1use std::future::Future;
15use std::net::{IpAddr, SocketAddr};
16use std::sync::Arc;
17use std::time::Duration;
18
19use axum::body::Body;
20use axum::extract::{ConnectInfo, Path, Query, Request, State};
21use axum::http::{header, HeaderMap, HeaderName, HeaderValue, Method, StatusCode};
22use axum::response::{IntoResponse, Response};
23use axum::routing::{any, get, post, put};
24use axum::{Extension, Json, Router};
25use boatramp_core::access::{AccessConfig, BasicAuth};
26use boatramp_core::authz::{GrantedRole, TokenMeta};
27use boatramp_core::config::{DeployConfig, SiteConfig};
28use boatramp_core::cose::{self, Claims, Signer};
29use boatramp_core::deploy::{
30 DeployMetaInput, DeployStore, FileEntry, GcOptions, GcReport, Manifest,
31};
32use boatramp_core::matcher::Pattern;
33use boatramp_core::route::{self, Outcome};
34use boatramp_core::{DeployError, StorageError};
35use futures::StreamExt;
36use serde::{Deserialize, Serialize};
37
38mod admin_api;
39pub mod sql_shim;
40#[cfg(feature = "oidc")]
41pub(crate) use admin_api::auth_exchange;
42pub(crate) use admin_api::{
43 activate_deployment, cert_status, compute_dns, compute_dns_resolve, compute_exec, compute_ipam,
44 compute_netdiag, compute_reconcile, compute_restart, compute_set_health, compute_status,
45 create_deployment, current_deployment, delete_compute, delete_compute_volume,
46 delete_project_tenancy, delete_site, get_compute, get_daemon_config, get_deployment,
47 get_project_tenancy, get_site_config, invalidate_cache, list_aliases, list_compute,
48 list_compute_volumes, list_deployments, list_sites, prune_delete, prune_report, put_blob,
49 put_compute, put_daemon_config, put_project_tenancy, put_site_config, remove_alias,
50 rollback_daemon_config, scrub_blobs, set_alias, sql_exec, sql_ping, sql_query,
51};
52#[cfg(feature = "handlers")]
53pub(crate) use admin_api::{
54 delete_graphql_safelist, delete_graphql_subgraph, get_graphql_supergraph,
55 list_graphql_safelist, put_graphql_function_subgraph, put_graphql_sql_subgraph,
56 put_graphql_subgraph, register_graphql_safelist,
57};
58#[cfg(feature = "admin")]
60mod admin_controller;
61mod auth;
62#[cfg(feature = "console")]
63pub mod console;
64mod content;
65mod control_api;
66#[cfg(feature = "email")]
69mod email_spool;
70#[cfg(feature = "session")]
72mod session_driver;
73#[cfg(feature = "session")]
76mod session_store;
77#[cfg(feature = "admin")]
78pub use admin_controller::ServerAdminController;
79#[cfg(feature = "compression")]
80pub(crate) use content::maybe_compress;
81pub(crate) use content::multipart_byteranges;
82pub(crate) use content::{
83 negotiate_encoding, parse_ranges, response_headers, set_content_encoding, MAX_RANGES,
84};
85pub(crate) use control_api::{
86 add_root_anchor, auth_whoami, bootstrap_token, cluster_join, cluster_members, cluster_promote,
87 cluster_revoke, cluster_rotate_key, create_join_token, create_token, delete_email_profile,
88 delete_secret, get_authz_policy, list_email_profiles, list_root_anchors, list_secrets,
89 list_tokens, put_authz_policy, remove_root_anchor, revoke_token, set_email_profile, set_secret,
90 show_email_profile,
91};
92#[cfg(all(test, feature = "handlers"))]
93use control_api::{BootstrapRequest, CreateJoinTokenRequest, JoinRequest};
94#[cfg(feature = "email")]
95pub use email_spool::NodeEmailSpool;
96mod domain_verify;
97pub use domain_verify::{spawn_domain_verify_reconcile, verification_pending_page};
98pub mod envelope;
99#[cfg(feature = "handlers")]
100mod graphql_apq;
101#[cfg(feature = "handlers")]
102mod graphql_cache;
103#[cfg(feature = "handlers")]
104mod graphql_data;
105#[cfg(feature = "handlers")]
106mod graphql_federation;
107#[cfg(feature = "handlers")]
108mod graphql_gateway;
109#[cfg(feature = "handlers")]
110mod graphql_graphiql;
111#[cfg(feature = "handlers")]
112mod graphql_guard;
113#[cfg(feature = "handlers")]
114mod graphql_plan;
115#[cfg(feature = "handlers")]
116mod graphql_registry;
117#[cfg(feature = "handlers")]
118mod graphql_subscription;
119#[cfg(feature = "handlers")]
120mod handler_cache;
121#[cfg(feature = "handlers")]
122mod handler_dispatch;
123#[cfg(feature = "handlers")]
124pub(crate) use handler_dispatch::{
125 build_bindings, dispatch_consumer_batch, dispatch_handler, precheck_component, read_blob_bytes,
126 read_blob_fully, resolve_secret_env,
127};
128#[cfg(all(feature = "handlers", test))]
129use handler_dispatch::{resolve_env, set_forwarded_headers};
130mod function_api;
131pub(crate) use function_api::{
132 alias_function, deploy_function, list_functions, remove_function, rollback_function,
133};
134#[cfg(feature = "handlers")]
139pub use function_api::{
140 component_requires, host_capability_features, host_capability_features_detailed, unmet_requires,
141};
142#[cfg(all(test, feature = "handlers"))]
143use function_api::{AliasBody, DeployFunctionQuery, FunctionUpsert, RollbackBody};
144pub use function_api::{CapabilityFeature, Lifecycle};
147mod gateway;
148mod host;
149pub(crate) use host::{is_local_host, parse_deploy_host, strip_port};
150#[cfg(feature = "http3")]
151mod http3;
152mod limits;
153#[cfg(feature = "handlers")]
154mod logs;
155#[cfg(feature = "handlers")]
156mod metrics;
157#[cfg(feature = "oidc")]
158mod oidc;
159mod operator;
160pub(crate) use operator::prometheus_metrics;
161#[cfg(feature = "handlers")]
162pub(crate) use operator::{
163 operator_dlq, operator_function_logs, operator_function_logs_stream, operator_handler_stats,
164 operator_logs, operator_logs_stream,
165};
166mod proxy;
167pub use proxy::spawn_compute_reconcile;
168pub(crate) use proxy::{
169 await_warm, compute_endpoint_regions, compute_endpoints, dispatch_gateway, has_parked_replica,
170 proxy, COMPUTE_WAKE_TIMEOUT,
171};
172mod splice;
173mod http_serve;
176pub use http_serve::{
177 alpn_h1_h2, serve_plaintext, serve_plaintext_listener, serve_router_conn, serve_tls,
178 serve_tls_listener, ReloadableTls, ServeInput,
179};
180#[cfg(feature = "handlers")]
182pub(crate) use proxy::is_upgrade_request;
183#[cfg(all(test, feature = "handlers"))]
184use proxy::{gateway_addr_allowed, CLOUD_METADATA_IPV4};
185mod project_api;
186pub(crate) use project_api::{create_project, delete_project, get_project, list_projects};
187mod project_scope;
188pub(crate) use project_scope::{project_scope, OriginalPath, ProjectContext};
189mod ratelimit;
190mod routes;
191pub use routes::{router, router_with, router_with_fast};
192#[cfg(feature = "mcp")]
193mod mcp_http;
194#[cfg(feature = "handlers")]
195mod scheduler;
196mod serve_pipeline;
197#[cfg(feature = "handlers")]
198mod tenant_resolve;
199pub use serve_pipeline::{http_redirect_router, FastServe};
200#[cfg(test)]
201mod hotpath_test;
202#[cfg(all(test, feature = "handlers"))]
203use serve_pipeline::{apply_vary, parse_cookie_header, parse_query_string};
204pub(crate) use serve_pipeline::{
205 serve_bootstrap_identity, serve_by_host, serve_domain_challenge, serve_preview, serve_sites,
206 BootstrapAttestation,
207};
208pub mod signer;
211mod srvmetrics;
212#[cfg(all(feature = "handlers", test))]
213use scheduler::run_scheduler_tick;
214#[cfg(feature = "handlers")]
215pub(crate) use scheduler::{
216 acquire_site_permit, effective_limits, handler_error_response, handler_unavailable, CronNow,
217};
218#[cfg(feature = "handlers")]
219use scheduler::{CONSUMER_BATCH, CONSUMER_LEASE, CONSUMER_MAX_ATTEMPTS};
220#[cfg(feature = "handlers")]
221mod function_runtime;
222#[cfg(feature = "handlers")]
223pub(crate) use function_runtime::{
224 b64_decode, b64_encode, blob_storage_prefix, capture_response, delete_trigger_handler,
225 dispatch_function_triggers, drain_function_invocations, execute_function, get_function_usage,
226 get_invocation_record, invoke_function, list_triggers_handler, new_invocation_id,
227 put_trigger_handler, webhook_ingress,
228};
229#[cfg(feature = "session")]
233mod session_serve;
234#[cfg(feature = "handlers")]
235mod stream;
236#[cfg(feature = "handlers")]
237mod workflow;
238pub use auth::{require_auth, Auth};
239#[cfg(feature = "http3")]
240pub use http3::{
241 advertise_http3, http3_endpoint, quinn_server_config, serve_http3, serve_http3_endpoint,
242 Http3Error,
243};
244pub use limits::{ServerLimits, UploadGuard};
245#[cfg(feature = "oidc")]
246pub use oidc::{OidcConfig, OidcError, OidcVerifier};
247use ratelimit::{KvRateLimiter, RateLimitStore, RateLimiter};
248#[cfg(feature = "handlers")]
249pub(crate) use stream::{route_matches, serve_stream, serve_ws_stream};
250#[cfg(feature = "handlers")]
251pub(crate) use workflow::{
252 define_workflow, delete_workflow_handler, drain_workflow_runs, get_workflow_handler,
253 get_workflow_run_handler, list_workflows_handler, start_workflow_run,
254};
255pub use srvmetrics::{server_metrics, ServerMetrics};
258
259#[derive(Clone, Default)]
264pub struct HandlerRuntime {
265 #[cfg(feature = "handlers")]
266 inner: Option<Arc<HandlerRuntimeInner>>,
267}
268
269#[cfg(feature = "handlers")]
270struct HandlerRuntimeInner {
271 engine: boatramp_handlers::HandlerEngine,
272 async_drain_gate: Arc<tokio::sync::Semaphore>,
278 kv: Arc<dyn boatramp_core::kv::KvStore>,
279 storage: Arc<dyn boatramp_core::Storage>,
280 sql: Option<Arc<dyn boatramp_core::sql::SqlBackends>>,
284 messaging: Option<Arc<dyn boatramp_core::messaging::Messaging>>,
287 site_semaphores:
290 std::sync::Mutex<std::collections::HashMap<String, Arc<tokio::sync::Semaphore>>>,
291 stream_semaphores:
295 std::sync::Mutex<std::collections::HashMap<String, Arc<tokio::sync::Semaphore>>>,
296 stream_ip_counts: Arc<std::sync::Mutex<std::collections::HashMap<(String, IpAddr), u32>>>,
299 metrics: metrics::Metrics,
302 logs: Arc<logs::LogStore>,
304 #[cfg(feature = "handlers")]
308 graphql_cache: graphql_cache::GraphqlCache,
309 cron_leader_gate: std::sync::OnceLock<CronLeaderGate>,
315 max_blob_bytes: std::sync::OnceLock<u64>,
319 max_component_bytes: std::sync::OnceLock<u64>,
324 allow_env_secret_refs: std::sync::OnceLock<bool>,
333 require_tenancy_declaration: std::sync::OnceLock<bool>,
339 allow_cross_tenant_db: std::sync::OnceLock<bool>,
344 secret_store: std::sync::OnceLock<Arc<boatramp_core::secret_store::SecretStore>>,
350 function_meter_locks:
354 std::sync::Mutex<std::collections::HashMap<String, Arc<tokio::sync::Mutex<()>>>>,
355 function_semaphores:
358 std::sync::Mutex<std::collections::HashMap<String, Arc<tokio::sync::Semaphore>>>,
359 watch_provider: std::sync::OnceLock<Arc<dyn boatramp_core::blob_provision::WatchProvider>>,
364 provision_tier: std::sync::OnceLock<boatramp_core::blob_notify::ProvisionTier>,
368 invoker: std::sync::OnceLock<Arc<function_runtime::FunctionInvoker>>,
376 federation_runner: std::sync::OnceLock<Arc<graphql_gateway::FederationRunner>>,
381 #[cfg(feature = "email")]
386 email_profile_store: std::sync::OnceLock<Arc<boatramp_core::email_config::EmailProfileStore>>,
387 #[cfg(feature = "email")]
392 email_spool: std::sync::OnceLock<Arc<dyn boatramp_handlers::EmailSpool>>,
393 #[cfg(feature = "admin")]
397 admin_controller: std::sync::OnceLock<Arc<admin_controller::ServerAdminController>>,
398 #[cfg(feature = "admin")]
402 admin_surfaces:
403 std::sync::OnceLock<std::collections::BTreeSet<boatramp_handlers::AdminSurface>>,
404 #[cfg(feature = "session")]
411 session_store: std::sync::OnceLock<session_store::SessionStore>,
412 session_signer: std::sync::OnceLock<Arc<dyn Signer>>,
417 #[cfg(feature = "capability")]
423 capability_max_ttl_secs: std::sync::OnceLock<u64>,
424 #[cfg(feature = "handlers")]
429 tenancy_posture_overrides: std::sync::OnceLock<
430 Arc<std::collections::BTreeMap<String, boatramp_core::security::ResolvedProjectTenancy>>,
431 >,
432}
433
434#[cfg(feature = "handlers")]
435impl HandlerRuntimeInner {
436 pub(crate) fn project_tenancy_knobs(
442 &self,
443 project: &str,
444 ) -> boatramp_core::security::ResolvedProjectTenancy {
445 if let Some(map) = self.tenancy_posture_overrides.get() {
446 if let Some(knobs) = map.get(project) {
447 return *knobs;
448 }
449 }
450 boatramp_core::security::ResolvedProjectTenancy {
451 require_tenancy_declaration: self
452 .require_tenancy_declaration
453 .get()
454 .copied()
455 .unwrap_or(true),
456 allow_cross_tenant_db: self.allow_cross_tenant_db.get().copied().unwrap_or(false),
457 #[cfg(feature = "capability")]
458 capability_max_ttl_secs: self.capability_max_ttl_secs.get().copied(),
459 #[cfg(not(feature = "capability"))]
460 capability_max_ttl_secs: None,
461 }
462 }
463}
464
465pub type CronLeaderGate = Arc<dyn Fn() -> bool + Send + Sync>;
468
469impl HandlerRuntime {
470 pub fn disabled() -> Self {
472 Self::default()
473 }
474
475 #[cfg(feature = "handlers")]
481 pub fn new(
482 engine: boatramp_handlers::HandlerEngine,
483 kv: Arc<dyn boatramp_core::kv::KvStore>,
484 storage: Arc<dyn boatramp_core::Storage>,
485 sql: Option<Arc<dyn boatramp_core::sql::SqlBackends>>,
486 messaging: Option<Arc<dyn boatramp_core::messaging::Messaging>>,
487 ) -> Self {
488 let async_drain_slots = engine.async_max_concurrency().max(1);
491 Self {
492 inner: Some(Arc::new(HandlerRuntimeInner {
493 engine,
494 async_drain_gate: Arc::new(tokio::sync::Semaphore::new(async_drain_slots)),
495 kv,
496 storage,
497 sql,
498 messaging,
499 site_semaphores: std::sync::Mutex::new(std::collections::HashMap::new()),
500 stream_semaphores: std::sync::Mutex::new(std::collections::HashMap::new()),
501 stream_ip_counts: Arc::new(std::sync::Mutex::new(std::collections::HashMap::new())),
502 metrics: metrics::Metrics::default(),
503 logs: Arc::new(logs::LogStore::default()),
504 #[cfg(feature = "handlers")]
505 graphql_cache: graphql_cache::GraphqlCache::default(),
506 cron_leader_gate: std::sync::OnceLock::new(),
507 max_blob_bytes: std::sync::OnceLock::new(),
508 max_component_bytes: std::sync::OnceLock::new(),
509 allow_env_secret_refs: std::sync::OnceLock::new(),
510 require_tenancy_declaration: std::sync::OnceLock::new(),
511 allow_cross_tenant_db: std::sync::OnceLock::new(),
512 secret_store: std::sync::OnceLock::new(),
513 function_meter_locks: std::sync::Mutex::new(std::collections::HashMap::new()),
514 function_semaphores: std::sync::Mutex::new(std::collections::HashMap::new()),
515 watch_provider: std::sync::OnceLock::new(),
516 provision_tier: std::sync::OnceLock::new(),
517 invoker: std::sync::OnceLock::new(),
518 federation_runner: std::sync::OnceLock::new(),
519 #[cfg(feature = "email")]
520 email_profile_store: std::sync::OnceLock::new(),
521 #[cfg(feature = "email")]
522 email_spool: std::sync::OnceLock::new(),
523 #[cfg(feature = "admin")]
524 admin_controller: std::sync::OnceLock::new(),
525 #[cfg(feature = "admin")]
526 admin_surfaces: std::sync::OnceLock::new(),
527 #[cfg(feature = "session")]
528 session_store: std::sync::OnceLock::new(),
529 session_signer: std::sync::OnceLock::new(),
530 #[cfg(feature = "capability")]
531 capability_max_ttl_secs: std::sync::OnceLock::new(),
532 #[cfg(feature = "handlers")]
533 tenancy_posture_overrides: std::sync::OnceLock::new(),
534 })),
535 }
536 }
537
538 #[cfg(feature = "handlers")]
541 pub(crate) fn sql_provider(&self) -> Option<Arc<dyn boatramp_core::sql::SqlBackends>> {
542 self.inner.as_ref().and_then(|inner| inner.sql.clone())
543 }
544
545 #[cfg(feature = "handlers")]
549 pub(crate) fn invoker(&self) -> Option<Arc<function_runtime::FunctionInvoker>> {
550 self.inner
551 .as_ref()
552 .and_then(|inner| inner.invoker.get().cloned())
553 }
554
555 #[cfg(feature = "handlers")]
559 pub(crate) async fn introspect_subgraph_sdl(
560 &self,
561 deploy: &DeployStore,
562 project: boatramp_core::project::ProjectRef<'_>,
563 function: &boatramp_core::function::Function,
564 component: &str,
565 ) -> Result<String, function_runtime::SubgraphSdlError> {
566 match self.inner.as_ref() {
567 Some(inner) => {
568 function_runtime::introspect_service_sdl(
569 inner, deploy, project, function, component,
570 )
571 .await
572 }
573 None => Err(function_runtime::SubgraphSdlError::Unavailable),
574 }
575 }
576
577 #[cfg(feature = "handlers")]
583 pub fn set_invoker(&self, deploy: DeployStore) {
584 if let Some(inner) = self.inner.as_ref() {
585 let invoker = Arc::new(function_runtime::FunctionInvoker::new(
