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grafeo_core/execution/
vector.rs

1//! ValueVector for columnar data storage.
2
3use arcstr::ArcStr;
4
5use grafeo_common::types::{EdgeId, LogicalType, NodeId, Value};
6
7/// Default vector capacity (tuples per vector).
8pub const DEFAULT_VECTOR_CAPACITY: usize = 2048;
9
10/// A columnar vector of values.
11///
12/// ValueVector stores data in columnar format for efficient SIMD processing
13/// and cache utilization during query execution.
14#[derive(Debug, Clone)]
15pub struct ValueVector {
16    /// The logical type of values in this vector.
17    data_type: LogicalType,
18    /// The actual data storage.
19    data: VectorData,
20    /// Number of valid entries.
21    len: usize,
22    /// Validity bitmap (true = valid, false = null).
23    validity: Option<Vec<bool>>,
24}
25
26/// Internal storage for vector data.
27#[derive(Debug, Clone)]
28enum VectorData {
29    /// Boolean values.
30    Bool(Vec<bool>),
31    /// 64-bit integers.
32    Int64(Vec<i64>),
33    /// 64-bit floats.
34    Float64(Vec<f64>),
35    /// Strings (stored as ArcStr for cheap cloning).
36    String(Vec<ArcStr>),
37    /// Node IDs.
38    NodeId(Vec<NodeId>),
39    /// Edge IDs.
40    EdgeId(Vec<EdgeId>),
41    /// Generic values (fallback for complex types).
42    Generic(Vec<Value>),
43}
44
45impl ValueVector {
46    /// Creates a new empty generic vector.
47    #[must_use]
48    pub fn new() -> Self {
49        Self::with_capacity(LogicalType::Any, DEFAULT_VECTOR_CAPACITY)
50    }
51
52    /// Creates a new empty vector with the given type.
53    #[must_use]
54    pub fn with_type(data_type: LogicalType) -> Self {
55        Self::with_capacity(data_type, DEFAULT_VECTOR_CAPACITY)
56    }
57
58    /// Creates a vector from a slice of values.
59    pub fn from_values(values: &[Value]) -> Self {
60        let mut vec = Self::new();
61        for value in values {
62            vec.push_value(value.clone());
63        }
64        vec
65    }
66
67    /// Creates a new vector with the given capacity.
68    #[must_use]
69    pub fn with_capacity(data_type: LogicalType, capacity: usize) -> Self {
70        let data = match &data_type {
71            LogicalType::Bool => VectorData::Bool(Vec::with_capacity(capacity)),
72            LogicalType::Int8 | LogicalType::Int16 | LogicalType::Int32 | LogicalType::Int64 => {
73                VectorData::Int64(Vec::with_capacity(capacity))
74            }
75            LogicalType::Float32 | LogicalType::Float64 => {
76                VectorData::Float64(Vec::with_capacity(capacity))
77            }
78            LogicalType::String => VectorData::String(Vec::with_capacity(capacity)),
79            LogicalType::Node => VectorData::NodeId(Vec::with_capacity(capacity)),
80            LogicalType::Edge => VectorData::EdgeId(Vec::with_capacity(capacity)),
81            _ => VectorData::Generic(Vec::with_capacity(capacity)),
82        };
83
84        Self {
85            data_type,
86            data,
87            len: 0,
88            validity: None,
89        }
90    }
91
92    /// Returns the data type of this vector.
93    #[must_use]
94    pub fn data_type(&self) -> &LogicalType {
95        &self.data_type
96    }
97
98    /// Returns the number of entries in this vector.
99    #[must_use]
100    pub fn len(&self) -> usize {
101        self.len
102    }
103
104    /// Returns true if this vector is empty.
105    #[must_use]
106    pub fn is_empty(&self) -> bool {
107        self.len == 0
108    }
109
110    /// Returns true if the value at index is null.
111    #[must_use]
112    pub fn is_null(&self, index: usize) -> bool {
113        self.validity
114            .as_ref()
115            .map_or(false, |v| !v.get(index).copied().unwrap_or(true))
116    }
117
118    /// Sets the value at index to null.
119    pub fn set_null(&mut self, index: usize) {
120        if self.validity.is_none() {
121            self.validity = Some(vec![true; index + 1]);
122        }
123        if let Some(validity) = &mut self.validity {
124            if validity.len() <= index {
125                validity.resize(index + 1, true);
126            }
127            validity[index] = false;
128        }
129    }
130
131    /// Pushes a boolean value.
