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webhooker/internal/delivery/target.go
clawbot 190cabe0f2
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Evict archive writers on deletion and sweep idle archives (closes #89)
The per-webhook archiveWriter registry in the database delivery target
was never evicted, so a deleted webhook's writer -- and any archive
file handle open within its debounce window -- lingered for the process
lifetime. Separately, expiry pruning ran only when an archive was
(re)opened, and reopens only happen on writes, so an archive belonging
to a webhook that stopped receiving events kept its expired rows
forever.

Eviction: a new one-method delivery.WebhookEvictor interface (kept
separate from Notifier: archiving lifecycle is not notification) is
implemented by the Engine and injected into the handlers. Deleting a
webhook, or deleting its last database target, drops the writer from
the registry and closes its handle under the writer's own mutex, so
eviction can never race an in-flight write. An evicted writer refuses
further writes rather than reopening a file nothing holds. The archive
file is deliberately left on disk: it is long-term storage an operator
may want to keep or move away, and destroying it as a side effect of
deleting a webhook would be unrecoverable.

Idle sweep: a new ArchiveSweeper, modelled on the event RetentionReaper
(fx lifecycle hooks, cancellable context, WaitGroup, ticker loop),
prunes archives whose database target declares a positive expiry. It
reuses the existing RETENTION_SWEEP_INTERVAL rather than adding a
config key. It never creates an archive -- a missing file is skipped,
and the reopen uses SQLite mode=rw so the file cannot be conjured even
if it disappears mid-sweep -- routes the prune through the per-webhook
writer so its mutex orders the sweep against concurrent writes, and
leaves the archive closed so the move-the-file-away workflow keeps
working. A failure for one webhook is logged and the sweep continues.
Archives with no expiry or the expiry "never" are untouched.
2026-08-09 02:25:33 +00:00

105 lines
2.9 KiB
Go

package delivery
import (
"context"
"net/http"
"time"
"gorm.io/gorm"
"sneak.berlin/go/webhooker/internal/database"
)
// Scheduler re-enqueues a task for a future delivery attempt.
// The engine provides one to each target so a target can own
// its retries durably: it records the attempt, marks the
// delivery retrying, and asks the Scheduler to deliver the
// next attempt after delay — exactly what the engine does for
// its own restart recovery.
type Scheduler interface {
ScheduleRetry(task Task, delay time.Duration)
}
// Target delivers an event to one target type. Each type is
// an implementation. A Target owns its whole delivery: it
// makes the attempt, records the DeliveryResult and updates
// the DeliveryStatus, and — for targets that retry — decides
// whether to retry, computes its own backoff, gates with its
// own circuit breaker, and reschedules via the injected
// Scheduler. Fire-and-forget targets simply record a single
// attempt.
type Target interface {
Deliver(
ctx context.Context,
webhookDB *gorm.DB,
d *database.Delivery,
task *Task,
sched Scheduler,
)
}
// rescheduler is implemented by targets that own durable
// retries. The engine's restart recovery and periodic sweep
// use it to let the target recompute the schedule for an
// orphaned retrying delivery, keeping the retry schedule
// target-owned. Fire-and-forget targets do not implement it
// and their (never-occurring) retrying deliveries are
// skipped.
type rescheduler interface {
// remainingBackoff returns how long to wait before the
// next attempt of a recovered retrying delivery.
remainingBackoff(
webhookDB *gorm.DB,
deliveryID string,
attemptNum int,
) time.Duration
// backoffElapsed reports whether the backoff window for
// the last attempt has already passed, so the periodic
// sweep can re-enqueue the delivery now.
backoffElapsed(
webhookDB *gorm.DB,
deliveryID string,
attemptNum int,
) bool
}
// attemptResult is the outcome of a single delivery attempt,
// as reported by a target's per-attempt function to the
// shared retry core.
type attemptResult struct {
statusCode int
respBody string
duration int64
success bool
errMsg string
}
// initTargets builds the target registry, wiring each target
// to the engine's persistence helpers and giving the HTTP and
// Slack targets the shared SSRF-safe client. It is called by
// both New and the test constructors so the registry is
// always populated.
func (e *Engine) initTargets(client *http.Client) {
httpT := &httpTarget{
httpCore: &httpCore{eng: e},
client: client,
}
slackT := &slackTarget{
httpCore: &httpCore{eng: e},
client: client,
}
dbT := &databaseTarget{eng: e}
e.httpTarget = httpT
e.dbTarget = dbT
e.targets = map[database.TargetType]Target{
database.TargetTypeHTTP: httpT,
database.TargetTypeSlack: slackT,
database.TargetTypeDatabase: dbT,
database.TargetTypeLog: &logTarget{eng: e},
}
}