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reddb_server/storage/unified/devx/reddb/
impl_metadata.rs

1use super::*;
2use crate::storage::unified::metadata::{MetadataFilter, MetadataValue};
3
4impl RedDB {
5    pub fn is_replica_role(&self) -> bool {
6        matches!(
7            self.options.replication.role,
8            crate::replication::ReplicationRole::Replica { .. }
9        )
10    }
11
12    pub fn enforce_retention_policy(&self) -> Result<(), Box<dyn std::error::Error>> {
13        if self.options.read_only || self.is_replica_role() {
14            return Ok(());
15        }
16
17        // Export pruning is only meaningful for persistent mode where we
18        // have a metadata sidecar that tracks file-backed export artifacts.
19        if self.options.mode == StorageMode::Persistent {
20            let Some(path) = self.path() else {
21                return Ok(());
22            };
23
24            let Ok(mut metadata) = self.load_or_bootstrap_physical_metadata(true) else {
25                return Ok(());
26            };
27
28            self.prune_export_registry(&mut metadata.exports);
29            metadata.save_for_data_path(path)?;
30        }
31
32        let _ = self.sweep_ttl_expired_entities()?;
33
34        Ok(())
35    }
36
37    pub(crate) fn ttl_expired_entities_now(
38        &self,
39    ) -> Result<Vec<(String, EntityId)>, Box<dyn std::error::Error>> {
40        self.ttl_expired_entities_at(current_unix_ms())
41    }
42
43    pub fn replica_allows_entity_at_read(
44        &self,
45        collection: &str,
46        entity: &crate::storage::UnifiedEntity,
47    ) -> bool {
48        if !self.is_replica_role() {
49            return true;
50        }
51        !self.entity_expired_at(collection, entity, current_unix_ms())
52    }
53
54    fn sweep_ttl_expired_entities(&self) -> Result<usize, Box<dyn std::error::Error>> {
55        let to_delete = self.ttl_expired_entities_now()?;
56
57        let mut deleted = 0usize;
58        for (collection, id) in to_delete {
59            match self.store.delete(&collection, id) {
60                Ok(true) => deleted = deleted.saturating_add(1),
61                Ok(false) => {}
62                Err(err) => {
63                    return Err(format!(
64                        "failed deleting expired entity {id} from collection '{collection}': {err:?}"
65                    )
66                    .into());
67                }
68            }
69        }
70
71        Ok(deleted)
72    }
73
74    fn ttl_expired_entities_at(
75        &self,
76        now_ms: u64,
77    ) -> Result<Vec<(String, EntityId)>, Box<dyn std::error::Error>> {
78        let mut to_delete = Vec::<(String, EntityId)>::new();
79
80        let mut absolute_expired = self.expired_entities_by_expires_at(now_ms)?;
81        to_delete.append(&mut absolute_expired);
82
83        let mut relative_expired = self.expired_entities_by_ttl(now_ms)?;
84        to_delete.append(&mut relative_expired);
85
86        to_delete.sort_unstable();
87        to_delete.dedup();
88
89        Ok(to_delete)
90    }
91
92    fn entity_expired_at(
93        &self,
94        collection: &str,
95        entity: &crate::storage::UnifiedEntity,
96        now_ms: u64,
97    ) -> bool {
98        let Some(metadata) = self.store.get_metadata(collection, entity.id) else {
99            return false;
100        };
101
102        if metadata
103            .get("_expires_at")
104            .and_then(Self::metadata_u64)
105            .is_some_and(|expires_at_ms| expires_at_ms <= now_ms)
106        {
107            return true;
108        }
109
110        let ttl_ms = metadata.get("_ttl_ms").and_then(Self::metadata_u64);
111        let ttl_secs = if ttl_ms.is_none() {
112            metadata.get("_ttl").and_then(|value| {
113                Self::metadata_u64(value).and_then(|value_secs| value_secs.checked_mul(1000))
114            })
115        } else {
116            None
117        };
118
119        let Some(ttl_ms) = ttl_ms.or(ttl_secs) else {
120            return false;
121        };
122        entity
123            .created_at
124            .saturating_mul(1000)
125            .saturating_add(ttl_ms)
126            <= now_ms
127    }
128
129    fn expired_entities_by_expires_at(
130        &self,
131        now_ms: u64,
132    ) -> Result<Vec<(String, EntityId)>, Box<dyn std::error::Error>> {
133        let mut ids = self.store.filter_metadata_all(&[(
134            "_expires_at".to_string(),
135            MetadataFilter::Le(MetadataValue::Timestamp(now_ms)),
136        )]);
137
138        if let Ok(now_ms_i64) = i64::try_from(now_ms) {
139            ids.extend(self.store.filter_metadata_all(&[(
140                "_expires_at".to_string(),
141                MetadataFilter::Le(MetadataValue::Int(now_ms_i64)),
142            )]));
143        }
144
145        let now_ms_f64 = now_ms as f64;
146        if now_ms_f64.is_finite() {
147            ids.extend(self.store.filter_metadata_all(&[(
148                "_expires_at".to_string(),
149                MetadataFilter::Le(MetadataValue::Float(now_ms_f64)),
150            )]));
151        }
152
153        Ok(ids)
154    }
155
156    fn expired_entities_by_ttl(
157        &self,
158        now_ms: u64,
159    ) -> Result<Vec<(String, EntityId)>, Box<dyn std::error::Error>> {
160        let mut candidates = Vec::<(String, EntityId)>::new();
161
162        let ttl_ms_candidates = self
163            .store
164            .filter_metadata_all(&[("_ttl_ms".to_string(), MetadataFilter::IsNotNull)]);
165        candidates.extend(ttl_ms_candidates);
166
167        let ttl_candidates = self
168            .store
169            .filter_metadata_all(&[("_ttl".to_string(), MetadataFilter::IsNotNull)]);
170        candidates.extend(ttl_candidates);
171
172        if candidates.is_empty() {
173            return Ok(Vec::new());
174        }
175
176        candidates.sort_unstable();
177        candidates.dedup();
178
179        let mut expired = Vec::<(String, EntityId)>::new();
180        for (collection, entity_id) in candidates {
181            let Some(entity) = self.store.get(&collection, entity_id) else {
182                continue;
183            };
184
185            let Some(metadata) = self.store.get_metadata(&collection, entity_id) else {
186                continue;
187            };
188
189            let ttl_ms = metadata.get("_ttl_ms").and_then(Self::metadata_u64);
190            let ttl_secs = if ttl_ms.is_none() {
191                metadata.get("_ttl").and_then(|value| {
192                    Self::metadata_u64(value).and_then(|value_secs| value_secs.checked_mul(1000))
193                })
194            } else {
195                None
196            };
197
198            let Some(ttl_ms) = ttl_ms.or(ttl_secs) else {
199                continue;
