1use crate::{
7 db::{
8 access::{AccessPlan, ExecutableAccessPlan},
9 predicate::IndexCompileTarget,
10 predicate::{PredicateExecutionModel, PredicateProgram},
11 query::plan::{
12 AccessPlannedQuery, ContinuationPolicy, DistinctExecutionStrategy,
13 ExecutionShapeSignature, GroupHavingExpr, GroupHavingValueExpr, GroupPlan,
14 GroupedAggregateExecutionSpec, GroupedDistinctExecutionStrategy, GroupedPlanStrategy,
15 LogicalPlan, PlannerRouteProfile, QueryMode, ResolvedOrder, ResolvedOrderField,
16 ResolvedOrderValueSource, ScalarPlan, StaticPlanningShape,
17 derive_logical_pushdown_eligibility,
18 expr::{
19 Expr, ProjectionField, ProjectionSpec, ScalarProjectionExpr,
20 compile_scalar_projection_expr, compile_scalar_projection_plan,
21 parse_supported_computed_order_expr, projection_field_expr,
22 },
23 group::GroupedAggregateProjectionSpec,
24 grouped_aggregate_execution_specs,
25 grouped_aggregate_projection_specs_from_projection_spec,
26 grouped_cursor_policy_violation, grouped_plan_strategy, lower_direct_projection_slots,
27 lower_projection_identity, lower_projection_intent,
28 residual_query_predicate_after_access_path_bounds,
29 residual_query_predicate_after_filtered_access,
30 resolved_grouped_distinct_execution_strategy_for_model,
31 },
32 },
33 error::InternalError,
34 model::{
35 entity::{EntityModel, resolve_field_slot},
36 index::IndexKeyItemsRef,
37 },
38};
39
40impl QueryMode {
41 #[must_use]
43 pub const fn is_load(&self) -> bool {
44 match self {
45 Self::Load(_) => true,
46 Self::Delete(_) => false,
47 }
48 }
49
50 #[must_use]
52 pub const fn is_delete(&self) -> bool {
53 match self {
54 Self::Delete(_) => true,
55 Self::Load(_) => false,
56 }
57 }
58}
59
60impl LogicalPlan {
61 #[must_use]
63 pub(in crate::db) const fn scalar_semantics(&self) -> &ScalarPlan {
64 match self {
65 Self::Scalar(plan) => plan,
66 Self::Grouped(plan) => &plan.scalar,
67 }
68 }
69
70 #[must_use]
72 #[cfg(test)]
73 pub(in crate::db) const fn scalar_semantics_mut(&mut self) -> &mut ScalarPlan {
74 match self {
75 Self::Scalar(plan) => plan,
76 Self::Grouped(plan) => &mut plan.scalar,
77 }
78 }
79
80 #[must_use]
82 #[cfg(test)]
83 pub(in crate::db) const fn scalar(&self) -> &ScalarPlan {
84 self.scalar_semantics()
85 }
86
87 #[must_use]
89 #[cfg(test)]
90 pub(in crate::db) const fn scalar_mut(&mut self) -> &mut ScalarPlan {
91 self.scalar_semantics_mut()
92 }
93}
94
95impl AccessPlannedQuery {
96 #[must_use]
98 pub(in crate::db) const fn scalar_plan(&self) -> &ScalarPlan {
99 self.logical.scalar_semantics()
100 }
101
102 #[must_use]
104 #[cfg(test)]
105 pub(in crate::db) const fn scalar_plan_mut(&mut self) -> &mut ScalarPlan {
106 self.logical.scalar_semantics_mut()
107 }
108
109 #[must_use]
111 #[cfg(test)]
112 pub(in crate::db) const fn scalar(&self) -> &ScalarPlan {
113 self.scalar_plan()
114 }
115
116 #[must_use]
118 #[cfg(test)]
119 pub(in crate::db) const fn scalar_mut(&mut self) -> &mut ScalarPlan {
120 self.scalar_plan_mut()
121 }
122
123 #[must_use]
125 pub(in crate::db) const fn grouped_plan(&self) -> Option<&GroupPlan> {
126 match &self.logical {
127 LogicalPlan::Scalar(_) => None,
128 LogicalPlan::Grouped(plan) => Some(plan),
129 }
130 }
131
132 #[must_use]
134 pub(in crate::db) fn projection_spec(&self, model: &EntityModel) -> ProjectionSpec {
135 if let Some(static_shape) = &self.static_planning_shape {
136 return static_shape.projection_spec.clone();
137 }
138
139 lower_projection_intent(model, &self.logical, &self.projection_selection)
140 }
141
142 #[must_use]
144 pub(in crate::db::query) fn projection_spec_for_identity(&self) -> ProjectionSpec {
145 lower_projection_identity(&self.logical)
146 }
147
148 #[must_use]
