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LogicalPlan

Enum LogicalPlan 

Source
pub enum LogicalPlan {
Show 69 variants Union { left: Box<LogicalPlan>, right: Box<LogicalPlan>, all: bool, }, Scan { label_id: u16, labels: Vec<String>, variable: String, filter: Option<Expr>, optional: bool, }, FusedIndexScan { label_id: u16, labels: Vec<String>, variable: String, filter: Option<Expr>, optional: bool, kind: FusionKind, }, FusedIndexScanWrapped { inner: Box<LogicalPlan>, kind: FusionKind, }, ExtIdLookup { variable: String, ext_id: String, filter: Option<Expr>, optional: bool, }, ScanAll { variable: String, filter: Option<Expr>, optional: bool, }, ScanMainByLabels { labels: Vec<String>, variable: String, filter: Option<Expr>, optional: bool, }, Empty, Unwind { input: Box<LogicalPlan>, expr: Expr, variable: String, }, Traverse {
Show 19 fields input: Box<LogicalPlan>, edge_type_ids: Vec<u32>, direction: Direction, source_variable: String, target_variable: String, target_label_id: u16, step_variable: Option<String>, min_hops: usize, max_hops: usize, optional: bool, target_filter: Option<Expr>, path_variable: Option<String>, edge_properties: HashSet<String>, is_variable_length: bool, optional_pattern_vars: HashSet<String>, scope_match_variables: HashSet<String>, edge_filter_expr: Option<Expr>, path_mode: PathMode, qpp_steps: Option<Vec<QppStepInfo>>,
}, TraverseMainByType {
Show 16 fields type_names: Vec<String>, input: Box<LogicalPlan>, direction: Direction, source_variable: String, target_variable: String, step_variable: Option<String>, min_hops: usize, max_hops: usize, optional: bool, target_filter: Option<Expr>, path_variable: Option<String>, is_variable_length: bool, optional_pattern_vars: HashSet<String>, scope_match_variables: HashSet<String>, edge_filter_expr: Option<Expr>, path_mode: PathMode,
}, Filter { input: Box<LogicalPlan>, predicate: Expr, optional_variables: HashSet<String>, }, Create { input: Box<LogicalPlan>, pattern: Pattern, }, CreateBatch { input: Box<LogicalPlan>, patterns: Vec<Pattern>, }, Merge { input: Box<LogicalPlan>, pattern: Pattern, on_match: Option<SetClause>, on_create: Option<SetClause>, }, Set { input: Box<LogicalPlan>, items: Vec<SetItem>, }, Remove { input: Box<LogicalPlan>, items: Vec<RemoveItem>, }, Delete { input: Box<LogicalPlan>, items: Vec<Expr>, detach: bool, }, Foreach { input: Box<LogicalPlan>, variable: String, list: Expr, body: Vec<LogicalPlan>, }, Sort { input: Box<LogicalPlan>, order_by: Vec<SortItem>, }, Limit { input: Box<LogicalPlan>, skip: Option<usize>, fetch: Option<usize>, }, Aggregate { input: Box<LogicalPlan>, group_by: Vec<Expr>, aggregates: Vec<Expr>, }, Distinct { input: Box<LogicalPlan>, }, Window { input: Box<LogicalPlan>, window_exprs: Vec<Expr>, }, Project { input: Box<LogicalPlan>, projections: Vec<(Expr, Option<String>)>, }, CrossJoin { left: Box<LogicalPlan>, right: Box<LogicalPlan>, }, Apply { input: Box<LogicalPlan>, subquery: Box<LogicalPlan>, input_filter: Option<Expr>, }, RecursiveCTE { cte_name: String, initial: Box<LogicalPlan>, recursive: Box<LogicalPlan>, }, ProcedureCall { procedure_name: String, arguments: Vec<Expr>, yield_items: Vec<(String, Option<String>)>, }, SubqueryCall { input: Box<LogicalPlan>, subquery: Box<LogicalPlan>, }, VectorKnn { label_id: u16, variable: String, property: String, query: Expr, k: usize, threshold: Option<f32>, }, InvertedIndexLookup { label_id: u16, variable: String, property: String, terms: Expr, }, ShortestPath { input: Box<LogicalPlan>, edge_type_ids: Vec<u32>, direction: Direction, source_variable: String, target_variable: String, target_label_id: u16, path_variable: String, min_hops: u32, max_hops: u32, }, AllShortestPaths { input: Box<LogicalPlan>, edge_type_ids: Vec<u32>, direction: Direction, source_variable: String, target_variable: String, target_label_id: u16, path_variable: String, min_hops: u32, max_hops: u32, }, QuantifiedPattern { input: Box<LogicalPlan>, pattern_plan: Box<LogicalPlan>, min_iterations: u32, max_iterations: u32, path_variable: Option<String>, start_variable: String, binding_variable: String, }, CreateVectorIndex { config: VectorIndexConfig, if_not_exists: bool, }, CreateFullTextIndex { config: FullTextIndexConfig, if_not_exists: bool, }, CreateScalarIndex { config: ScalarIndexConfig, if_not_exists: bool, }, CreateJsonFtsIndex { config: JsonFtsIndexConfig, if_not_exists: bool, }, DropIndex { name: String, if_exists: bool, }, ShowIndexes { filter: Option<String>, }, Copy { target: String, source: String, is_export: bool, options: HashMap<String, Value>, }, Backup { destination: String, options: HashMap<String, Value>, }, Explain { plan: Box<LogicalPlan>, }, ShowDatabase, ShowConfig, ShowStatistics, Vacuum, Checkpoint, CopyTo { label: String, path: String, format: String, options: HashMap<String, Value>, }, CopyFrom { label: String, path: String, format: String, options: HashMap<String, Value>, }, CreateLabel(CreateLabel), CreateEdgeType(CreateEdgeType), AlterLabel(AlterLabel), AlterEdgeType(AlterEdgeType), DropLabel(DropLabel), DropEdgeType(DropEdgeType), CreateConstraint(CreateConstraint), DropConstraint(DropConstraint), ShowConstraints(ShowConstraints), BindZeroLengthPath { input: Box<LogicalPlan>, node_variable: String, path_variable: String, }, BindPath { input: Box<LogicalPlan>, node_variables: Vec<String>, edge_variables: Vec<String>, path_variable: String, }, LocyProgram {
Show 16 fields strata: Vec<LocyStratum>, commands: Vec<LocyCommand>, derived_scan_registry: Arc<DerivedScanRegistry>, max_iterations: usize, timeout: Duration, max_derived_bytes: usize, deterministic_best_by: bool, strict_probability_domain: bool, probability_epsilon: f64, exact_probability: bool, max_bdd_variables: usize, top_k_proofs: usize, semiring_kind: SemiringKind, classifier_registry: Arc<ClassifierRegistry>, classifier_cache: Option<Arc<ModelInvocationCache>>, classifier_provenance_store: Option<Arc<NeuralProvenanceStore>>,
}, LocyFold { input: Box<LogicalPlan>, key_columns: Vec<String>, fold_bindings: Vec<(String, Expr)>, strict_probability_domain: bool, probability_epsilon: f64, }, LocyBestBy { input: Box<LogicalPlan>, key_columns: Vec<String>, criteria: Vec<(Expr, bool)>, }, LocyPriority { input: Box<LogicalPlan>, key_columns: Vec<String>, }, LocyDerivedScan { scan_index: usize, data: Arc<RwLock<Vec<RecordBatch>>>, schema: SchemaRef, }, LocyProject { input: Box<LogicalPlan>, projections: Vec<(Expr, Option<String>)>, target_types: Vec<DataType>, }, LocyModelInvoke { input: Box<LogicalPlan>, invocations: Vec<ModelInvocation>, classifier_registry: Arc<ClassifierRegistry>, classifier_cache: Option<Arc<ModelInvocationCache>>, classifier_provenance_store: Option<Arc<NeuralProvenanceStore>>, path_context_handles: HashMap<String, PathContextHandle>, },
}
Expand description