200            };
201
202            let created_at_ms = entity.created_at.saturating_mul(1000);
203            let expiry_ms = created_at_ms.saturating_add(ttl_ms);
204            if expiry_ms <= now_ms {
205                expired.push((collection, entity_id));
206            }
207        }
208
209        Ok(expired)
210    }
211
212    fn metadata_u64(value: &MetadataValue) -> Option<u64> {
213        match value {
214            MetadataValue::Int(v) if *v >= 0 => Some(*v as u64),
215            MetadataValue::Timestamp(v) => Some(*v),
216            MetadataValue::Float(v) => {
217                if !v.is_finite() || !v.is_sign_positive() || v.fract().abs() >= f64::EPSILON {
218                    return None;
219                }
220                if *v > u64::MAX as f64 {
221                    return None;
222                }
223                Some(v.trunc() as u64)
224            }
225            MetadataValue::String(v) => v.parse::<u64>().ok(),
226            _ => None,
227        }
228    }
229
230    // ========================================================================
231    // Builder Methods - Create Entities
232    // ========================================================================
233
234    /// Start building a graph node
235    ///
236    /// # Example
237    /// ```ignore
238    /// let host = db.node("hosts", "Host")
239    ///     .property("ip", "192.168.1.1")
240    ///     .save()?;
241    /// ```
242    pub fn node(&self, collection: impl Into<String>, label: impl Into<String>) -> NodeBuilder {
243        NodeBuilder::new(
244            self.store.clone(),
245            self.preprocessors.clone(),
246            collection,
247            label,
248        )
249    }
250
251    /// Start building a graph edge
252    ///
253    /// # Example
254    /// ```ignore
255    /// let edge = db.edge("connections", "CONNECTS_TO")
256    ///     .from(host_a)
257    ///     .to(host_b)
258    ///     .weight(0.95)
259    ///     .property("protocol", "TCP")
260    ///     .save()?;
261    /// ```
262    pub fn edge(&self, collection: impl Into<String>, label: impl Into<String>) -> EdgeBuilder {
263        EdgeBuilder::new(
264            self.store.clone(),
265            self.preprocessors.clone(),
266            collection,
267            label,
268        )
269    }
270
271    /// Start building a vector entry
272    ///
273    /// # Example
274    /// ```ignore
275    /// let vec = db.vector("embeddings")
276    ///     .dense(embedding)
277    ///     .content("Original text content")
278    ///     .metadata("source", "document.pdf")
279    ///     .save()?;
280    /// ```
281    pub fn vector(&self, collection: impl Into<String>) -> VectorBuilder {
282        VectorBuilder::new(self.store.clone(), self.preprocessors.clone(), collection)
283    }
284
285    /// Start building a table row
286    ///
287    /// # Example
288    /// ```ignore
289    /// let row = db.row("scans", vec![
290    ///     ("timestamp", Value::Timestamp(now)),
291    ///     ("target", Value::text("192.168.1.0/24")),
292    ///     ("findings", Value::Integer(42)),
293    /// ]).save()?;
294    /// ```
295    pub fn row(&self, table: impl Into<String>, columns: Vec<(&str, Value)>) -> RowBuilder {
296        RowBuilder::new(
297            self.store.clone(),
298            self.preprocessors.clone(),
299            table,
300            columns,
301        )
302    }
303
304    /// Start building a document
305    ///
306    /// Documents are stored as enriched table rows with a full JSON body
307    /// field and flattened top-level keys for filtering.
308    ///
309    /// # Example
310    /// ```ignore
311    /// let doc = db.doc("articles")
312    ///     .field("title", "Hello World")
313    ///     .field("views", 42)
314    ///     .metadata("source", "web")
315    ///     .save()?;
316    /// ```
317    pub fn doc(&self, collection: impl Into<String>) -> DocumentBuilder {
318        DocumentBuilder::new(self.store.clone(), self.preprocessors.clone(), collection)
319    }
320
321    /// Start building a key-value pair
322    ///
323    /// KV pairs are stored as table rows with named fields `key` and `value`.
324    ///
325    /// # Example
326    /// ```ignore
327    /// let id = db.kv("config", "theme", Value::text("dark"))
328    ///     .metadata("updated_by", "admin")
329    ///     .save()?;
330    /// ```
331    pub fn kv(
332        &self,
333        collection: impl Into<String>,
334        key: impl Into<String>,
335        value: Value,
336    ) -> KvBuilder {
337        KvBuilder::new(
338            self.store.clone(),
339            self.preprocessors.clone(),
340            collection,
341            key,
342            value,
343        )
344    }
345
346    /// Get a key-value pair by key, returning the value and entity id
347    ///
348    /// Scans the collection for an entity whose named field `key` matches.
349    pub fn get_kv(&self, collection: &str, key: &str) -> Option<(Value, EntityId)> {
350        let manager = self.store.get_collection(collection)?;
351        let entities = manager.query_all(|_| true);
352        for entity in entities {
353            if let EntityData::Row(ref row) = entity.data {
354                if let Some(ref named) = row.named {
355                    if let Some(Value::Text(ref k)) = named.get("key") {
356                        if &**k == key {
357                            let value = named.get("value").cloned().unwrap_or(Value::Null);
358                            return Some((value, entity.id));
359                        }
360                    }
361                }
362            }
363        }
364        None
365    }
366
367    /// Delete a key-value pair by key, returning whether it was found and removed
368    pub fn delete_kv(
369        &self,
370        collection: &str,
371        key: &str,
372    ) -> Result<bool, super::super::error::DevXError> {
373        let Some((_, id)) = self.get_kv(collection, key) else {
374            return Ok(false);
375        };
376        self.store
377            .delete(collection, id)
378            .map_err(|err| super::super::error::DevXError::Storage(format!("{err:?}")))?;
379        Ok(true)
380    }
381
382    pub(crate) fn with_initialized_metadata(self) -> Result<Self, Box<dyn std::error::Error>> {
383        if self.options.mode == StorageMode::Persistent {
384            // Load metadata without persisting (avoids blocking catalog snapshot on boot)
385            if let Ok(metadata) = self.load_or_bootstrap_physical_metadata(false) {
386                crate::reserved_fields::validate_physical_metadata_contracts(&metadata)
387                    .map_err(|err| err.to_string())?;
388            }
389            // Skip repair on boot — deferred to first explicit persist_metadata() call.
