1#[cfg(feature = "sql")]
7use crate::db::query::plan::expr::ProjectionSelection;
8use crate::{
9 db::{
10 executor::{
11 BytesByProjectionMode, PreparedExecutionPlan,
12 assemble_aggregate_terminal_execution_descriptor,
13 assemble_load_execution_node_descriptor, assemble_load_execution_verbose_diagnostics,
14 planning::route::AggregateRouteShape,
15 },
16 predicate::{CoercionId, CompareOp, MissingRowPolicy, Predicate},
17 query::{
18 builder::{
19 AggregateExpr, PreparedFluentAggregateExplainStrategy,
20 PreparedFluentProjectionStrategy,
21 },
22 explain::{
23 ExplainAccessPath, ExplainAggregateTerminalPlan, ExplainExecutionNodeDescriptor,
24 ExplainExecutionNodeType, ExplainOrderPushdown, ExplainPlan, ExplainPredicate,
25 },
26 expr::{FilterExpr, SortExpr},
27 intent::{QueryError, model::QueryModel},
28 plan::{AccessPlannedQuery, LoadSpec, QueryMode, VisibleIndexes, expr::Expr},
29 },
30 },
31 traits::{EntityKind, EntityValue, FieldValue, SingletonEntity},
32 value::Value,
33};
34use core::marker::PhantomData;
35
36#[derive(Clone, Debug)]
45pub(in crate::db) struct StructuralQuery {
46 intent: QueryModel<'static, Value>,
47}
48
49impl StructuralQuery {
50 #[must_use]
51 pub(in crate::db) const fn new(
52 model: &'static crate::model::entity::EntityModel,
53 consistency: MissingRowPolicy,
54 ) -> Self {
55 Self {
56 intent: QueryModel::new(model, consistency),
57 }
58 }
59
60 const fn from_intent(intent: QueryModel<'static, Value>) -> Self {
64 Self { intent }
65 }
66
67 fn map_intent(
70 self,
71 map: impl FnOnce(QueryModel<'static, Value>) -> QueryModel<'static, Value>,
72 ) -> Self {
73 Self::from_intent(map(self.intent))
74 }
75
76 fn try_map_intent(
79 self,
80 map: impl FnOnce(QueryModel<'static, Value>) -> Result<QueryModel<'static, Value>, QueryError>,
81 ) -> Result<Self, QueryError> {
82 map(self.intent).map(Self::from_intent)
83 }
84
85 #[must_use]
86 const fn mode(&self) -> QueryMode {
87 self.intent.mode()
88 }
89
90 #[must_use]
91 fn has_explicit_order(&self) -> bool {
92 self.intent.has_explicit_order()
93 }
94
95 #[must_use]
96 pub(in crate::db) const fn has_grouping(&self) -> bool {
97 self.intent.has_grouping()
98 }
99
100 #[must_use]
101 const fn load_spec(&self) -> Option<LoadSpec> {
102 match self.intent.mode() {
103 QueryMode::Load(spec) => Some(spec),
104 QueryMode::Delete(_) => None,
105 }
106 }
107
108 #[must_use]
109 pub(in crate::db) fn filter(mut self, predicate: Predicate) -> Self {
110 self.intent = self.intent.filter(predicate);
111 self
112 }
113
114 fn filter_expr(self, expr: FilterExpr) -> Result<Self, QueryError> {
115 self.try_map_intent(|intent| intent.filter_expr(expr))
116 }
117
118 fn sort_expr(self, expr: SortExpr) -> Result<Self, QueryError> {
119 self.try_map_intent(|intent| intent.sort_expr(expr))
120 }
121
122 #[must_use]
123 pub(in crate::db) fn order_by(mut self, field: impl AsRef<str>) -> Self {
124 self.intent = self.intent.order_by(field);
125 self
126 }
127
128 #[must_use]
129 pub(in crate::db) fn order_by_desc(mut self, field: impl AsRef<str>) -> Self {
130 self.intent = self.intent.order_by_desc(field);
131 self
132 }
133
134 #[must_use]
135 pub(in crate::db) fn distinct(mut self) -> Self {
136 self.intent = self.intent.distinct();
137 self
138 }
139
140 #[cfg(feature = "sql")]
141 #[must_use]
142 pub(in crate::db) fn select_fields<I, S>(mut self, fields: I) -> Self
143 where
144 I: IntoIterator<Item = S>,
145 S: Into<String>,
146 {
147 self.intent = self.intent.select_fields(fields);
148 self
149 }
150
151 #[cfg(feature = "sql")]
152 #[must_use]
153 pub(in crate::db) fn projection_selection(mut self, selection: ProjectionSelection) -> Self {
154 self.intent = self.intent.projection_selection(selection);
155 self
156 }
157
158 pub(in crate::db) fn group_by(self, field: impl AsRef<str>) -> Result<Self, QueryError> {
159 self.try_map_intent(|intent| intent.push_group_field(field.as_ref()))
160 }
161
162 #[must_use]
163 pub(in crate::db) fn aggregate(mut self, aggregate: AggregateExpr) -> Self {
164 self.intent = self.intent.push_group_aggregate(aggregate);
165 self
