Files
webhooker/internal/handlers/webhook.go
sneak 88e283f728
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check / check (push) Failing after 2m31s
Add optional inbound webhook signature verification (closes #67)
A receiver URL was a bare v4 UUID and nothing else: anyone who learned
it could store events and, because inbound headers are forwarded to
targets almost verbatim, choose what the downstream service received.

Entrypoints gain an optional scheme/secret pair. GitHub's
X-Hub-Signature-256 (HMAC-SHA256 hex over the raw body) and GitLab's
X-Gitlab-Token (plain shared token) are supported; both compare with
hmac.Equal. With nothing configured an entrypoint behaves exactly as
before, which is also where every pre-existing row lands after
AutoMigrate adds the columns.

Verification runs after the capped body read and before the first
write, so a rejected request leaves no event row, no delivery row and
no delivery task. A configuration the receiver cannot apply — unknown
scheme, or one half of the pair missing — is refused with a 500 rather
than falling back to unverified.

The secret is credential-bearing and is stored in the clear because
HMAC needs the key itself. It is excluded from JSON, kept out of
templates by a new handlers.EntrypointView projection, and absent from
every log line including the rejection path. The UI sets and rotates
it through one form that never renders the stored value.

Under the GitLab scheme the signature header is the secret rather than
a digest over the request, so an accepted request's headers are cloned
and the configured scheme's credential header dropped before they are
serialized onto the event. Stored headers are persisted verbatim in
the per-webhook database and replayed onto every outbound delivery, so
keeping the token would put it in every backup and hand every target
operator the means to forge signed requests to the entrypoint it
authenticates. Stripping sits once above the first write rather than
at each egress, and is driven by the scheme's own description with
stripping as the default: a scheme added later is covered unless it
declares its header a digest, as GitHub's HMAC over the body does.

An entrypoint holding one half of the pair now renders as
misconfigured rather than as unverified, and the scheme selector
follows the stored scheme so such a row no longer marks two options
selected.
2026-08-20 05:26:07 +00:00

