1use super::*;
2
3impl RedDB {
4 pub fn tree_definitions(&self) -> Vec<crate::physical::PhysicalTreeDefinition> {
5 self.physical_metadata()
6 .map(|metadata| metadata.tree_definitions)
7 .unwrap_or_default()
8 }
9
10 pub fn tree_definition(
11 &self,
12 collection: &str,
13 name: &str,
14 ) -> Option<crate::physical::PhysicalTreeDefinition> {
15 self.tree_definitions()
16 .into_iter()
17 .find(|definition| definition.collection == collection && definition.name == name)
18 }
19
20 pub fn save_tree_definition(
21 &self,
22 definition: crate::physical::PhysicalTreeDefinition,
23 ) -> Result<crate::physical::PhysicalTreeDefinition, Box<dyn std::error::Error>> {
24 self.update_physical_metadata(|metadata| {
25 if let Some(existing) = metadata.tree_definitions.iter_mut().find(|existing| {
26 existing.collection == definition.collection && existing.name == definition.name
27 }) {
28 *existing = definition.clone();
29 } else {
30 metadata.tree_definitions.push(definition.clone());
31 }
32 metadata.tree_definitions.sort_by(|left, right| {
33 left.collection
34 .cmp(&right.collection)
35 .then_with(|| left.name.cmp(&right.name))
36 });
37 definition.clone()
38 })
39 }
40
41 pub fn remove_tree_definition(
42 &self,
43 collection: &str,
44 name: &str,
45 ) -> Result<Option<crate::physical::PhysicalTreeDefinition>, Box<dyn std::error::Error>> {
46 self.update_physical_metadata(|metadata| {
47 metadata
48 .tree_definitions
49 .iter()
50 .position(|definition| {
51 definition.collection == collection && definition.name == name
52 })
53 .map(|index| metadata.tree_definitions.remove(index))
54 })
55 }
56
57 pub fn collection_default_ttl_ms(&self, collection: &str) -> Option<u64> {
58 self.collection_ttl_defaults_ms
59 .read()
60 .ok()
61 .and_then(|defaults| defaults.get(collection).copied())
62 }
63
64 pub fn set_collection_default_ttl_ms(&self, collection: impl Into<String>, ttl_ms: u64) {
65 if let Ok(mut defaults) = self.collection_ttl_defaults_ms.write() {
66 defaults.insert(collection.into(), ttl_ms);
67 }
68 }
69
70 pub fn clear_collection_default_ttl_ms(&self, collection: &str) {
71 if let Ok(mut defaults) = self.collection_ttl_defaults_ms.write() {
72 defaults.remove(collection);
73 }
74 }
75
76 pub fn collection_contracts(&self) -> Vec<crate::physical::CollectionContract> {
77 self.contract_cache_map()
78 .values()
79 .map(|arc| (**arc).clone())
80 .collect()
81 }
82
83 pub fn collection_contract(
84 &self,
85 collection: &str,
86 ) -> Option<crate::physical::CollectionContract> {
87 self.contract_cache_map()
88 .get(collection)
89 .map(|arc| (**arc).clone())
90 }
91
92 pub fn collection_contract_arc(
97 &self,
98 collection: &str,
99 ) -> Option<std::sync::Arc<crate::physical::CollectionContract>> {
100 self.contract_cache_map()
101 .get(collection)
102 .map(std::sync::Arc::clone)
103 }
104
105 fn contract_cache_map(
110 &self,
111 ) -> std::sync::Arc<
112 std::collections::HashMap<String, std::sync::Arc<crate::physical::CollectionContract>>,
113 > {
114 if let Ok(guard) = self.collection_contract_cache.read() {
115 if let Some(map) = guard.as_ref() {
116 return std::sync::Arc::clone(map);
117 }
118 }
119 let contracts: Vec<crate::physical::CollectionContract> = self
120 .physical_metadata()
121 .map(|metadata| metadata.collection_contracts)
122 .unwrap_or_default();
123 let map: std::collections::HashMap<_, _> = contracts
124 .into_iter()
125 .map(|contract| (contract.name.clone(), std::sync::Arc::new(contract)))
126 .collect();
127 let arc = std::sync::Arc::new(map);
128 if let Ok(mut guard) = self.collection_contract_cache.write() {
129 *guard = Some(std::sync::Arc::clone(&arc));
130 }
131 arc
132 }
133
134 pub(crate) fn invalidate_collection_contract_cache(&self) {
135 if let Ok(mut guard) = self.collection_contract_cache.write() {
136 *guard = None;
137 }
138 }
139
140 pub fn save_collection_contract(
141 &self,
142 contract: crate::physical::CollectionContract,
143 ) -> Result<crate::physical::CollectionContract, Box<dyn std::error::Error>> {
144 if let Ok(mut defaults) = self.collection_ttl_defaults_ms.write() {
145 if let Some(ttl_ms) = contract.default_ttl_ms {
146 defaults.insert(contract.name.clone(), ttl_ms);
147 } else {
148 defaults.remove(&contract.name);
149 }
150 }
151
152 self.store()
153 .context_index()
154 .set_collection_enabled(&contract.name, contract.context_index_enabled);
155 if let Some(manager) = self.store().get_collection(&contract.name) {
156 let columns = contract
157 .declared_columns
158 .iter()
159 .map(|column| column.name.clone())
160 .collect();
161 manager.set_column_schema_if_empty(columns);
162 }
163
164 if self.options.storage_profile.deploy_profile == crate::storage::DeployProfile::Embedded
165 && self.options.storage_profile.packaging
166 == crate::storage::StoragePackaging::SingleFile
167 {