132    pub fn push_bool(&mut self, value: bool) {
133        match &mut self.data {
134            VectorData::Bool(vec) => {
135                vec.push(value);
136                self.len += 1;
137            }
138            VectorData::Generic(vec) => {
139                vec.push(Value::Bool(value));
140                self.len += 1;
141            }
142            _ => {}
143        }
144    }
145
146    /// Pushes an integer value.
147    pub fn push_int64(&mut self, value: i64) {
148        match &mut self.data {
149            VectorData::Int64(vec) => {
150                vec.push(value);
151                self.len += 1;
152            }
153            VectorData::Generic(vec) => {
154                vec.push(Value::Int64(value));
155                self.len += 1;
156            }
157            _ => {}
158        }
159    }
160
161    /// Pushes a float value.
162    pub fn push_float64(&mut self, value: f64) {
163        match &mut self.data {
164            VectorData::Float64(vec) => {
165                vec.push(value);
166                self.len += 1;
167            }
168            VectorData::Generic(vec) => {
169                vec.push(Value::Float64(value));
170                self.len += 1;
171            }
172            _ => {}
173        }
174    }
175
176    /// Pushes a string value.
177    pub fn push_string(&mut self, value: impl Into<ArcStr>) {
178        match &mut self.data {
179            VectorData::String(vec) => {
180                vec.push(value.into());
181                self.len += 1;
182            }
183            VectorData::Generic(vec) => {
184                vec.push(Value::String(value.into()));
185                self.len += 1;
186            }
187            _ => {}
188        }
189    }
190
191    /// Pushes a node ID.
192    pub fn push_node_id(&mut self, value: NodeId) {
193        match &mut self.data {
194            VectorData::NodeId(vec) => {
195                vec.push(value);
196                self.len += 1;
197            }
198            VectorData::Generic(vec) => {
199                vec.push(Value::Int64(value.as_u64() as i64));
200                self.len += 1;
201            }
202            _ => {}
203        }
204    }
205
206    /// Pushes an edge ID.
207    pub fn push_edge_id(&mut self, value: EdgeId) {
208        match &mut self.data {
209            VectorData::EdgeId(vec) => {
210                vec.push(value);
211                self.len += 1;
212            }
213            VectorData::Generic(vec) => {
214                vec.push(Value::Int64(value.as_u64() as i64));
215                self.len += 1;
216            }
217            _ => {}
218        }
219    }
220
221    /// Pushes a generic value.
222    pub fn push_value(&mut self, value: Value) {
223        // Handle null values specially - push a default and mark as null
224        if matches!(value, Value::Null) {
225            match &mut self.data {
226                VectorData::Bool(vec) => vec.push(false),
227                VectorData::Int64(vec) => vec.push(0),
228                VectorData::Float64(vec) => vec.push(0.0),
229                VectorData::String(vec) => vec.push("".into()),
230                VectorData::NodeId(vec) => vec.push(NodeId::new(0)),
231                VectorData::EdgeId(vec) => vec.push(EdgeId::new(0)),
232                VectorData::Generic(vec) => vec.push(Value::Null),
233            }
234            self.len += 1;
235            self.set_null(self.len - 1);
236            return;
237        }
238
239        match (&mut self.data, &value) {
240            (VectorData::Bool(vec), Value::Bool(b)) => vec.push(*b),
241            (VectorData::Int64(vec), Value::Int64(i)) => vec.push(*i),
242            (VectorData::Float64(vec), Value::Float64(f)) => vec.push(*f),
243            (VectorData::String(vec), Value::String(s)) => vec.push(s.clone()),
244            // Handle Int64 -> NodeId conversion (from get_value roundtrip)
245            (VectorData::NodeId(vec), Value::Int64(i)) => vec.push(NodeId::new(*i as u64)),
246            // Handle Int64 -> EdgeId conversion (from get_value roundtrip)
247            (VectorData::EdgeId(vec), Value::Int64(i)) => vec.push(EdgeId::new(*i as u64)),
248            (VectorData::Generic(vec), _) => vec.push(value),
249            _ => {
250                // Type mismatch - push a default value to maintain vector alignment
251                match &mut self.data {
252                    VectorData::Bool(vec) => vec.push(false),
253                    VectorData::Int64(vec) => vec.push(0),
254                    VectorData::Float64(vec) => vec.push(0.0),
255                    VectorData::String(vec) => vec.push("".into()),
256                    VectorData::NodeId(vec) => vec.push(NodeId::new(0)),
257                    VectorData::EdgeId(vec) => vec.push(EdgeId::new(0)),
258                    VectorData::Generic(vec) => vec.push(value),
259                }
260            }
261        }
262        self.len += 1;
263    }
264
265    /// Gets a boolean value at index.
