mirror of
https://github.com/psviderski/uncloud.git
synced 2026-08-26 19:13:34 +00:00
* chore: fix landing logo shadow * feat: implement service logs command with colored output and strict ordering * revert Makefile * fix after rebase * move logs command under services with root shortcut * simplify server options for streaming logs and CLI flags * refactor ContainerLogs grpc server * update --tail flag * minor docker.proto * refactor client ServiceLogs and ContainerLogs * move ProxyMachinesContext from api to client pkg * minor refactor proto Stream * add api/logs * implement LogMerger * fix LogMerger to correctly use semaphore * increate inflish entries to 100 per stream * send heartbeats * refactor ContainerLogs to synchronise Send of entries and heartbeats to the steram * minor logmerege * remove ContainerName form ServiceLogEntryMetadata * refactor ContainerLogs into docker.Service * detect stalled container logs streams * update logmerger tests * fix comment in test * refactor LogMerger with options * uc logs: format one or multiple services * make LogMerger emit heartbeats, emit entries <= watermark, rewrite tests * update uc logs with new LogMerger * go mod tidy * fix after merge --------- Co-authored-by: Evgenii Orlov <evgenii.orlov@semrush.com>
384 lines
11 KiB
Go
384 lines
11 KiB
Go
package client
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import (
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"testing"
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"time"
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"github.com/psviderski/uncloud/pkg/api"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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// testEntry creates a ServiceLogEntry for testing.
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func testEntry(stream api.LogStreamType, ts time.Time, msg string) api.ServiceLogEntry {
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return api.ServiceLogEntry{
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ContainerLogEntry: api.ContainerLogEntry{
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Stream: stream,
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Timestamp: ts,
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Message: []byte(msg),
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},
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}
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}
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// collectEntries collects up to maxCount entries from the channel or until it is closed.
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func collectEntries(t *testing.T, ch <-chan api.ServiceLogEntry, maxCount int) []api.ServiceLogEntry {
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t.Helper()
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var entries []api.ServiceLogEntry
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for i := 0; i < maxCount || maxCount <= 0; i++ {
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select {
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case e, ok := <-ch:
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if !ok {
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return entries
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}
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entries = append(entries, e)
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case <-time.After(1 * time.Second):
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require.FailNow(t, "timed out waiting for log entry")
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}
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}
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return entries
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}
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func TestLogMerger_EmptyStreams(t *testing.T) {
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t.Parallel()
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merger := NewLogMerger(nil, LogMergerOptions{})
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output := merger.Stream()
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_, ok := <-output
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assert.False(t, ok, "output channel should be closed for empty streams")
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}
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func TestLogMerger_SingleStream(t *testing.T) {
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t.Parallel()
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ch := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch}, LogMergerOptions{})
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output := merger.Stream()
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t1 := time.Now()
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t2 := t1.Add(time.Second)
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ch <- testEntry(api.LogStreamStdout, t1, "first")
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ch <- testEntry(api.LogStreamStdout, t2, "second")
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results := collectEntries(t, output, 2)
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require.Len(t, results, 2)
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assert.Equal(t, "first", string(results[0].Message))
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assert.Equal(t, "second", string(results[1].Message))
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close(ch)
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results = collectEntries(t, output, 0)
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assert.Len(t, results, 0, "no entries expected after close")
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}
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func TestLogMerger_PreservesData(t *testing.T) {
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t.Parallel()
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ch := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch}, LogMergerOptions{})
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output := merger.Stream()
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metadata := api.ServiceLogEntryMetadata{
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ServiceID: "svc-123",
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ServiceName: "my-service",
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MachineID: "machine-456",
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MachineName: "machine-1",
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}
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e := api.ServiceLogEntry{
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Metadata: metadata,
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ContainerLogEntry: api.ContainerLogEntry{
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Stream: api.LogStreamStdout,
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Timestamp: time.Now(),
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Message: []byte("test"),
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},
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}
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ch <- e
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close(ch)
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results := collectEntries(t, output, 0)
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require.Len(t, results, 1)
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assert.Equal(t, e, results[0])
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}
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func TestLogMerger_BasicMerge(t *testing.T) {
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t.Parallel()
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ch1 := make(chan api.ServiceLogEntry, 10)
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ch2 := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch1, ch2}, LogMergerOptions{})
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output := merger.Stream()
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t1 := time.Now()
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t2 := t1.Add(time.Second)
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t3 := t1.Add(2 * time.Second)
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t4 := t1.Add(3 * time.Second)
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// Send interleaved entries from both streams.
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ch1 <- testEntry(api.LogStreamStdout, t1, "ch1-first")
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ch2 <- testEntry(api.LogStreamStdout, t2, "ch2-first")
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ch1 <- testEntry(api.LogStreamStdout, t3, "ch1-second")
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ch2 <- testEntry(api.LogStreamStdout, t4, "ch2-second")
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// Send heartbeats to advance watermark past all entries.