390            // This avoids the recursive catalog_model_snapshot → physical_metadata loop
391            // that caused stack overflow / 12-second hang on startup.
392        }
393        self.load_collection_ttl_defaults_from_metadata();
394        // Issue #866 — rehydrate the hypertable chunk spine before the
395        // API opens so chunk routing / pruning / TTL work immediately
396        // after a restart.
397        self.load_hypertables_from_metadata();
398        self.recover_queue_pending_state();
399        Ok(self)
400    }
401
402    pub(crate) fn persist_metadata(&self) -> Result<(), Box<dyn std::error::Error>> {
403        if self.options.mode != StorageMode::Persistent || self.options.read_only {
404            return Ok(());
405        }
406        if self.options.storage_profile.deploy_profile == crate::storage::DeployProfile::Embedded
407            && self.options.storage_profile.packaging
408                == crate::storage::StoragePackaging::SingleFile
409        {
410            return Ok(());
411        }
412        let Some(path) = self.path() else {
413            return Ok(());
414        };
415
416        let previous = self.load_or_bootstrap_physical_metadata(false).ok();
417        let collection_roots = self.physical_collection_roots();
418        let indexes = self
419            .native_physical_state()
420            .map(|state| self.physical_index_state_from_native_state(&state, previous.as_ref()))
421            .unwrap_or_else(|| self.physical_index_state());
422        let mut metadata = PhysicalMetadataFile::from_state(
423            self.options.clone(),
424            self.catalog_snapshot(),
425            collection_roots,
426            indexes,
427            previous.as_ref(),
428        );
429        metadata.collection_ttl_defaults_ms = self.collection_ttl_defaults_snapshot();
430        // Issue #866 — persist the hypertable chunk spine (specs +
431        // chunk bounds / routing / TTL) onto the same metadata path as
432        // collection contracts so a restart recovers it identically.
433        metadata.hypertables = self.hypertable_registry_snapshot();
434        metadata.save_for_data_path(path)?;
435        self.persist_native_physical_header(&metadata)?;
436        Ok(())
437    }
438
439    fn bootstrap_metadata_from_native_state(&self) -> Result<bool, Box<dyn std::error::Error>> {
440        if self.options.mode != StorageMode::Persistent || self.options.read_only {
441            return Ok(false);
442        }
443        let Some(path) = self.path() else {
444            return Ok(false);
445        };
446        let Some(native_state) = self.native_physical_state() else {
447            return Ok(false);
448        };
449        if !Self::native_state_is_bootstrap_complete(&native_state) {
450            return Ok(false);
451        }
452
453        let previous = PhysicalMetadataFile::load_for_data_path(path).ok();
454        let metadata = self.metadata_from_native_state(&native_state, previous.as_ref());
455        metadata.save_for_data_path(path)?;
456        self.persist_native_physical_header(&metadata)?;
457        Ok(true)
458    }
459
460    /// Rebuild the external physical metadata view from the native state published in the
461    /// paged database file.
462    pub fn rebuild_physical_metadata_from_native_state(
463        &self,
464    ) -> Result<bool, Box<dyn std::error::Error>> {
465        self.bootstrap_metadata_from_native_state()
466    }
467
468    pub(crate) fn native_state_is_bootstrap_complete(native_state: &NativePhysicalState) -> bool {
469        let registry_complete = native_state.registry.as_ref().map(|registry| {
470            registry.collections_complete
471                && registry.indexes_complete
472                && registry.graph_projections_complete
473                && registry.analytics_jobs_complete
474                && registry.vector_artifacts_complete
475        });
476        let recovery_complete = native_state
477            .recovery
478            .as_ref()
479            .map(|recovery| recovery.snapshots_complete && recovery.exports_complete);
480        let catalog_complete = native_state
481            .catalog
482            .as_ref()
483            .map(|catalog| catalog.collections_complete);
484
485        registry_complete == Some(true)
486            && recovery_complete == Some(true)
487            && catalog_complete == Some(true)
488    }
489
490    pub(crate) fn load_or_bootstrap_physical_metadata(
491        &self,
492        persist_bootstrapped: bool,
493    ) -> Result<PhysicalMetadataFile, Box<dyn std::error::Error>> {
494        if self.options.mode != StorageMode::Persistent {
495            return Err("physical metadata requires persistent mode".into());
496        }
497        let Some(path) = self.path() else {
498            return Err("database path is not available".into());
499        };
500        let native_state = self.native_physical_state();
501
502        match PhysicalMetadataFile::load_for_data_path(path) {
503            Ok(metadata) => {
504                if let Some(native_state) = native_state.as_ref() {
505                    let inspection = Self::inspect_native_header_against_metadata(
506                        native_state.header,
507                        &metadata,
508                    );
509                    if Self::repair_policy_for_inspection(&inspection)
510                        == NativeHeaderRepairPolicy::NativeAheadOfMetadata
511                    {
512                        let bootstrapped =
513                            self.metadata_from_native_state(native_state, Some(&metadata));
514                        if persist_bootstrapped && !self.options.read_only {
515                            bootstrapped.save_for_data_path(path)?;
516                            self.persist_native_physical_header(&bootstrapped)?;
517                        }
518                        return Ok(bootstrapped);
519                    }
520                }
521                Ok(metadata)
522            }
523            Err(err) => {
524                let Some(native_state) = native_state else {
525                    return Err(err.into());
526                };
527                // Accept the bootstrap when the native state is either
528                // (a) fully populated and consistent (the original
529                // contract), or (b) trivially empty — a freshly created
530                // database with no collections written yet. Without (b)
531                // a brand-new data file can never reach
532                // `readiness_for_query = true`, because the bootstrap
533                // refuses to run until the registry/catalog/recovery
534                // structures are "complete", which they never become
535                // until the bootstrap has already run once.
536                //
537                // The emptiness check is conservative: header.sequence
538                // must still be at its initial value AND all three
539                // physical state summaries must be absent. Anything
540                // else falls through to the original error so we never
541                // paper over partially corrupted files.
