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reddb_server/
grpc.rs

1pub(crate) use crate::application::json_input::{
2    json_bool_field, json_f32_field, json_string_field, json_usize_field,
3};
4pub(crate) use crate::application::{
5    AdminUseCases, CatalogUseCases, CreateEdgeInput, CreateEntityOutput, CreateNodeGraphLinkInput,
6    CreateNodeInput, CreateNodeTableLinkInput, CreateRowInput, CreateVectorInput,
7    DeleteEntityInput, EntityUseCases, ExecuteQueryInput, ExplainQueryInput, GraphCentralityInput,
8    GraphClusteringInput, GraphCommunitiesInput, GraphComponentsInput, GraphCyclesInput,
9    GraphHitsInput, GraphNeighborhoodInput, GraphPersonalizedPageRankInput, GraphShortestPathInput,
10    GraphTopologicalSortInput, GraphTraversalInput, GraphUseCases, InspectNativeArtifactInput,
11    NativeUseCases, PatchEntityInput, QueryUseCases, SearchHybridInput, SearchIvfInput,
12    SearchSimilarInput, SearchTextInput,
13};
14use std::collections::BTreeMap;
15use std::pin::Pin;
16use std::sync::Arc;
17use std::time::{SystemTime, UNIX_EPOCH};
18
19use crate::api::{RedDBOptions, RedDBResult};
20use crate::auth::middleware::{check_permission, AuthResult, AuthSource};
21use crate::auth::store::AuthStore;
22use crate::auth::Role;
23use crate::health::{HealthProvider, HealthState};
24use crate::json::{
25    from_str as json_from_str, to_string as json_to_string, Map, Value as JsonValue,
26};
27use crate::runtime::{
28    RedDBRuntime, RuntimeFilter, RuntimeFilterValue, RuntimeGraphCentralityAlgorithm,
29    RuntimeGraphCentralityResult, RuntimeGraphClusteringResult, RuntimeGraphCommunityAlgorithm,
30    RuntimeGraphCommunityResult, RuntimeGraphComponentsMode, RuntimeGraphComponentsResult,
31    RuntimeGraphCyclesResult, RuntimeGraphDirection, RuntimeGraphHitsResult,
32    RuntimeGraphNeighborhoodResult, RuntimeGraphPathAlgorithm, RuntimeGraphPathResult,
33    RuntimeGraphPattern, RuntimeGraphProjection, RuntimeGraphTopologicalSortResult,
34    RuntimeGraphTraversalResult, RuntimeGraphTraversalStrategy, RuntimeIvfSearchResult,
35    RuntimeQueryResult, RuntimeQueryWeights, RuntimeStats, ScanPage,
36};
37use crate::storage::schema::Value;
38use crate::storage::unified::devx::refs::{NodeRef, TableRef};
39use crate::storage::unified::{Metadata, MetadataValue};
40use crate::storage::{EntityData, EntityId, UnifiedEntity};
41use tokio_stream::wrappers::TcpListenerStream;
42use tonic::metadata::MetadataMap;
43use tonic::{Request, Response, Status};
44
45// gRPC protobuf types and tonic stubs live in the standalone
46// `reddb-grpc-proto` crate so `reddb-server` and `reddb-client`
47// can both consume them without a dependency cycle. We expose
48// them under the legacy `proto` module path so existing
49// `crate::grpc::proto::…` imports keep resolving.