168 if let Ok(mut guard) = self.collection_contract_cache.write() {
169 let mut contracts = guard
170 .as_ref()
171 .map(|existing| existing.as_ref().clone())
172 .unwrap_or_default();
173 contracts.insert(contract.name.clone(), std::sync::Arc::new(contract.clone()));
174 *guard = Some(std::sync::Arc::new(contracts));
175 }
176 return Ok(contract);
177 }
178
179 self.invalidate_collection_contract_cache();
180
181 let saved = self.update_physical_metadata(|metadata| {
182 if let Some(existing) = metadata
183 .collection_contracts
184 .iter_mut()
185 .find(|existing| existing.name == contract.name)
186 {
187 *existing = contract.clone();
188 } else {
189 metadata.collection_contracts.push(contract.clone());
190 }
191 metadata
192 .collection_contracts
193 .sort_by(|left, right| left.name.cmp(&right.name));
194
195 if let Some(ttl_ms) = contract.default_ttl_ms {
196 metadata
197 .collection_ttl_defaults_ms
198 .insert(contract.name.clone(), ttl_ms);
199 } else {
200 metadata.collection_ttl_defaults_ms.remove(&contract.name);
201 }
202
203 contract.clone()
204 })?;
205 self.invalidate_collection_contract_cache();
206 Ok(saved)
207 }
208
209 pub fn remove_collection_contract(
210 &self,
211 collection: &str,
212 ) -> Result<Option<crate::physical::CollectionContract>, Box<dyn std::error::Error>> {
213 if let Ok(mut defaults) = self.collection_ttl_defaults_ms.write() {
214 defaults.remove(collection);
215 }
216
217 self.store()
218 .context_index()
219 .set_collection_enabled(collection, false);
220
221 if self.options.storage_profile.deploy_profile == crate::storage::DeployProfile::Embedded
222 && self.options.storage_profile.packaging
223 == crate::storage::StoragePackaging::SingleFile
224 {
225 let mut removed = None;
226 if let Ok(mut guard) = self.collection_contract_cache.write() {
227 let mut contracts = guard
228 .as_ref()
229 .map(|existing| existing.as_ref().clone())
230 .unwrap_or_default();
231 removed = contracts
232 .remove(collection)
233 .map(|contract| (*contract).clone());
234 *guard = Some(std::sync::Arc::new(contracts));
235 }
236 return Ok(removed);
237 }
238
239 self.invalidate_collection_contract_cache();
240
241 let removed = self.update_physical_metadata(|metadata| {
242 let removed = metadata
243 .collection_contracts
244 .iter()
245 .position(|contract| contract.name == collection)
246 .map(|index| metadata.collection_contracts.remove(index));
247 metadata.collection_ttl_defaults_ms.remove(collection);
248 metadata
249 .indexes
250 .retain(|index| index.collection.as_deref() != Some(collection));
251 removed
252 })?;
253 self.invalidate_collection_contract_cache();
254 Ok(removed)
255 }
256
257 pub(crate) fn collection_ttl_defaults_snapshot(&self) -> BTreeMap<String, u64> {
258 self.collection_ttl_defaults_ms
259 .read()
260 .map(|defaults| {
261 defaults
262 .iter()
263 .map(|(collection, ttl_ms)| (collection.clone(), *ttl_ms))
264 .collect()
265 })
266 .unwrap_or_default()
267 }
268
269 pub(crate) fn load_collection_ttl_defaults_from_metadata(&self) {
270 let metadata = self.physical_metadata();
271 let defaults = metadata
272 .as_ref()
273 .map(|m| m.collection_ttl_defaults_ms.clone())
274 .unwrap_or_default();
275
276 if let Ok(mut current) = self.collection_ttl_defaults_ms.write() {
277 current.clear();
278 current.extend(defaults);
279 }
280
281 if let Some(metadata) = metadata {
282 let store = self.store();
283 let index = store.context_index();
284 for contract in &metadata.collection_contracts {
285 index.set_collection_enabled(&contract.name, contract.context_index_enabled);
286 }
287 }
288 }
289
290 pub(crate) fn hypertable_registry_snapshot(&self) -> Vec<crate::physical::PhysicalHypertable> {
298 let registry = self.hypertables();
299 if registry.is_empty() {
300 return Vec::new();
301 }
302 use std::collections::BTreeMap;
303 let mut chunks_by_table: BTreeMap<String, Vec<crate::physical::PhysicalHypertableChunk>> =
304 BTreeMap::new();
305 for chunk in registry.snapshot_chunks() {
306 chunks_by_table
307 .entry(chunk.id.hypertable.clone())
308 .or_default()
309 .push(crate::physical::PhysicalHypertableChunk {
310 start_ns: chunk.id.start_ns,
311 end_ns_exclusive: chunk.end_ns_exclusive,
312 row_count: chunk.row_count,
313 min_ts_ns: chunk.min_ts_ns,
314 max_ts_ns: chunk.max_ts_ns,
315 sealed: chunk.sealed,
316 ttl_override_ns: chunk.ttl_override_ns,
317 columnar_page: chunk.columnar_page,
318 });
319 }
320 registry
321 .list()
322 .into_iter()
323 .map(|spec| crate::physical::PhysicalHypertable {
324 chunks: chunks_by_table.remove(&spec.name).unwrap_or_default(),
325 name: spec.name,
326 time_column: spec.time_column,
327 chunk_interval_ns: spec.chunk_interval_ns,
328 default_ttl_ns: spec.default_ttl_ns,
329 })
330 .collect()
331 }
332
333 pub(crate) fn load_hypertables_from_metadata(&self) {
