Bump the golangci-lint Docker image pin in Dockerfile and the
release-archive sha256 pins in script/bootstrap from 2.11.3 to
2.12.2, and replace .golangci.yml with the canonical config. The
canonical config moves lll/funlen/cyclop/dupl settings from the
top-level linters-settings key (ignored by the v2 schema) to
linters.settings, so those thresholds now actually apply.
Fix all findings the newly applied thresholds surfaced:
- lll: wrap or shorten seven over-length lines (struct tag
comments, test logger construction, a func signature, and a
nosec comment)
- goconst: use http.MethodPost/http.MethodPut and new shared
constants for repeated test strings; add tmplKeyError and
tmplKeyWebhook constants for template data keys in handlers
- dupl: merge buildHTTPTargetConfig and buildSlackTargetConfig
into a parameterized buildURLTargetConfig; drop the duplicate
iWebhookDB test helper in favor of testWebhookDB; extract
shared helpers in middleware and session tests
Implements the `databaseTarget` as a real archiving target, replacing the always-successful stub. Delivering to a `database` target now writes the full event into a per-webhook archive SQLite file for long-term storage.
## Archive-writer semantics
- **Separate file:** each webhook's full events are written as rows into `archive-{webhookID}.db` under the data dir, distinct from the per-webhook event DB (`events-{webhookID}.db`). The file and its schema are created on first write if missing. Each row carries the full event: body, headers, method, content type, webhook id, entrypoint id, event id, and an archived-at timestamp.
- **Close/reopen with debounce:** after each write the archive handle is closed and reopened, unless the last (re)open was less than one second ago. This lets an operator move the archive file away for offline archiving while bounding file churn under load. A per-webhook `archiveWriter` owns this debounce state and serialises writes.
- **Auto-recreate:** the file is opened create-if-missing (`mode=rwc`) and its schema re-migrated on every open, so if the archive was moved or removed since the last open, the next write recreates it. The writer also detects a missing file before writing and reopens first, so a moved-away file is recreated rather than lost.
- **Optional expiry, validated at creation:** an optional `expiry` in the target's config JSON (e.g. `{"expiry":"720h"}`) is validated when the target is created (`ValidateArchiveExpiry`; bad values are rejected with a 400 at the add-target form, the Slack URL precedent). The default (missing, empty, or `"never"`) keeps rows forever with no pruning. When a positive duration is set, rows older than it (measured from each row's archived-at time) are pruned on every (re)open; because the file is reopened after writes, prune-on-open keeps the archive swept without a separate background sweeper. A set-but-invalid expiry in a stored config (unparseable, zero, or negative) is an error at delivery time too — never a silent default.
- **No-retry, fail-loud:** the target performs a single attempt with no retries. On success it records one successful attempt and marks the delivery delivered. If the archive write fails, the attempt is recorded as failed with the error and the delivery is marked failed — archiving errors never report success.
## Scope
- `internal/delivery/target_database.go` — the `databaseTarget` (no-retry) archives via a per-webhook writer registry; an archive error records a failed attempt and marks the delivery failed.
- `internal/delivery/target_database_archive.go` (new) — the `archiveWriter`, the archived-row model, config/expiry parsing (fail-loud on set-but-invalid values), `ValidateArchiveExpiry`, and prune-on-open.
- `internal/handlers/source_management.go` — database targets get a creation-validated `expiry` config (`buildDatabaseTargetConfig`); the expiry form value is read where the request body is bounded and bad values are rejected with a 400 at target creation.
- `templates/source_detail.html` — the add-target form shows an expiry field for database targets.
- `README.md` — the database-target documentation describes the archiving semantics.
- `internal/delivery/export_test.go`, `internal/delivery/target_database_test.go`, `internal/handlers` tests — tests and their exported shims.
No changes to the `Target` interface or other targets.