445 lines
11 KiB
Go

package handlers
import (
"encoding/json"
"errors"
"io"
"net/http"
"github.com/go-chi/chi"
"gorm.io/gorm"
"sneak.berlin/go/webhooker/internal/database"
"sneak.berlin/go/webhooker/internal/delivery"
"sneak.berlin/go/webhooker/internal/logfield"
"sneak.berlin/go/webhooker/internal/signature"
)
const (
// maxWebhookBodySize is the maximum allowed webhook
// request body (1 MB).
maxWebhookBodySize = 1 << maxBodyShift
)
// HandleWebhook handles incoming webhook requests at entrypoint
// URLs.
func (h *Handlers) HandleWebhook() http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
if r.Method != http.MethodPost {
w.Header().Set("Allow", "POST")
http.Error(
w,
"Method Not Allowed",
http.StatusMethodNotAllowed,
)
return
}
entrypointUUID := chi.URLParam(r, "uuid")
if entrypointUUID == "" {
http.NotFound(w, r)
return
}
entrypoint, ok := h.lookupEntrypoint(
w, r, entrypointUUID,
)
if !ok {
return
}
// Logged only once the UUID is known to name a real
// entrypoint. The UUID comes straight out of the path on
// the one unauthenticated endpoint, so logging it before
// the lookup let a client write an INFO line per invented
// path; the request itself is already in the access log
// and a miss is already logged at DEBUG.
h.log.Info("webhook request received",
"entrypoint_uuid", entrypointUUID,
"method", r.Method,
"remote_addr", r.RemoteAddr,
)
if !entrypoint.Active {
http.Error(w, "Gone", http.StatusGone)
return
}
h.processWebhookRequest(w, r, entrypoint)
}
}
// processWebhookRequest reads the body, verifies the sender,
// serializes headers, loads targets, and delivers the event.
func (h *Handlers) processWebhookRequest(
w http.ResponseWriter,
r *http.Request,
entrypoint database.Entrypoint,
) {
body, ok := h.readWebhookBody(w, r)
if !ok {
return
}
// Before anything is written. An unverified request must leave no
// event row, no delivery row and no delivery task behind, so this
// sits above every write rather than inside the transaction that
// performs them. It has to sit below the body read because the
// signature is computed over the body; readWebhookBody is what
// bounds that read, so an unauthenticated sender still cannot make
// the process hold more than the 1 MB cap.
if !h.verifyInboundSignature(w, entrypoint, r.Header, body) {
return
}
// These headers are about to be stored verbatim and handed to
// every delivery target, so the scheme's credential comes out
// first. Under GitLab's scheme the header is the shared secret
// itself, and leaving it in would hand the ability to forge
// signed requests to exactly the parties the signature is meant
// to exclude.
headersJSON, err := json.Marshal(
signature.SanitizeHeaders(&entrypoint, r.Header),
)
if err != nil {
h.serverError(w, "failed to serialize headers", err)
return
}
targets, err := h.loadActiveTargets(entrypoint.WebhookID)
if err != nil {
h.serverError(w, "failed to query targets", err)
return
}
h.createAndDeliverEvent(
w, r, entrypoint, body, headersJSON, targets,
)
}
// verifyInboundSignature authenticates the request against the
// entrypoint's configured secret, reporting false once it has written
// the response.
//
// An entrypoint with no secret configured is not checked and this
// returns true, which is the unchanged behaviour every existing
// entrypoint keeps.
//
// A configuration that cannot be applied — an unknown scheme, or one
// half of the pair missing — is a 500, not a 401: the request may well
// be authentic, and calling it unauthorized would tell a legitimate
// sender to go fix its own signing. Either way it is refused. Failing
// open here would mean an entrypoint the operator has protected
// quietly accepting anything.
func (h *Handlers) verifyInboundSignature(
w http.ResponseWriter,
entrypoint database.Entrypoint,
header http.Header,
body []byte,
) bool {
err := signature.Verify(&entrypoint, header, body)
if err == nil {
return true
}
if errors.Is(err, signature.ErrConfig) {
h.log.Error(
"entrypoint signature configuration cannot be applied",
"entrypoint_id", entrypoint.ID,
"webhook_id", entrypoint.WebhookID,
"error", err,
)
http.Error(
w, "Internal server error",
http.StatusInternalServerError,
)
return false
}
// Every field here is bounded and none is client-chosen: the ids
// are ours, the scheme is one of a fixed set, and the error is a
// static string carrying no part of the secret or of what the
// client presented. Reaching this line also requires a real
// entrypoint UUID, so it is not a line a stranger can drive.
h.log.Warn(
"inbound signature verification failed",
"entrypoint_id", entrypoint.ID,
"webhook_id", entrypoint.WebhookID,
"scheme", string(entrypoint.SignatureScheme),
"error", err,
)
http.Error(w, "Unauthorized", http.StatusUnauthorized)
return false
}
// loadActiveTargets returns all active targets for a webhook.
func (h *Handlers) loadActiveTargets(
webhookID string,
) ([]database.Target, error) {
var targets []database.Target
err := h.db.DB().Where(
"webhook_id = ? AND active = ?",
webhookID, true,
).Find(&targets).Error
return targets, err
}
// lookupEntrypoint finds an entrypoint by UUID path.