166 }
167
168 #[must_use]
169 fn grouped_limits(mut self, max_groups: u64, max_group_bytes: u64) -> Self {
170 self.intent = self.intent.grouped_limits(max_groups, max_group_bytes);
171 self
172 }
173
174 pub(in crate::db) fn having_group(
175 self,
176 field: impl AsRef<str>,
177 op: CompareOp,
178 value: Value,
179 ) -> Result<Self, QueryError> {
180 let field = field.as_ref().to_owned();
181 self.try_map_intent(|intent| intent.push_having_group_clause(&field, op, value))
182 }
183
184 pub(in crate::db) fn having_aggregate(
185 self,
186 aggregate_index: usize,
187 op: CompareOp,
188 value: Value,
189 ) -> Result<Self, QueryError> {
190 self.try_map_intent(|intent| {
191 intent.push_having_aggregate_clause(aggregate_index, op, value)
192 })
193 }
194
195 pub(in crate::db) fn having_expr(self, expr: Expr) -> Result<Self, QueryError> {
196 self.try_map_intent(|intent| intent.push_having_expr(expr))
197 }
198
199 #[must_use]
200 fn by_id(self, id: Value) -> Self {
201 self.map_intent(|intent| intent.by_id(id))
202 }
203
204 #[must_use]
205 fn by_ids<I>(self, ids: I) -> Self
206 where
207 I: IntoIterator<Item = Value>,
208 {
209 self.map_intent(|intent| intent.by_ids(ids))
210 }
211
212 #[must_use]
213 fn only(self, id: Value) -> Self {
214 self.map_intent(|intent| intent.only(id))
215 }
216
217 #[must_use]
218 pub(in crate::db) fn delete(mut self) -> Self {
219 self.intent = self.intent.delete();
220 self
221 }
222
223 #[must_use]
224 pub(in crate::db) fn limit(mut self, limit: u32) -> Self {
225 self.intent = self.intent.limit(limit);
226 self
227 }
228
229 #[must_use]
230 pub(in crate::db) fn offset(mut self, offset: u32) -> Self {
231 self.intent = self.intent.offset(offset);
232 self
233 }
234
235 pub(in crate::db) fn build_plan(&self) -> Result<AccessPlannedQuery, QueryError> {
236 self.intent.build_plan_model()
237 }
238
239 pub(in crate::db) fn build_plan_with_visible_indexes(
240 &self,
241 visible_indexes: &VisibleIndexes<'_>,
242 ) -> Result<AccessPlannedQuery, QueryError> {
243 self.intent.build_plan_model_with_indexes(visible_indexes)
244 }
245
246 pub(in crate::db) fn prepare_normalized_scalar_predicate(
247 &self,
248 ) -> Result<Option<Predicate>, QueryError> {
249 self.intent.prepare_normalized_scalar_predicate()
250 }
251
252 pub(in crate::db) fn build_plan_with_visible_indexes_from_normalized_predicate(
253 &self,
254 visible_indexes: &VisibleIndexes<'_>,
255 normalized_predicate: Option<Predicate>,
256 ) -> Result<AccessPlannedQuery, QueryError> {
257 self.intent
258 .build_plan_model_with_indexes_from_normalized_predicate(
259 visible_indexes,
260 normalized_predicate,
261 )
262 }
263
264 #[must_use]
265 #[cfg(test)]
266 pub(in crate::db) fn structural_cache_key(
267 &self,
268 ) -> crate::db::query::intent::StructuralQueryCacheKey {
269 crate::db::query::intent::StructuralQueryCacheKey::from_query_model(&self.intent)
270 }
271
272 #[must_use]
273 pub(in crate::db) fn structural_cache_key_with_normalized_predicate(
274 &self,
275 predicate: Option<&Predicate>,
276 ) -> crate::db::query::intent::StructuralQueryCacheKey {
277 self.intent
278 .structural_cache_key_with_normalized_predicate(predicate)
279 }
280
281 fn build_plan_for_visibility(
284 &self,
285 visible_indexes: Option<&VisibleIndexes<'_>>,
286 ) -> Result<AccessPlannedQuery, QueryError> {
287 match visible_indexes {
288 Some(visible_indexes) => self.build_plan_with_visible_indexes(visible_indexes),
289 None => self.build_plan(),
290 }
291 }
292
293 fn explain_execution_descriptor_from_plan(
296 &self,
297 plan: &AccessPlannedQuery,
298 ) -> Result<ExplainExecutionNodeDescriptor, QueryError> {
299 assemble_load_execution_node_descriptor(
300 self.intent.model().fields(),
301 self.intent.model().primary_key().name(),
302 plan,
303 )
304 .map_err(QueryError::execute)
305 }
306
307 fn explain_execution_verbose_from_plan(
309 &self,
310 plan: &AccessPlannedQuery,
311 ) -> Result<String, QueryError> {
312 let descriptor = self.explain_execution_descriptor_from_plan(plan)?;
313 let route_diagnostics = assemble_load_execution_verbose_diagnostics(
