akar_processor/processor/mapper/
map_scan.rs1use super::ExecutionContext;
2use crate::expression_evaluator::ExpressionEvaluator;
3use crate::physical_operator::*;
4use akar_common::error::ProcessorError;
5use akar_common::types::Value;
6use akar_common::vector::DataChunk;
7use akar_parser::ast::Expression;
8use akar_planner::logical_operator::{LogicalOperator, LogicalScanNode};
9use std::sync::{Arc, Mutex};
10
11fn extract_zone_map_predicate(expr: &Expression, columns: &[String]) -> Option<(usize, String, Value)> {
12 if let Expression::BinaryOp(op, left, right) = expr {
13 let op_str = match op {
14 akar_parser::ast::BinaryOp::Equal => "=",
15 akar_parser::ast::BinaryOp::GreaterThan => ">",
16 akar_parser::ast::BinaryOp::LessThan => "<",
17 akar_parser::ast::BinaryOp::GreaterThanOrEqual => ">=",
18 akar_parser::ast::BinaryOp::LessThanOrEqual => "<=",
19 akar_parser::ast::BinaryOp::NotEqual => "!=",
20 _ => return None,
21 };
22 if let Expression::Variable(var_name) = &**left {
23 if let Expression::Constant(c) = &**right {
24 let col_name = var_name.split('.').next_back().unwrap_or(var_name);
25 if let Some(col_idx) = columns.iter().position(|c| c == col_name) {
26 let val = match c {
27 akar_parser::ast::Constant::Integer(i) => Value::Int64(*i),
28 akar_parser::ast::Constant::Float(f) => Value::Double(*f),
29 akar_parser::ast::Constant::String(s) => Value::String(s.clone()),
30 akar_parser::ast::Constant::Bool(b) => Value::Bool(*b),
31 akar_parser::ast::Constant::Null => Value::Null,
32 };
33 return Some((col_idx, op_str.to_string(), val));
34 }
35 }
36 }
37 }
38 None
39}
40
41pub fn map_and_execute_scan_node(
42 s: &LogicalScanNode,
43 next_op: Option<&LogicalOperator>,
44 current_input: Vec<DataChunk>,
45 ctx: &mut ExecutionContext,
46) -> Result<Vec<DataChunk>, ProcessorError> {
47 let mut pred_owned = None;
48 if let Some(LogicalOperator::Filter(f)) = next_op {
49 pred_owned = extract_zone_map_predicate(&f.expression, &s.columns);
50 }
51
52 let pred_ref = pred_owned
53 .as_ref()
54 .map(|(idx, op_str, val)| (*idx, op_str.as_str(), val));
55
56 let (arrow_data, columns, arrow_num_rows) = ctx.resolve_scan_arrow_data(&s.table_name);
58 let mut scan = if let Some(arrays) = arrow_data {
59 PhysicalScan::new(s.table_name.clone(), s.table_id, arrow_num_rows.max(1)).with_arrow_data(arrays, columns)
60 } else {
61 let (data, fallback_columns, fallback_num_rows) = ctx.resolve_scan_data(&s.table_name, pred_ref);
63 let mut s = PhysicalScan::new(s.table_name.clone(), s.table_id, fallback_num_rows.max(1));
64 if let Some(d) = data {
65 s = s.with_data(d, fallback_columns);
66 }
67 s
68 };
69 if let Some(ref fq) = s.fts_query {
70 scan = scan.with_fts_query(PhysicalFtsScan {
71 index_name: fq.index_name.clone(),
72 query_string: fq.query_string.clone(),
73 docs_table: fq.docs_table.clone(),
74 terms_table: fq.terms_table.clone(),
75 posting_table: fq.posting_table.clone(),
76 table_name: fq.table_name.clone(),
77 column_name: fq.column_name.clone(),
78 table_catalog: ctx
79 .table_catalog
80 .clone()
81 .ok_or_else(|| "Table catalog required for FTS scan".to_string())?,
82 });
83 }
84 if let Some(ref pred) = s.predicate {
85 scan = scan.with_predicate(pred.clone());
86 let registry = ctx
87 .function_registry
88 .clone()
89 .ok_or_else(|| "No function registry available for predicate evaluation".to_string())?;
90 scan = scan.with_evaluator(Arc::new(Mutex::new(ExpressionEvaluator::new(registry))));
