mirror of
https://source.quilibrium.com/quilibrium/ceremonyclient.git
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199 lines
5.4 KiB
Go
199 lines
5.4 KiB
Go
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// Copyright 2019 The LevelDB-Go and Pebble Authors. All rights reserved. Use
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// of this source code is governed by a BSD-style license that can be found in
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// the LICENSE file.
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package pebble
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import (
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"fmt"
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"math"
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"math/rand"
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"slices"
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"testing"
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"time"
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"github.com/stretchr/testify/require"
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)
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func TestDeletionPacer(t *testing.T) {
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const MB = 1 << 20
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const GB = 1 << 30
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testCases := []struct {
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freeBytes uint64
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obsoleteBytes uint64
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liveBytes uint64
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// history of deletion reporting; first value in the pair is the time,
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// second value is the deleted bytes. The time of pacing is the same as the
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// last time in the history.
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history [][2]int64
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// expected pacing rate in MB/s.
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expected float64
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}{
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{
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freeBytes: 160 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 160 * MB,
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expected: 100.0,
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},
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// As freeBytes is 2GB below the free space threshold, rate should be
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// increased by 204.8MB/s.
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{
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freeBytes: 14 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 100 * MB,
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expected: 304.8,
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},
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// As freeBytes is 10GB below the free space threshold, rate should be
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// increased to by 1GB/s.
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{
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freeBytes: 6 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 100 * MB,
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expected: 1124.0,
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},
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// obsoleteBytesRatio is 50%. We need to delete 30GB within 5 minutes.
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{
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freeBytes: 500 * GB,
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obsoleteBytes: 50 * GB,
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liveBytes: 100 * GB,
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expected: 202.4,
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},
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// When obsolete ratio unknown, there should be no throttling.
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{
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freeBytes: 500 * GB,
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obsoleteBytes: 0,
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liveBytes: 0,
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expected: math.Inf(1),
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},
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// History shows 200MB/sec deletions on average over last 5 minutes.
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{
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freeBytes: 160 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 160 * MB,
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history: [][2]int64{{0, 5 * 60 * 200 * MB}},
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expected: 200.0,
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},
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// History shows 200MB/sec deletions on average over last 5 minutes and
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// freeBytes is 10GB below the threshold.
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{
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freeBytes: 6 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 160 * MB,
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history: [][2]int64{{0, 5 * 60 * 200 * MB}},
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expected: 1224.0,
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},
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// History shows 200MB/sec deletions on average over last 5 minutes and
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// obsoleteBytesRatio is 50%.
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{
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freeBytes: 500 * GB,
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obsoleteBytes: 50 * GB,
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liveBytes: 100 * GB,
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history: [][2]int64{{0, 5 * 60 * 200 * MB}},
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expected: 302.4,
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},
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// History shows 1000MB/sec deletions on average over last 5 minutes.
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{
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freeBytes: 160 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 160 * MB,
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history: [][2]int64{{0, 60 * 1000 * MB}, {3 * 60, 60 * 4 * 1000 * MB}, {4 * 60, 0}},
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expected: 1000.0,
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},
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// First entry in history is too old, it should be discarded.
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{
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freeBytes: 160 * GB,
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obsoleteBytes: 1 * MB,
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liveBytes: 160 * MB,
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history: [][2]int64{{0, 10 * 60 * 10000 * MB}, {3 * 60, 4 * 60 * 200 * MB}, {7 * 60, 1 * 60 * 200 * MB}},
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expected: 200.0,
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},
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}
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for tcIdx, tc := range testCases {
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t.Run(fmt.Sprintf("%d", tcIdx), func(t *testing.T) {
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getInfo := func() deletionPacerInfo {
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return deletionPacerInfo{
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freeBytes: tc.freeBytes,
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liveBytes: tc.liveBytes,
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obsoleteBytes: tc.obsoleteBytes,
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}
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}
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start := time.Now()
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last := start
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pacer := newDeletionPacer(start, 100*MB, getInfo)
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for _, h := range tc.history {
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last = start.Add(time.Second * time.Duration(h[0]))
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pacer.ReportDeletion(last, uint64(h[1]))
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}
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result := 1.0 / pacer.PacingDelay(last, 1*MB)
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require.InDelta(t, tc.expected, result, 1e-7)
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})
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}
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}
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// TestDeletionPacerHistory tests the history helper by crosschecking Sum()
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// against a naive implementation.
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func TestDeletionPacerHistory(t *testing.T) {
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type event struct {
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time time.Time
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// If report is 0, this event is a Sum(). Otherwise it is an Add().
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report int64
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}
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numEvents := 1 + rand.Intn(200)
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timeframe := time.Duration(1+rand.Intn(60*100)) * time.Second
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events := make([]event, numEvents)
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startTime := time.Now()
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for i := range events {
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events[i].time = startTime.Add(time.Duration(rand.Int63n(int64(timeframe))))
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if rand.Intn(3) == 0 {
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events[i].report = 0
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} else {
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events[i].report = int64(rand.Intn(100000))
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}
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}
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slices.SortFunc(events, func(a, b event) int { return a.time.Compare(b.time) })
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var h history
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h.Init(startTime, timeframe)
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// partialSums[i] := SUM_j<i events[j].report
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partialSums := make([]int64, len(events)+1)
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for i := range events {
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partialSums[i+1] = partialSums[i] + events[i].report
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}
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for i, e := range events {
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if e.report != 0 {
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h.Add(e.time, e.report)
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continue
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}
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result := h.Sum(e.time)
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// getIdx returns the largest event index <= i that is before the cutoff
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// time.
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getIdx := func(cutoff time.Time) int {
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for j := i; j >= 0; j-- {
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if events[j].time.Before(cutoff) {
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return j
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}
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}
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return -1
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}
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// Sum all report values in the last timeframe, and see if recent events
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// (allowing 1% error in the cutoff time) match the result.
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a := getIdx(e.time.Add(-timeframe * (historyEpochs + 1) / historyEpochs))
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b := getIdx(e.time.Add(-timeframe * (historyEpochs - 1) / historyEpochs))
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found := false
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for j := a; j <= b; j++ {
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if partialSums[i+1]-partialSums[j+1] == result {
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found = true
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break
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}
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}
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if !found {
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t.Fatalf("incorrect Sum() result %d; %v", result, events[a+1:i+1])
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}
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}
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}
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