542                let is_fresh_empty = native_state.header.sequence == 0
543                    && native_state.registry.is_none()
544                    && native_state.catalog.is_none()
545                    && native_state.recovery.is_none();
546                if !is_fresh_empty && !Self::native_state_is_bootstrap_complete(&native_state) {
547                    return Err(err.into());
548                }
549                let metadata = self.metadata_from_native_state(&native_state, None);
550                if persist_bootstrapped && !self.options.read_only {
551                    metadata.save_for_data_path(path)?;
552                    self.persist_native_physical_header(&metadata)?;
553                }
554                Ok(metadata)
555            }
556        }
557    }
558
559    pub(crate) fn physical_metadata_preference(&self) -> Option<&'static str> {
560        let path = self.path()?;
561        let native_state = self.native_physical_state();
562        let metadata = PhysicalMetadataFile::load_for_data_path(path).ok();
563
564        match (metadata, native_state) {
565            (Some(metadata), Some(native_state)) => {
566                let inspection =
567                    Self::inspect_native_header_against_metadata(native_state.header, &metadata);
568                match Self::repair_policy_for_inspection(&inspection) {
569                    NativeHeaderRepairPolicy::InSync => Some("sidecar_current"),
570                    NativeHeaderRepairPolicy::RepairNativeFromMetadata => Some("sidecar_current"),
571                    NativeHeaderRepairPolicy::NativeAheadOfMetadata => Some("native_ahead"),
572                }
573            }
574            (Some(_), None) => Some("sidecar_only"),
575            (None, Some(_)) => Some("sidecar_missing_native_available"),
576            (None, None) => Some("sidecar_missing_no_native"),
577        }
578    }
579
580    fn metadata_from_native_state(
581        &self,
582        native_state: &NativePhysicalState,
583        previous: Option<&PhysicalMetadataFile>,
584    ) -> PhysicalMetadataFile {
585        let now = SystemTime::now()
586            .duration_since(UNIX_EPOCH)
587            .unwrap_or_default()
588            .as_millis();
589        let catalog = self.catalog_snapshot();
590        let catalog_name = catalog.name.clone();
591        let catalog_total_entities = catalog.total_entities;
592        let catalog_total_collections = catalog.total_collections;
593        let indexes = self.physical_index_state();
594
595        let mut manifest =
596            crate::api::SchemaManifest::now(self.options.clone(), catalog.total_collections);
597        manifest.updated_at_unix_ms = now;
598
599        let manifest_events = native_state
600            .manifest
601            .as_ref()
602            .map(|summary| {
603                summary
604                    .recent_events
605                    .iter()
606                    .map(|event| crate::physical::ManifestEvent {
607                        collection: event.collection.clone(),
608                        object_key: event.object_key.clone(),
609                        kind: match event.kind.as_str() {
610                            "insert" => crate::physical::ManifestEventKind::Insert,
611                            "update" => crate::physical::ManifestEventKind::Update,
612                            "remove" => crate::physical::ManifestEventKind::Remove,
613                            _ => crate::physical::ManifestEventKind::Checkpoint,
614                        },
615                        block: crate::physical::BlockReference {
616                            index: event.block_index,
617                            checksum: event.block_checksum,
618                        },
619                        snapshot_min: event.snapshot_min,
620                        snapshot_max: event.snapshot_max,
621                    })
622                    .collect()
623            })
624            .unwrap_or_default();
625
626        let graph_projections = native_state
627            .registry
628            .as_ref()
629            .and_then(|registry| {
630                registry.graph_projections_complete.then(|| {
631                    registry
632                        .graph_projections
633                        .iter()
634                        .map(|projection| crate::physical::PhysicalGraphProjection {
635                            name: projection.name.clone(),
636                            created_at_unix_ms: projection.created_at_unix_ms,
637                            updated_at_unix_ms: projection.updated_at_unix_ms,
638                            state: "materialized".to_string(),
639                            source: projection.source.clone(),
640                            node_labels: projection.node_labels.clone(),
641                            node_types: projection.node_types.clone(),
642                            edge_labels: projection.edge_labels.clone(),
643                            last_materialized_sequence: projection.last_materialized_sequence,
644                        })
645                        .collect()
646                })
647            })
648            .or_else(|| previous.map(|metadata| metadata.graph_projections.clone()))
649            .unwrap_or_default();
650
651        let analytics_jobs = native_state
652            .registry
653            .as_ref()
654            .and_then(|registry| {
655                registry.analytics_jobs_complete.then(|| {
656                    registry
657                        .analytics_jobs
658                        .iter()
659                        .map(|job| crate::physical::PhysicalAnalyticsJob {
660                            id: job.id.clone(),
661                            kind: job.kind.clone(),
662                            state: job.state.clone(),
663                            projection: job.projection.clone(),
664                            created_at_unix_ms: job.created_at_unix_ms,
665                            updated_at_unix_ms: job.updated_at_unix_ms,
666                            last_run_sequence: job.last_run_sequence,
667                            metadata: job.metadata.clone(),
668                        })
669                        .collect()
670                })
671            })
672            .or_else(|| previous.map(|metadata| metadata.analytics_jobs.clone()))
673            .unwrap_or_default();
674
675        let exports = native_state
676            .recovery
677            .as_ref()
678            .and_then(|recovery| {
679                recovery.exports_complete.then(|| {
680                    recovery
681                        .exports
682                        .iter()
683                        .map(|export| crate::physical::ExportDescriptor {
684                            name: export.name.clone(),
685                            created_at_unix_ms: export.created_at_unix_ms,
686                            snapshot_id: export.snapshot_id,
687                            superblock_sequence: export.superblock_sequence,
688                            data_path: self
689                                .path()
690                                .map(|path| {
691                                    crate::physical::PhysicalMetadataFile::export_data_path_for(
692                                        path,
693                                        &export.name,
694                                    )
695                                    .display()
696                                    .to_string()
697                                })
698                                .unwrap_or_default(),
699                            metadata_path: self
700                                .path()
701                                .map(|path| {
702                                    let export_data_path =
