Add protocol benchmark example

Measure representative protocol paths in nanoseconds over hundreds of samples and report standard deviation so framing, routing, and local-delivery changes can be compared with less jitter.
This commit is contained in:
Michael Mikovsky
2026-04-25 12:45:23 -06:00
parent 4a131e6b63
commit 1f70f99ba6
+264
View File
@@ -0,0 +1,264 @@
use std::hint::black_box;
use std::time::Instant;
use unshell::protocol::tree::{ChildRoute, Endpoint, Ingress, LeafSpec, LocalEvent, ProtocolEndpoint};
use unshell::protocol::{CallMessage, PacketHeader, PacketType, decode_frame, encode_packet};
const SAMPLES: usize = 500;
const ITERS: usize = 1_000;
fn main() {
println!("protocol benchmark");
println!("samples: {SAMPLES}");
println!("iterations/sample: {ITERS}");
println!();
let benches = [
bench_encode_call(),
bench_decode_call(),
bench_forward_call_receive(),
bench_local_call_receive(),
bench_hook_data_receive(),
];
println!("{:32} {:>14} {:>14} {:>14}", "benchmark", "mean ns/op", "stddev", "samples");
for bench in benches {
println!(
"{:32} {:>14.2} {:>14.2} {:>14}",
bench.name, bench.mean_ns, bench.stddev_ns, bench.samples
);
}
}
struct BenchResult {
name: &'static str,
mean_ns: f64,
stddev_ns: f64,
samples: usize,
}
fn bench_encode_call() -> BenchResult {
let header = PacketHeader {
packet_type: PacketType::Call,
src_path: path(&["root"]),
dst_path: path(&["root", "worker"]),
dst_leaf: Some(String::from("service")),
hook_id: None,
};
let message = CallMessage {
procedure_id: String::from("example.service.v1.invoke"),
data: vec![7; 64],
response_hook: None,
};
run_bench("encode_call", || {
let frame = encode_packet(black_box(&header), black_box(&message)).expect("encode should work");
black_box(frame.len());
})
}
fn bench_decode_call() -> BenchResult {
let header = PacketHeader {
packet_type: PacketType::Call,
src_path: path(&["root"]),
dst_path: path(&["root", "worker"]),
dst_leaf: Some(String::from("service")),
hook_id: None,
};
let message = CallMessage {
procedure_id: String::from("example.service.v1.invoke"),
data: vec![9; 64],
response_hook: None,
};
let frame = encode_packet(&header, &message).expect("seed frame should encode");
run_bench("decode_call", || {
let parsed = decode_frame(black_box(frame.as_slice())).expect("decode should work");
let call = parsed.deserialize_call().expect("call should deserialize");
black_box(call.data.len());
})
}
fn bench_forward_call_receive() -> BenchResult {
run_prebuilt_bench("forward_call_receive", build_forward_call_cases, |(mut root, frame)| {
let outcome = root.receive(&Ingress::Local, frame).expect("forward receive should work");
black_box(outcome.forward.is_some());
})
}
fn bench_local_call_receive() -> BenchResult {
run_prebuilt_bench("local_call_receive", build_local_call_cases, |(mut endpoint, frame)| {
let outcome = endpoint.receive(&Ingress::Parent, frame).expect("local call should work");
match black_box(outcome.event) {
Some(LocalEvent::Call { .. }) => {}
other => panic!("expected local call event, got {other:?}"),
}
})
}
fn bench_hook_data_receive() -> BenchResult {
run_prebuilt_bench("hook_data_receive", build_hook_data_cases, |(mut host, frame)| {
let outcome = host
.receive(&Ingress::Child(path(&["worker"])), frame)
.expect("hook data should work");
match black_box(outcome.event) {
Some(LocalEvent::Data { .. }) => {}
