1use std::io;
24
25#[derive(Debug, Clone)]
30pub struct BitPackedInts {
31 data: Vec<u64>,
33 bits_per_value: u8,
35 count: usize,
37}
38
39impl BitPackedInts {
40 #[must_use]
42 pub fn pack(values: &[u64]) -> Self {
43 if values.is_empty() {
44 return Self {
45 data: Vec::new(),
46 bits_per_value: 0,
47 count: 0,
48 };
49 }
50
51 let max_value = values.iter().copied().max().unwrap_or(0);
52 let bits = Self::bits_needed(max_value);
53 Self::pack_with_bits(values, bits)
54 }
55
56 #[must_use]
62 pub fn pack_with_bits(values: &[u64], bits_per_value: u8) -> Self {
63 if values.is_empty() {
64 return Self {
65 data: Vec::new(),
66 bits_per_value,
67 count: 0,
68 };
69 }
70
71 if bits_per_value == 0 {
72 debug_assert!(values.iter().all(|&v| v == 0));
74 return Self {
75 data: Vec::new(),
76 bits_per_value: 0,
77 count: values.len(),
78 };
79 }
80
81 let bits = bits_per_value as usize;
82 let values_per_word = 64 / bits;
83 let num_words = (values.len() + values_per_word - 1) / values_per_word;
84
85 let mut data = vec![0u64; num_words];
86 let mask = if bits >= 64 {
87 u64::MAX
88 } else {
89 (1u64 << bits) - 1
90 };
91
92 for (i, &value) in values.iter().enumerate() {
93 debug_assert!(
94 value <= mask,
95 "Value {} doesn't fit in {} bits",
96 value,
97 bits_per_value
98 );
99
100 let word_idx = i / values_per_word;
101 let bit_offset = (i % values_per_word) * bits;
102 data[word_idx] |= (value & mask) << bit_offset;
103 }
104
105 Self {
106 data,
107 bits_per_value,
108 count: values.len(),
109 }
110 }
111
112 #[must_use]
114 pub fn unpack(&self) -> Vec<u64> {
115 if self.count == 0 {
116 return Vec::new();
117 }
118
119 if self.bits_per_value == 0 {
120 return vec![0u64; self.count];
121 }
122
123 let bits = self.bits_per_value as usize;
124 let values_per_word = 64 / bits;
125 let mask = if bits >= 64 {
126 u64::MAX
127 } else {
128 (1u64 << bits) - 1
129 };
130
131 let mut result = Vec::with_capacity(self.count);
132
133 for i in 0..self.count {
134 let word_idx = i / values_per_word;
135 let bit_offset = (i % values_per_word) * bits;
136 let value = (self.data[word_idx] >> bit_offset) & mask;
137 result.push(value);
138 }
139
140 result
141 }
142
143 #[must_use]
145 pub fn get(&self, index: usize) -> Option<u64> {
146 if index >= self.count {
147 return None;
148 }
149
150 if self.bits_per_value == 0 {
151 return Some(0);
152 }
153
154 let bits = self.bits_per_value as usize;
155 let values_per_word = 64 / bits;
156 let word_idx = index / values_per_word;
157 let bit_offset = (index % values_per_word) * bits;
158 let mask = if bits >= 64 {
159 u64::MAX
160 } else {
161 (1u64 << bits) - 1
162 };
163
164 Some((self.data[word_idx] >> bit_offset) & mask)
165 }
166
167 #[must_use]
169 pub fn len(&self) -> usize {
170 self.count
171 }
172
173 #[must_use]
175 pub fn is_empty(&self) -> bool {
176 self.count == 0
177 }
178
179 #[must_use]
181 pub fn bits_per_value(&self) -> u8 {
182 self.bits_per_value
183 }
184
185 #[must_use]
187 pub fn data(&self) -> &[u64] {
188 &self.data
189 }
190
191 #[must_use]
193 pub fn compression_ratio(&self) -> f64 {
194 if self.count == 0 {
195 return 1.0;
196 }
197
198 let original_size = self.count * 8; let packed_size = self.data.len() * 8;
200
201 if packed_size == 0 {
202 return f64::INFINITY; }
204
205 original_size as f64 / packed_size as f64
206 }
207
208 #[must_use]
210 pub fn bits_needed(value: u64) -> u8 {
211 if value == 0 {
212 1 } else {
214 64 - value.leading_zeros() as u8
215 }
216 }
217
218 pub fn to_bytes(&self) -> Vec<u8> {
220 let mut buf = Vec::with_capacity(1 + 4 + self.data.len() * 8);
221 buf.push(self.bits_per_value);
222 buf.extend_from_slice(&(self.count as u32).to_le_bytes());
223 for &word in &self.data {
224 buf.extend_from_slice(&word.to_le_bytes());
225 }
226 buf
227 }
228