703                                        crate::physical::PhysicalMetadataFile::export_data_path_for(
704                                            path,
705                                            &export.name,
706                                        );
707                                    crate::physical::PhysicalMetadataFile::metadata_path_for(
708                                        &export_data_path,
709                                    )
710                                    .display()
711                                    .to_string()
712                                })
713                                .unwrap_or_default(),
714                            collection_count: export.collection_count as usize,
715                            total_entities: export.total_entities as usize,
716                        })
717                        .collect()
718                })
719            })
720            .or_else(|| previous.map(|metadata| metadata.exports.clone()))
721            .unwrap_or_default();
722
723        let snapshots = native_state
724            .recovery
725            .as_ref()
726            .and_then(|recovery| {
727                recovery.snapshots_complete.then(|| {
728                    recovery
729                        .snapshots
730                        .iter()
731                        .map(|snapshot| crate::physical::SnapshotDescriptor {
732                            snapshot_id: snapshot.snapshot_id,
733                            created_at_unix_ms: snapshot.created_at_unix_ms,
734                            superblock_sequence: snapshot.superblock_sequence,
735                            collection_count: snapshot.collection_count as usize,
736                            total_entities: snapshot.total_entities as usize,
737                        })
738                        .collect()
739                })
740            })
741            .or_else(|| previous.map(|metadata| metadata.snapshots.clone()))
742            .unwrap_or_else(|| {
743                vec![crate::physical::SnapshotDescriptor {
744                    snapshot_id: native_state.header.sequence,
745                    created_at_unix_ms: now,
746                    superblock_sequence: native_state.header.sequence,
747                    collection_count: catalog_total_collections,
748                    total_entities: catalog_total_entities,
749                }]
750            });
751
752        let catalog_stats = native_state
753            .catalog
754            .as_ref()
755            .and_then(|native_catalog| {
756                native_catalog.collections_complete.then(|| {
757                    native_catalog
758                        .collections
759                        .iter()
760                        .map(|collection| {
761                            (
762                                collection.name.clone(),
763                                crate::api::CollectionStats {
764                                    entities: collection.entities as usize,
765                                    cross_refs: collection.cross_refs as usize,
766                                    segments: collection.segments as usize,
767                                },
768                            )
769                        })
770                        .collect::<BTreeMap<_, _>>()
771                })
772            })
773            .or_else(|| previous.map(|metadata| metadata.catalog.stats_by_collection.clone()))
774            .unwrap_or_else(|| catalog.stats_by_collection.clone());
775
776        PhysicalMetadataFile {
777            protocol_version: crate::physical::PHYSICAL_METADATA_PROTOCOL_VERSION.to_string(),
778            generated_at_unix_ms: now,
779            last_loaded_from: Some("native_bootstrap".to_string()),
780            last_healed_at_unix_ms: Some(now),
781            manifest,
782            catalog: crate::api::CatalogSnapshot {
783                name: catalog_name,
784                total_entities: native_state
785                    .catalog
786                    .as_ref()
787                    .map(|summary| summary.total_entities as usize)
788                    .unwrap_or(catalog_total_entities),
789                total_collections: native_state
790                    .catalog
791                    .as_ref()
792                    .map(|summary| summary.collection_count as usize)
793                    .unwrap_or(catalog_total_collections),
794                stats_by_collection: catalog_stats,
795                updated_at: SystemTime::now(),
796            },
797            manifest_events,
798            collection_ttl_defaults_ms: previous
799                .map(|metadata| metadata.collection_ttl_defaults_ms.clone())
800                .unwrap_or_default(),
801            collection_contracts: previous
802                .map(|metadata| metadata.collection_contracts.clone())
803                .unwrap_or_default(),
804            hypertables: previous
805                .map(|metadata| metadata.hypertables.clone())
806                .unwrap_or_default(),
807            tree_definitions: previous
808                .map(|metadata| metadata.tree_definitions.clone())
809                .unwrap_or_default(),
810            indexes,
811            graph_projections,
812            analytics_jobs,
813            exports,
814            superblock: crate::physical::SuperblockHeader {
815                format_version: native_state.header.format_version,
816                sequence: native_state.header.sequence,
817                copies: crate::physical::DEFAULT_SUPERBLOCK_COPIES,
818                manifest: crate::physical::ManifestPointers {
819                    oldest: crate::physical::BlockReference {
820                        index: native_state.header.manifest_oldest_root,
821                        checksum: 0,
822                    },
823                    newest: crate::physical::BlockReference {
824                        index: native_state.header.manifest_root,
825                        checksum: 0,
826                    },
827                },
828                free_set: crate::physical::BlockReference {
829                    index: native_state.header.free_set_root,
830                    checksum: 0,
831                },
832                collection_roots: native_state.collection_roots.clone(),
833            },
834            snapshots,
835        }
836    }
837
838    pub(crate) fn reconcile_index_states_with_native_artifacts(
839        &self,
840        mut indexes: Vec<PhysicalIndexState>,
841    ) -> Vec<PhysicalIndexState> {
842        let native_artifacts = self
843            .native_physical_state()
844            .and_then(|state| state.registry)
845            .map(|registry| registry.vector_artifacts)
846            .unwrap_or_default();
847        for index in &mut indexes {
848            let Some(collection) = index.collection.as_deref() else {
849                continue;
850            };
851            let Some(artifact_kind) = Self::native_artifact_kind_for_index(index.kind) else {
852                continue;
853            };
854            let Some(artifact) = native_artifacts.iter().find(|artifact| {
855                artifact.collection == collection && artifact.artifact_kind == artifact_kind
856            }) else {
857                index.build_state = "metadata-only".to_string();
858                continue;
859            };
860            index.entries = artifact.vector_count as usize;
861            index.estimated_memory_bytes = artifact.serialized_bytes;
862            index.backend = format!("{}+native-artifact", index_backend_name(index.kind));
863            index.artifact_kind = Some(artifact.artifact_kind.clone());
864            index.artifact_checksum = Some(artifact.checksum);
865            index.build_state = "artifact-published".to_string();