154 pub(in crate::db) fn execution_preparation_predicate(&self) -> Option<PredicateExecutionModel> {
155 let query_predicate = self.scalar_plan().predicate.as_ref()?;
156
157 match self.access.selected_index_model() {
158 Some(index) => residual_query_predicate_after_filtered_access(index, query_predicate),
159 None => Some(query_predicate.clone()),
160 }
161 }
162
163 #[must_use]
167 pub(in crate::db) fn effective_execution_predicate(&self) -> Option<PredicateExecutionModel> {
168 let filtered_residual = self.execution_preparation_predicate();
171 let filtered_residual = filtered_residual.as_ref()?;
172
173 residual_query_predicate_after_access_path_bounds(self.access.as_path(), filtered_residual)
177 }
178
179 #[must_use]
181 pub(in crate::db) const fn execution_preparation_compiled_predicate(
182 &self,
183 ) -> Option<&PredicateProgram> {
184 self.static_planning_shape()
185 .execution_preparation_compiled_predicate
186 .as_ref()
187 }
188
189 #[must_use]
191 pub(in crate::db) const fn effective_runtime_compiled_predicate(
192 &self,
193 ) -> Option<&PredicateProgram> {
194 self.static_planning_shape()
195 .effective_runtime_compiled_predicate
196 .as_ref()
197 }
198
199 #[must_use]
201 pub(in crate::db) fn distinct_execution_strategy(&self) -> DistinctExecutionStrategy {
202 if !self.scalar_plan().distinct {
203 return DistinctExecutionStrategy::None;
204 }
205
206 match distinct_runtime_dedup_strategy(&self.access) {
210 Some(strategy) => strategy,
211 None => DistinctExecutionStrategy::None,
212 }
213 }
214
215 pub(in crate::db) fn finalize_planner_route_profile_for_model(&mut self, model: &EntityModel) {
217 self.set_planner_route_profile(project_planner_route_profile_for_model(model, self));
218 }
219
220 pub(in crate::db) fn finalize_static_planning_shape_for_model(
222 &mut self,
223 model: &EntityModel,
224 ) -> Result<(), InternalError> {
225 self.static_planning_shape = Some(project_static_planning_shape_for_model(model, self)?);
226
227 Ok(())
228 }
229
230 #[must_use]
232 pub(in crate::db) fn execution_shape_signature(
233 &self,
234 entity_path: &'static str,
235 ) -> ExecutionShapeSignature {
236 ExecutionShapeSignature::new(self.continuation_signature(entity_path))
237 }
238
239 #[must_use]
242 pub(in crate::db) fn predicate_fully_satisfied_by_access_contract(&self) -> bool {
243 self.scalar_plan().predicate.is_some() && self.effective_execution_predicate().is_none()
244 }
245
246 #[must_use]
250 pub(in crate::db) fn has_residual_predicate(&self) -> bool {
251 self.scalar_plan().predicate.is_some()
252 && !self.predicate_fully_satisfied_by_access_contract()
253 }
254
255 #[must_use]
257 pub(in crate::db) fn scalar_projection_plan(&self) -> Option<&[ScalarProjectionExpr]> {
258 self.static_planning_shape()
259 .scalar_projection_plan
260 .as_deref()
261 }
262
263 #[must_use]
265 pub(in crate::db) const fn primary_key_name(&self) -> &'static str {
266 self.static_planning_shape().primary_key_name
267 }
268
269 #[must_use]
271 pub(in crate::db) const fn projection_referenced_slots(&self) -> &[usize] {
272 self.static_planning_shape()
273 .projection_referenced_slots
274 .as_slice()
275 }
276
277 #[must_use]
279 #[cfg(any(test, feature = "diagnostics"))]
280 pub(in crate::db) const fn projected_slot_mask(&self) -> &[bool] {
281 self.static_planning_shape().projected_slot_mask.as_slice()
282 }
283
284 #[must_use]
286 pub(in crate::db) const fn projection_is_model_identity(&self) -> bool {
287 self.static_planning_shape().projection_is_model_identity
288 }
289
290 #[must_use]
292 pub(in crate::db) fn order_referenced_slots(&self) -> Option<&[usize]> {
293 self.static_planning_shape()
294 .order_referenced_slots