Logical query plan produced by QueryPlanner.

Each variant represents one step in the Cypher execution pipeline. Plans are tree-structured — leaf nodes produce rows, intermediate nodes transform or join them, and the root node defines the final output.

Variants§

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Union

UNION / UNION ALL of two sub-plans.

Fields

§all: bool

When true, duplicate rows are preserved (UNION ALL semantics).

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Scan

Scan vertices of a single labeled dataset.

Fields

§label_id: u16
§labels: Vec<String>
§variable: String
§filter: Option<Expr>
§optional: bool
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FusedIndexScan

Phase 5a-impl: fused scan over both primary’s index and the forked session’s fork-local index. Emitted by the planner only when (a) the session is forked AND (b) StorageManager::fork_index_exists returns Some(_) for the target column. Otherwise the planner keeps emitting Scan and Lance’s base_paths chain transparently covers parent-inherited indexes.

kind selects the per-type fusion strategy:

  • BtreeUnion — union of parent + fork hits, dedup by VID.
  • SortedKWayMerge — k-way merge of two pre-sorted streams.
  • VidUidForkFirst — probe fork’s branch first, fall back to parent’s UID index on miss.

Fields

§label_id: u16
§labels: Vec<String>
§variable: String
§filter: Option<Expr>
§optional: bool
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FusedIndexScanWrapped

Phase 5b followup: planner-side observability marker for the lossy fusion types. Wraps the original VectorKnn or InvertedIndexLookup (or any future leaf operator whose shape differs from Scan) without changing its fields, so the physical planner can decay it to inner unchanged.

Runtime behavior is identical to running inner directly; the wrap is purely for explain-plan and runtime-stats observability. The actual fusion happens at the BranchedBackend layer (per-branch Lance reads via base_paths), exactly as in Phase 5b’s core ship.

Fields

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ExtIdLookup

Lookup vertices by ext_id using the main vertices table. Used when a query references ext_id without specifying a label.

Fields

§variable: String
§ext_id: String
§filter: Option<Expr>
§optional: bool
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ScanAll

Scan all vertices from main table (MATCH (n) without label). Used for schemaless queries that don’t specify any label.

Fields

§variable: String
§filter: Option<Expr>
§optional: bool
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ScanMainByLabels

Scan main table filtering by label name (MATCH (n:Unknown)). Used for labels not defined in schema (schemaless support). Scan main vertices table by label name(s) for schemaless support. When labels has multiple entries, uses intersection semantics (must have ALL labels).

Fields

§labels: Vec<String>
§variable: String
§filter: Option<Expr>
§optional: bool
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Empty

Produces exactly one empty row (used to bootstrap pipelines with no source).

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Unwind

UNWIND: expand a list expression into one row per element.

Fields

§expr: Expr
§variable: String
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Traverse

Fields

§edge_type_ids: Vec<u32>
§direction: Direction
§source_variable: String
§target_variable: String
§target_label_id: u16
§step_variable: Option<String>
§min_hops: usize
§max_hops: usize
§optional: bool
§target_filter: Option<Expr>
§path_variable: Option<String>
§edge_properties: HashSet<String>
§is_variable_length: bool

Whether this is a variable-length pattern (has * range specifier). When true, step_variable holds a list of edges (even for *1..1).

§optional_pattern_vars: HashSet<String>

All variables from this OPTIONAL MATCH pattern. When any hop in the pattern fails, ALL these variables should be set to NULL. This ensures proper multi-hop OPTIONAL MATCH semantics.

§scope_match_variables: HashSet<String>

Variable names (node + edge) from the current MATCH clause scope. Used for relationship uniqueness scoping: only edge ID columns whose associated variable is in this set participate in uniqueness filtering. Variables from previous disconnected MATCH clauses are excluded.

§edge_filter_expr: Option<Expr>

Edge property predicate for VLP inline filtering (instead of post-Filter).

§path_mode: PathMode

Path traversal semantics (Trail by default for OpenCypher).

§qpp_steps: Option<Vec<QppStepInfo>>

QPP steps for multi-hop quantified path patterns. None for simple VLP patterns; Some for QPP with per-step edge types/constraints. When present, min_hops/max_hops are derived from iterations × steps.len().

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TraverseMainByType

Traverse main edges table filtering by type name(s) (MATCH (a)-[:Unknown]->(b)). Used for edge types not defined in schema (schemaless support). Supports OR relationship types like [:KNOWS|HATES] via multiple type_names.