586 deploy,
587 Arc::downgrade(inner),
588 ));
589 let _ = inner.invoker.set(invoker);
590 let runner = Arc::new(graphql_gateway::FederationRunner::new(Arc::downgrade(
593 inner,
594 )));
595 let _ = inner.federation_runner.set(runner);
596 }
597 }
598
599 #[cfg(feature = "handlers")]
603 pub fn sql_backends(&self) -> Option<Arc<dyn boatramp_core::sql::SqlBackends>> {
604 self.inner.as_ref().and_then(|inner| inner.sql.clone())
605 }
606
607 #[cfg(feature = "handlers")]
611 pub fn set_watch_provider(
612 &self,
613 provider: Arc<dyn boatramp_core::blob_provision::WatchProvider>,
614 ) {
615 if let Some(inner) = self.inner.as_ref() {
616 let _ = inner.watch_provider.set(provider);
617 }
618 }
619
620 #[cfg(feature = "handlers")]
624 pub fn set_provision_tier(&self, tier: boatramp_core::blob_notify::ProvisionTier) {
625 if let Some(inner) = self.inner.as_ref() {
626 let _ = inner.provision_tier.set(tier);
627 }
628 }
629
630 #[cfg(feature = "handlers")]
634 pub fn set_max_blob_bytes(&self, max_bytes: u64) {
635 if let Some(inner) = self.inner.as_ref() {
636 let _ = inner.max_blob_bytes.set(max_bytes);
637 }
638 }
639
640 #[cfg(feature = "handlers")]
643 pub fn set_max_component_bytes(&self, max_bytes: u64) {
644 if let Some(inner) = self.inner.as_ref() {
645 let _ = inner.max_component_bytes.set(max_bytes);
646 }
647 }
648
649 #[cfg(feature = "handlers")]
657 pub fn set_allow_env_secret_refs(&self, allow: bool) {
658 if let Some(inner) = self.inner.as_ref() {
659 let _ = inner.allow_env_secret_refs.set(allow);
660 }
661 }
662
663 #[cfg(feature = "handlers")]
668 pub fn set_tenancy_posture(&self, require_declaration: bool, allow_cross_tenant: bool) {
669 if let Some(inner) = self.inner.as_ref() {
670 let _ = inner.require_tenancy_declaration.set(require_declaration);
671 let _ = inner.allow_cross_tenant_db.set(allow_cross_tenant);
672 }
673 }
674
675 #[cfg(feature = "handlers")]
682 pub fn set_project_tenancy_overrides(
683 &self,
684 overrides: std::collections::BTreeMap<
685 String,
686 boatramp_core::security::ResolvedProjectTenancy,
687 >,
688 ) {
689 if overrides.is_empty() {
690 return;
691 }
692 if let Some(inner) = self.inner.as_ref() {
693 let _ = inner.tenancy_posture_overrides.set(Arc::new(overrides));
694 }
695 }
696
697 #[cfg(feature = "handlers")]
703 pub fn set_session_signer(&self, signer: Arc<dyn Signer>) {
704 if let Some(inner) = self.inner.as_ref() {
705 let _ = inner.session_signer.set(signer);
706 }
707 }
708
709 #[cfg(feature = "capability")]
716 pub fn set_capability_minting(&self, max_ttl_secs: u64) {
717 if max_ttl_secs == 0 {
718 return;
719 }
720 if let Some(inner) = self.inner.as_ref() {
721 let _ = inner.capability_max_ttl_secs.set(max_ttl_secs);
722 }
723 }
724
725 #[cfg(feature = "handlers")]
730 pub fn set_secret_store(&self, store: Arc<boatramp_core::secret_store::SecretStore>) {
731 if let Some(inner) = self.inner.as_ref() {
732 let _ = inner.secret_store.set(store);
733 }
734 }
735
736 #[cfg(feature = "email")]
740 pub fn set_email_profile_store(
741 &self,
742 store: Arc<boatramp_core::email_config::EmailProfileStore>,
743 ) {
744 if let Some(inner) = self.inner.as_ref() {
745 let _ = inner.email_profile_store.set(store);
746 }
747 }
748
749 #[cfg(feature = "email")]
754 pub fn set_email_spool(&self, spool: Arc<dyn boatramp_handlers::EmailSpool>) {
755 if let Some(inner) = self.inner.as_ref() {
756 let _ = inner.email_spool.set(spool);
757 }
758 }
759
760 #[cfg(feature = "admin")]
765 pub fn set_admin(
766 &self,
767 controller: Arc<admin_controller::ServerAdminController>,
768 surfaces: std::collections::BTreeSet<boatramp_handlers::AdminSurface>,
769 ) {
770 if let Some(inner) = self.inner.as_ref() {
771 let _ = inner.admin_controller.set(controller);
772 let _ = inner.admin_surfaces.set(surfaces);
773 }
774 }
775
776 #[cfg(feature = "handlers")]
781 pub(crate) fn allow_env_secret_refs(&self) -> bool {
782 self.inner
783 .as_ref()
784 .and_then(|inner| inner.allow_env_secret_refs.get().copied())
785 .unwrap_or(false)
786 }
787
788 #[cfg(feature = "handlers")]
793 pub fn set_cron_leader_gate(&self, gate: CronLeaderGate) {
794 if let Some(inner) = self.inner.as_ref() {
795 let _ = inner.cron_leader_gate.set(gate);
796 }
797 }
798
799 #[cfg(feature = "handlers")]
806 async fn precheck_activation(
807 &self,
808 deploy: &DeployStore,
809 manifest: &Manifest,
810 site_config: Option<&SiteConfig>,
811 ) -> Result<(), String> {
812 let Some(inner) = self.inner.as_ref() else {
813 return Ok(());
814 };
815 if manifest.config.handlers.is_empty() && manifest.config.consumers.is_empty() {
818 return Ok(());
819 }
820 let site_handlers = site_config
822 .and_then(|c| c.handlers.as_ref())
823 .filter(|h| h.enabled)
824 .ok_or_else(|| {
825 "deployment ships handlers/consumers but the site has them disabled".to_string()
826 })?;
827 let max_component = inner.max_component_bytes.get().copied().unwrap_or(0);
828
829 let allow_env_secret_refs = inner.allow_env_secret_refs.get().copied().unwrap_or(false);
836 crate::handler_dispatch::admit_secret_refs(&site_handlers.secrets, allow_env_secret_refs)
837 .map_err(|err| format!("handler secrets: {err}"))?;
838
839 let sync_ceiling = inner.engine.sync_timeout_ms();
845 let async_ceiling = inner.engine.async_timeout_ms();
846 if let Some(ms) = site_handlers.max_timeout_ms {
847 if u64::from(ms) > sync_ceiling {
848 tracing::warn!(
849 "site max_timeout_ms={ms} exceeds sync_max_timeout_ms={sync_ceiling}: \
850 synchronous HTTP handlers are capped at {sync_ceiling}ms; the extra time \
851 applies only to async calls (?mode=async / triggers), capped at \
852 async_max_timeout_ms={async_ceiling}"
853 );
854 }
855 }
856
857 for handler in &manifest.config.handlers {
859 if let Some(ms) = handler.limits.as_ref().and_then(|l| l.timeout_ms) {
860 if u64::from(ms) > sync_ceiling {
861 let route = &handler.route;
862 tracing::warn!(
863 "route {route:?} declares limits.timeout_ms={ms}, above \
864 sync_max_timeout_ms={sync_ceiling}: synchronous HTTP calls to this route \
865 are capped at {sync_ceiling}ms; the {ms}ms only applies to async calls \
866 (?mode=async / a queue trigger / a #[consumer]), capped at \
867 async_max_timeout_ms={async_ceiling}. If you need {ms}ms synchronously, \
868 that isn't possible — move the work to the async lane"
869 );
870 }
871 }
872 if !handler.streaming {
877 if let Some(entry) = manifest.files.get(&handler.component) {
878 if let Ok(bytes) = read_blob_bytes(deploy, &entry.hash).await {
879 if crate::function_api::component_declares_streaming_route(
880 &bytes,
881 &handler.route,
882 ) {
883 let route = &handler.route;
884 tracing::warn!(
885 "route {route:?} is a streaming handler (#[handler(stream)]) but \
886 its config lacks streaming = true: it will run on the sync request \
887 lane and be cut at sync_max_timeout_ms={sync_ceiling}ms. Set \
888 streaming = true so it serves on the dedicated streaming lane (its \
889 own concurrency budget + a much larger wall-clock)."
890 );
891 }
892 }
893 }
894 }
895 if let Some(entry) = manifest.files.get(&handler.component) {
899 if let Ok(bytes) = read_blob_bytes(deploy, &entry.hash).await {
900 let unmet = crate::function_api::unmet_requires(&bytes);
901 if !unmet.is_empty() {
902 return Err(format!(
903 "route {:?} [{}] requires capabilities this host does not implement: \
904 {}. Upgrade boatramp or enable those features — see `boatramp \
905 capabilities`.",
906 handler.route,
907 handler.methods.join(","),
908 unmet.join(", ")
909 ));
910 }
911 }
912 }
913 precheck_component(
914 deploy,
915 manifest,
916 site_handlers,
917 inner,
918 max_component,
919 &handler.imports,
920 &handler.component,
921 &format!("route {:?} [{}]", handler.route, handler.methods.join(",")),
924 false,
925 )
926 .await?;
927 }
928 for consumer in &manifest.config.consumers {
929 precheck_component(
930 deploy,
931 manifest,
932 site_handlers,
933 inner,
934 max_component,
935 &consumer.imports,
936 &consumer.component,
937 &format!("consumer {:?}", consumer.topic),
938 true,
939 )
940 .await?;
941 }
942 Ok(())
943 }
944
945 #[cfg(not(feature = "handlers"))]
946 async fn precheck_activation(
947 &self,
948 _deploy: &DeployStore,
949 _manifest: &Manifest,
950 _site_config: Option<&SiteConfig>,
951 ) -> Result<(), String> {
952 Ok(())
953 }
954}
955
956#[derive(Default, Clone)]
962pub struct ServerOptions {
963 pub limits: ServerLimits,
965 pub probe: Option<Arc<dyn boatramp_core::domain_verify::DomainProbe>>,
968 pub default_site: Option<String>,
971 pub implicit_routing: bool,
977 pub protect_previews: bool,
982 pub cluster_rate_limit_kv: Option<Arc<dyn boatramp_core::kv::KvStore>>,
986 pub issuer: Option<Arc<dyn Signer>>,
990 pub bootstrap_secret: Option<String>,
995 pub bootstrap_attestation: Option<String>,
1001 pub mesh_control: Option<Arc<dyn MeshControl>>,
1005 pub cors_allowed_origins: Vec<String>,
1015 #[cfg(feature = "oidc")]
1018 pub oidc_verifier: Option<Arc<oidc::OidcVerifier>>,
1019 pub posture: boatramp_core::security::SecurityPosture,
1023 pub served_over_tls: bool,
1028 pub pop_origin: Option<String>,
1035 pub daemon_runtime: Option<Arc<DaemonRuntime>>,
1039 pub operator_sql: Option<Arc<dyn boatramp_core::sql::OperatorSql>>,
1043 pub tenant_deprovisioner: Option<Arc<dyn boatramp_core::sql::TenantDeprovisioner>>,
1048 pub compute_exec: Option<Arc<dyn boatramp_core::compute::ComputeExec>>,
1052 pub compute_volumes: Option<Arc<dyn boatramp_core::compute::ComputeVolumes>>,
1057 pub compute_control: Option<Arc<dyn boatramp_core::compute::ComputeControl>>,
1061 pub secret_store: Option<Arc<boatramp_core::secret_store::SecretStore>>,
1069 pub email_profile_store: Option<Arc<boatramp_core::email_config::EmailProfileStore>>,
1077 #[cfg(feature = "console")]
1081 pub console: Option<console::ConsoleMount>,
1082}
1083
1084#[derive(Clone, Copy)]
1088struct ServedOverTls(bool);
1089
1090#[derive(Clone, Copy, Default)]
1095struct ImplicitRouting(bool);
1096
1097const DAEMON_RELOAD_BACKSTOP: std::time::Duration = std::time::Duration::from_secs(300);
1109
1110pub struct DaemonRuntime {
1111 baseline: boatramp_core::daemon_config::ConfigBaseline,
1112 state: std::sync::RwLock<DaemonState>,
1113 reload: tokio::sync::Notify,
1116}
1117
1118struct DaemonState {
1119 effective: Arc<boatramp_core::daemon_config::EffectiveConfig>,
1120 generation: Option<String>,
1121}
1122
1123pub fn config_baseline(options: &ServerOptions) -> boatramp_core::daemon_config::ConfigBaseline {
1128 #[cfg(feature = "console")]
1132 let (console_enabled, console_host, console_path) = match options.console.as_ref() {
1133 Some(m) => (true, Some(m.host.clone()), Some(m.path.clone())),
1134 None => (false, None, None),
1135 };
1136 #[cfg(not(feature = "console"))]
1137 let (console_enabled, console_host, console_path) = (false, None, None);
1138 boatramp_core::daemon_config::ConfigBaseline {
1139 default_site: options.default_site.clone(),
1140 protect_previews: options.protect_previews,
1141 max_upload_bytes: options.limits.max_upload_bytes.unwrap_or(0),
1142 upload_idle_timeout_secs: options.limits.upload_idle_timeout.map(|d| d.as_secs()),
1143 max_concurrent_uploads: options.limits.max_concurrent_uploads.map(|n| n as u64),
1144 cluster_rate_limit: options.cluster_rate_limit_kv.is_some(),
1145 compute_vcpus: 0,
1146 compute_mem_mib: 0,
1147 console_enabled,
1148 console_host,
1149 console_path,
1150 max_upload_ceiling: options.posture.max_upload_bytes,
1151 max_concurrent_uploads_ceiling: None,
1152 posture: options.posture,
1153 }
1154}
1155
1156impl DaemonRuntime {
1157 pub fn new(baseline: boatramp_core::daemon_config::ConfigBaseline) -> Self {
1161 let effective =
1162 Arc::new(boatramp_core::daemon_config::DaemonConfig::default().resolve(&baseline));
1163 Self {
1164 baseline,
1165 state: std::sync::RwLock::new(DaemonState {
1166 effective,
1167 generation: None,
1168 }),
1169 reload: tokio::sync::Notify::new(),
1170 }
1171 }
1172
1173 pub fn notify_reload(&self) {
1177 self.reload.notify_one();
1178 }
1179
1180 pub fn effective(&self) -> Arc<boatramp_core::daemon_config::EffectiveConfig> {
1182 self.state
1183 .read()
1184 .expect("daemon config lock")
1185 .effective
1186 .clone()
1187 }
1188
1189 pub fn generation(&self) -> Option<String> {
1192 self.state
1193 .read()
1194 .expect("daemon config lock")
1195 .generation
1196 .clone()
1197 }
1198
1199 pub fn baseline(&self) -> &boatramp_core::daemon_config::ConfigBaseline {
1201 &self.baseline
1202 }
1203
1204 pub async fn reload(&self, deploy: &DeployStore) -> Result<(), DeployError> {
1207 let cfg = deploy.get_daemon_config().await?.unwrap_or_default();
1208 let generation = deploy.daemon_config_generation().await?;
1209 let effective = Arc::new(cfg.resolve(&self.baseline));
1210 *self.state.write().expect("daemon config lock") = DaemonState {
1211 effective,
1212 generation,
1213 };
1214 Ok(())
1215 }
1216}
1217
1218#[derive(Clone, Copy, Default)]
1221struct PreviewPolicy {
1222 protect: bool,
1223}
1224
1225#[derive(Clone, Default)]
1230struct Issuer(Option<Arc<dyn Signer>>);
1231
1232#[derive(Clone, Default)]
1237struct BootstrapGate(Option<Arc<BootstrapInner>>);
1238
1239struct BootstrapInner {
1240 secret_hash: String,
1243 lock: tokio::sync::Mutex<()>,
1246}
1247
1248impl BootstrapGate {
1249 fn new(secret: Option<&str>) -> Self {
1250 Self(secret.filter(|s| !s.is_empty()).map(|s| {
1251 Arc::new(BootstrapInner {
1252 secret_hash: boatramp_core::deploy::sha256_hex(s.as_bytes()),
1253 lock: tokio::sync::Mutex::new(()),
1254 })
1255 }))
1256 }
1257}
1258
1259#[async_trait::async_trait]
1263pub trait MeshControl: Send + Sync {
1264 async fn admit(
1272 &self,
1273 mesh_pubkey_hex: &str,
1274 jti: &str,
1275 possession_proof: &[u8],
1276 proof_iat: u64,
1277 now: u64,
1278 advertise_addr: Option<&str>,
1279 ) -> Result<JoinOutcome, String>;
1280
1281 async fn rotate_key(&self) -> Result<String, String>;
1285
1286 async fn revoke(&self, node: u64) -> Result<(), String>;
1290
1291 async fn members(&self) -> Result<Vec<MeshMember>, String>;
1295
1296 async fn promote(&self, node: u64) -> Result<(), String>;
1299}
1300
1301pub enum JoinOutcome {
1303 Admitted {
1306 members: Vec<String>,
1308 addrs: std::collections::BTreeMap<u64, String>,
1310 },
1311 TokenSpent,
1313 ProofInvalid,
1315 Revoked,
1318}
1319
1320#[derive(Debug, Clone, Serialize)]
1322pub struct MeshMember {
1323 pub node: u64,
1325 pub voter: bool,
1327 pub caught_up: bool,
1329 pub leader: bool,
1331 #[serde(default, skip_serializing_if = "Option::is_none")]
1335 pub addr: Option<String>,
1336}
1337
1338#[derive(Clone, Default)]
1341struct MeshControlHandle(Option<Arc<dyn MeshControl>>);
1342
1343#[cfg(feature = "oidc")]
1345#[derive(Clone, Default)]
1346struct OidcState(Option<Arc<oidc::OidcVerifier>>);
1347
1348#[cfg(feature = "oidc")]
1351const EXCHANGE_TTL_SECS: u64 = 3600;
1352
1353use boatramp_core::time::now_unix;
1354
1355#[derive(Clone)]
1357struct CorsState(Arc<Vec<String>>);
1358
1359const CORS_ALLOW_METHODS: &str = "GET, POST, PUT, DELETE, OPTIONS";
1361const CORS_ALLOW_HEADERS: &str = "authorization, content-type";
1364const CORS_MAX_AGE: &str = "600";
1366
1367fn cors_origin_allowed(allowed: &[String], origin: &str) -> bool {
1371 allowed.iter().any(|a| a == "*" || a == origin)
1372}
1373
1374async fn cors(
1381 State(allowed): State<CorsState>,
1382 request: Request,
1383 next: axum::middleware::Next,
1384) -> Response {
1385 let origin = request
1386 .headers()
1387 .get(header::ORIGIN)
1388 .and_then(|v| v.to_str().ok())
1389 .filter(|o| cors_origin_allowed(&allowed.0, o))
1390 .map(str::to_string);
1391 let is_preflight = request.method() == Method::OPTIONS
1393 && request
1394 .headers()
1395 .contains_key(header::ACCESS_CONTROL_REQUEST_METHOD);
1396 if is_preflight {
1397 let allow_headers = request
1399 .headers()
1400 .get(header::ACCESS_CONTROL_REQUEST_HEADERS)
1401 .and_then(|v| v.to_str().ok())
1402 .map(str::to_string)
1403 .unwrap_or_else(|| CORS_ALLOW_HEADERS.to_string());
1404 let mut response = Response::new(Body::empty());
1405 *response.status_mut() = StatusCode::NO_CONTENT;
