1use rudb_common::{Error, Result};
45
46use crate::chooser::{Chooser, EXHAUSTIVE};
47use crate::reader::Reader;
48
49use crate::bitpack::{self, VALUES};
50
51const MAX_DEPTH: u8 = 3;
58
59#[derive(Debug, Clone, Copy, PartialEq, Eq)]
62pub enum Kind {
63 Constant = 0,
65 Packed = 1,
68 Delta = 2,
71 Rle = 3,
73 Dict = 4,
76 Sparse = 5,
78}
79
80impl Kind {
81 fn tag(self) -> u8 {
82 self as u8
83 }
84
85 fn from_tag(tag: u8) -> Result<Self> {
86 match tag {
87 0 => Ok(Self::Constant),
88 1 => Ok(Self::Packed),
89 2 => Ok(Self::Delta),
90 3 => Ok(Self::Rle),
91 4 => Ok(Self::Dict),
92 5 => Ok(Self::Sparse),
93 other => Err(Error::internal(format!("unknown encoding tag {other}"))),
94 }
95 }
96
97 #[must_use]
99 pub fn name(self) -> &'static str {
100 match self {
101 Self::Constant => "CONSTANT",
102 Self::Packed => "FOR+BITPACK",
103 Self::Delta => "DELTA",
104 Self::Rle => "RLE",
105 Self::Dict => "DICT",
106 Self::Sparse => "SPARSE",
107 }
108 }
109}
110
111pub fn encode(values: &[i64]) -> Result<Vec<u8>> {
118 encode_with(values, &EXHAUSTIVE)
119}
120
121pub fn encode_with(values: &[i64], chooser: &dyn Chooser) -> Result<Vec<u8>> {
131 encode_at(values, 0, chooser)
132}
133
134pub fn decode(bytes: &[u8]) -> Result<Vec<i64>> {
141 let mut reader = Reader::new(bytes);
142 let values = decode_chunk(&mut reader)?;
143 if reader.remaining() != 0 {
144 return Err(Error::internal(format!(
145 "{} bytes left over after decoding a chunk",
146 reader.remaining()
147 )));
148 }
149 Ok(values)
150}
151
152pub fn decode_prefix(bytes: &[u8]) -> Result<(Vec<i64>, usize)> {
162 let mut reader = Reader::new(bytes);
163 let values = decode_chunk(&mut reader)?;
164 Ok((values, reader.used()))
165}
166
167pub fn describe_prefix(bytes: &[u8]) -> Result<(String, usize)> {
173 let mut reader = Reader::new(bytes);
174 let text = describe_chunk(&mut reader)?;
175 Ok((text, reader.used()))
176}
177
178pub fn candidate_sizes(values: &[i64]) -> Result<Vec<(Kind, usize)>> {
185 let mut sizes = Vec::new();
186 for kind in candidates(values, 0) {
187 if let Some(bytes) = encode_as(kind, values, 0, &EXHAUSTIVE)? {
188 sizes.push((kind, bytes.len()));
189 }
190 }
191 Ok(sizes)
192}
193
194#[must_use]
201pub fn offered(values: &[i64]) -> Vec<Kind> {
202 candidates(values, 0)
203}
204
205pub fn encode_only(kind: Kind, values: &[i64]) -> Result<Option<Vec<u8>>> {
216 encode_as(kind, values, 0, &EXHAUSTIVE)
217}
218
219pub(crate) fn size_as(kind: Kind, values: &[i64], depth: u8) -> Result<Option<usize>> {
224 Ok(encode_as(kind, values, depth, &EXHAUSTIVE)?.map(|bytes| bytes.len()))
225}
226
227pub fn describe(bytes: &[u8]) -> Result<String> {
233 let mut reader = Reader::new(bytes);
234 describe_chunk(&mut reader)
235}
236
237fn encode_at(values: &[i64], depth: u8, chooser: &dyn Chooser) -> Result<Vec<u8>> {
238 let offered = candidates(values, depth);
239 let mut best: Option<Vec<u8>> = None;
240 for kind in chooser.narrow_integers(values, &offered, depth) {
241 let Some(bytes) = encode_as(kind, values, depth, chooser)? else {