314 self.intent.model().fields(),
315 self.intent.model().primary_key().name(),
316 plan,
317 )
318 .map_err(QueryError::execute)?;
319 let explain = plan.explain();
320
321 let mut lines = vec![descriptor.render_text_tree_verbose()];
323 lines.extend(route_diagnostics);
324
325 lines.push(format!(
327 "diag.d.has_top_n_seek={}",
328 contains_execution_node_type(&descriptor, ExplainExecutionNodeType::TopNSeek)
329 ));
330 lines.push(format!(
331 "diag.d.has_index_range_limit_pushdown={}",
332 contains_execution_node_type(
333 &descriptor,
334 ExplainExecutionNodeType::IndexRangeLimitPushdown,
335 )
336 ));
337 lines.push(format!(
338 "diag.d.has_index_predicate_prefilter={}",
339 contains_execution_node_type(
340 &descriptor,
341 ExplainExecutionNodeType::IndexPredicatePrefilter,
342 )
343 ));
344 lines.push(format!(
345 "diag.d.has_residual_predicate_filter={}",
346 contains_execution_node_type(
347 &descriptor,
348 ExplainExecutionNodeType::ResidualPredicateFilter,
349 )
350 ));
351
352 lines.push(format!("diag.p.mode={:?}", explain.mode()));
354 lines.push(format!(
355 "diag.p.order_pushdown={}",
356 plan_order_pushdown_label(explain.order_pushdown())
357 ));
358 lines.push(format!(
359 "diag.p.predicate_pushdown={}",
360 plan_predicate_pushdown_label(explain.predicate(), explain.access())
361 ));
362 lines.push(format!("diag.p.distinct={}", explain.distinct()));
363 lines.push(format!("diag.p.page={:?}", explain.page()));
364 lines.push(format!("diag.p.consistency={:?}", explain.consistency()));
365
366 Ok(lines.join("\n"))
367 }
368
369 fn finalize_explain_access_choice_for_visibility(
372 &self,
373 plan: &mut AccessPlannedQuery,
374 visible_indexes: Option<&VisibleIndexes<'_>>,
375 ) {
376 let visible_indexes = match visible_indexes {
377 Some(visible_indexes) => visible_indexes.as_slice(),
378 None => self.intent.model().indexes(),
379 };
380
381 plan.finalize_access_choice_for_model_with_indexes(self.intent.model(), visible_indexes);
382 }
383
384 fn explain_execution_descriptor_for_visibility(
387 &self,
388 visible_indexes: Option<&VisibleIndexes<'_>>,
389 ) -> Result<ExplainExecutionNodeDescriptor, QueryError> {
390 let mut plan = self.build_plan_for_visibility(visible_indexes)?;
391 self.finalize_explain_access_choice_for_visibility(&mut plan, visible_indexes);
392
393 self.explain_execution_descriptor_from_plan(&plan)
394 }
395
396 fn explain_execution_verbose_for_visibility(
399 &self,
400 visible_indexes: Option<&VisibleIndexes<'_>>,
401 ) -> Result<String, QueryError> {
402 let mut plan = self.build_plan_for_visibility(visible_indexes)?;
403 self.finalize_explain_access_choice_for_visibility(&mut plan, visible_indexes);
404
405 self.explain_execution_verbose_from_plan(&plan)
406 }
407
408 #[cfg(feature = "sql")]
409 #[must_use]
410 pub(in crate::db) const fn model(&self) -> &'static crate::model::entity::EntityModel {
411 self.intent.model()
412 }
413
414 #[inline(never)]
415 pub(in crate::db) fn explain_execution_with_visible_indexes(
416 &self,
417 visible_indexes: &VisibleIndexes<'_>,
418 ) -> Result<ExplainExecutionNodeDescriptor, QueryError> {
419 self.explain_execution_descriptor_for_visibility(Some(visible_indexes))
420 }
421
422 #[inline(never)]
424 pub(in crate::db) fn explain_execution(
425 &self,
426 ) -> Result<ExplainExecutionNodeDescriptor, QueryError> {
427 self.explain_execution_descriptor_for_visibility(None)
428 }
429
430 #[inline(never)]
433 pub(in crate::db) fn explain_execution_verbose(&self) -> Result<String, QueryError> {
434 self.explain_execution_verbose_for_visibility(None)
435 }
436
437 #[inline(never)]
438 pub(in crate::db) fn explain_execution_verbose_with_visible_indexes(
439 &self,
440 visible_indexes: &VisibleIndexes<'_>,
441 ) -> Result<String, QueryError> {
442 self.explain_execution_verbose_for_visibility(Some(visible_indexes))
443 }
444
445 #[inline(never)]
446 pub(in crate::db) fn explain_aggregate_terminal_with_visible_indexes(
447 &self,
448 visible_indexes: &VisibleIndexes<'_>,
449 aggregate: AggregateRouteShape<'_>,
450 ) -> Result<ExplainAggregateTerminalPlan, QueryError> {