266    #[must_use]
267    pub fn get_bool(&self, index: usize) -> Option<bool> {
268        if self.is_null(index) {
269            return None;
270        }
271        if let VectorData::Bool(vec) = &self.data {
272            vec.get(index).copied()
273        } else {
274            None
275        }
276    }
277
278    /// Gets an integer value at index.
279    #[must_use]
280    pub fn get_int64(&self, index: usize) -> Option<i64> {
281        if self.is_null(index) {
282            return None;
283        }
284        if let VectorData::Int64(vec) = &self.data {
285            vec.get(index).copied()
286        } else {
287            None
288        }
289    }
290
291    /// Gets a float value at index.
292    #[must_use]
293    pub fn get_float64(&self, index: usize) -> Option<f64> {
294        if self.is_null(index) {
295            return None;
296        }
297        if let VectorData::Float64(vec) = &self.data {
298            vec.get(index).copied()
299        } else {
300            None
301        }
302    }
303
304    /// Gets a string value at index.
305    #[must_use]
306    pub fn get_string(&self, index: usize) -> Option<&str> {
307        if self.is_null(index) {
308            return None;
309        }
310        if let VectorData::String(vec) = &self.data {
311            vec.get(index).map(|s| s.as_ref())
312        } else {
313            None
314        }
315    }
316
317    /// Gets a node ID at index.
318    #[must_use]
319    pub fn get_node_id(&self, index: usize) -> Option<NodeId> {
320        if self.is_null(index) {
321            return None;
322        }
323        match &self.data {
324            VectorData::NodeId(vec) => vec.get(index).copied(),
325            // Handle Generic vectors that contain node IDs stored as Int64
326            VectorData::Generic(vec) => match vec.get(index) {
327                Some(Value::Int64(i)) => Some(NodeId::new(*i as u64)),
328                _ => None,
329            },
330            _ => None,
331        }
332    }
333
334    /// Gets an edge ID at index.
335    #[must_use]
336    pub fn get_edge_id(&self, index: usize) -> Option<EdgeId> {
337        if self.is_null(index) {
338            return None;
339        }
340        match &self.data {
341            VectorData::EdgeId(vec) => vec.get(index).copied(),
342            // Handle Generic vectors that contain edge IDs stored as Int64
343            VectorData::Generic(vec) => match vec.get(index) {
344                Some(Value::Int64(i)) => Some(EdgeId::new(*i as u64)),
345                _ => None,
346            },
347            _ => None,
348        }
349    }
350
351    /// Gets a value at index as a generic Value.
352    #[must_use]
353    pub fn get_value(&self, index: usize) -> Option<Value> {
354        if self.is_null(index) {
355            return Some(Value::Null);
356        }
357
358        match &self.data {
359            VectorData::Bool(vec) => vec.get(index).map(|&v| Value::Bool(v)),
360            VectorData::Int64(vec) => vec.get(index).map(|&v| Value::Int64(v)),
361            VectorData::Float64(vec) => vec.get(index).map(|&v| Value::Float64(v)),
362            VectorData::String(vec) => vec.get(index).map(|v| Value::String(v.clone())),
363            VectorData::NodeId(vec) => vec.get(index).map(|&v| Value::Int64(v.as_u64() as i64)),
364            VectorData::EdgeId(vec) => vec.get(index).map(|&v| Value::Int64(v.as_u64() as i64)),
365            VectorData::Generic(vec) => vec.get(index).cloned(),
366        }
367    }
368
369    /// Alias for get_value.
370    #[must_use]
371    pub fn get(&self, index: usize) -> Option<Value> {
372        self.get_value(index)
373    }
374
375    /// Alias for push_value.
376    pub fn push(&mut self, value: Value) {
377        self.push_value(value);
378    }
379
380    /// Returns a slice of the underlying boolean data.
381    #[must_use]
382    pub fn as_bool_slice(&self) -> Option<&[bool]> {
383        if let VectorData::Bool(vec) = &self.data {
384            Some(vec)
385        } else {
386            None
387        }
388    }
389
390    /// Returns a slice of the underlying integer data.