50pub use reddb_grpc_proto as proto;
51
52use proto::red_db_server::{RedDb, RedDbServer};
53use proto::{
54    ask_stream_event, AskAnswerToken, AskReply, AskRequest, AskSources, AskStreamEvent,
55    BatchInsertChunk, BatchInsertReply, BatchQueryReply, BatchQueryRequest, BulkEntityReply,
56    Citation, CollectionRequest, CollectionsReply, DeleteEntityRequest, DeploymentProfileRequest,
57    Empty, EntityReply, ExecutePreparedRequest, ExportRequest, GraphProjectionUpsertRequest,
58    HealthReply, IndexNameRequest, IndexToggleRequest, JsonBulkCreateRequest, JsonCreateRequest,
59    JsonPayloadRequest, KvWatchEvent, KvWatchRequest, ManifestRequest, OperationReply,
60    PayloadReply, PrepareQueryReply, PrepareQueryRequest, QueryReply, QueryRequest, QueryValue,
61    ScanEntity, ScanReply, ScanRequest, StatsReply, TopologyReply, TopologyRequest,
62    UpdateEntityRequest, Validation, ValidationItem,
63};
64
65mod control_support;
66mod entity_ops;
67mod input_support;
68pub(crate) mod scan_json;
69
70use self::control_support::*;
71use self::entity_ops::*;
72use self::input_support::*;
73use self::scan_json::*;
74
75#[derive(Debug, Clone)]
76pub struct GrpcServerOptions {
77    pub bind_addr: String,
78    /// Optional TLS configuration. When set the server terminates
79    /// TLS for inbound gRPC traffic via `tonic::transport::ServerTlsConfig`.
80    /// When `None`, the listener stays plaintext (back-compat for
81    /// loopback / sidecar deployments where a sidecar terminates TLS).
82    pub tls: Option<GrpcTlsOptions>,
83}
84
85/// PEM-encoded TLS material for gRPC's tonic-rustls server.
86///
87/// The server identity is required (cert + key); the optional
88/// client-CA enables mTLS — when present, tonic verifies and
89/// requires a client cert chain that anchors at this CA bundle.
90#[derive(Debug, Clone)]
91pub struct GrpcTlsOptions {
92    /// PEM bytes for the server certificate chain (leaf first).
93    pub cert_pem: Vec<u8>,
94    /// PEM bytes for the server private key (PKCS#8 / SEC1 / RSA).
95    pub key_pem: Vec<u8>,
96    /// Optional PEM bytes for the trust anchor used to verify
97    /// client certificates. When `Some(_)`, the server requires
98    /// every client to present a cert that chains to this CA;
99    /// when `None`, the server runs one-way TLS only.
100    pub client_ca_pem: Option<Vec<u8>>,
101}
102
103impl GrpcTlsOptions {
104    /// Build a `tonic` `ServerTlsConfig` from PEM bytes, applying
105    /// rustls defaults (TLS 1.2 + 1.3 — older versions are not
106    /// negotiable on tokio-rustls 0.26).
107    pub fn to_tonic_config(
108        &self,
109    ) -> Result<tonic::transport::ServerTlsConfig, Box<dyn std::error::Error>> {
110        let identity = tonic::transport::Identity::from_pem(&self.cert_pem, &self.key_pem);
111        let mut cfg = tonic::transport::ServerTlsConfig::new().identity(identity);
112        if let Some(ca_pem) = &self.client_ca_pem {
113            cfg = cfg.client_ca_root(tonic::transport::Certificate::from_pem(ca_pem));
114        }
115        Ok(cfg)
116    }
117}
118
119impl Default for GrpcServerOptions {
120    fn default() -> Self {
121        Self {
122            bind_addr: "127.0.0.1:5555".to_string(),
123            tls: None,
124        }
125    }
126}
127
128#[derive(Clone)]
129pub struct RedDBGrpcServer {
130    runtime: RedDBRuntime,
131    options: GrpcServerOptions,
132    auth_store: Arc<AuthStore>,
133    /// Optional OAuth/OIDC JWT validator. When set, the gRPC
134    /// interceptor validates JWT-shaped bearers against the issuer's
135    /// JWKS *before* attempting `AuthStore` session/api-key lookups.
136    /// Build externally via `crate::auth::OAuthValidator::with_verifier`
137    /// and attach with [`Self::with_oauth_validator`].
138    oauth_validator: Option<Arc<crate::auth::OAuthValidator>>,
139}
140
141impl RedDBGrpcServer {
142    pub fn new(runtime: RedDBRuntime) -> Self {
143        let auth_config = crate::auth::AuthConfig::default();
144        let auth_store = Arc::new(AuthStore::new(auth_config));
145        Self::with_options(runtime, GrpcServerOptions::default(), auth_store)
146    }
147
148    pub fn from_database_options(
149        db_options: RedDBOptions,
150        options: GrpcServerOptions,
151    ) -> RedDBResult<Self> {
152        // Create runtime first so we can access the pager for vault pages.