451 let plan = self.build_plan_with_visible_indexes(visible_indexes)?;
452 let query_explain = plan.explain();
453 let terminal = aggregate.kind();
454 let execution = assemble_aggregate_terminal_execution_descriptor(&plan, aggregate);
455
456 Ok(ExplainAggregateTerminalPlan::new(
457 query_explain,
458 terminal,
459 execution,
460 ))
461 }
462
463 #[inline(never)]
464 pub(in crate::db) fn explain_prepared_aggregate_terminal_with_visible_indexes<S>(
465 &self,
466 visible_indexes: &VisibleIndexes<'_>,
467 strategy: &S,
468 ) -> Result<ExplainAggregateTerminalPlan, QueryError>
469 where
470 S: PreparedFluentAggregateExplainStrategy,
471 {
472 let Some(kind) = strategy.explain_aggregate_kind() else {
473 return Err(QueryError::invariant(
474 "prepared fluent aggregate explain requires an explain-visible aggregate kind",
475 ));
476 };
477 let aggregate = AggregateRouteShape::new_from_fields(
478 kind,
479 strategy.explain_projected_field(),
480 self.intent.model().fields(),
481 self.intent.model().primary_key().name(),
482 );
483
484 self.explain_aggregate_terminal_with_visible_indexes(visible_indexes, aggregate)
485 }
486}
487
488#[derive(Debug)]
497pub struct PlannedQuery<E: EntityKind> {
498 plan: AccessPlannedQuery,
499 _marker: PhantomData<E>,
500}
501
502impl<E: EntityKind> PlannedQuery<E> {
503 #[must_use]
504 const fn from_plan(plan: AccessPlannedQuery) -> Self {
505 Self {
506 plan,
507 _marker: PhantomData,
508 }
509 }
510
511 #[must_use]
512 pub fn explain(&self) -> ExplainPlan {
513 self.plan.explain()
514 }
515
516 #[must_use]
518 pub fn plan_hash_hex(&self) -> String {
519 self.plan.fingerprint().to_string()
520 }
521}
522
523#[derive(Clone, Debug)]
532pub struct CompiledQuery<E: EntityKind> {
533 plan: AccessPlannedQuery,
534 _marker: PhantomData<E>,
535}
536
537impl<E: EntityKind> CompiledQuery<E> {
538 #[must_use]
539 const fn from_plan(plan: AccessPlannedQuery) -> Self {
540 Self {
541 plan,
542 _marker: PhantomData,
543 }
544 }
545
546 #[must_use]
547 pub fn explain(&self) -> ExplainPlan {
548 self.plan.explain()
549 }
550
551 #[must_use]
553 pub fn plan_hash_hex(&self) -> String {
554 self.plan.fingerprint().to_string()
555 }
556
557 #[must_use]
558 #[cfg(test)]
559 pub(in crate::db) fn projection_spec(&self) -> crate::db::query::plan::expr::ProjectionSpec {
560 self.plan.projection_spec(E::MODEL)
561 }
562
563 pub(in crate::db) fn into_prepared_execution_plan(
565 self,
566 ) -> crate::db::executor::PreparedExecutionPlan<E> {
567 crate::db::executor::PreparedExecutionPlan::new(self.into_inner())
568 }
569
570 #[must_use]
571 pub(in crate::db) fn into_inner(self) -> AccessPlannedQuery {
572 self.plan
573 }
574}
575
576#[derive(Debug)]
588pub struct Query<E: EntityKind> {
589 inner: StructuralQuery,
590 _marker: PhantomData<E>,
591}
592
593impl<E: EntityKind> Query<E> {
594 pub(in crate::db) const fn from_inner(inner: StructuralQuery) -> Self {
596 Self {
597 inner,
598 _marker: PhantomData,
599 }
600 }
601
602 #[must_use]
606 pub const fn new(consistency: MissingRowPolicy) -> Self {
607 Self::from_inner(StructuralQuery::new(E::MODEL, consistency))
608 }
609
610 #[must_use]
612 pub const fn mode(&self) -> QueryMode {
613 self.inner.mode()
614 }
615
616 pub(in crate::db) fn explain_with_visible_indexes(
617 &self,
618 visible_indexes: &VisibleIndexes<'_>,
619 ) -> Result<ExplainPlan, QueryError> {
620 let plan = self.build_plan_for_visibility(Some(visible_indexes))?;
621
622 Ok(plan.explain())
623 }
624
625 pub(in crate::db) fn plan_hash_hex_with_visible_indexes(
626 &self,
627 visible_indexes: &VisibleIndexes<'_>,
628 ) -> Result<String, QueryError> {
629 let plan = self.build_plan_for_visibility(Some(visible_indexes))?;
630
631 Ok(plan.fingerprint().to_string())
632 }
633
634 fn build_plan_for_visibility(
637 &self,
638 visible_indexes: Option<&VisibleIndexes<'_>>,
639 ) -> Result<AccessPlannedQuery, QueryError> {
640 self.inner.build_plan_for_visibility(visible_indexes)
641 }
642
643 fn map_plan_for_visibility<T>(
647 &self,
648 visible_indexes: Option<&VisibleIndexes<'_>>,
