Add a statistics pane to the webhook page (closes #368)
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Each webhook's event database keeps running totals: one row for its events, and one row per target for that target's deliveries, delivered and failed, each with what retention removed. Every write to them shares the transaction of the rows it counts. Deliveries get a finished_at column; it and target_id end the status index, so each target's deliveries finished in a window come from one index-range query grouped by target. Retention deletes 1000 expired events per transaction, pausing 200 ms between them so other writers get in. The pane is its own template, its figures in tables. The schema changes in place with nothing back-filled, so an existing database must be recreated. Model: opus-5-5
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+103
-48
@@ -18,6 +18,19 @@ import (
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// computation.
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const hoursPerDay = 24
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// reapBatchSize is how many expired events one retention transaction
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// deletes. A transaction holds the event database's write lock, which
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// the receiver and the delivery workers wait for, so a large prune is
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// split into transactions each short enough to finish well inside the
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// busy timeout.
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const reapBatchSize = 1000
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// reapBatchPause is how long retention waits after one batch before
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// starting the next. A writer waiting for the write lock checks for it
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// again after at most 100 ms, so a longer pause lets it in between two
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// batches instead of only after the whole prune.
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const reapBatchPause = 200 * time.Millisecond
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// RetentionReaperParams holds the fx dependencies for the
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// RetentionReaper.
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type RetentionReaperParams struct {
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@@ -265,57 +278,99 @@ func retentionCutoff(
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), true
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}
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// reapExpired hard-deletes, in foreign-key-safe order, the delivery
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// results, deliveries, and events associated with events older than
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// cutoff. Deletes are unscoped so rows are physically removed rather
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// than soft-deleted, reclaiming disk. It returns the number of events
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// deleted.
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// reapExpired hard-deletes the events older than cutoff, with their
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// deliveries and delivery results, reapBatchSize events per
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// transaction with reapBatchPause between transactions, until none is
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// left. It returns the number of events deleted.
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func reapExpired(db *gorm.DB, cutoff time.Time) (int64, error) {
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// Fresh subqueries are built per statement to avoid reusing a
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// mutated builder across executions.
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expiredEventIDs := func() *gorm.DB {
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return db.Model(&Event{}).
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Select("id").
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Where("created_at < ?", cutoff)
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}
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expiredDeliveryIDs := func() *gorm.DB {
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return db.Model(&Delivery{}).
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Select("id").
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Where("event_id IN (?)", expiredEventIDs())
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}
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var total int64
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// 1. Delivery results whose delivery belongs to an expired event.
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res := db.Unscoped().
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Where("delivery_id IN (?)", expiredDeliveryIDs()).
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Delete(&DeliveryResult{})
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if res.Error != nil {
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return 0, fmt.Errorf(
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"deleting expired delivery results: %w",
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res.Error,
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)
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}
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for {
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var eventIDs []string
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// 2. Deliveries belonging to an expired event.
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del := db.Unscoped().
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Where("event_id IN (?)", expiredEventIDs()).
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Delete(&Delivery{})
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if del.Error != nil {
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return 0, fmt.Errorf(
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"deleting expired deliveries: %w",
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del.Error,
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)
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}
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err := db.Transaction(func(tx *gorm.DB) error {
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err := tx.Unscoped().Model(&Event{}).
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Where("created_at < ?", cutoff).
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Limit(reapBatchSize).
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Pluck("id", &eventIDs).Error
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if err != nil {
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return fmt.Errorf("selecting expired events: %w", err)
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}
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// 3. The expired events themselves.
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ev := db.Unscoped().
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Where("created_at < ?", cutoff).
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Delete(&Event{})
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if ev.Error != nil {
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return 0, fmt.Errorf(
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"deleting expired events: %w",
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ev.Error,
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)
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}
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if len(eventIDs) == 0 {
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return nil
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}
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return ev.RowsAffected, nil
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return deleteEvents(tx, eventIDs)
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})
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if err != nil {
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return total, err
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}
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total += int64(len(eventIDs))
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if len(eventIDs) < reapBatchSize {
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return total, nil
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}
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time.Sleep(reapBatchPause)
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}
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}
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// deleteEvents hard-deletes the given events and, in foreign-key-safe
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// order before them, their delivery results and deliveries, then adds
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// what it deleted to the running totals. It runs on reapExpired's
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// transaction, so the totals change exactly when the rows do. Deletes
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// are unscoped so rows are physically removed rather than
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// soft-deleted, reclaiming disk.
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func deleteEvents(tx *gorm.DB, eventIDs []string) error {
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// 1. The delivery results of the events' deliveries.
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err := tx.Unscoped().
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Where("delivery_id IN (?)", tx.Unscoped().Model(&Delivery{}).
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Select("id").
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Where("event_id IN ?", eventIDs)).
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Delete(&DeliveryResult{}).Error
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if err != nil {
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return fmt.Errorf("deleting expired delivery results: %w", err)
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}
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// 2. The events' deliveries, after counting them, and the failed
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// ones among them, per target. The status is tested in the select
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// list rather than the WHERE clause: there, SQLite would read every
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// failed delivery the webhook has through the status index,
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// instead of only these through the event_id index.
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var removed []TargetTotals
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err = tx.Unscoped().Model(&Delivery{}).
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Select("target_id, count(*) AS deliveries_removed, "+
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"count(CASE WHEN status = ? THEN 1 END) AS failed_removed",
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DeliveryStatusFailed).
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Where("event_id IN ?", eventIDs).
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Group("target_id").
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Find(&removed).Error
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if err != nil {
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return fmt.Errorf("counting expired deliveries: %w", err)
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}
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err = tx.Unscoped().
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Where("event_id IN ?", eventIDs).
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Delete(&Delivery{}).Error
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if err != nil {
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return fmt.Errorf("deleting expired deliveries: %w", err)
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}
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// 3. The events themselves.
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ev := tx.Unscoped().Where("id IN ?", eventIDs).Delete(&Event{})
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if ev.Error != nil {
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return fmt.Errorf("deleting expired events: %w", ev.Error)
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}
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for i := range removed {
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err = AddTargetTotals(tx, removed[i])
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if err != nil {
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return err
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}
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}
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return AddEventTotals(tx, EventTotals{EventsRemoved: ev.RowsAffected})
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}
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