1406 if let Some(origin) = origin {
1407 let headers = response.headers_mut();
1408 set_header(headers, header::ACCESS_CONTROL_ALLOW_ORIGIN, &origin);
1409 set_header(headers, header::VARY, "Origin");
1410 set_header(
1411 headers,
1412 header::ACCESS_CONTROL_ALLOW_METHODS,
1413 CORS_ALLOW_METHODS,
1414 );
1415 set_header(
1416 headers,
1417 header::ACCESS_CONTROL_ALLOW_HEADERS,
1418 &allow_headers,
1419 );
1420 set_header(headers, header::ACCESS_CONTROL_MAX_AGE, CORS_MAX_AGE);
1421 }
1422 return response;
1423 }
1424 let mut response = next.run(request).await;
1425 if let Some(origin) = origin {
1426 let headers = response.headers_mut();
1427 set_header(headers, header::ACCESS_CONTROL_ALLOW_ORIGIN, &origin);
1428 if let Ok(value) = HeaderValue::from_str("Origin") {
1431 headers.append(header::VARY, value);
1432 }
1433 }
1434 response
1435}
1436
1437const DRAIN_DEADLINE: Duration = Duration::from_secs(30);
1442
1443#[derive(Debug, thiserror::Error)]
1445pub enum ServeError {
1446 #[error("server I/O: {0}")]
1448 Io(#[from] std::io::Error),
1449}
1450
1451pub async fn serve(
1454 addr: SocketAddr,
1455 deploy: DeployStore,
1456 auth: Auth,
1457 handlers: HandlerRuntime,
1458) -> Result<(), ServeError> {
1459 serve_with(addr, deploy, auth, handlers, ServerOptions::default()).await
1460}
1461
1462pub(crate) fn disable_nagle(stream: &mut tokio::net::TcpStream) {
1472 if let Err(err) = stream.set_nodelay(true) {
1473 tracing::debug!(%err, "failed to set TCP_NODELAY on an accepted connection");
1474 }
1475}
1476
1477pub async fn serve_with(
1479 addr: SocketAddr,
1480 deploy: DeployStore,
1481 auth: Auth,
1482 handlers: HandlerRuntime,
1483 options: ServerOptions,
1484) -> Result<(), ServeError> {
1485 let tcp = tokio::net::TcpListener::bind(addr).await?;
1486 tracing::info!(%addr, auth = !auth.is_disabled(), "boatramp server listening");
1487 let splice_ctx = splice::SpliceCtx {
1493 deploy: deploy.clone(),
1494 posture: options.posture,
1495 daemon: options.daemon_runtime.clone(),
1496 };
1497 #[cfg(feature = "handlers")]
1500 let scheduler = handlers.spawn_scheduler(deploy.clone());
1501 let gateway_prober = gateway::spawn_active_health_prober();
1505 let (router, fast) = router_with_fast(deploy, auth, handlers, options);
1508
1509 let (signalled_tx, signalled_rx) = tokio::sync::watch::channel(false);
1513 let server = splice::serve(tcp, splice_ctx, (router, fast), async move {
1517 shutdown_signal().await;
1518 let _ = signalled_tx.send(true);
1519 });
1520 let signalled = {
1521 let mut rx = signalled_rx;
1522 async move {
1523 let _ = rx.wait_for(|fired| *fired).await;
1524 }
1525 };
1526 let result = serve_with_drain_deadline(
1527 async move { server.await.map_err(ServeError::from) },
1528 signalled,
1529 DRAIN_DEADLINE,
1530 )
1531 .await;
1532 #[cfg(feature = "handlers")]
1534 if let Some(handle) = scheduler {
1535 handle.abort();
1536 }
1537 gateway_prober.abort();
1538 result
1539}
1540
1541async fn serve_with_drain_deadline<Srv, Sig>(
1546 server: Srv,
1547 signalled: Sig,
1548 deadline: Duration,
1549) -> Result<(), ServeError>
1550where
1551 Srv: Future<Output = Result<(), ServeError>>,
1552 Sig: Future<Output = ()>,
1553{
1554 tokio::pin!(server);
1555 let drain_cap = async move {
1556 signalled.await;
1557 tokio::time::sleep(deadline).await;
1558 };
1559 tokio::select! {
1560 result = &mut server => result,
1561 _ = drain_cap => {
1562 tracing::warn!(
1563 deadline_s = deadline.as_secs(),
1564 "drain deadline exceeded; forcing shutdown with requests still in flight"
1565 );
1566 Ok(())
1567 }
1568 }
1569}
1570
1571pub async fn shutdown_signal() {
1574 let ctrl_c = async {
1575 let _ = tokio::signal::ctrl_c().await;
1576 };
1577 #[cfg(unix)]
1578 let terminate = async {
1579 if let Ok(mut sig) =
1580 tokio::signal::unix::signal(tokio::signal::unix::SignalKind::terminate())
1581 {
1582 sig.recv().await;
1583 }
1584 };
1585 #[cfg(not(unix))]
1586 let terminate = std::future::pending::<()>();
1587
1588 tokio::select! {
1589 _ = ctrl_c => {}
1590 _ = terminate => {}
1591 }
1592 tracing::info!("shutdown signal received; draining");
1593}
1594
1595async fn healthz(Extension(daemon): Extension<Arc<DaemonRuntime>>) -> String {
1599 match daemon.generation() {
1600 Some(gen) => format!("ok gen={gen}"),
1601 None => "ok".to_string(),
1602 }
1603}
1604
1605async fn readyz(State(deploy): State<DeployStore>) -> Response {
1607 match deploy.ready().await {
1608 Ok(()) => (StatusCode::OK, "ready\n").into_response(),
1609 Err(err) => {
1610 tracing::warn!(error = %err, "readiness probe failed");
1611 (StatusCode::SERVICE_UNAVAILABLE, "not ready\n").into_response()
1612 }
1613 }
1614}
1615
1616#[derive(Clone)]
1621pub struct RequestId(pub String);
1622
1623#[cfg(feature = "handlers")]
1629#[derive(Clone)]
1630pub struct DomainContext(pub String);
1631
1632fn request_id_for(headers: &HeaderMap) -> String {
1635 if let Some(id) = headers
1636 .get("x-request-id")
1637 .and_then(|v| v.to_str().ok())
1638 .map(str::trim)
1639 .filter(|s| !s.is_empty())
1640 {
1641 return id.chars().filter(|c| !c.is_control()).take(128).collect();
1642 }
1643 use std::sync::atomic::{AtomicU64, Ordering};
1644 static SEQ: AtomicU64 = AtomicU64::new(0);
1645 let n = SEQ.fetch_add(1, Ordering::Relaxed);
1646 format!("{:x}-{:x}", boatramp_core::time::now_unix_ms(), n)
1647}
1648
1649struct AccessLog {
1653 request_id: String,
1654 method: Method,
1655 path: String,
1656 host: String,
1657 client: String,
1658 status: u16,
1659 encoding: String,
1661 start: std::time::Instant,
1662 bytes: std::sync::atomic::AtomicU64,
1663}
1664
1665impl Drop for AccessLog {
1666 fn drop(&mut self) {
1667 let bytes = self.bytes.load(std::sync::atomic::Ordering::Relaxed);
1668 srvmetrics::server_metrics().record_request(self.status, bytes);
1671 tracing::info!(
1672 target: "boatramp::access",
1673 request_id = %self.request_id,
1674 method = %self.method,
1675 path = %self.path,
1676 host = %self.host,
1677 client = %self.client,
1678 status = self.status,
1679 bytes = bytes,
1680 encoding = %self.encoding,
1681 cache_result = srvmetrics::cache_result(self.status),
1682 elapsed_ms = self.start.elapsed().as_millis() as u64,
1683 "request"
1684 );
1685 }
1686}
1687
1688pub(crate) fn assign_request_id(request: &mut axum::extract::Request) -> String {
1694 let request_id = request_id_for(request.headers());
1695 request
1696 .extensions_mut()
1697 .insert(RequestId(request_id.clone()));
1698 request_id
1699}
1700
1701pub(crate) struct AccessLogCtx {
1706 request_id: String,
1707 method: Method,
1708 path: String,
1709 host: String,
1710 client: String,
1711 start: std::time::Instant,
1712}
1713
1714impl AccessLogCtx {
1715 pub(crate) fn capture(request: &axum::extract::Request, request_id: String) -> Option<Self> {
1721 if !tracing::enabled!(target: "boatramp::access", tracing::Level::INFO) {
1722 return None;
1723 }
1724 Some(Self {
1725 request_id,
1726 method: request.method().clone(),
1727 path: request.uri().path().to_string(),
1728 host: request
1729 .headers()
1730 .get(header::HOST)
1731 .and_then(|value| value.to_str().ok())
1732 .or_else(|| request.uri().host()) .unwrap_or("-")
1734 .to_string(),
1735 client: request
1736 .extensions()
1737 .get::<axum::extract::ConnectInfo<SocketAddr>>()
1738 .map(|info| info.0.ip().to_string())
1739 .unwrap_or_else(|| "-".to_string()),
1740 start: std::time::Instant::now(),
1741 })
1742 }
1743
1744 pub(crate) fn finish(self, response: Response) -> Response {
1748 let encoding = response
1749 .headers()
1750 .get(header::CONTENT_ENCODING)
1751 .and_then(|v| v.to_str().ok())
1752 .unwrap_or("identity")
1753 .to_string();
1754 let log = AccessLog {
1755 request_id: self.request_id,
1756 method: self.method,
1757 path: self.path,
1758 host: self.host,
1759 client: self.client,
1760 status: response.status().as_u16(),
1761 encoding,
1762 start: self.start,
1763 bytes: std::sync::atomic::AtomicU64::new(0),
1764 };
1765 let (parts, body) = response.into_parts();
1766 let counted = body.into_data_stream().map(move |chunk| {
1767 if let Ok(bytes) = &chunk {
1768 log.bytes
1769 .fetch_add(bytes.len() as u64, std::sync::atomic::Ordering::Relaxed);
1770 }
1771 chunk
1772 });
1773 Response::from_parts(parts, Body::from_stream(counted))
1774 }
1775}
1776
1777async fn access_log(mut request: axum::extract::Request, next: axum::middleware::Next) -> Response {
1782 let request_id = assign_request_id(&mut request);
1783 match AccessLogCtx::capture(&request, request_id) {
1784 None => next.run(request).await,
1785 Some(ctx) => ctx.finish(next.run(request).await),
1786 }
1787}
1788
1789fn if_none_match(req_headers: &HeaderMap, etag: &str) -> bool {
1791 req_headers
1792 .get(header::IF_NONE_MATCH)
1793 .and_then(|value| value.to_str().ok())
1794 .is_some_and(|value| {
1795 value
1796 .split(',')
1797 .map(str::trim)
1798 .any(|tag| tag == "*" || tag == etag || tag.trim_start_matches("W/") == etag)
1799 })
1800}
1801
1802fn set_header(headers: &mut HeaderMap, name: header::HeaderName, value: &str) {
1803 if let Ok(value) = HeaderValue::from_str(value) {
1804 headers.insert(name, value);
1805 }
1806}
1807
1808fn not_found() -> Response {
1809 (StatusCode::NOT_FOUND, "not found\n").into_response()
1810}
1811
1812fn redirect(status: u16, location: &str) -> Response {
1813 let status = StatusCode::from_u16(status).unwrap_or(StatusCode::FOUND);
1814 match HeaderValue::from_str(location) {
1815 Ok(location) => {
1816 let mut headers = HeaderMap::new();
1817 headers.insert(header::LOCATION, location);
1818 (status, headers).into_response()
1819 }
1820 Err(_) => (StatusCode::INTERNAL_SERVER_ERROR, "bad redirect target\n").into_response(),
1821 }
1822}
1823
1824fn deploy_error_response(err: DeployError) -> Response {
1826 let status = match &err {
1827 DeployError::NotFound(_) | DeployError::Storage(StorageError::NotFound(_)) => {
1828 StatusCode::NOT_FOUND
1829 }
1830 DeployError::HashMismatch { .. } => StatusCode::BAD_REQUEST,
1831 DeployError::Incomplete(_) => StatusCode::CONFLICT,
1832 DeployError::Conflict(_) => StatusCode::CONFLICT,
1834 DeployError::Ambiguous(_) => StatusCode::NOT_FOUND,
1836 DeployError::Invalid(_) => StatusCode::BAD_REQUEST,
1838 _ => StatusCode::INTERNAL_SERVER_ERROR,
1839 };
1840 tracing::warn!(error = %err, "request failed");
1841 (status, format!("{err}\n")).into_response()
1842}
1843
1844fn reject_invalid_name(kind: &'static str, value: &str) -> Option<Response> {
1849 boatramp_core::project::validate_resource_name(kind, value)
1850 .err()
1851 .map(|err| (StatusCode::UNPROCESSABLE_ENTITY, format!("{err}\n")).into_response())
1852}
1853
1854#[cfg(test)]
1855mod drain_tests {
1856 use super::*;
1857
1858 #[tokio::test]
1859 async fn deadline_forces_shutdown_after_signal() {
1860 let server = std::future::pending::<Result<(), ServeError>>();
1863 let signalled = async {}; let result = serve_with_drain_deadline(server, signalled, Duration::from_millis(20)).await;
1865 assert!(result.is_ok());
1866 }
1867
1868 #[tokio::test]
1869 async fn server_finishing_first_wins() {
1870 let server = async { Ok(()) };
1873 let signalled = std::future::pending::<()>();
1874 let result = serve_with_drain_deadline(server, signalled, Duration::from_secs(30)).await;
1875 assert!(result.is_ok());
1876 }
1877
1878 #[tokio::test]
1879 async fn deadline_does_not_trip_before_signal() {
1880 let server = async {
1884 tokio::time::sleep(Duration::from_millis(40)).await;
1885 Err(ServeError::Io(std::io::Error::other("server error")))
1886 };
1887 let signalled = std::future::pending::<()>();
1888 let result = serve_with_drain_deadline(server, signalled, Duration::from_millis(10)).await;
1889 assert!(result.is_err());
1890 }
1891}
1892
1893#[cfg(all(test, feature = "handlers"))]
1894mod tests {
1895 use super::*;
1896 use boatramp_core::cose::{LocalSigner, TokenAlg};
1897 use boatramp_core::project::ProjectRef;
1898
1899 #[test]
1900 fn query_string_parses_and_url_decodes() {
1901 let q = parse_query_string("lang=fr&city=S%C3%A3o+Paulo&flag&dup=1&dup=2");
1902 assert_eq!(q.get("lang").map(String::as_str), Some("fr"));
1903 assert_eq!(q.get("city").map(String::as_str), Some("São Paulo")); assert_eq!(q.get("flag").map(String::as_str), Some("")); assert_eq!(q.get("dup").map(String::as_str), Some("1")); }
1907
1908 #[test]
1909 fn cookie_header_parses_pairs() {
1910 let c = parse_cookie_header("beta=1; sid = abc ; empty=");
1911 assert_eq!(c.get("beta").map(String::as_str), Some("1"));
1912 assert_eq!(c.get("sid").map(String::as_str), Some("abc"));
1913 assert_eq!(c.get("empty").map(String::as_str), Some(""));
1914 }
1915
1916 #[test]
1917 fn apply_vary_merges_without_duplicates() {
1918 let base = (StatusCode::OK, "x").into_response();
1919 let r = apply_vary(base, &["accept-language".into()]);
1920 assert_eq!(r.headers().get(header::VARY).unwrap(), "accept-language");
1921 let r = apply_vary(r, &["cookie".into(), "accept-language".into()]);
1923 let v = r.headers().get(header::VARY).unwrap().to_str().unwrap();
1924 assert!(v.contains("accept-language") && v.contains("cookie"));
1925 assert_eq!(v.matches("accept-language").count(), 1);
1926 let plain = apply_vary((StatusCode::OK, "y").into_response(), &[]);
1928 assert!(plain.headers().get(header::VARY).is_none());
1929 }
1930
1931 #[tokio::test]
1935 async fn join_token_endpoint_mints_a_verifiable_bearer_token() {
1936 let keys: Arc<dyn Signer> = Arc::new(LocalSigner::generate(TokenAlg::Es256));
1937 let public = keys.public_key();
1938
1939 let resp = create_join_token(
1941 Extension(Issuer(Some(keys.clone()))),
1942 Json(CreateJoinTokenRequest {
1943 ttl_secs: Some(600),
1944 }),
1945 )
1946 .await;
1947 assert_eq!(resp.status(), StatusCode::CREATED);
1948 let body = axum::body::to_bytes(resp.into_body(), usize::MAX)
1949 .await
1950 .unwrap();
1951 let parsed: serde_json::Value = serde_json::from_slice(&body).unwrap();
1952 let token = parsed["token"].as_str().unwrap();
1953 let jti = cose::verify_join(token, &public, now_unix()).unwrap();
1954 assert!(!jti.is_empty());
1955
1956 let no_issuer = create_join_token(
1958 Extension(Issuer(None)),
1959 Json(CreateJoinTokenRequest { ttl_secs: None }),
1960 )
1961 .await;
1962 assert_eq!(no_issuer.status(), StatusCode::NOT_IMPLEMENTED);
1963 }
1964
1965 #[tokio::test]
1970 async fn function_write_path_deploy_rollback_alias_remove() {
1971 use boatramp_core::function::Lifecycle;
1972 use boatramp_core::kv::MemoryKv;
1973 use boatramp_core::{ByteStream, GetObject, ObjectMeta, PutMeta, Storage, StorageError};
1974
1975 struct FakeStorage {
1978 present: bool,
1979 }
1980 #[async_trait::async_trait]
1981 impl Storage for FakeStorage {
1982 async fn get(&self, _: &str) -> Result<GetObject, StorageError> {
1983 Err(StorageError::NotFound(String::new()))
1984 }
1985 async fn get_range(
1986 &self,
1987 _: &str,
1988 _: u64,
1989 _: Option<u64>,
1990 ) -> Result<GetObject, StorageError> {
1991 Err(StorageError::NotFound(String::new()))
1992 }
1993 async fn put(
1994 &self,
1995 _: &str,
1996 _: ByteStream,
1997 _: PutMeta,
1998 ) -> Result<ObjectMeta, StorageError> {
1999 Err(StorageError::unsupported("fake"))
2000 }
2001 async fn head(&self, key: &str) -> Result<ObjectMeta, StorageError> {
2002 if self.present {
2003 Ok(ObjectMeta {
2004 key: key.to_string(),
2005 ..Default::default()
2006 })
2007 } else {
2008 Err(StorageError::NotFound(key.to_string()))
2009 }
2010 }
2011 async fn delete(&self, _: &str) -> Result<(), StorageError> {
2012 Ok(())
2013 }
2014 async fn list(&self, _: &str) -> Result<Vec<ObjectMeta>, StorageError> {
2015 Ok(Vec::new())
2016 }
2017 }
2018
2019 async fn body_json(resp: Response) -> (StatusCode, serde_json::Value) {
2020 let status = resp.status();
2021 let bytes = axum::body::to_bytes(resp.into_body(), usize::MAX)
2022 .await
2023 .unwrap();
2024 let value = if bytes.is_empty() {
2025 serde_json::Value::Null
2026 } else {
2027 serde_json::from_slice(&bytes).unwrap()
2028 };
2029 (status, value)
2030 }
2031
2032 let deploy = DeployStore::new(
2033 Arc::new(FakeStorage { present: true }),
2034 Arc::new(MemoryKv::new()),