649 map: impl FnOnce(AccessPlannedQuery) -> T,
650 ) -> Result<T, QueryError> {
651 let plan = self.build_plan_for_visibility(visible_indexes)?;
652
653 Ok(map(plan))
654 }
655
656 pub(in crate::db) const fn planned_query_from_plan(
658 plan: AccessPlannedQuery,
659 ) -> PlannedQuery<E> {
660 PlannedQuery::from_plan(plan)
661 }
662
663 pub(in crate::db) const fn compiled_query_from_plan(
665 plan: AccessPlannedQuery,
666 ) -> CompiledQuery<E> {
667 CompiledQuery::from_plan(plan)
668 }
669
670 #[must_use]
671 pub(crate) fn has_explicit_order(&self) -> bool {
672 self.inner.has_explicit_order()
673 }
674
675 #[must_use]
676 pub(in crate::db) const fn structural(&self) -> &StructuralQuery {
677 &self.inner
678 }
679
680 #[must_use]
681 pub const fn has_grouping(&self) -> bool {
682 self.inner.has_grouping()
683 }
684
685 #[must_use]
686 pub(crate) const fn load_spec(&self) -> Option<LoadSpec> {
687 self.inner.load_spec()
688 }
689
690 #[must_use]
692 pub fn filter(mut self, predicate: Predicate) -> Self {
693 self.inner = self.inner.filter(predicate);
694 self
695 }
696
697 pub fn filter_expr(self, expr: FilterExpr) -> Result<Self, QueryError> {
699 let Self { inner, .. } = self;
700 let inner = inner.filter_expr(expr)?;
701
702 Ok(Self::from_inner(inner))
703 }
704
705 pub fn sort_expr(self, expr: SortExpr) -> Result<Self, QueryError> {
707 let Self { inner, .. } = self;
708 let inner = inner.sort_expr(expr)?;
709
710 Ok(Self::from_inner(inner))
711 }
712
713 #[must_use]
715 pub fn order_by(mut self, field: impl AsRef<str>) -> Self {
716 self.inner = self.inner.order_by(field);
717 self
718 }
719
720 #[must_use]
722 pub fn order_by_desc(mut self, field: impl AsRef<str>) -> Self {
723 self.inner = self.inner.order_by_desc(field);
724 self
725 }
726
727 #[must_use]
729 pub fn distinct(mut self) -> Self {
730 self.inner = self.inner.distinct();
731 self
732 }
733
734 #[cfg(all(test, feature = "sql"))]
737 #[must_use]
738 pub(in crate::db) fn select_fields<I, S>(mut self, fields: I) -> Self
739 where
740 I: IntoIterator<Item = S>,
741 S: Into<String>,
742 {
743 self.inner = self.inner.select_fields(fields);
744 self
745 }
746
747 pub fn group_by(self, field: impl AsRef<str>) -> Result<Self, QueryError> {
749 let Self { inner, .. } = self;
750 let inner = inner.group_by(field)?;
751
752 Ok(Self::from_inner(inner))
753 }
754
755 #[must_use]
757 pub fn aggregate(mut self, aggregate: AggregateExpr) -> Self {
758 self.inner = self.inner.aggregate(aggregate);
759 self
760 }
761
762 #[must_use]
764 pub fn grouped_limits(mut self, max_groups: u64, max_group_bytes: u64) -> Self {
765 self.inner = self.inner.grouped_limits(max_groups, max_group_bytes);
766 self
767 }
768
769 pub fn having_group(
771 self,
772 field: impl AsRef<str>,
773 op: CompareOp,
774 value: Value,
775 ) -> Result<Self, QueryError> {
776 let Self { inner, .. } = self;
777 let inner = inner.having_group(field, op, value)?;
778
779 Ok(Self::from_inner(inner))
780 }
781
782 pub fn having_aggregate(
784 self,
785 aggregate_index: usize,
786 op: CompareOp,
787 value: Value,
788 ) -> Result<Self, QueryError> {
789 let Self { inner, .. } = self;
790 let inner = inner.having_aggregate(aggregate_index, op, value)?;
791
792 Ok(Self::from_inner(inner))
793 }
794
795 pub(crate) fn by_id(self, id: E::Key) -> Self {
797 let Self { inner, .. } = self;
798
799 Self::from_inner(inner.by_id(id.to_value()))
800 }
801
802 pub(crate) fn by_ids<I>(self, ids: I) -> Self
804 where
805 I: IntoIterator<Item = E::Key>,
806 {
807 let Self { inner, .. } = self;
808
809 Self::from_inner(inner.by_ids(ids.into_iter().map(|id| id.to_value())))
810 }
811
812 #[must_use]
814 pub fn delete(mut self) -> Self {
815 self.inner = self.inner.delete();
816 self
817 }
818
819 #[must_use]
826 pub fn limit(mut self, limit: u32) -> Self {
827 self.inner = self.inner.limit(limit);
828 self
829 }
830
831 #[must_use]
837 pub fn offset(mut self, offset: u32) -> Self {
838 self.inner = self.inner.offset(offset);
839 self
840 }
841
842 pub fn explain(&self) -> Result<ExplainPlan, QueryError> {
