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Prevent deadlocks in persistable channel pause test (#18410)
* Prevent deadlocks in persistable channel pause test Because of reuse of the old paused/resumed channels in this test there was a potential for deadlock. This PR ensures that the channels are always reobtained. It further adds some control code to detect hangs in future - and it ensures that the pausing warning is not shown on shutdown. Signed-off-by: Andrew Thornton <art27@cantab.net> * do not warn but do pause Signed-off-by: Andrew Thornton <art27@cantab.net>
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@ -287,11 +287,16 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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assert.Nil(t, result2)
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pausable.Resume()
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paused, resumed = pausable.IsPausedIsResumed()
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select {
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case <-paused:
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assert.Fail(t, "Queue should be resumed")
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return
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case <-resumed:
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default:
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assert.Fail(t, "Queue should be resumed")
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return
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}
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select {
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@ -345,16 +350,22 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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pausable.Resume()
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paused, resumed = pausable.IsPausedIsResumed()
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select {
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case <-paused:
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assert.Fail(t, "Queue should not be paused")
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return
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case <-resumed:
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default:
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assert.Fail(t, "Queue should be resumed")
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return
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}
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select {
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case result1 = <-handleChan:
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case <-time.After(500 * time.Millisecond):
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assert.Fail(t, "handler chan should contain test1")
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return
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}
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assert.Equal(t, test1.TestString, result1.TestString)
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assert.Equal(t, test1.TestInt, result1.TestInt)
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@ -369,7 +380,12 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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}
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// Wait til it is closed
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<-queue.(*PersistableChannelQueue).closed
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select {
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case <-queue.(*PersistableChannelQueue).closed:
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case <-time.After(5 * time.Second):
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assert.Fail(t, "queue should close")
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return
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}
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err = queue.Push(&test1)
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assert.NoError(t, err)
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@ -378,6 +394,7 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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select {
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case <-handleChan:
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assert.Fail(t, "Handler processing should have stopped")
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return
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default:
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}
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@ -393,6 +410,7 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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select {
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case <-handleChan:
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assert.Fail(t, "Handler processing should have stopped")
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return
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default:
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}
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@ -431,6 +449,7 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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select {
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case <-handleChan:
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assert.Fail(t, "Handler processing should have stopped")
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return
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case <-paused:
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}
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@ -449,13 +468,36 @@ func TestPersistableChannelQueue_Pause(t *testing.T) {
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select {
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case <-handleChan:
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assert.Fail(t, "Handler processing should have stopped")
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return
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default:
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}
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pausable.Resume()
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paused, resumed = pausable.IsPausedIsResumed()
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select {
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case <-paused:
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assert.Fail(t, "Queue should not be paused")
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return
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case <-resumed:
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default:
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assert.Fail(t, "Queue should be resumed")
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return
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}
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result3 := <-handleChan
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result4 := <-handleChan
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var result3, result4 *testData
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select {
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case result3 = <-handleChan:
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case <-time.After(1 * time.Second):
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assert.Fail(t, "Handler processing should have resumed")
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return
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}
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select {
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case result4 = <-handleChan:
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case <-time.After(1 * time.Second):
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assert.Fail(t, "Handler processing should have resumed")
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return
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}
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if result4.TestString == test1.TestString {
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result3, result4 = result4, result3
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}
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@ -301,9 +301,14 @@ func (p *WorkerPool) addWorkers(ctx context.Context, cancel context.CancelFunc,
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cancel()
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}
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if p.hasNoWorkerScaling() {
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log.Warn(
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"Queue: %d is configured to be non-scaling and has no workers - this configuration is likely incorrect.\n"+
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"The queue will be paused to prevent data-loss with the assumption that you will add workers and unpause as required.", p.qid)
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select {
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case <-p.baseCtx.Done():
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// Don't warn if the baseCtx is shutdown
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default:
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log.Warn(
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"Queue: %d is configured to be non-scaling and has no workers - this configuration is likely incorrect.\n"+
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"The queue will be paused to prevent data-loss with the assumption that you will add workers and unpause as required.", p.qid)
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}
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p.pause()
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}
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p.lock.Unlock()
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