Files
XTLS_Xray-core/proxy/wireguard/queue_bench_test.go
T

81 lines
1.4 KiB
Go

package wireguard
import (
"runtime"
"testing"
)
const benchBatch = 64
// Raw cost of queueing and draining a small burst, as one flow's reader does.
func BenchmarkQueueBurstChan(b *testing.B) {
ch := make(chan *packet, udpQueueLimit)
p := &packet{}
b.ReportAllocs()
for i := 0; i < b.N; i++ {
for j := 0; j < benchBatch; j++ {
ch <- p
}
for j := 0; j < benchBatch; j++ {
<-ch
}
}
}
func BenchmarkQueueBurstPacketQueue(b *testing.B) {
q := newPacketQueue(udpQueueLimit)
p := &packet{}
b.ReportAllocs()
for i := 0; i < b.N; i++ {
for j := 0; j < benchBatch; j++ {
q.push(p)
}
for j := 0; j < benchBatch; j++ {
q.pop()
}
}
}
// Producer and consumer on different goroutines; the producer yields when the
// queue is full instead of spinning, like a blocking channel send would.
func BenchmarkQueueStreamChan(b *testing.B) {
ch := make(chan *packet, udpQueueLimit)
p := &packet{}
done := make(chan struct{})
go func() {
for range ch {
}
close(done)
}()
b.ReportAllocs()
b.ResetTimer()
for i := 0; i < b.N; i++ {
ch <- p
}
close(ch)
<-done
}
func BenchmarkQueueStreamPacketQueue(b *testing.B) {
q := newPacketQueue(udpQueueLimit)
p := &packet{}
done := make(chan struct{})
go func() {
for {
if _, ok := q.pop(); !ok {
break
}
}
close(done)
}()
b.ReportAllocs()
b.ResetTimer()
for i := 0; i < b.N; i++ {
for !q.push(p) {
runtime.Gosched()
}
}
q.close()
<-done
}