2035 );
2036 let v1 = "a".repeat(64);
2037 let v2 = "b".repeat(64);
2038
2039 let (st, body) = body_json(
2041 deploy_function(
2042 State(deploy.clone()),
2043 axum::extract::Extension(crate::ProjectContext::default()),
2044 axum::extract::Extension(Arc::new(crate::HandlerRuntime::disabled())),
2045 axum::extract::Query(DeployFunctionQuery::default()),
2046 Path("greeter".to_string()),
2047 Json(FunctionUpsert {
2048 component: v1.clone(),
2049 config: Default::default(),
2050 lifecycle: Lifecycle::Independent,
2051 }),
2052 )
2053 .await,
2054 )
2055 .await;
2056 assert_eq!(st, StatusCode::OK);
2057 assert_eq!(body["active"], v1);
2058
2059 let (_, body) = body_json(
2061 deploy_function(
2062 State(deploy.clone()),
2063 axum::extract::Extension(crate::ProjectContext::default()),
2064 axum::extract::Extension(Arc::new(crate::HandlerRuntime::disabled())),
2065 axum::extract::Query(DeployFunctionQuery::default()),
2066 Path("greeter".to_string()),
2067 Json(FunctionUpsert {
2068 component: v2.clone(),
2069 config: Default::default(),
2070 lifecycle: Lifecycle::Independent,
2071 }),
2072 )
2073 .await,
2074 )
2075 .await;
2076 assert_eq!(body["active"], v2);
2077 assert_eq!(body["versions"].as_array().unwrap().len(), 2);
2078
2079 let (st, body) = body_json(
2081 rollback_function(
2082 State(deploy.clone()),
2083 axum::extract::Extension(crate::ProjectContext::default()),
2084 Path("greeter".to_string()),
2085 Json(RollbackBody { to: v1.clone() }),
2086 )
2087 .await,
2088 )
2089 .await;
2090 assert_eq!(st, StatusCode::OK);
2091 assert_eq!(body["active"], v1);
2092
2093 let resp = rollback_function(
2095 State(deploy.clone()),
2096 axum::extract::Extension(crate::ProjectContext::default()),
2097 Path("greeter".to_string()),
2098 Json(RollbackBody { to: "c".repeat(64) }),
2099 )
2100 .await;
2101 assert_eq!(resp.status(), StatusCode::BAD_REQUEST);
2102
2103 let (st, body) = body_json(
2105 alias_function(
2106 State(deploy.clone()),
2107 axum::extract::Extension(crate::ProjectContext::default()),
2108 Path(("greeter".to_string(), "prod".to_string())),
2109 Json(AliasBody {
2110 version: v2.clone(),
2111 }),
2112 )
2113 .await,
2114 )
2115 .await;
2116 assert_eq!(st, StatusCode::OK);
2117 assert_eq!(body["aliases"]["prod"], v2);
2118
2119 let (st, _) = body_json(
2121 remove_function(
2122 State(deploy.clone()),
2123 axum::extract::Extension(crate::ProjectContext::default()),
2124 Path("greeter".to_string()),
2125 )
2126 .await,
2127 )
2128 .await;
2129 assert_eq!(st, StatusCode::NO_CONTENT);
2130 assert!(deploy
2131 .get_function(ProjectRef::DEFAULT, "greeter")
2132 .await
2133 .unwrap()
2134 .is_none());
2135
2136 let empty = DeployStore::new(
2138 Arc::new(FakeStorage { present: false }),
2139 Arc::new(MemoryKv::new()),
2140 );
2141 let resp = deploy_function(
2142 State(empty),
2143 axum::extract::Extension(crate::ProjectContext::default()),
2144 axum::extract::Extension(Arc::new(crate::HandlerRuntime::disabled())),
2145 axum::extract::Query(DeployFunctionQuery::default()),
2146 Path("orphan".to_string()),
2147 Json(FunctionUpsert {
2148 component: v1.clone(),
2149 config: Default::default(),
2150 lifecycle: Lifecycle::default(),
2151 }),
2152 )
2153 .await;
2154 assert_eq!(resp.status(), StatusCode::BAD_REQUEST);
2155 }
2156
2157 struct StubControl {
2161 admits: std::sync::Mutex<Vec<(String, String)>>,
2162 respond: StubJoin,
2163 }
2164 #[derive(Clone, Copy)]
2165 enum StubJoin {
2166 Admit,
2167 Spent,
2168 Invalid,
2169 Revoked,
2170 }
2171
2172 #[async_trait::async_trait]
2173 impl MeshControl for StubControl {
2174 async fn admit(
2175 &self,
2176 mesh_pubkey_hex: &str,
2177 jti: &str,
2178 _proof: &[u8],
2179 _proof_iat: u64,
2180 _now: u64,
2181 _advertise_addr: Option<&str>,
2182 ) -> Result<JoinOutcome, String> {
2183 self.admits
2184 .lock()
2185 .unwrap()
2186 .push((mesh_pubkey_hex.to_string(), jti.to_string()));
2187 Ok(match self.respond {
2188 StubJoin::Admit => JoinOutcome::Admitted {
2189 members: vec!["signed-member".to_string()],
2190 addrs: std::collections::BTreeMap::from([(7u64, "https://x:7000".to_string())]),
2191 },
2192 StubJoin::Spent => JoinOutcome::TokenSpent,
2193 StubJoin::Invalid => JoinOutcome::ProofInvalid,
2194 StubJoin::Revoked => JoinOutcome::Revoked,
2195 })
2196 }
2197 async fn rotate_key(&self) -> Result<String, String> {
2198 Ok("cafe".to_string())
2199 }
2200 async fn revoke(&self, _node: u64) -> Result<(), String> {
2201 Ok(())
2202 }
2203 async fn members(&self) -> Result<Vec<MeshMember>, String> {
2204 Ok(Vec::new())
2205 }
2206 async fn promote(&self, _node: u64) -> Result<(), String> {
2207 Ok(())
2208 }
2209 }
2210
2211 #[tokio::test]
2215 async fn cluster_join_dispatches_and_maps_outcomes() {
2216 let keys: Arc<dyn Signer> = Arc::new(LocalSigner::generate(TokenAlg::Es256));
2217 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
2218 let auth = Auth::with_key(keys.public_key(), kv);
2219 let token = cose::mint_join(600, now_unix(), &*keys).await.unwrap();
2220 let req = |proof: &str| JoinRequest {
2221 token: token.clone(),
2222 mesh_pubkey: "302a300506032b6570032100feed".into(),
2223 possession_proof: proof.to_string(),
2224 proof_iat: now_unix(),
2225 advertise_addr: Some("https://joiner:7000".into()),
2226 };
2227
2228 let admitter = Arc::new(StubControl {
2230 admits: std::sync::Mutex::new(Vec::new()),
2231 respond: StubJoin::Admit,
2232 });
2233 let resp = cluster_join(
2234 Extension(auth.clone()),
2235 Extension(MeshControlHandle(Some(admitter.clone()))),
2236 Json(req("aa01")),
2237 )
2238 .await;
2239 assert_eq!(resp.status(), StatusCode::OK);
2240 assert_eq!(admitter.admits.lock().unwrap().len(), 1);
2241
2242 let spent = Arc::new(StubControl {
2244 admits: std::sync::Mutex::new(Vec::new()),
2245 respond: StubJoin::Spent,
2246 });
2247 assert_eq!(
2248 cluster_join(
2249 Extension(auth.clone()),
2250 Extension(MeshControlHandle(Some(spent))),
2251 Json(req("aa01")),
2252 )
2253 .await
2254 .status(),
2255 StatusCode::CONFLICT
2256 );
2257 let invalid = Arc::new(StubControl {
2258 admits: std::sync::Mutex::new(Vec::new()),
2259 respond: StubJoin::Invalid,
2260 });
2261 assert_eq!(
2262 cluster_join(
2263 Extension(auth.clone()),
2264 Extension(MeshControlHandle(Some(invalid))),
2265 Json(req("aa01")),
2266 )
2267 .await
2268 .status(),
2269 StatusCode::FORBIDDEN
2270 );
2271 let revoked = Arc::new(StubControl {
2273 admits: std::sync::Mutex::new(Vec::new()),
2274 respond: StubJoin::Revoked,
2275 });
2276 assert_eq!(
2277 cluster_join(
2278 Extension(auth.clone()),
2279 Extension(MeshControlHandle(Some(revoked))),
2280 Json(req("aa01")),
2281 )
2282 .await
2283 .status(),
2284 StatusCode::FORBIDDEN
2285 );
2286
2287 let ok = Arc::new(StubControl {
2289 admits: std::sync::Mutex::new(Vec::new()),
2290 respond: StubJoin::Admit,
2291 });
2292 assert_eq!(
2293 cluster_join(
2294 Extension(auth.clone()),
2295 Extension(MeshControlHandle(Some(ok))),
2296 Json(req("not-hex")),
2297 )
2298 .await
2299 .status(),
2300 StatusCode::BAD_REQUEST
2301 );
2302
2303 let none = cluster_join(
2305 Extension(auth),
2306 Extension(MeshControlHandle(None)),
2307 Json(req("aa01")),
2308 )
2309 .await;
2310 assert_eq!(none.status(), StatusCode::NOT_IMPLEMENTED);
2311 }
2312
2313 #[tokio::test]
2317 async fn bootstrap_mints_the_first_token_once() {
2318 use axum::http::{header::AUTHORIZATION, HeaderMap, HeaderValue};
2319 let keys: Arc<dyn Signer> = Arc::new(LocalSigner::generate(TokenAlg::Es256));
2320 let public = keys.public_key();
2321 let deploy = DeployStore::new(
2322 Arc::new(MemStorage::default()),
2323 Arc::new(MemoryKv::new()) as Arc<dyn KvStore>,
2324 );
2325 let secret = "s3cr3t-bootstrap-value";
2326 let gate = BootstrapGate::new(Some(secret));
2327 let issuer = Issuer(Some(keys.clone()));
2328 let bearer = |s: &str| {
2329 let mut h = HeaderMap::new();
2330 h.insert(
2331 AUTHORIZATION,
2332 HeaderValue::from_str(&format!("Bearer {s}")).unwrap(),
2333 );
2334 h
2335 };
2336 let req = || BootstrapRequest {
2337 roles: vec!["admin".to_string()],
2338 ttl_secs: None,
2339 };
2340
2341 let bad = bootstrap_token(
2343 State(deploy.clone()),
2344 Extension(issuer.clone()),
2345 Extension(gate.clone()),
2346 bearer("wrong"),
2347 Json(req()),
2348 )
2349 .await;
2350 assert_eq!(bad.status(), StatusCode::UNAUTHORIZED);
2351
2352 let ok = bootstrap_token(
2354 State(deploy.clone()),
2355 Extension(issuer.clone()),
2356 Extension(gate.clone()),
2357 bearer(secret),
2358 Json(req()),
2359 )
2360 .await;
2361 assert_eq!(ok.status(), StatusCode::CREATED);
2362 let body = axum::body::to_bytes(ok.into_body(), usize::MAX)
2363 .await
2364 .unwrap();
2365 let json: serde_json::Value = serde_json::from_slice(&body).unwrap();
2366 let token = json["token"].as_str().unwrap();
2367 let id = json["id"].as_str().unwrap();
2368 let verified = cose::verify(token, &public, now_unix()).unwrap();
2369 assert!(verified.roles.iter().any(|r| r.name == "admin"));
2370 assert!(deploy
2371 .list_token_meta()
2372 .await
2373 .unwrap()
2374 .iter()
2375 .any(|m| m.revocation_id == id));
2376
2377 let reuse = bootstrap_token(
2379 State(deploy.clone()),
2380 Extension(issuer.clone()),
2381 Extension(gate),
2382 bearer(secret),
2383 Json(req()),
2384 )
2385 .await;
2386 assert_eq!(reuse.status(), StatusCode::CONFLICT);
2387
2388 let disabled = bootstrap_token(
2390 State(deploy),
2391 Extension(issuer),
2392 Extension(BootstrapGate(None)),
2393 bearer(secret),
2394 Json(req()),
2395 )
2396 .await;
2397 assert_eq!(disabled.status(), StatusCode::NOT_IMPLEMENTED);
2398 }
2399
2400 #[tokio::test]
2403 async fn cluster_rotate_key_returns_the_new_pubkey_or_501() {
2404 let control = Arc::new(StubControl {
2405 admits: std::sync::Mutex::new(Vec::new()),
2406 respond: StubJoin::Admit,
2407 });
2408 let resp = cluster_rotate_key(Extension(MeshControlHandle(Some(control)))).await;
2409 assert_eq!(resp.status(), StatusCode::OK);
2410 let body = axum::body::to_bytes(resp.into_body(), usize::MAX)
2411 .await
2412 .unwrap();
2413 let parsed: serde_json::Value = serde_json::from_slice(&body).unwrap();
2414 assert_eq!(parsed["pubkey"].as_str(), Some("cafe"));
2415
2416 let none = cluster_rotate_key(Extension(MeshControlHandle(None))).await;
2417 assert_eq!(none.status(), StatusCode::NOT_IMPLEMENTED);
2418 }
2419
2420 #[test]
2421 fn gateway_addr_gate_refuses_metadata_and_private_per_posture() {
2422 use boatramp_core::security::SecurityProfile;
2423 let strict = SecurityProfile::MultiTenant.preset();
2424 let loose = SecurityProfile::SingleTenant.preset(); let public: IpAddr = "93.184.216.34".parse().unwrap(); let private: IpAddr = "10.1.2.3".parse().unwrap();
2428 let loopback: IpAddr = "127.0.0.1".parse().unwrap();
2429 let metadata: IpAddr = IpAddr::V4(CLOUD_METADATA_IPV4);
2430
2431 assert!(gateway_addr_allowed(public, &strict));
2433 assert!(!gateway_addr_allowed(private, &strict));
2434 assert!(!gateway_addr_allowed(loopback, &strict));
2435 assert!(!gateway_addr_allowed(metadata, &strict));
2436
2437 assert!(gateway_addr_allowed(public, &loose));
2440 assert!(gateway_addr_allowed(private, &loose));
2441 assert!(gateway_addr_allowed(loopback, &loose));
2442 assert!(!gateway_addr_allowed(metadata, &loose));
2443 }
2444
2445 #[tokio::test]
2446 async fn resolve_env_merges_static_and_host_secrets() {
2447 use boatramp_core::config::HandlersSiteConfig;
2448
2449 std::env::set_var("BOATRAMP_TEST_RESOLVE_SECRET", "topsecret");
2451
2452 let deploy_env = std::collections::BTreeMap::from([
2453 ("GREETING".to_string(), "hi".to_string()),
2454 ("OVERRIDE_ME".to_string(), "static".to_string()),
2455 ]);
2456 let site_handlers = HandlersSiteConfig {
2457 enabled: true,
2458 secrets: std::collections::BTreeMap::from([
2459 (
2461 "SECRET_TOKEN".to_string(),
2462 "BOATRAMP_TEST_RESOLVE_SECRET".to_string(),
2463 ),
2464 (
2465 "OVERRIDE_ME".to_string(),
2466 "BOATRAMP_TEST_RESOLVE_SECRET".to_string(),
2467 ),
2468 (
2469 "MISSING".to_string(),
2470 "BOATRAMP_TEST_NOT_SET_VAR".to_string(),
2471 ),
2472 ]),
2473 ..Default::default()
2474 };
2475 let env = resolve_env(
2478 "blog",
2479 boatramp_core::project::ProjectRef::DEFAULT,
2480 &deploy_env,
2481 &site_handlers,
2482 true,
2483 None,
2484 )
2485 .await
2486 .expect("resolves");
2487
2488 assert!(env.contains(&("GREETING".to_string(), "hi".to_string())));
2492 assert!(env.contains(&("SECRET_TOKEN".to_string(), "topsecret".to_string())));
2493 assert!(env.contains(&("OVERRIDE_ME".to_string(), "topsecret".to_string())));
2494 assert!(!env.iter().any(|(k, _)| k == "MISSING"));
2495
2496 std::env::remove_var("BOATRAMP_TEST_RESOLVE_SECRET");
2497 }
2498
2499 #[tokio::test]
2500 async fn multi_tenant_posture_refuses_a_host_env_handler_secret() {
2501 use boatramp_core::config::HandlersSiteConfig;
2502
2503 std::env::set_var("BOATRAMP_TEST_OTHER_TENANT_SECRET", "leak-me");
2508 let deploy_env = std::collections::BTreeMap::new();
2509 let bare = HandlersSiteConfig {
2510 enabled: true,
2511 secrets: std::collections::BTreeMap::from([(
2512 "STOLEN".to_string(),
2513 "BOATRAMP_TEST_OTHER_TENANT_SECRET".to_string(),
2514 )]),
2515 ..Default::default()
2516 };
2517 let err = resolve_env(
2518 "evil",
2519 boatramp_core::project::ProjectRef::DEFAULT,
2520 &deploy_env,
2521 &bare,
2522 false,
2523 None,
2524 )
2525 .await
2526 .expect_err("multi-tenant must refuse a bare host-env ref");
2527 assert!(
2528 err.contains("STOLEN"),
2529 "error names the offending guest var: {err}"
2530 );
2531 assert!(
2532 err.contains("multi-tenant"),
2533 "error steers the tenant: {err}"
2534 );
2535 assert!(
2536 !err.contains("leak-me"),
2537 "the host value must never appear (never read): {err}"
2538 );
2539
2540 let explicit = HandlersSiteConfig {
2542 enabled: true,
2543 secrets: std::collections::BTreeMap::from([(
2544 "STOLEN".to_string(),
2545 "env:BOATRAMP_TEST_OTHER_TENANT_SECRET".to_string(),
2546 )]),
2547 ..Default::default()
2548 };
2549 assert!(resolve_env(
2550 "evil",
2551 boatramp_core::project::ProjectRef::DEFAULT,
2552 &deploy_env,
2553 &explicit,
2554 false,
2555 None,
2556 )
2557 .await
2558 .is_err());
2559
2560 let reserved = HandlersSiteConfig {
2562 enabled: true,
2563 secrets: std::collections::BTreeMap::from([(
2564 "TOKEN".to_string(),
2565 "vault:kv/data/app#token".to_string(),
2566 )]),
2567 ..Default::default()
2568 };
2569 let err = resolve_env(
2570 "evil",
2571 boatramp_core::project::ProjectRef::DEFAULT,
2572 &deploy_env,
2573 &reserved,
2574 true,
2575 None,
2576 )
2577 .await
2578 .expect_err("a reserved scheme is not yet supported, even under single-tenant");
2579 assert!(err.contains("not yet supported"), "{err}");
2580
2581 let arbitrary = HandlersSiteConfig {
2585 enabled: true,
2586 secrets: std::collections::BTreeMap::from([(
2587 "KEY".to_string(),
2588 "aws:sm/prod/apikey".to_string(),
2589 )]),
2590 ..Default::default()
2591 };
2592 let err = resolve_env(
2593 "evil",
2594 boatramp_core::project::ProjectRef::DEFAULT,
2595 &deploy_env,
2596 &arbitrary,
2597 true,
2598 None,
2599 )
2600 .await
2601 .expect_err("any unknown scheme is reserved, even under single-tenant");
2602 assert!(
2603 err.contains("not yet supported") && err.contains("aws"),
2604 "provider-neutral reservation names the scheme: {err}"
2605 );
2606
2607 std::env::remove_var("BOATRAMP_TEST_OTHER_TENANT_SECRET");
2608 }
2609
2610 #[tokio::test]
2611 async fn function_resolve_secret_env_reads_host_and_matches_handler_semantics() {
2612 std::env::set_var("BOATRAMP_TEST_FN_SECRET", "fnsecret");
2617
2618 let static_env = std::collections::BTreeMap::from([
2619 ("STAGE".to_string(), "prod".to_string()),
2620 ("OVERRIDE_ME".to_string(), "static".to_string()),
2621 ]);
2622 let secrets = std::collections::BTreeMap::from([
2623 ("DB_URL".to_string(), "BOATRAMP_TEST_FN_SECRET".to_string()),
2625 (
2627 "OVERRIDE_ME".to_string(),
2628 "BOATRAMP_TEST_FN_SECRET".to_string(),
2629 ),
2630 (
2632 "MISSING".to_string(),
2633 "BOATRAMP_TEST_FN_NOT_SET".to_string(),
2634 ),
2635 ]);
2636 let env = resolve_secret_env(
2638 "fn/api",
2639 boatramp_core::project::ProjectRef::DEFAULT,
2640 &static_env,
2641 &secrets,
