velesdb_core/column_store/
vacuum.rs1use super::types::{TypedColumn, VacuumConfig, VacuumStats};
7use super::ColumnStore;
8
9use roaring::RoaringBitmap;
10use std::collections::HashMap;
11
12fn compact_vec<T: Copy>(
14 data: &[T],
15 deleted: &rustc_hash::FxHashSet<usize>,
16 element_bytes: u64,
17) -> (Vec<T>, u64) {
18 let mut new_data = Vec::with_capacity(data.len().saturating_sub(deleted.len()));
19 let mut bytes_reclaimed = 0u64;
20 for (idx, value) in data.iter().enumerate() {
21 if deleted.contains(&idx) {
22 bytes_reclaimed += element_bytes;
23 } else {
24 new_data.push(*value);
25 }
26 }
27 (new_data, bytes_reclaimed)
28}
29
30fn compact_vec_clone<T: Clone>(
32 data: &[T],
33 deleted: &rustc_hash::FxHashSet<usize>,
34 element_bytes: u64,
35) -> (Vec<T>, u64) {
36 let mut new_data = Vec::with_capacity(data.len().saturating_sub(deleted.len()));
37 let mut bytes_reclaimed = 0u64;
38 for (idx, value) in data.iter().enumerate() {
39 if deleted.contains(&idx) {
40 bytes_reclaimed += element_bytes;
41 } else {
42 new_data.push(value.clone());
43 }
44 }
45 (new_data, bytes_reclaimed)
46}
47
48impl ColumnStore {
49 pub fn vacuum(&mut self, _config: VacuumConfig) -> VacuumStats {
65 let start = std::time::Instant::now();
66 let tombstones_found = self.deleted_rows.len();
67
68 if tombstones_found == 0 {
69 return VacuumStats {
70 tombstones_found: 0,
71 completed: true,
72 duration_ms: start.elapsed().as_millis() as u64,
73 ..Default::default()
74 };
75 }
76
77 let mut stats = VacuumStats {
78 tombstones_found,
79 ..Default::default()
80 };
81
82 let (old_to_new, new_row_count) = self.build_compaction_map();
83 self.compact_all_columns(&mut stats);
84 self.remap_primary_index(&old_to_new);
85 self.remap_row_expiry(&old_to_new);
86
87 stats.tombstones_removed = self.deleted_rows.len();
88 self.deleted_rows.clear();
89 self.deletion_bitmap.clear();
90 self.row_count = new_row_count;
91
92 stats.completed = true;
93 stats.duration_ms = start.elapsed().as_millis() as u64;
94 stats
95 }
96
97 fn build_compaction_map(&self) -> (HashMap<usize, usize>, usize) {
99 let mut old_to_new: HashMap<usize, usize> = HashMap::new();
100 let mut new_idx = 0;
101 for old_idx in 0..self.row_count {
102 if !self.deleted_rows.contains(&old_idx) {
103 old_to_new.insert(old_idx, new_idx);
104 new_idx += 1;
105 }
106 }
107 (old_to_new, new_idx)
108 }
109
110 fn compact_all_columns(&mut self, stats: &mut VacuumStats) {
112 for column in self.columns.values_mut() {
113 let (new_col, bytes) = Self::compact_column(column, &self.deleted_rows);
114 stats.bytes_reclaimed += bytes;
115 *column = new_col;
116 }
117 }
118
119 fn remap_primary_index(&mut self, old_to_new: &HashMap<usize, usize>) {
121 if self.primary_key_column.is_none() {
122 return;
123 }
124 let mut new_primary_index: HashMap<i64, usize> = HashMap::new();
125 let mut new_row_idx_to_pk: HashMap<usize, i64> = HashMap::new();
126 for (pk, old_idx) in &self.primary_index {
127 if let Some(&new_idx) = old_to_new.get(old_idx) {
128 new_primary_index.insert(*pk, new_idx);
129 new_row_idx_to_pk.insert(new_idx, *pk);
130 }
131 }
132 self.primary_index = new_primary_index;
133 self.row_idx_to_pk = new_row_idx_to_pk;
134 }
135
136 fn remap_row_expiry(&mut self, old_to_new: &HashMap<usize, usize>) {
138 let mut new_row_expiry: HashMap<usize, u64> = HashMap::new();
139 for (old_idx, expiry) in &self.row_expiry {
140 if let Some(&new_idx) = old_to_new.get(old_idx) {
141 new_row_expiry.insert(new_idx, *expiry);
142 }
143 }
144 self.row_expiry = new_row_expiry;
145 }
146
147 fn compact_column(
149 column: &TypedColumn,
150 deleted: &rustc_hash::FxHashSet<usize>,
151 ) -> (TypedColumn, u64) {
152 match column {
153 TypedColumn::Int(data) => {
154 let (new_data, bytes) = compact_vec(data, deleted, 8);
155 (TypedColumn::Int(new_data), bytes)
156 }
157 TypedColumn::Float(data) => {
158 let (new_data, bytes) = compact_vec(data, deleted, 8);
159 (TypedColumn::Float(new_data), bytes)
160 }
161 TypedColumn::String(data) => {
162 let (new_data, bytes) = compact_vec(data, deleted, 4);
163 (TypedColumn::String(new_data), bytes)
164 }
165 TypedColumn::Bool(data) => {
166 let (new_data, bytes) = compact_vec(data, deleted, 1);
167 (TypedColumn::Bool(new_data), bytes)
168 }
169 TypedColumn::Array {
170 element_type, data, ..
171 } => {
172 let (new_data, bytes) = compact_vec_clone(data, deleted, 64);
174 (
175 TypedColumn::Array {
176 element_type: element_type.clone(),
177 data: new_data,
178 },
179 bytes,
180 )
181 }
182 TypedColumn::GeoPoint(data) => {
183 let (new_data, bytes) = compact_vec(data, deleted, 16);
184 (TypedColumn::GeoPoint(new_data), bytes)
185 }
186 }
187 }
188
189 #[must_use]
195 pub fn should_vacuum(&self, threshold: f64) -> bool {
196 if self.row_count == 0 {
197 return false;
198 }
199 let ratio = self.deleted_rows.len() as f64 / self.row_count as f64;
200 ratio >= threshold
201 }
202
203 #[must_use]
211 #[inline]
212 pub fn is_row_deleted_bitmap(&self, row_idx: usize) -> bool {
213 if let Ok(idx) = u32::try_from(row_idx) {
214 self.deletion_bitmap.contains(idx)
215 } else {
216 self.deleted_rows.contains(&row_idx)
218 }
219 }
220
221 pub fn live_row_indices(&self) -> impl Iterator<Item = usize> + '_ {
225 (0..self.row_count).filter(|&idx| !self.is_row_deleted_bitmap(idx))
226 }
227
228 #[must_use]
230 pub fn deletion_bitmap(&self) -> &RoaringBitmap {
231 &self.deletion_bitmap
232 }
233
234 #[must_use]
236 pub fn deleted_count_bitmap(&self) -> u64 {
237 self.deletion_bitmap.len()
238 }
239}