Files
webhooker/internal/delivery/engine_integration_test.go
clawbot 20a050b49d
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Root background loops at context.Background() (closes #97)
The context fx hands an OnStart hook is derived with
context.WithTimeout(ctx, StartTimeout) — 15 seconds by default — and
is cancelled once the start phase ends. It is a start-phase context,
not an application-lifetime one. Two components derived their
long-lived loops from it and so stopped running roughly fifteen
seconds after boot.

Engine.start rooted the entire worker pool, restart recovery, and the
retry sweep in it. Every worker returned on ctx.Done() shortly after
startup, so the process kept receiving and persisting inbound events
while nothing at all forwarded them: deliveryCh filled up and started
logging "delivery channel full" with no consumer left. That is the
whole purpose of the application.

RetentionReaper.start had the same defect. With the default one-hour
RETENTION_SWEEP_INTERVAL the loop was cancelled forty-five minutes
before its first tick, so the reaper never ran a single sweep and
per-webhook event databases grew without bound.

Both now derive their loop context from context.Background(). Their
lifetime is bounded by OnStop, which already cancels and waits on the
WaitGroup, so shutdown is unchanged. Each hook registration moves into
a registerHooks method, the OnStart parameter is named _ so the trap
cannot be reintroduced by silencing an unused-parameter warning, and a
comment at each start explains why the hook context must not be used.
This matches the shape of the same fix applied to the archive sweeper.

The new lifecycle tests drive the genuine registered hooks with an
already-cancelled OnStart context and assert the loops still do work
afterwards — a task delivered, an expired event reaped. Reverting
either fix makes its pair of tests fail. Each component also gets a
shutdown test asserting OnStop cancels the loop and wg.Wait() returns
inside a bounded timeout, so the fix does not trade a startup bug for
a shutdown hang.

iWaitForStatus becomes iWaitForDelivered: every call site waits for
the delivered status, and the two added call sites pushed it past
unparam's threshold for reporting an always-identical argument.
2026-08-09 05:15:13 +00:00

1080 lines
20 KiB
Go

package delivery_test
import (
"context"
"database/sql"
"encoding/json"
"fmt"
"io"
"log/slog"
"net/http"
"net/http/httptest"
"os"
"path/filepath"
"strings"
"sync/atomic"
"testing"
"time"
"github.com/google/uuid"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
"gorm.io/driver/sqlite"
"gorm.io/gorm"
_ "modernc.org/sqlite"
"sneak.berlin/go/webhooker/internal/database"
"sneak.berlin/go/webhooker/internal/delivery"
)
// iSetup holds common integration test dependencies.
type iSetup struct {
MainDB *gorm.DB
DBMgr *database.WebhookDBManager
WebhookID string
WebhookDB *gorm.DB
Engine *delivery.Engine
}
