//go:build test package webhooks import ( "bytes" "context" "crypto/hmac" "crypto/sha256" "encoding/base64" "encoding/json" "fmt" "log" "net/http" "net/http/httptest" "os" "strings" "testing" "time" "unicode/utf8" "crussell/db" "github.com/jackc/pgx/v5/pgxpool" ) // ============================================================================= // Unit tests — verifySquareSignature (pure function) // ============================================================================= func TestVerifySquareSignature_ValidSignature(t *testing.T) { t.Parallel() body := []byte(`{"type":"payment.updated","event_id":"evt_1"}`) key := "test-signing-key" notificationURL := "http://localhost:8080/webhooks/square" payload := notificationURL + string(body) mac := hmac.New(sha256.New, []byte(key)) mac.Write([]byte(payload)) expectedSig := base64.StdEncoding.EncodeToString(mac.Sum(nil)) if !verifySquareSignature(body, expectedSig, key, notificationURL) { t.Error("expected valid signature to verify") } } func TestVerifySquareSignature_InvalidSignature(t *testing.T) { t.Parallel() body := []byte(`{"type":"payment.updated"}`) key := "test-signing-key" notificationURL := "http://localhost:8080/webhooks/square" if verifySquareSignature(body, "invalid-signature", key, notificationURL) { t.Error("expected invalid signature to fail") } } func TestVerifySquareSignature_WrongKey(t *testing.T) { t.Parallel() body := []byte(`{"type":"payment.updated"}`) notificationURL := "http://localhost:8080/webhooks/square" payload := notificationURL + string(body) mac := hmac.New(sha256.New, []byte("correct-key")) mac.Write([]byte(payload)) sig := base64.StdEncoding.EncodeToString(mac.Sum(nil)) // Verify with a different key if verifySquareSignature(body, sig, "wrong-key", notificationURL) { t.Error("expected wrong key to produce failing verification") } } func TestVerifySquareSignature_EmptyBody(t *testing.T) { t.Parallel() key := "test-signing-key" notificationURL := "http://localhost:8080/webhooks/square" payload := notificationURL + string([]byte{}) mac := hmac.New(sha256.New, []byte(key)) mac.Write([]byte(payload)) expectedSig := base64.StdEncoding.EncodeToString(mac.Sum(nil)) if !verifySquareSignature([]byte{}, expectedSig, key, notificationURL) { t.Error("expected empty body verification to succeed with matching signature") } } func TestVerifySquareSignature_TamperedBody(t *testing.T) { t.Parallel() body := []byte(`{"type":"payment.updated","event_id":"evt_1"}`) key := "test-signing-key" notificationURL := "http://localhost:8080/webhooks/square" payload := notificationURL + string(body) mac := hmac.New(sha256.New, []byte(key)) mac.Write([]byte(payload)) sig := base64.StdEncoding.EncodeToString(mac.Sum(nil)) // Verify with a tampered body tamperedBody := []byte(`{"type":"payment.updated","event_id":"evt_2"}`) if verifySquareSignature(tamperedBody, sig, key, notificationURL) { t.Error("expected tampered body to fail verification") } } func TestTruncateDisputeReason_RuneSafe(t *testing.T) { // 191 ASCII bytes + a 4-byte emoji: byte-slicing at 192 would split the // emoji into an incomplete rune (invalid UTF-8). Rune-safe truncation must // keep the whole emoji and stay valid UTF-8. edge := strings.Repeat("a", 191) + "\U0001F600" got := truncateDisputeReason(edge) if !utf8.ValidString(got) { t.Errorf("expected valid UTF-8 after truncation, got %q", got) } if !strings.HasSuffix(got, "\U0001F600") { t.Errorf("expected the 4-byte rune to be preserved intact, got %q", got) } if len(got) != 195 { // 191 ASCII + 4-byte emoji t.Errorf("expected 195 bytes (191 ASCII + 4-byte emoji), got %d", len(got)) } // An over-long multi-byte reason truncates to exactly 192 runes. got = truncateDisputeReason(strings.Repeat("界", 300)) if r := []rune(got); len(r) != 192 { t.Errorf("expected exactly 192 runes after truncation, got %d", len(r)) } if !utf8.ValidString(got) { t.Errorf("expected valid UTF-8 after truncation, got %q", got) } // Short and ASCII reasons pass through untouched. if got := truncateDisputeReason("NO_KNOWLEDGE"); got != "NO_KNOWLEDGE" { t.Errorf("expected