2642 true,
2643 None,
2644 )
2645 .await
2646 .expect("resolves");
2647
2648 assert!(env.contains(&("STAGE".to_string(), "prod".to_string())));
2649 assert!(env.contains(&("DB_URL".to_string(), "fnsecret".to_string())));
2651 assert!(env.contains(&("OVERRIDE_ME".to_string(), "fnsecret".to_string())));
2653 assert!(!env.iter().any(|(k, _)| k == "MISSING"));
2655
2656 std::env::remove_var("BOATRAMP_TEST_FN_SECRET");
2657 }
2658
2659 #[tokio::test]
2660 async fn multi_tenant_posture_refuses_a_host_env_function_secret() {
2661 std::env::set_var("BOATRAMP_TEST_FN_LEAK", "leak-me");
2666 let static_env = std::collections::BTreeMap::new();
2667 let secrets = std::collections::BTreeMap::from([(
2668 "DB_URL".to_string(),
2669 "BOATRAMP_TEST_FN_LEAK".to_string(),
2670 )]);
2671
2672 let err = resolve_secret_env(
2674 "fn/api",
2675 boatramp_core::project::ProjectRef::DEFAULT,
2676 &static_env,
2677 &secrets,
2678 false,
2679 None,
2680 )
2681 .await
2682 .expect_err("multi-tenant must refuse a function host-env ref");
2683 assert!(
2684 err.contains("DB_URL"),
2685 "error names the offending guest var: {err}"
2686 );
2687 assert!(
2688 !err.contains("leak-me"),
2689 "host value must never appear: {err}"
2690 );
2691
2692 let env = resolve_secret_env(
2694 "fn/api",
2695 boatramp_core::project::ProjectRef::DEFAULT,
2696 &static_env,
2697 &secrets,
2698 true,
2699 None,
2700 )
2701 .await
2702 .expect("resolves");
2703 assert!(env.contains(&("DB_URL".to_string(), "leak-me".to_string())));
2704
2705 std::env::remove_var("BOATRAMP_TEST_FN_LEAK");
2706 }
2707
2708 #[tokio::test]
2709 async fn boatramp_scheme_resolves_from_the_project_scoped_store() {
2710 use boatramp_core::project::ProjectRef;
2711 use boatramp_core::secret_store::SecretStore;
2712 use std::sync::Arc;
2713
2714 struct XorEnvelope;
2716 #[async_trait::async_trait]
2717 impl boatramp_core::envelope::KeyEnvelope for XorEnvelope {
2718 async fn wrap(
2719 &self,
2720 p: &[u8],
2721 ) -> Result<Vec<u8>, boatramp_core::envelope::EnvelopeError> {
2722 Ok(p.iter().map(|b| b ^ 0x5a).collect())
2723 }
2724 async fn unwrap(
2725 &self,
2726 c: &[u8],
2727 ) -> Result<Vec<u8>, boatramp_core::envelope::EnvelopeError> {
2728 Ok(c.iter().map(|b| b ^ 0x5a).collect())
2729 }
2730 }
2731
2732 let store = SecretStore::new(
2733 Arc::new(boatramp_core::kv::MemoryKv::new()),
2734 Arc::new(XorEnvelope),
2735 );
2736 store
2737 .set(ProjectRef::new("acme"), "api-key", b"s3cr3t")
2738 .await
2739 .unwrap();
2740
2741 let static_env = std::collections::BTreeMap::new();
2742 let secrets = std::collections::BTreeMap::from([
2743 ("API_KEY".to_string(), "boatramp:api-key".to_string()),
2744 ("MISSING".to_string(), "boatramp:not-set".to_string()),
2745 ]);
2746
2747 let env = resolve_secret_env(
2750 "site",
2751 ProjectRef::new("acme"),
2752 &static_env,
2753 &secrets,
2754 false,
2755 Some(&store),
2756 )
2757 .await
2758 .expect("boatramp refs resolve without the host-env gate");
2759 assert!(env.contains(&("API_KEY".to_string(), "s3cr3t".to_string())));
2760 assert!(!env.iter().any(|(k, _)| k == "MISSING"));
2762
2763 let other_secrets = std::collections::BTreeMap::from([(
2765 "API_KEY".to_string(),
2766 "boatramp:api-key".to_string(),
2767 )]);
2768 let other = resolve_secret_env(
2769 "site",
2770 ProjectRef::new("globex"),
2771 &static_env,
2772 &other_secrets,
2773 false,
2774 Some(&store),
2775 )
2776 .await
2777 .expect("resolves (a foreign project's secret is simply absent → skipped)");
2778 assert!(
2779 !other.iter().any(|(k, _)| k == "API_KEY"),
2780 "a tenant must not read another project's secret"
2781 );
2782
2783 let err = resolve_secret_env(
2785 "site",
2786 ProjectRef::new("acme"),
2787 &static_env,
2788 &other_secrets,
2789 false,
2790 None,
2791 )
2792 .await
2793 .expect_err("no store configured must fail closed");
2794 assert!(err.contains("no internal secret store"), "{err}");
2795 }
2796
2797 fn req() -> Request {
2798 Request::builder()
2799 .uri("/")
2800 .header(header::HOST, "example.com")
2801 .body(Body::empty())
2802 .unwrap()
2803 }
2804
2805 #[test]
2806 fn forwarded_headers_set_standard_triple() {
2807 let mut request = req();
2808 set_forwarded_headers(&mut request, "203.0.113.7".parse().unwrap());
2809 let h = request.headers();
2810 assert_eq!(h.get("x-forwarded-for").unwrap(), "203.0.113.7");
2811 assert_eq!(h.get("x-forwarded-host").unwrap(), "example.com");
2812 assert_eq!(h.get("x-forwarded-proto").unwrap(), "http");
2813 }
2814
2815 #[test]
2816 fn forwarded_for_overwrites_spoofed_value() {
2817 let mut request = Request::builder()
2820 .uri("/")
2821 .header(header::HOST, "example.com")
2822 .header("x-forwarded-for", "10.0.0.1, 1.2.3.4")
2823 .body(Body::empty())
2824 .unwrap();
2825 set_forwarded_headers(&mut request, "203.0.113.7".parse().unwrap());
2826 let values: Vec<_> = request
2827 .headers()
2828 .get_all("x-forwarded-for")
2829 .iter()
2830 .collect();
2831 assert_eq!(values.len(), 1);
2832 assert_eq!(values[0], "203.0.113.7");
2833 }
2834
2835 #[test]
2836 fn forwarded_proto_preserves_upstream_tls() {
2837 let mut request = Request::builder()
2839 .uri("/")
2840 .header(header::HOST, "example.com")
2841 .header("x-forwarded-proto", "https")
2842 .body(Body::empty())
2843 .unwrap();
2844 set_forwarded_headers(&mut request, "203.0.113.7".parse().unwrap());
2845 assert_eq!(request.headers().get("x-forwarded-proto").unwrap(), "https");
2846 }
2847
2848 #[test]
2849 fn forwarded_host_absent_when_no_host_header() {
2850 let mut request = Request::builder().uri("/").body(Body::empty()).unwrap();
2851 set_forwarded_headers(&mut request, "203.0.113.7".parse().unwrap());
2852 assert!(request.headers().get("x-forwarded-host").is_none());
2853 assert_eq!(
2854 request.headers().get("x-forwarded-for").unwrap(),
2855 "203.0.113.7"
2856 );
2857 }
2858
2859 use boatramp_core::kv::{KvStore, MemoryKv};
2862 use boatramp_core::messaging::{LogMessaging, Messaging};
2863 use boatramp_core::{ByteStream, GetObject, ObjectMeta, PutMeta, StorageError};
2864
2865 const EVENT_CONSUMER: &[u8] =
2866 include_bytes!("../../boatramp-handlers/tests/fixtures/event-consumer.wasm");
2867
2868 #[derive(Default)]
2869 struct MemStorage {
2870 objects: std::sync::Mutex<std::collections::HashMap<String, Vec<u8>>>,
2871 }
2872
2873 #[async_trait::async_trait]
2874 impl boatramp_core::Storage for MemStorage {
2875 async fn get(&self, key: &str) -> Result<GetObject, StorageError> {
2876 let bytes = self
2877 .objects
2878 .lock()
2879 .unwrap()
2880 .get(key)
2881 .cloned()
2882 .ok_or_else(|| StorageError::NotFound(key.to_string()))?;
2883 let body: ByteStream =
2884 futures::stream::once(async move { Ok(bytes::Bytes::from(bytes)) }).boxed();
2885 Ok(GetObject {
2886 meta: ObjectMeta {
2887 key: key.to_string(),
2888 ..Default::default()
2889 },
2890 body,
2891 })
2892 }
2893 async fn get_range(
2894 &self,
2895 key: &str,
2896 _: u64,
2897 _: Option<u64>,
2898 ) -> Result<GetObject, StorageError> {
2899 self.get(key).await
2900 }
2901 async fn put(
2902 &self,
2903 key: &str,
2904 mut body: ByteStream,
2905 _: PutMeta,
2906 ) -> Result<ObjectMeta, StorageError> {
2907 use futures::StreamExt;
2908 let mut buf = Vec::new();
2909 while let Some(chunk) = body.next().await {
2910 buf.extend_from_slice(&chunk?);
2911 }
2912 self.objects.lock().unwrap().insert(key.to_string(), buf);
2913 Ok(ObjectMeta {
2914 key: key.to_string(),
2915 ..Default::default()
2916 })
2917 }
2918 async fn head(&self, key: &str) -> Result<ObjectMeta, StorageError> {
2919 self.objects
2920 .lock()
2921 .unwrap()
2922 .get(key)
2923 .map(|_| ObjectMeta {
2924 key: key.to_string(),
2925 ..Default::default()
2926 })
2927 .ok_or_else(|| StorageError::NotFound(key.to_string()))
2928 }
2929 async fn delete(&self, key: &str) -> Result<(), StorageError> {
2930 self.objects.lock().unwrap().remove(key);
2931 Ok(())
2932 }
2933 async fn list(&self, _: &str) -> Result<Vec<ObjectMeta>, StorageError> {
2934 Ok(Vec::new())
2935 }
2936 }
2937
2938 fn observed_state_in(
2941 project: &str,
2942 workload: &str,
2943 host: &str,
2944 healthy: bool,
2945 phase: boatramp_core::compute::ReplicaPhase,
2946 ) -> boatramp_core::compute::ObservedInstance {
2947 use boatramp_core::compute::{Endpoint, InstanceHandle, ReplicaPhase, Scheme, Snapshot};
2948 boatramp_core::compute::ObservedInstance {
2949 handle: InstanceHandle {
2950 project: project.into(),
2951 workload: workload.into(),
2952 replica: 0,
2953 backend_ref: "ref-0".into(),
2954 },
2955 node: 1,
2956 backend: "vmm".into(),
2957 endpoint: Endpoint {
2958 scheme: Scheme::Http,
2959 host: host.into(),
2960 port: 80,
2961 },
2962 region: None,
2963 healthy,
2964 started_at: None,
2965 phase,
2966 snapshot: matches!(phase, ReplicaPhase::Zero).then(|| Snapshot {
2967 project: project.into(),
2968 workload: workload.into(),
2969 replica: 0,
2970 data_ref: "snap-0".into(),
2971 }),
2972 }
2973 }
2974
2975 fn observed_state(
2977 workload: &str,
2978 healthy: bool,
2979 phase: boatramp_core::compute::ReplicaPhase,
2980 ) -> boatramp_core::compute::ObservedInstance {
2981 observed_state_in("default", workload, "10.0.0.2", healthy, phase)
2982 }
2983
2984 #[tokio::test]
2985 async fn has_parked_replica_detects_a_zeroed_replica() {
2986 use boatramp_core::compute::ReplicaPhase;
2987 let storage = Arc::new(MemStorage::default());
2988 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
2989 let deploy = DeployStore::new(storage, kv);
2990
2991 assert!(!has_parked_replica(&deploy, "default", "w").await);
2993 deploy
2995 .set_replica_state(
2996 ProjectRef::DEFAULT,
2997 &observed_state("w", true, ReplicaPhase::Running),
2998 )
2999 .await
3000 .unwrap();
3001 assert!(!has_parked_replica(&deploy, "default", "w").await);
3002 deploy
3004 .set_replica_state(
3005 ProjectRef::DEFAULT,
3006 &observed_state("w", false, ReplicaPhase::Zero),
3007 )
3008 .await
3009 .unwrap();
3010 assert!(has_parked_replica(&deploy, "default", "w").await);
3011 }
3012
3013 #[tokio::test]
3014 async fn await_warm_returns_immediately_when_healthy_and_times_out_otherwise() {
3015 use boatramp_core::compute::ReplicaPhase;
3016 let storage = Arc::new(MemStorage::default());
3017 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3018 let deploy = DeployStore::new(storage, kv);
3019
3020 let empty = await_warm(
3022 &deploy,
3023 "default",
3024 "w",
3025 std::time::Duration::from_millis(150),
3026 )
3027 .await;
3028 assert!(empty.is_empty());
3029
3030 deploy
3032 .set_replica_state(
3033 ProjectRef::DEFAULT,
3034 &observed_state("w", true, ReplicaPhase::Running),
3035 )
3036 .await
3037 .unwrap();
3038 let warm = await_warm(&deploy, "default", "w", std::time::Duration::from_secs(5)).await;
3039 assert_eq!(warm, vec!["http://10.0.0.2:80".to_string()]);
3040 }
3041
3042 #[tokio::test]
3048 async fn compute_endpoints_are_project_scoped() {
3049 use boatramp_core::compute::ReplicaPhase;
3050 let storage = Arc::new(MemStorage::default());
3051 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3052 let deploy = DeployStore::new(storage, kv);
3053
3054 deploy
3056 .set_replica_state(
3057 ProjectRef::new("acme"),
3058 &observed_state_in("acme", "web", "10.0.0.5", true, ReplicaPhase::Running),
3059 )
3060 .await
3061 .unwrap();
3062 deploy
3063 .set_replica_state(
3064 ProjectRef::DEFAULT,
3065 &observed_state_in("default", "web", "10.0.0.9", true, ReplicaPhase::Running),
3066 )
3067 .await
3068 .unwrap();
3069
3070 assert_eq!(
3072 compute_endpoints(&deploy, "acme", "web").await,
3073 vec!["http://10.0.0.5:80".to_string()],
3074 "acme's web resolves against acme, not default"
3075 );
3076 assert_eq!(
3078 compute_endpoints(&deploy, "default", "web").await,
3079 vec!["http://10.0.0.9:80".to_string()]
3080 );
3081 assert!(compute_endpoints(&deploy, "beta", "web").await.is_empty());
3084 }
3085
3086 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3090 async fn dispatcher_delivers_at_least_once_then_dead_letters() {
3091 use boatramp_handlers::{Bindings, HandlerEngine, Limits};
3092 let storage = Arc::new(MemStorage::default());
3093 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3094 let mq = LogMessaging::new(storage, kv.clone());
3095 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3096 let hash = boatramp_core::deploy::sha256_hex(EVENT_CONSUMER);
3097 let bindings = Bindings::new("blog").with_keyvalue("blog", kv.clone());
3098 let topic = "blog/orders/created";
3099
3100 for _ in 0..3 {
3102 mq.publish(topic, b"ok").await.unwrap();
3103 }
3104 loop {
3105 let acked = dispatch_consumer_batch(
3106 &engine,
3107 &mq,
3108 &metrics::Metrics::default(),
3109 "blog",
3110 topic,
3111 "blog/",
3112 "",
3113 boatramp_core::messaging::StartPosition::Latest,
3114 &hash,
3115 EVENT_CONSUMER,
3116 &bindings,
3117 Limits::default(),
3118 Duration::from_secs(30),
3119 5,
3120 10,
3121 )
3122 .await;
3123 if acked == 0 {
3124 break;
3125 }
3126 }
3127 assert_eq!(
3128 kv.get("hkv/blog/delivered/orders/created").await.unwrap(),
3129 Some(b"3".to_vec())
3130 );
3131
3132 mq.publish(topic, b"fail").await.unwrap();
3135 for _ in 0..5 {
3136 dispatch_consumer_batch(
3137 &engine,
3138 &mq,
3139 &metrics::Metrics::default(),
3140 "blog",
3141 topic,
3142 "blog/",
3143 "",
3144 boatramp_core::messaging::StartPosition::Latest,
3145 &hash,
3146 EVENT_CONSUMER,
3147 &bindings,
3148 Limits::default(),
3149 Duration::ZERO,
3150 2,
3151 10,
3152 )
3153 .await;
3154 }
3155 assert_eq!(mq.dead_letter_count(topic).await.unwrap(), 1);
3156 assert_eq!(
3158 kv.get("hkv/blog/delivered/orders/created").await.unwrap(),
3159 Some(b"3".to_vec())
3160 );
3161 }
3162
3163 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3168 async fn consumer_groups_fan_out_through_the_dispatcher() {
3169 use boatramp_handlers::{Bindings, HandlerEngine, Limits};
3170 let storage = Arc::new(MemStorage::default());
3171 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3172 let mq = LogMessaging::new(storage, kv.clone());
3173 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3174 let hash = boatramp_core::deploy::sha256_hex(EVENT_CONSUMER);
3175 let bindings = Bindings::new("blog").with_keyvalue("blog", kv.clone());
3176 let topic = "blog/orders/created";
3177 let start = boatramp_core::messaging::StartPosition::Latest;
3178
3179 for g in ["billing", "audit"] {
3182 let n = dispatch_consumer_batch(
3183 &engine,
3184 &mq,
3185 &metrics::Metrics::default(),
3186 "blog",
3187 topic,
3188 "blog/",
3189 g,
3190 start,
3191 &hash,
3192 EVENT_CONSUMER,
3193 &bindings,
3194 Limits::default(),
3195 Duration::from_secs(30),
3196 5,
3197 10,
3198 )
3199 .await;
3200 assert_eq!(n, 0, "no events yet for group {g}");
3201 }
3202 mq.publish(topic, b"ok").await.unwrap();
3203
3204 for g in ["billing", "audit"] {
3206 let n = dispatch_consumer_batch(
3207 &engine,
3208 &mq,
3209 &metrics::Metrics::default(),
3210 "blog",
3211 topic,
3212 "blog/",
3213 g,
3214 start,
3215 &hash,
3216 EVENT_CONSUMER,
3217 &bindings,
3218 Limits::default(),
3219 Duration::from_secs(30),
3220 5,
3221 10,
3222 )
3223 .await;
3224 assert_eq!(n, 1, "group {g} should receive the message");
3225 }
3226 assert_eq!(
3228 kv.get("hkv/blog/delivered/orders/created").await.unwrap(),
3229 Some(b"2".to_vec())
3230 );
3231 }
3232
3233 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3237 async fn scheduler_runs_current_consumers_not_previews() {
3238 use boatramp_core::config::{ConsumerConfig, DeployConfig, HandlersSiteConfig, SiteConfig};
3239 use boatramp_core::deploy::{DeployStore, FileEntry, Manifest};
3240 use boatramp_handlers::{HandlerEngine, Limits};
3241 use futures::StreamExt;
3242
3243 let storage = Arc::new(MemStorage::default());
3244 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3245 let deploy = DeployStore::new(storage.clone(), kv.clone());
3246 let messaging: Arc<dyn Messaging> =
3247 Arc::new(LogMessaging::new(storage.clone(), kv.clone()));
3248
3249 let hash = boatramp_core::deploy::sha256_hex(EVENT_CONSUMER);
3251 let stream: ByteStream =
3252 futures::stream::once(async move { Ok(bytes::Bytes::from_static(EVENT_CONSUMER)) })
3253 .boxed();