91 }
92 let mut result = scan.execute(current_input)?;
93 let prefix = s.alias.as_ref().unwrap_or(&s.table_name);
94
95 for chunk in &mut result {
96 chunk.field_names = chunk.field_names.iter().map(|n| format!("{}.{}", prefix, n)).collect();
97 }
98 Ok(result)
99}
100
101pub fn map_and_execute_scan(
102 op: &LogicalOperator,
103 current_input: Vec<DataChunk>,
104 ctx: &mut ExecutionContext,
105) -> Result<Vec<DataChunk>, ProcessorError> {
106 match op {
107 LogicalOperator::ScanRel(s) => {
108 let (data, columns, _num_rows) = ctx.resolve_scan_data(&s.table_name, None);
109 let scan = PhysicalScanRel {
110 table_name: s.table_name.clone(),
111 table_id: s.table_id,
112 direction: s.direction.clone(),
113 table_data: data,
114 table_columns: columns,
115 };
116 let mut result = scan.execute(current_input)?;
117 let prefix = &s.table_name;
118 for chunk in &mut result {
119 chunk.field_names = chunk.field_names.iter().map(|n| format!("{}.{}", prefix, n)).collect();
120 }
121 Ok(result)
122 }
123 LogicalOperator::VectorSimilarityScan(vs) => {
124 let scan = PhysicalVectorSimilarityScan {
125 index_name: vs.index_name.clone(),
126 index_id: vs.index_id,
127 query_vector: vs.query_vector.clone(),
128 top_k: vs.top_k,
129 table_name: vs.table_name.clone(),
130 table_catalog: ctx.table_catalog.clone(),
131 };
132 let result = scan.execute(current_input)?;
133 Ok(result)
134 }
135 LogicalOperator::ArtIndexRangeScan(ars) => {
136 let scan = PhysicalArtIndexRangeScan {
137 table_name: ars.table_name.clone(),
138 table_id: ars.table_id,
139 lower_bound: ars.lower_bound.clone(),
140 upper_bound: ars.upper_bound.clone(),
141 lower_inclusive: ars.lower_inclusive,
142 upper_inclusive: ars.upper_inclusive,
143 table_catalog: ctx.table_catalog.clone(),
144 };
145 let mut result = scan.execute(current_input)?;
146 let prefix = ars.alias.as_ref().unwrap_or(&ars.table_name);
147 for chunk in &mut result {
148 chunk.field_names = chunk.field_names.iter().map(|n| format!("{}.{}", prefix, n)).collect();
149 }
150 Ok(result)
151 }
152 LogicalOperator::IndexLookup(il) => {
153 let table_catalog = ctx
154 .table_catalog
155 .clone()
156 .ok_or_else(|| "No table catalog available for INDEX LOOKUP".to_string())?;
157 let lookup_op = PhysicalIndexLookup {
158 table_name: il.table_name.clone(),
159 table_id: il.table_id,
160 key_value: il.key_value.clone(),
161 table_catalog,
162 };
163 let result = lookup_op.execute(current_input)?;
164 Ok(result)
165 }
166 LogicalOperator::ExpressionsScan(_es) => Ok(vec![DataChunk::new(vec![], vec![])]),
167 LogicalOperator::PathPropertyProbe(p) => {
168 let properties = p
169 .properties
170 .iter()
171 .map(|(t, is_node, props)| crate::physical::scan_filter::PathPropertySpec {
172 table_name: t.clone(),
173 is_node: *is_node,
174 property_names: props.clone(),
175 })
176 .collect();
177
178 let probe = crate::physical::scan_filter::PhysicalPathPropertyProbe {
179 node_ids_col_idx: p.node_ids_col_idx,
180 edge_ids_col_idx: p.edge_ids_col_idx,
181 properties,
182 table_catalog: ctx
183 .table_catalog
184 .clone()
185 .ok_or_else(|| "table catalog required for PathPropertyProbe".to_string())?,
186 };
187
188 let input = if !p.children.is_empty() {
189 ctx.execute_children(&p.children)?
190 } else {
191 current_input
192 };
193
194 let result = probe.execute(input)?;
195 Ok(result)
196 }
197 _ => Err(format!("Not a scan operator: {:?}", op).into()),
198 }
199}