Fields

§type_names: Vec<String>
§direction: Direction
§source_variable: String
§target_variable: String
§step_variable: Option<String>
§min_hops: usize
§max_hops: usize
§optional: bool
§target_filter: Option<Expr>
§path_variable: Option<String>
§is_variable_length: bool

Whether this is a variable-length pattern (has * range specifier). When true, step_variable holds a list of edges (even for *1..1).

§optional_pattern_vars: HashSet<String>

All variables from this OPTIONAL MATCH pattern. When any hop in the pattern fails, ALL these variables should be set to NULL.

§scope_match_variables: HashSet<String>

Variables belonging to the current MATCH clause scope. Used for relationship uniqueness scoping: only edge columns whose associated variable is in this set participate in uniqueness filtering.

§edge_filter_expr: Option<Expr>

Edge property predicate for VLP inline filtering (instead of post-Filter).

§path_mode: PathMode

Path traversal semantics (Trail by default for OpenCypher).

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Filter

Fields

§predicate: Expr
§optional_variables: HashSet<String>

Variables from OPTIONAL MATCH that should preserve NULL rows. When evaluating the filter, if any of these variables are NULL, the row is preserved regardless of the predicate result.

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Create

Fields

§pattern: Pattern
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CreateBatch

Batched CREATE operations for multiple consecutive CREATE clauses.

This variant combines multiple CREATE patterns into a single plan node to avoid deep recursion when executing many CREATEs sequentially.

Fields

§patterns: Vec<Pattern>
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Merge

Fields

§pattern: Pattern
§on_match: Option<SetClause>
§on_create: Option<SetClause>
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Set

Fields

§items: Vec<SetItem>
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Remove

Fields

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Delete

Fields

§items: Vec<Expr>
§detach: bool
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Foreach

FOREACH (variable IN list | clauses)

Fields

§variable: String
§list: Expr
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Sort

Fields

§order_by: Vec<SortItem>
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Limit

Fields

§fetch: Option<usize>
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Aggregate

Fields

§group_by: Vec<Expr>
§aggregates: Vec<Expr>
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Distinct

Fields

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Window

Fields

§window_exprs: Vec<Expr>
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Project

Fields

§projections: Vec<(Expr, Option<String>)>
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CrossJoin

Fields

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Apply

Fields

§subquery: Box<LogicalPlan>
§input_filter: Option<Expr>
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RecursiveCTE

Fields

§cte_name: String
§initial: Box<LogicalPlan>
§recursive: Box<LogicalPlan>
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ProcedureCall

Fields

§procedure_name: String
§arguments: Vec<Expr>
§yield_items: Vec<(String, Option<String>)>
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SubqueryCall

Fields

§subquery: Box<LogicalPlan>
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VectorKnn

Fields

§label_id: u16
§variable: String
§property: String
§query: Expr
§threshold: Option<f32>
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InvertedIndexLookup

Fields

§label_id: u16
§variable: String
§property: String
§terms: Expr
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ShortestPath

Fields

§edge_type_ids: Vec<u32>
§direction: Direction
§source_variable: String
§target_variable: String
§target_label_id: u16
§path_variable: String
§min_hops: u32

Minimum number of hops (edges) in the path. Default is 1.

§max_hops: u32

Maximum number of hops (edges) in the path. Default is u32::MAX (unlimited).

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AllShortestPaths

allShortestPaths() - Returns all paths with minimum length

Fields

§edge_type_ids: Vec<u32>
§direction: Direction
§source_variable: String
§target_variable: String
§target_label_id: u16
§path_variable: String
§min_hops: u32

Minimum number of hops (edges) in the path. Default is 1.

§max_hops: u32

Maximum number of hops (edges) in the path. Default is u32::MAX (unlimited).