339 let Some(metadata) = self.physical_metadata() else {
340 return;
341 };
342 if metadata.hypertables.is_empty() {
343 return;
344 }
345 let registry = self.hypertables();
346 for hypertable in &metadata.hypertables {
347 let mut spec = crate::storage::timeseries::HypertableSpec::new(
348 hypertable.name.clone(),
349 hypertable.time_column.clone(),
350 hypertable.chunk_interval_ns,
351 );
352 if let Some(ttl) = hypertable.default_ttl_ns {
353 spec = spec.with_ttl_ns(ttl);
354 }
355 registry.register(spec);
356 for chunk in &hypertable.chunks {
357 registry.restore_chunk(crate::storage::timeseries::ChunkMeta {
358 id: crate::storage::timeseries::ChunkId {
359 hypertable: hypertable.name.clone(),
360 start_ns: chunk.start_ns,
361 },
362 end_ns_exclusive: chunk.end_ns_exclusive,
363 row_count: chunk.row_count,
364 min_ts_ns: chunk.min_ts_ns,
365 max_ts_ns: chunk.max_ts_ns,
366 sealed: chunk.sealed,
367 ttl_override_ns: chunk.ttl_override_ns,
368 columnar_page: chunk.columnar_page,
369 });
370 }
371 }
372 }
373
374 pub fn run_maintenance(&self) -> Result<(), Box<dyn std::error::Error>> {
375 self.store.run_maintenance()?;
376 self.persist_metadata()?;
377 Ok(())
378 }
379
380 pub fn metadata_path(&self) -> Option<PathBuf> {
382 self.path
383 .as_ref()
384 .map(|path| PhysicalMetadataFile::metadata_path_for(path))
385 }
386
387 pub fn physical_metadata(&self) -> Option<PhysicalMetadataFile> {
389 self.load_or_bootstrap_physical_metadata(!self.options.read_only)
390 .ok()
391 }
392
393 pub fn physical_indexes(&self) -> Vec<PhysicalIndexState> {
395 let indexes = self
396 .physical_metadata()
397 .map(|metadata| metadata.indexes)
398 .filter(|indexes| !indexes.is_empty())
399 .or_else(|| {
400 self.native_physical_state()
401 .map(|state| self.physical_index_state_from_native_state(&state, None))
402 })
403 .unwrap_or_else(|| self.physical_index_state());
404 self.reconcile_index_states_with_native_artifacts(indexes)
405 }
406
407 pub fn exports(&self) -> Vec<ExportDescriptor> {
409 self.physical_metadata()
410 .map(|metadata| metadata.exports)
411 .or_else(|| {
412 self.native_physical_state()
413 .map(|state| self.exports_from_native_state(&state))
414 })
415 .unwrap_or_default()
416 }
417
418 pub fn snapshots(&self) -> Vec<crate::physical::SnapshotDescriptor> {
420 self.physical_metadata()
421 .map(|metadata| metadata.snapshots)
422 .or_else(|| {
423 self.native_physical_state()
424 .map(|state| self.snapshots_from_native_state(&state))
425 })
426 .unwrap_or_default()
427 }
428
429 pub fn graph_projections(&self) -> Vec<PhysicalGraphProjection> {
431 self.physical_metadata()
432 .map(|metadata| metadata.graph_projections)
433 .or_else(|| {
434 self.native_physical_state()
435 .map(|state| self.graph_projections_from_native_state(&state))
436 })
437 .unwrap_or_default()
438 }
439
440 pub fn declared_graph_projections(&self) -> Vec<PhysicalGraphProjection> {
442 self.catalog_model_snapshot().declared_graph_projections
443 }
444
445 pub fn operational_graph_projections(&self) -> Vec<PhysicalGraphProjection> {
447 self.graph_projections()
448 .into_iter()
449 .filter(|projection| {
450 projection.last_materialized_sequence.is_some()
451 || matches!(projection.state.as_str(), "materialized" | "stale")
452 })
453 .collect()
454 }
455
456 pub fn analytics_jobs(&self) -> Vec<PhysicalAnalyticsJob> {
458 self.physical_metadata()
459 .map(|metadata| metadata.analytics_jobs)
460 .or_else(|| {
461 self.native_physical_state()
462 .map(|state| self.analytics_jobs_from_native_state(&state))
463 })
464 .unwrap_or_default()
465 }
466
467 pub fn declared_analytics_jobs(&self) -> Vec<PhysicalAnalyticsJob> {
469 self.catalog_model_snapshot().declared_analytics_jobs
470 }
471
472 pub fn operational_analytics_jobs(&self) -> Vec<PhysicalAnalyticsJob> {
474 self.analytics_jobs()
475 .into_iter()
476 .filter(|job| {
477 job.last_run_sequence.is_some()
478 || matches!(
479 job.state.as_str(),
480 "running" | "completed" | "failed" | "queued" | "stale"
481 )
482 })
483 .collect()
484 }
485
486 pub fn declared_indexes(&self) -> Vec<PhysicalIndexState> {
488 self.catalog_model_snapshot().declared_indexes
489 }
490
491 pub fn operational_indexes(&self) -> Vec<PhysicalIndexState> {
493 self.catalog_model_snapshot().operational_indexes
494 }
495
496 pub fn index_statuses(&self) -> Vec<CatalogIndexStatus> {
498 self.catalog_model_snapshot().index_statuses
499 }
500
501 pub fn index_status(&self, name: &str) -> Option<CatalogIndexStatus> {
503 self.catalog_model_snapshot()
504 .index_statuses
505 .into_iter()
506 .find(|status| status.name == name)
507 }
508
509 pub fn save_graph_projection(
511 &self,
512 name: impl Into<String>,
513 node_labels: Vec<String>,
514 node_types: Vec<String>,
515 edge_labels: Vec<String>,
516 source: impl Into<String>,
517 ) -> Result<PhysicalGraphProjection, Box<dyn std::error::Error>> {