func newISetup(t *testing.T) iSetup {
t.Helper()
mainDB := iMainDB(t)
dbMgr := iDBManager(t)
wID := uuid.New().String()
wDB := iSeedWebhookDB(t, dbMgr, wID)
return iSetup{
MainDB: mainDB,
DBMgr: dbMgr,
WebhookID: wID,
WebhookDB: wDB,
Engine: delivery.NewTestEngineWithDB(
database.NewTestDatabase(mainDB),
dbMgr,
slog.New(slog.NewTextHandler(
os.Stderr,
&slog.HandlerOptions{
Level: slog.LevelDebug,
},
)),
&http.Client{Timeout: 5 * time.Second},
2,
),
}
}
func iMainDB(t *testing.T) *gorm.DB {
t.Helper()
dbPath := filepath.Join(
t.TempDir(), "main-test.db",
)
dsn := fmt.Sprintf(
"file:%s?cache=shared&mode=rwc", dbPath,
)
sqlDB, err := sql.Open("sqlite", dsn)
require.NoError(t, err)
t.Cleanup(func() { _ = sqlDB.Close() })
db, err := gorm.Open(
sqlite.Dialector{Conn: sqlDB}, &gorm.Config{},
)
require.NoError(t, err)
require.NoError(t, db.AutoMigrate(
&database.Webhook{},
&database.Target{},
&database.User{},
&database.Setting{},
))
return db
}
func iDBManager(
t *testing.T,
) *database.WebhookDBManager {
t.Helper()
return database.NewTestWebhookDBManager(t.TempDir())
}
func iSeedWebhookDB(
t *testing.T,
mgr *database.WebhookDBManager,
webhookID string,
) *gorm.DB {
t.Helper()
db, err := mgr.GetDB(webhookID)
require.NoError(t, err)
return db
}
func iHTTPConfig(url string) string {
cfg := delivery.HTTPTargetConfig{URL: url}
data, err := json.Marshal(cfg)
if err != nil {
panic("failed to marshal HTTPTargetConfig")
}
return string(data)
}
func iEngine(
t *testing.T, workers int,
) *delivery.Engine {
t.Helper()
return delivery.NewTestEngine(
slog.New(slog.NewTextHandler(
os.Stderr,
&slog.HandlerOptions{Level: slog.LevelDebug},
)),
&http.Client{Timeout: 5 * time.Second},
workers,
)
}
// iSeedEvent creates a test event in the database.
func iSeedEvent(
t *testing.T,
db *gorm.DB,
webhookID, body string,
) database.Event {
t.Helper()
event := database.Event{
WebhookID: webhookID,
EntrypointID: uuid.New().String(),
Method: http.MethodPost,
Headers: `{}`,
Body: body,
ContentType: testContentType,
}
require.NoError(t, db.Create(&event).Error)
return event
}
// iSeedDelivery creates a test delivery record.
func iSeedDelivery(
t *testing.T,
db *gorm.DB,
eventID, targetID string,
status database.DeliveryStatus,
) database.Delivery {
t.Helper()
d := database.Delivery{
EventID: eventID,
TargetID: targetID,
Status: status,
}
require.NoError(t, db.Create(&d).Error)
return d
}
// iTask builds a delivery.Task for integration tests.
func iTask(
d database.Delivery,
event database.Event,
webhookID, targetID, name, config string,
maxRetries, attemptNum int,
body *string,
) delivery.Task {
return delivery.Task{
DeliveryID: d.ID,
EventID: event.ID,
WebhookID: webhookID,
TargetID: targetID,
TargetName: name,
TargetType: database.TargetTypeHTTP,
TargetConfig: config,
MaxRetries: maxRetries,
Method: event.Method,
Headers: event.Headers,
ContentType: event.ContentType,
Body: body,
AttemptNum: attemptNum,
}
}
// iAssertStatus checks the delivery status.