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QuantifiedPattern

Fields

§pattern_plan: Box<LogicalPlan>
§min_iterations: u32
§max_iterations: u32
§path_variable: Option<String>
§start_variable: String
§binding_variable: String
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CreateVectorIndex

Fields

§if_not_exists: bool
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CreateFullTextIndex

Fields

§if_not_exists: bool
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CreateScalarIndex

Fields

§if_not_exists: bool
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CreateJsonFtsIndex

Fields

§if_not_exists: bool
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DropIndex

Fields

§name: String
§if_exists: bool
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ShowIndexes

Fields

§filter: Option<String>
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Copy

Fields

§target: String
§source: String
§is_export: bool
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Backup

Fields

§destination: String
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Explain

Fields

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ShowDatabase

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ShowConfig

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ShowStatistics

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Vacuum

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Checkpoint

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CopyTo

Fields

§label: String
§path: String
§format: String
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CopyFrom

Fields

§label: String
§path: String
§format: String
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CreateLabel(CreateLabel)

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CreateEdgeType(CreateEdgeType)

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AlterLabel(AlterLabel)

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AlterEdgeType(AlterEdgeType)

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DropLabel(DropLabel)

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DropEdgeType(DropEdgeType)

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CreateConstraint(CreateConstraint)

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DropConstraint(DropConstraint)

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ShowConstraints(ShowConstraints)

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BindZeroLengthPath

Bind a zero-length path (single node pattern with path variable). E.g., p = (a) creates a Path with one node and zero edges.

Fields

§node_variable: String
§path_variable: String
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BindPath

Bind a fixed-length path from already-computed node and edge columns. E.g., p = (a)-[r]->(b) or p = (a)-[r1]->(b)-[r2]->(c).

Fields

§node_variables: Vec<String>
§edge_variables: Vec<String>
§path_variable: String
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LocyProgram

Top-level Locy program: stratified rules + commands.

Fields

§commands: Vec<LocyCommand>
§derived_scan_registry: Arc<DerivedScanRegistry>
§max_iterations: usize
§timeout: Duration
§max_derived_bytes: usize
§deterministic_best_by: bool
§strict_probability_domain: bool
§probability_epsilon: f64
§exact_probability: bool
§max_bdd_variables: usize
§top_k_proofs: usize
§semiring_kind: SemiringKind

Active probability semiring (rollout D-7). Defaults to AddMultProb (Phase 1/2 byte-identical behavior). BddExact is selected by LocyConfig::resolve() when exact_probability is true.

§classifier_registry: Arc<ClassifierRegistry>

Phase B Slice 3: per-evaluation registry of neural classifiers keyed by model name. Empty for programs without CREATE MODEL.

§classifier_cache: Option<Arc<ModelInvocationCache>>

Phase B follow-up: optional memoization cache. None → runtime creates a fresh per-query cache; Some → shared across queries (caller-managed).

§classifier_provenance_store: Option<Arc<NeuralProvenanceStore>>

Phase C B1-B3 follow-up: per-query side-channel store for per-invocation (raw, calibrated, confidence_band) records. Flows alongside classifier_cache into LocyProgramExec.

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LocyFold

FOLD operator: lattice-join non-key columns per KEY group.

Fields

§key_columns: Vec<String>
§fold_bindings: Vec<(String, Expr)>
§strict_probability_domain: bool
§probability_epsilon: f64
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LocyBestBy

BEST BY operator: select best row per KEY group by ordered criteria.

Fields

§key_columns: Vec<String>
§criteria: Vec<(Expr, bool)>

(expression, ascending) pairs.

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LocyPriority

PRIORITY operator: keep only highest-priority clause’s rows per KEY group.

Fields

§key_columns: Vec<String>
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LocyDerivedScan

Scan a derived relation’s in-memory buffer during fixpoint iteration.

Fields

§scan_index: usize
§schema: SchemaRef
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LocyProject

Compact projection for Locy YIELD — emits ONLY the listed expressions, without carrying through helper/property columns like the regular Project.

Fields

§projections: Vec<(Expr, Option<String>)>
§target_types: Vec<DataType>

Expected output Arrow type per projection (for CAST support).

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LocyModelInvoke

Phase B A4: invoke registered neural classifiers against the input batches and overwrite the per-invocation placeholder column with each row’s predicted probability. Wraps a Locy clause body plan when CompiledClause.model_invocations is non-empty; transparent (passes batches through unchanged) when the list is empty.

Registry and cache are carried on the node so that execute_subplan — which spins up a fresh HybridPhysicalPlanner per call — can lower it to a physical LocyModelInvokeExec without depending on planner-side runtime state.