153        let runtime = RedDBRuntime::with_options(db_options.clone())?;
154
155        let auth_store = if db_options.auth.vault_enabled {
156            // The vault stores its encrypted state in reserved pages inside
157            // the main .rdb file.  Extract the pager reference from the
158            // runtime's underlying store.
159            let pager = runtime.db().store().pager().cloned().ok_or_else(|| {
160                crate::api::RedDBError::Internal(
161                    "vault requires a paged database (persistent mode)".into(),
162                )
163            })?;
164            let store = AuthStore::with_vault(db_options.auth.clone(), pager, None)
165                .map_err(|e| crate::api::RedDBError::Internal(e.to_string()))?;
166            Arc::new(store)
167        } else {
168            Arc::new(AuthStore::new(db_options.auth.clone()))
169        };
170        auth_store.bootstrap_from_env();
171        Ok(Self::with_options(runtime, options, auth_store))
172    }
173
174    pub fn with_options(
175        runtime: RedDBRuntime,
176        options: GrpcServerOptions,
177        auth_store: Arc<AuthStore>,
178    ) -> Self {
179        // Inject the auth store into the runtime so that Value::Secret
180        // auto-encrypt/decrypt can read the vault AES key.
181        runtime.set_auth_store(Arc::clone(&auth_store));
182        Self {
183            runtime,
184            options,
185            auth_store,
186            oauth_validator: None,
187        }
188    }
189
190    /// Attach an externally-constructed OAuth/OIDC JWT validator. Once
191    /// set, JWT-shaped bearer tokens (3-segment) on the
192    /// `authorization` metadata are validated against the issuer's
193    /// JWKS, expiry, audience, etc. Non-JWT bearers fall back to the
194    /// `AuthStore` session/API-key path.
195    pub fn with_oauth_validator(mut self, validator: Arc<crate::auth::OAuthValidator>) -> Self {
196        self.oauth_validator = Some(validator);
197        self
198    }
199
200    /// Inspect the active OAuth validator, when one is configured.
201    pub fn oauth_validator(&self) -> Option<&Arc<crate::auth::OAuthValidator>> {
202        self.oauth_validator.as_ref()
203    }
204
205    pub fn runtime(&self) -> &RedDBRuntime {
206        &self.runtime
207    }
208
209    pub fn options(&self) -> &GrpcServerOptions {
210        &self.options
211    }
212
213    pub fn auth_store(&self) -> &Arc<AuthStore> {
214        &self.auth_store
215    }
216
217    fn grpc_runtime(&self) -> GrpcRuntime {
218        GrpcRuntime {
219            runtime: self.runtime.clone(),
220            auth_store: self.auth_store.clone(),
221            prepared_registry: PreparedStatementRegistry::new(),
222            oauth_validator: self.oauth_validator.clone(),
223        }
224    }
225
226    pub async fn serve(&self) -> Result<(), Box<dyn std::error::Error>> {
227        let addr = self.options.bind_addr.parse()?;
228        let mut builder = tonic::transport::Server::builder();
229        if let Some(tls) = &self.options.tls {
230            // Constant-time SHA256 fingerprint logged for ops triage —
231            // never the bytes of cert/key themselves.
232            log_grpc_tls_identity(tls);
233            builder = builder.tls_config(tls.to_tonic_config()?)?;
234        }
235        builder
236            .add_service(Self::configured_service(self.grpc_runtime()))
237            .serve(addr)
238            .await?;
239        Ok(())
240    }
241
242    pub async fn serve_on(
243        &self,
244        listener: std::net::TcpListener,
245    ) -> Result<(), Box<dyn std::error::Error>> {
246        listener.set_nonblocking(true)?;
247        let listener = tokio::net::TcpListener::from_std(listener)?;
248        let incoming = TcpListenerStream::new(listener);
249        let mut builder = tonic::transport::Server::builder();
250        if let Some(tls) = &self.options.tls {
251            log_grpc_tls_identity(tls);
252            builder = builder.tls_config(tls.to_tonic_config()?)?;
253        }
254        builder
255            .add_service(Self::configured_service(self.grpc_runtime()))
256            .serve_with_incoming(incoming)
257            .await?;
258        Ok(())
259    }
260
261    /// Serve gRPC over a stream of already-accepted connections fed by the
262    /// in-process protocol demux (issue #933). The demux classifies each
263    /// inbound connection on the shared port and hands the HTTP/2 ones
264    /// straight in through `rx` — there is no loopback socket and no
265    /// `copy_bidirectional` hop. The server runs until `rx` closes (the
266    /// demux acceptor dropped its sender) and all in-flight RPCs drain.