518 let name = name.into();
519 let source = source.into();
520 self.update_physical_metadata(|metadata| {
521 let now = SystemTime::now()
522 .duration_since(UNIX_EPOCH)
523 .unwrap_or_default()
524 .as_millis();
525 let projection = if let Some(existing) = metadata
526 .graph_projections
527 .iter_mut()
528 .find(|projection| projection.name == name)
529 {
530 existing.updated_at_unix_ms = now;
531 existing.state = "declared".to_string();
532 existing.source = source.clone();
533 existing.node_labels = node_labels.clone();
534 existing.node_types = node_types.clone();
535 existing.edge_labels = edge_labels.clone();
536 existing.last_materialized_sequence = None;
537 existing.clone()
538 } else {
539 let projection = PhysicalGraphProjection {
540 name: name.clone(),
541 created_at_unix_ms: now,
542 updated_at_unix_ms: now,
543 state: "declared".to_string(),
544 source: source.clone(),
545 node_labels: node_labels.clone(),
546 node_types: node_types.clone(),
547 edge_labels: edge_labels.clone(),
548 last_materialized_sequence: None,
549 };
550 metadata.graph_projections.push(projection.clone());
551 projection
552 };
553
554 Self::mark_projection_dependent_jobs_stale(metadata, &name, now);
555
556 metadata
557 .graph_projections
558 .sort_by(|left, right| left.name.cmp(&right.name));
559 projection
560 })
561 }
562
563 pub fn materialize_graph_projection(
565 &self,
566 name: &str,
567 ) -> Result<Option<PhysicalGraphProjection>, Box<dyn std::error::Error>> {
568 self.update_physical_metadata(|metadata| {
569 let now = SystemTime::now()
570 .duration_since(UNIX_EPOCH)
571 .unwrap_or_default()
572 .as_millis();
573 let idx = metadata
574 .graph_projections
575 .iter()
576 .position(|projection| projection.name == name);
577 if let Some(idx) = idx {
578 metadata.graph_projections[idx].updated_at_unix_ms = now;
579 metadata.graph_projections[idx].state = "materialized".to_string();
580 metadata.graph_projections[idx].last_materialized_sequence =
581 Some(metadata.superblock.sequence);
582 let result = metadata.graph_projections[idx].clone();
583 Self::rearm_projection_dependent_jobs_declared(metadata, name, now);
584 return Some(result);
585 }
586 None
587 })
588 }
589
590 pub fn mark_graph_projection_materializing(
592 &self,
593 name: &str,
594 ) -> Result<Option<PhysicalGraphProjection>, Box<dyn std::error::Error>> {
595 self.update_physical_metadata(|metadata| {
596 let now = SystemTime::now()
597 .duration_since(UNIX_EPOCH)
598 .unwrap_or_default()
599 .as_millis();
600 let idx = metadata
601 .graph_projections
602 .iter()
603 .position(|projection| projection.name == name);
604 if let Some(idx) = idx {
605 metadata.graph_projections[idx].updated_at_unix_ms = now;
606 metadata.graph_projections[idx].state = "materializing".to_string();
607 metadata.graph_projections[idx].last_materialized_sequence = None;
608 let result = metadata.graph_projections[idx].clone();
609 Self::mark_projection_dependent_jobs_stale(metadata, name, now);
610 return Some(result);
611 }
612 None
613 })
614 }
615
616 pub fn fail_graph_projection(
618 &self,
619 name: &str,
620 ) -> Result<Option<PhysicalGraphProjection>, Box<dyn std::error::Error>> {
621 self.update_physical_metadata(|metadata| {
622 let now = SystemTime::now()
623 .duration_since(UNIX_EPOCH)
624 .unwrap_or_default()
625 .as_millis();
626 let idx = metadata
627 .graph_projections
628 .iter()
629 .position(|projection| projection.name == name);
630 if let Some(idx) = idx {
631 metadata.graph_projections[idx].updated_at_unix_ms = now;
632 metadata.graph_projections[idx].state = "failed".to_string();
633 metadata.graph_projections[idx].last_materialized_sequence = None;
634 let result = metadata.graph_projections[idx].clone();
635 Self::mark_projection_dependent_jobs_stale(metadata, name, now);
636 return Some(result);
637 }
638 None
639 })
640 }
641
642 pub fn mark_graph_projection_stale(
644 &self,
645 name: &str,
646 ) -> Result<Option<PhysicalGraphProjection>, Box<dyn std::error::Error>> {
647 self.update_physical_metadata(|metadata| {
648 let now = SystemTime::now()
649 .duration_since(UNIX_EPOCH)
650 .unwrap_or_default()
651 .as_millis();
652 let idx = metadata
653 .graph_projections
654 .iter()
655 .position(|projection| projection.name == name);
656 if let Some(idx) = idx {
657 metadata.graph_projections[idx].updated_at_unix_ms = now;
658 metadata.graph_projections[idx].state = "stale".to_string();
659 let result = metadata.graph_projections[idx].clone();
660 Self::mark_projection_dependent_jobs_stale(metadata, name, now);
661 return Some(result);
662 }
663 None
664 })
665 }
666
667 fn mark_projection_dependent_jobs_stale(
668 metadata: &mut PhysicalMetadataFile,
669 projection_name: &str,
670 now: u128,
671 ) {
672 for job in metadata.analytics_jobs.iter_mut() {