391    #[must_use]
392    pub fn as_int64_slice(&self) -> Option<&[i64]> {
393        if let VectorData::Int64(vec) = &self.data {
394            Some(vec)
395        } else {
396            None
397        }
398    }
399
400    /// Returns a slice of the underlying float data.
401    #[must_use]
402    pub fn as_float64_slice(&self) -> Option<&[f64]> {
403        if let VectorData::Float64(vec) = &self.data {
404            Some(vec)
405        } else {
406            None
407        }
408    }
409
410    /// Returns a slice of the underlying node ID data.
411    #[must_use]
412    pub fn as_node_id_slice(&self) -> Option<&[NodeId]> {
413        if let VectorData::NodeId(vec) = &self.data {
414            Some(vec)
415        } else {
416            None
417        }
418    }
419
420    /// Returns a slice of the underlying edge ID data.
421    #[must_use]
422    pub fn as_edge_id_slice(&self) -> Option<&[EdgeId]> {
423        if let VectorData::EdgeId(vec) = &self.data {
424            Some(vec)
425        } else {
426            None
427        }
428    }
429
430    /// Returns the logical type of this vector.
431    #[must_use]
432    pub fn logical_type(&self) -> LogicalType {
433        self.data_type.clone()
434    }
435
436    /// Copies a row from this vector to the destination vector.
437    ///
438    /// The destination vector should have a compatible type. The value at `row`
439    /// is read from this vector and pushed to the destination vector.
440    pub fn copy_row_to(&self, row: usize, dest: &mut ValueVector) {
441        if self.is_null(row) {
442            dest.push_value(Value::Null);
443            return;
444        }
445
446        match &self.data {
447            VectorData::Bool(vec) => {
448                if let Some(&v) = vec.get(row) {
449                    dest.push_bool(v);
450                }
451            }
452            VectorData::Int64(vec) => {
453                if let Some(&v) = vec.get(row) {
454                    dest.push_int64(v);
455                }
456            }
457            VectorData::Float64(vec) => {
458                if let Some(&v) = vec.get(row) {
459                    dest.push_float64(v);
460                }
461            }
462            VectorData::String(vec) => {
463                if let Some(v) = vec.get(row) {
464                    dest.push_string(v.clone());
465                }
466            }
467            VectorData::NodeId(vec) => {
468                if let Some(&v) = vec.get(row) {
469                    dest.push_node_id(v);
470                }
471            }
472            VectorData::EdgeId(vec) => {
473                if let Some(&v) = vec.get(row) {
474                    dest.push_edge_id(v);
475                }
476            }
477            VectorData::Generic(vec) => {
478                if let Some(v) = vec.get(row) {
479                    dest.push_value(v.clone());
480                }
481            }
482        }
483    }
484
485    /// Clears all data from this vector.
486    pub fn clear(&mut self) {
487        match &mut self.data {
488            VectorData::Bool(vec) => vec.clear(),
489            VectorData::Int64(vec) => vec.clear(),
490            VectorData::Float64(vec) => vec.clear(),
491            VectorData::String(vec) => vec.clear(),
492            VectorData::NodeId(vec) => vec.clear(),
493            VectorData::EdgeId(vec) => vec.clear(),
494            VectorData::Generic(vec) => vec.clear(),
495        }
496        self.len = 0;
497        self.validity = None;
498    }
499}
500
501impl Default for ValueVector {
502    fn default() -> Self {
503        Self::new()
504    }
505}
506
507#[cfg(test)]
508mod tests {
509    use super::*;
510
511    #[test]
512    fn test_int64_vector() {
513        let mut vec = ValueVector::with_type(LogicalType::Int64);
514
515        vec.push_int64(1);
516        vec.push_int64(2);
517        vec.push_int64(3);
518
519        assert_eq!(vec.len(), 3);
520        assert_eq!(vec.get_int64(0), Some(1));
521        assert_eq!(vec.get_int64(1), Some(2));
522        assert_eq!(vec.get_int64(2), Some(3));
523    }
524
525    #[test]
526    fn test_string_vector() {
527        let mut vec = ValueVector::with_type(LogicalType::String);
528
529        vec.push_string("hello");
530        vec.push_string("world");
531
532        assert_eq!(vec.len(), 2);
533        assert_eq!(vec.get_string(0), Some("hello"));
534        assert_eq!(vec.get_string(1), Some("world"));
535    }
536
537    #[test]
538    fn test_null_values() {
539        let mut vec = ValueVector::with_type(LogicalType::Int64);
540
541        vec.push_int64(1);
542        vec.push_int64(2);
543        vec.push_int64(3);
544
545        assert!(!vec.is_null(1));
546        vec.set_null(1);
547        assert!(vec.is_null(1));
548
549        assert_eq!(vec.get_int64(0), Some(1));
550        assert_eq!(vec.get_int64(1), None); // Null
551        assert_eq!(vec.get_int64(2), Some(3));
552    }
553
554    #[test]
555    fn test_get_value() {
556        let mut vec = ValueVector::with_type(LogicalType::Int64);
557        vec.push_int64(42);
558
559        let value = vec.get_value(0);
560        assert_eq!(value, Some(Value::Int64(42)));
561    }
562
563    #[test]
564    fn test_slice_access() {
565        let mut vec = ValueVector::with_type(LogicalType::Int64);
566        vec.push_int64(1);
567        vec.push_int64(2);
568        vec.push_int64(3);
569
570        let slice = vec.as_int64_slice().unwrap();
571        assert_eq!(slice, &[1, 2, 3]);
572    }
573
574    /// Typed push methods fall back to VectorData::Generic when the vector
575    /// was created with LogicalType::Any. This exercises the safety-net arms
576    /// added to prevent silent data loss on type mismatch.