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t5 := t1.Add(4 * time.Second)
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ch1 <- testEntry(api.LogStreamHeartbeat, t5, "")
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ch2 <- testEntry(api.LogStreamHeartbeat, t5, "")
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results := collectEntries(t, output, 4)
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require.Len(t, results, 4)
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assert.Equal(t, "ch1-first", string(results[0].Message))
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assert.Equal(t, "ch2-first", string(results[1].Message))
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assert.Equal(t, "ch1-second", string(results[2].Message))
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assert.Equal(t, "ch2-second", string(results[3].Message))
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close(ch1)
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close(ch2)
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results = collectEntries(t, output, 0)
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assert.Len(t, results, 1, "one debounced heartbeat expected after close")
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assert.Equal(t, api.LogStreamHeartbeat, results[0].Stream)
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assert.Equal(t, t5, results[0].Timestamp)
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}
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func TestLogMerger_HeartbeatAdvancesWatermark(t *testing.T) {
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t.Parallel()
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ch1 := make(chan api.ServiceLogEntry, 10)
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ch2 := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch1, ch2}, LogMergerOptions{})
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output := merger.Stream()
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t1 := time.Now()
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t2 := t1.Add(time.Second)
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t3 := t1.Add(2 * time.Second)
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// Stream 1 sends a log entry.
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ch1 <- testEntry(api.LogStreamStdout, t1, "ch1-first")
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ch1 <- testEntry(api.LogStreamStdout, t3, "ch1-second")
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// Stream 2 is quiet but sends a heartbeat.
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ch2 <- testEntry(api.LogStreamHeartbeat, t2, "")
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// Now stream 1's entry should be emitted because watermark is t1 (min of t1, t2).
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results := collectEntries(t, output, 1)
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require.Len(t, results, 1)
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assert.Equal(t, "ch1-first", string(results[0].Message))
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close(ch1)
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close(ch2)
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results = collectEntries(t, output, 0)
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require.NotEmpty(t, results)
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// Depending on timing, we may get a heartbeat before the second log entry.
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require.LessOrEqual(t, len(results), 2, "one or two entries expected after close")
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if len(results) == 2 {
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assert.Equal(t, api.LogStreamHeartbeat, results[0].Stream)
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assert.Equal(t, t2, results[0].Timestamp)
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results = results[1:]
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}
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assert.Equal(t, "ch1-second", string(results[0].Message))
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}
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func TestLogMerger_ErrorForwarding(t *testing.T) {
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t.Parallel()
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ch1 := make(chan api.ServiceLogEntry, 10)
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ch2 := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch1, ch2}, LogMergerOptions{})
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output := merger.Stream()
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t1 := time.Now()
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ch1 <- testEntry(api.LogStreamStdout, t1, "ch1-first")
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// Send an error entry.
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ch1 <- api.ServiceLogEntry{
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ContainerLogEntry: api.ContainerLogEntry{
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Err: assert.AnError,
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},
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}
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results := collectEntries(t, output, 1)
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require.Len(t, results, 1, "expected error to emitted out of order")
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assert.Equal(t, assert.AnError, results[0].Err)
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close(ch1)
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close(ch2)
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results = collectEntries(t, output, 0)
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assert.Len(t, results, 1)
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assert.Equal(t, "ch1-first", string(results[0].Message))
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}
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func TestLogMerger_OutOfOrderSingleStream(t *testing.T) {
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t.Parallel()
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ch := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch}, LogMergerOptions{})
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output := merger.Stream()
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t1 := time.Now()
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t2 := t1.Add(time.Second)
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t3 := t1.Add(2 * time.Second)
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t4 := t1.Add(3 * time.Second)
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// Send entries out of order within the stream.
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ch <- testEntry(api.LogStreamStdout, t3, "third")
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ch <- testEntry(api.LogStreamStdout, t2, "second")
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ch <- testEntry(api.LogStreamStdout, t4, "forth")
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ch <- testEntry(api.LogStreamStdout, t1, "first")
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results := collectEntries(t, output, 4)
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require.Len(t, results, 4)
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// Emitted in the same order as sent since no buffering/reordering is done within a single stream.
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assert.Equal(t, "third", string(results[0].Message))
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assert.Equal(t, "second", string(results[1].Message))
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assert.Equal(t, "forth", string(results[2].Message))
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assert.Equal(t, "first", string(results[3].Message))
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close(ch)
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results = collectEntries(t, output, 0)
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assert.Len(t, results, 0, "no entries expected after close")
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}
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// Test that entries from streams with different rates are merged correctly in chronological order.
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func TestLogMerger_UnevenStreams(t *testing.T) {
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t.Parallel()
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numFastEntries := logMergerMaxInFlightPerStream
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// Use buffered channels to allow sends without blocking on receiver.
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ch1 := make(chan api.ServiceLogEntry, numFastEntries+5)
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ch2 := make(chan api.ServiceLogEntry, 10)
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch1, ch2}, LogMergerOptions{})
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output := merger.Stream()
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baseTime := time.Now()
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// Stream 1 sends many entries quickly (0ms - 104ms).