func iAssertStatus(
t *testing.T,
db *gorm.DB,
deliveryID string,
expected database.DeliveryStatus,
) {
t.Helper()
var updated database.Delivery
require.NoError(t, db.First(
&updated, "id = ?", deliveryID,
).Error)
assert.Equal(t, expected, updated.Status)
}
// --- processNewTask Tests ---
func TestProcessNewTask_InlineBody(t *testing.T) {
t.Parallel()
s := newISetup(t)
var received atomic.Bool
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, _ *http.Request) {
received.Store(true)
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"hello":"world"}`,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusPending,
)
bodyStr := event.Body
cfg := iHTTPConfig(ts.URL)
task := iTask(
d, event, s.WebhookID, targetID,
"test-target", cfg, 0, 1, &bodyStr,
)
s.Engine.ExportProcessNewTask(
context.TODO(), &task,
)
assert.True(t, received.Load())
iAssertStatus(t, s.WebhookDB, d.ID,
database.DeliveryStatusDelivered,
)
}
func TestProcessNewTask_LargeBody_FetchFromDB(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
largeBody := strings.Repeat(
"x", delivery.MaxInlineBodySize+100,
)
var receivedBody string
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, r *http.Request) {
body, _ := io.ReadAll(r.Body)
receivedBody = string(body)
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID, largeBody,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusPending,
)
cfg := iHTTPConfig(ts.URL)
task := iTask(
d, event, s.WebhookID, targetID,
"test-large", cfg, 0, 1, nil,
)
s.Engine.ExportProcessNewTask(
context.TODO(), &task,
)
assert.Equal(t, largeBody, receivedBody)
iAssertStatus(t, s.WebhookDB, d.ID,
database.DeliveryStatusDelivered,
)
}
func TestProcessNewTask_InvalidWebhookID(t *testing.T) {
t.Parallel()
s := newISetup(t)
task := delivery.Task{
DeliveryID: uuid.New().String(),
EventID: uuid.New().String(),
WebhookID: uuid.New().String(),
TargetID: uuid.New().String(),
TargetName: "test",
TargetType: database.TargetTypeHTTP,
TargetConfig: iHTTPConfig("http://localhost:9999"),
MaxRetries: 0,
Body: nil,
AttemptNum: 1,
}
s.Engine.ExportProcessNewTask(
context.TODO(), &task,
)
}
// --- processRetryTask Tests ---
func TestProcessRetryTask_SuccessfulRetry(t *testing.T) {
t.Parallel()
s := newISetup(t)
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, _ *http.Request) {
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"retry":"test"}`,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusRetrying,
)
bodyStr := event.Body
cfg := iHTTPConfig(ts.URL)
task := iTask(
d, event, s.WebhookID, targetID,
"retry-target", cfg, 5, 2, &bodyStr,
)
s.Engine.ExportProcessRetryTask(
context.TODO(), &task,
)
iAssertStatus(t, s.WebhookDB, d.ID,
database.DeliveryStatusDelivered,
)
}
func TestProcessRetryTask_SkipsNonRetryingDelivery(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"skip":"test"}`,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusDelivered,
)
bodyStr := event.Body
cfg := iHTTPConfig("http://localhost:1")
task := iTask(
d, event, s.WebhookID, targetID,
"skip-target", cfg, 5, 2, &bodyStr,
)
s.Engine.ExportProcessRetryTask(
context.TODO(), &task,
)
iAssertStatus(t, s.WebhookDB, d.ID,
database.DeliveryStatusDelivered,
)
}
func TestProcessRetryTask_LargeBody_FetchFromDB(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, _ *http.Request) {
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
largeBody := strings.Repeat(
"z", delivery.MaxInlineBodySize+50,
)
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID, largeBody,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusRetrying,
)
cfg := iHTTPConfig(ts.URL)
task := iTask(
d, event, s.WebhookID, targetID,
"retry-large", cfg, 5, 2, nil,
)
s.Engine.ExportProcessRetryTask(
context.TODO(), &task,
)
iAssertStatus(t, s.WebhookDB, d.ID,
database.DeliveryStatusDelivered,
)
}
// --- Worker Lifecycle Tests ---
func TestWorkerLifecycle_StartStop(t *testing.T) {
t.Parallel()
s := newISetup(t)
s.Engine.ExportStart()
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"lifecycle":"test"}`,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusPending,
)
bodyStr := event.Body
task := iTask(
d, event, s.WebhookID, targetID,
"lifecycle-test", "",
0, 1, &bodyStr,
)
task.TargetType = database.TargetTypeLog
s.Engine.Notify([]delivery.Task{task})
iWaitForDelivered(t, s.WebhookDB, d.ID)
s.Engine.ExportStop()
}
// iWaitForDelivered polls until the delivery reaches the
// delivered status.