Fields

§invocations: Vec<ModelInvocation>
§classifier_registry: Arc<ClassifierRegistry>
§classifier_cache: Option<Arc<ModelInvocationCache>>
§classifier_provenance_store: Option<Arc<NeuralProvenanceStore>>

Phase C B1-B3 follow-up: per-query side-channel store for per-invocation (raw, calibrated, confidence_band) records. LocyModelInvokeExec writes here after each classifier call; EXPLAIN reads via collect_neural_calls to surface NeuralProvenance for ALONG/FOLD-position invocations and Mode B re-execution paths.

§path_context_handles: HashMap<String, PathContextHandle>

Phase D D3 runtime: one handle per path_context.source_rule referenced by any invocation on this node. The handle’s data: Arc<RwLock<Vec<RecordBatch>>> is shared with the DerivedScanRegistry; the source rule’s derived facts are already converged by the time this node executes (the dependency-graph builder ensures source rules sit in earlier strata).

Trait Implementations§

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impl Clone for LogicalPlan

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fn clone(&self) -> LogicalPlan

Returns a duplicate of the value. Read more
1.0.0 (const: unstable) · Source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Debug for LogicalPlan

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more

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The archived version of the pointer metadata for this type.
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Mutably borrows self and passes that borrow into the pipe function. Read more
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fn pipe_borrow<'a, B, R>(&'a self, func: impl FnOnce(&'a B) -> R) -> R
where Self: Borrow<B>, B: 'a + ?Sized, R: 'a,

Borrows self, then passes self.borrow() into the pipe function. Read more
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fn pipe_borrow_mut<'a, B, R>( &'a mut self, func: impl FnOnce(&'a mut B) -> R, ) -> R
where Self: BorrowMut<B>, B: 'a + ?Sized, R: 'a,

Mutably borrows self, then passes self.borrow_mut() into the pipe function. Read more
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fn pipe_as_ref<'a, U, R>(&'a self, func: impl FnOnce(&'a U) -> R) -> R
where Self: AsRef<U>, U: 'a + ?Sized, R: 'a,

Borrows self, then passes self.as_ref() into the pipe function.
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fn pipe_as_mut<'a, U, R>(&'a mut self, func: impl FnOnce(&'a mut U) -> R) -> R
where Self: AsMut<U>, U: 'a + ?Sized, R: 'a,

Mutably borrows self, then passes self.as_mut() into the pipe function.
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fn pipe_deref<'a, T, R>(&'a self, func: impl FnOnce(&'a T) -> R) -> R
where Self: Deref<Target = T>, T: 'a + ?Sized, R: 'a,

Borrows self, then passes self.deref() into the pipe function.
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fn pipe_deref_mut<'a, T, R>( &'a mut self, func: impl FnOnce(&'a mut T) -> R, ) -> R
where Self: DerefMut<Target = T> + Deref, T: 'a + ?Sized, R: 'a,

Mutably borrows self, then passes self.deref_mut() into the pipe function.
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impl<T> PluginState for T
where T: Send + Sync + 'static,

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impl<T> Pointable for T

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const ALIGN: usize

The alignment of pointer.
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type Init = T

The type for initializers.
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unsafe fn init(init: <T as Pointable>::Init) -> usize

Initializes a with the given initializer. Read more
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unsafe fn deref<'a>(ptr: usize) -> &'a T

Dereferences the given pointer. Read more
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unsafe fn deref_mut<'a>(ptr: usize) -> &'a mut T

Mutably dereferences the given pointer. Read more
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unsafe fn drop(ptr: usize)

Drops the object pointed to by the given pointer. Read more
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impl<T> Pointee for T

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type Metadata = ()

The metadata type for pointers and references to this type.
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impl<T> PolicyExt for T
where T: ?Sized,

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fn and<P, B, E>(self, other: P) -> And<T, P>
where T: Sized + Policy<B, E>, P: Policy<B, E>,

Create a new Policy that returns Action::Follow only if self and other return Action::Follow. Read more
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fn or<P, B, E>(self, other: P) -> Or<T, P>
where T: Sized + Policy<B, E>, P: Policy<B, E>,

