1use super::*;
2
3use super::query::literal_to_sql;
4
5fn resolve_expr_value(expr: &IRExpr, params: &ParamMap) -> Result<Literal> {
9 match expr {
10 IRExpr::Literal(lit) => Ok(lit.clone()),
11 IRExpr::Param(name) => params
12 .get(name)
13 .cloned()
14 .ok_or_else(|| OmniError::manifest(format!("parameter '{}' not provided", name))),
15 other => Err(OmniError::manifest(format!(
16 "unsupported expression in mutation: {:?}",
17 other
18 ))),
19 }
20}
21
22fn literal_to_typed_array(
24 lit: &Literal,
25 data_type: &DataType,
26 num_rows: usize,
27) -> Result<ArrayRef> {
28 Ok(match (lit, data_type) {
29 (Literal::Null, _) => arrow_array::new_null_array(data_type, num_rows),
30 (Literal::String(s), DataType::Utf8) => {
31 Arc::new(StringArray::from(vec![s.as_str(); num_rows])) as ArrayRef
32 }
33 (Literal::Integer(n), DataType::Int32) => {
34 Arc::new(Int32Array::from(vec![*n as i32; num_rows]))
35 }
36 (Literal::Integer(n), DataType::Int64) => Arc::new(Int64Array::from(vec![*n; num_rows])),
37 (Literal::Integer(n), DataType::UInt32) => {
38 Arc::new(UInt32Array::from(vec![*n as u32; num_rows]))
39 }
40 (Literal::Integer(n), DataType::UInt64) => {
41 Arc::new(UInt64Array::from(vec![*n as u64; num_rows]))
42 }
43 (Literal::Float(f), DataType::Float32) => {
44 Arc::new(Float32Array::from(vec![*f as f32; num_rows]))
45 }
46 (Literal::Float(f), DataType::Float64) => Arc::new(Float64Array::from(vec![*f; num_rows])),
47 (Literal::Bool(b), DataType::Boolean) => Arc::new(BooleanArray::from(vec![*b; num_rows])),
48 (Literal::Date(s), DataType::Date32) => {
49 let days = crate::loader::parse_date32_literal(s)?;
50 Arc::new(Date32Array::from(vec![days; num_rows]))
51 }
52 (Literal::DateTime(s), DataType::Date64) => Arc::new(Date64Array::from(vec![
53 crate::loader::parse_date64_literal(s)?;
54 num_rows
55 ])),
56 (Literal::List(items), DataType::List(field)) => {
57 typed_list_literal_to_array(items, field.data_type(), num_rows)?
58 }
59 (Literal::List(items), DataType::FixedSizeList(field, dim))
60 if field.data_type() == &DataType::Float32 =>
61 {
62 if items.len() != *dim as usize {
63 return Err(OmniError::manifest(format!(
64 "vector property expects {} dimensions, got {}",
65 dim,
66 items.len()
67 )));
68 }
69 let mut builder = FixedSizeListBuilder::with_capacity(
70 Float32Builder::with_capacity(num_rows * (*dim as usize)),
71 *dim,
72 num_rows,
73 )
74 .with_field(field.clone());
75 for _ in 0..num_rows {
76 for item in items {
77 match item {
78 Literal::Integer(value) => builder.values().append_value(*value as f32),
79 Literal::Float(value) => builder.values().append_value(*value as f32),
80 _ => {
81 return Err(OmniError::manifest(
82 "vector elements must be numeric".to_string(),
83 ));
84 }
85 }
86 }
87 builder.append(true);
88 }
89 Arc::new(builder.finish())
90 }
91 _ => {
92 return Err(OmniError::manifest(format!(
93 "cannot convert {:?} to {:?}",
94 lit, data_type
95 )));
96 }
97 })
98}
99
100fn typed_list_literal_to_array(
101 items: &[Literal],
102 item_type: &DataType,
103 num_rows: usize,
104) -> Result<ArrayRef> {
105 match item_type {
106 DataType::Utf8 => {
107 let mut builder = ListBuilder::new(StringBuilder::new());
108 for _ in 0..num_rows {
109 for item in items {
110 match item {
111 Literal::String(value) => builder.values().append_value(value),
112 _ => builder.values().append_null(),
113 }
114 }
115 builder.append(true);
116 }
117 Ok(Arc::new(builder.finish()))
118 }
119 DataType::Boolean => {
120 let mut builder = ListBuilder::new(BooleanBuilder::new());
121 for _ in 0..num_rows {
122 for item in items {
123 match item {
124 Literal::Bool(value) => builder.values().append_value(*value),
125 _ => builder.values().append_null(),
126 }
127 }
128 builder.append(true);
129 }
130 Ok(Arc::new(builder.finish()))
131 }
132 DataType::Int32 => {
133 let mut builder = ListBuilder::new(Int32Builder::new());
134 for _ in 0..num_rows {
135 for item in items {
136 match item {
137 Literal::Integer(value) => {
138 let value = i32::try_from(*value).map_err(|_| {
139 OmniError::manifest(format!(