295 .as_deref()
296 }
297
298 #[must_use]
300 pub(in crate::db) const fn resolved_order(&self) -> Option<&ResolvedOrder> {
301 self.static_planning_shape().resolved_order.as_ref()
302 }
303
304 #[must_use]
306 pub(in crate::db) fn slot_map(&self) -> Option<&[usize]> {
307 self.static_planning_shape().slot_map.as_deref()
308 }
309
310 #[must_use]
312 pub(in crate::db) fn grouped_aggregate_execution_specs(
313 &self,
314 ) -> Option<&[GroupedAggregateExecutionSpec]> {
315 self.static_planning_shape()
316 .grouped_aggregate_execution_specs
317 .as_deref()
318 }
319
320 #[must_use]
322 pub(in crate::db) const fn grouped_distinct_execution_strategy(
323 &self,
324 ) -> Option<&GroupedDistinctExecutionStrategy> {
325 self.static_planning_shape()
326 .grouped_distinct_execution_strategy
327 .as_ref()
328 }
329
330 #[must_use]
332 pub(in crate::db) const fn frozen_projection_spec(&self) -> &ProjectionSpec {
333 &self.static_planning_shape().projection_spec
334 }
335
336 #[must_use]
338 pub(in crate::db) fn frozen_direct_projection_slots(&self) -> Option<&[usize]> {
339 self.static_planning_shape()
340 .projection_direct_slots
341 .as_deref()
342 }
343
344 #[must_use]
346 pub(in crate::db) fn index_compile_targets(&self) -> Option<&[IndexCompileTarget]> {
347 self.static_planning_shape()
348 .index_compile_targets
349 .as_deref()
350 }
351
352 const fn static_planning_shape(&self) -> &StaticPlanningShape {
353 self.static_planning_shape
354 .as_ref()
355 .expect("access-planned queries must freeze static planning shape before execution")
356 }
357}
358
359fn distinct_runtime_dedup_strategy<K>(access: &AccessPlan<K>) -> Option<DistinctExecutionStrategy> {
360 match access {
361 AccessPlan::Union(_) | AccessPlan::Intersection(_) => {
362 Some(DistinctExecutionStrategy::PreOrdered)
363 }
364 AccessPlan::Path(path) if path.as_ref().is_index_multi_lookup() => {
365 Some(DistinctExecutionStrategy::HashMaterialize)
366 }
367 AccessPlan::Path(_) => None,
368 }
369}
370
371fn derive_continuation_policy_validated(plan: &AccessPlannedQuery) -> ContinuationPolicy {
372 let is_grouped_safe = plan
373 .grouped_plan()
374 .is_none_or(|grouped| grouped_cursor_policy_violation(grouped, true).is_none());
375
376 ContinuationPolicy::new(
377 true, true, is_grouped_safe,
380 )
381}
382
383#[must_use]
385pub(in crate::db) fn project_planner_route_profile_for_model(
386 model: &EntityModel,
387 plan: &AccessPlannedQuery,
388) -> PlannerRouteProfile {
389 let secondary_order_contract = plan
390 .scalar_plan()
391 .order
392 .as_ref()
393 .and_then(|order| order.deterministic_secondary_order_contract(model.primary_key.name));
394
395 PlannerRouteProfile::new(
396 derive_continuation_policy_validated(plan),
397 derive_logical_pushdown_eligibility(plan, secondary_order_contract.as_ref()),
398 secondary_order_contract,
399 )
400}
401
402fn project_static_planning_shape_for_model(
403 model: &EntityModel,
404 plan: &AccessPlannedQuery,
405) -> Result<StaticPlanningShape, InternalError> {
406 let projection_spec = lower_projection_intent(model, &plan.logical, &plan.projection_selection);
407 let execution_preparation_compiled_predicate =
408 compile_optional_predicate(model, plan.execution_preparation_predicate().as_ref());
409 let effective_runtime_compiled_predicate =
410 compile_optional_predicate(model, plan.effective_execution_predicate().as_ref());
411 let scalar_projection_plan =
412 if plan.grouped_plan().is_none() {
413 Some(compile_scalar_projection_plan(model, &projection_spec).ok_or_else(|| {
414 InternalError::query_executor_invariant(
415 "scalar projection program must compile during static planning finalization",
416 )
417 })?)
