Add InTimeRange() to StatsBuffer.
This will allow us to accept queries over a narrower window of time.
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@ -15,6 +15,9 @@
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package memory
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import (
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"sort"
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"time"
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"github.com/google/cadvisor/info"
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)
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@ -43,7 +46,69 @@ func (self *StatsBuffer) Add(item *info.ContainerStats) {
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self.buffer[self.index] = *item
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}
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// Returns up to maxResult elements in the specified time period (inclusive).
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// Results are from first to last. maxResults of -1 means no limit.
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func (self *StatsBuffer) InTimeRange(start, end time.Time, maxResults int) []*info.ContainerStats {
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// No stats, return empty.
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if self.size == 0 {
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return []*info.ContainerStats{}
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}
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// NOTE: Since we store the elments in descending timestamp order "start" will
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// be a higher index than "end".
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var startIndex int
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if start.IsZero() {
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// None specified, start at the beginning.
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startIndex = self.size - 1
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} else {
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// Start is the index before the elements smaller than it. We do this by
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// finding the first element smaller than start and taking the index
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// before that element
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startIndex = sort.Search(self.size, func(index int) bool {
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// buffer[index] < start
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return self.Get(index).Timestamp.Before(start)
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}) - 1
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// Check if start is after all the data we have.
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if startIndex < 0 {
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return []*info.ContainerStats{}
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}
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}
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var endIndex int
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if end.IsZero() {
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// None specified, end with the latest stats.
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endIndex = 0
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} else {
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// End is the first index smaller than or equal to it (so, not larger).
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endIndex = sort.Search(self.size, func(index int) bool {
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// buffer[index] <= t -> !(buffer[index] > t)
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return !self.Get(index).Timestamp.After(end)
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})
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// Check if end is before all the data we have.
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if endIndex == self.size {
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return []*info.ContainerStats{}
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}
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}
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// Trim to maxResults size.
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numResults := startIndex - endIndex + 1
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if maxResults != -1 && numResults > maxResults {
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startIndex -= numResults - maxResults
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numResults = maxResults
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}
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// Return in sorted timestamp order so from the "back" to "front".
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result := make([]*info.ContainerStats, numResults)
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for i := 0; i < numResults; i++ {
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result[i] = self.Get(startIndex - i)
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}
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return result
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}
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// TODO(vmarmol): Remove this function as it will no longer be neededt.
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// Returns the first N elements in the buffer. If N > size of buffer, size of buffer elements are returned.
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// Returns the elements in ascending timestamp order.
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func (self *StatsBuffer) FirstN(n int) []*info.ContainerStats {
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// Cap n at the number of elements we have.
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if n > self.size {
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@ -65,6 +130,15 @@ func (self *StatsBuffer) FirstN(n int) []*info.ContainerStats {
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return res
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}
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// Gets the element at the specified index. Note that elements are stored in LIFO order.
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func (self *StatsBuffer) Get(index int) *info.ContainerStats {
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calculatedIndex := self.index - index
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if calculatedIndex < 0 {
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calculatedIndex += len(self.buffer)
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}
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return &self.buffer[calculatedIndex]
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}
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func (self *StatsBuffer) Size() int {
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return self.size
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}
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@ -15,13 +15,23 @@
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package memory
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import (
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"strconv"
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"strings"
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"testing"
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"time"
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"github.com/google/cadvisor/info"
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"github.com/stretchr/testify/assert"
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)
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func createTime(id int) time.Time {
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var zero time.Time
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return zero.Add(time.Duration(id+1) * time.Second)
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}
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func createStats(id int32) *info.ContainerStats {
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return &info.ContainerStats{
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Timestamp: createTime(int(id)),
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Cpu: info.CpuStats{
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LoadAverage: id,
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},
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@ -34,26 +44,40 @@ func expectSize(t *testing.T, sb *StatsBuffer, expectedSize int) {
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}
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}
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func expectElements(t *testing.T, sb *StatsBuffer, expected []int32) {
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res := sb.FirstN(sb.Size())
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if len(res) != len(expected) {
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t.Errorf("Expected elements %v, got %v", expected, res)
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func expectFirstN(t *testing.T, sb *StatsBuffer, expected []int32) {
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expectElements(t, sb.FirstN(sb.Size()), expected)
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}
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func expectElements(t *testing.T, actual []*info.ContainerStats, expected []int32) {
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if len(actual) != len(expected) {
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t.Errorf("Expected elements %v, got %v", expected, actual)
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return
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}
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for i, el := range res {
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for i, el := range actual {
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if el.Cpu.LoadAverage != expected[i] {
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t.Errorf("Expected elements %v, got %v", expected, res)
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actualElements := make([]string, len(actual))
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for i, element := range actual {
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actualElements[i] = strconv.Itoa(int(element.Cpu.LoadAverage))
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}
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t.Errorf("Expected elements %v, got %v", expected, strings.Join(actualElements, ","))
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return
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}
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}
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}
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func expectElement(t *testing.T, stat *info.ContainerStats, expected int32) {
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if stat.Cpu.LoadAverage != expected {
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t.Errorf("Expected %d, but received %d", expected, stat.Cpu.LoadAverage)
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}
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}
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func TestAddAndFirstN(t *testing.T) {
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sb := NewStatsBuffer(5)
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// Add 1.
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sb.Add(createStats(1))
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expectSize(t, sb, 1)
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expectElements(t, sb, []int32{1})
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expectFirstN(t, sb, []int32{1})
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// Fill the buffer.