673 if job.projection.as_deref() == Some(projection_name) && job.state != "declared" {
674 job.state = "stale".to_string();
675 job.updated_at_unix_ms = now;
676 }
677 }
678 }
679
680 fn rearm_projection_dependent_jobs_declared(
681 metadata: &mut PhysicalMetadataFile,
682 projection_name: &str,
683 now: u128,
684 ) {
685 for job in metadata.analytics_jobs.iter_mut() {
686 if job.projection.as_deref() == Some(projection_name) && job.state == "stale" {
687 job.state = "declared".to_string();
688 job.last_run_sequence = None;
689 job.updated_at_unix_ms = now;
690 }
691 }
692 }
693
694 pub fn save_analytics_job(
696 &self,
697 kind: impl Into<String>,
698 projection: Option<String>,
699 metadata_entries: BTreeMap<String, String>,
700 ) -> Result<PhysicalAnalyticsJob, Box<dyn std::error::Error>> {
701 let kind = kind.into();
702 let job_id = Self::analytics_job_id(&kind, projection.as_deref());
703 if let Some(projection_name) = projection.as_deref() {
704 if !self.graph_projection_is_declared(projection_name) {
705 return Err(format!(
706 "graph projection '{projection_name}' is not declared in physical metadata"
707 )
708 .into());
709 }
710 }
711
712 self.update_physical_metadata(|metadata| {
713 let now = SystemTime::now()
714 .duration_since(UNIX_EPOCH)
715 .unwrap_or_default()
716 .as_millis();
717
718 let job = if let Some(existing) = metadata
719 .analytics_jobs
720 .iter_mut()
721 .find(|job| job.id == job_id)
722 {
723 existing.kind = kind.clone();
724 existing.projection = projection.clone();
725 existing.updated_at_unix_ms = now;
726 existing.metadata = metadata_entries.clone();
727 if existing.last_run_sequence.is_none() {
728 existing.state = "declared".to_string();
729 }
730 existing.clone()
731 } else {
732 let job = PhysicalAnalyticsJob {
733 id: job_id.clone(),
734 kind: kind.clone(),
735 state: "declared".to_string(),
736 projection: projection.clone(),
737 created_at_unix_ms: now,
738 updated_at_unix_ms: now,
739 last_run_sequence: None,
740 metadata: metadata_entries.clone(),
741 };
742 metadata.analytics_jobs.push(job.clone());
743 job
744 };
745
746 metadata
747 .analytics_jobs
748 .sort_by(|left, right| left.id.cmp(&right.id));
749 job
750 })
751 }
752
753 pub fn record_analytics_job(
755 &self,
756 kind: impl Into<String>,
757 projection: Option<String>,
758 metadata_entries: BTreeMap<String, String>,
759 ) -> Result<PhysicalAnalyticsJob, Box<dyn std::error::Error>> {
760 let kind = kind.into();
761 let job_id = Self::analytics_job_id(&kind, projection.as_deref());
762 if let Some(projection_name) = projection.as_deref() {
763 if !self.graph_projection_is_declared(projection_name) {
764 return Err(format!(
765 "graph projection '{projection_name}' is not declared in physical metadata"
766 )
767 .into());
768 }
769 if !self.graph_projection_is_operational(projection_name) {
770 return Err(format!(
771 "graph projection '{projection_name}' is declared but not operationally materialized"
772 )
773 .into());
774 }
775 }
776
777 self.update_physical_metadata(|metadata| {
778 let now = SystemTime::now()
779 .duration_since(UNIX_EPOCH)
780 .unwrap_or_default()
781 .as_millis();
782
783 let existing = metadata
784 .analytics_jobs
785 .iter_mut()
786 .find(|job| job.id == job_id)?;
787 existing.state = "completed".to_string();
788 existing.kind = kind.clone();
789 existing.projection = projection.clone();
790 existing.updated_at_unix_ms = now;
791 existing.last_run_sequence = Some(metadata.superblock.sequence);
792 existing.metadata = metadata_entries.clone();
793 let job = existing.clone();
794
795 metadata
796 .analytics_jobs
797 .sort_by(|left, right| left.id.cmp(&right.id));
798 Some(job)
799 })
800 .and_then(|job| {
801 job.ok_or_else(|| {
802 format!("analytics job '{job_id}' is not declared in physical metadata").into()
803 })
804 })
805 }
806
807 pub fn queue_analytics_job(
809 &self,
810 kind: impl Into<String>,
811 projection: Option<String>,
812 metadata_entries: BTreeMap<String, String>,
813 ) -> Result<PhysicalAnalyticsJob, Box<dyn std::error::Error>> {
814 let kind = kind.into();
815 let job_id = Self::analytics_job_id(&kind, projection.as_deref());
816 if let Some(projection_name) = projection.as_deref() {
817 if !self.graph_projection_is_declared(projection_name) {
818 return Err(format!(
819 "graph projection '{projection_name}' is not declared in physical metadata"
820 )
821 .into());
822 }
823 if !self.graph_projection_is_operational(projection_name) {
824 return Err(format!(
825 "graph projection '{projection_name}' is declared but not operationally materialized"
826 )
827 .into());
828 }
829 }
830
831 self.update_physical_metadata(|metadata| {
832 let now = SystemTime::now()
833 .duration_since(UNIX_EPOCH)
834 .unwrap_or_default()
835 .as_millis();
836
837 let existing = metadata
838 .analytics_jobs
839 .iter_mut()
