1use crate::footer::Precision;
3use ailake_core::{AilakeError, AilakeResult, Centroid, VectorMetric};
4use ailake_index::{AnyIndex, HnswIndex, IvfPqSerializer, MmapLoader};
5use ailake_parquet::ParquetVectorReader;
6use arrow_array::RecordBatch;
7use bytes::Bytes;
8
9use crate::footer::{
10 parquet_footer_start, AilakeHeader, AilakeTrailer, DistanceMetric, FLAG_INDEX_IVF_PQ,
11 HEADER_SIZE, TRAILER_SIZE,
12};
13
14pub struct AilakeFileReader {
15 bytes: Bytes,
16 vector_column: String,
17 #[allow(dead_code)]
18 dim: u32,
19}
20
21impl AilakeFileReader {
22 pub fn new(bytes: Bytes, vector_column: &str, dim: u32) -> Self {
23 Self {
24 bytes,
25 vector_column: vector_column.to_string(),
26 dim,
27 }
28 }
29
30 pub fn ailk_offset(&self) -> AilakeResult<u64> {
36 let reader = ParquetVectorReader::new(self.bytes.clone(), &self.vector_column);
37 if let Some(val) = reader.kv_metadata("ailake.footer_offset")? {
38 return val.parse::<u64>().map_err(|_| AilakeError::NotAnAilakeFile);
39 }
40 self.ailk_offset_from_trailer()
41 }
42
43 pub fn ailk_offset_for_column(&self, column: &str) -> AilakeResult<u64> {
50 let reader = ParquetVectorReader::new(self.bytes.clone(), column);
51 let col_key = format!("ailake.{column}.footer_offset");
52 if let Some(val) = reader.kv_metadata(&col_key)? {
53 return val.parse::<u64>().map_err(|_| AilakeError::NotAnAilakeFile);
54 }
55 if let Some(val) = reader.kv_metadata("ailake.footer_offset")? {
56 return val.parse::<u64>().map_err(|_| AilakeError::NotAnAilakeFile);
57 }
58 self.ailk_offset_from_trailer()
59 }
60
61 fn ailk_offset_from_trailer(&self) -> AilakeResult<u64> {
68 let buf = self.bytes.as_ref();
69 let footer_start = parquet_footer_start(buf)?;
70 if footer_start < TRAILER_SIZE {
71 return Err(AilakeError::NotAnAilakeFile);
72 }
73 let trailer_start = footer_start - TRAILER_SIZE;
74 let trailer_bytes: &[u8; TRAILER_SIZE] = buf[trailer_start..footer_start]
75 .try_into()
76 .map_err(|_| AilakeError::NotAnAilakeFile)?;
77 let trailer = AilakeTrailer::from_bytes(trailer_bytes)?;
78 Ok(trailer.footer_offset)
79 }
80
81 pub fn is_ailake_file(&self) -> bool {
83 self.ailk_offset().is_ok()
84 }
85
86 pub fn read_header(&self) -> AilakeResult<AilakeHeader> {
88 self.read_header_at_offset(self.ailk_offset()?)
89 }
90
91 pub fn read_header_for_column(&self, column: &str) -> AilakeResult<AilakeHeader> {
96 self.read_header_at_offset(self.ailk_offset_for_column(column)?)
