id,
len,
(len as f32 / verify_batch_time.as_s())
);
datapoint_debug!(
"sigverify_stage-total_verify_time",
("batch_len", batch_len, i64),
("len", len, i64),
("total_time_ms", verify_batch_time.as_ms(), i64)
);
Ok(())
}
fn verifier_service<T: SigVerifier + 'static + Send + Clone>(
packet_receiver: Arc<Mutex<PacketReceiver>>,
verified_sender: CrossbeamSender<Vec<Packets>>,
id: usize,
verifier: &T,
) -> JoinHandle<()> {
let verifier = verifier.clone();
Builder::new()
.name(format!("solana-verifier-{}", id))
.spawn(move || loop {
if let Err(e) = Self::verifier(&packet_receiver, &verified_sender, id, &verifier) {
match e {
Error::RecvTimeoutError(RecvTimeoutError::Disconnected) => break,
Error::RecvTimeoutError(RecvTimeoutError::Timeout) => (),
Error::SendError => {
break;
}
_ => error!("{:?}", e),
}
}
})
.unwrap()
}
fn verifier_services<T: SigVerifier + 'static + Send + Clone>(
packet_receiver: PacketReceiver,
verified_sender: CrossbeamSender<Vec<Packets>>,
verifier: T,
) -> Vec<JoinHandle<()>> {
let receiver = Arc::new(Mutex::new(packet_receiver));
(0..4)
.map(|id| {
Self::verifier_service(receiver.clone(), verified_sender.clone(), id, &verifier)
})
.collect()
}
pub fn join(self) -> thread::Result<()> {
for thread_hdl in self.thread_hdls {
thread_hdl.join()?;
}
Ok(())
}
}