844 let plan = self.planned()?;
845
846 Ok(plan.explain())
847 }
848
849 pub fn plan_hash_hex(&self) -> Result<String, QueryError> {
854 let plan = self.inner.build_plan()?;
855
856 Ok(plan.fingerprint().to_string())
857 }
858
859 fn explain_execution_descriptor_for_visibility(
862 &self,
863 visible_indexes: Option<&VisibleIndexes<'_>>,
864 ) -> Result<ExplainExecutionNodeDescriptor, QueryError>
865 where
866 E: EntityValue,
867 {
868 match visible_indexes {
869 Some(visible_indexes) => self
870 .inner
871 .explain_execution_with_visible_indexes(visible_indexes),
872 None => self.inner.explain_execution(),
873 }
874 }
875
876 fn render_execution_descriptor_for_visibility(
879 &self,
880 visible_indexes: Option<&VisibleIndexes<'_>>,
881 render: impl FnOnce(ExplainExecutionNodeDescriptor) -> String,
882 ) -> Result<String, QueryError>
883 where
884 E: EntityValue,
885 {
886 let descriptor = self.explain_execution_descriptor_for_visibility(visible_indexes)?;
887
888 Ok(render(descriptor))
889 }
890
891 fn explain_execution_verbose_for_visibility(
894 &self,
895 visible_indexes: Option<&VisibleIndexes<'_>>,
896 ) -> Result<String, QueryError>
897 where
898 E: EntityValue,
899 {
900 match visible_indexes {
901 Some(visible_indexes) => self
902 .inner
903 .explain_execution_verbose_with_visible_indexes(visible_indexes),
904 None => self.inner.explain_execution_verbose(),
905 }
906 }
907
908 pub fn explain_execution(&self) -> Result<ExplainExecutionNodeDescriptor, QueryError>
910 where
911 E: EntityValue,
912 {
913 self.explain_execution_descriptor_for_visibility(None)
914 }
915
916 pub(in crate::db) fn explain_execution_with_visible_indexes(
917 &self,
918 visible_indexes: &VisibleIndexes<'_>,
919 ) -> Result<ExplainExecutionNodeDescriptor, QueryError>
920 where
921 E: EntityValue,
922 {
923 self.explain_execution_descriptor_for_visibility(Some(visible_indexes))
924 }
925
926 pub fn explain_execution_text(&self) -> Result<String, QueryError>
928 where
929 E: EntityValue,
930 {
931 self.render_execution_descriptor_for_visibility(None, |descriptor| {
932 descriptor.render_text_tree()
933 })
934 }
935
936 pub fn explain_execution_json(&self) -> Result<String, QueryError>
938 where
939 E: EntityValue,
940 {
941 self.render_execution_descriptor_for_visibility(None, |descriptor| {
942 descriptor.render_json_canonical()
943 })
944 }
945
946 #[inline(never)]
948 pub fn explain_execution_verbose(&self) -> Result<String, QueryError>
949 where
950 E: EntityValue,
951 {
952 self.explain_execution_verbose_for_visibility(None)
953 }
954
955 pub(in crate::db) fn explain_execution_verbose_with_visible_indexes(
956 &self,
957 visible_indexes: &VisibleIndexes<'_>,
958 ) -> Result<String, QueryError>
959 where
960 E: EntityValue,
961 {
962 self.explain_execution_verbose_for_visibility(Some(visible_indexes))
963 }
964
965 #[cfg(test)]
967 #[inline(never)]
968 pub(in crate::db) fn explain_aggregate_terminal(
969 &self,
970 aggregate: AggregateExpr,
971 ) -> Result<ExplainAggregateTerminalPlan, QueryError>
972 where
973 E: EntityValue,
974 {
975 self.inner.explain_aggregate_terminal_with_visible_indexes(
976 &VisibleIndexes::schema_owned(E::MODEL.indexes()),
977 AggregateRouteShape::new_from_fields(
978 aggregate.kind(),
979 aggregate.target_field(),
980 E::MODEL.fields(),
981 E::MODEL.primary_key().name(),
982 ),
983 )
984 }
985
986 pub(in crate::db) fn explain_prepared_aggregate_terminal_with_visible_indexes<S>(
987 &self,
988 visible_indexes: &VisibleIndexes<'_>,
989 strategy: &S,
990 ) -> Result<ExplainAggregateTerminalPlan, QueryError>
991 where
992 E: EntityValue,
993 S: PreparedFluentAggregateExplainStrategy,
994 {
995 self.inner
996 .explain_prepared_aggregate_terminal_with_visible_indexes(visible_indexes, strategy)
997 }
998
999 pub(in crate::db) fn explain_bytes_by_with_visible_indexes(
1000 &self,
1001 visible_indexes: &VisibleIndexes<'_>,
1002 target_field: &str,
1003 ) -> Result<ExplainExecutionNodeDescriptor, QueryError>
1004 where
1005 E: EntityValue,
1006 {
1007 let executable = self
1008 .plan_with_visible_indexes(visible_indexes)?