func iWaitForDelivered(
t *testing.T,
db *gorm.DB,
deliveryID string,
) {
t.Helper()
require.Eventually(t, func() bool {
var d database.Delivery
err := db.First(
&d, "id = ?", deliveryID,
).Error
if err != nil {
return false
}
return d.Status == database.DeliveryStatusDelivered
}, 5*time.Second, 50*time.Millisecond)
}
func TestWorkerLifecycle_ProcessesRetryChannel(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, _ *http.Request) {
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"retry-chan":"test"}`,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusRetrying,
)
s.Engine.ExportStart()
bodyStr := event.Body
cfg := iHTTPConfig(ts.URL)
task := iTask(
d, event, s.WebhookID, targetID,
"retry-chan-test", cfg, 5, 2, &bodyStr,
)
s.Engine.ExportRetryCh() <- task
iWaitForDelivered(t, s.WebhookDB, d.ID)
s.Engine.ExportStop()
}
// --- processDelivery: unknown target type ---
func TestProcessDelivery_UnknownTargetType(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"unknown":"type"}`,
)
del := iSeedDelivery(
t, s.WebhookDB, event.ID,
uuid.New().String(),
database.DeliveryStatusPending,
)
d := &database.Delivery{
EventID: event.ID,
TargetID: del.TargetID,
Status: database.DeliveryStatusPending,
Event: event,
Target: database.Target{
Name: "unknown",
Type: database.TargetType("unknown"),
},
}
d.ID = del.ID
task := &delivery.Task{
DeliveryID: del.ID,
TargetType: database.TargetType("unknown"),
}
s.Engine.ExportProcessDelivery(
context.TODO(), s.WebhookDB, d, task,
)
iAssertStatus(t, s.WebhookDB, del.ID,
database.DeliveryStatusFailed,
)
}
// --- Recovery Tests ---
func TestRecoverPendingDeliveries(t *testing.T) {
t.Parallel()
s := newISetup(t)
targetID := uuid.New().String()
iCreateTarget(t, s.MainDB, targetID,
s.WebhookID, "recovery-target",
database.TargetTypeLog, "", 0,
)
iSeedPendingDeliveries(
t, s.WebhookDB, s.WebhookID, targetID, 3,
)
s.Engine.ExportRecoverPendingDeliveries(
context.Background(), s.WebhookDB,
s.WebhookID,
)
for i := range 3 {
select {
case task := <-s.Engine.ExportDeliveryCh():
assert.Equal(t, targetID, task.TargetID)
assert.Equal(t,
database.TargetTypeLog,
task.TargetType,
)
case <-time.After(2 * time.Second):
t.Fatalf("expected task %d", i)
}
}
}
// iCreateTarget creates a target in the main DB.
func iCreateTarget(
t *testing.T,
mainDB *gorm.DB,
targetID, webhookID, name string,
targetType database.TargetType,
config string,
maxRetries int,
) {
t.Helper()
target := database.Target{
WebhookID: webhookID,
Name: name,
Type: targetType,
Active: true,
Config: config,
MaxRetries: maxRetries,
}
target.ID = targetID
require.NoError(t, mainDB.Create(&target).Error)
}
// iSeedPendingDeliveries creates n pending deliveries.
func iSeedPendingDeliveries(
t *testing.T,
webhookDB *gorm.DB,
webhookID, targetID string,
n int,
) {
t.Helper()
for i := range n {
event := iSeedEvent(
t, webhookDB, webhookID,
fmt.Sprintf(`{"recovery":%d}`, i),
)
iSeedDelivery(
t, webhookDB, event.ID, targetID,
database.DeliveryStatusPending,
)
}
}
func TestRecoverWebhookDeliveries_RetryingDeliveries(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
targetID := uuid.New().String()
iCreateTarget(t, s.MainDB, targetID,
s.WebhookID, "retry-recovery",
database.TargetTypeHTTP,
iHTTPConfig("http://example.com/hook"), 5,
)
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"retry-recovery":"test"}`,
)
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusRetrying,
)
iSeedFailedResult(t, s.WebhookDB, d.ID)
iCreateWebhook(
t, s.MainDB, s.WebhookID, "test-webhook",
)
s.Engine.ExportRecoverWebhookDeliveries(
context.Background(), s.WebhookID,
)
select {
case task := <-s.Engine.ExportRetryCh():
assert.Equal(t, d.ID, task.DeliveryID)
assert.Equal(t, targetID, task.TargetID)
assert.Equal(t, 2, task.AttemptNum)
case <-time.After(5 * time.Second):
t.Fatal("expected retry task from recovery")
}
}
// iSeedFailedResult creates a failed delivery result.