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for i := 0; i < numFastEntries; i++ {
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ch1 <- testEntry(api.LogStreamStdout, baseTime.Add(time.Duration(i)*time.Millisecond), "fast")
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}
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// Stream 2 sends entries that interleave with fast entries.
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ch2 <- testEntry(api.LogStreamStdout, baseTime.Add(5*time.Millisecond), "slow")
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ch2 <- testEntry(api.LogStreamStdout, baseTime.Add(50*time.Millisecond), "slow")
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// Send heartbeats to advance watermark past all entries so they get emitted.
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finalTime := baseTime.Add(time.Second)
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ch1 <- testEntry(api.LogStreamHeartbeat, finalTime, "")
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ch2 <- testEntry(api.LogStreamHeartbeat, finalTime.Add(10*time.Millisecond), "")
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// Read exactly numFastEntries + 2 log entries.
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expectedCount := numFastEntries + 2
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results := collectEntries(t, output, expectedCount)
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require.Len(t, results, expectedCount)
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// Count entries from each stream.
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fastCount := 0
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slowCount := 0
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for _, entry := range results {
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switch string(entry.Message) {
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case "fast":
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fastCount++
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case "slow":
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slowCount++
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}
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}
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assert.Equal(t, numFastEntries, fastCount)
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assert.Equal(t, 2, slowCount)
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// Verify entries are in chronological order.
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for i := 1; i < len(results); i++ {
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assert.False(t, results[i].Timestamp.Before(results[i-1].Timestamp),
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"entry %d (ts=%v) should not be before entry %d (ts=%v)",
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i, results[i].Timestamp, i-1, results[i-1].Timestamp)
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}
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close(ch1)
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close(ch2)
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results = collectEntries(t, output, 0)
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require.Len(t, results, 1, "one debounced heartbeat expected after close")
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assert.Equal(t, api.LogStreamHeartbeat, results[0].Stream)
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}
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func TestLogMerger_StalledStreamExcludedFromWatermark(t *testing.T) {
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t.Parallel()
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ch1 := make(chan api.ServiceLogEntry, 10)
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ch2 := make(chan api.ServiceLogEntry, 10)
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stallTimeout := 100 * time.Millisecond
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merger := NewLogMerger([]<-chan api.ServiceLogEntry{ch1, ch2}, LogMergerOptions{
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StallTimeout: stallTimeout,
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StallCheckInterval: 20 * time.Millisecond,
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})
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output := merger.Stream()
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//// Collect all output entries in a separate goroutine.
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//var results []api.ServiceLogEntry
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//doneCollecting := make(chan struct{})
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//go func() {
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// for entry := range output {
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// results = append(results, entry)
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// }
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// close(doneCollecting)
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//}()
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t1 := time.Now()
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t2 := t1.Add(time.Second)
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t3 := t1.Add(2 * time.Second)
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t4 := t1.Add(3 * time.Second)
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e1 := testEntry(api.LogStreamStdout, t1, "ch1-entry")
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e1.Metadata = api.ServiceLogEntryMetadata{
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ServiceID: "ch1-svc1",
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ServiceName: "ch1-svcName",
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ContainerID: "ch1-ctr1",
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MachineID: "ch1-machine1",
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MachineName: "ch1-machineName",
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}
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ch1 <- e1
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ch2 <- testEntry(api.LogStreamStdout, t2, "ch2-first")
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// Watermark is t1 now so ch1's entry could be collected.
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results := collectEntries(t, output, 1)
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require.Len(t, results, 1)
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assert.Equal(t, "ch1-entry", string(results[0].Message))
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// Keep pushing to stream 2 so that it does not stall. But it can't emit anything because watermark is stuck at t1.
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time.Sleep(stallTimeout / 2)
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ch2 <- testEntry(api.LogStreamStdout, t3, "ch2-second")
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// 1/2 + 2/3 = 7/6 > 1, so stream 1 should be considered stalled now.
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time.Sleep(stallTimeout / 3 * 2)
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ch2 <- testEntry(api.LogStreamStdout, t4, "ch2-third")
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results = collectEntries(t, output, 1)
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require.ErrorIs(t, results[0].Err, api.ErrLogStreamStalled)
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assert.Equal(t, e1.Metadata, results[0].Metadata, "stalled entry should have stream metadata")
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// Now that stream 1 is marked as stalled and ignored, all in-flight entries from stream 2 are emitted.
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results = collectEntries(t, output, 3)
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require.Len(t, results, 3)
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assert.Equal(t, "ch2-first", string(results[0].Message))
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assert.Equal(t, "ch2-second", string(results[1].Message))
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assert.Equal(t, "ch2-third", string(results[2].Message))
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close(ch1)
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close(ch2)
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results = collectEntries(t, output, 0)
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assert.Len(t, results, 0)
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}
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