229 pub fn from_bytes(bytes: &[u8]) -> io::Result<Self> {
231 if bytes.len() < 5 {
232 return Err(io::Error::new(
233 io::ErrorKind::InvalidData,
234 "BitPackedInts too short",
235 ));
236 }
237
238 let bits_per_value = bytes[0];
239 let count = u32::from_le_bytes(
240 bytes[1..5]
241 .try_into()
242 .map_err(|e| io::Error::new(io::ErrorKind::InvalidData, e))?,
243 ) as usize;
244
245 let num_words = if bits_per_value == 0 || count == 0 {
246 0
247 } else {
248 let values_per_word = 64 / bits_per_value as usize;
249 (count + values_per_word - 1) / values_per_word
250 };
251
252 if bytes.len() < 5 + num_words * 8 {
253 return Err(io::Error::new(
254 io::ErrorKind::InvalidData,
255 "BitPackedInts truncated",
256 ));
257 }
258
259 let mut data = Vec::with_capacity(num_words);
260 for i in 0..num_words {
261 let offset = 5 + i * 8;
262 let word = u64::from_le_bytes(
263 bytes[offset..offset + 8]
264 .try_into()
265 .map_err(|e| io::Error::new(io::ErrorKind::InvalidData, e))?,
266 );
267 data.push(word);
268 }
269
270 Ok(Self {
271 data,
272 bits_per_value,
273 count,
274 })
275 }
276}
277
278#[derive(Debug, Clone)]
284pub struct DeltaBitPacked {
285 base: u64,
287 deltas: BitPackedInts,
289}
290
291impl DeltaBitPacked {
292 #[must_use]
294 pub fn encode(values: &[u64]) -> Self {
295 if values.is_empty() {
296 return Self {
297 base: 0,
298 deltas: BitPackedInts::pack(&[]),
299 };
300 }
301
302 let base = values[0];
303 let delta_values: Vec<u64> = values
304 .windows(2)
305 .map(|w| w[1].saturating_sub(w[0]))
306 .collect();
307
308 let deltas = BitPackedInts::pack(&delta_values);
309
310 Self { base, deltas }
311 }
312
313 #[must_use]
315 pub fn decode(&self) -> Vec<u64> {
316 if self.deltas.is_empty() && self.base == 0 {
317 return Vec::new();
318 }
319
320 let delta_values = self.deltas.unpack();
321 let mut result = Vec::with_capacity(delta_values.len() + 1);
322 let mut current = self.base;
323 result.push(current);
324
325 for delta in delta_values {
326 current = current.wrapping_add(delta);
327 result.push(current);
328 }
329
330 result
331 }
332
333 #[must_use]
335 pub fn len(&self) -> usize {
336 if self.deltas.is_empty() && self.base == 0 {
337 0
338 } else {
339 self.deltas.len() + 1
340 }
341 }
342
343 #[must_use]
345 pub fn is_empty(&self) -> bool {
346 self.deltas.is_empty() && self.base == 0
347 }
348
349 #[must_use]
351 pub fn base(&self) -> u64 {
352 self.base
353 }
354
355 #[must_use]
357 pub fn bits_per_delta(&self) -> u8 {
358 self.deltas.bits_per_value()
359 }
360
361 #[must_use]
363 pub fn compression_ratio(&self) -> f64 {
364 let count = self.len();
365 if count == 0 {
366 return 1.0;
367 }
368
369 let original_size = count * 8;
370 let packed_size = 8 + self.deltas.data().len() * 8; original_size as f64 / packed_size as f64
373 }
374
375 pub fn to_bytes(&self) -> Vec<u8> {
377 let delta_bytes = self.deltas.to_bytes();
378 let mut buf = Vec::with_capacity(8 + delta_bytes.len());
379 buf.extend_from_slice(&self.base.to_le_bytes());
380 buf.extend_from_slice(&delta_bytes);
381 buf
382 }
383
384 pub fn from_bytes(bytes: &[u8]) -> io::Result<Self> {
386 if bytes.len() < 8 {
387 return Err(io::Error::new(
388 io::ErrorKind::InvalidData,
389 "DeltaBitPacked too short",
390 ));
391 }
392
393 let base = u64::from_le_bytes(
394 bytes[0..8]
395 .try_into()
396 .map_err(|e| io::Error::new(io::ErrorKind::InvalidData, e))?,
397 );
398 let deltas = BitPackedInts::from_bytes(&bytes[8..])?;
399
400 Ok(Self { base, deltas })
401 }
402}
403
404#[cfg(test)]
405mod tests {
406 use super::*;
407
408 #[test]
409 fn test_bitpack_basic() {
410 let values = vec![5u64, 2, 3, 5, 5, 8, 2];
411 let packed = BitPackedInts::pack(&values);
412 let unpacked = packed.unpack();
413 assert_eq!(values, unpacked);
414 }
415
416 #[test]
417 fn test_bitpack_empty() {