577    #[test]
578    fn test_generic_fallback_push_int64() {
579        let mut vec = ValueVector::with_type(LogicalType::Any);
580        vec.push_int64(42);
581        vec.push_int64(-7);
582        assert_eq!(vec.len(), 2);
583        assert_eq!(vec.get_value(0), Some(Value::Int64(42)));
584        assert_eq!(vec.get_value(1), Some(Value::Int64(-7)));
585    }
586
587    #[test]
588    fn test_generic_fallback_push_bool() {
589        let mut vec = ValueVector::with_type(LogicalType::Any);
590        vec.push_bool(true);
591        vec.push_bool(false);
592        assert_eq!(vec.len(), 2);
593        assert_eq!(vec.get_value(0), Some(Value::Bool(true)));
594        assert_eq!(vec.get_value(1), Some(Value::Bool(false)));
595    }
596
597    #[test]
598    fn test_generic_fallback_push_float64() {
599        let mut vec = ValueVector::with_type(LogicalType::Any);
600        vec.push_float64(1.23);
601        vec.push_float64(-0.5);
602        assert_eq!(vec.len(), 2);
603        assert_eq!(vec.get_value(0), Some(Value::Float64(1.23)));
604        assert_eq!(vec.get_value(1), Some(Value::Float64(-0.5)));
605    }
606
607    #[test]
608    fn test_generic_fallback_push_string() {
609        let mut vec = ValueVector::with_type(LogicalType::Any);
610        vec.push_string("hello");
611        vec.push_string("world");
612        assert_eq!(vec.len(), 2);
613        assert_eq!(vec.get_value(0), Some(Value::String("hello".into())));
614        assert_eq!(vec.get_value(1), Some(Value::String("world".into())));
615    }
616
617    /// Mixed typed pushes into a Generic vector preserve each value's type.
618    #[test]
619    fn test_generic_fallback_mixed_types() {
620        let mut vec = ValueVector::with_type(LogicalType::Any);
621        vec.push_int64(1);
622        vec.push_string("two");
623        vec.push_bool(true);
624        vec.push_float64(99.5);
625        assert_eq!(vec.len(), 4);
626        assert_eq!(vec.get_value(0), Some(Value::Int64(1)));
627        assert_eq!(vec.get_value(1), Some(Value::String("two".into())));
628        assert_eq!(vec.get_value(2), Some(Value::Bool(true)));
629        assert_eq!(vec.get_value(3), Some(Value::Float64(99.5)));
630    }
631
632    /// Pushing a typed value into a mismatched non-Generic vector is a no-op.
633    #[test]
634    fn test_type_mismatch_noop() {
635        let mut vec = ValueVector::with_type(LogicalType::Int64);
636        vec.push_string("wrong type");
637        assert_eq!(vec.len(), 0);
638
639        let mut vec = ValueVector::with_type(LogicalType::String);
640        vec.push_int64(42);
641        assert_eq!(vec.len(), 0);
642    }
643
644    #[test]
645    fn test_clear() {
646        let mut vec = ValueVector::with_type(LogicalType::Int64);
647        vec.push_int64(1);
648        vec.push_int64(2);
649
650        vec.clear();
651
652        assert!(vec.is_empty());
653        assert_eq!(vec.len(), 0);
654    }
655}