short reason unchanged, got %q", got) } } // ============================================================================= // Integration tests — HandleSquareWebhook // ============================================================================= func makeWebhookRequest(body []byte, signature string, ctx context.Context) *httptest.ResponseRecorder { w := httptest.NewRecorder() req := httptest.NewRequest("POST", "/webhooks/square", bytes.NewReader(body)) req = req.WithContext(ctx) req.Header.Set("Content-Type", "application/json") if signature != "" { req.Header.Set("x-square-hmacsha256-signature", signature) } HandleSquareWebhook(w, req) return w } // makeWebhookRequestWithEnv is makeWebhookRequest plus an explicit // square-environment header (Square sends one on every real delivery). func makeWebhookRequestWithEnv(body []byte, signature, env string, ctx context.Context) *httptest.ResponseRecorder { w := httptest.NewRecorder() req := httptest.NewRequest("POST", "/webhooks/square", bytes.NewReader(body)) req = req.WithContext(ctx) req.Header.Set("Content-Type", "application/json") if signature != "" { req.Header.Set("x-square-hmacsha256-signature", signature) } if env != "" { req.Header.Set("square-environment", env) } HandleSquareWebhook(w, req) return w } // webhookTestEnv sets a signing key and returns a valid signature for the body // (the fail-closed handler requires a verifiable signature on every request). func webhookTestEnv(t *testing.T, body []byte) (signature string) { t.Helper() tKey := "test-signing-key" tURL := "http://localhost:8080/webhooks/square" mac := hmac.New(sha256.New, []byte(tKey)) mac.Write([]byte(tURL)) mac.Write(body) t.Setenv("SQUARE_WEBHOOK_SIGNATURE_KEY", tKey) return base64.StdEncoding.EncodeToString(mac.Sum(nil)) } // countWebhookEvents returns how many dedup rows exist for an event_id. The // handler commits its dedup insert to the pool (no per-test transaction), so a // fresh query sees it. func countWebhookEvents(t *testing.T, eventID string) int { t.Helper() var n int if err := db.Conn.QueryRow(context.Background(), "SELECT COUNT(*) FROM square_webhook_events WHERE event_id = $1", eventID).Scan(&n); err != nil { t.Fatalf("failed to count square_webhook_events rows: %v", err) } return n } // testDBHost mirrors testdb.dbHost so the broken-pool test can reach the same // Postgres instance without importing testdb internals. func testDBHost() string { if h := os.Getenv("TEST_DB_HOST"); h != "" { return h } if h := os.Getenv("POSTGRES_HOST"); h != "" { return h } return "localhost" } func TestHandleSquareWebhook_PaymentUpdated(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_payment_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Errorf("expected 200, got %d. body: %s", w.Code, w.Body.String()) } if w.Body.String() != "ok" { t.Errorf("expected body 'ok', got %q", w.Body.String()) } } func TestHandleSquareWebhook_RefundUpdated(t *testing.T) { event := SquareWebhookEvent{ Type: "refund.updated", EventID: "evt_refund_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"refund_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Errorf("expected 200, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_DisputeCreated(t *testing.T) { event := SquareWebhookEvent{ Type: "dispute.created", EventID: "evt_dispute_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"dispute_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Errorf("expected 200 for dispute.created, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_UnknownEventType(t *testing.T) { event := SquareWebhookEvent{ Type: "invoice.created", EventID: "evt_unknown_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"inv_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Errorf("expected 200 for unknown event type, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_InvalidJSON(t *testing.T) { body := []byte(`{invalid json}`) sig := webhookTestEnv(t, body) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusBadRequest { t.Errorf("expected 400 for invalid JSON, got %d. body: %s", w.Code, w.Body.String()) } } // TestHandleSquareWebhook_EmptyEventID_Rejected verifies a signed event with an // empty event_id is rejected with 400 — fail-safe: no dispatch, no dedup row. // Square's retry policy treats 4xx as non-retryable, so the malformed event is // dropped without side effects. func TestHandleSquareWebhook_EmptyEventID_Rejected(t *testing.T) { body := []byte(`{"type":"payment.updated","event_id":"","data":{"id":"payment_empty_id"}}`) sig := webhookTestEnv(t, body) var buf bytes.Buffer oldOutput := log.Writer() log.SetOutput(&buf) defer log.SetOutput(oldOutput) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusBadRequest { t.Fatalf("expected 400 for empty event_id, got %d. body: %s", w.Code, w.Body.String()) } out := buf.String() if !strings.Contains(out, "Rejecting event with empty event_id (400)") { t.Errorf("expected empty event_id rejection log, got:\n%s", out) } if strings.Contains(out, "Received event: payment.updated") { t.Errorf("expected empty event_id to skip dispatch, got:\n%s", out) } // No dedup row may be written for an empty event_id. if n := countWebhookEvents(t, ""); n != 0 { t.Errorf("expected no dedup row for empty event_id, got %d", n) } } func TestHandleSquareWebhook_BodyTooLarge(t *testing.T) { // 600KB body exceeds the 512KB limit largeBody := []byte(strings.Repeat("a", 600*1024)) sig := webhookTestEnv(t, largeBody) w := makeWebhookRequest(largeBody, sig, context.Background()) if w.Code != http.StatusRequestEntityTooLarge { t.Errorf("expected 413 for oversized body, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_ValidSignatureWithEnvKey(t *testing.T) { body := []byte(`{"type":"payment.updated","event_id":"evt_1"}`) key := "env-signing-key" notificationURL := "http://localhost:8080/webhooks/square" payload := notificationURL + string(body) mac := hmac.New(sha256.New, []byte(key)) mac.Write([]byte(payload)) sig := base64.StdEncoding.EncodeToString(mac.Sum(nil)) t.Setenv("SQUARE_WEBHOOK_SIGNATURE_KEY", key) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Errorf("expected 200 with valid signature, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_InvalidSignatureWithEnvKey(t *testing.T) { body := []byte(`{"type":"payment.updated","event_id":"evt_1"}`) t.Setenv("SQUARE_WEBHOOK_SIGNATURE_KEY", "env-signing-key") w := makeWebhookRequest(body, "bad-signature", context.Background()) if w.Code != http.StatusForbidden { t.Errorf("expected 403 with invalid signature, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_NoSignatureWhenKeySet(t *testing.T) { body := []byte(`{"type":"payment.updated","event_id":"evt_1"}`) t.Setenv("SQUARE_WEBHOOK_SIGNATURE_KEY", "env-signing-key") // No x-square-signature header at all w := makeWebhookRequest(body, "", context.Background()) if w.Code != http.StatusForbidden { t.Errorf("expected 403 when signature key is set but header missing, got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_RejectedWhenKeyEmpty(t *testing.T) { t.Setenv("SQUARE_WEBHOOK_SIGNATURE_KEY", "") body := []byte(`{"type":"payment.updated","event_id":"evt_1"}`) // Fail-closed: an unset signing key means the webhook cannot be verified, // so the request is rejected rather than accepted with a bad signature. w := makeWebhookRequest(body, "some-signature", context.Background()) if w.Code != http.StatusServiceUnavailable { t.Errorf("expected 503 when no key configured (fail-closed), got %d. body: %s", w.Code, w.Body.String()) } } func TestHandleSquareWebhook_NoRawPayloadInLogs(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_pii_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_pii_1","buyer_email_address":"secret@example.com", "card_details":{"card":{"brand":"VISA","last_4":"1234","cardholder_name":"Jane Doe"}}}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) var buf bytes.Buffer oldOutput := log.Writer() log.SetOutput(&buf) defer log.SetOutput(oldOutput) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected 200, got %d. body: %s", w.Code, w.Body.String()) } out := buf.String() for _, pii := range []string{"secret@example.com", "VISA", "1234", "Jane