196 lines
5.5 KiB
Go
196 lines
5.5 KiB
Go
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/*
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Copyright 2015 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package flowcontrol
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import (
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"testing"
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"time"
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"k8s.io/kubernetes/pkg/util/clock"
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)
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func TestSlowBackoff(t *testing.T) {
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id := "_idSlow"
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tc := clock.NewFakeClock(time.Now())
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step := time.Second
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maxDuration := 50 * step
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b := NewFakeBackOff(step, maxDuration, tc)
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cases := []time.Duration{0, 1, 2, 4, 8, 16, 32, 50, 50, 50}
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for ix, c := range cases {
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tc.Step(step)
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w := b.Get(id)
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if w != c*step {
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t.Errorf("input: '%d': expected %s, got %s", ix, c*step, w)
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}
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b.Next(id, tc.Now())
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}
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//Now confirm that the Reset cancels backoff.
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b.Next(id, tc.Now())
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b.Reset(id)
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if b.Get(id) != 0 {
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t.Errorf("Reset didn't clear the backoff.")
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}
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}
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func TestBackoffReset(t *testing.T) {
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id := "_idReset"
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tc := clock.NewFakeClock(time.Now())
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step := time.Second
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maxDuration := step * 5
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b := NewFakeBackOff(step, maxDuration, tc)
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startTime := tc.Now()
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// get to backoff = maxDuration
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for i := 0; i <= int(maxDuration/step); i++ {
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tc.Step(step)
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b.Next(id, tc.Now())
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}
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// backoff should be capped at maxDuration
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if !b.IsInBackOffSince(id, tc.Now()) {
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t.Errorf("expected to be in Backoff got %s", b.Get(id))
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}
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lastUpdate := tc.Now()
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tc.Step(2*maxDuration + step) // time += 11s, 11 > 2*maxDuration
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if b.IsInBackOffSince(id, lastUpdate) {
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t.Errorf("expected to not be in Backoff after reset (start=%s, now=%s, lastUpdate=%s), got %s", startTime, tc.Now(), lastUpdate, b.Get(id))
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}
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}
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func TestBackoffHightWaterMark(t *testing.T) {
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id := "_idHiWaterMark"
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tc := clock.NewFakeClock(time.Now())
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step := time.Second
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maxDuration := 5 * step
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b := NewFakeBackOff(step, maxDuration, tc)
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// get to backoff = maxDuration
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for i := 0; i <= int(maxDuration/step); i++ {
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tc.Step(step)
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b.Next(id, tc.Now())
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}
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// backoff high watermark expires after 2*maxDuration
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tc.Step(maxDuration + step)
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b.Next(id, tc.Now())
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if b.Get(id) != maxDuration {
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t.Errorf("expected Backoff to stay at high watermark %s got %s", maxDuration, b.Get(id))
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}
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}
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func TestBackoffGC(t *testing.T) {
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id := "_idGC"
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tc := clock.NewFakeClock(time.Now())
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step := time.Second
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maxDuration := 5 * step
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b := NewFakeBackOff(step, maxDuration, tc)
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for i := 0; i <= int(maxDuration/step); i++ {
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tc.Step(step)
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b.Next(id, tc.Now())
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}
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lastUpdate := tc.Now()
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tc.Step(maxDuration + step)
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b.GC()
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_, found := b.perItemBackoff[id]
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if !found {
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t.Errorf("expected GC to skip entry, elapsed time=%s maxDuration=%s", tc.Now().Sub(lastUpdate), maxDuration)
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}
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tc.Step(maxDuration + step)
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b.GC()
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r, found := b.perItemBackoff[id]
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if found {
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t.Errorf("expected GC of entry after %s got entry %v", tc.Now().Sub(lastUpdate), r)
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}
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}
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func TestIsInBackOffSinceUpdate(t *testing.T) {
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id := "_idIsInBackOffSinceUpdate"
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tc := clock.NewFakeClock(time.Now())
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step := time.Second
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maxDuration := 10 * step
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b := NewFakeBackOff(step, maxDuration, tc)
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startTime := tc.Now()
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cases := []struct {
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tick time.Duration
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inBackOff bool
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value int
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}{
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{tick: 0, inBackOff: false, value: 0},
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{tick: 1, inBackOff: false, value: 1},
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{tick: 2, inBackOff: true, value: 2},
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{tick: 3, inBackOff: false, value: 2},
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{tick: 4, inBackOff: true, value: 4},
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{tick: 5, inBackOff: true, value: 4},
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{tick: 6, inBackOff: true, value: 4},
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{tick: 7, inBackOff: false, value: 4},
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{tick: 8, inBackOff: true, value: 8},
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{tick: 9, inBackOff: true, value: 8},
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{tick: 10, inBackOff: true, value: 8},
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{tick: 11, inBackOff: true, value: 8},
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{tick: 12, inBackOff: true, value: 8},
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{tick: 13, inBackOff: true, value: 8},
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{tick: 14, inBackOff: true, value: 8},
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{tick: 15, inBackOff: false, value: 8},
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{tick: 16, inBackOff: true, value: 10},
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{tick: 17, inBackOff: true, value: 10},
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{tick: 18, inBackOff: true, value: 10},
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{tick: 19, inBackOff: true, value: 10},
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{tick: 20, inBackOff: true, value: 10},
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{tick: 21, inBackOff: true, value: 10},
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{tick: 22, inBackOff: true, value: 10},
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{tick: 23, inBackOff: true, value: 10},
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{tick: 24, inBackOff: true, value: 10},
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{tick: 25, inBackOff: false, value: 10},
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{tick: 26, inBackOff: true, value: 10},
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{tick: 27, inBackOff: true, value: 10},
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{tick: 28, inBackOff: true, value: 10},
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{tick: 29, inBackOff: true, value: 10},
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{tick: 30, inBackOff: true, value: 10},
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{tick: 31, inBackOff: true, value: 10},
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{tick: 32, inBackOff: true, value: 10},
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{tick: 33, inBackOff: true, value: 10},
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{tick: 34, inBackOff: true, value: 10},
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{tick: 35, inBackOff: false, value: 10},
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{tick: 56, inBackOff: false, value: 0},
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{tick: 57, inBackOff: false, value: 1},
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}
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for _, c := range cases {
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tc.SetTime(startTime.Add(c.tick * step))
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if c.inBackOff != b.IsInBackOffSinceUpdate(id, tc.Now()) {
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t.Errorf("expected IsInBackOffSinceUpdate %v got %v at tick %s", c.inBackOff, b.IsInBackOffSinceUpdate(id, tc.Now()), c.tick*step)
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}
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if c.inBackOff && (time.Duration(c.value)*step != b.Get(id)) {
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t.Errorf("expected backoff value=%s got %s at tick %s", time.Duration(c.value)*step, b.Get(id), c.tick*step)
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}
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if !c.inBackOff {
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b.Next(id, tc.Now())
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}
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}
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}
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