418 } else {
419 None
420 };
421 let (grouped_aggregate_execution_specs, grouped_distinct_execution_strategy) =
422 resolve_grouped_static_planning_semantics(model, plan, &projection_spec)?;
423 let projection_direct_slots =
424 lower_direct_projection_slots(model, &plan.logical, &plan.projection_selection);
425 let projection_referenced_slots =
426 projection_referenced_slots_for_spec(model, &projection_spec)?;
427 let projected_slot_mask =
428 projected_slot_mask_for_spec(model, projection_direct_slots.as_deref());
429 let projection_is_model_identity =
430 projection_is_model_identity_for_spec(model, &projection_spec);
431 let resolved_order = resolved_order_for_plan(model, plan)?;
432 let order_referenced_slots = order_referenced_slots_for_resolved_order(resolved_order.as_ref());
433 let slot_map = slot_map_for_model_plan(model, plan);
434 let index_compile_targets = index_compile_targets_for_model_plan(model, plan);
435
436 Ok(StaticPlanningShape {
437 primary_key_name: model.primary_key.name,
438 projection_spec,
439 execution_preparation_compiled_predicate,
440 effective_runtime_compiled_predicate,
441 scalar_projection_plan,
442 grouped_aggregate_execution_specs,
443 grouped_distinct_execution_strategy,
444 projection_direct_slots,
445 projection_referenced_slots,
446 projected_slot_mask,
447 projection_is_model_identity,
448 resolved_order,
449 order_referenced_slots,
450 slot_map,
451 index_compile_targets,
452 })
453}
454
455fn compile_optional_predicate(
458 model: &EntityModel,
459 predicate: Option<&PredicateExecutionModel>,
460) -> Option<PredicateProgram> {
461 predicate.map(|predicate| PredicateProgram::compile(model, predicate))
462}
463
464fn resolve_grouped_static_planning_semantics(
468 model: &EntityModel,
469 plan: &AccessPlannedQuery,
470 projection_spec: &ProjectionSpec,
471) -> Result<
472 (
473 Option<Vec<GroupedAggregateExecutionSpec>>,
474 Option<GroupedDistinctExecutionStrategy>,
475 ),
476 InternalError,
477> {
478 let Some(grouped) = plan.grouped_plan() else {
479 return Ok((None, None));
480 };
481
482 let mut aggregate_projection_specs = grouped_aggregate_projection_specs_from_projection_spec(
483 projection_spec,
484 grouped.group.group_fields.as_slice(),
485 grouped.group.aggregates.as_slice(),
486 )?;
487 extend_grouped_having_aggregate_projection_specs(&mut aggregate_projection_specs, grouped)?;
488
489 let grouped_aggregate_execution_specs = Some(grouped_aggregate_execution_specs(
490 model,
491 aggregate_projection_specs.as_slice(),
492 )?);
493 let grouped_distinct_execution_strategy =
494 Some(resolved_grouped_distinct_execution_strategy_for_model(
495 model,
496 grouped.group.group_fields.as_slice(),
497 grouped.group.aggregates.as_slice(),
498 grouped.having_expr.as_ref(),
499 )?);
500
501 Ok((
502 grouped_aggregate_execution_specs,
503 grouped_distinct_execution_strategy,
504 ))
505}
506
507fn extend_grouped_having_aggregate_projection_specs(
508 aggregate_projection_specs: &mut Vec<GroupedAggregateProjectionSpec>,
509 grouped: &GroupPlan,
510) -> Result<(), InternalError> {
511 if let Some(having_expr) = grouped.having_expr.as_ref() {
512 collect_grouped_having_expr_aggregate_projection_specs(
513 aggregate_projection_specs,
514 grouped,
515 having_expr,
516 )?;
517 }
518
519 Ok(())
520}
521
522fn collect_grouped_having_expr_aggregate_projection_specs(
523 aggregate_projection_specs: &mut Vec<GroupedAggregateProjectionSpec>,
