mirror of https://github.com/dswd/vpncloud.git
204 lines
6.5 KiB
Rust
204 lines
6.5 KiB
Rust
#![allow(dead_code, unused_macros, unused_imports)]
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#[macro_use] extern crate serde;
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#[macro_use] extern crate log;
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use criterion::{criterion_group, criterion_main, Criterion, Throughput};
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use smallvec::smallvec;
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use ring::aead;
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use std::str::FromStr;
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use std::net::{SocketAddr, Ipv4Addr, SocketAddrV4, UdpSocket};
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include!(".code.rs");
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pub use error::Error;
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use util::{MockTimeSource, MsgBuffer};
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use types::{Address, Range};
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use table::ClaimTable;
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use device::Type;
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use config::Config;
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use payload::{Packet, Frame, Protocol};
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use crypto::core::{create_dummy_pair, EXTRA_LEN};
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use tests::common::{TunSimulator, TapSimulator};
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fn udp_send(c: &mut Criterion) {
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let sock = UdpSocket::bind("127.0.0.1:0").unwrap();
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let data = [0; 1400];
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let addr = SocketAddrV4::new(Ipv4Addr::new(127, 0, 0, 1), 1);
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let mut g = c.benchmark_group("udp_send");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("udp_send", |b| {
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b.iter(|| sock.send_to(&data, addr).unwrap());
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});
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g.finish();
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}
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fn decode_ipv4(c: &mut Criterion) {
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let data = [0x40, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 192, 168, 1, 1, 192, 168, 1, 2];
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let mut g = c.benchmark_group("payload");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("decode_ipv4", |b| {
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b.iter(|| Packet::parse(&data).unwrap());
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});
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g.finish();
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}
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fn decode_ipv6(c: &mut Criterion) {
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let data = [
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0x60, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 0, 1, 2, 3, 4, 5, 6, 0, 9, 8, 7, 6, 5, 4, 3, 2, 1, 6, 5,
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4, 3, 2, 1
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];
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let mut g = c.benchmark_group("payload");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("decode_ipv6", |b| {
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b.iter(|| Packet::parse(&data).unwrap());
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});
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g.finish();
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}
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fn decode_ethernet(c: &mut Criterion) {
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let data = [6, 5, 4, 3, 2, 1, 1, 2, 3, 4, 5, 6, 1, 2, 3, 4, 5, 6, 7, 8];
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let mut g = c.benchmark_group("payload");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("decode_ethernet", |b| {
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b.iter(|| Frame::parse(&data).unwrap());
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});
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g.finish();
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}
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fn decode_ethernet_with_vlan(c: &mut Criterion) {
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let data = [6, 5, 4, 3, 2, 1, 1, 2, 3, 4, 5, 6, 0x81, 0, 4, 210, 1, 2, 3, 4, 5, 6, 7, 8];
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let mut g = c.benchmark_group("payload");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("decode_ethernet_with_vlan", |b| {
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b.iter(|| Frame::parse(&data).unwrap());
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});
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g.finish();
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}
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fn lookup_warm(c: &mut Criterion) {
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let mut table = ClaimTable::<MockTimeSource>::new(60, 60);
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let addr = Address::from_str("1.2.3.4").unwrap();
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table.cache(addr, SocketAddr::from_str("1.2.3.4:3210").unwrap());
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let mut g = c.benchmark_group("table");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("lookup_warm", |b| {
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b.iter(|| table.lookup(addr));
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});
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g.finish();
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}
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fn lookup_cold(c: &mut Criterion) {
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let mut table = ClaimTable::<MockTimeSource>::new(60, 60);
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let addr = Address::from_str("1.2.3.4").unwrap();
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table.set_claims(SocketAddr::from_str("1.2.3.4:3210").unwrap(), smallvec![Range::from_str("1.2.3.4/32").unwrap()]);
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let mut g = c.benchmark_group("table");
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g.throughput(Throughput::Bytes(1400));
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g.bench_function("lookup_cold", |b| {
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b.iter(|| {
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table.clear_cache();
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table.lookup(addr)
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});
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});
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g.finish();
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}
