Take the rate epoch from the slowest stream's frontier, since reading a bucket claims every stream has delivered through it
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@@ -3,6 +3,7 @@ package main
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import (
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"flag"
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"fmt"
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"math"
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"net"
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"os"
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"os/signal"
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@@ -135,17 +136,20 @@ func (w *rateWindow) at(i int) counterSet {
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return w.buf[i%len(w.buf)]
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}
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// How long the newest epoch may sit still before the wire is taken to have gone
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// quiet. A stamp only advances when a frame arrives, so a frozen epoch means no
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// traffic rather than an unchanged rate.
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// How long the frontier may sit still before the wire is taken to have gone
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// quiet. It only advances when frames arrive on every stream, so a frozen
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// frontier means a stream has stopped delivering rather than an unchanged rate.
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const rateStale = 100 * time.Millisecond
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// The newest epoch is still filling, since frames received in it may not have
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// been drained yet, so the rate is read from the one before it.
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// A stamp is only knowable once a worker drains the frame carrying it, so each
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// stream's newest epoch is a frontier: everything the wire delivered to that
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// queue before it has been counted. Reading one bucket across the board takes
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// the one behind the lowest frontier, which every stream has delivered past.
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// The leader's frontier would claim buckets the stragglers are still filling.
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func (d *direction) readRateBucket(now time.Time) {
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var newest int64
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newest := int64(math.MaxInt64)
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for _, r := range d.rxStats {
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if e := r.newest.Load(); e > newest {
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if e := r.newest.Load(); e < newest {
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newest = e
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}
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}
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+44
-1
@@ -43,7 +43,9 @@ func TestRxBucketWraps(t *testing.T) {
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}
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}
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// The newest epoch may still be filling, so the rate comes from the one before.
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// Every stream's frontier is past the epoch being read, so the bucket is
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// complete across the board and the rate comes from the one before the lowest
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// frontier.
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func TestDirectionRateReadsOneBucketBack(t *testing.T) {
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d := &direction{rxStats: []*rxStats{{}, {}}}
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r0 := rateRun{stats: d.rxStats[0]}
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@@ -51,6 +53,7 @@ func TestDirectionRateReadsOneBucketBack(t *testing.T) {
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r0.add(rateBucketNs+1, 500)
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r1.add(rateBucketNs+2, 700)
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r0.add(2*rateBucketNs+1, 900)
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r1.add(2*rateBucketNs+2, 1100)
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r0.flush()
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r1.flush()
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@@ -61,6 +64,46 @@ func TestDirectionRateReadsOneBucketBack(t *testing.T) {
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}
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}
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// Reading a bucket is a claim that every stream has delivered through it, so a
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// stream still short of the epoch holds the read back rather than having its
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// half-filled bucket summed.
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func TestDirectionRateWaitsForSlowestStream(t *testing.T) {
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d := &direction{rxStats: []*rxStats{{}, {}}}
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r0 := rateRun{stats: d.rxStats[0]}
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r1 := rateRun{stats: d.rxStats[1]}
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r0.add(rateBucketNs+1, 500)
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r0.add(2*rateBucketNs+1, 900)
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r0.flush()
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// One stream has never delivered at all, so there is no epoch every stream
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// has reached and nothing to read.
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d.readRateBucket(time.Now())
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if d.rateFrames != 0 || d.rateBytes != 0 {
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t.Errorf("rate = %d frames, %d bytes; want nothing while a stream has no frontier",
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d.rateFrames, d.rateBytes)
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}
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// The straggler is still filling the epoch the leader finished, so its
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// bucket must not be read yet.
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r1.add(rateBucketNs+2, 700)
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r1.flush()
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d.readRateBucket(time.Now())
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if d.rateFrames != 0 || d.rateBytes != 0 {
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t.Errorf("rate = %d frames, %d bytes; want nothing while a stream is still filling the epoch",
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d.rateFrames, d.rateBytes)
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}
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// Once it moves past, the bucket is complete for both streams and is read
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// whole.
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r1.add(2*rateBucketNs+2, 1100)
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r1.flush()
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d.readRateBucket(time.Now())
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if d.rateFrames != 2 || d.rateBytes != 1200 {
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t.Errorf("rate = %d frames, %d bytes; want the whole completed epoch, 2 and 1200",
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d.rateFrames, d.rateBytes)
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}
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}
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// A stamp only advances when a frame arrives, so an epoch that stops moving is
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// a quiet wire and must not keep reporting the last bucket.
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func TestDirectionRateGoesStale(t *testing.T) {
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