## Tests
- a row is archived (both at the writer level and end-to-end through `Deliver`)
- a forced archive failure (bad stored expiry config) yields a `Failed` delivery with a non-success `DeliveryResult` carrying the error and no archive file created
- the file is recreated after removal, with only the post-removal row
- the one-second reopen debounce (rapid writes reopen once; a write after the window reopens again)
- expiry pruning removes rows older than the configured expiry
- expiry config parsing (empty / `never` / duration accepted; unparseable, zero, and negative values error)
- expiry validation at target creation (`TestValidateArchiveExpiry`; valid values build the config, bad values get a 400)
## Validation
`docker build .` exits 0 (fmt-check, lint, test, build all pass).
Closes#43
Co-authored-by: sneak <sneak@sneak.berlin>
Reviewed-on: #84
Co-authored-by: clawbot <clawbot@noreply.example.org>
Co-committed-by: clawbot <clawbot@noreply.example.org>
Refactors the delivery engine so each target TYPE is an implementation of a `Target` interface, dispatched from a registry, with each target owning its full delivery including durable retries. Implements the authoritative design from issue #77 (the corrected "hand the DB + Scheduler to the target" design).
## The new interface
```go
type Scheduler interface {
ScheduleRetry(task Task, delay time.Duration)
}
type Target interface {
Deliver(ctx context.Context, webhookDB *gorm.DB,
d *database.Delivery, task *Task, sched Scheduler)
}
```
`Deliver` receives everything a target needs to be autonomous and durable: the request context, the per-webhook `*gorm.DB`, the `*database.Delivery`, the attempt `*Task`, and a `Scheduler` (the engine) for durable re-enqueue. The target makes one attempt, writes the `DeliveryResult`, updates `DeliveryStatus`, and — for retry targets — decides whether to retry, computes its own backoff, gates with its own circuit breaker, and reschedules via the injected `Scheduler`.
`processDelivery` collapses to a registry lookup (`map[database.TargetType]Target`) and a `Deliver` call; an unknown target type still fails the delivery as before.
## Per-target ownership
- `httpTarget` and `slackTarget` share a retry core (`httpCore`) that owns retry, exponential backoff, and the per-target circuit breaker. The core is fire-and-forget when `MaxRetries == 0` and adds breaker-gated backed-off retries when `MaxRetries > 0`. The per-attempt request differs (HTTP forwards the body + filtered headers; Slack posts a formatted message) and is supplied as a closure, so each keeps its exact recording semantics (e.g. HTTP records no error string for a non-2xx, Slack records `HTTP <code>`).
- `databaseTarget` and `logTarget` are fire-and-forget: they record a single successful attempt.
Moved wholesale into the http/slack targets: `deliverHTTP*`, `handleHTTPRetry`, `circuitBreakerBlock`, `calcBackoff` / `calcRemainingBackoff` / `backoffElapsed`, the circuit-breaker `sync.Map` + `getCircuitBreaker`, `clientForConfig`, `doHTTPRequest`, `applyRequestHeaders`, and the config parsers. The engine keeps `recordResult`, `updateDeliveryStatus`, and `ScheduleRetry`.
## Slack MaxRetries gating
Slack is now on the same shared core as HTTP, with retry + breaker gated on `MaxRetries`. A `MaxRetries` of 0 stays single-attempt fire-and-forget, so **every existing Slack target is unchanged**; a Slack target configured with retries gets backoff + circuit breaker.
## Log-target full content
`logTarget` now logs the ENTIRE inbound webhook — full request body and full request headers, plus method, content type, and the webhook id and entrypoint id — rather than a summary line. This supersedes the smaller log-summary work (#70).
## `Task.EntrypointID`
To carry the entrypoint id to the log target, `Task` gains an `EntrypointID` field, populated in the webhook handler's `buildDeliveryTasks`, the engine's recovery-task builder, and `buildEventFromTask`.
## Durability / recovery
The crash-durable async retry model is preserved unchanged: one attempt per worker turn; on failure the status is set `retrying`, backoff is computed, and the task is re-enqueued via `ScheduleRetry` (a `time.AfterFunc` onto the retry channel). On restart, `recoverRetryingDeliveries` and the 60s sweep hand each orphaned `retrying` delivery back to its target to recompute the remaining backoff and reschedule (targets that own retries implement an internal `rescheduler`; fire-and-forget targets, which never produce `retrying` deliveries, are skipped).