func iSeedFailedResult(
t *testing.T,
db *gorm.DB,
deliveryID string,
) {
t.Helper()
result := database.DeliveryResult{
DeliveryID: deliveryID,
AttemptNum: 1,
Success: false,
StatusCode: 500,
Error: "server error",
}
require.NoError(t, db.Create(&result).Error)
}
// iCreateWebhook creates a webhook record in main DB.
func iCreateWebhook(
t *testing.T,
mainDB *gorm.DB,
webhookID, name string,
) {
t.Helper()
webhook := database.Webhook{
UserID: uuid.New().String(),
Name: name,
}
webhook.ID = webhookID
require.NoError(t, mainDB.Create(&webhook).Error)
}
// --- recoverInFlight Tests ---
func TestRecoverInFlight_NoWebhooks(t *testing.T) {
t.Parallel()
s := newISetup(t)
s.Engine.ExportRecoverInFlight(
context.Background(),
)
}
func TestRecoverInFlight_WithPendingDeliveries(
t *testing.T,
) {
t.Parallel()
s := newISetup(t)
targetID := uuid.New().String()
iCreateWebhook(
t, s.MainDB, s.WebhookID, "recover-test",
)
iCreateTarget(t, s.MainDB, targetID,
s.WebhookID, "recover-target",
database.TargetTypeLog, "", 0,
)
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"recover":"inflight"}`,
)
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusPending,
)
s.Engine.ExportRecoverInFlight(
context.Background(),
)
select {
case task := <-s.Engine.ExportDeliveryCh():
assert.Equal(t, d.ID, task.DeliveryID)
assert.Equal(t,
database.TargetTypeLog, task.TargetType,
)
case <-time.After(2 * time.Second):
t.Fatal("expected task from recoverInFlight")
}
}
// --- HTTP Config with custom headers ---
func TestDeliverHTTP_CustomTargetHeaders(t *testing.T) {
t.Parallel()
s := newISetup(t)
var receivedAuth string
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, r *http.Request) {
receivedAuth = r.Header.Get(
"Authorization",
)
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
cfg := delivery.HTTPTargetConfig{
URL: ts.URL,
Headers: map[string]string{
"Authorization": "Bearer secret-token",
},
}
cfgJSON, err := json.Marshal(cfg)
require.NoError(t, err)
event := iSeedEvent(
t, s.WebhookDB, s.WebhookID,
`{"auth":"test"}`,
)
targetID := uuid.New().String()
d := iSeedDelivery(
t, s.WebhookDB, event.ID, targetID,
database.DeliveryStatusPending,
)
bodyStr := event.Body
task := iTask(
d, event, s.WebhookID, targetID,
"auth-target", string(cfgJSON),
0, 1, &bodyStr,
)
s.Engine.ExportProcessNewTask(
context.TODO(), &task,
)
assert.Equal(t,
"Bearer secret-token", receivedAuth,
)
}
// --- HTTP delivery with custom timeout ---
func TestDeliverHTTP_TargetTimeout(t *testing.T) {
t.Parallel()
db := testWebhookDB(t)
e := iEngine(t, 1)
ts := httptest.NewServer(
http.HandlerFunc(
func(w http.ResponseWriter, _ *http.Request) {
time.Sleep(2 * time.Second)
w.WriteHeader(http.StatusOK)
},
),
)
defer ts.Close()
cfg := delivery.HTTPTargetConfig{
URL: ts.URL,
Timeout: 1,
}
cfgJSON, err := json.Marshal(cfg)
require.NoError(t, err)
event, del := iSeedEventAndDelivery(
t, db, `{"timeout":"test"}`,
string(cfgJSON),
)
task, d := iHTTPTaskAndDelivery(
event, del, "timeout-target",
string(cfgJSON), 0, 1,
)
e.ExportDeliverHTTP(context.TODO(), db, d, task)
iAssertStatus(t, db, del.ID,
database.DeliveryStatusFailed,
)
iAssertResultFailed(t, db, del.ID)
}
// iSeedEventAndDelivery creates event + delivery
// for standalone tests.