1009 .into_prepared_execution_plan();
1010 let mut descriptor = executable
1011 .explain_load_execution_node_descriptor()
1012 .map_err(QueryError::execute)?;
1013 let projection_mode = executable.bytes_by_projection_mode(target_field);
1014 let projection_mode_label =
1015 PreparedExecutionPlan::<E>::bytes_by_projection_mode_label(projection_mode);
1016
1017 descriptor
1018 .node_properties
1019 .insert("terminal", Value::from("bytes_by"));
1020 descriptor
1021 .node_properties
1022 .insert("terminal_field", Value::from(target_field.to_string()));
1023 descriptor.node_properties.insert(
1024 "terminal_projection_mode",
1025 Value::from(projection_mode_label),
1026 );
1027 descriptor.node_properties.insert(
1028 "terminal_index_only",
1029 Value::from(matches!(
1030 projection_mode,
1031 BytesByProjectionMode::CoveringIndex | BytesByProjectionMode::CoveringConstant
1032 )),
1033 );
1034
1035 Ok(descriptor)
1036 }
1037
1038 pub(in crate::db) fn explain_prepared_projection_terminal_with_visible_indexes(
1039 &self,
1040 visible_indexes: &VisibleIndexes<'_>,
1041 strategy: &PreparedFluentProjectionStrategy,
1042 ) -> Result<ExplainExecutionNodeDescriptor, QueryError>
1043 where
1044 E: EntityValue,
1045 {
1046 let executable = self
1047 .plan_with_visible_indexes(visible_indexes)?
1048 .into_prepared_execution_plan();
1049 let mut descriptor = executable
1050 .explain_load_execution_node_descriptor()
1051 .map_err(QueryError::execute)?;
1052 let projection_descriptor = strategy.explain_descriptor();
1053
1054 descriptor.node_properties.insert(
1055 "terminal",
1056 Value::from(projection_descriptor.terminal_label()),
1057 );
1058 descriptor.node_properties.insert(
1059 "terminal_field",
1060 Value::from(projection_descriptor.field_label().to_string()),
1061 );
1062 descriptor.node_properties.insert(
1063 "terminal_output",
1064 Value::from(projection_descriptor.output_label()),
1065 );
1066
1067 Ok(descriptor)
1068 }
1069
1070 pub fn planned(&self) -> Result<PlannedQuery<E>, QueryError> {
1072 self.map_plan_for_visibility(None, Self::planned_query_from_plan)
1073 }
1074
1075 pub fn plan(&self) -> Result<CompiledQuery<E>, QueryError> {
1079 self.map_plan_for_visibility(None, Self::compiled_query_from_plan)
1080 }
1081
1082 pub(in crate::db) fn plan_with_visible_indexes(
1083 &self,
1084 visible_indexes: &VisibleIndexes<'_>,
1085 ) -> Result<CompiledQuery<E>, QueryError> {
1086 self.map_plan_for_visibility(Some(visible_indexes), Self::compiled_query_from_plan)
1087 }
1088}
1089
1090fn contains_execution_node_type(
1091 descriptor: &ExplainExecutionNodeDescriptor,
1092 target: ExplainExecutionNodeType,
1093) -> bool {
1094 descriptor.node_type() == target
1095 || descriptor
1096 .children()
1097 .iter()
1098 .any(|child| contains_execution_node_type(child, target))
1099}
1100
1101fn plan_order_pushdown_label(order_pushdown: &ExplainOrderPushdown) -> String {
1102 match order_pushdown {
1103 ExplainOrderPushdown::MissingModelContext => "missing_model_context".to_string(),
1104 ExplainOrderPushdown::EligibleSecondaryIndex { index, prefix_len } => {
1105 format!("eligible(index={index},prefix_len={prefix_len})",)
1106 }
1107 ExplainOrderPushdown::Rejected(reason) => format!("rejected({reason:?})"),
1108 }
1109}
1110
1111fn plan_predicate_pushdown_label(
1112 predicate: &ExplainPredicate,
1113 access: &ExplainAccessPath,
1114) -> String {
1115 let access_label = match access {
1116 ExplainAccessPath::ByKey { .. } => "by_key",
1117 ExplainAccessPath::ByKeys { keys } if keys.is_empty() => "empty_access_contract",
1118 ExplainAccessPath::ByKeys { .. } => "by_keys",
1119 ExplainAccessPath::KeyRange { .. } => "key_range",
1120 ExplainAccessPath::IndexPrefix { .. } => "index_prefix",
1121 ExplainAccessPath::IndexMultiLookup { .. } => "index_multi_lookup",
1122 ExplainAccessPath::IndexRange { .. } => "index_range",
1123 ExplainAccessPath::FullScan => "full_scan",
1124 ExplainAccessPath::Union(_) => "union",
1125 ExplainAccessPath::Intersection(_) => "intersection",
1126 };
1127 if matches!(predicate, ExplainPredicate::None) {
1128 return "none".to_string();
1129 }
1130 if matches!(access, ExplainAccessPath::FullScan) {
1131 if explain_predicate_contains_non_strict_compare(predicate) {
1132 return "fallback(non_strict_compare_coercion)".to_string();
1133 }
1134 if explain_predicate_contains_empty_prefix_starts_with(predicate) {