524 grouped: &GroupPlan,
525 expr: &GroupHavingExpr,
526) -> Result<(), InternalError> {
527 match expr {
528 GroupHavingExpr::Compare { left, right, .. } => {
529 collect_grouped_having_value_expr_aggregate_projection_specs(
530 aggregate_projection_specs,
531 grouped,
532 left,
533 )?;
534 collect_grouped_having_value_expr_aggregate_projection_specs(
535 aggregate_projection_specs,
536 grouped,
537 right,
538 )?;
539 }
540 GroupHavingExpr::And(children) => {
541 for child in children {
542 collect_grouped_having_expr_aggregate_projection_specs(
543 aggregate_projection_specs,
544 grouped,
545 child,
546 )?;
547 }
548 }
549 }
550
551 Ok(())
552}
553
554fn collect_grouped_having_value_expr_aggregate_projection_specs(
555 aggregate_projection_specs: &mut Vec<GroupedAggregateProjectionSpec>,
556 grouped: &GroupPlan,
557 expr: &GroupHavingValueExpr,
558) -> Result<(), InternalError> {
559 match expr {
560 GroupHavingValueExpr::GroupField(_) | GroupHavingValueExpr::Literal(_) => {}
561 GroupHavingValueExpr::AggregateIndex(aggregate_index) => {
562 push_grouped_having_aggregate_projection_spec(
563 aggregate_projection_specs,
564 grouped,
565 *aggregate_index,
566 )?;
567 }
568 GroupHavingValueExpr::FunctionCall { args, .. } => {
569 for arg in args {
570 collect_grouped_having_value_expr_aggregate_projection_specs(
571 aggregate_projection_specs,
572 grouped,
573 arg,
574 )?;
575 }
576 }
577 GroupHavingValueExpr::Binary { left, right, .. } => {
578 collect_grouped_having_value_expr_aggregate_projection_specs(
579 aggregate_projection_specs,
580 grouped,
581 left,
582 )?;
583 collect_grouped_having_value_expr_aggregate_projection_specs(
584 aggregate_projection_specs,
585 grouped,
586 right,
587 )?;
588 }
589 }
590
591 Ok(())
592}
593
594fn push_grouped_having_aggregate_projection_spec(
595 aggregate_projection_specs: &mut Vec<GroupedAggregateProjectionSpec>,
596 grouped: &GroupPlan,
597 aggregate_index: usize,
598) -> Result<(), InternalError> {
599 let Some(aggregate) = grouped.group.aggregates.get(aggregate_index) else {
600 return Err(InternalError::planner_executor_invariant(format!(
601 "grouped static planning semantics referenced HAVING aggregate index {aggregate_index} but aggregate_count={}",
602 grouped.group.aggregates.len(),
603 )));
604 };
605 let aggregate_projection_spec =
606 GroupedAggregateProjectionSpec::from_group_aggregate_spec(aggregate);
607
608 if aggregate_projection_specs
609 .iter()
610 .all(|current| current != &aggregate_projection_spec)
611 {
612 aggregate_projection_specs.push(aggregate_projection_spec);
613 }
614
615 Ok(())
616}
617
618fn projection_referenced_slots_for_spec(
619 model: &EntityModel,
620 projection: &ProjectionSpec,
621) -> Result<Vec<usize>, InternalError> {
622 let mut referenced = vec![false; model.fields().len()];
623
624 for field in projection.fields() {
625 mark_projection_expr_slots(
626 model,
627 projection_field_expr(field),
628 referenced.as_mut_slice(),
629 )?;
630 }
631
632 Ok(referenced
633 .into_iter()
634 .enumerate()
635 .filter_map(|(slot, required)| required.then_some(slot))
636 .collect())
637}
638
639fn mark_projection_expr_slots(
640 model: &EntityModel,
641 expr: &Expr,
642 referenced: &mut [bool],
643) -> Result<(), InternalError> {
644 match expr {
645 Expr::Field(field_id) => {
646 let field_name = field_id.as_str();
647 let slot = resolve_required_field_slot(model, field_name, || {