267    pub(crate) async fn serve_router_demux(
268        &self,
269        rx: tokio::sync::mpsc::Receiver<tokio::net::TcpStream>,
270    ) -> Result<(), Box<dyn std::error::Error>> {
271        use tokio_stream::StreamExt;
272        let incoming = tokio_stream::wrappers::ReceiverStream::new(rx).map(Ok::<_, std::io::Error>);
273        let mut builder = tonic::transport::Server::builder();
274        if let Some(tls) = &self.options.tls {
275            log_grpc_tls_identity(tls);
276            builder = builder.tls_config(tls.to_tonic_config()?)?;
277        }
278        builder
279            .add_service(Self::configured_service(self.grpc_runtime()))
280            .serve_with_incoming(incoming)
281            .await?;
282        Ok(())
283    }
284
285    fn configured_service(runtime: GrpcRuntime) -> RedDbServer<GrpcRuntime> {
286        // Advertise zstd + gzip so clients can opt in. Server compresses
287        // outbound replies with zstd; sticking to a single send codec keeps
288        // CPU predictable while still accepting either on inbound.
289        use tonic::codec::CompressionEncoding;
290        RedDbServer::new(runtime)
291            .max_decoding_message_size(256 * 1024 * 1024)
292            .max_encoding_message_size(256 * 1024 * 1024)
293            .accept_compressed(CompressionEncoding::Zstd)
294            .accept_compressed(CompressionEncoding::Gzip)
295            .send_compressed(CompressionEncoding::Zstd)
296    }
297}
298
299/// Server-side prepared statement — parsed + parameterized once, executed N times.
300struct GrpcPreparedStatement {
301    shape: std::sync::Arc<crate::storage::query::ast::QueryExpr>,
302    parameter_count: usize,
303    created_at: std::time::Instant,
304}
305
306/// Registry of prepared statements for one server instance.
307/// Session-independent: any connection can execute any prepared statement by ID.
308struct PreparedStatementRegistry {
309    // parking_lot::RwLock never poisons on panic — safe to use without unwrap().
310    map: parking_lot::RwLock<std::collections::HashMap<u64, GrpcPreparedStatement>>,
311    next_id: std::sync::atomic::AtomicU64,
312    get_count: std::sync::atomic::AtomicU64,
313}
314
315impl PreparedStatementRegistry {
316    fn new() -> Arc<Self> {
317        Arc::new(Self {
318            map: parking_lot::RwLock::new(std::collections::HashMap::new()),
319            next_id: std::sync::atomic::AtomicU64::new(1),
320            get_count: std::sync::atomic::AtomicU64::new(0),
321        })
322    }
323
324    fn prepare(&self, shape: crate::storage::query::ast::QueryExpr, parameter_count: usize) -> u64 {
325        use std::sync::atomic::Ordering;
326        let id = self.next_id.fetch_add(1, Ordering::Relaxed);
327        let mut map = self.map.write();
328        self.evict_old_locked(&mut map);
329        map.insert(
330            id,
331            GrpcPreparedStatement {
332                // Store as Arc to avoid cloning the full AST on every execute.
333                shape: std::sync::Arc::new(shape),
334                parameter_count,
335                created_at: std::time::Instant::now(),
336            },
337        );
338        id
339    }
340
341    fn get_shape_and_count(
342        &self,
343        id: u64,
344    ) -> Option<(std::sync::Arc<crate::storage::query::ast::QueryExpr>, usize)> {
345        // Periodic eviction on execute/get traffic so long-lived servers that
346        // prepare once and execute many times still age out stale statements.