## How behaviour is preserved
No external behaviour changes except the two called out above (log target full content; Slack gaining `MaxRetries`-gated retries). All existing delivery tests pass with only their `export_test.go` wrappers re-pointed at the new structure — `ExportDeliverHTTP/Slack/Database/Log` now call the targets, `ExportGetCircuitBreaker` / `ExportClient` / `ExportClientForConfig` / `ExportDoHTTPRequest` resolve against the HTTP target's shared client and breaker map, and `ExportParseHTTPConfig` / `ExportParseSlackConfig` call the relocated free functions. Added: a `logTarget` test asserting the log line contains the full body, headers, and ids, and a Slack `MaxRetries`-gated retry test.
`docker build .` is green (fmt-check, lint, test, static build all pass).
Closes#77
Co-authored-by: sneak <sneak@sneak.berlin>
Reviewed-on: #81
Co-authored-by: clawbot <clawbot@noreply.example.org>
Co-committed-by: clawbot <clawbot@noreply.example.org>
`clientForConfig()` in `internal/delivery/engine.go` built a fresh `http.Client` without a Transport when a per-target timeout was configured, dropping the request-time private-IP guard for that path.
It now reuses the shared client's SSRF-safe transport (`e.client.Transport`, the same `NewSSRFSafeTransport` instance), overriding only the `Timeout`. Behaviour is unchanged when no per-target timeout is set (the shared client is returned as before), so no engine code path makes an outbound target request with a client lacking the SSRF-safe transport.
Adds a delivery-package test proving a client from `clientForConfig()` with a per-target timeout still refuses private/reserved/link-local destinations, that the timeout is applied, that the SSRF-safe transport is reused (not duplicated), and that the no-timeout path returns the shared client unchanged.
Confined to `internal/delivery/` only; handlers and server code untouched.
Closes#69
Co-authored-by: sneak <sneak@sneak.berlin>
Co-authored-by: Jeffrey Paul <sneak@noreply.example.org>
Reviewed-on: #74
Co-authored-by: clawbot <clawbot@noreply.example.org>
Co-committed-by: clawbot <clawbot@noreply.example.org>
Closes [issue #50](#50)
## Summary
Refactors the Dockerfile to use a separate lint stage with a pinned golangci-lint Docker image, following the pattern used by [sneak/pixa](https://git.eeqj.de/sneak/pixa). This replaces the previous approach of installing golangci-lint via curl in the builder stage.
## Changes
### Dockerfile
- **New `lint` stage** using `golangci/golangci-lint:v2.11.3` (Debian-based, pinned by sha256 digest) as a separate build stage
- **Builder stage** depends on lint via `COPY --from=lint /src/go.sum /dev/null` — build won't proceed unless linting passes
- **Go bumped** from 1.24 to 1.26.1 (`golang:1.26.1-bookworm`, pinned by sha256)
- **golangci-lint bumped** from v1.64.8 to v2.11.3
- All three Docker images (golangci-lint, golang, alpine) pinned by sha256 digest
- Debian-based golangci-lint image used (not Alpine) because mattn/go-sqlite3 CGO does not compile on musl (off64_t)
### Linter Config (.golangci.yml)
- Migrated from v1 to v2 format (`version: "2"` added)
- Removed linters no longer available in v2: `gofmt` (handled by `make fmt-check`), `gosimple` (merged into `staticcheck`), `typecheck` (always-on in v2)
- Same set of linters enabled — no rules weakened
### Code Fixes (all lint issues from v2 upgrade)
- Added package comments to all packages
- Added doc comments to all exported types, functions, and methods
- Fixed unchecked errors flagged by `errcheck` (sqlDB.Close, os.Setenv in tests, resp.Body.Close, fmt.Fprint)
- Fixed unused parameters flagged by `revive` (renamed to `_`)
- Fixed `gosec` G120 warnings: added `http.MaxBytesReader` before `r.ParseForm()` calls
- Fixed `staticcheck` QF1012: replaced `WriteString(fmt.Sprintf(...))` with `fmt.Fprintf`
- Fixed `staticcheck` QF1003: converted if/else chain to tagged switch
- Renamed `DeliveryTask` → `Task` to avoid package stutter (`delivery.Task` instead of `delivery.DeliveryTask`)
- Renamed shadowed builtin `max` parameter to `upperBound` in `cryptoRandInt`
- Used `t.Setenv` instead of `os.Setenv` in tests (auto-restores)
### README.md
- Updated version requirements: Go 1.26+, golangci-lint v2.11+
- Updated Dockerfile description in project structure
## Verification
`docker build .` passes cleanly — formatting check, linting, all tests, and build all succeed.