648 InternalError::query_invalid_logical_plan(format!(
649 "projection expression references unknown field '{field_name}'",
650 ))
651 })?;
652 referenced[slot] = true;
653 }
654 Expr::Literal(_) => {}
655 Expr::FunctionCall { args, .. } => {
656 for arg in args {
657 mark_projection_expr_slots(model, arg, referenced)?;
658 }
659 }
660 Expr::Aggregate(_) => {}
661 #[cfg(test)]
662 Expr::Alias { expr, .. } => {
663 mark_projection_expr_slots(model, expr.as_ref(), referenced)?;
664 }
665 #[cfg(test)]
666 Expr::Unary { expr, .. } => {
667 mark_projection_expr_slots(model, expr.as_ref(), referenced)?;
668 }
669 Expr::Binary { left, right, .. } => {
670 mark_projection_expr_slots(model, left.as_ref(), referenced)?;
671 mark_projection_expr_slots(model, right.as_ref(), referenced)?;
672 }
673 }
674
675 Ok(())
676}
677
678fn projected_slot_mask_for_spec(
679 model: &EntityModel,
680 direct_projection_slots: Option<&[usize]>,
681) -> Vec<bool> {
682 let mut projected_slots = vec![false; model.fields().len()];
683
684 let Some(direct_projection_slots) = direct_projection_slots else {
685 return projected_slots;
686 };
687
688 for slot in direct_projection_slots.iter().copied() {
689 if let Some(projected) = projected_slots.get_mut(slot) {
690 *projected = true;
691 }
692 }
693
694 projected_slots
695}
696
697fn projection_is_model_identity_for_spec(model: &EntityModel, projection: &ProjectionSpec) -> bool {
698 if projection.len() != model.fields().len() {
699 return false;
700 }
701
702 for (field_model, projected_field) in model.fields().iter().zip(projection.fields()) {
703 match projected_field {
704 ProjectionField::Scalar {
705 expr: Expr::Field(field_id),
706 alias: None,
707 } if field_id.as_str() == field_model.name() => {}
708 ProjectionField::Scalar { .. } => return false,
709 }
710 }
711
712 true
713}
714
715fn resolved_order_for_plan(
716 model: &EntityModel,
717 plan: &AccessPlannedQuery,
718) -> Result<Option<ResolvedOrder>, InternalError> {
719 if grouped_plan_strategy(plan).is_some_and(GroupedPlanStrategy::is_top_k_group) {
720 return Ok(None);
721 }
722
723 let Some(order) = plan.scalar_plan().order.as_ref() else {
724 return Ok(None);
725 };
726
727 let mut fields = Vec::with_capacity(order.fields.len());
728 for (field, direction) in &order.fields {
729 fields.push(ResolvedOrderField::new(
730 resolved_order_value_source_for_field(model, field)?,
731 *direction,
732 ));
733 }
734
735 Ok(Some(ResolvedOrder::new(fields)))
736}
737
738fn resolved_order_value_source_for_field(
739 model: &EntityModel,
740 field: &str,
741) -> Result<ResolvedOrderValueSource, InternalError> {
742 if let Some(expr) = parse_supported_computed_order_expr(field) {
743 validate_resolved_order_expr_fields(model, &expr, field)?;
744 let compiled = compile_scalar_projection_expr(model, &expr)
745 .ok_or_else(|| order_expression_scalar_seam_error(field))?;
746
747 return Ok(ResolvedOrderValueSource::expression(compiled));
748 }
749
750 let slot = resolve_required_field_slot(model, field, || {
751 InternalError::query_invalid_logical_plan(format!(
752 "order expression references unknown field '{field}'",
753 ))
754 })?;
755
756 Ok(ResolvedOrderValueSource::direct_field(slot))
757}
758
759fn validate_resolved_order_expr_fields(
760 model: &EntityModel,
761 expr: &Expr,
762 rendered: &str,
763) -> Result<(), InternalError> {
764 match expr {
765 Expr::Field(field_id) => {