Doe", "payment_pii_1_full"} { if strings.Contains(out, pii) { t.Errorf("log output leaked PII %q:\n%s", pii, out) } } if !strings.Contains(out, "data.id=payment_pii_1") { t.Errorf("expected log to include object id, got:\n%s", out) } if !strings.Contains(out, "Received event: payment.updated") { t.Errorf("expected log to reference event type, got:\n%s", out) } } // ============================================================================= // Dedup — event_id replay protection // ============================================================================= func TestHandleSquareWebhook_DuplicateEventID(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_http_dup_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_dup_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) // First delivery processes the event. w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected first delivery 200, got %d. body: %s", w.Code, w.Body.String()) } // Replay of the same signed event returns 200 but skips dispatch. w2 := makeWebhookRequest(body, sig, context.Background()) if w2.Code != http.StatusOK { t.Fatalf("expected replay 200, got %d. body: %s", w2.Code, w2.Body.String()) } if w2.Body.String() != "ok" { t.Errorf("expected replay body 'ok', got %q", w2.Body.String()) } // The persistent dedup row is written exactly once despite both deliveries. if n := countWebhookEvents(t, event.EventID); n != 1 { t.Errorf("expected exactly 1 persisted dedup row, got %d", n) } } func TestHandleSquareWebhook_DistinctEventIDs(t *testing.T) { for _, id := range []string{"evt_distinct_1", "evt_distinct_2"} { event := SquareWebhookEvent{ Type: "payment.updated", EventID: id, CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"p"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected 200 for %s, got %d. body: %s", id, w.Code, w.Body.String()) } } } func TestSquareWebhookDedup_FirstThenDuplicate(t *testing.T) { d := newSquareWebhookDedup(1000) if d.register("evt_dedup_1") { t.Error("expected first occurrence to register as new") } if !d.register("evt_dedup_1") { t.Error("expected second occurrence to register as duplicate") } } func TestSquareWebhookDedup_CapEvictsOldest(t *testing.T) { d := newSquareWebhookDedup(3) for i := 0; i < 3; i++ { if d.register(fmt.Sprintf("evt_cap_%d", i)) { t.Errorf("expected evt_cap_%d to register as new", i) } } // The 4th distinct ID pushes out the oldest (evt_cap_0). if d.register("evt_cap_3") { t.Errorf("expected evt_cap_3 to register as new") } // Survivors still dedupe (register returns true without mutating the set). for _, id := range []string{"evt_cap_1", "evt_cap_2", "evt_cap_3"} { if !d.register(id) { t.Errorf("expected %s to still be a duplicate", id) } } // The evicted ID is treated as new again. if d.register("evt_cap_0") { t.Errorf("expected evt_cap_0 to be evicted and treated as new") } } func TestSquareWebhookDedup_HasDoesNotRecord(t *testing.T) { d := newSquareWebhookDedup(3) if d.has("evt_has_1") { t.Error("expected has() on empty set to return false") } if d.register("evt_has_1") { t.Error("expected first register to report new") } if !d.has("evt_has_1") { t.Error("expected has() to observe a registered id") } } // TestHandleSquareWebhook_DedupDispatchOnce verifies the handler body runs // exactly once across a delivery + replay, with a single persisted dedup row. func TestHandleSquareWebhook_DedupDispatchOnce(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_dispatch_once_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_dispatch_once_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) var buf bytes.Buffer oldOutput := log.Writer() log.SetOutput(&buf) defer log.SetOutput(oldOutput) w1 := makeWebhookRequest(body, sig, context.Background()) if w1.Code != http.StatusOK { t.Fatalf("expected first delivery 200, got %d. body: %s", w1.Code, w1.Body.String()) } w2 := makeWebhookRequest(body, sig, context.Background()) if w2.Code != http.StatusOK { t.Fatalf("expected replay 200, got %d. body: %s", w2.Code, w2.Body.String()) } if w2.Body.String() != "ok" { t.Errorf("expected