840 .find(|job| job.id == job_id)?;
841 existing.state = "queued".to_string();
842 existing.kind = kind.clone();
843 existing.projection = projection.clone();
844 existing.updated_at_unix_ms = now;
845 existing.metadata = metadata_entries.clone();
846 let job = existing.clone();
847
848 metadata
849 .analytics_jobs
850 .sort_by(|left, right| left.id.cmp(&right.id));
851 Some(job)
852 })
853 .and_then(|job| {
854 job.ok_or_else(|| {
855 format!("analytics job '{job_id}' is not declared in physical metadata").into()
856 })
857 })
858 }
859
860 pub fn start_analytics_job(
862 &self,
863 kind: impl Into<String>,
864 projection: Option<String>,
865 metadata_entries: BTreeMap<String, String>,
866 ) -> Result<PhysicalAnalyticsJob, Box<dyn std::error::Error>> {
867 let kind = kind.into();
868 let job_id = Self::analytics_job_id(&kind, projection.as_deref());
869 if let Some(projection_name) = projection.as_deref() {
870 if !self.graph_projection_is_declared(projection_name) {
871 return Err(format!(
872 "graph projection '{projection_name}' is not declared in physical metadata"
873 )
874 .into());
875 }
876 if !self.graph_projection_is_operational(projection_name) {
877 return Err(format!(
878 "graph projection '{projection_name}' is declared but not operationally materialized"
879 )
880 .into());
881 }
882 }
883
884 self.update_physical_metadata(|metadata| {
885 let now = SystemTime::now()
886 .duration_since(UNIX_EPOCH)
887 .unwrap_or_default()
888 .as_millis();
889
890 let existing = metadata
891 .analytics_jobs
892 .iter_mut()
893 .find(|job| job.id == job_id)?;
894 existing.state = "running".to_string();
895 existing.kind = kind.clone();
896 existing.projection = projection.clone();
897 existing.updated_at_unix_ms = now;
898 existing.metadata = metadata_entries.clone();
899 let job = existing.clone();
900
901 metadata
902 .analytics_jobs
903 .sort_by(|left, right| left.id.cmp(&right.id));
904 Some(job)
905 })
906 .and_then(|job| {
907 job.ok_or_else(|| {
908 format!("analytics job '{job_id}' is not declared in physical metadata").into()
909 })
910 })
911 }
912
913 pub fn fail_analytics_job(
915 &self,
916 kind: impl Into<String>,
917 projection: Option<String>,
918 metadata_entries: BTreeMap<String, String>,
919 ) -> Result<PhysicalAnalyticsJob, Box<dyn std::error::Error>> {
920 let kind = kind.into();
921 let job_id = Self::analytics_job_id(&kind, projection.as_deref());
922
923 self.update_physical_metadata(|metadata| {
924 let now = SystemTime::now()
925 .duration_since(UNIX_EPOCH)
926 .unwrap_or_default()
927 .as_millis();
928
929 let existing = metadata
930 .analytics_jobs
931 .iter_mut()
932 .find(|job| job.id == job_id)?;
933 existing.state = "failed".to_string();
934 existing.kind = kind.clone();
935 existing.projection = projection.clone();
936 existing.updated_at_unix_ms = now;
937 existing.metadata = metadata_entries.clone();
938 let job = existing.clone();
939
940 metadata
941 .analytics_jobs
942 .sort_by(|left, right| left.id.cmp(&right.id));
943 Some(job)
944 })
945 .and_then(|job| {
946 job.ok_or_else(|| {
947 format!("analytics job '{job_id}' is not declared in physical metadata").into()
948 })
949 })
950 }
951
952 pub fn mark_analytics_job_stale(
954 &self,
955 kind: impl Into<String>,
956 projection: Option<String>,
957 metadata_entries: BTreeMap<String, String>,
958 ) -> Result<PhysicalAnalyticsJob, Box<dyn std::error::Error>> {
959 let kind = kind.into();
960 let job_id = Self::analytics_job_id(&kind, projection.as_deref());
961
962 self.update_physical_metadata(|metadata| {
963 let now = SystemTime::now()
964 .duration_since(UNIX_EPOCH)
965 .unwrap_or_default()
966 .as_millis();
967
968 let existing = metadata
969 .analytics_jobs
970 .iter_mut()
971 .find(|job| job.id == job_id)?;
972 existing.state = "stale".to_string();
973 existing.kind = kind.clone();
974 existing.projection = projection.clone();
975 existing.updated_at_unix_ms = now;
976 existing.metadata = metadata_entries.clone();
977 let job = existing.clone();
978
979 metadata
980 .analytics_jobs
981 .sort_by(|left, right| left.id.cmp(&right.id));
982 Some(job)
983 })
984 .and_then(|job| {
985 job.ok_or_else(|| {
986 format!("analytics job '{job_id}' is not declared in physical metadata").into()
987 })
988 })
989 }
990
991 pub fn create_named_export(
993 &self,
994 name: impl Into<String>,
995 ) -> Result<ExportDescriptor, Box<dyn std::error::Error>> {
996 let name = name.into();
997 if self.options.mode != StorageMode::Persistent {
998 return Err("exports require persistent mode".into());
999 }
1000 let Some(path) = self.path() else {
1001 return Err("database path is not available".into());
1002 };
1003
1004 self.flush()?;
1005
1006 let mut metadata = self.load_or_bootstrap_physical_metadata(true)?;
1007 let export_data_path = reddb_file::copy_physical_export_data_file(path, &name)?;