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fn crypto_bench(c: &mut Criterion, algo: &'static aead::Algorithm) {
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let mut buffer = MsgBuffer::new(EXTRA_LEN);
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buffer.set_length(1400);
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let (mut sender, mut receiver) = create_dummy_pair(algo);
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let mut g = c.benchmark_group("crypto");
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g.throughput(Throughput::Bytes(2*1400));
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g.bench_function(format!("{:?}", algo), |b| {
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b.iter(|| {
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sender.encrypt(&mut buffer);
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receiver.decrypt(&mut buffer).unwrap();
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});
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});
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g.finish()
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}
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fn crypto_chacha20(c: &mut Criterion) {
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crypto_bench(c, &aead::CHACHA20_POLY1305)
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}
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fn crypto_aes128(c: &mut Criterion) {
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crypto_bench(c, &aead::AES_128_GCM)
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}
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fn crypto_aes256(c: &mut Criterion) {
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crypto_bench(c, &aead::AES_256_GCM)
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}
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fn full_communication_tun_router(c: &mut Criterion) {
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log::set_max_level(log::LevelFilter::Error);
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let config1 = Config {
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device_type: Type::Tun,
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auto_claim: false,
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claims: vec!["1.1.1.1/32".to_string()],
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..Config::default()
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};
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let config2 = Config {
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device_type: Type::Tun,
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auto_claim: false,
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claims: vec!["2.2.2.2/32".to_string()],
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..Config::default()
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};
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let mut sim = TunSimulator::new();
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let node1 = sim.add_node(false, &config1);
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let node2 = sim.add_node(false, &config2);
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sim.connect(node1, node2);
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sim.simulate_all_messages();
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assert!(sim.is_connected(node1, node2));
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assert!(sim.is_connected(node2, node1));
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let mut payload = vec![0x40, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2];
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payload.append(&mut vec![0; 1400]);
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let mut g = c.benchmark_group("full_communication");
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g.throughput(Throughput::Bytes(2*1400));
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g.bench_function("tun_router", |b| {
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b.iter(|| {
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sim.put_payload(node1, payload.clone());
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sim.simulate_all_messages();
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assert_eq!(Some(&payload), sim.pop_payload(node2).as_ref());
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});
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});
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g.finish()
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}
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fn full_communication_tap_switch(c: &mut Criterion) {
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log::set_max_level(log::LevelFilter::Error);
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let config = Config { device_type: Type::Tap, ..Config::default() };
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let mut sim = TapSimulator::new();
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let node1 = sim.add_node(false, &config);
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let node2 = sim.add_node(false, &config);
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sim.connect(node1, node2);
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sim.simulate_all_messages();
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assert!(sim.is_connected(node1, node2));
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assert!(sim.is_connected(node2, node1));
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let mut payload = vec![2, 2, 2, 2, 2, 2, 1, 1, 1, 1, 1, 1, 1, 2, 3, 4, 5];
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payload.append(&mut vec![0; 1400]);
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let mut g = c.benchmark_group("full_communication");
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g.throughput(Throughput::Bytes(2*1400));
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g.bench_function("tap_switch", |b| {
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b.iter(|| {
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sim.put_payload(node1, payload.clone());
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sim.simulate_all_messages();
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assert_eq!(Some(&payload), sim.pop_payload(node2).as_ref());
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});
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});
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g.finish()
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}
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criterion_group!(benches,
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udp_send,
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decode_ipv4, decode_ipv6, decode_ethernet, decode_ethernet_with_vlan,
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lookup_cold, lookup_warm,
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crypto_chacha20, crypto_aes128, crypto_aes256,
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full_communication_tun_router, full_communication_tap_switch
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);
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criterion_main!(benches); |