replay body 'ok', got %q", w2.Body.String()) } out := buf.String() if got := strings.Count(out, "Received event: payment.updated"); got != 1 { t.Errorf("expected dispatch to run exactly once, saw %d 'Received event' log lines:\n%s", got, out) } if n := countWebhookEvents(t, event.EventID); n != 1 { t.Errorf("expected exactly 1 persisted dedup row, got %d", n) } } // TestHandleSquareWebhook_DedupPersistsAcrossRestart simulates a restart: the // event was handled by a previous process whose in-memory cache is gone, but // the dedup row survived in the DB. The dedup row now commits AFTER dispatch // (at-least-once delivery), so a replayed delivery is re-dispatched — the // idempotent status-guarded handlers are a no-op the second time — and is // acknowledged 200 without duplicating the persisted dedup row. func TestHandleSquareWebhook_DedupPersistsAcrossRestart(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_restart_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_restart_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) if _, err := db.Conn.Exec(context.Background(), "INSERT INTO square_webhook_events (event_id) VALUES ($1) ON CONFLICT (event_id) DO NOTHING", event.EventID); err != nil { t.Fatalf("failed to seed dedup row: %v", err) } var buf bytes.Buffer oldOutput := log.Writer() log.SetOutput(&buf) defer log.SetOutput(oldOutput) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected 200 for replayed event, got %d. body: %s", w.Code, w.Body.String()) } if w.Body.String() != "ok" { t.Errorf("expected body 'ok', got %q", w.Body.String()) } if out := buf.String(); !strings.Contains(out, "Received event: payment.updated") { t.Errorf("expected replayed event to be re-dispatched (at-least-once), got:\n%s", out) } if n := countWebhookEvents(t, event.EventID); n != 1 { t.Errorf("expected still exactly 1 dedup row, got %d", n) } } // TestHandleSquareWebhook_DedupInsertFails_FailsClosed verifies the handler // rejects (503) when the dedup INSERT cannot be persisted, so Square retries. func TestHandleSquareWebhook_DedupInsertFails_FailsClosed(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_db_down_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_db_down_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) orig := db.Conn defer func() { db.Conn = orig }() // A pool whose database does not exist fails every Exec — simulating a DB // that is unreachable or down. badDSN := fmt.Sprintf("postgres://myuser:mypassword@%s:5432/crussell_test_webhooks_nonexistent?sslmode=disable", testDBHost()) badPool, err := pgxpool.New(context.Background(), badDSN) if err != nil { t.Fatalf("failed to create broken pool: %v", err) } defer badPool.Close() db.Conn = db.NewPoolProxy(badPool) w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusServiceUnavailable { t.Fatalf("expected 503 when dedup write fails, got %d. body: %s", w.Code, w.Body.String()) } } // TestHandleSquareWebhook_DedupNilConn_FailsClosed verifies the handler also // rejects (503) when the DB was never wired at all (defensive fail-closed). func TestHandleSquareWebhook_DedupNilConn_FailsClosed(t *testing.T) { event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_nil_conn_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_nil_conn_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) orig := db.Conn db.Conn = nil defer func() { db.Conn = orig }() w := makeWebhookRequest(body, sig, context.Background()) if w.Code != http.StatusServiceUnavailable { t.Fatalf("expected 503 when DB is not wired, got %d. body: %s", w.Code, w.Body.String()) } } // ============================================================================= // square-environment header validation (finding a) // ============================================================================= // TestHandleSquareWebhook_EnvMismatch_Rejected verifies fail-closed behavior: a // correctly-signed event carrying a square-environment header that contradicts // the configured SQUARE_ENVIRONMENT (e.g. a sandbox subscription mis-pointed at // the production URL + key) is rejected with 403. 