140 "list value {} exceeds Int32 range",
141 value
142 ))
143 })?;
144 builder.values().append_value(value);
145 }
146 _ => builder.values().append_null(),
147 }
148 }
149 builder.append(true);
150 }
151 Ok(Arc::new(builder.finish()))
152 }
153 DataType::Int64 => {
154 let mut builder = ListBuilder::new(Int64Builder::new());
155 for _ in 0..num_rows {
156 for item in items {
157 match item {
158 Literal::Integer(value) => builder.values().append_value(*value),
159 _ => builder.values().append_null(),
160 }
161 }
162 builder.append(true);
163 }
164 Ok(Arc::new(builder.finish()))
165 }
166 DataType::UInt32 => {
167 let mut builder = ListBuilder::new(UInt32Builder::new());
168 for _ in 0..num_rows {
169 for item in items {
170 match item {
171 Literal::Integer(value) => {
172 let value = u32::try_from(*value).map_err(|_| {
173 OmniError::manifest(format!(
174 "list value {} exceeds UInt32 range",
175 value
176 ))
177 })?;
178 builder.values().append_value(value);
179 }
180 _ => builder.values().append_null(),
181 }
182 }
183 builder.append(true);
184 }
185 Ok(Arc::new(builder.finish()))
186 }
187 DataType::UInt64 => {
188 let mut builder = ListBuilder::new(UInt64Builder::new());
189 for _ in 0..num_rows {
190 for item in items {
191 match item {
192 Literal::Integer(value) => {
193 let value = u64::try_from(*value).map_err(|_| {
194 OmniError::manifest(format!(
195 "list value {} exceeds UInt64 range",
196 value
197 ))
198 })?;
199 builder.values().append_value(value);
200 }
201 _ => builder.values().append_null(),
202 }
203 }
204 builder.append(true);
205 }
206 Ok(Arc::new(builder.finish()))
207 }
208 DataType::Float32 => {
209 let mut builder = ListBuilder::new(Float32Builder::new());
210 for _ in 0..num_rows {
211 for item in items {
212 match item {
213 Literal::Integer(value) => builder.values().append_value(*value as f32),
214 Literal::Float(value) => builder.values().append_value(*value as f32),
215 _ => builder.values().append_null(),
216 }
217 }
218 builder.append(true);
219 }
220 Ok(Arc::new(builder.finish()))
221 }
222 DataType::Float64 => {
223 let mut builder = ListBuilder::new(Float64Builder::new());
224 for _ in 0..num_rows {
225 for item in items {
226 match item {
227 Literal::Integer(value) => builder.values().append_value(*value as f64),
228 Literal::Float(value) => builder.values().append_value(*value),
229 _ => builder.values().append_null(),
230 }
231 }
232 builder.append(true);
233 }
234 Ok(Arc::new(builder.finish()))
235 }
236 DataType::Date32 => {
237 let mut builder = ListBuilder::new(Date32Builder::new());
238 for _ in 0..num_rows {
239 for item in items {
240 match item {
241 Literal::Date(value) => builder
242 .values()
243 .append_value(crate::loader::parse_date32_literal(value)?),
244 _ => builder.values().append_null(),
245 }
246 }
247 builder.append(true);
248 }
249 Ok(Arc::new(builder.finish()))
250 }
251 DataType::Date64 => {
252 let mut builder = ListBuilder::new(Date64Builder::new());
253 for _ in 0..num_rows {
254 for item in items {
255 match item {
256 Literal::DateTime(value) => builder
257 .values()
258 .append_value(crate::loader::parse_date64_literal(value)?),
259 _ => builder.values().append_null(),
260 }
261 }
262 builder.append(true);
263 }
264 Ok(Arc::new(builder.finish()))
265 }
266 other => Err(OmniError::manifest(format!(
267 "cannot convert list literal to {:?}",
268 other
269 ))),
270 }
271}
272
273fn build_blob_array_from_value(value: &str) -> Result<ArrayRef> {
275 let mut builder = BlobArrayBuilder::new(1);
276 crate::loader::append_blob_value(&mut builder, value)?;
277 builder
278 .finish()
279 .map_err(|e| OmniError::Lance(e.to_string()))
280}
281
282fn build_null_blob_array() -> Result<ArrayRef> {
284 let mut builder = BlobArrayBuilder::new(1);
285 builder
286 .push_null()
287 .map_err(|e| OmniError::Lance(e.to_string()))?;
288 builder
289 .finish()
290 .map_err(|e| OmniError::Lance(e.to_string()))
291}
292
293fn build_insert_batch(
295 schema: &SchemaRef,
296 id: &str,
297 assignments: &HashMap<String, Literal>,
298 blob_properties: &HashSet<String>,