Co-authored-by: clawbot <clawbot@noreply.git.eeqj.de>
Reviewed-on: #55
Co-authored-by: clawbot <clawbot@noreply.example.org>
Co-committed-by: clawbot <clawbot@noreply.example.org>
## Summary
Adds a new `slack` target type that sends webhook events as formatted messages to any Slack-compatible incoming webhook URL (Slack, Mattermost, and other compatible services).
closes#44
## What it does
When a webhook event is received, the Slack target:
1. Formats a human-readable message with event metadata (HTTP method, content type, timestamp, body size)
2. Pretty-prints the payload in a code block — JSON payloads get indented formatting, non-JSON payloads are shown as raw text
3. Truncates large payloads at 3500 characters to keep Slack messages reasonable
4. POSTs the message as a `{"text": "..."}` JSON payload to the configured webhook URL
## Changes
- **`internal/database/model_target.go`** — Add `TargetTypeSlack` constant
- **`internal/delivery/engine.go`** — Add `SlackTargetConfig` struct, `deliverSlack` method, `FormatSlackMessage` function (exported), `parseSlackConfig` helper. Route slack targets in `processDelivery` switch.
- **`internal/handlers/source_management.go`** — Handle `slack` type in `HandleTargetCreate`, building `webhook_url` config from the URL form field
- **`templates/source_detail.html`** — Add "Slack" option to target type dropdown with URL field and helper text
- **`README.md`** — Document the new target type, update roadmap
## Tests
- `TestParseSlackConfig_Valid` / `_Empty` / `_MissingWebhookURL` — Config parsing
- `TestFormatSlackMessage_JSONBody` / `_NonJSONBody` / `_EmptyBody` / `_LargeJSONTruncated` — Message formatting
- `TestDeliverSlack_Success` / `_Failure` / `_InvalidConfig` — End-to-end delivery
- `TestProcessDelivery_RoutesToSlack` — Routing from processDelivery switch
All existing tests continue to pass. `docker build .` (which runs `make check`) passes clean.
Co-authored-by: user <user@Mac.lan guest wan>
Reviewed-on: #47
Co-authored-by: clawbot <clawbot@noreply.example.org>
Co-committed-by: clawbot <clawbot@noreply.example.org>
- README.md: remove 'in development mode' from admin user creation
description (admin user creation is unconditional)
- internal/delivery/engine.go: remove 'and retry' from HTTPTargetConfig
comment (retry was merged into http target type)
- internal/delivery/engine_test.go: remove '/retry' from
newHTTPTargetConfig comment for consistency
Replace unbounded goroutine-per-delivery fan-out with a fixed-size
worker pool (10 workers). Channels serve as bounded queues (10,000
buffer). Workers are the only goroutines doing HTTP delivery.
When retry channel overflows, timers are dropped instead of re-armed.
The delivery stays in 'retrying' status in the DB and a periodic sweep
(every 60s) recovers orphaned retries. The database is the durable
fallback — same path used on startup recovery.
Addresses owner feedback on circuit breaker recovery goroutine flood.