func (h *Handlers) lookupEntrypoint(
w http.ResponseWriter,
r *http.Request,
entrypointUUID string,
) (database.Entrypoint, bool) {
var entrypoint database.Entrypoint
result := h.db.DB().Where(
"path = ?", entrypointUUID,
).First(&entrypoint)
if result.Error != nil {
// The receiver is unauthenticated and /webhook/{uuid}
// matches any single segment, so this value is entirely
// client-chosen on exactly the branch where the lookup
// failed. DEBUG is off by default; the cap is what keeps
// turning it on from restoring an unbounded write.
h.log.Debug(
"entrypoint not found",
"path", logfield.Truncate(
entrypointUUID, logfield.MaxBytes,
),
)
http.NotFound(w, r)
return entrypoint, false
}
return entrypoint, true
}
// readWebhookBody reads and validates the request body size.
func (h *Handlers) readWebhookBody(
w http.ResponseWriter,
r *http.Request,
) ([]byte, bool) {
body, err := io.ReadAll(
io.LimitReader(r.Body, maxWebhookBodySize+1),
)
if err != nil {
h.log.Error(
"failed to read request body", "error", err,
)
http.Error(
w, "Bad request", http.StatusBadRequest,
)
return nil, false
}
if len(body) > maxWebhookBodySize {
http.Error(
w,
"Request body too large",
http.StatusRequestEntityTooLarge,
)
return nil, false
}
return body, true
}
// createAndDeliverEvent creates the event and delivery records
// then notifies the delivery engine.
func (h *Handlers) createAndDeliverEvent(
w http.ResponseWriter,
r *http.Request,
entrypoint database.Entrypoint,
body, headersJSON []byte,
targets []database.Target,
) {
tx, err := h.beginWebhookTx(w, entrypoint.WebhookID)
if err != nil {
return
}
event := h.buildEvent(r, entrypoint, headersJSON, body)
err = tx.Create(event).Error
if err != nil {
tx.Rollback()
h.serverError(w, "failed to create event", err)
return
}
bodyPtr := inlineBody(body)
tasks := h.buildDeliveryTasks(
w, tx, event, entrypoint, targets, bodyPtr,
)
if tasks == nil {
return
}
err = tx.Commit().Error
if err != nil {
h.serverError(w, "failed to commit transaction", err)
return
}
// Counted here, after the commit: an event is received once it
// is durably stored, which is what the delivery counters are
// compared against on a dashboard.
h.mtr.EventReceived()
h.finishWebhookResponse(w, event, entrypoint, tasks)
}
// beginWebhookTx opens a transaction on the per-webhook DB.
func (h *Handlers) beginWebhookTx(
w http.ResponseWriter,
webhookID string,
) (*gorm.DB, error) {
webhookDB, err := h.dbMgr.GetDB(webhookID)
if err != nil {
h.serverError(
w, "failed to get webhook database", err,
)
return nil, err
}
tx := webhookDB.Begin()
if tx.Error != nil {
h.serverError(
w, "failed to begin transaction", tx.Error,
)
return nil, tx.Error
}
return tx, nil
}
// inlineBody returns a pointer to body as a string if it fits
// within the inline size limit, or nil otherwise.
func inlineBody(body []byte) *string {
if len(body) < delivery.MaxInlineBodySize {
s := string(body)
return &s
}
return nil
}
// finishWebhookResponse notifies the delivery engine, logs the
// event, and writes the HTTP response.
func (h *Handlers) finishWebhookResponse(
w http.ResponseWriter,
event *database.Event,
entrypoint database.Entrypoint,
tasks []delivery.Task,
) {
if len(tasks) > 0 {
h.notifier.Notify(tasks)
}
h.log.Info("webhook event created",
"event_id", event.ID,
"webhook_id", entrypoint.WebhookID,
"entrypoint_id", entrypoint.ID,
"target_count", len(tasks),
)
w.WriteHeader(http.StatusOK)
_, err := w.Write([]byte(`{"status":"ok"}`))
if err != nil {
h.log.Error(
"failed to write response", "error", err,
)
}
}
// buildEvent creates a new Event struct from request data.
func (h *Handlers) buildEvent(
r *http.Request,
entrypoint database.Entrypoint,
headersJSON, body []byte,
) *database.Event {
return &database.Event{
WebhookID: entrypoint.WebhookID,
EntrypointID: entrypoint.ID,
Method: r.Method,
Headers: string(headersJSON),
Body: string(body),
ContentType: r.Header.Get("Content-Type"),
}
}
// buildDeliveryTasks creates delivery records in the
// transaction and returns tasks for the delivery engine.
// Returns nil if an error occurred.
func (h *Handlers) buildDeliveryTasks(
w http.ResponseWriter,
tx *gorm.DB,
event *database.Event,
entrypoint database.Entrypoint,
targets []database.Target,
bodyPtr *string,
) []delivery.Task {
tasks := make([]delivery.Task, 0, len(targets))
for i := range targets {
dlv := &database.Delivery{
EventID: event.ID,
TargetID: targets[i].ID,
Status: database.DeliveryStatusPending,
}
err := tx.Create(dlv).Error
if err != nil {
tx.Rollback()
h.log.Error(
"failed to create delivery",
"target_id", targets[i].ID,
"error", err,
)
http.Error(
w, "Internal server error",
http.StatusInternalServerError,
)
return nil
}
tasks = append(tasks, delivery.Task{
DeliveryID: dlv.ID,
EventID: event.ID,
WebhookID: entrypoint.WebhookID,
EntrypointID: entrypoint.ID,
TargetID: targets[i].ID,
TargetName: targets[i].Name,
TargetType: targets[i].Type,
TargetConfig: targets[i].Config,
MaxRetries: targets[i].MaxRetries,
Method: event.Method,
Headers: event.Headers,
ContentType: event.ContentType,
Body: bodyPtr,
AttemptNum: 1,
})
}
return tasks
}