other => panic!("expected local data event, got {other:?}"),
}
})
}
fn run_bench(name: &'static str, mut op: impl FnMut()) -> BenchResult {
let mut samples = Vec::with_capacity(SAMPLES);
for _ in 0..SAMPLES {
let start = Instant::now();
for _ in 0..ITERS {
op();
}
let elapsed = start.elapsed().as_nanos() as f64 / ITERS as f64;
samples.push(elapsed);
}
summarize(name, &samples)
}
fn run_prebuilt_bench<T, F>(
name: &'static str,
mut build_cases: F,
mut op: impl FnMut(T),
) -> BenchResult
where
F: FnMut() -> Vec<T>,
{
let mut repeated = Vec::with_capacity(SAMPLES);
for _ in 0..SAMPLES {
let mut cases = build_cases();
assert_eq!(cases.len(), ITERS);
let start = Instant::now();
for case in cases.drain(..) {
op(case);
}
let elapsed = start.elapsed().as_nanos() as f64 / ITERS as f64;
repeated.push(elapsed);
}
summarize(name, &repeated)
}
fn build_forward_call_cases() -> Vec<(ProtocolEndpoint, unshell::protocol::FrameBytes)> {
(0..ITERS)
.map(|_| {
let mut root = ProtocolEndpoint::new(
Vec::new(),
None,
vec![ChildRoute::registered(path(&["edge"]))],
Vec::new(),
);
let hook_id = root.allocate_hook_id();
let frame = root
.make_call(
path(&["edge", "worker"]),
Some(String::from("service")),
String::from("example.service.v1.invoke"),
Some(hook_id),
vec![1; 32],
)
.expect("seed call should encode");
(root, frame)
})
.collect()
}
fn build_local_call_cases() -> Vec<(ProtocolEndpoint, unshell::protocol::FrameBytes)> {
(0..ITERS)
.map(|_| {
let endpoint = ProtocolEndpoint::new(
path(&["worker"]),
Some(Vec::new()),
Vec::new(),
vec![LeafSpec {
name: String::from("service"),
procedures: vec![String::from("example.service.v1.invoke")],
}],
);
let frame = encode_packet(
&PacketHeader {
packet_type: PacketType::Call,
src_path: Vec::new(),
dst_path: path(&["worker"]),
dst_leaf: Some(String::from("service")),
hook_id: None,
},
&CallMessage {
procedure_id: String::from("example.service.v1.invoke"),
data: vec![2; 32],
response_hook: Some(unshell::protocol::HookTarget {
hook_id: 42,
return_path: Vec::new(),
}),
},
)
.expect("seed local call should encode");
(endpoint, frame)
})
.collect()
}
fn build_hook_data_cases() -> Vec<(ProtocolEndpoint, unshell::protocol::FrameBytes)> {
(0..ITERS)
.map(|_| {
let mut host = ProtocolEndpoint::new(
Vec::new(),
None,
vec![ChildRoute::registered(path(&["worker"]))],
Vec::new(),
);
let hook_id = host.allocate_hook_id();
host.make_call(
path(&["worker"]),
None,
String::from("example.service.v1.invoke"),
Some(hook_id),
vec![3; 8],
)
.expect("seed active hook should encode");
let frame = encode_packet(
&PacketHeader {
packet_type: PacketType::Data,
src_path: path(&["worker"]),
dst_path: Vec::new(),
dst_leaf: None,
hook_id: Some(hook_id),
},
&unshell::protocol::DataMessage {
procedure_id: String::from("example.service.v1.invoke"),
data: vec![4; 16],
end_hook: false,
},
)
.expect("seed data should encode");
(host, frame)
})
.collect()
}
fn summarize(name: &'static str, samples: &[f64]) -> BenchResult {
let mean = samples.iter().sum::<f64>() / samples.len() as f64;
let variance = samples
.iter()
.map(|sample| {
let delta = sample - mean;
delta * delta
})
.sum::<f64>()
/ samples.len() as f64;
BenchResult {
name,
mean_ns: mean,
stddev_ns: variance.sqrt(),
samples: samples.len(),
}
}
fn path(parts: &[&str]) -> Vec<String> {
parts.iter().map(|part| String::from(*part)).collect()
}