299) -> Result<RecordBatch> {
300 let mut columns: Vec<ArrayRef> = Vec::with_capacity(schema.fields().len());
301
302 for field in schema.fields() {
303 if field.name() == "id" {
304 columns.push(Arc::new(StringArray::from(vec![id])));
305 } else if blob_properties.contains(field.name()) {
306 if let Some(Literal::String(uri)) = assignments.get(field.name()) {
307 columns.push(build_blob_array_from_value(uri)?);
308 } else if field.is_nullable() {
309 columns.push(build_null_blob_array()?);
310 } else {
311 return Err(OmniError::manifest(format!(
312 "missing required blob property '{}'",
313 field.name()
314 )));
315 }
316 } else if field.name() == "src" {
317 let lit = assignments.get("from").ok_or_else(|| {
318 OmniError::manifest("missing required edge endpoint 'from'".to_string())
319 })?;
320 columns.push(literal_to_typed_array(lit, field.data_type(), 1)?);
321 } else if field.name() == "dst" {
322 let lit = assignments.get("to").ok_or_else(|| {
323 OmniError::manifest("missing required edge endpoint 'to'".to_string())
324 })?;
325 columns.push(literal_to_typed_array(lit, field.data_type(), 1)?);
326 } else if let Some(lit) = assignments.get(field.name()) {
327 columns.push(literal_to_typed_array(lit, field.data_type(), 1)?);
328 } else if field.is_nullable() {
329 columns.push(arrow_array::new_null_array(field.data_type(), 1));
330 } else {
331 return Err(OmniError::manifest(format!(
332 "missing required property '{}'",
333 field.name()
334 )));
335 }
336 }
337
338 RecordBatch::try_new(schema.clone(), columns).map_err(|e| OmniError::Lance(e.to_string()))
339}
340
341async fn validate_edge_insert_endpoints(
342 db: &Omnigraph,
343 staging: &MutationStaging,
344 branch: Option<&str>,
345 edge_name: &str,
346 assignments: &HashMap<String, Literal>,
347) -> Result<()> {
348 let catalog = db.catalog();
349 let edge_type = catalog
350 .edge_types
351 .get(edge_name)
352 .ok_or_else(|| OmniError::manifest(format!("unknown edge type '{}'", edge_name)))?;
353 let from = match assignments.get("from") {
354 Some(Literal::String(value)) => value.as_str(),
355 Some(other) => {
356 return Err(OmniError::manifest(format!(
357 "edge {} from endpoint must be a string id, got {}",
358 edge_name,
359 literal_to_sql(other)
360 )));
361 }
362 None => {
363 return Err(OmniError::manifest(format!(
364 "edge {} missing 'from' endpoint",
365 edge_name
366 )));
367 }
368 };
369 let to = match assignments.get("to") {
370 Some(Literal::String(value)) => value.as_str(),
371 Some(other) => {
372 return Err(OmniError::manifest(format!(
373 "edge {} to endpoint must be a string id, got {}",
374 edge_name,
375 literal_to_sql(other)
376 )));
377 }
378 None => {
379 return Err(OmniError::manifest(format!(
380 "edge {} missing 'to' endpoint",
381 edge_name
382 )));
383 }
384 };
385
386 ensure_node_id_exists(db, staging, branch, &edge_type.from_type, from, "src").await?;
387 ensure_node_id_exists(db, staging, branch, &edge_type.to_type, to, "dst").await?;
388 Ok(())
389}
390
391fn pending_batches_contain_id(batches: &[RecordBatch], id: &str) -> bool {
395 for batch in batches {
396 let Some(col) = batch.column_by_name("id") else {
397 continue;
398 };
399 let Some(arr) = col.as_any().downcast_ref::<StringArray>() else {
400 continue;
401 };
402 for i in 0..arr.len() {
403 if arr.is_valid(i) && arr.value(i) == id {
404 return true;
405 }
406 }
407 }
408 false
409}
410
411async fn ensure_node_id_exists(
412 db: &Omnigraph,
413 staging: &MutationStaging,
414 branch: Option<&str>,
415 node_type: &str,
416 id: &str,
417 label: &str,
418) -> Result<()> {
419 let table_key = format!("node:{}", node_type);
420
421 let pending = staging.pending_batches(&table_key);
425 if pending_batches_contain_id(pending, id) {
426 return Ok(());
427 }
428
429 let filter = format!("id = '{}'", id.replace('\'', "''"));
430 let snapshot = db.snapshot_for_branch(branch).await?;
431 let ds = snapshot.open(&table_key).await?;
432 let exists = ds
433 .count_rows(Some(filter))
434 .await
435 .map_err(|e| OmniError::Lance(e.to_string()))?
