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use criterion::{Criterion, criterion_group, criterion_main, measurement::Measurement};
use digest::Digest;
use rand::prelude::*;
#[cfg(not(any(target_arch = "x86", target_arch = "x86_64")))]
use criterion::measurement::WallTime as Meas;
#[cfg(any(target_arch = "x86", target_arch = "x86_64"))]
use criterion_cycles_per_byte::CyclesPerByte as Meas;
use tor_cell::relaycell::msg::SendmeTag;
use tor_llcrypto::d::{Sha1, Sha3_256};
use tor_proto::bench_utils::{RelayCellBody, tor1};
/// Create a random inbound cell with the digest computed.
fn create_random_cell(rng: &mut ThreadRng) -> RelayCellBody {
let mut cell = [0u8; 509];
rng.fill(&mut cell[..]);
Box::new(cell).into()
}
/// Benchmark the `set_digest` method.
pub fn tor1_set_digest_benchmark(c: &mut Criterion<impl Measurement>) {
let mut group = c.benchmark_group("tor1_set_digest");
group.throughput(criterion::Throughput::Bytes(tor1::TOR1_THROUGHPUT));
group.bench_function("Tor1RelayCrypto", |b| {
b.iter_batched_ref(
|| {
let mut rng = rand::rng();
let cell = create_random_cell(&mut rng);
(cell, Sha1::new(), SendmeTag::from([0_u8; 20]))
},
|(cell, d, used_digest)| {
cell.set_digest(d, used_digest);
},
criterion::BatchSize::SmallInput,
);
});
group.bench_function("Tor1Hsv3RelayCrypto", |b| {
b.iter_batched_ref(
|| {
let mut rng = rand::rng();
let cell = create_random_cell(&mut rng);
(cell, Sha3_256::new(), SendmeTag::from([0_u8; 20]))
},
|(cell, d, used_digest)| {
cell.set_digest(d, used_digest);
},
criterion::BatchSize::SmallInput,
);
});
group.finish();
}
criterion_group!(
name = tor1_set_digest;
config = Criterion::default()
.with_measurement(Meas)
.sample_size(5000);
targets = tor1_set_digest_benchmark);
criterion_main!(tor1_set_digest);
|