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for i := 1; i <= 5; i++ {
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@ -61,17 +85,122 @@ func TestAddAndFirstN(t *testing.T) {
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sb.Add(createStats(int32(i)))
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}
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expectSize(t, sb, 5)
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expectElements(t, sb, []int32{1, 2, 3, 4, 5})
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expectFirstN(t, sb, []int32{1, 2, 3, 4, 5})
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// Add more than is available in the buffer
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sb.Add(createStats(6))
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expectSize(t, sb, 5)
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expectElements(t, sb, []int32{2, 3, 4, 5, 6})
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expectFirstN(t, sb, []int32{2, 3, 4, 5, 6})
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// Replace all elements.
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for i := 7; i <= 10; i++ {
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sb.Add(createStats(int32(i)))
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}
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expectSize(t, sb, 5)
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expectElements(t, sb, []int32{6, 7, 8, 9, 10})
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expectFirstN(t, sb, []int32{6, 7, 8, 9, 10})
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}
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func TestGet(t *testing.T) {
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sb := NewStatsBuffer(5)
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sb.Add(createStats(1))
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sb.Add(createStats(2))
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sb.Add(createStats(3))
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expectSize(t, sb, 3)
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expectFirstN(t, sb, []int32{1, 2, 3})
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expectElement(t, sb.Get(0), 3)
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expectElement(t, sb.Get(1), 2)
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expectElement(t, sb.Get(2), 1)
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}
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func TestInTimeRange(t *testing.T) {
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sb := NewStatsBuffer(5)
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assert := assert.New(t)
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var empty time.Time
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// No elements.
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assert.Empty(sb.InTimeRange(createTime(0), createTime(5), 10))
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assert.Empty(sb.InTimeRange(createTime(0), empty, 10))
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assert.Empty(sb.InTimeRange(empty, createTime(5), 10))
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assert.Empty(sb.InTimeRange(empty, empty, 10))
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// One element.
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sb.Add(createStats(1))
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expectSize(t, sb, 1)
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expectElements(t, sb.InTimeRange(createTime(0), createTime(5), 10), []int32{1})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(5), 10), []int32{1})
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expectElements(t, sb.InTimeRange(createTime(0), createTime(1), 10), []int32{1})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(1), 10), []int32{1})
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assert.Empty(sb.InTimeRange(createTime(2), createTime(5), 10))
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// Two element.
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sb.Add(createStats(2))
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expectSize(t, sb, 2)
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expectElements(t, sb.InTimeRange(createTime(0), createTime(5), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(5), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(createTime(0), createTime(2), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(2), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(1), 10), []int32{1})
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expectElements(t, sb.InTimeRange(createTime(2), createTime(2), 10), []int32{2})
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assert.Empty(sb.InTimeRange(createTime(3), createTime(5), 10))
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// Many elements.
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sb.Add(createStats(3))
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sb.Add(createStats(4))
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expectSize(t, sb, 4)
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expectElements(t, sb.InTimeRange(createTime(0), createTime(5), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(0), createTime(5), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(5), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(0), createTime(4), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(4), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(0), createTime(2), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(createTime(1), createTime(2), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(createTime(2), createTime(3), 10), []int32{2, 3})
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expectElements(t, sb.InTimeRange(createTime(3), createTime(4), 10), []int32{3, 4})
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expectElements(t, sb.InTimeRange(createTime(3), createTime(5), 10), []int32{3, 4})
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assert.Empty(sb.InTimeRange(createTime(5), createTime(5), 10))
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// No start time.
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expectElements(t, sb.InTimeRange(empty, createTime(5), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(empty, createTime(4), 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(empty, createTime(3), 10), []int32{1, 2, 3})
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expectElements(t, sb.InTimeRange(empty, createTime(2), 10), []int32{1, 2})
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expectElements(t, sb.InTimeRange(empty, createTime(1), 10), []int32{1})
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// No end time.
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expectElements(t, sb.InTimeRange(createTime(0), empty, 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(1), empty, 10), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(2), empty, 10), []int32{2, 3, 4})
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expectElements(t, sb.InTimeRange(createTime(3), empty, 10), []int32{3, 4})
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expectElements(t, sb.InTimeRange(createTime(4), empty, 10), []int32{4})
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// No start or end time.
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expectElements(t, sb.InTimeRange(empty, empty, 10), []int32{1, 2, 3, 4})
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// Start after data.
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assert.Empty(sb.InTimeRange(createTime(5), createTime(5), 10))
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assert.Empty(sb.InTimeRange(createTime(5), empty, 10))
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// End before data.
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assert.Empty(sb.InTimeRange(createTime(0), createTime(0), 10))
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assert.Empty(sb.InTimeRange(empty, createTime(0), 10))
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}
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func TestInTimeRangeWithLimit(t *testing.T) {
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sb := NewStatsBuffer(5)
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sb.Add(createStats(1))
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sb.Add(createStats(2))
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sb.Add(createStats(3))
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sb.Add(createStats(4))
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expectSize(t, sb, 4)
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var empty time.Time
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// Limit cuts off from latest timestamp.
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expectElements(t, sb.InTimeRange(empty, empty, 4), []int32{1, 2, 3, 4})
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expectElements(t, sb.InTimeRange(empty, empty, 3), []int32{2, 3, 4})
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expectElements(t, sb.InTimeRange(empty, empty, 2), []int32{3, 4})
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expectElements(t, sb.InTimeRange(empty, empty, 1), []int32{4})
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assert.Empty(t, sb.InTimeRange(empty, empty, 0))
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}
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