436 > 0;
437
438 if exists {
439 Ok(())
440 } else {
441 Err(OmniError::manifest(format!(
442 "{} '{}' not found in {}",
443 label, id, node_type
444 )))
445 }
446}
447
448fn predicate_to_sql(
450 predicate: &IRMutationPredicate,
451 params: &ParamMap,
452 is_edge: bool,
453) -> Result<String> {
454 let column = if is_edge {
455 match predicate.property.as_str() {
456 "from" => "src".to_string(),
457 "to" => "dst".to_string(),
458 other => other.to_string(),
459 }
460 } else {
461 predicate.property.clone()
462 };
463
464 let value = resolve_expr_value(&predicate.value, params)?;
465 let value_sql = literal_to_sql(&value);
466
467 let op = match predicate.op {
468 CompOp::Eq => "=",
469 CompOp::Ne => "!=",
470 CompOp::Gt => ">",
471 CompOp::Lt => "<",
472 CompOp::Ge => ">=",
473 CompOp::Le => "<=",
474 CompOp::Contains => {
475 return Err(OmniError::manifest(
476 "contains predicate not supported in mutations".to_string(),
477 ));
478 }
479 };
480
481 Ok(format!("{} {} {}", column, op, value_sql))
482}
483
484fn apply_assignments(
502 full_schema: &SchemaRef,
503 batch: &RecordBatch,
504 assignments: &HashMap<String, Literal>,
505 blob_properties: &HashSet<String>,
506) -> Result<RecordBatch> {
507 let mut columns: Vec<ArrayRef> = Vec::with_capacity(full_schema.fields().len());
508 let mut out_fields: Vec<Field> = Vec::with_capacity(full_schema.fields().len());
509
510 for field in full_schema.fields().iter() {
511 if blob_properties.contains(field.name()) {
512 if let Some(Literal::String(uri)) = assignments.get(field.name()) {
513 let mut builder = BlobArrayBuilder::new(batch.num_rows());
515 for _ in 0..batch.num_rows() {
516 crate::loader::append_blob_value(&mut builder, uri)?;
517 }
518 let blob_field = lance::blob::blob_field(field.name(), true);
519 out_fields.push(blob_field);
520 columns.push(
521 builder
522 .finish()
523 .map_err(|e| OmniError::Lance(e.to_string()))?,
524 );
525 } else if let Some(col) = batch.column_by_name(field.name()) {
526 let blob_field = lance::blob::blob_field(field.name(), field.is_nullable());
530 out_fields.push(blob_field);
531 columns.push(col.clone());
532 }
533 } else if let Some(lit) = assignments.get(field.name()) {
537 out_fields.push(field.as_ref().clone());
538 columns.push(literal_to_typed_array(
539 lit,
540 field.data_type(),
541 batch.num_rows(),
542 )?);
543 } else {
544 let col = batch.column_by_name(field.name()).ok_or_else(|| {
545 OmniError::Lance(format!(
546 "column '{}' not found in scan result",
547 field.name()
548 ))
549 })?;
550 out_fields.push(field.as_ref().clone());
551 columns.push(col.clone());
552 }
553 }
554
555 RecordBatch::try_new(Arc::new(Schema::new(out_fields)), columns)
556 .map_err(|e| OmniError::Lance(e.to_string()))
557}
558
559use super::staging::{MutationStaging, PendingMode};
562
563async fn open_table_for_mutation(
599 db: &Omnigraph,
600 staging: &mut MutationStaging,
601 branch: Option<&str>,
602 table_key: &str,
603 op_kind: crate::db::MutationOpKind,
604) -> Result<(Dataset, String, Option<String>)> {
605 if let Some(prior) = staging.inline_committed.get(table_key) {
606 let path = staging.paths.get(table_key).ok_or_else(|| {
607 OmniError::manifest_internal(format!(
608 "open_table_for_mutation: inline_committed[{}] without paths entry",
609 table_key
610 ))
611 })?;
612 let ds = db
613 .reopen_for_mutation(
614 table_key,
615 &path.full_path,
616 path.table_branch.as_deref(),
617 prior.table_version,
618 op_kind,
619 )
620 .await?;
621 return Ok((ds, path.full_path.clone(), path.table_branch.clone()));
622 }
623 let (ds, full_path, table_branch) = db
624 .open_for_mutation_on_branch(branch, table_key, op_kind)
625 .await?;
626 let expected_version = ds.version().version;
627 staging.ensure_path(
628 table_key,
629 full_path.clone(),
630 table_branch.clone(),
631 expected_version,
632 op_kind,
633 );
634 Ok((ds, full_path, table_branch))
635}
636
637fn enforce_no_mixed_destructive_constructive(
649 ir: &omnigraph_compiler::ir::MutationIR,
650) -> Result<()> {
651 let mut has_constructive = false;
652 let mut has_delete = false;
653 for op in &ir.ops {
654 match op {
655 MutationOpIR::Insert { .. } | MutationOpIR::Update { .. } => {
656 has_constructive = true;
657 }