3254 deploy.put_blob(&hash, stream).await.unwrap();
3255 let mut files = std::collections::BTreeMap::new();
3256 files.insert(
3257 "consumer.wasm".to_string(),
3258 FileEntry {
3259 hash: hash.clone(),
3260 size: EVENT_CONSUMER.len() as u64,
3261 content_type: None,
3262 variants: std::collections::BTreeMap::new(),
3263 },
3264 );
3265 let manifest = Manifest {
3266 files,
3267 config: DeployConfig {
3268 consumers: vec![ConsumerConfig {
3269 tenancy: None,
3270 token_claims: None,
3271 topic: "orders/created".into(),
3272 component: "consumer.wasm".into(),
3273 imports: vec!["wasi:keyvalue".into()],
3274 group: String::new(),
3275 start: Default::default(),
3276 }],
3277 ..Default::default()
3278 },
3279 ..Default::default()
3280 };
3281 let id = deploy.put_manifest(&manifest).await.unwrap();
3282 deploy
3283 .activate(ProjectRef::DEFAULT, "blog", &id)
3284 .await
3285 .unwrap();
3286 deploy
3287 .set_site_config(
3288 ProjectRef::DEFAULT,
3289 "blog",
3290 &SiteConfig {
3291 handlers: Some(HandlersSiteConfig {
3292 enabled: true,
3293 allow_imports: vec!["wasi:keyvalue".into()],
3294 ..Default::default()
3295 }),
3296 ..Default::default()
3297 },
3298 )
3299 .await
3300 .unwrap();
3301
3302 messaging
3304 .publish("blog/orders/created", b"live")
3305 .await
3306 .unwrap();
3307 messaging
3308 .publish("blog/_preview/abc/orders/created", b"preview")
3309 .await
3310 .unwrap();
3311
3312 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3313 let rt = HandlerRuntime::new(engine, kv.clone(), storage, None, Some(messaging));
3314 let inner = rt.inner.clone().unwrap();
3315 let mut cache = std::collections::HashMap::new();
3316 let mut crons = std::collections::HashMap::new();
3317 let mut sweep = std::collections::HashMap::new();
3318 let now = CronNow {
3319 minute: 0,
3320 hour: 0,
3321 dom: 1,
3322 month: 1,
3323 dow: 0,
3324 minute_stamp: 0,
3325 };
3326 for _ in 0..3 {
3327 run_scheduler_tick(&inner, &deploy, &mut cache, &mut crons, &mut sweep, now)
3328 .await
3329 .unwrap();
3330 }
3331
3332 assert_eq!(
3334 kv.get("hkv/blog/delivered/orders/created").await.unwrap(),
3335 Some(b"1".to_vec())
3336 );
3337 assert_eq!(
3340 kv.get("hkv/blog/_preview/abc/delivered/orders/created")
3341 .await
3342 .unwrap(),
3343 None
3344 );
3345 }
3346
3347 const KV_COUNTER: &[u8] =
3352 include_bytes!("../../boatramp-handlers/tests/fixtures/kv-counter.wasm");
3353
3354 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3359 async fn function_invoker_runs_target_buffers_and_meters() {
3360 use boatramp_core::deploy::DeployStore;
3361 use boatramp_core::function::{Function, FunctionVersion, Lifecycle, Owner};
3362 use boatramp_handlers::{HandlerEngine, InvokeError, InvokeRequest, Invoker, Limits};
3363 use futures::StreamExt;
3364
3365 const HTTP_200: &[u8] =
3368 include_bytes!("../../boatramp-handlers/tests/fixtures/http-200.wasm");
3369
3370 let storage = Arc::new(MemStorage::default());
3371 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3372 let deploy = DeployStore::new(storage.clone(), kv.clone());
3373
3374 let hash = boatramp_core::deploy::sha256_hex(HTTP_200);
3375 let stream: ByteStream =
3376 futures::stream::once(async move { Ok(bytes::Bytes::from_static(HTTP_200)) }).boxed();
3377 deploy.put_blob(&hash, stream).await.unwrap();
3378 let function = Function {
3379 name: "target".into(),
3380 owner: Owner::Project("default".into()),
3381 versions: vec![FunctionVersion {
3382 id: "v1".into(),
3383 component: hash.clone(),
3384 created: 0,
3385 lifecycle: Lifecycle::Independent,
3386 }],
3387 active: "v1".into(),
3388 aliases: Default::default(),
3389 config: Default::default(),
3390 };
3391 deploy
3392 .put_function(ProjectRef::DEFAULT, &function)
3393 .await
3394 .unwrap();
3395
3396 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3397 let rt = HandlerRuntime::new(engine, kv, storage, None, None);
3398 rt.set_invoker(deploy.clone());
3399 let invoker = rt.inner.as_ref().unwrap().invoker.get().unwrap().clone();
3400
3401 let request = || InvokeRequest {
3402 method: "GET".into(),
3403 path: "/".into(),
3404 headers: vec![],
3405 body: vec![],
3406 };
3407
3408 let response = invoker.invoke("target", request(), 1).await.unwrap();
3410 assert_eq!(response.status, 200);
3411
3412 let metering = deploy
3414 .get_metering(ProjectRef::DEFAULT, "target")
3415 .await
3416 .unwrap()
3417 .unwrap();
3418 assert_eq!(metering.invocations, 1);
3419
3420 let err = invoker.invoke("ghost", request(), 1).await.unwrap_err();
3422 assert!(matches!(err, InvokeError::NotFound));
3423 }
3424
3425 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3431 async fn federation_runner_enforces_the_safelist_before_planning() {
3432 use boatramp_core::deploy::DeployStore;
3433 use boatramp_core::project::ProjectRef;
3434 use boatramp_handlers::{GraphqlRequest, HandlerEngine, Limits, SupergraphRunError};
3435
3436 let storage = Arc::new(MemStorage::default());
3437 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3438 let deploy = DeployStore::new(storage.clone(), kv.clone());
3439 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3440 let rt = HandlerRuntime::new(engine, kv.clone(), storage, None, None);
3441 rt.set_invoker(deploy.clone());
3442 let runner = rt
3443 .inner
3444 .as_ref()
3445 .unwrap()
3446 .federation_runner
3447 .get()
3448 .unwrap()
3449 .scoped(ProjectRef::new("default"), Vec::new());
3450
3451 let req = |query: &str| GraphqlRequest {
3452 query: Some(query.to_string()),
3453 persisted_hash: None,
3454 variables: "{}".to_string(),
3455 operation_name: None,
3456 authorization: None,
3457 };
3458
3459 assert!(matches!(
3461 runner.run(req("{ me { id } }"), 1).await,
3462 Err(SupergraphRunError::NotSafelisted)
3463 ));
3464
3465 let query = "{ me { id } }";
3468 let hash = crate::graphql_apq::sha256_hex(query);
3469 kv.put(&format!("hapq/default/{hash}"), query.as_bytes().to_vec())
3470 .await
3471 .unwrap();
3472 assert!(matches!(
3473 runner.run(req(query), 1).await,
3474 Err(SupergraphRunError::PlanFailed(_))
3475 ));
3476
3477 let persisted = GraphqlRequest {
3479 query: None,
3480 persisted_hash: Some("deadbeef".to_string()),
3481 variables: "{}".to_string(),
3482 operation_name: None,
3483 authorization: None,
3484 };
3485 assert!(matches!(
3486 runner.run(persisted, 1).await,
3487 Err(SupergraphRunError::NotSafelisted)
3488 ));
3489 }
3490
3491 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3500 #[ignore = "run on the host toolchain (real libsql static-musl segfault); wired in the CI graphql-propagation gate"]
3501 async fn graphql_run_propagates_caller_principal_to_a_scoped_subfetch() {
3502 use boatramp_core::deploy::{sha256_hex, DeployStore};
3503 use boatramp_core::function::{
3504 Function, FunctionConfig, FunctionVersion, Lifecycle, Owner,
3505 };
3506 use boatramp_core::project::ProjectRef;
3507 use boatramp_core::sql::{SqlBackends, SqlValue};
3508 use boatramp_core::tenancy::{AccessMode, ScopeAxis, Tenancy, TenantSource};
3509 use boatramp_handlers::{GraphqlRequest, HandlerEngine, Limits, ScopeFact};
3510
3511 const PROBE: &[u8] = include_bytes!("../tests/fixtures/graphql-scope-probe.wasm");
3515
3516 let storage = Arc::new(MemStorage::default());
3517 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3518 let deploy = DeployStore::new(storage.clone(), kv.clone());
3519
3520 let sql_dir = std::env::temp_dir().join(format!("br-gqlprop-{}", std::process::id()));
3523 let _ = std::fs::remove_dir_all(&sql_dir);
3524 let backends = boatramp_storage::LibsqlSqlBackends::local(&sql_dir);
3525 let db = backends
3526 .database("default", "fn/scopeprobe", "")
3527 .await
3528 .unwrap();
3529 {
3530 let mut tx = db.begin().await.unwrap();
3531 tx.execute(
3532 "CREATE TABLE items (id TEXT PRIMARY KEY, tenant_id TEXT)",
3533 &[],
3534 )
3535 .await
3536 .unwrap();
3537 for (id, tenant) in [("a1", "tenant_A"), ("b1", "tenant_B"), ("b2", "tenant_B")] {
3538 tx.execute(
3539 "INSERT INTO items (id, tenant_id) VALUES (?1, ?2)",
3540 &[SqlValue::Text(id.into()), SqlValue::Text(tenant.into())],
3541 )
3542 .await
3543 .unwrap();
3544 }
3545 tx.commit().await.unwrap();
3546 }
3547 let sql: Arc<dyn SqlBackends> = Arc::new(backends);
3548
3549 let hash = sha256_hex(PROBE);
3552 let stream: ByteStream =
3553 futures::stream::once(async move { Ok(bytes::Bytes::from_static(PROBE)) }).boxed();
3554 deploy.put_blob(&hash, stream).await.unwrap();
3555 let function = Function {
3556 name: "scopeprobe".into(),
3557 owner: Owner::Project("default".into()),
3558 versions: vec![FunctionVersion {
3559 id: "v1".into(),
3560 component: hash.clone(),
3561 created: 0,
3562 lifecycle: Lifecycle::Independent,
3563 }],
3564 active: "v1".into(),
3565 aliases: Default::default(),
3566 config: FunctionConfig {
3567 imports: vec!["sql".into()],
3568 tenancy: Some(Tenancy::Scoped {
3569 column: "tenant_id".into(),
3570 sources: vec![TenantSource::None],
3571 read: AccessMode::Own,
3572 write: AccessMode::None,
3573 }),
3574 ..Default::default()
3575 },
3576 };
3577 deploy
3578 .put_function(ProjectRef::DEFAULT, &function)
3579 .await
3580 .unwrap();
3581
3582 crate::graphql_registry::publish(
3584 kv.as_ref(),
3585 "default",
3586 "scopeprobe",
3587 "type Query { items: [Item!]! }\ntype Item @key(fields: \"id\") { id: ID! }",
3588 )
3589 .await
3590 .unwrap();
3591 let query = "{ items { id } }";
3592 let op_hash = crate::graphql_apq::sha256_hex(query);
3593 kv.put(
3594 &format!("hapq/default/{op_hash}"),
3595 query.as_bytes().to_vec(),
3596 )
3597 .await
3598 .unwrap();
3599
3600 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3601 let rt = HandlerRuntime::new(engine, kv.clone(), storage, Some(sql), None);
3602 rt.set_invoker(deploy.clone());
3603 let fed = rt
3604 .inner
3605 .as_ref()
3606 .unwrap()
3607 .federation_runner
3608 .get()
3609 .unwrap()
3610 .clone();
3611 let req = || GraphqlRequest {
3612 query: Some(query.to_string()),
3613 persisted_hash: None,
3614 variables: "{}".to_string(),
3615 operation_name: None,
3616 authorization: None,
3617 };
3618
3619 let runner_b = fed.scoped(
3621 ProjectRef::new("default"),
3622 vec![ScopeFact {
3623 axis: ScopeAxis::Tenant,
3624 value: SqlValue::Text("tenant_B".into()),
3625 }],
3626 );
3627 let body_b = String::from_utf8_lossy(&runner_b.run(req(), 0).await.unwrap()).into_owned();
3628 assert!(
3629 body_b.contains("\"b1\"") && body_b.contains("\"b2\"") && !body_b.contains("\"a1\""),
3630 "graphql::run propagated principal B → the subgraph read ONLY tenant B's rows: {body_b}"
3631 );
3632
3633 let runner_empty = fed.scoped(ProjectRef::new("default"), Vec::new());
3636 let body_none =
3637 String::from_utf8_lossy(&runner_empty.run(req(), 0).await.unwrap()).into_owned();
3638 assert!(
3639 !body_none.contains("\"a1\"")
3640 && !body_none.contains("\"b1\"")
3641 && !body_none.contains("\"b2\""),
3642 "with NO propagated principal the subgraph fails closed — no rows leak: {body_none}"
3643 );
3644
3645 let _ = std::fs::remove_dir_all(&sql_dir);
3646 println!(
3647 "GRAPHQL-RUN PRINCIPAL PROPAGATION OK: graphql::run carried the caller's resolved principal \
3648 (tenant B) to a federated subgraph sub-fetch, which resolved its own-tenancy from the \
3649 inherited principal and returned ONLY tenant B's rows over a real libsql engine; with no \
3650 principal the same sub-fetch failed closed (no rows) — the async lane can drive a \
3651 tenant-scoped supergraph read/write with no request bearer, symmetric to emit::invoke"
3652 );
3653 }
3654
3655 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3664 #[ignore = "run on the host toolchain (real libsql static-musl segfault); wired in the CI gateway-target gate"]
3665 async fn gateway_forces_target_confinement_onto_a_wasm_subgraph() {
3666 use boatramp_core::deploy::{sha256_hex, DeployStore};
3667 use boatramp_core::function::{
3668 Function, FunctionConfig, FunctionVersion, Lifecycle, Owner,
3669 };
3670 use boatramp_core::project::ProjectRef;
3671 use boatramp_core::sql::{SqlBackends, SqlValue};
3672 use boatramp_core::tenancy::{
3673 AccessMode, PublicPredicate, PublicSubset, PublicTerm, TableScope, Tenancy,
3674 TenancySchema, TenantSource,
3675 };
3676 use boatramp_handlers::{HandlerEngine, Limits};
3677
3678 const PROBE: &[u8] = include_bytes!("../tests/fixtures/graphql-scope-probe.wasm");
3684
3685 let storage = Arc::new(MemStorage::default());
3686 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3687 let deploy = DeployStore::new(storage.clone(), kv.clone());
3688
3689 let sql_dir = std::env::temp_dir().join(format!("br-gwtarget-{}", std::process::id()));
3692 let _ = std::fs::remove_dir_all(&sql_dir);
3693 let backends = boatramp_storage::LibsqlSqlBackends::local(&sql_dir);
3694 let db = backends
3695 .database("default", "fn/scopeprobe", "")
3696 .await
3697 .unwrap();
3698 {
3699 let mut tx = db.begin().await.unwrap();
3700 tx.execute(
3701 "CREATE TABLE items (id TEXT PRIMARY KEY, tenant_id TEXT, published INTEGER)",
3702 &[],
3703 )
3704 .await
3705 .unwrap();
3706 for (id, tenant, published) in [
3707 ("a_pub", "tenant_A", 1),
3708 ("b_pub", "tenant_B", 1),
3709 ("b_priv", "tenant_B", 0),
3710 ] {
3711 tx.execute(
3712 "INSERT INTO items (id, tenant_id, published) VALUES (?1, ?2, ?3)",
3713 &[
3714 SqlValue::Text(id.into()),
3715 SqlValue::Text(tenant.into()),
3716 SqlValue::Integer(published),
3717 ],
3718 )
3719 .await
3720 .unwrap();
3721 }
3722 tx.commit().await.unwrap();
3723 }
3724 let sql: Arc<dyn SqlBackends> = Arc::new(backends);
3725
3726 let hash = sha256_hex(PROBE);
3729 let stream: ByteStream =
3730 futures::stream::once(async move { Ok(bytes::Bytes::from_static(PROBE)) }).boxed();
3731 deploy.put_blob(&hash, stream).await.unwrap();
3732 let function = Function {
3733 name: "scopeprobe".into(),
3734 owner: Owner::Project("default".into()),
3735 versions: vec![FunctionVersion {
3736 id: "v1".into(),
3737 component: hash.clone(),
3738 created: 0,
3739 lifecycle: Lifecycle::Independent,
3740 }],
3741 active: "v1".into(),
3742 aliases: Default::default(),
3743 config: FunctionConfig {
3744 imports: vec!["sql".into()],
3745 tenancy: Some(Tenancy::Scoped {
3746 column: "tenant_id".into(),
3747 sources: vec![TenantSource::None],
3748 read: AccessMode::Own,
3749 write: AccessMode::None,
3750 }),
3751 ..Default::default()
3752 },
3753 };
3754 deploy
3755 .put_function(ProjectRef::DEFAULT, &function)
3756 .await
3757 .unwrap();
3758
3759 let sdl = "type Query { items: [Item!]! @tenant(scope: target, via: [domain], public: \"items\") }\n\
3762 type Item @key(fields: \"id\") { id: ID! }";
3763 let sg = crate::graphql_federation::compose(&[("scopeprobe".into(), sdl.into())]).unwrap();
3764 let plan = crate::graphql_plan::plan("{ items { id } }", &sg).unwrap();
3765
3766 let mut schema = TenancySchema {
3767 default_tenant_key: "tenant_id".into(),
3768 tables: std::collections::BTreeMap::from([("items".into(), TableScope::Tenant)]),
3769 ..Default::default()
3770 };
3771 schema.public_subsets.insert(
3772 "items".into(),
3773 PublicSubset {
3774 predicate: PublicPredicate {
3775 terms: vec![PublicTerm::Cmp {
3776 column: "published".into(),
3777 op: boatramp_core::tenancy::PublicCmp::Eq,
3778 value: boatramp_core::tenancy::PublicLiteral::Int(1),
3779 }],
3780 },
3781 world_public: true,
3782 listable: true,
3783 },
3784 );
3785
3786 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3787 let rt = HandlerRuntime::new(engine, kv.clone(), storage, Some(sql), None);
3788 rt.set_invoker(deploy.clone());
3789 let inner = rt.inner.as_ref().unwrap();
3790 let invoker = inner.invoker.get().unwrap().clone();
3791
3792 let make_router = |domain: Option<&str>| {
3793 crate::graphql_gateway::BackendRouter::new(
3794 invoker.scoped(ProjectRef::new("default"), Vec::new()),
3795 "default".to_string(),
3796 inner.sql.clone(),
3797 std::collections::BTreeMap::new(),
3798 None,
3799 )
3800 .with_target_inputs(Some(crate::graphql_gateway::TargetInputs {
3801 schema: Arc::new(schema.clone()),
3802 domain_context: domain.map(str::to_string),
3803 target_handle: None,
3804 capability_anchor: None,
3805 }))
3806 };
3807
3808 let router_b = make_router(Some("tenant_B"));