1008 let export_metadata_path = PhysicalMetadataFile::metadata_path_for(&export_data_path);
1009 let export_metadata_binary_path =
1010 PhysicalMetadataFile::metadata_binary_path_for(&export_data_path);
1011
1012 let descriptor = ExportDescriptor {
1013 name: name.clone(),
1014 created_at_unix_ms: SystemTime::now()
1015 .duration_since(UNIX_EPOCH)
1016 .unwrap_or_default()
1017 .as_millis(),
1018 snapshot_id: metadata
1019 .snapshots
1020 .last()
1021 .map(|snapshot| snapshot.snapshot_id),
1022 superblock_sequence: metadata.superblock.sequence,
1023 data_path: export_data_path.display().to_string(),
1024 metadata_path: export_metadata_path.display().to_string(),
1025 collection_count: metadata.catalog.total_collections,
1026 total_entities: metadata.catalog.total_entities,
1027 };
1028
1029 metadata
1030 .exports
1031 .retain(|export| export.name != descriptor.name);
1032 metadata.exports.push(descriptor.clone());
1033 self.prune_export_registry(&mut metadata.exports);
1034 metadata.save_for_data_path(path)?;
1035 metadata.save_to_binary_path(&export_metadata_binary_path)?;
1036 metadata.save_to_path(&export_metadata_path)?;
1037
1038 Ok(descriptor)
1039 }
1040
1041 pub fn set_index_enabled(
1043 &self,
1044 name: &str,
1045 enabled: bool,
1046 ) -> Result<Option<PhysicalIndexState>, Box<dyn std::error::Error>> {
1047 let Some(status) = self.index_status(name) else {
1048 return Err(format!("index '{name}' is not present in catalog status").into());
1049 };
1050 if !status.declared {
1051 return Err(format!("index '{name}' is not declared in physical metadata").into());
1052 }
1053 self.update_physical_metadata(|metadata| {
1054 let now = SystemTime::now()
1055 .duration_since(UNIX_EPOCH)
1056 .unwrap_or_default()
1057 .as_millis();
1058 if let Some(index) = metadata.indexes.iter_mut().find(|index| index.name == name) {
1059 index.enabled = enabled;
1060 if !enabled {
1061 index.build_state = "disabled".to_string();
1062 } else if index.build_state == "disabled" {
1063 index.build_state = if index.artifact_root_page.is_some() {
1064 "ready".to_string()
1065 } else {
1066 "declared-unbuilt".to_string()
1067 };
1068 }
1069 index.last_refresh_ms = Some(now);
1070 return Some(index.clone());
1071 }
1072 None
1073 })
1074 }
1075
1076 pub fn mark_index_building(
1078 &self,
1079 name: &str,
1080 ) -> Result<Option<PhysicalIndexState>, Box<dyn std::error::Error>> {
1081 let Some(status) = self.index_status(name) else {
1082 return Err(format!("index '{name}' is not present in catalog status").into());
1083 };
1084 if !status.declared {
1085 return Err(format!("index '{name}' is not declared in physical metadata").into());
1086 }
1087 if status.lifecycle_state == "disabled" {
1088 return Err(format!("index '{name}' is disabled").into());
1089 }
1090 self.update_physical_metadata(|metadata| {
1091 let now = SystemTime::now()
1092 .duration_since(UNIX_EPOCH)
1093 .unwrap_or_default()
1094 .as_millis();
1095 if let Some(index) = metadata.indexes.iter_mut().find(|index| index.name == name) {
1096 index.build_state = "building".to_string();
1097 index.last_refresh_ms = Some(now);
1098 return Some(index.clone());
1099 }
1100 None
1101 })
1102 }
1103
1104 pub fn fail_index(
1106 &self,
1107 name: &str,
1108 ) -> Result<Option<PhysicalIndexState>, Box<dyn std::error::Error>> {
1109 let Some(status) = self.index_status(name) else {
1110 return Err(format!("index '{name}' is not present in catalog status").into());
1111 };
1112 if !status.declared {
1113 return Err(format!("index '{name}' is not declared in physical metadata").into());
1114 }
1115 self.update_physical_metadata(|metadata| {
1116 let now = SystemTime::now()
1117 .duration_since(UNIX_EPOCH)
1118 .unwrap_or_default()
1119 .as_millis();
1120 if let Some(index) = metadata.indexes.iter_mut().find(|index| index.name == name) {
1121 index.build_state = "failed".to_string();
1122 index.last_refresh_ms = Some(now);
1123 return Some(index.clone());
1124 }
1125 None
1126 })
1127 }
1128
1129 pub fn mark_index_stale(
1131 &self,
1132 name: &str,
1133 ) -> Result<Option<PhysicalIndexState>, Box<dyn std::error::Error>> {
1134 let Some(status) = self.index_status(name) else {
1135 return Err(format!("index '{name}' is not present in catalog status").into());
1136 };
1137 if !status.declared {
1138 return Err(format!("index '{name}' is not declared in physical metadata").into());
1139 }
1140 self.update_physical_metadata(|metadata| {
1141 let now = SystemTime::now()
1142 .duration_since(UNIX_EPOCH)
1143 .unwrap_or_default()
1144 .as_millis();
1145 if let Some(index) = metadata.indexes.iter_mut().find(|index| index.name == name) {
1146 index.build_state = if index.enabled {
1147 "stale".to_string()
1148 } else {
1149 "disabled".to_string()
1150 };
1151 index.last_refresh_ms = Some(now);
1152 return Some(index.clone());