403 is correct here because // the mismatch is a permanent configuration error — Square treats 4xx as // non-retryable, so the retry loop stops instead of hammering a condition no // retry can fix. No dispatch and no dedup row. func TestHandleSquareWebhook_EnvMismatch_Rejected(t *testing.T) { t.Setenv("SQUARE_ENVIRONMENT", "production") event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_env_mismatch_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_env_mismatch_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequestWithEnv(body, sig, "sandbox", context.Background()) if w.Code != http.StatusForbidden { t.Fatalf("expected 403 on environment mismatch, got %d. body: %s", w.Code, w.Body.String()) } if n := countWebhookEvents(t, event.EventID); n != 0 { t.Errorf("expected no dedup row for a rejected event, got %d", n) } } // TestHandleSquareWebhook_EnvMatch_Accepted verifies a matching environment // header passes the check and dispatches normally. func TestHandleSquareWebhook_EnvMatch_Accepted(t *testing.T) { t.Setenv("SQUARE_ENVIRONMENT", "production") event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_env_match_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_env_match_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequestWithEnv(body, sig, "production", context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected 200 on matching environment, got %d. body: %s", w.Code, w.Body.String()) } if n := countWebhookEvents(t, event.EventID); n != 1 { t.Errorf("expected 1 dedup row after successful dispatch, got %d", n) } } // TestHandleSquareWebhook_EnvHeaderAbsent_Allowed verifies an absent header is // allowed through (local mock/dev posting), even in an enforced deployment — // the signature check remains the authentication gate. func TestHandleSquareWebhook_EnvHeaderAbsent_Allowed(t *testing.T) { t.Setenv("SQUARE_ENVIRONMENT", "production") event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_env_absent_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_env_absent_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequestWithEnv(body, sig, "", context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected 200 when the environment header is absent, got %d. body: %s", w.Code, w.Body.String()) } } // TestHandleSquareWebhook_EnvMismatch_DevNotEnforced verifies the header check // is NOT enforced when the configured SQUARE_ENVIRONMENT is a dev/mock value // (the same interpretation IsExplicitDevOrMockEnv uses elsewhere), so a header // carrying "sandbox" against an explicit "mock" config still dispatches. func TestHandleSquareWebhook_EnvMismatch_DevNotEnforced(t *testing.T) { t.Setenv("SQUARE_ENVIRONMENT", "mock") event := SquareWebhookEvent{ Type: "payment.updated", EventID: "evt_env_dev_1", CreatedAt: "2025-01-01T00:00:00Z", Data: json.RawMessage(`{"id":"payment_env_dev_1"}`), } body, _ := json.Marshal(event) sig := webhookTestEnv(t, body) w := makeWebhookRequestWithEnv(body, sig, "sandbox", context.Background()) if w.Code != http.StatusOK { t.Fatalf("expected 200 in dev mode (check not enforced), got %d. body: %s", w.Code, w.Body.String()) } } // ============================================================================= // Bounded post-dispatch DB contexts (finding b) // ============================================================================= // TestWebhookDBContext_HasTimeout verifies webhookDBContext returns a // Background-derived context with a deadline, so a hung DB call cannot hold a // pgx pool connection forever while still surviving a client disconnect. func TestWebhookDBContext_HasTimeout(t *testing.T) { ctx, cancel := webhookDBContext() defer cancel() deadline, ok := ctx.Deadline() if !ok { t.Fatal("expected webhookDBContext to carry a deadline") } if remaining := time.Until(deadline); remaining <= 0 || remaining > webhookDBTimeout { t.Errorf("expected remaining budget within (0, %v], got %v", webhookDBTimeout, remaining) } if got := ctx.Err(); got != nil { t.Errorf("expected a fresh context to be active, got %v", got) } }