347        let get_count = self
348            .get_count
349            .fetch_add(1, std::sync::atomic::Ordering::Relaxed)
350            + 1;
351        if get_count.is_multiple_of(256) {
352            let mut map = self.map.write();
353            self.evict_old_locked(&mut map);
354        }
355        let map = self.map.read();
356        map.get(&id)
357            .map(|s| (std::sync::Arc::clone(&s.shape), s.parameter_count))
358    }
359
360    fn evict_old_locked(&self, map: &mut std::collections::HashMap<u64, GrpcPreparedStatement>) {
361        let threshold = std::time::Duration::from_secs(3600);
362        map.retain(|_, v| v.created_at.elapsed() < threshold);
363    }
364}
365
366#[derive(Clone)]
367struct GrpcRuntime {
368    runtime: RedDBRuntime,
369    auth_store: Arc<AuthStore>,
370    prepared_registry: Arc<PreparedStatementRegistry>,
371    /// OAuth/OIDC JWT validator built once from `auth_store.config().oauth`
372    /// when the operator enables OAuth. `None` means JWT bearers fall
373    /// back to the AuthStore lookup path.
374    oauth_validator: Option<Arc<crate::auth::OAuthValidator>>,
375}
376
377impl GrpcRuntime {
378    fn admin_use_cases(&self) -> AdminUseCases<'_, RedDBRuntime> {
379        AdminUseCases::new(&self.runtime)
380    }
381
382    fn catalog_use_cases(&self) -> CatalogUseCases<'_, RedDBRuntime> {
383        CatalogUseCases::new(&self.runtime)
384    }
385
386    fn query_use_cases(&self) -> QueryUseCases<'_, RedDBRuntime> {
387        QueryUseCases::new(&self.runtime)
388    }
389
390    fn entity_use_cases(&self) -> EntityUseCases<'_, RedDBRuntime> {
391        EntityUseCases::new(&self.runtime)
392    }
393
394    fn graph_use_cases(&self) -> GraphUseCases<'_, RedDBRuntime> {
395        GraphUseCases::new(&self.runtime)
396    }
397
398    fn native_use_cases(&self) -> NativeUseCases<'_, RedDBRuntime> {
399        NativeUseCases::new(&self.runtime)
400    }
401}
402
403fn grpc_query_value_to_schema_value(value: QueryValue) -> Result<Value, Status> {
404    use proto::query_value::Kind;
405
406    match value
407        .kind
408        .ok_or_else(|| Status::invalid_argument("missing query param value"))?
409    {
410        Kind::NullValue(_) => Ok(Value::Null),
411        Kind::BoolValue(value) => Ok(Value::Boolean(value)),
412        Kind::IntValue(value) => Ok(Value::Integer(value)),
413        Kind::FloatValue(value) => Ok(Value::Float(value)),
414        Kind::TextValue(value) => Ok(Value::Text(std::sync::Arc::from(value))),
415        Kind::BytesValue(value) => Ok(Value::Blob(value)),
416        Kind::VectorValue(value) => Ok(Value::Vector(value.values)),
417        Kind::JsonValue(value) => {
418            let parsed = json_from_str::<JsonValue>(&value)
419                .map_err(|e| Status::invalid_argument(format!("json param parse error: {e}")))?;
420            let encoded = json_to_string(&parsed)
421                .map_err(|e| Status::invalid_argument(format!("json param encode error: {e}")))?;
422            Ok(Value::Json(encoded.into_bytes()))
423        }
424        Kind::TimestampValue(value) => Ok(Value::Timestamp(value)),
425        Kind::UuidValue(value) => {
426            let bytes: [u8; 16] = value.try_into().map_err(|value: Vec<u8>| {
427                Status::invalid_argument(format!(
428                    "uuid param must be 16 bytes, got {}",
429                    value.len()
430                ))
431            })?;
432            Ok(Value::Uuid(bytes))
433        }
434    }
435}
436
437fn execute_grpc_query_with_optional_params(
438    runtime: &RedDBRuntime,
439    query: String,
440    params: Vec<QueryValue>,
441) -> Result<RuntimeQueryResult, Status> {
442    if query.trim().is_empty() {
443        return Err(Status::invalid_argument("query field cannot be empty"));
444    }
445
446    if params.is_empty() {
447        return runtime.execute_query(&query).map_err(to_status);
448    }
449
450    let binds = params
451        .into_iter()
452        .map(grpc_query_value_to_schema_value)
453        .collect::<Result<Vec<_>, _>>()?;
454    let parsed = crate::storage::query::modes::parse_multi(&query)
455        .map_err(|e| Status::invalid_argument(format!("parse error: {e}")))?;
456    let bound = crate::storage::query::user_params::bind(&parsed, &binds)