658 MutationOpIR::Delete { .. } => {
659 has_delete = true;
660 }
661 }
662 }
663 if has_constructive && has_delete {
664 return Err(OmniError::manifest(format!(
665 "mutation '{}' on the same query mixes inserts/updates and deletes; \
666 split into separate mutations: (1) inserts and updates, then (2) deletes. \
667 This restriction lifts when Lance exposes a two-phase delete API \
668 (tracked: lance-format/lance#6658).",
669 ir.name
670 )));
671 }
672 Ok(())
673}
674
675impl Omnigraph {
676 pub async fn mutate(
677 &self,
678 branch: &str,
679 query_source: &str,
680 query_name: &str,
681 params: &ParamMap,
682 ) -> Result<MutationResult> {
683 self.mutate_as(branch, query_source, query_name, params, None)
684 .await
685 }
686
687 pub async fn mutate_as(
688 &self,
689 branch: &str,
690 query_source: &str,
691 query_name: &str,
692 params: &ParamMap,
693 actor_id: Option<&str>,
694 ) -> Result<MutationResult> {
695 self.enforce(
701 omnigraph_policy::PolicyAction::Change,
702 &omnigraph_policy::ResourceScope::Branch(branch.to_string()),
703 actor_id,
704 )?;
705 self.mutate_with_current_actor(branch, query_source, query_name, params, actor_id)
706 .await
707 }
708
709 async fn mutate_with_current_actor(
710 &self,
711 branch: &str,
712 query_source: &str,
713 query_name: &str,
714 params: &ParamMap,
715 actor_id: Option<&str>,
716 ) -> Result<MutationResult> {
717 self.ensure_schema_state_valid().await?;
718 let requested = Self::normalize_branch_name(branch)?;
719 if let Some(name) = requested.as_deref() {
724 crate::db::ensure_public_branch_ref(name, "mutate")?;
725 }
726 let resolved_params = enrich_mutation_params(params)?;
727
728 let mut staging = MutationStaging::default();
735
736 let exec_result = self
737 .execute_named_mutation(
738 query_source,
739 query_name,
740 &resolved_params,
741 requested.as_deref(),
742 &mut staging,
743 )
744 .await;
745
746 match exec_result {
747 Err(e) => Err(e),
748 Ok(total) if staging.is_empty() => Ok(total),
749 Ok(total) => {
750 let staged = staging.stage_all(self, requested.as_deref()).await?;
751 let (updates, expected_versions, sidecar_handle, _queue_guards) = staged
758 .commit_all(
759 self,
760 requested.as_deref(),
761 crate::db::manifest::SidecarKind::Mutation,
762 actor_id,
763 )
764 .await?;
765 crate::failpoints::maybe_fail("mutation.post_finalize_pre_publisher")?;
776 self.commit_updates_on_branch_with_expected(
777 requested.as_deref(),
778 &updates,
779 &expected_versions,
780 actor_id,
781 )
782 .await?;
783 if let Some(handle) = sidecar_handle {
789 if let Err(err) =
798 crate::db::manifest::delete_sidecar(&handle, self.storage_adapter()).await
799 {
800 tracing::warn!(
801 error = %err,
802 operation_id = handle.operation_id.as_str(),
803 "recovery sidecar cleanup failed; the next open's recovery sweep will resolve it"
804 );
805 }
806 }
807 Ok(total)
808 }
809 }
810 }
811
812 async fn execute_named_mutation(
813 &self,
814 query_source: &str,
815 query_name: &str,
816 params: &ParamMap,
817 branch: Option<&str>,
818 staging: &mut MutationStaging,
819 ) -> Result<MutationResult> {
820 let query_decl = omnigraph_compiler::find_named_query(query_source, query_name)
821 .map_err(|e| OmniError::manifest(e.to_string()))?;
822
823 let checked = typecheck_query_decl(&self.catalog(), &query_decl)?;
824 match checked {
825 CheckedQuery::Mutation(_) => {}
826 CheckedQuery::Read(_) => {
827 return Err(OmniError::manifest(
828 "mutation execution called on a read query; use query instead".to_string(),
829 ));
830 }
831 }
832
833 let ir = lower_mutation_query(&query_decl)?;
834 enforce_no_mixed_destructive_constructive(&ir)?;
836
837 let mut total = MutationResult::default();
838 for op in &ir.ops {
839 let result = match op {
840 MutationOpIR::Insert {
841 type_name,
842 assignments,
843 } => {
844 self.execute_insert(type_name, assignments, params, branch, staging)
845 .await?
846 }
847 MutationOpIR::Update {
848 type_name,
849 assignments,
850 predicate,
851 } => {
852 self.execute_update(type_name, assignments, predicate, params, branch, staging)
853 .await?
854 }
855 MutationOpIR::Delete {
856 type_name,
857 predicate,
858 } => {
859 self.execute_delete(type_name, predicate, params, branch, staging)
860 .await?