97 }
98
99 fn read_header_at_offset(&self, offset: u64) -> AilakeResult<AilakeHeader> {
100 let offset = offset as usize;
101 if offset + HEADER_SIZE > self.bytes.len() {
102 return Err(AilakeError::NotAnAilakeFile);
103 }
104 let header_bytes: &[u8; HEADER_SIZE] = self.bytes[offset..offset + HEADER_SIZE]
105 .try_into()
106 .map_err(|_| AilakeError::NotAnAilakeFile)?;
107 AilakeHeader::from_bytes(header_bytes)
108 }
109
110 pub fn get_centroid(&self) -> AilakeResult<Centroid> {
112 let ailk_start = self.ailk_offset()? as usize;
113 let header = self.read_header()?;
114 let centroid_start = ailk_start + header.centroid_offset as usize;
115 let centroid_end = centroid_start + header.centroid_len as usize;
116
117 if centroid_end > self.bytes.len() {
118 return Err(AilakeError::NotAnAilakeFile);
119 }
120
121 let centroid_data = &self.bytes[centroid_start..centroid_end];
122 let dim = header.dim as usize;
123 let expected_len = dim * 4 + 4;
124 if centroid_data.len() != expected_len {
125 return Err(AilakeError::InvalidCentroidLength {
126 expected_dim: header.dim,
127 actual: centroid_data.len(),
128 });
129 }
130
131 let values: Vec<f32> = centroid_data[..dim * 4]
132 .chunks_exact(4)
133 .map(|b| f32::from_le_bytes(b.try_into().unwrap()))
134 .collect();
135 let radius = f32::from_le_bytes(centroid_data[dim * 4..].try_into().unwrap());
136 let metric = distance_metric_to_vector_metric(header.distance_metric);
137
138 Ok(Centroid {
139 values,
140 radius,
141 metric,
142 })
143 }
144
145 pub fn load_index(&self) -> AilakeResult<HnswIndex> {
147 self.load_index_for_column(&self.vector_column.clone())
148 }
149
150 pub fn load_index_for_column(&self, column: &str) -> AilakeResult<HnswIndex> {
155 let ailk_start = self.ailk_offset_for_column(column)? as usize;
156
157 if ailk_start + HEADER_SIZE > self.bytes.len() {
158 return Err(AilakeError::NotAnAilakeFile);
159 }
160 let header_bytes: &[u8; HEADER_SIZE] = self.bytes[ailk_start..ailk_start + HEADER_SIZE]
161 .try_into()
162 .map_err(|_| AilakeError::NotAnAilakeFile)?;
163 let header = AilakeHeader::from_bytes(header_bytes)?;
164
165 let hnsw_start = ailk_start + header.hnsw_offset as usize;
166 let hnsw_end = hnsw_start + header.hnsw_len as usize;
167
168 if hnsw_end > self.bytes.len() {
169 return Err(AilakeError::NotAnAilakeFile);
170 }
171 let mut idx = MmapLoader::from_bytes(&self.bytes[hnsw_start..hnsw_end])?;
172 if header.precision == Precision::F16 {
173 idx.quantize_to_f16();
174 }
175 Ok(idx)
176 }
177
178 pub fn load_any_index(&self) -> AilakeResult<AnyIndex> {
180 self.load_any_index_for_column(&self.vector_column.clone())
181 }
182
183 pub fn load_any_index_for_column(&self, column: &str) -> AilakeResult<AnyIndex> {
185 let ailk_start = self.ailk_offset_for_column(column)? as usize;
186
187 if ailk_start + HEADER_SIZE > self.bytes.len() {
188 return Err(AilakeError::NotAnAilakeFile);
189 }
190 let header_bytes: &[u8; HEADER_SIZE] = self.bytes[ailk_start..ailk_start + HEADER_SIZE]
191 .try_into()
192 .map_err(|_| AilakeError::NotAnAilakeFile)?;
193 let header = AilakeHeader::from_bytes(header_bytes)?;
194
195 let index_start = ailk_start + header.hnsw_offset as usize;
196 let index_end = index_start + header.hnsw_len as usize;
197
198 if index_end > self.bytes.len() {
199 return Err(AilakeError::NotAnAilakeFile);
200 }
201 let index_bytes = &self.bytes[index_start..index_end];
202
203 if header.flags & FLAG_INDEX_IVF_PQ != 0 {
204 let idx = IvfPqSerializer::from_bytes(index_bytes)?;
205 Ok(AnyIndex::IvfPq(idx))
206 } else {
207 let mut idx = MmapLoader::from_bytes(index_bytes)?;
208 if header.precision == Precision::F16 {
209 idx.quantize_to_f16();
210 }
211 Ok(AnyIndex::Hnsw(idx))
212 }
213 }
214
215 pub fn read_parquet(&self) -> AilakeResult<(RecordBatch, Vec<Vec<f32>>)> {