457        .map_err(|e| Status::invalid_argument(format!("bind error: {e}")))?;
458    runtime.execute_query_expr(bound).map_err(to_status)
459}
460
461#[cfg(test)]
462mod grpc_query_value_tests {
463    use super::*;
464    use proto::query_value::Kind;
465
466    #[test]
467    fn grpc_query_value_maps_to_schema_value_variants() {
468        let cases = vec![
469            (
470                QueryValue {
471                    kind: Some(Kind::NullValue(proto::QueryNull {})),
472                },
473                Value::Null,
474            ),
475            (
476                QueryValue {
477                    kind: Some(Kind::BoolValue(true)),
478                },
479                Value::Boolean(true),
480            ),
481            (
482                QueryValue {
483                    kind: Some(Kind::IntValue(42)),
484                },
485                Value::Integer(42),
486            ),
487            (
488                QueryValue {
489                    kind: Some(Kind::FloatValue(1.5)),
490                },
491                Value::Float(1.5),
492            ),
493            (
494                QueryValue {
495                    kind: Some(Kind::BytesValue(vec![0, 1, 2])),
496                },
497                Value::Blob(vec![0, 1, 2]),
498            ),
499            (
500                QueryValue {
501                    kind: Some(Kind::VectorValue(proto::QueryVector {
502                        values: vec![0.25, 0.5],
503                    })),
504                },
505                Value::Vector(vec![0.25, 0.5]),
506            ),
507            (
508                QueryValue {
509                    kind: Some(Kind::TimestampValue(1_779_999_000)),
510                },
511                Value::Timestamp(1_779_999_000),
512            ),
513            (
514                QueryValue {
515                    kind: Some(Kind::UuidValue(vec![0x11; 16])),
516                },
517                Value::Uuid([0x11; 16]),
518            ),
519        ];
520
521        for (input, expected) in cases {
522            assert_eq!(grpc_query_value_to_schema_value(input).unwrap(), expected);
523        }
524
525        assert_eq!(
526            grpc_query_value_to_schema_value(QueryValue {
527                kind: Some(Kind::TextValue("alice".into())),
528            })
529            .unwrap(),
530            Value::Text(std::sync::Arc::from("alice"))
531        );
532        assert_eq!(
533            grpc_query_value_to_schema_value(QueryValue {
534                kind: Some(Kind::JsonValue("{\"role\":\"admin\"}".into())),
535            })
536            .unwrap(),
537            Value::Json(b"{\"role\":\"admin\"}".to_vec())
538        );
539    }
540
541    #[test]
542    fn grpc_query_value_rejects_missing_kind_and_bad_uuid() {
543        assert!(grpc_query_value_to_schema_value(QueryValue { kind: None }).is_err());
544        assert!(grpc_query_value_to_schema_value(QueryValue {
545            kind: Some(Kind::UuidValue(vec![0; 15])),
546        })
547        .is_err());
548    }
549
550    #[test]
551    fn grpc_query_rejects_empty_query_before_runtime_parse() {
552        let runtime =
553            RedDBRuntime::with_options(crate::api::RedDBOptions::in_memory()).expect("runtime");
554        let err = execute_grpc_query_with_optional_params(&runtime, "  ".to_string(), Vec::new())
555            .expect_err("empty query should fail");
556
557        assert_eq!(err.code(), tonic::Code::InvalidArgument);
558        assert_eq!(err.message(), "query field cannot be empty");
559    }
560
561    #[test]
562    fn grpc_query_params_are_bound_before_execution() {
563        let runtime =
564            RedDBRuntime::with_options(crate::api::RedDBOptions::in_memory()).expect("runtime");
565        seed_grpc_param_table(&runtime);
566
567        let result = execute_grpc_query_with_optional_params(
568            &runtime,
569            "SELECT id, name FROM p WHERE id = $1 AND name = $2".to_string(),
570            grpc_param_values(),
571        )
572        .expect("parameterized query");
573
574        assert_eq!(result.result.records.len(), 1);
575    }
576
577    #[tokio::test]
578    async fn grpc_query_rpc_binds_query_request_params() {
579        let runtime =
