Deploy: main into prod #343
@@ -1759,6 +1759,28 @@ retries) is individually logged for full observability.
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**Relations:** Belongs to Delivery.
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#### Event-tier indexes
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These indexes on the per-webhook event databases are declared in the model
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tags, so `AutoMigrate` creates them on a fresh and on an existing database:
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| Table | Columns | Serves |
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| ------------------ | --------------------------- | ------ |
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| `deliveries` | `status`, `deleted_at` | Startup recovery, the retry and pending sweeps every 60 seconds and the queue-depth sampler every 30 seconds, which select deliveries by status |
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| `deliveries` | `event_id`, `deleted_at` | The event log, which loads each event's deliveries, and retention, which selects and deletes the deliveries of expired events |
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| `delivery_results` | `delivery_id`, `deleted_at` | The event log, which loads the attempts of a page's deliveries, and retention, which deletes the attempts of expired events |
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| `events` | `deleted_at`, `created_at` | Retention, which selects expired events by age |
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| `events` | `created_at` | Retention's delete of the expired events themselves |
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GORM's soft delete adds `deleted_at IS NULL` to these queries; retention's
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deletes leave it out, but their lookups of expired rows keep it. SQLite keeps
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no statistics on these tables, and without them it rates the `deleted_at`
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index, which every live row matches, above an index on a column matched
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against several values or compared with `<`. So every index but the last also
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covers `deleted_at`. It comes second, so that retention's deletes can use the
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index without it, except in `events`, where `created_at` is compared with `<`
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and SQLite narrows by a `<` only on the last column it uses.
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#### Common Fields
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Every entity except `Setting` includes these fields from `BaseModel`.
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@@ -0,0 +1,166 @@
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package database_test
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import (
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"context"
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"fmt"
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"testing"
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"time"
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"github.com/google/uuid"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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"gorm.io/gorm"
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"sneak.berlin/go/webhooker/internal/database"
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)
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// TestWebhookDBManager_OpenAddsEventTierIndexes verifies that opening a
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// per-webhook database that predates these indexes creates them. It
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// stands in for an older database file by dropping the indexes
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// AutoMigrate just created, then reopening the same file.
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func TestWebhookDBManager_OpenAddsEventTierIndexes(t *testing.T) {
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t.Parallel()
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indexes := []struct {
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model any
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name string
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}{
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{&database.Delivery{}, "idx_deliveries_status"},
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{&database.Delivery{}, "idx_deliveries_event_id"},
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{&database.DeliveryResult{}, "idx_delivery_results_delivery_id"},
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{&database.Event{}, "idx_events_deleted_at_created_at"},
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{&database.Event{}, "idx_events_created_at"},
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}
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mgr, lc := setupTestWebhookDBManager(t)
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ctx := context.Background()
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require.NoError(t, lc.Start(ctx))
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defer func() { require.NoError(t, lc.Stop(ctx)) }()
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webhookID := uuid.New().String()
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db, err := mgr.GetDB(webhookID)
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require.NoError(t, err)
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// A fresh database has them.
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for _, ix := range indexes {
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require.True(t, db.Migrator().HasIndex(ix.model, ix.name))
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}
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// Stand in for a database file created before the indexes existed.
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for _, ix := range indexes {
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require.NoError(t, db.Migrator().DropIndex(ix.model, ix.name))
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require.False(t, db.Migrator().HasIndex(ix.model, ix.name))
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}
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// Drop the cached connection so the next open reopens the file and
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// runs AutoMigrate against it, as a restart would.
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require.NoError(t, mgr.CloseAll())
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db, err = mgr.GetDB(webhookID)
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require.NoError(t, err)
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for _, ix := range indexes {
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assert.True(t, db.Migrator().HasIndex(ix.model, ix.name),
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"opening the existing database should create %s", ix.name)
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}
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}
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// TestEventTierQueriesUseTheirIndexes verifies that the statements the
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// indexes are for use them. GORM builds each statement in a dry run as
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// the code named above it does, soft-delete condition included, and
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// SQLite, which keeps no statistics on these tables, must plan to seek
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// on each index listed by the columns in parentheses.