861 }
862 };
863 total.affected_nodes += result.affected_nodes;
864 total.affected_edges += result.affected_edges;
865 }
866 Ok(total)
867 }
868
869 async fn execute_insert(
870 &self,
871 type_name: &str,
872 assignments: &[IRAssignment],
873 params: &ParamMap,
874 branch: Option<&str>,
875 staging: &mut MutationStaging,
876 ) -> Result<MutationResult> {
877 let mut resolved: HashMap<String, Literal> = HashMap::new();
878 for a in assignments {
879 resolved.insert(a.property.clone(), resolve_expr_value(&a.value, params)?);
880 }
881
882 let is_node = self.catalog().node_types.contains_key(type_name);
883 let is_edge = self.catalog().edge_types.contains_key(type_name);
884
885 if is_node {
886 let node_type = &self.catalog().node_types[type_name];
887 let schema = node_type.arrow_schema.clone();
888 let blob_props = node_type.blob_properties.clone();
889 let id = if let Some(key_prop) = node_type.key_property() {
890 match resolved.get(key_prop) {
891 Some(Literal::String(s)) => s.clone(),
892 Some(other) => literal_to_sql(other).trim_matches('\'').to_string(),
893 None => {
894 return Err(OmniError::manifest(format!(
895 "insert missing @key property '{}'",
896 key_prop
897 )));
898 }
899 }
900 } else {
901 ulid::Ulid::new().to_string()
902 };
903
904 let batch = build_insert_batch(&schema, &id, &resolved, &blob_props)?;
905 crate::loader::validate_value_constraints(&batch, node_type)?;
906 crate::loader::validate_enum_constraints(&batch, &node_type.properties, type_name)?;
907 let unique_props = crate::loader::unique_property_names_for_node(node_type);
908 if !unique_props.is_empty() {
909 crate::loader::enforce_unique_constraints_intra_batch(
910 &batch,
911 type_name,
912 &unique_props,
913 )?;
914 }
915 let has_key = node_type.key_property().is_some();
916 let table_key = format!("node:{}", type_name);
917 let insert_kind = if has_key {
919 crate::db::MutationOpKind::Merge
920 } else {
921 crate::db::MutationOpKind::Insert
922 };
923 let (_ds, _full_path, _table_branch) =
924 open_table_for_mutation(self, staging, branch, &table_key, insert_kind).await?;
925 let mode = if has_key {
929 PendingMode::Merge
930 } else {
931 PendingMode::Append
932 };
933 staging.append_batch(&table_key, schema, mode, batch)?;
934
935 Ok(MutationResult {
936 affected_nodes: 1,
937 affected_edges: 0,
938 })
939 } else if is_edge {
940 let edge_type = &self.catalog().edge_types[type_name];
941 let schema = edge_type.arrow_schema.clone();
942 let blob_props = edge_type.blob_properties.clone();
943 let id = ulid::Ulid::new().to_string();
944
945 let batch = build_insert_batch(&schema, &id, &resolved, &blob_props)?;
946 validate_edge_insert_endpoints(self, staging, branch, type_name, &resolved).await?;
947 crate::loader::validate_enum_constraints(&batch, &edge_type.properties, type_name)?;
948 let unique_props = crate::loader::unique_property_names_for_edge(edge_type);
949 if !unique_props.is_empty() {
950 crate::loader::enforce_unique_constraints_intra_batch(
951 &batch,
952 type_name,
953 &unique_props,
954 )?;
955 }
956 let table_key = format!("edge:{}", type_name);
957 let (ds, _full_path, _table_branch) = open_table_for_mutation(
959 self,
960 staging,
961 branch,
962 &table_key,
963 crate::db::MutationOpKind::Insert,
964 )
965 .await?;
966 staging.append_batch(&table_key, schema, PendingMode::Append, batch.clone())?;
969
970 validate_edge_cardinality_with_pending(self, &ds, staging, &table_key, edge_type)
975 .await?;
976
977 self.invalidate_graph_index().await;
978
979 Ok(MutationResult {
980 affected_nodes: 0,
981 affected_edges: 1,
982 })
983 } else {
984 Err(OmniError::manifest(format!("unknown type '{}'", type_name)))
985 }
986 }
987
988 async fn execute_update(
989 &self,
990 type_name: &str,
991 assignments: &[IRAssignment],
992 predicate: &IRMutationPredicate,
993 params: &ParamMap,
994 branch: Option<&str>,
995 staging: &mut MutationStaging,
996 ) -> Result<MutationResult> {
997 if !self.catalog().node_types.contains_key(type_name) {
999 return Err(OmniError::manifest(format!(
1000 "update is only supported for node types, not '{}'",
1001 type_name
1002 )));
1003 }
1004
1005 if let Some(key_prop) = self.catalog().node_types[type_name].key_property() {
1007 if assignments.iter().any(|a| a.property == key_prop) {
1008 return Err(OmniError::manifest(format!(
1009 "cannot update @key property '{}' — delete and re-insert instead",
1010 key_prop
1011 )));
1012 }
1013 }
1014
1015 let pred_sql = predicate_to_sql(predicate, params, false)?;
1016 let schema = self.catalog().node_types[type_name].arrow_schema.clone();