580            RedDBRuntime::with_options(crate::api::RedDBOptions::in_memory()).expect("runtime");
581        seed_grpc_param_table(&runtime);
582        let service = GrpcRuntime {
583            runtime,
584            auth_store: Arc::new(AuthStore::new(crate::auth::AuthConfig::default())),
585            prepared_registry: PreparedStatementRegistry::new(),
586            oauth_validator: None,
587        };
588
589        let reply = RedDb::query(
590            &service,
591            Request::new(QueryRequest {
592                query: "SELECT id, name FROM p WHERE id = $1 AND name = $2".to_string(),
593                entity_types: Vec::new(),
594                capabilities: Vec::new(),
595                params: grpc_param_values(),
596            }),
597        )
598        .await
599        .expect("query rpc")
600        .into_inner();
601
602        assert_eq!(reply.record_count, 1);
603        assert!(reply.result_json.contains("Alice"), "{}", reply.result_json);
604        assert!(!reply.result_json.contains("Bob"), "{}", reply.result_json);
605    }
606
607    fn seed_grpc_param_table(runtime: &RedDBRuntime) {
608        runtime
609            .execute_query("CREATE TABLE p (id INTEGER, name TEXT)")
610            .expect("create table");
611        runtime
612            .execute_query("INSERT INTO p (id, name) VALUES (1, 'Alice')")
613            .expect("insert alice");
614        runtime
615            .execute_query("INSERT INTO p (id, name) VALUES (2, 'Bob')")
616            .expect("insert bob");
617    }
618
619    fn grpc_param_values() -> Vec<QueryValue> {
620        vec![
621            QueryValue {
622                kind: Some(Kind::IntValue(1)),
623            },
624            QueryValue {
625                kind: Some(Kind::TextValue("Alice".to_string())),
626            },
627        ]
628    }
629}
630
631#[cfg(test)]
632mod grpc_ask_query_reply_tests {
633    use super::*;
634    use crate::storage::query::modes::QueryMode;
635    use crate::storage::query::unified::{UnifiedRecord, UnifiedResult};
636    use crate::storage::schema::Value as SchemaValue;
637
638    fn ask_runtime_result() -> RuntimeQueryResult {
639        let mut result = UnifiedResult::with_columns(vec![
640            "answer".into(),
641            "provider".into(),
642            "model".into(),
643            "mode".into(),
644            "retry_count".into(),
645            "prompt_tokens".into(),
646            "completion_tokens".into(),
647            "sources_flat".into(),
648            "citations".into(),
649            "validation".into(),
650        ]);
651        let mut record = UnifiedRecord::new();
652        record.set("answer", SchemaValue::text("Deploy failed [^1]."));
653        record.set("provider", SchemaValue::text("openai"));
654        record.set("model", SchemaValue::text("gpt-4o-mini"));
655        record.set("mode", SchemaValue::text("strict"));
656        record.set("retry_count", SchemaValue::Integer(0));
657        record.set("prompt_tokens", SchemaValue::Integer(11));
658        record.set("completion_tokens", SchemaValue::Integer(7));
659        record.set(
660            "sources_flat",
661            SchemaValue::Json(
662                br#"[{"urn":"urn:reddb:row:deployments:1","kind":"row","collection":"deployments","id":"1"}]"#.to_vec(),
663            ),
664        );
665        record.set(
666            "citations",
667            SchemaValue::Json(br#"[{"marker":1,"urn":"urn:reddb:row:deployments:1"}]"#.to_vec()),
668        );
669        record.set(
670            "validation",
671            SchemaValue::Json(br#"{"ok":true,"warnings":[],"errors":[]}"#.to_vec()),
672        );
673        result.push(record);
674
675        RuntimeQueryResult {
676            query: "ASK 'why did deploy fail?'".to_string(),
677            mode: QueryMode::Sql,
678            statement: "ask",
679            engine: "runtime-ai",
680            result,
681            affected_rows: 0,
682            statement_type: "select",
683            bookmark: None,
684        }
685    }
686
687    #[test]
688    fn query_reply_ask_result_json_uses_full_canonical_schema() {
689        let reply = query_reply(ask_runtime_result(), &None, &None);
690        let json: crate::json::Value =
691            crate::json::from_str(&reply.result_json).expect("valid ask json");