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func TestEventTierQueriesUseTheirIndexes(t *testing.T) {
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t.Parallel()
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mgr, lc := setupTestWebhookDBManager(t)
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ctx := context.Background()
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require.NoError(t, lc.Start(ctx))
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defer func() { require.NoError(t, lc.Stop(ctx)) }()
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db, err := mgr.GetDB(uuid.New().String())
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require.NoError(t, err)
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dry := db.Session(&gorm.Session{DryRun: true})
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ids := []string{
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uuid.New().String(), uuid.New().String(), uuid.New().String(),
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}
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cutoff := time.Now()
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var (
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deliveries []database.Delivery
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results []database.DeliveryResult
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depths []struct{ Depth int }
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)
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byStatus := "idx_deliveries_status (status=? AND deleted_at=?)"
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byEvent := "idx_deliveries_event_id (event_id=? AND deleted_at=?)"
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byAge := "idx_events_deleted_at_created_at (deleted_at=? AND created_at<?)"
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// The delivery engine: recovery and the retry sweep, the sweep for
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// stranded pending deliveries, and the queue depth count.
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assertPlanUses(t, db, dry.Where(
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"status = ?", database.DeliveryStatusRetrying,
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).Find(&deliveries), byStatus)
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assertPlanUses(t, db, dry.Where(
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"status = ? AND updated_at < ?",
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database.DeliveryStatusPending, cutoff,
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).Limit(500).Find(&deliveries), byStatus)
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assertPlanUses(t, db, dry.Model(&database.Delivery{}).
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Select("target_id", "status", "count(*) as depth").
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Where("status IN ?", []database.DeliveryStatus{
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database.DeliveryStatusPending,
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database.DeliveryStatusRetrying,
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}).Group("target_id, status").Find(&depths), byStatus)
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// The event log: each event's deliveries, then their attempts
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// (loadEventsWithDeliveries, loadDeliveryResults).
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assertPlanUses(t, db, dry.Where("event_id = ?", ids[0]).
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Find(&deliveries), byEvent)
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assertPlanUses(t, db, dry.Where("delivery_id IN ?", ids).
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Order("attempt_num ASC").Find(&results),
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"idx_delivery_results_delivery_id (delivery_id=? AND deleted_at=?)")
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// Retention's three deletes (reapExpired), whose subqueries are built
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// afresh for each statement as it builds them.
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expiredEventIDs := func() *gorm.DB {
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return dry.Model(&database.Event{}).Select("id").
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Where("created_at < ?", cutoff)
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}
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assertPlanUses(t, db, dry.Unscoped().Where(
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"delivery_id IN (?)", dry.Model(&database.Delivery{}).
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Select("id").Where("event_id IN (?)", expiredEventIDs()),
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).Delete(&database.DeliveryResult{}),
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"idx_delivery_results_delivery_id (delivery_id=?)", byEvent, byAge)
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assertPlanUses(t, db, dry.Unscoped().Where(
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"event_id IN (?)", expiredEventIDs(),
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).Delete(&database.Delivery{}),
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"idx_deliveries_event_id (event_id=?)", byAge)
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assertPlanUses(t, db, dry.Unscoped().Where(
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"created_at < ?", cutoff,
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).Delete(&database.Event{}), "idx_events_created_at (created_at<?)")
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}
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// assertPlanUses asserts that SQLite's plan for a statement GORM built
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// in a dry run, run with the same SQL and arguments GORM would send,
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// names each of the given indexes.