766 resolve_required_field_slot(model, field_id.as_str(), || {
767 InternalError::query_invalid_logical_plan(format!(
768 "order expression references unknown field '{rendered}'",
769 ))
770 })?;
771 }
772 Expr::Literal(_) => {}
773 Expr::FunctionCall { args, .. } => {
774 for arg in args {
775 validate_resolved_order_expr_fields(model, arg, rendered)?;
776 }
777 }
778 Expr::Binary { left, right, .. } => {
779 validate_resolved_order_expr_fields(model, left.as_ref(), rendered)?;
780 validate_resolved_order_expr_fields(model, right.as_ref(), rendered)?;
781 }
782 Expr::Aggregate(_) => {
783 return Err(order_expression_scalar_seam_error(rendered));
784 }
785 #[cfg(test)]
786 Expr::Alias { .. } | Expr::Unary { .. } => {
787 return Err(order_expression_scalar_seam_error(rendered));
788 }
789 }
790
791 Ok(())
792}
793
794fn resolve_required_field_slot<F>(
797 model: &EntityModel,
798 field: &str,
799 invalid_plan_error: F,
800) -> Result<usize, InternalError>
801where
802 F: FnOnce() -> InternalError,
803{
804 resolve_field_slot(model, field).ok_or_else(invalid_plan_error)
805}
806
807fn order_expression_scalar_seam_error(rendered: &str) -> InternalError {
810 InternalError::query_invalid_logical_plan(format!(
811 "order expression '{rendered}' did not stay on the scalar expression seam",
812 ))
813}
814
815fn order_referenced_slots_for_resolved_order(
820 resolved_order: Option<&ResolvedOrder>,
821) -> Option<Vec<usize>> {
822 let resolved_order = resolved_order?;
823 let mut referenced = Vec::new();
824
825 for field in resolved_order.fields() {
828 field.source().extend_referenced_slots(&mut referenced);
829 }
830
831 Some(referenced)
832}
833
834fn slot_map_for_model_plan(model: &EntityModel, plan: &AccessPlannedQuery) -> Option<Vec<usize>> {
835 let access_strategy = plan.access.resolve_strategy();
836 let executable = access_strategy.executable();
837
838 resolved_index_slots_for_access_path(model, executable)
839}
840
841fn resolved_index_slots_for_access_path(
842 model: &EntityModel,
843 access: &ExecutableAccessPlan<'_, crate::value::Value>,
844) -> Option<Vec<usize>> {
845 let path = access.as_path()?;
846 let path_capabilities = path.capabilities();
847 let index_fields = path_capabilities.index_fields_for_slot_map()?;
848 let mut slots = Vec::with_capacity(index_fields.len());
849
850 for field_name in index_fields {
851 let slot = resolve_field_slot(model, field_name)?;
852 slots.push(slot);
853 }
854
855 Some(slots)
856}
857
858fn index_compile_targets_for_model_plan(
859 model: &EntityModel,
860 plan: &AccessPlannedQuery,
861) -> Option<Vec<IndexCompileTarget>> {
862 let index = plan.access.as_path()?.selected_index_model()?;
863 let mut targets = Vec::new();
864
865 match index.key_items() {
866 IndexKeyItemsRef::Fields(fields) => {
867 for (component_index, &field_name) in fields.iter().enumerate() {
868 let field_slot = resolve_field_slot(model, field_name)?;
869 targets.push(IndexCompileTarget {
870 component_index,
871 field_slot,
872 key_item: crate::model::index::IndexKeyItem::Field(field_name),
873 });
874 }
875 }
876 IndexKeyItemsRef::Items(items) => {
877 for (component_index, &key_item) in items.iter().enumerate() {
878 let field_slot = resolve_field_slot(model, key_item.field())?;
879 targets.push(IndexCompileTarget {
880 component_index,
881 field_slot,
882 key_item,
883 });
884 }
885 }
886 }
887
888 Some(targets)
889}