1135 return "fallback(starts_with_empty_prefix)".to_string();
1136 }
1137 if explain_predicate_contains_is_null(predicate) {
1138 return "fallback(is_null_full_scan)".to_string();
1139 }
1140 if explain_predicate_contains_text_scan_operator(predicate) {
1141 return "fallback(text_operator_full_scan)".to_string();
1142 }
1143
1144 return format!("fallback({access_label})");
1145 }
1146
1147 format!("applied({access_label})")
1148}
1149
1150fn explain_predicate_contains_non_strict_compare(predicate: &ExplainPredicate) -> bool {
1151 match predicate {
1152 ExplainPredicate::Compare { coercion, .. }
1153 | ExplainPredicate::CompareFields { coercion, .. } => coercion.id != CoercionId::Strict,
1154 ExplainPredicate::And(children) | ExplainPredicate::Or(children) => children
1155 .iter()
1156 .any(explain_predicate_contains_non_strict_compare),
1157 ExplainPredicate::Not(inner) => explain_predicate_contains_non_strict_compare(inner),
1158 ExplainPredicate::None
1159 | ExplainPredicate::True
1160 | ExplainPredicate::False
1161 | ExplainPredicate::IsNull { .. }
1162 | ExplainPredicate::IsNotNull { .. }
1163 | ExplainPredicate::IsMissing { .. }
1164 | ExplainPredicate::IsEmpty { .. }
1165 | ExplainPredicate::IsNotEmpty { .. }
1166 | ExplainPredicate::TextContains { .. }
1167 | ExplainPredicate::TextContainsCi { .. } => false,
1168 }
1169}
1170
1171fn explain_predicate_contains_is_null(predicate: &ExplainPredicate) -> bool {
1172 match predicate {
1173 ExplainPredicate::IsNull { .. } => true,
1174 ExplainPredicate::And(children) | ExplainPredicate::Or(children) => {
1175 children.iter().any(explain_predicate_contains_is_null)
1176 }
1177 ExplainPredicate::Not(inner) => explain_predicate_contains_is_null(inner),
1178 ExplainPredicate::None
1179 | ExplainPredicate::True
1180 | ExplainPredicate::False
1181 | ExplainPredicate::Compare { .. }
1182 | ExplainPredicate::CompareFields { .. }
1183 | ExplainPredicate::IsNotNull { .. }
1184 | ExplainPredicate::IsMissing { .. }
1185 | ExplainPredicate::IsEmpty { .. }
1186 | ExplainPredicate::IsNotEmpty { .. }
1187 | ExplainPredicate::TextContains { .. }
1188 | ExplainPredicate::TextContainsCi { .. } => false,
1189 }
1190}
1191
1192fn explain_predicate_contains_empty_prefix_starts_with(predicate: &ExplainPredicate) -> bool {
1193 match predicate {
1194 ExplainPredicate::Compare {
1195 op: CompareOp::StartsWith,
1196 value: Value::Text(prefix),
1197 ..
1198 } => prefix.is_empty(),
1199 ExplainPredicate::And(children) | ExplainPredicate::Or(children) => children
1200 .iter()
1201 .any(explain_predicate_contains_empty_prefix_starts_with),
1202 ExplainPredicate::Not(inner) => explain_predicate_contains_empty_prefix_starts_with(inner),
1203 ExplainPredicate::None
1204 | ExplainPredicate::True
1205 | ExplainPredicate::False
1206 | ExplainPredicate::Compare { .. }
1207 | ExplainPredicate::CompareFields { .. }
1208 | ExplainPredicate::IsNull { .. }
1209 | ExplainPredicate::IsNotNull { .. }
1210 | ExplainPredicate::IsMissing { .. }
1211 | ExplainPredicate::IsEmpty { .. }
1212 | ExplainPredicate::IsNotEmpty { .. }
1213 | ExplainPredicate::TextContains { .. }
1214 | ExplainPredicate::TextContainsCi { .. } => false,
1215 }
1216}
1217
1218fn explain_predicate_contains_text_scan_operator(predicate: &ExplainPredicate) -> bool {
1219 match predicate {
1220 ExplainPredicate::Compare {
1221 op: CompareOp::EndsWith,
1222 ..
1223 }
1224 | ExplainPredicate::TextContains { .. }
1225 | ExplainPredicate::TextContainsCi { .. } => true,
1226 ExplainPredicate::And(children) | ExplainPredicate::Or(children) => children
1227 .iter()
1228 .any(explain_predicate_contains_text_scan_operator),
1229 ExplainPredicate::Not(inner) => explain_predicate_contains_text_scan_operator(inner),
1230 ExplainPredicate::Compare { .. }
1231 | ExplainPredicate::CompareFields { .. }
1232 | ExplainPredicate::None
1233 | ExplainPredicate::True
1234 | ExplainPredicate::False
1235 | ExplainPredicate::IsNull { .. }
1236 | ExplainPredicate::IsNotNull { .. }
1237 | ExplainPredicate::IsMissing { .. }
1238 | ExplainPredicate::IsEmpty { .. }
1239 | ExplainPredicate::IsNotEmpty { .. } => false,
1240 }
1241}
1242
1243impl<E> Query<E>
1244where
1245 E: EntityKind + SingletonEntity,
1246 E::Key: Default,
1247{
1248 pub(crate) fn only(self) -> Self {
1250 let Self { inner, .. } = self;
1251
1252 Self::from_inner(inner.only(E::Key::default().to_value()))
1253 }
1254}