218 let reader = ParquetVectorReader::new(self.bytes.clone(), &self.vector_column);
219 reader.read_all()
220 }
221
222 pub fn verify_integrity(&self) -> AilakeResult<()> {
224 let header = self.read_header()?;
225 let index = self.load_index()?;
226 let reader = ParquetVectorReader::new(self.bytes.clone(), &self.vector_column);
227 let parquet_count = reader.record_count()?;
228
229 if parquet_count != index.node_count() {
230 return Err(AilakeError::RowCountMismatch {
231 parquet: parquet_count,
232 hnsw: index.node_count(),
233 });
234 }
235 if parquet_count != header.record_count {
236 return Err(AilakeError::RowCountMismatch {
237 parquet: parquet_count,
238 hnsw: header.record_count,
239 });
240 }
241 Ok(())
242 }
243}
244
245fn distance_metric_to_vector_metric(dm: DistanceMetric) -> VectorMetric {
246 match dm {
247 DistanceMetric::Cosine => VectorMetric::Cosine,
248 DistanceMetric::Euclidean => VectorMetric::Euclidean,
249 DistanceMetric::DotProduct => VectorMetric::DotProduct,
250 DistanceMetric::NormalizedCosine => VectorMetric::NormalizedCosine,
251 }
252}
253
254#[cfg(test)]
255mod tests {
256 use super::*;
257 use crate::writer::AilakeFileWriter;
258 use ailake_core::{VectorMetric, VectorPrecision, VectorStoragePolicy};
259 use arrow_array::{Int32Array, RecordBatch};
260 use arrow_schema::{DataType, Field, Schema};
261 use std::sync::Arc;
262
263 fn make_policy(dim: u32) -> VectorStoragePolicy {
264 VectorStoragePolicy {
265 column_name: "embedding".to_string(),
266 dim,
267 metric: VectorMetric::Cosine,
268 precision: VectorPrecision::F16,
269 pq: None,
270 keep_raw_for_reranking: true,
271 pre_normalize: false,
272 hnsw_m: None,
273 hnsw_ef_construction: None,
274 ivf_residual: false,
275 embedding_model: None,
276 modality: None,
277 partition_by: None,
278 partition_value: None,
279 partition_column_type: None,
280 partition_fields: vec![],
281 }
282 }
283
284 fn write_file(rows: usize, dim: u32) -> Bytes {
285 let schema = Arc::new(Schema::new(vec![Field::new("id", DataType::Int32, false)]));
286 let ids: Vec<i32> = (0..rows as i32).collect();
287 let batch = RecordBatch::try_new(schema, vec![Arc::new(Int32Array::from(ids))]).unwrap();
288 let embs: Vec<Vec<f32>> = (0..rows)
289 .map(|i| {
290 let mut v = vec![0.0f32; dim as usize];
291 v[i % dim as usize] = 1.0;
292 v
293 })
294 .collect();
295 AilakeFileWriter::new(make_policy(dim))
296 .write(&batch, &embs)
297 .unwrap()
298 }
299
300 #[test]
301 fn is_ailake_file() {
302 let file = write_file(3, 4);
303 let reader = AilakeFileReader::new(file, "embedding", 4);
304 assert!(reader.is_ailake_file());
305 }
306
307 #[test]
308 fn integrity_check_passes() {
309 let file = write_file(10, 8);
310 let reader = AilakeFileReader::new(file, "embedding", 8);
311 reader.verify_integrity().unwrap();
312 }
313
314 #[test]
315 fn centroid_has_correct_dim() {
316 let file = write_file(5, 4);
317 let reader = AilakeFileReader::new(file, "embedding", 4);
318 let centroid = reader.get_centroid().unwrap();
319 assert_eq!(centroid.values.len(), 4);
320 }
321
322 #[test]
323 fn search_finds_nearest() {
324 let dim = 4u32;
325 let file = write_file(4, dim);
326 let reader = AilakeFileReader::new(file, "embedding", dim);
327 let index = reader.load_index().unwrap();
328 let query = vec![1.0f32, 0.0, 0.0, 0.0];
329 let results = index.search(&query, 1, 50);
330 assert_eq!(results.len(), 1);
331 assert_eq!(results[0].0, ailake_core::RowId::new(0));
332 }
333
334 #[test]
335 fn parquet_read_returns_tabular_data() {
336 let file = write_file(3, 4);
337 let reader = AilakeFileReader::new(file, "embedding", 4);
338 let (batch, embs) = reader.read_parquet().unwrap();
339 assert_eq!(batch.num_rows(), 3);
340 assert_eq!(embs.len(), 3);
341 }
342}