Create a new Policy that returns Action::Follow if either self or other returns Action::Follow. Read more
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impl<T> Read<Exclusive, BecauseExclusive> for T
where T: ?Sized,

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impl<T> Same for T

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type Output = T

Should always be Self
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impl<T> Tap for T

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fn tap(self, func: impl FnOnce(&Self)) -> Self

Immutable access to a value. Read more
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fn tap_mut(self, func: impl FnOnce(&mut Self)) -> Self

Mutable access to a value. Read more
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fn tap_borrow<B>(self, func: impl FnOnce(&B)) -> Self
where Self: Borrow<B>, B: ?Sized,

Immutable access to the Borrow<B> of a value. Read more
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fn tap_borrow_mut<B>(self, func: impl FnOnce(&mut B)) -> Self
where Self: BorrowMut<B>, B: ?Sized,

Mutable access to the BorrowMut<B> of a value. Read more
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fn tap_ref<R>(self, func: impl FnOnce(&R)) -> Self
where Self: AsRef<R>, R: ?Sized,

Immutable access to the AsRef<R> view of a value. Read more
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fn tap_ref_mut<R>(self, func: impl FnOnce(&mut R)) -> Self
where Self: AsMut<R>, R: ?Sized,

Mutable access to the AsMut<R> view of a value. Read more
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fn tap_deref<T>(self, func: impl FnOnce(&T)) -> Self
where Self: Deref<Target = T>, T: ?Sized,

Immutable access to the Deref::Target of a value. Read more
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fn tap_deref_mut<T>(self, func: impl FnOnce(&mut T)) -> Self
where Self: DerefMut<Target = T> + Deref, T: ?Sized,

Mutable access to the Deref::Target of a value. Read more
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fn tap_dbg(self, func: impl FnOnce(&Self)) -> Self

Calls .tap() only in debug builds, and is erased in release builds.
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fn tap_mut_dbg(self, func: impl FnOnce(&mut Self)) -> Self

Calls .tap_mut() only in debug builds, and is erased in release builds.
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fn tap_borrow_dbg<B>(self, func: impl FnOnce(&B)) -> Self
where Self: Borrow<B>, B: ?Sized,

Calls .tap_borrow() only in debug builds, and is erased in release builds.
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fn tap_borrow_mut_dbg<B>(self, func: impl FnOnce(&mut B)) -> Self
where Self: BorrowMut<B>, B: ?Sized,

Calls .tap_borrow_mut() only in debug builds, and is erased in release builds.
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fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self
where Self: AsRef<R>, R: ?Sized,

Calls .tap_ref() only in debug builds, and is erased in release builds.
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fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self
where Self: AsMut<R>, R: ?Sized,

Calls .tap_ref_mut() only in debug builds, and is erased in release builds.
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fn tap_deref_dbg<T>(self, func: impl FnOnce(&T)) -> Self
where Self: Deref<Target = T>, T: ?Sized,

Calls .tap_deref() only in debug builds, and is erased in release builds.
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fn tap_deref_mut_dbg<T>(self, func: impl FnOnce(&mut T)) -> Self
where Self: DerefMut<Target = T> + Deref, T: ?Sized,

Calls .tap_deref_mut() only in debug builds, and is erased in release builds.
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impl<T> ToOwned for T
where T: Clone,

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type Owned = T

The resulting type after obtaining ownership.
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fn to_owned(&self) -> T

Creates owned data from borrowed data, usually by cloning. Read more
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fn clone_into(&self, target: &mut T)

Uses borrowed data to replace owned data, usually by cloning. Read more
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impl<T> TryConv for T

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fn try_conv<T>(self) -> Result<T, Self::Error>
where Self: TryInto<T>,

Attempts to convert self into T using TryInto<T>. Read more
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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.
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impl<V, T> VZip<V> for T
where V: MultiLane<T>,

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fn vzip(self) -> V

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impl<T> WithSubscriber for T

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fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self>
where S: Into<Dispatch>,

Attaches the provided Subscriber to this type, returning a WithDispatch wrapper. Read more
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fn with_current_subscriber(self) -> WithDispatch<Self>

Attaches the current default Subscriber to this type, returning a WithDispatch wrapper. Read more