1153 }
1154 None
1155 })
1156 }
1157
1158 pub fn mark_index_ready(
1160 &self,
1161 name: &str,
1162 ) -> Result<Option<PhysicalIndexState>, Box<dyn std::error::Error>> {
1163 self.warmup_index(name)
1164 }
1165
1166 pub fn warmup_index(
1168 &self,
1169 name: &str,
1170 ) -> Result<Option<PhysicalIndexState>, Box<dyn std::error::Error>> {
1171 let Some(status) = self.index_status(name) else {
1172 return Err(format!("index '{name}' is not present in catalog status").into());
1173 };
1174 if !status.declared {
1175 return Err(format!("index '{name}' is not declared in physical metadata").into());
1176 }
1177 if status.lifecycle_state == "disabled" {
1178 return Err(format!("index '{name}' is disabled").into());
1179 }
1180 if !status.operational {
1181 return Err(
1182 format!("index '{name}' is declared but not operationally materialized").into(),
1183 );
1184 }
1185 let warmed_artifact = self
1186 .physical_indexes()
1187 .into_iter()
1188 .find(|index| index.name == name)
1189 .map(|mut index| {
1190 self.warmup_native_vector_artifact_for_index(&index)?;
1191 self.apply_runtime_native_artifact_to_index_state(&mut index)?;
1192 Ok::<_, String>(index)
1193 })
1194 .transpose()
1195 .map_err(|err| -> Box<dyn std::error::Error> { err.into() })?;
1196
1197 self.update_physical_metadata(|metadata| {
1198 let now = SystemTime::now()
1199 .duration_since(UNIX_EPOCH)
1200 .unwrap_or_default()
1201 .as_millis();
1202 if let Some(index) = metadata.indexes.iter_mut().find(|index| index.name == name) {
1203 if let Some(warmed) = warmed_artifact.as_ref() {
1204 index.entries = warmed.entries;
1205 index.estimated_memory_bytes = warmed.estimated_memory_bytes;
1206 index.backend = warmed.backend.clone();
1207 index.build_state = "ready".to_string();
1208 }
1209 index.last_refresh_ms = Some(now);
1210 return Some(index.clone());
1211 }
1212 None
1213 })
1214 }
1215
1216 pub fn rebuild_index_registry(
1218 &self,
1219 collection: Option<&str>,
1220 ) -> Result<Vec<PhysicalIndexState>, Box<dyn std::error::Error>> {
1221 let fresh = self.reconcile_index_states_with_native_artifacts(self.physical_index_state());
1222 self.update_physical_metadata(|metadata| {
1223 let now = SystemTime::now()
1224 .duration_since(UNIX_EPOCH)
1225 .unwrap_or_default()
1226 .as_millis();
1227
1228 let mut affected = Vec::new();
1229 let declared = metadata.indexes.clone();
1230 for declared_index in declared {
1231 let matches_collection = collection.is_none_or(|collection_name| {
1232 declared_index.collection.as_deref() == Some(collection_name)
1233 });
1234 if !matches_collection {
1235 continue;
1236 }
1237
1238 let mut rebuilt = fresh
1239 .iter()
1240 .find(|index| index.name == declared_index.name)
1241 .cloned()
1242 .unwrap_or_else(|| {
1243 let mut index = declared_index.clone();
1244 index.build_state = "declared-unbuilt".to_string();
1245 index
1246 });
1247 rebuilt.enabled = declared_index.enabled;
1248 rebuilt.artifact_kind = rebuilt
1249 .artifact_kind
1250 .or_else(|| declared_index.artifact_kind.clone());
1251 rebuilt.artifact_root_page = rebuilt
1252 .artifact_root_page
1253 .or(declared_index.artifact_root_page);
1254 rebuilt.artifact_checksum = rebuilt
1255 .artifact_checksum
1256 .or(declared_index.artifact_checksum);
1257 rebuilt.build_state =
1258 Self::finalize_rebuilt_index_build_state(&declared_index, &rebuilt);
1259 rebuilt.last_refresh_ms = Some(now);
1260
1261 if let Some(existing) = metadata
1262 .indexes
1263 .iter_mut()
1264 .find(|index| index.name == rebuilt.name)
1265 {
1266 *existing = rebuilt.clone();
1267 } else {
1268 metadata.indexes.push(rebuilt.clone());
1269 }
1270
1271 affected.push(rebuilt);
1272 }
1273
1274 affected
1275 })
1276 }
1277
1278 fn finalize_rebuilt_index_build_state(
1279 declared: &PhysicalIndexState,
1280 rebuilt: &PhysicalIndexState,
1281 ) -> String {
1282 if !rebuilt.enabled {
1283 return "disabled".to_string();
1284 }
1285
1286 if declared.build_state == "failed" || rebuilt.build_state == "failed" {
1287 return "failed".to_string();
1288 }
1289
1290 let native_artifact_family = Self::native_artifact_kind_for_index(rebuilt.kind).is_some();
1291 if native_artifact_family {
1292 if rebuilt.artifact_root_page.is_some() && rebuilt.artifact_checksum.is_some() {
1293 return "ready".to_string();
1294 }
1295 if declared.artifact_root_page.is_some()
1296 || declared.artifact_checksum.is_some()
1297 || declared.artifact_kind.is_some()
1298 {
1299 return "stale".to_string();
1300 }
1301 return "declared-unbuilt".to_string();
1302 }
1303
1304 if rebuilt.entries > 0 {
1305 return "ready".to_string();
1306 }
1307
1308 if matches!(
1309 declared.build_state.as_str(),
1310 "stale" | "artifact-published" | "registry-loaded"
1311 ) {
1312 return "stale".to_string();
1313 }
1314
1315 "declared-unbuilt".to_string()
1316 }
1317}