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func assertPlanUses(
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t *testing.T, db, built *gorm.DB, indexes ...string,
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) {
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t.Helper()
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var plan []struct{ Detail string }
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require.NoError(t, db.Raw(
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"EXPLAIN QUERY PLAN "+built.Statement.SQL.String(),
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built.Statement.Vars...,
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).Scan(&plan).Error)
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for _, index := range indexes {
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assert.Contains(t, fmt.Sprint(plan), index,
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built.Statement.SQL.String())
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}
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}
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@@ -1,5 +1,7 @@
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package database
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import "gorm.io/gorm"
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// DeliveryStatus represents the status of a delivery
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type DeliveryStatus string
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@@ -29,12 +31,19 @@ func (s DeliveryStatus) Terminal() bool {
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}
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// Delivery represents a delivery attempt for an event to a target
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//
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//nolint:lll // a struct tag cannot wrap
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type Delivery struct {
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BaseModel
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EventID string `gorm:"type:uuid;not null" json:"eventId"`
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TargetID string `gorm:"type:uuid;not null" json:"targetId"`
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Status DeliveryStatus `gorm:"not null;default:'pending'" json:"status"`
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EventID string `gorm:"type:uuid;not null;index:idx_deliveries_event_id,priority:1" json:"eventId"`
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TargetID string `gorm:"type:uuid;not null" json:"targetId"`
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Status DeliveryStatus `gorm:"not null;default:'pending';index:idx_deliveries_status,priority:1" json:"status"`
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// DeletedAt repeats the BaseModel field only to be the second column
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// of the event_id and status indexes, for the reason DeliveryResult
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// gives.
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DeletedAt gorm.DeletedAt `gorm:"index:idx_deliveries_event_id,priority:2;index:idx_deliveries_status,priority:2" json:"deletedAt,omitzero"`
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// Relations
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Event Event `json:"event,omitzero"`
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@@ -1,10 +1,21 @@
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package database
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import "gorm.io/gorm"
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// DeliveryResult represents the result of a delivery attempt
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//
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//nolint:lll // a struct tag cannot wrap
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type DeliveryResult struct {
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BaseModel
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DeliveryID string `gorm:"type:uuid;not null" json:"deliveryId"`
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// DeliveryID and DeletedAt make up one index, in that order.
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// DeletedAt repeats the BaseModel field only to join it: GORM adds
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// "deleted_at IS NULL" to almost every query, and where a column is
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// matched against several values SQLite otherwise reads through the
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// deleted_at index, which every live row matches.
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DeliveryID string `gorm:"type:uuid;not null;index:idx_delivery_results_delivery_id,priority:1" json:"deliveryId"`
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DeletedAt gorm.DeletedAt `gorm:"index:idx_delivery_results_delivery_id,priority:2" json:"deletedAt,omitzero"`
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AttemptNum int `gorm:"not null" json:"attemptNum"`
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Success bool `json:"success"`
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StatusCode int `json:"statusCode,omitempty"`
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@@ -1,9 +1,27 @@
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package database
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import (
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"time"
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"gorm.io/gorm"
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)
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// Event represents a captured webhook event
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//
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//nolint:lll // a struct tag cannot wrap
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type Event struct {
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BaseModel
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// CreatedAt and DeletedAt repeat the BaseModel fields only to index
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// them for retention, which finds events by age. Its lookups carry
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// GORM's "deleted_at IS NULL" (see DeliveryResult) and compare
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// created_at with <, so their index has deleted_at first: SQLite
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// narrows by a < only on the last column it uses. Its final delete
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// has no deleted_at condition and uses the index on created_at
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// alone. The other tables keep the unindexed BaseModel created_at.
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CreatedAt time.Time `gorm:"index;index:idx_events_deleted_at_created_at,priority:2" json:"createdAt"`
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DeletedAt gorm.DeletedAt `gorm:"index:idx_events_deleted_at_created_at,priority:1" json:"deletedAt,omitzero"`
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WebhookID string `gorm:"type:uuid;not null" json:"webhookId"`
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EntrypointID string `gorm:"type:uuid;not null" json:"entrypointId"`
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