1017 let blob_props = self.catalog().node_types[type_name].blob_properties.clone();
1018
1019 let table_key = format!("node:{}", type_name);
1020 let (ds, _full_path, _table_branch) = open_table_for_mutation(
1021 self,
1022 staging,
1023 branch,
1024 &table_key,
1025 crate::db::MutationOpKind::Update,
1026 )
1027 .await?;
1028
1029 let non_blob_cols: Vec<&str> = schema
1042 .fields()
1043 .iter()
1044 .filter(|f| !blob_props.contains(f.name()))
1045 .map(|f| f.name().as_str())
1046 .collect();
1047 let projection: Option<&[&str]> =
1048 (!blob_props.is_empty()).then_some(non_blob_cols.as_slice());
1049 let pending_batches = staging.pending_batches(&table_key);
1050 let pending_schema = staging.pending_schema(&table_key);
1051 let batches = self
1058 .table_store()
1059 .scan_with_pending(
1060 &ds,
1061 pending_batches,
1062 pending_schema,
1063 projection,
1064 Some(&pred_sql),
1065 Some("id"),
1066 )
1067 .await?;
1068
1069 if batches.is_empty() || batches.iter().all(|b| b.num_rows() == 0) {
1070 return Ok(MutationResult {
1071 affected_nodes: 0,
1072 affected_edges: 0,
1073 });
1074 }
1075
1076 let matched = concat_match_batches_to_schema(&schema, &blob_props, batches)?;
1085
1086 let affected_count = matched.num_rows();
1087
1088 let mut resolved: HashMap<String, Literal> = HashMap::new();
1089 for a in assignments {
1090 resolved.insert(a.property.clone(), resolve_expr_value(&a.value, params)?);
1091 }
1092 let updated = apply_assignments(&schema, &matched, &resolved, &blob_props)?;
1093 let node_type = &self.catalog().node_types[type_name];
1094 crate::loader::validate_value_constraints(&updated, node_type)?;
1095 crate::loader::validate_enum_constraints(&updated, &node_type.properties, type_name)?;
1096 let unique_props = crate::loader::unique_property_names_for_node(node_type);
1097 if !unique_props.is_empty() {
1098 crate::loader::enforce_unique_constraints_intra_batch(
1099 &updated,
1100 type_name,
1101 &unique_props,
1102 )?;
1103 }
1104
1105 let updated_schema = updated.schema();
1111 staging.append_batch(&table_key, updated_schema, PendingMode::Merge, updated)?;
1112
1113 Ok(MutationResult {
1114 affected_nodes: affected_count,
1115 affected_edges: 0,
1116 })
1117 }
1118
1119 async fn execute_delete(
1120 &self,
1121 type_name: &str,
1122 predicate: &IRMutationPredicate,
1123 params: &ParamMap,
1124 branch: Option<&str>,
1125 staging: &mut MutationStaging,
1126 ) -> Result<MutationResult> {
1127 let is_node = self.catalog().node_types.contains_key(type_name);
1128 if is_node {
1129 self.execute_delete_node(type_name, predicate, params, branch, staging)
1130 .await
1131 } else {
1132 self.execute_delete_edge(type_name, predicate, params, branch, staging)
1133 .await
1134 }
1135 }
1136
1137 async fn execute_delete_node(
1138 &self,
1139 type_name: &str,
1140 predicate: &IRMutationPredicate,
1141 params: &ParamMap,
1142 branch: Option<&str>,
1143 staging: &mut MutationStaging,
1144 ) -> Result<MutationResult> {
1145 let pred_sql = predicate_to_sql(predicate, params, false)?;
1146
1147 let table_key = format!("node:{}", type_name);
1148 let (ds, full_path, table_branch) = open_table_for_mutation(
1149 self,
1150 staging,
1151 branch,
1152 &table_key,
1153 crate::db::MutationOpKind::Delete,
1154 )
1155 .await?;
1156 let initial_version = ds.version().version;
1157
1158 let batches = self
1162 .table_store()
1163 .scan(&ds, Some(&["id"]), Some(&pred_sql), None)
1164 .await?;
1165
1166 let deleted_ids: Vec<String> = batches
1167 .iter()
1168 .flat_map(|batch| {
1169 let ids = batch
1170 .column(0)
1171 .as_any()
1172 .downcast_ref::<StringArray>()
1173 .unwrap();
1174 (0..ids.len())
1175 .map(|i| ids.value(i).to_string())
1176 .collect::<Vec<_>>()
1177 })
1178 .collect();
1179
1180 if deleted_ids.is_empty() {
1181 return Ok(MutationResult {
1182 affected_nodes: 0,
1183 affected_edges: 0,
1184 });
1185 }
1186
1187 let affected_nodes = deleted_ids.len();
1188
1189 let mut ds = self
1195 .reopen_for_mutation(
1196 &table_key,
1197 &full_path,
1198 table_branch.as_deref(),
1199 initial_version,
1200 crate::db::MutationOpKind::Delete,
1201 )
1202 .await?;
1203 crate::failpoints::maybe_fail("mutation.delete_node_pre_primary_delete")?;
1204 let delete_state = self
1205 .table_store()
1206 .delete_where(&full_path, &mut ds, &pred_sql)
1207 .await?;
1208
1209 staging.record_inline(crate::db::SubTableUpdate {
1210 table_key: table_key.clone(),
1211 table_version: delete_state.version,
1212 table_branch: table_branch.clone(),
1213 row_count: delete_state.row_count,
1214 version_metadata: delete_state.version_metadata,