866            if let Some(pages) = self.native_vector_artifact_pages() {
867                index.artifact_root_page = pages
868                    .into_iter()
869                    .find(|page| {
870                        page.collection == artifact.collection
871                            && page.artifact_kind == artifact.artifact_kind
872                    })
873                    .map(|page| page.root_page);
874            }
875        }
876        indexes
877    }
878
879    pub(crate) fn warmup_native_vector_artifact_for_index(
880        &self,
881        index: &PhysicalIndexState,
882    ) -> Result<(), String> {
883        let Some(collection) = index.collection.as_deref() else {
884            return Ok(());
885        };
886        let Some(artifact_kind) = Self::native_artifact_kind_for_index(index.kind) else {
887            return Ok(());
888        };
889        self.warmup_native_vector_artifact(collection, Some(artifact_kind))?;
890        Ok(())
891    }
892
893    pub(crate) fn apply_runtime_native_artifact_to_index_state(
894        &self,
895        index: &mut PhysicalIndexState,
896    ) -> Result<(), String> {
897        let Some(collection) = index.collection.as_deref() else {
898            return Ok(());
899        };
900        let Some(artifact_kind) = Self::native_artifact_kind_for_index(index.kind) else {
901            return Ok(());
902        };
903        let artifact = self.inspect_native_vector_artifact(collection, Some(artifact_kind))?;
904        index.entries = artifact
905            .graph_edge_count
906            .or(artifact.text_posting_count)
907            .unwrap_or(artifact.node_count) as usize;
908        index.estimated_memory_bytes = artifact.byte_len;
909        index.backend = format!("{}+native-artifact", index_backend_name(index.kind));
910        index.artifact_kind = Some(artifact.artifact_kind.clone());
911        index.artifact_checksum = Some(artifact.checksum);
912        index.build_state = "ready".to_string();
913        index.artifact_root_page = self
914            .native_vector_artifact_pages()
915            .and_then(|pages| {
916                pages.into_iter().find(|page| {
917                    page.collection == artifact.collection
918                        && page.artifact_kind == artifact.artifact_kind
919                })
920            })
921            .map(|page| page.root_page);
922        Ok(())
923    }
924
925    pub(crate) fn physical_index_state_from_native_state(
926        &self,
927        native_state: &NativePhysicalState,
928        previous: Option<&PhysicalMetadataFile>,
929    ) -> Vec<PhysicalIndexState> {
930        let mut fresh = self.physical_index_state();
931        let Some(registry) = native_state.registry.as_ref() else {
932            if let Some(previous) = previous {
933                for index in &previous.indexes {
934                    if !fresh.iter().any(|candidate| candidate.name == index.name) {
935                        fresh.push(index.clone());
936                    }
937                }
938            }
939            return fresh;
940        };
941
942        for index in &mut fresh {
943            if let Some(native) = registry
944                .indexes
945                .iter()
946                .find(|candidate| candidate.name == index.name)
947            {
948                index.enabled = native.enabled;
949                index.last_refresh_ms = native.last_refresh_ms;
950                index.backend = native.backend.clone();
951                index.entries = native.entries as usize;
952                index.estimated_memory_bytes = native.estimated_memory_bytes;
953                if index.artifact_kind.is_none() {
954                    index.artifact_kind = Self::native_artifact_kind_for_index(index.kind)
955                        .map(|value| value.to_string());
956                }
957                if index.build_state == "catalog-derived" {
958                    index.build_state = "registry-loaded".to_string();
959                }
960            }
961        }
962
963        for native in &registry.indexes {
964            if fresh.iter().any(|index| index.name == native.name) {
965                continue;
966            }
967            let Some(kind) = Self::index_kind_from_str(&native.kind) else {
968                continue;
969            };
970            fresh.push(PhysicalIndexState {
971                name: native.name.clone(),
972                kind,
973                collection: native.collection.clone(),
974                enabled: native.enabled,
975                entries: native.entries as usize,
976                estimated_memory_bytes: native.estimated_memory_bytes,
977                last_refresh_ms: native.last_refresh_ms,
978                backend: native.backend.clone(),
979                artifact_kind: Self::native_artifact_kind_for_index(kind)
980                    .map(|value| value.to_string()),
981                artifact_root_page: None,
982                artifact_checksum: None,
983                build_state: "registry-loaded".to_string(),
984            });
985        }
986
987        if !registry.indexes_complete {
988            if let Some(previous) = previous {
989                for index in &previous.indexes {
990                    if !fresh.iter().any(|candidate| candidate.name == index.name) {
991                        fresh.push(index.clone());
992                    }
993                }
994            }
995        }
996
997        fresh
998    }
999
1000    pub(crate) fn graph_projections_from_native_state(
1001        &self,
1002        native_state: &NativePhysicalState,
1003    ) -> Vec<PhysicalGraphProjection> {
1004        native_state
1005            .registry
1006            .as_ref()
1007            .map(|registry| {
1008                registry
1009                    .graph_projections
1010                    .iter()
1011                    .map(|projection| PhysicalGraphProjection {
1012                        name: projection.name.clone(),
1013                        created_at_unix_ms: projection.created_at_unix_ms,
1014                        updated_at_unix_ms: projection.updated_at_unix_ms,
1015                        state: "materialized".to_string(),
1016                        source: projection.source.clone(),
1017                        node_labels: projection.node_labels.clone(),
1018                        node_types: projection.node_types.clone(),
1019                        edge_labels: projection.edge_labels.clone(),
1020                        last_materialized_sequence: projection.last_materialized_sequence,
1021                    })
1022                    .collect()
1023            })
1024            .unwrap_or_default()
1025    }
1026
1027    pub(crate) fn analytics_jobs_from_native_state(
1028        &self,
1029        native_state: &NativePhysicalState,
1030    ) -> Vec<PhysicalAnalyticsJob> {
1031        native_state
1032            .registry
1033            .as_ref()
1034            .map(|registry| {
1035                registry
1036                    .analytics_jobs
1037                    .iter()
1038                    .map(|job| PhysicalAnalyticsJob {
1039                        id: job.id.clone(),
1040                        kind: job.kind.clone(),
1041                        state: job.state.clone(),
1042                        projection: job.projection.clone(),
1043                        created_at_unix_ms: job.created_at_unix_ms,
1044                        updated_at_unix_ms: job.updated_at_unix_ms,
1045                        last_run_sequence: job.last_run_sequence,
1046                        metadata: job.metadata.clone(),
1047                    })
1048                    .collect()
1049            })
1050            .unwrap_or_default()
1051    }
1052
1053    pub(crate) fn exports_from_native_state(
1054        &self,
