fix(gateway): qualify stepped impairment throughput
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@@ -212,26 +212,31 @@ func TestQualificationSixImpairmentProfilesTraverseProductionPath(t *testing.T)
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}
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}
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}
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}
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func TestQualificationLossAndSteppedThroughputBounds(t *testing.T) {
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profiles := qualificationImpairmentProfiles()
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for _, profile := range profiles[3:] {
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observation, err := runQualificationImpairment(t, profile, qualificationMediaProfiles()[0],
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qualificationImpairmentPacketCount, filepath.Join(t.TempDir(), profile.Name+".csv.gz"))
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if err != nil {
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t.Fatalf("%s: %v", profile.Name, err)
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}
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if observation.ObservedThroughputKbps <= 0 ||
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profile.Name == "constrained" && len(observation.CapacityStepObservations) != 2 {
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t.Fatalf("%s observation = %#v", profile.Name, observation)
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}
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}
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}
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func TestQualificationUsesPublicQUICAndProductionPacer(t *testing.T) {
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func TestQualificationUsesPublicQUICAndProductionPacer(t *testing.T) {
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qualificationTraverseProfiles(t, qualificationMediaProfiles())
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qualificationTraverseProfiles(t, qualificationMediaProfiles())
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evidence, err := qualificationPacerEvidence(t, filepath.Join(t.TempDir(), "fairness.csv.gz"), 2*time.Second, 2*time.Second)
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evidence, err := qualificationPacerEvidence(t, filepath.Join(t.TempDir(), "fairness.csv.gz"), 2*time.Second, 4*time.Second)
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if err != nil {
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if err != nil {
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t.Fatal(err)
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t.Fatal(err)
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}
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}
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if len(evidence.PerFlowBytes) != 8 || len(evidence.CapacitySteps) != 2 ||
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if len(evidence.PerFlowBytes) != 8 || len(evidence.CapacitySteps) != 2 ||
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len(evidence.Series) != 6 || evidence.RawSamplesSHA256 == "" || evidence.JainIndex < 0.99 {
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len(evidence.Series) != 10 || evidence.RawSamplesSHA256 == "" || evidence.JainIndex < 0.99 {
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t.Fatalf("pacer evidence = %#v", evidence)
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t.Fatalf("pacer evidence = %#v", evidence)
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}
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}
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}
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func TestQualificationCapacityStepsConvergeWithinTenSeconds(t *testing.T) {
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evidence, err := qualificationPacerEvidence(t, filepath.Join(t.TempDir(), "fairness.csv.gz"), 2*time.Second, 10*time.Second)
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if err != nil {
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t.Fatal(err)
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}
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if len(evidence.CapacitySteps) != 2 {
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t.Fatalf("capacity steps = %#v", evidence.CapacitySteps)
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}
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for _, step := range evidence.CapacitySteps {
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for _, step := range evidence.CapacitySteps {
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if step.Convergence > 10*time.Second || step.MaximumFiveSecond > step.FiveSecondCap*105/100 {
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if step.Convergence > 10*time.Second || step.MaximumFiveSecond > step.FiveSecondCap*105/100 {
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t.Fatalf("capacity step = %#v", step)
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t.Fatalf("capacity step = %#v", step)
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@@ -1187,8 +1187,17 @@ func runQualificationImpairment(t *testing.T, profile qualificationImpairmentPro
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observation.ObservedLossPercent = float64(observation.Dropped) * 100 / float64(packetCount)
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observation.ObservedLossPercent = float64(observation.Dropped) * 100 / float64(packetCount)
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observation.ObservedReorderPercent = float64(observation.ObservedOutOfOrder) * 100 / float64(packetCount)
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observation.ObservedReorderPercent = float64(observation.ObservedOutOfOrder) * 100 / float64(packetCount)
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if packetCount >= qualificationImpairmentPacketCount {
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if packetCount >= qualificationImpairmentPacketCount {
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lowerThroughput := float64(media.BitrateKbps) * (1 - profile.LossPercent/100) * 0.90
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capacityFactor := 1.0
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upperThroughput := float64(media.BitrateKbps) * 1.05
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if len(profile.CapacitySteps) > 0 {
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inverseRates := 1.0
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for _, reduction := range profile.CapacitySteps {
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inverseRates += 100 / float64(100-reduction)
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}
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capacityFactor = float64(len(profile.CapacitySteps)+1) / inverseRates
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}
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expectedThroughput := float64(media.BitrateKbps) * (1 - profile.LossPercent/100) * capacityFactor
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lowerThroughput := expectedThroughput * 0.90
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upperThroughput := expectedThroughput * 1.05
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if observation.ObservedThroughputKbps < lowerThroughput || observation.ObservedThroughputKbps > upperThroughput {
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if observation.ObservedThroughputKbps < lowerThroughput || observation.ObservedThroughputKbps > upperThroughput {
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return qualificationImpairmentObservation{}, fmt.Errorf("observed throughput %.2f outside [%.2f,%.2f]", observation.ObservedThroughputKbps, lowerThroughput, upperThroughput)
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return qualificationImpairmentObservation{}, fmt.Errorf("observed throughput %.2f outside [%.2f,%.2f]", observation.ObservedThroughputKbps, lowerThroughput, upperThroughput)
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}
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}
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