3810 let out_b = crate::graphql_gateway::execute(&plan, &router_b, &serde_json::json!({})).await;
3811 let body_b = out_b.to_string();
3812 assert!(
3813 body_b.contains("\"b_pub\"")
3814 && !body_b.contains("\"b_priv\"")
3815 && !body_b.contains("\"a_pub\""),
3816 "gateway forced target B onto the wasm subgraph → ONLY B's PUBLIC row (b_pub), never B's \
3817 private row nor A's: {body_b}"
3818 );
3819
3820 let router_none = make_router(None);
3822 let out_none =
3823 crate::graphql_gateway::execute(&plan, &router_none, &serde_json::json!({})).await;
3824 let body_none = out_none.to_string();
3825 assert!(
3826 !body_none.contains("\"a_pub\"")
3827 && !body_none.contains("\"b_pub\"")
3828 && !body_none.contains("\"b_priv\""),
3829 "with no resolved target the wasm-subgraph target fetch fails closed — no rows: {body_none}"
3830 );
3831
3832 let _ = std::fs::remove_dir_all(&sql_dir);
3833 println!(
3834 "GATEWAY WASM-TARGET OK: the /graphql gateway resolved target tenant B from the routed \
3835 domain and FORCED a HostTenancy::target binding onto the wasm subgraph invocation \
3836 (invoke_target), confining the guest's own SQL to tenant=B AND published=1 over a real \
3837 libsql engine — returned ONLY B's public row (b_pub), never B's private row (b_priv) nor \
3838 tenant A's (a_pub); with no resolved target the fetch failed closed"
3839 );
3840 }
3841
3842 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3852 #[ignore = "run on the host toolchain (real libsql static-musl segfault); wired in the CI gateway-own-propagation gate"]
3853 async fn gateway_propagates_caller_own_principal_to_a_wasm_subgraph() {
3854 use boatramp_core::deploy::{sha256_hex, DeployStore};
3855 use boatramp_core::function::{
3856 Function, FunctionConfig, FunctionVersion, Lifecycle, Owner,
3857 };
3858 use boatramp_core::project::ProjectRef;
3859 use boatramp_core::sql::{SqlBackends, SqlValue};
3860 use boatramp_core::tenancy::{AccessMode, ScopeAxis, Tenancy, TenantSource};
3861 use boatramp_handlers::{HandlerEngine, Limits, ScopeFact};
3862
3863 const PROBE: &[u8] = include_bytes!("../tests/fixtures/graphql-scope-probe.wasm");
3867
3868 let storage = Arc::new(MemStorage::default());
3869 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
3870 let deploy = DeployStore::new(storage.clone(), kv.clone());
3871
3872 let sql_dir = std::env::temp_dir().join(format!("br-gwown-{}", std::process::id()));
3873 let _ = std::fs::remove_dir_all(&sql_dir);
3874 let backends = boatramp_storage::LibsqlSqlBackends::local(&sql_dir);
3875 let db = backends
3876 .database("default", "fn/scopeprobe", "")
3877 .await
3878 .unwrap();
3879 {
3880 let mut tx = db.begin().await.unwrap();
3881 tx.execute(
3882 "CREATE TABLE items (id TEXT PRIMARY KEY, tenant_id TEXT)",
3883 &[],
3884 )
3885 .await
3886 .unwrap();
3887 for (id, tenant) in [("a1", "tenant_A"), ("b1", "tenant_B"), ("b2", "tenant_B")] {
3888 tx.execute(
3889 "INSERT INTO items (id, tenant_id) VALUES (?1, ?2)",
3890 &[SqlValue::Text(id.into()), SqlValue::Text(tenant.into())],
3891 )
3892 .await
3893 .unwrap();
3894 }
3895 tx.commit().await.unwrap();
3896 }
3897 let sql: Arc<dyn SqlBackends> = Arc::new(backends);
3898
3899 let hash = sha256_hex(PROBE);
3902 let stream: ByteStream =
3903 futures::stream::once(async move { Ok(bytes::Bytes::from_static(PROBE)) }).boxed();
3904 deploy.put_blob(&hash, stream).await.unwrap();
3905 let function = Function {
3906 name: "scopeprobe".into(),
3907 owner: Owner::Project("default".into()),
3908 versions: vec![FunctionVersion {
3909 id: "v1".into(),
3910 component: hash.clone(),
3911 created: 0,
3912 lifecycle: Lifecycle::Independent,
3913 }],
3914 active: "v1".into(),
3915 aliases: Default::default(),
3916 config: FunctionConfig {
3917 imports: vec!["sql".into()],
3918 tenancy: Some(Tenancy::Scoped {
3919 column: "tenant_id".into(),
3920 sources: vec![TenantSource::None],
3921 read: AccessMode::Own,
3922 write: AccessMode::None,
3923 }),
3924 ..Default::default()
3925 },
3926 };
3927 deploy
3928 .put_function(ProjectRef::DEFAULT, &function)
3929 .await
3930 .unwrap();
3931
3932 let sdl = "type Query { items: [Item!]! }\ntype Item @key(fields: \"id\") { id: ID! }";
3935 let sg = crate::graphql_federation::compose(&[("scopeprobe".into(), sdl.into())]).unwrap();
3936 let plan = crate::graphql_plan::plan("{ items { id } }", &sg).unwrap();
3937
3938 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
3939 let rt = HandlerRuntime::new(engine, kv.clone(), storage, Some(sql), None);
3940 rt.set_invoker(deploy.clone());
3941 let inner = rt.inner.as_ref().unwrap();
3942 let invoker = inner.invoker.get().unwrap().clone();
3943
3944 let make_router = |facts: Vec<ScopeFact>| {
3947 crate::graphql_gateway::BackendRouter::new(
3948 invoker.scoped(ProjectRef::new("default"), facts),
3949 "default".to_string(),
3950 inner.sql.clone(),
3951 std::collections::BTreeMap::new(),
3952 None,
3953 )
3954 };
3955
3956 let router_b = make_router(vec![ScopeFact {
3958 axis: ScopeAxis::Tenant,
3959 value: SqlValue::Text("tenant_B".into()),
3960 }]);
3961 let body_b = crate::graphql_gateway::execute(&plan, &router_b, &serde_json::json!({}))
3962 .await
3963 .to_string();
3964 assert!(
3965 body_b.contains("\"b1\"") && body_b.contains("\"b2\"") && !body_b.contains("\"a1\""),
3966 "gateway propagated principal B → the wasm subgraph read ONLY tenant B's rows: {body_b}"
3967 );
3968
3969 let router_anon = make_router(Vec::new());
3971 let body_anon =
3972 crate::graphql_gateway::execute(&plan, &router_anon, &serde_json::json!({}))
3973 .await
3974 .to_string();
3975 assert!(
3976 !body_anon.contains("\"a1\"")
3977 && !body_anon.contains("\"b1\"")
3978 && !body_anon.contains("\"b2\""),
3979 "with an empty principal the wasm-subgraph own fetch fails closed — no rows: {body_anon}"
3980 );
3981
3982 let _ = std::fs::remove_dir_all(&sql_dir);
3983 println!(
3984 "GATEWAY OWN-PROPAGATION OK: the /graphql gateway propagated the caller's resolved OWN \
3985 principal (tenant B) to a wasm subgraph fetch, which scoped its own read to the \
3986 inherited principal and returned ONLY tenant B's rows over a real libsql engine; with \
3987 an empty principal the same own fetch failed closed (no rows) — anon is never widened"
3988 );
3989 }
3990
3991 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
3997 #[ignore = "run on the host toolchain (real libsql static-musl segfault); wired in the CI gateway-target gate"]
3998 async fn gateway_target_or_null_includes_the_shared_base() {
3999 use boatramp_core::deploy::{sha256_hex, DeployStore};
4000 use boatramp_core::function::{
4001 Function, FunctionConfig, FunctionVersion, Lifecycle, Owner,
4002 };
4003 use boatramp_core::project::ProjectRef;
4004 use boatramp_core::sql::{SqlBackends, SqlValue};
4005 use boatramp_core::tenancy::{
4006 AccessMode, PublicPredicate, PublicSubset, PublicTerm, TableScope, Tenancy,
4007 TenancySchema, TenantSource,
4008 };
4009 use boatramp_handlers::{HandlerEngine, Limits};
4010
4011 const PROBE: &[u8] = include_bytes!("../tests/fixtures/graphql-scope-probe.wasm");
4012
4013 let storage = Arc::new(MemStorage::default());
4014 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
4015 let deploy = DeployStore::new(storage.clone(), kv.clone());
4016
4017 let sql_dir = std::env::temp_dir().join(format!("br-gwton-{}", std::process::id()));
4018 let _ = std::fs::remove_dir_all(&sql_dir);
4019 let backends = boatramp_storage::LibsqlSqlBackends::local(&sql_dir);
4020 let db = backends
4021 .database("default", "fn/scopeprobe", "")
4022 .await
4023 .unwrap();
4024 {
4025 let mut tx = db.begin().await.unwrap();
4026 tx.execute(
4027 "CREATE TABLE items (id TEXT PRIMARY KEY, tenant_id TEXT, published INTEGER)",
4028 &[],
4029 )
4030 .await
4031 .unwrap();
4032 for (id, tenant, published) in [
4036 ("base_pub", None, 1),
4037 ("base_priv", None, 0),
4038 ("b_pub", Some("tenant_B"), 1),
4039 ("b_priv", Some("tenant_B"), 0),
4040 ("a_pub", Some("tenant_A"), 1),
4041 ] {
4042 tx.execute(
4043 "INSERT INTO items (id, tenant_id, published) VALUES (?1, ?2, ?3)",
4044 &[
4045 SqlValue::Text(id.into()),
4046 tenant
4047 .map(|t| SqlValue::Text(t.into()))
4048 .unwrap_or(SqlValue::Null),
4049 SqlValue::Integer(published),
4050 ],
4051 )
4052 .await
4053 .unwrap();
4054 }
4055 tx.commit().await.unwrap();
4056 }
4057 let sql: Arc<dyn SqlBackends> = Arc::new(backends);
4058
4059 let hash = sha256_hex(PROBE);
4060 let stream: ByteStream =
4061 futures::stream::once(async move { Ok(bytes::Bytes::from_static(PROBE)) }).boxed();
4062 deploy.put_blob(&hash, stream).await.unwrap();
4063 let function = Function {
4064 name: "scopeprobe".into(),
4065 owner: Owner::Project("default".into()),
4066 versions: vec![FunctionVersion {
4067 id: "v1".into(),
4068 component: hash.clone(),
4069 created: 0,
4070 lifecycle: Lifecycle::Independent,
4071 }],
4072 active: "v1".into(),
4073 aliases: Default::default(),
4074 config: FunctionConfig {
4075 imports: vec!["sql".into()],
4076 tenancy: Some(Tenancy::Scoped {
4077 column: "tenant_id".into(),
4078 sources: vec![TenantSource::None],
4079 read: AccessMode::Own,
4080 write: AccessMode::None,
4081 }),
4082 ..Default::default()
4083 },
4084 };
4085 deploy
4086 .put_function(ProjectRef::DEFAULT, &function)
4087 .await
4088 .unwrap();
4089
4090 let sdl = "type Query { items: [Item!]! @tenant(scope: target_or_null, via: [domain], public: \"items\") }\n\
4092 type Item @key(fields: \"id\") { id: ID! }";
4093 let sg = crate::graphql_federation::compose(&[("scopeprobe".into(), sdl.into())]).unwrap();
4094 let plan = crate::graphql_plan::plan("{ items { id } }", &sg).unwrap();
4095
4096 let mut schema = TenancySchema {
4097 default_tenant_key: "tenant_id".into(),
4098 tables: std::collections::BTreeMap::from([("items".into(), TableScope::Tenant)]),
4099 ..Default::default()
4100 };
4101 schema.public_subsets.insert(
4102 "items".into(),
4103 PublicSubset {
4104 predicate: PublicPredicate {
4105 terms: vec![PublicTerm::Cmp {
4106 column: "published".into(),
4107 op: boatramp_core::tenancy::PublicCmp::Eq,
4108 value: boatramp_core::tenancy::PublicLiteral::Int(1),
4109 }],
4110 },
4111 world_public: true,
4112 listable: true,
4113 },
4114 );
4115
4116 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4117 let rt = HandlerRuntime::new(engine, kv.clone(), storage, Some(sql), None);
4118 rt.set_invoker(deploy.clone());
4119 let inner = rt.inner.as_ref().unwrap();
4120 let router = crate::graphql_gateway::BackendRouter::new(
4121 inner
4122 .invoker
4123 .get()
4124 .unwrap()
4125 .clone()
4126 .scoped(ProjectRef::new("default"), Vec::new()),
4127 "default".to_string(),
4128 inner.sql.clone(),
4129 std::collections::BTreeMap::new(),
4130 None,
4131 )
4132 .with_target_inputs(Some(crate::graphql_gateway::TargetInputs {
4133 schema: Arc::new(schema),
4134 domain_context: Some("tenant_B".into()),
4135 target_handle: None,
4136 capability_anchor: None,
4137 }));
4138
4139 let out = crate::graphql_gateway::execute(&plan, &router, &serde_json::json!({})).await;
4140 let body = out.to_string();
4141 assert!(
4142 body.contains("\"base_pub\"") && body.contains("\"b_pub\""),
4143 "target_or_null returned B's public row AND the shared base floor: {body}"
4144 );
4145 assert!(
4146 !body.contains("\"base_priv\"")
4147 && !body.contains("\"b_priv\"")
4148 && !body.contains("\"a_pub\""),
4149 "the public subset confines BOTH B and base (no base_priv, no b_priv), and no other \
4150 tenant's rows (no a_pub): {body}"
4151 );
4152
4153 let _ = std::fs::remove_dir_all(&sql_dir);
4154 println!(
4155 "GATEWAY TARGET-OR-NULL OK: scope:target_or_null on a wasm subgraph read tenant B's \
4156 public row (b_pub) PLUS the shared NULL-tenant base floor (base_pub), each confined to \
4157 published=1 — never B's private row (b_priv), never a non-public base row (base_priv), \
4158 never another tenant's row (a_pub); the base-only funnel keeps its inheritance floor"
4159 );
4160 }
4161
4162 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
4168 async fn scheduler_drains_a_non_default_projects_invocation_in_its_own_tenant() {
4169 use crate::scheduler::{run_scheduler_tick, CronNow};
4170 use boatramp_core::deploy::DeployStore;
4171 use boatramp_core::function::{
4172 Function, FunctionVersion, Invocation, InvocationStatus, InvokeMode, Lifecycle, Owner,
4173 };
4174 use boatramp_handlers::{HandlerEngine, Limits};
4175 use futures::StreamExt;
4176
4177 const HTTP_200: &[u8] =
4178 include_bytes!("../../boatramp-handlers/tests/fixtures/http-200.wasm");
4179
4180 let storage = Arc::new(MemStorage::default());
4181 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
4182 let deploy = DeployStore::new(storage.clone(), kv.clone());
4183
4184 let hash = boatramp_core::deploy::sha256_hex(HTTP_200);
4185 let stream: ByteStream =
4186 futures::stream::once(async move { Ok(bytes::Bytes::from_static(HTTP_200)) }).boxed();
4187 deploy.put_blob(&hash, stream).await.unwrap();
4188
4189 let acme = ProjectRef::new("acme");
4191 let function = Function {
4192 name: "worker".into(),
4193 owner: Owner::Project("acme".into()),
4194 versions: vec![FunctionVersion {
4195 id: "v1".into(),
4196 component: hash.clone(),
4197 created: 0,
4198 lifecycle: Lifecycle::Independent,
4199 }],
4200 active: "v1".into(),
4201 aliases: Default::default(),
4202 config: Default::default(),
4203 };
4204 deploy.put_function(acme, &function).await.unwrap();
4205 let inv = Invocation {
4206 id: "inv1".into(),
4207 function: "worker".into(),
4208 version: "v1".into(),
4209 mode: InvokeMode::Async,
4210 status: InvocationStatus::Queued,
4211 idempotency_key: None,
4212 attempts: 0,
4213 lease_expires: None,
4214 request_b64: None,
4215 request_content_type: None,
4216 result: None,
4217 created: 0,
4218 updated: 0,
4219 };
4220 deploy.put_invocation(acme, &inv).await.unwrap();
4221
4222 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4223 let rt = HandlerRuntime::new(engine, kv.clone(), storage.clone(), None, None);
4224 let inner = rt.inner.as_ref().unwrap();
4225
4226 let mut wasm_cache = std::collections::HashMap::new();
4229 let mut cron_state = std::collections::HashMap::new();
4230 let mut sweep = std::collections::HashMap::new();
4231 let now = CronNow {
4232 minute: 0,
4233 hour: 0,
4234 dom: 1,
4235 month: 1,
4236 dow: 0,
4237 minute_stamp: 0,
4238 };
4239 run_scheduler_tick(
4240 inner,
4241 &deploy,
4242 &mut wasm_cache,
4243 &mut cron_state,
4244 &mut sweep,
4245 now,
4246 )
4247 .await
4248 .unwrap();
4249
4250 let settled = poll_invocation_settled(&deploy, acme, "worker", "inv1").await;
4253 assert_eq!(settled.status, InvocationStatus::Succeeded);
4255 let metering = deploy.get_metering(acme, "worker").await.unwrap().unwrap();
4257 assert_eq!(metering.invocations, 1);
4258 assert!(deploy
4260 .get_invocation(ProjectRef::DEFAULT, "worker", "inv1")
4261 .await
4262 .unwrap()
4263 .is_none());
4264 assert!(deploy
4265 .get_metering(ProjectRef::DEFAULT, "worker")
4266 .await
4267 .unwrap()
4268 .is_none());
4269 }
4270
4271 #[cfg(feature = "handlers")]
4275 async fn poll_invocation_settled(
4276 deploy: &boatramp_core::deploy::DeployStore,
4277 project: ProjectRef<'_>,
4278 function: &str,
4279 id: &str,
4280 ) -> boatramp_core::function::Invocation {
4281 use boatramp_core::function::InvocationStatus;
4282 for _ in 0..200 {
4283 if let Some(inv) = deploy.get_invocation(project, function, id).await.unwrap() {
4284 if matches!(
4285 inv.status,
4286 InvocationStatus::Succeeded | InvocationStatus::Failed
4287 ) {
4288 return inv;
4289 }
4290 }
4291 tokio::time::sleep(std::time::Duration::from_millis(50)).await;
4292 }
4293 panic!("invocation {function}/{id} never settled");
4294 }
4295
4296 #[cfg(feature = "handlers")]
4301 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
4302 async fn drain_reclaims_an_expired_lease_and_skips_a_live_one() {
4303 use crate::scheduler::{run_scheduler_tick, CronNow};
4304 use boatramp_core::deploy::DeployStore;
4305 use boatramp_core::function::{
4306 Function, FunctionVersion, Invocation, InvocationStatus, InvokeMode, Lifecycle, Owner,