1055        native_state: &NativePhysicalState,
1056    ) -> Vec<ExportDescriptor> {
1057        native_state
1058            .recovery
1059            .as_ref()
1060            .map(|recovery| {
1061                recovery
1062                    .exports
1063                    .iter()
1064                    .map(|export| ExportDescriptor {
1065                        name: export.name.clone(),
1066                        created_at_unix_ms: export.created_at_unix_ms,
1067                        snapshot_id: export.snapshot_id,
1068                        superblock_sequence: export.superblock_sequence,
1069                        data_path: self
1070                            .path()
1071                            .map(|path| {
1072                                crate::physical::PhysicalMetadataFile::export_data_path_for(
1073                                    path,
1074                                    &export.name,
1075                                )
1076                                .display()
1077                                .to_string()
1078                            })
1079                            .unwrap_or_default(),
1080                        metadata_path: self
1081                            .path()
1082                            .map(|path| {
1083                                let export_data_path =
1084                                    crate::physical::PhysicalMetadataFile::export_data_path_for(
1085                                        path,
1086                                        &export.name,
1087                                    );
1088                                crate::physical::PhysicalMetadataFile::metadata_path_for(
1089                                    &export_data_path,
1090                                )
1091                                .display()
1092                                .to_string()
1093                            })
1094                            .unwrap_or_default(),
1095                        collection_count: export.collection_count as usize,
1096                        total_entities: export.total_entities as usize,
1097                    })
1098                    .collect()
1099            })
1100            .unwrap_or_default()
1101    }
1102
1103    pub(crate) fn snapshots_from_native_state(
1104        &self,
1105        native_state: &NativePhysicalState,
1106    ) -> Vec<crate::physical::SnapshotDescriptor> {
1107        let snapshots: Vec<_> = native_state
1108            .recovery
1109            .as_ref()
1110            .map(|recovery| {
1111                recovery
1112                    .snapshots
1113                    .iter()
1114                    .map(|snapshot| crate::physical::SnapshotDescriptor {
1115                        snapshot_id: snapshot.snapshot_id,
1116                        created_at_unix_ms: snapshot.created_at_unix_ms,
1117                        superblock_sequence: snapshot.superblock_sequence,
1118                        collection_count: snapshot.collection_count as usize,
1119                        total_entities: snapshot.total_entities as usize,
1120                    })
1121                    .collect()
1122            })
1123            .unwrap_or_default();
1124        if !snapshots.is_empty() {
1125            return snapshots;
1126        }
1127
1128        let now = SystemTime::now()
1129            .duration_since(UNIX_EPOCH)
1130            .unwrap_or_default()
1131            .as_millis();
1132        let (collection_count, total_entities) = native_state
1133            .catalog
1134            .as_ref()
1135            .map(|catalog| {
1136                (
1137                    catalog.collection_count as usize,
1138                    catalog.total_entities as usize,
1139                )
1140            })
1141            .unwrap_or_else(|| {
1142                let catalog = self.catalog_snapshot();
1143                (catalog.total_collections, catalog.total_entities)
1144            });
1145
1146        vec![crate::physical::SnapshotDescriptor {
1147            snapshot_id: native_state.header.sequence,
1148            created_at_unix_ms: now,
1149            superblock_sequence: native_state.header.sequence,
1150            collection_count,
1151            total_entities,
1152        }]
1153    }
1154
1155    fn index_kind_from_str(value: &str) -> Option<crate::index::IndexKind> {
1156        match value {
1157            "btree" => Some(crate::index::IndexKind::BTree),
1158            "vector.hnsw" => Some(crate::index::IndexKind::VectorHnsw),
1159            "vector.inverted" => Some(crate::index::IndexKind::VectorInverted),
1160            "vector.turbo" => Some(crate::index::IndexKind::VectorTurbo),
1161            "graph.adjacency" => Some(crate::index::IndexKind::GraphAdjacency),
1162            "text.fulltext" => Some(crate::index::IndexKind::FullText),
1163            "document.pathvalue" => Some(crate::index::IndexKind::DocumentPathValue),
1164            "search.hybrid" => Some(crate::index::IndexKind::HybridSearch),
1165            _ => None,
1166        }
1167    }
1168
1169    pub(crate) fn native_artifact_kind_for_index(kind: IndexKind) -> Option<&'static str> {
1170        match kind {
1171            IndexKind::VectorHnsw => Some("hnsw"),
1172            IndexKind::VectorInverted => Some("ivf"),
1173            IndexKind::VectorTurbo => Some("turboquant"),
1174            IndexKind::GraphAdjacency => Some("graph.adjacency"),
1175            IndexKind::FullText => Some("text.fulltext"),
1176            IndexKind::DocumentPathValue => Some("document.pathvalue"),
1177            _ => None,
1178        }
1179    }
1180
1181    fn index_is_declared(&self, name: &str) -> bool {
1182        self.physical_metadata()
1183            .map(|metadata| metadata.indexes.iter().any(|index| index.name == name))
1184            .unwrap_or(false)
1185    }
1186
1187    pub(crate) fn graph_projection_is_declared(&self, name: &str) -> bool {
1188        self.physical_metadata()
1189            .map(|metadata| {
1190                metadata
1191                    .graph_projections
1192                    .iter()
1193                    .any(|projection| projection.name == name)
1194            })
1195            .unwrap_or(false)
1196    }
1197
1198    pub(crate) fn graph_projection_is_operational(&self, name: &str) -> bool {
1199        self.operational_graph_projections()
1200            .into_iter()
1201            .any(|projection| projection.name == name && projection.state == "materialized")
1202    }
1203
1204    pub(crate) fn analytics_job_id(kind: &str, projection: Option<&str>) -> String {
1205        match projection {
1206            Some(projection) => format!("{kind}::{projection}"),
1207            None => format!("{kind}::global"),
1208        }
1209    }
1210
1211    pub(crate) fn update_physical_metadata<T, F>(
1212        &self,
1213        mutator: F,
1214    ) -> Result<T, Box<dyn std::error::Error>>
1215    where
1216        F: FnOnce(&mut PhysicalMetadataFile) -> T,
1217    {
1218        if self.options.mode != StorageMode::Persistent {
1219            return Err("physical metadata operations require persistent mode".into());
1220        }
1221        if self.options.read_only {
1222            return Err("physical metadata operations are not allowed in read-only mode".into());
1223        }
1224        let Some(path) = self.path() else {
1225            return Err("database path is not available".into());
1226        };
1227
1228        let mut metadata = self.load_or_bootstrap_physical_metadata(true)?;
1229
1230        if metadata.indexes.is_empty() {
1231            metadata.indexes = self.physical_index_state();
1232        }
1233        metadata.superblock.collection_roots = self.physical_collection_roots();
1234
1235        let result = mutator(&mut metadata);
1236        metadata.save_for_data_path(path)?;