1215 });
1216
1217 let mut affected_edges = 0usize;
1218 let escaped: Vec<String> = deleted_ids
1219 .iter()
1220 .map(|id| format!("'{}'", id.replace('\'', "''")))
1221 .collect();
1222 let id_list = escaped.join(", ");
1223
1224 let edge_info: Vec<(String, String, String)> = self
1225 .catalog()
1226 .edge_types
1227 .iter()
1228 .map(|(name, et)| (name.clone(), et.from_type.clone(), et.to_type.clone()))
1229 .collect();
1230
1231 for (edge_name, from_type, to_type) in &edge_info {
1232 let mut cascade_filters = Vec::new();
1233 if from_type == type_name {
1234 cascade_filters.push(format!("src IN ({})", id_list));
1235 }
1236 if to_type == type_name {
1237 cascade_filters.push(format!("dst IN ({})", id_list));
1238 }
1239 if cascade_filters.is_empty() {
1240 continue;
1241 }
1242
1243 let edge_table_key = format!("edge:{}", edge_name);
1244 let cascade_filter = cascade_filters.join(" OR ");
1245 let (mut edge_ds, edge_full_path, edge_table_branch) = open_table_for_mutation(
1246 self,
1247 staging,
1248 branch,
1249 &edge_table_key,
1250 crate::db::MutationOpKind::Delete,
1251 )
1252 .await?;
1253
1254 let edge_delete = self
1255 .table_store()
1256 .delete_where(&edge_full_path, &mut edge_ds, &cascade_filter)
1257 .await?;
1258
1259 affected_edges += edge_delete.deleted_rows;
1260
1261 if edge_delete.deleted_rows > 0 {
1262 staging.record_inline(crate::db::SubTableUpdate {
1263 table_key: edge_table_key,
1264 table_version: edge_delete.version,
1265 table_branch: edge_table_branch,
1266 row_count: edge_delete.row_count,
1267 version_metadata: edge_delete.version_metadata,
1268 });
1269 }
1270 }
1271
1272 if affected_edges > 0 {
1273 self.invalidate_graph_index().await;
1274 }
1275
1276 Ok(MutationResult {
1277 affected_nodes,
1278 affected_edges,
1279 })
1280 }
1281
1282 async fn execute_delete_edge(
1283 &self,
1284 type_name: &str,
1285 predicate: &IRMutationPredicate,
1286 params: &ParamMap,
1287 branch: Option<&str>,
1288 staging: &mut MutationStaging,
1289 ) -> Result<MutationResult> {
1290 let pred_sql = predicate_to_sql(predicate, params, true)?;
1291
1292 let table_key = format!("edge:{}", type_name);
1293 let (mut ds, full_path, table_branch) = open_table_for_mutation(
1294 self,
1295 staging,
1296 branch,
1297 &table_key,
1298 crate::db::MutationOpKind::Delete,
1299 )
1300 .await?;
1301
1302 let delete_state = self
1303 .table_store()
1304 .delete_where(&full_path, &mut ds, &pred_sql)
1305 .await?;
1306 let affected = delete_state.deleted_rows;
1307
1308 if affected > 0 {
1309 staging.record_inline(crate::db::SubTableUpdate {
1310 table_key,
1311 table_version: delete_state.version,
1312 table_branch,
1313 row_count: delete_state.row_count,
1314 version_metadata: delete_state.version_metadata,
1315 });
1316 self.invalidate_graph_index().await;
1317 }
1318
1319 Ok(MutationResult {
1320 affected_nodes: 0,
1321 affected_edges: affected,
1322 })
1323 }
1324}
1325
1326fn concat_match_batches_to_schema(
1332 _schema: &SchemaRef,
1333 _blob_properties: &HashSet<String>,
1334 batches: Vec<RecordBatch>,
1335) -> Result<RecordBatch> {
1336 if batches.len() == 1 {
1337 return Ok(batches.into_iter().next().unwrap());
1338 }
1339 let common = batches[0].schema();
1340 arrow_select::concat::concat_batches(&common, &batches).map_err(|e| {
1341 OmniError::Lance(format!(
1342 "scan_with_pending returned batches with mismatched schemas \
1343 across the committed/pending boundary; this typically indicates \
1344 a blob-column shape mismatch between the committed table and a \
1345 prior in-query insert/update. Split blob-touching mutations \
1346 into separate queries. ({})",
1347 e
1348 ))
1349 })
1350}
1351
1352async fn validate_edge_cardinality_with_pending(
1357 db: &Omnigraph,
1358 committed_ds: &Dataset,
1359 staging: &MutationStaging,
1360 table_key: &str,
1361 edge_type: &omnigraph_compiler::catalog::EdgeType,
1362) -> Result<()> {
1363 if edge_type.cardinality.is_default() {
1364 return Ok(());
1365 }
1366 let counts =
1367 super::staging::count_src_per_edge(db, committed_ds, table_key, staging, None).await?;
1368 super::staging::enforce_cardinality_bounds(edge_type, &counts)
1369}
1370
1371fn enrich_mutation_params(params: &ParamMap) -> Result<ParamMap> {
1372 let mut resolved = params.clone();
1373 if !resolved.contains_key(NOW_PARAM_NAME) {
1374 let now = OffsetDateTime::now_utc()
1375 .format(&Rfc3339)
1376 .map_err(|e| OmniError::manifest(format!("failed to format now(): {}", e)))?;
1377 resolved.insert(NOW_PARAM_NAME.to_string(), Literal::DateTime(now));
1378 }
1379 Ok(resolved)
1380}