func iSeedEventAndDelivery(
t *testing.T,
db *gorm.DB,
body, _ string,
) (database.Event, database.Delivery) {
t.Helper()
event := database.Event{
WebhookID: uuid.New().String(),
EntrypointID: uuid.New().String(),
Method: http.MethodPost,
Headers: `{"Content-Type":["application/json"]}`,
Body: body,
ContentType: testContentType,
}
require.NoError(t, db.Create(&event).Error)
d := database.Delivery{
EventID: event.ID,
TargetID: uuid.New().String(),
Status: database.DeliveryStatusPending,
}
require.NoError(t, db.Create(&d).Error)
return event, d
}
// iHTTPTaskAndDelivery builds a task/delivery pair for
// standalone HTTP tests.
func iHTTPTaskAndDelivery(
event database.Event,
del database.Delivery,
name, config string,
maxRetries, attemptNum int,
) (*delivery.Task, *database.Delivery) {
task := &delivery.Task{
DeliveryID: del.ID,
EventID: event.ID,
WebhookID: event.WebhookID,
TargetID: del.TargetID,
TargetName: name,
TargetType: database.TargetTypeHTTP,
TargetConfig: config,
MaxRetries: maxRetries,
AttemptNum: attemptNum,
}
d := &database.Delivery{
EventID: event.ID,
TargetID: del.TargetID,
Status: database.DeliveryStatusPending,
Event: event,
Target: database.Target{
Name: name,
Type: database.TargetTypeHTTP,
Config: config,
},
}
d.ID = del.ID
return task, d
}
// iAssertResultFailed checks that a failed delivery
// result exists.
func iAssertResultFailed(
t *testing.T,
db *gorm.DB,
deliveryID string,
) {
t.Helper()
var result database.DeliveryResult
require.NoError(t, db.Where(
"delivery_id = ?", deliveryID,
).First(&result).Error)
assert.False(t, result.Success)
assert.NotEmpty(t, result.Error)
}
// --- HTTP request with invalid config ---
func TestDeliverHTTP_InvalidConfig(t *testing.T) {
t.Parallel()
db := testWebhookDB(t)
e := iEngine(t, 1)
event, del := iSeedEventAndDelivery(
t, db, `{"config":"invalid"}`, "",
)
task, d := iHTTPTaskAndDelivery(
event, del, "bad-config", `not-json`, 0, 1,
)
e.ExportDeliverHTTP(context.TODO(), db, d, task)
iAssertStatus(t, db, del.ID,
database.DeliveryStatusFailed,
)
}
// --- Notify batching ---
func TestNotify_MultipleTasks(t *testing.T) {
t.Parallel()
e := iEngine(t, 1)
tasks := make([]delivery.Task, 5)
for i := range tasks {
tasks[i] = delivery.Task{
DeliveryID: fmt.Sprintf("task-%d", i),
}
}
e.Notify(tasks)
for i := range 5 {
select {
case task := <-e.ExportDeliveryCh():
assert.Equal(t,
fmt.Sprintf("task-%d", i),
task.DeliveryID,
)
case <-time.After(time.Second):
t.Fatalf("expected task %d", i)
}
}
}