692
693        assert_eq!(
694            json.get("answer").and_then(crate::json::Value::as_str),
695            Some("Deploy failed [^1].")
696        );
697        assert_eq!(
698            json.get("cache_hit").and_then(crate::json::Value::as_bool),
699            Some(false)
700        );
701        assert_eq!(
702            json.get("cost_usd").and_then(crate::json::Value::as_f64),
703            Some(0.0)
704        );
705        assert_eq!(
706            json.get("mode").and_then(crate::json::Value::as_str),
707            Some("strict")
708        );
709        assert_eq!(
710            json.get("retry_count").and_then(crate::json::Value::as_u64),
711            Some(0)
712        );
713        assert!(
714            json.get("records").is_none(),
715            "ASK must not be row-wrapped: {}",
716            reply.result_json
717        );
718        assert!(
719            json.get("sources_flat")
720                .and_then(crate::json::Value::as_array)
721                .is_some_and(|sources| sources.len() == 1
722                    && sources[0]
723                        .get("payload")
724                        .and_then(crate::json::Value::as_str)
725                        .is_some()),
726            "sources_flat must be parsed with payload fallback: {}",
727            reply.result_json
728        );
729        assert!(
730            json.get("citations")
731                .and_then(crate::json::Value::as_array)
732                .is_some_and(|citations| citations.len() == 1),
733            "citations must be parsed: {}",
734            reply.result_json
735        );
736        assert_eq!(
737            json.get("validation")
738                .and_then(|v| v.get("ok"))
739                .and_then(crate::json::Value::as_bool),
740            Some(true)
741        );
742    }
743
744    #[test]
745    fn query_reply_non_ask_answer_column_keeps_row_shape() {
746        let mut result = UnifiedResult::with_columns(vec!["answer".into()]);
747        let mut record = UnifiedRecord::new();
748        record.set("answer", SchemaValue::text("plain select"));
749        result.push(record);
750
751        let reply = query_reply(
752            RuntimeQueryResult {
753                query: "SELECT 'plain select' AS answer".to_string(),
754                mode: QueryMode::Sql,
755                statement: "select",
756                engine: "runtime-sql",
757                result,
758                affected_rows: 0,
759                statement_type: "select",
760                bookmark: None,
761            },
762            &None,
763            &None,
764        );
765        let json: crate::json::Value =
766            crate::json::from_str(&reply.result_json).expect("valid query json");
767
768        assert!(
769            json.get("records").is_some(),
770            "non-ASK must stay row-wrapped"
771        );
772        assert!(
773            json.get("answer").is_none(),
774            "non-ASK must not use ASK envelope"
775        );
776    }
777}
778
779/// Emit a single info-level event with the SHA-256 fingerprint of the
780/// active gRPC server cert + an mTLS flag. Never logs PEM bytes.
781fn log_grpc_tls_identity(tls: &GrpcTlsOptions) {
782    use sha2::{Digest, Sha256};
783    let cert_fp = {
784        let mut h = Sha256::new();
785        h.update(&tls.cert_pem);
786        let digest = h.finalize();
787        // First 16 hex chars are enough for human cross-check; the full
788        // SHA-256 lives in audit logs only.
789        let mut buf = String::with_capacity(64);
790        for b in digest.iter() {
791            buf.push_str(&format!("{b:02x}"));
792        }
793        buf
794    };
795    tracing::info!(
796        target: "reddb::security",
797        transport = "grpc",
798        cert_sha256 = %cert_fp,
799        mtls = tls.client_ca_pem.is_some(),
800        "gRPC TLS identity loaded"
801    );
802}
803
804include!("grpc/service_impl.rs");