1237        self.persist_native_physical_header(&metadata)?;
1238        Ok(result)
1239    }
1240
1241    pub(crate) fn persist_native_physical_header(
1242        &self,
1243        metadata: &PhysicalMetadataFile,
1244    ) -> Result<(), Box<dyn std::error::Error>> {
1245        if !self.paged_mode {
1246            return Ok(());
1247        }
1248
1249        let existing_page = self
1250            .store
1251            .physical_file_header()
1252            .map(|header| header.collection_roots_page)
1253            .filter(|page| *page != 0);
1254        let existing_registry_page = self
1255            .store
1256            .physical_file_header()
1257            .map(|header| header.registry_page)
1258            .filter(|page| *page != 0);
1259        let existing_recovery_page = self
1260            .store
1261            .physical_file_header()
1262            .map(|header| header.recovery_page)
1263            .filter(|page| *page != 0);
1264        let existing_catalog_page = self
1265            .store
1266            .physical_file_header()
1267            .map(|header| header.catalog_page)
1268            .filter(|page| *page != 0);
1269        let existing_metadata_state_page = self
1270            .store
1271            .physical_file_header()
1272            .map(|header| header.metadata_state_page)
1273            .filter(|page| *page != 0);
1274        let existing_vector_artifact_page = self
1275            .store
1276            .physical_file_header()
1277            .map(|header| header.vector_artifact_page)
1278            .filter(|page| *page != 0);
1279        let existing_manifest_page = self
1280            .store
1281            .physical_file_header()
1282            .map(|header| header.manifest_page)
1283            .filter(|page| *page != 0);
1284        let (manifest_page, manifest_checksum) = self.store.write_native_manifest_summary(
1285            metadata.superblock.sequence,
1286            &metadata.manifest_events,
1287            existing_manifest_page,
1288        )?;
1289        let (collection_roots_page, collection_roots_checksum) = self
1290            .store
1291            .write_native_collection_roots(&metadata.superblock.collection_roots, existing_page)?;
1292        let registry_summary = self.native_registry_summary_from_metadata(metadata);
1293        let (registry_page, registry_checksum) = self
1294            .store
1295            .write_native_registry_summary(&registry_summary, existing_registry_page)?;
1296        let recovery_summary = Self::native_recovery_summary_from_metadata(metadata);
1297        let (recovery_page, recovery_checksum) = self
1298            .store
1299            .write_native_recovery_summary(&recovery_summary, existing_recovery_page)?;
1300        let catalog_summary = Self::native_catalog_summary_from_metadata(metadata);
1301        let (catalog_page, catalog_checksum) = self
1302            .store
1303            .write_native_catalog_summary(&catalog_summary, existing_catalog_page)?;
1304        let metadata_state_summary = Self::native_metadata_state_summary_from_metadata(metadata);
1305        let (metadata_state_page, metadata_state_checksum) =
1306            self.store.write_native_metadata_state_summary(
1307                &metadata_state_summary,
1308                existing_metadata_state_page,
1309            )?;
1310        let vector_artifact_records = self.native_vector_artifact_records();
1311        let vector_artifact_payloads = vector_artifact_records
1312            .iter()
1313            .map(|(summary, bytes)| {
1314                (
1315                    summary.collection.clone(),
1316                    summary.artifact_kind.clone(),
1317                    bytes.clone(),
1318                )
1319            })
1320            .collect::<Vec<_>>();
1321        let (vector_artifact_page, vector_artifact_checksum, _vector_artifact_pages) =
1322            self.store.write_native_vector_artifact_store(
1323                &vector_artifact_payloads,
1324                existing_vector_artifact_page,
1325            )?;
1326        let mut header = Self::native_header_from_metadata(metadata);
1327        header.manifest_page = manifest_page;
1328        header.manifest_checksum = manifest_checksum;
1329        header.collection_roots_page = collection_roots_page;
1330        header.collection_roots_checksum = collection_roots_checksum;
1331        header.registry_page = registry_page;
1332        header.registry_checksum = registry_checksum;
1333        header.recovery_page = recovery_page;
1334        header.recovery_checksum = recovery_checksum;
1335        header.catalog_page = catalog_page;
1336        header.catalog_checksum = catalog_checksum;
1337        header.metadata_state_page = metadata_state_page;
1338        header.metadata_state_checksum = metadata_state_checksum;
1339        header.vector_artifact_page = vector_artifact_page;
1340        header.vector_artifact_checksum = vector_artifact_checksum;
1341        self.store.update_physical_file_header(header)?;
1342        self.store.persist()?;
1343        Ok(())
1344    }
1345
1346    pub(crate) fn native_header_from_metadata(
1347        metadata: &PhysicalMetadataFile,
1348    ) -> PhysicalFileHeader {
1349        PhysicalFileHeader {
1350            format_version: metadata.superblock.format_version,
1351            sequence: metadata.superblock.sequence,
1352            manifest_oldest_root: metadata.superblock.manifest.oldest.index,
1353            manifest_root: metadata.superblock.manifest.newest.index,
1354            free_set_root: metadata.superblock.free_set.index,
1355            manifest_page: 0,
1356            manifest_checksum: 0,
1357            collection_roots_page: 0,
1358            collection_roots_checksum: 0,
1359            collection_root_count: metadata.superblock.collection_roots.len() as u32,
1360            snapshot_count: metadata.snapshots.len() as u32,
1361            index_count: metadata.indexes.len() as u32,
1362            catalog_collection_count: metadata.catalog.total_collections as u32,
1363            catalog_total_entities: metadata.catalog.total_entities as u64,
1364            export_count: metadata.exports.len() as u32,
1365            graph_projection_count: metadata.graph_projections.len() as u32,
1366            analytics_job_count: metadata.analytics_jobs.len() as u32,
1367            manifest_event_count: metadata.manifest_events.len() as u32,
1368            registry_page: 0,
1369            registry_checksum: 0,
1370            recovery_page: 0,
1371            recovery_checksum: 0,
1372            catalog_page: 0,
1373            catalog_checksum: 0,
1374            metadata_state_page: 0,
1375            metadata_state_checksum: 0,
1376            vector_artifact_page: 0,
1377            vector_artifact_checksum: 0,
1378        }
1379    }
1380
1381    fn recover_queue_pending_state(&self) {
1382        const QUEUE_META_COLLECTION: &str = "red_queue_meta";
1383
1384        let Some(manager) = self.store.get_collection(QUEUE_META_COLLECTION) else {
1385            return;
1386        };
1387
1388        let pending_rows = manager.query_all(|entity| {
1389            entity.data.as_row().is_some_and(|row| {
1390                matches!(
1391                    row.get_field("kind"),
1392                    Some(crate::storage::schema::Value::Text(kind))
1393                        if matches!(&**kind, "queue_pending" | "queue_pending_lc")
1394                )
1395            })
1396        });
1397
1398        for row in pending_rows {
1399            let _ = self.store.delete(QUEUE_META_COLLECTION, row.id);
1400        }
1401    }
1402}
1403
1404fn current_unix_ms() -> u64 {
1405    SystemTime::now()
1406        .duration_since(UNIX_EPOCH)
1407        .unwrap_or_default()
1408        .as_millis()
1409        .min(u128::from(u64::MAX)) as u64
1410}