418 let values: Vec<u64> = vec![];
419 let packed = BitPackedInts::pack(&values);
420 assert!(packed.is_empty());
421 assert_eq!(packed.unpack(), values);
422 }
423
424 #[test]
425 fn test_bitpack_single() {
426 let values = vec![42u64];
427 let packed = BitPackedInts::pack(&values);
428 assert_eq!(packed.len(), 1);
429 assert_eq!(packed.unpack(), values);
430 }
431
432 #[test]
433 fn test_bitpack_all_zeros() {
434 let values = vec![0u64; 100];
435 let packed = BitPackedInts::pack(&values);
436 assert_eq!(packed.bits_per_value(), 1);
437 assert_eq!(packed.unpack(), values);
438 }
439
440 #[test]
441 fn test_bitpack_powers_of_two() {
442 for bits in 1..=64u8 {
443 let max_val = if bits == 64 {
444 u64::MAX
445 } else {
446 (1u64 << bits) - 1
447 };
448 let values = vec![0, max_val / 2, max_val];
449 let packed = BitPackedInts::pack(&values);
450 assert_eq!(packed.bits_per_value(), bits);
451 assert_eq!(packed.unpack(), values);
452 }
453 }
454
455 #[test]
456 fn test_bitpack_get() {
457 let values = vec![1u64, 2, 3, 4, 5];
458 let packed = BitPackedInts::pack(&values);
459
460 for (i, &expected) in values.iter().enumerate() {
461 assert_eq!(packed.get(i), Some(expected));
462 }
463 assert_eq!(packed.get(100), None);
464 }
465
466 #[test]
467 fn test_bitpack_compression() {
468 let values: Vec<u64> = (0..100).map(|i| i % 16).collect();
470 let packed = BitPackedInts::pack(&values);
471 assert_eq!(packed.bits_per_value(), 4);
472 let ratio = packed.compression_ratio();
474 assert!(ratio > 10.0, "Expected ratio > 10, got {}", ratio);
475 }
476
477 #[test]
478 fn test_bitpack_serialization() {
479 let values = vec![1u64, 3, 7, 15, 31];
480 let packed = BitPackedInts::pack(&values);
481 let bytes = packed.to_bytes();
482 let restored = BitPackedInts::from_bytes(&bytes).unwrap();
483 assert_eq!(packed.unpack(), restored.unpack());
484 }
485
486 #[test]
487 fn test_delta_bitpacked_basic() {
488 let values = vec![100u64, 105, 107, 110, 115, 120, 128, 130];
489 let encoded = DeltaBitPacked::encode(&values);
490 let decoded = encoded.decode();
491 assert_eq!(values, decoded);
492 }
493
494 #[test]
495 fn test_delta_bitpacked_sequential() {
496 let values: Vec<u64> = (1000..1100).collect();
498 let encoded = DeltaBitPacked::encode(&values);
499 assert_eq!(encoded.bits_per_delta(), 1);
500 assert_eq!(encoded.decode(), values);
501
502 let ratio = encoded.compression_ratio();
504 assert!(ratio > 5.0, "Expected ratio > 5, got {}", ratio);
505 }
506
507 #[test]
508 fn test_delta_bitpacked_empty() {
509 let values: Vec<u64> = vec![];
510 let encoded = DeltaBitPacked::encode(&values);
511 assert!(encoded.is_empty());
512 assert_eq!(encoded.decode(), values);
513 }
514
515 #[test]
516 fn test_delta_bitpacked_single() {
517 let values = vec![42u64];
518 let encoded = DeltaBitPacked::encode(&values);
519 assert_eq!(encoded.len(), 1);
520 assert_eq!(encoded.decode(), values);
521 }
522
523 #[test]
524 fn test_delta_bitpacked_serialization() {
525 let values = vec![100u64, 105, 107, 110, 115];
526 let encoded = DeltaBitPacked::encode(&values);
527 let bytes = encoded.to_bytes();
528 let restored = DeltaBitPacked::from_bytes(&bytes).unwrap();
529 assert_eq!(encoded.decode(), restored.decode());
530 }
531
532 #[test]
533 fn test_bits_needed() {
534 assert_eq!(BitPackedInts::bits_needed(0), 1);
535 assert_eq!(BitPackedInts::bits_needed(1), 1);
536 assert_eq!(BitPackedInts::bits_needed(2), 2);
537 assert_eq!(BitPackedInts::bits_needed(3), 2);
538 assert_eq!(BitPackedInts::bits_needed(4), 3);
539 assert_eq!(BitPackedInts::bits_needed(7), 3);
540 assert_eq!(BitPackedInts::bits_needed(8), 4);
541 assert_eq!(BitPackedInts::bits_needed(255), 8);
542 assert_eq!(BitPackedInts::bits_needed(256), 9);
543 assert_eq!(BitPackedInts::bits_needed(u64::MAX), 64);
544 }
545}