- Fan out all targets for an event in parallel goroutines (fire-and-forget)
- Add per-target circuit breaker for retry targets (closed/open/half-open)
- Circuit breaker trips after 5 consecutive failures, 30s cooldown
- Open circuit skips delivery and reschedules after cooldown
- Half-open allows one probe delivery to test recovery
- HTTP/database/log targets unaffected (no circuit breaker)
- Recovery path also fans out in parallel
- Update README with parallel delivery and circuit breaker docs
The webhook handler now builds DeliveryTask structs carrying all target
config and event data inline (for bodies ≤16KB) and sends them through
the delivery channel. In the happy path, the engine delivers without
reading from any database — it only writes to record delivery results.
For large bodies (≥16KB), Body is nil and the engine fetches it from the
per-webhook database on demand. Retry timers also carry the full
DeliveryTask, so retries avoid unnecessary DB reads.
The database is used for crash recovery only: on startup the engine scans
for interrupted pending/retrying deliveries and re-queues them.
Implements owner feedback from issue #15:
> the message in the <=16KB case should have everything it needs to do
> its delivery. it shouldn't touch the db until it has a success or
> failure to record.
Replace the polling-based delivery engine with a fully event-driven
architecture using Go channels and goroutines:
- Webhook handler notifies engine via buffered channel after creating
delivery records, with inline event data for payloads < 16KB
- Large payloads (>= 16KB) use pointer semantics (Body *string = nil)
and are fetched from DB on demand, keeping channel memory bounded
- Failed retry-target deliveries schedule Go timers with exponential
backoff; timers fire into a separate retry channel when ready
- On startup, engine scans DB once to recover interrupted deliveries
(pending processed immediately, retrying get timers for remaining
backoff)
- DB stores delivery status for crash recovery only, not for
inter-component communication during normal operation
- delivery.Notifier interface decouples handlers from engine; fx wires
*Engine as Notifier
No more periodic polling. No more wasted cycles when idle.
Split data storage into main application DB (config only) and
per-webhook event databases (one SQLite file per webhook).
Architecture changes:
- New WebhookDBManager component manages per-webhook DB lifecycle
(create, open, cache, delete) with lazy connection pooling via sync.Map
- Main DB (DBURL) stores only config: Users, Webhooks, Entrypoints,
Targets, APIKeys
- Per-webhook DBs (DATA_DIR) store Events, Deliveries, DeliveryResults
in files named events-{webhook_uuid}.db
- New DATA_DIR env var (default: ./data dev, /data/events prod)
Behavioral changes:
- Webhook creation creates per-webhook DB file
- Webhook deletion hard-deletes per-webhook DB file (config soft-deleted)
- Event ingestion writes to per-webhook DB, not main DB
- Delivery engine polls all per-webhook DBs for pending deliveries
- Database target type marks delivery as immediately successful (events
are already in the dedicated per-webhook DB)
- Event log UI reads from per-webhook DBs with targets from main DB
- Existing webhooks without DB files get them created lazily
Removed:
- ArchivedEvent model (was a half-measure, replaced by per-webhook DBs)
- Event/Delivery/DeliveryResult removed from main DB migrations
Added:
- Comprehensive tests for WebhookDBManager (create, delete, lazy
creation, delivery workflow, multiple webhooks, close all)
- Dockerfile creates /data/events directory
README updates:
- Per-webhook event databases documented as implemented (was Phase 2)
- DATA_DIR added to configuration table
- Docker instructions updated with data volume mount
- Data model diagram updated
- TODO updated (database separation moved to completed)
Closes#15
The "database" target type now writes events to a separate
archived_events table instead of just marking the delivery as done.
This table persists independently of internal event retention/pruning,
allowing the data to be consumed by external systems or preserved
indefinitely.
New ArchivedEvent model copies the full event payload (method, headers,
body, content_type) along with webhook/entrypoint/event/target IDs.
Store the *database.Database wrapper instead of calling .DB() eagerly
at construction time. The GORM *gorm.DB is only available after the
database's OnStart hook runs, but the engine constructor runs during
fx resolution (before OnStart). Accessing .DB() lazily via the wrapper
avoids the nil pointer panic.