4307 };
4308 use boatramp_handlers::{HandlerEngine, Limits};
4309 use futures::StreamExt;
4310
4311 const HTTP_200: &[u8] =
4312 include_bytes!("../../boatramp-handlers/tests/fixtures/http-200.wasm");
4313
4314 let storage = Arc::new(MemStorage::default());
4315 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
4316 let deploy = DeployStore::new(storage.clone(), kv.clone());
4317 let hash = boatramp_core::deploy::sha256_hex(HTTP_200);
4318 let stream: ByteStream =
4319 futures::stream::once(async move { Ok(bytes::Bytes::from_static(HTTP_200)) }).boxed();
4320 deploy.put_blob(&hash, stream).await.unwrap();
4321
4322 let function = Function {
4323 name: "worker".into(),
4324 owner: Owner::Project("default".into()),
4325 versions: vec![FunctionVersion {
4326 id: "v1".into(),
4327 component: hash.clone(),
4328 created: 0,
4329 lifecycle: Lifecycle::Independent,
4330 }],
4331 active: "v1".into(),
4332 aliases: Default::default(),
4333 config: Default::default(),
4334 };
4335 deploy
4336 .put_function(ProjectRef::DEFAULT, &function)
4337 .await
4338 .unwrap();
4339
4340 let base = Invocation {
4343 id: String::new(),
4344 function: "worker".into(),
4345 version: "v1".into(),
4346 mode: InvokeMode::Async,
4347 status: InvocationStatus::Running,
4348 idempotency_key: None,
4349 attempts: 1,
4350 lease_expires: None,
4351 request_b64: None,
4352 request_content_type: None,
4353 result: None,
4354 created: 0,
4355 updated: 0,
4356 };
4357 let orphan = Invocation {
4358 id: "orphan".into(),
4359 lease_expires: Some(1),
4360 ..base.clone()
4361 };
4362 deploy
4363 .put_invocation(ProjectRef::DEFAULT, &orphan)
4364 .await
4365 .unwrap();
4366 let live = Invocation {
4367 id: "live".into(),
4368 lease_expires: Some(u64::MAX),
4369 ..base.clone()
4370 };
4371 deploy
4372 .put_invocation(ProjectRef::DEFAULT, &live)
4373 .await
4374 .unwrap();
4375
4376 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4377 let rt = HandlerRuntime::new(engine, kv.clone(), storage.clone(), None, None);
4378 let inner = rt.inner.as_ref().unwrap();
4379
4380 let now = CronNow {
4381 minute: 0,
4382 hour: 0,
4383 dom: 1,
4384 month: 1,
4385 dow: 0,
4386 minute_stamp: 0,
4387 };
4388 let mut wasm_cache = std::collections::HashMap::new();
4389 let mut cron_state = std::collections::HashMap::new();
4390 let mut sweep = std::collections::HashMap::new();
4391 run_scheduler_tick(
4392 inner,
4393 &deploy,
4394 &mut wasm_cache,
4395 &mut cron_state,
4396 &mut sweep,
4397 now,
4398 )
4399 .await
4400 .unwrap();
4401
4402 let settled =
4404 poll_invocation_settled(&deploy, ProjectRef::DEFAULT, "worker", "orphan").await;
4405 assert_eq!(settled.status, InvocationStatus::Succeeded);
4406 assert_eq!(settled.attempts, 2, "a reclaim counts as another attempt");
4407 assert_eq!(
4408 settled.lease_expires, None,
4409 "a settled invocation drops its lease"
4410 );
4411 let live_after = deploy
4413 .get_invocation(ProjectRef::DEFAULT, "worker", "live")
4414 .await
4415 .unwrap()
4416 .unwrap();
4417 assert_eq!(live_after.status, InvocationStatus::Running);
4418 assert_eq!(live_after.attempts, 1, "a live lease is never reclaimed");
4419 assert_eq!(live_after.lease_expires, Some(u64::MAX));
4420 }
4421
4422 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
4437 async fn guest_kv_is_isolated_between_same_named_functions_in_two_projects() {
4438 use boatramp_core::deploy::DeployStore;
4439 use boatramp_core::function::{
4440 Function, FunctionConfig, FunctionVersion, Lifecycle, Owner,
4441 };
4442 use boatramp_handlers::{HandlerEngine, Limits};
4443 use futures::StreamExt;
4444
4445 let storage = Arc::new(MemStorage::default());
4446 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
4447 let deploy = DeployStore::new(storage.clone(), kv.clone());
4448
4449 let hash = boatramp_core::deploy::sha256_hex(KV_COUNTER);
4452 let stream: ByteStream =
4453 futures::stream::once(async move { Ok(bytes::Bytes::from_static(KV_COUNTER)) }).boxed();
4454 deploy.put_blob(&hash, stream).await.unwrap();
4455
4456 let store = Function {
4461 name: "store".into(),
4462 owner: Owner::Project("default".into()),
4463 versions: vec![FunctionVersion {
4464 id: "v1".into(),
4465 component: hash.clone(),
4466 created: 0,
4467 lifecycle: Lifecycle::Independent,
4468 }],
4469 active: "v1".into(),
4470 aliases: Default::default(),
4471 config: FunctionConfig {
4472 imports: vec!["wasi:keyvalue".into()],
4473 ..Default::default()
4474 },
4475 };
4476 let acme = ProjectRef::new("acme");
4477 let globex = ProjectRef::new("globex");
4478
4479 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4480 let rt = HandlerRuntime::new(engine, kv.clone(), storage, None, None);
4481 let inner = rt.inner.as_ref().unwrap();
4482
4483 let request = || {
4484 axum::http::Request::builder()
4485 .method("GET")
4486 .uri("/")
4487 .body(axum::body::Body::empty())
4488 .unwrap()
4489 };
4490
4491 let component = store.resolve(&store.active).unwrap().to_owned();
4494 for project in [acme, globex, ProjectRef::DEFAULT] {
4495 let (response, _) = execute_function(
4496 inner,
4497 &deploy,
4498 project,
4499 &store,
4500 &component,
4501 request(),
4502 0,
4503 boatramp_handlers::Lane::Sync,
4504 crate::function_runtime::FnTenant::Request,
4505 )
4506 .await;
4507 assert!(response.status().is_success(), "invocation should succeed");
4508 }
4509
4510 assert_eq!(
4513 kv.get("hkv/acme/fn/store/hits").await.unwrap(),
4514 Some(b"1".to_vec()),
4515 "acme's write must be tenant-qualified"
4516 );
4517 assert_eq!(
4518 kv.get("hkv/globex/fn/store/hits").await.unwrap(),
4519 Some(b"1".to_vec()),
4520 "globex's write must be tenant-qualified"
4521 );
4522 assert_eq!(
4523 kv.get("hkv/fn/store/hits").await.unwrap(),
4524 Some(b"1".to_vec()),
4525 "the default project must keep the byte-identical pre-project key"
4526 );
4527 }
4530
4531 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
4535 async fn scheduler_fires_crons_with_dedup_and_overlap_skip() {
4536 use boatramp_core::config::{
4537 CronConfig, DeployConfig, HandlerConfig, HandlersSiteConfig, Overlap, SiteConfig,
4538 };
4539 use boatramp_core::deploy::{DeployStore, FileEntry, Manifest};
4540 use boatramp_handlers::{HandlerEngine, Limits};
4541 use futures::StreamExt;
4542 use std::sync::atomic::Ordering;
4543
4544 let storage = Arc::new(MemStorage::default());
4545 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
4546 let deploy = DeployStore::new(storage.clone(), kv.clone());
4547
4548 let hash = boatramp_core::deploy::sha256_hex(KV_COUNTER);
4549 let stream: ByteStream =
4550 futures::stream::once(async move { Ok(bytes::Bytes::from_static(KV_COUNTER)) }).boxed();
4551 deploy.put_blob(&hash, stream).await.unwrap();
4552 let mut files = std::collections::BTreeMap::new();
4553 files.insert(
4554 "counter.wasm".to_string(),
4555 FileEntry {
4556 hash: hash.clone(),
4557 size: KV_COUNTER.len() as u64,
4558 content_type: None,
4559 variants: std::collections::BTreeMap::new(),
4560 },
4561 );
4562 let manifest = Manifest {
4563 files,
4564 config: DeployConfig {
4565 handlers: vec![HandlerConfig {
4566 tenancy: None,
4567 token_claims: None,
4568 route: "/".into(),
4569 methods: Vec::new(),
4570 component: "counter.wasm".into(),
4571 imports: vec!["wasi:keyvalue".into()],
4572 streaming: false,
4573 limits: None,
4574 env: std::collections::BTreeMap::new(),
4575 invoke_targets: Vec::new(),
4576 }],
4577 crons: vec![CronConfig {
4578 schedule: "* * * * *".into(),
4579 route: "/".into(),
4580 overlap: Overlap::Skip,
4581 }],
4582 ..Default::default()
4583 },
4584 ..Default::default()
4585 };
4586 let id = deploy.put_manifest(&manifest).await.unwrap();
4587 deploy
4588 .activate(ProjectRef::DEFAULT, "blog", &id)
4589 .await
4590 .unwrap();
4591 deploy
4592 .set_site_config(
4593 ProjectRef::DEFAULT,
4594 "blog",
4595 &SiteConfig {
4596 handlers: Some(HandlersSiteConfig {
4597 enabled: true,
4598 allow_imports: vec!["wasi:keyvalue".into()],
4599 ..Default::default()
4600 }),
4601 ..Default::default()
4602 },
4603 )
4604 .await
4605 .unwrap();
4606
4607 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4608 let rt = HandlerRuntime::new(engine, kv.clone(), storage, None, None);
4609 let inner = rt.inner.clone().unwrap();
4610 let mut wasm = std::collections::HashMap::new();
4611 let mut crons = std::collections::HashMap::new();
4612 let mut sweep = std::collections::HashMap::new();
4613 let at = |stamp| CronNow {
4614 minute: 0,
4615 hour: 0,
4616 dom: 1,
4617 month: 1,
4618 dow: 0,
4619 minute_stamp: stamp,
4620 };
4621
4622 let (_, handles) =
4624 run_scheduler_tick(&inner, &deploy, &mut wasm, &mut crons, &mut sweep, at(100))
4625 .await
4626 .unwrap();
4627 for h in handles {
4628 h.await.unwrap();
4629 }
4630 assert_eq!(kv.get("hkv/blog/hits").await.unwrap(), Some(b"1".to_vec()));
4631
4632 let (_, handles) =
4634 run_scheduler_tick(&inner, &deploy, &mut wasm, &mut crons, &mut sweep, at(100))
4635 .await
4636 .unwrap();
4637 assert!(handles.is_empty());
4638 assert_eq!(kv.get("hkv/blog/hits").await.unwrap(), Some(b"1".to_vec()));
4639
4640 let (_, handles) =
4642 run_scheduler_tick(&inner, &deploy, &mut wasm, &mut crons, &mut sweep, at(101))
4643 .await
4644 .unwrap();
4645 for h in handles {
4646 h.await.unwrap();
4647 }
4648 assert_eq!(kv.get("hkv/blog/hits").await.unwrap(), Some(b"2".to_vec()));
4649
4650 crons
4654 .get("default|blog|cron|0")
4655 .unwrap()
4656 .running
4657 .store(true, Ordering::Release);
4658 let (_, handles) =
4659 run_scheduler_tick(&inner, &deploy, &mut wasm, &mut crons, &mut sweep, at(102))
4660 .await
4661 .unwrap();
4662 assert!(handles.is_empty());
4663 assert_eq!(kv.get("hkv/blog/hits").await.unwrap(), Some(b"2".to_vec()));
4664 }
4665
4666 #[tokio::test(flavor = "multi_thread", worker_threads = 2)]
4670 async fn cron_leader_gate_suppresses_crons_off_leader() {
4671 use boatramp_core::config::{
4672 CronConfig, DeployConfig, HandlerConfig, HandlersSiteConfig, Overlap, SiteConfig,
4673 };
4674 use boatramp_core::deploy::{DeployStore, FileEntry, Manifest};
4675 use boatramp_handlers::{HandlerEngine, Limits};
4676 use futures::StreamExt;
4677
4678 let storage = Arc::new(MemStorage::default());
4679 let kv: Arc<dyn KvStore> = Arc::new(MemoryKv::new());
4680 let deploy = DeployStore::new(storage.clone(), kv.clone());
4681
4682 let hash = boatramp_core::deploy::sha256_hex(KV_COUNTER);
4683 let stream: ByteStream =
4684 futures::stream::once(async move { Ok(bytes::Bytes::from_static(KV_COUNTER)) }).boxed();
4685 deploy.put_blob(&hash, stream).await.unwrap();
4686 let mut files = std::collections::BTreeMap::new();
4687 files.insert(
4688 "counter.wasm".to_string(),
4689 FileEntry {
4690 hash: hash.clone(),
4691 size: KV_COUNTER.len() as u64,
4692 content_type: None,
4693 variants: std::collections::BTreeMap::new(),
4694 },
4695 );
4696 let manifest = Manifest {
4697 files,
4698 config: DeployConfig {
4699 handlers: vec![HandlerConfig {
4700 tenancy: None,
4701 token_claims: None,
4702 route: "/".into(),
4703 methods: Vec::new(),
4704 component: "counter.wasm".into(),
4705 imports: vec!["wasi:keyvalue".into()],
4706 streaming: false,
4707 limits: None,
4708 env: std::collections::BTreeMap::new(),
4709 invoke_targets: Vec::new(),
4710 }],
4711 crons: vec![CronConfig {
4712 schedule: "* * * * *".into(),
4713 route: "/".into(),
4714 overlap: Overlap::Skip,
4715 }],
4716 ..Default::default()
4717 },
4718 ..Default::default()
4719 };
4720 let id = deploy.put_manifest(&manifest).await.unwrap();
4721 deploy
4722 .activate(ProjectRef::DEFAULT, "blog", &id)
4723 .await
4724 .unwrap();
4725 deploy
4726 .set_site_config(
4727 ProjectRef::DEFAULT,
4728 "blog",
4729 &SiteConfig {
4730 handlers: Some(HandlersSiteConfig {
4731 enabled: true,
4732 allow_imports: vec!["wasi:keyvalue".into()],
4733 ..Default::default()
4734 }),
4735 ..Default::default()
4736 },
4737 )
4738 .await
4739 .unwrap();
4740
4741 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4742 let rt = HandlerRuntime::new(engine, kv.clone(), storage, None, None);
4743 rt.set_cron_leader_gate(Arc::new(|| false));
4745 let inner = rt.inner.clone().unwrap();
4746 let mut wasm = std::collections::HashMap::new();
4747 let mut crons = std::collections::HashMap::new();
4748 let mut sweep = std::collections::HashMap::new();
4749 let now = CronNow {
4750 minute: 0,
4751 hour: 0,
4752 dom: 1,
4753 month: 1,
4754 dow: 0,
4755 minute_stamp: 100,
4756 };
4757
4758 let (_, handles) =
4759 run_scheduler_tick(&inner, &deploy, &mut wasm, &mut crons, &mut sweep, now)
4760 .await
4761 .unwrap();
4762 assert!(handles.is_empty(), "a non-leader must not fire crons");
4764 assert_eq!(kv.get("hkv/blog/hits").await.unwrap(), None);
4765 }
4766
4767 #[tokio::test]
4771 async fn project_tenancy_knobs_override_wins_else_node_base() {
4772 use boatramp_core::security::ResolvedProjectTenancy;
4773 use boatramp_handlers::{HandlerEngine, Limits};
4774
4775 let kv: Arc<dyn boatramp_core::kv::KvStore> = Arc::new(boatramp_core::kv::MemoryKv::new());
4776 let storage: Arc<dyn boatramp_core::Storage> = Arc::new(MemStorage::default());
4777 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4778 let rt = HandlerRuntime::new(engine, kv, storage, None, None);
4779 rt.set_tenancy_posture(true, false);
4781 let mut overrides = std::collections::BTreeMap::new();
4783 overrides.insert(
4784 "preview".to_string(),
4785 ResolvedProjectTenancy {
4786 require_tenancy_declaration: true,
4787 allow_cross_tenant_db: true,
4788 capability_max_ttl_secs: Some(1800),
4789 },
4790 );
4791 rt.set_project_tenancy_overrides(overrides);
4792 let inner = rt.inner.as_ref().unwrap();
4793
4794 let p = inner.project_tenancy_knobs("preview");
4796 assert!(p.require_tenancy_declaration);
4797 assert!(p.allow_cross_tenant_db);
4798 assert_eq!(p.capability_max_ttl_secs, Some(1800));
4799 let b = inner.project_tenancy_knobs("prod");
4801 assert!(b.require_tenancy_declaration);
4802 assert!(!b.allow_cross_tenant_db);
4803 assert_eq!(b.capability_max_ttl_secs, None);
4804 }
4805
4806 #[tokio::test]
4813 async fn build_bindings_dispatches_named_sql_databases_with_least_privilege() {
4814 use boatramp_core::config::HandlersSiteConfig;
4815 use boatramp_core::project::ProjectRef;
4816 use boatramp_handlers::{HandlerEngine, Limits};
4817
4818 let kv: Arc<dyn boatramp_core::kv::KvStore> = Arc::new(boatramp_core::kv::MemoryKv::new());
4819 let storage: Arc<dyn boatramp_core::Storage> = Arc::new(MemStorage::default());
4820 let sql_dir =
4822 std::env::temp_dir().join(format!("boatramp-named-sql-{}", std::process::id()));
4823 let _ = std::fs::remove_dir_all(&sql_dir);
4824 let sql: Arc<dyn boatramp_core::sql::SqlBackends> =
4825 Arc::new(boatramp_storage::LibsqlSqlBackends::local(&sql_dir));
4826
4827 let engine = HandlerEngine::new(Limits::default(), 16).unwrap();
4828 let rt = HandlerRuntime::new(engine, kv, storage, Some(sql), None);
4829 let inner = rt.inner.as_ref().unwrap();
4830
4831 let site = HandlersSiteConfig {
4835 enabled: true,
4836 allow_imports: vec!["sql".into(), "sql:product".into(), "sql:privileged".into()],
4837 tenancy: Some(boatramp_core::tenancy::Tenancy::Disabled),
4838 ..Default::default()
4839 };
4840 let env = std::collections::BTreeMap::new();
4841 let build = |imports: &[&str]| {
4842 let imports: Vec<String> = imports.iter().copied().map(String::from).collect();
4843 let site = &site;
4844 let env = &env;
4845 async move {
4846 crate::handler_dispatch::build_bindings(
4847 inner,
4848 ProjectRef::new("default"),
4849 "shop",
4850 "shop",
4851 None,
4852 &imports,
4853 site,
4854 env,
4855 &[],
4856 0,
4857 None,
4858 None,
4859 None,
4860 None,
4861 None,
4862 None,
4863 None,
4864 )
4865 .await
4866 .expect("no secrets → resolves")
4867 .sql_database_names()
4868 }
4869 };
4870
4871 assert_eq!(build(&["sql", "sql:product"]).await, vec!["", "product"]);
4874 assert_eq!(
4876 build(&["sql", "sql:*"]).await,
4877 vec!["", "privileged", "product"]
4878 );
4879 assert!(build(&["sql:secret"]).await.is_empty());
4881 assert_eq!(build(&["sql:product"]).await, vec!["product"]);
4883
4884 let _ = std::fs::remove_dir_all(&sql_dir);
4885 }
4886}