242 continue;
243 };
244 if best.as_ref().is_none_or(|current| bytes.len() < current.len()) {
245 best = Some(bytes);
246 }
247 }
248 best.ok_or_else(|| Error::internal("no encoding applied to the chunk"))
251}
252
253fn candidates(values: &[i64], depth: u8) -> Vec<Kind> {
260 let mut kinds = vec![Kind::Packed];
261 if depth >= MAX_DEPTH || values.is_empty() {
262 return kinds;
263 }
264 if values.iter().all(|value| *value == values[0]) {
265 return vec![Kind::Constant];
267 }
268 if values.len() >= 2 && deltas_fit(values) {
269 kinds.push(Kind::Delta);
270 }
271 if run_count(values) * 4 <= values.len() * 3 {
272 kinds.push(Kind::Rle);
273 }
274 let (distinct, dominant) = spread_of(values);
278 if distinct * 2 <= values.len() {
279 kinds.push(Kind::Dict);
280 }
281 match dominant {
284 Some((_, count)) if count * 10 >= values.len() * 8 => kinds.push(Kind::Sparse),
285 _ => {}
286 }
287 kinds
288}
289
290fn encode_as(
293 kind: Kind,
294 values: &[i64],
295 depth: u8,
296 chooser: &dyn Chooser,
297) -> Result<Option<Vec<u8>>> {
298 let mut out = Vec::new();
299 put_u8(&mut out, kind.tag());
300 put_u32(&mut out, u32::try_from(values.len()).map_err(|_| too_long(values.len()))?);
301 match kind {
302 Kind::Constant => {
303 let Some(first) = values.first() else {
304 return Ok(None);
305 };
306 if values.iter().any(|value| value != first) {
307 return Ok(None);
308 }
309 put_i64(&mut out, *first);
310 }
311 Kind::Packed => encode_packed(values, &mut out)?,
312 Kind::Delta => {
313 let Some(deltas) = deltas(values) else {
314 return Ok(None);
315 };
316 put_i64(&mut out, values[0]);
317 out.extend_from_slice(&encode_at(&deltas, depth + 1, chooser)?);
318 }
319 Kind::Rle => {
320 let (run_values, run_lengths) = runs(values);
321 if run_values.is_empty() {
322 return Ok(None);
323 }
324 out.extend_from_slice(&encode_at(&run_values, depth + 1, chooser)?);
325 out.extend_from_slice(&encode_at(&run_lengths, depth + 1, chooser)?);
326 }
327 Kind::Dict => {
328 let dictionary = distinct_values(values);
329 if dictionary.is_empty() {
330 return Ok(None);
331 }
332 let codes = codes_over(values, &dictionary);
333 out.extend_from_slice(&encode_at(&dictionary, depth + 1, chooser)?);
334 out.extend_from_slice(&encode_at(&codes, depth + 1, chooser)?);
335 }
336 Kind::Sparse => {
337 let Some((value, _)) = spread_of(values).1 else {
338 return Ok(None);
339 };
340 let mut positions = Vec::new();
341 let mut exceptions = Vec::new();
342 for (index, other) in values.iter().enumerate() {
343 if *other != value {
344 positions.push(index as i64);
345 exceptions.push(*other);
346 }
347 }
348 put_i64(&mut out, value);
349 put_u32(
350 &mut out,
351 u32::try_from(positions.len()).map_err(|_| too_long(positions.len()))?,
352 );
353 out.extend_from_slice(&encode_at(&positions, depth + 1, chooser)?);
354 out.extend_from_slice(&encode_at(&exceptions, depth + 1, chooser)?);
355 }
356 }
357 Ok(Some(out))
358}
359
360fn encode_packed(values: &[i64], out: &mut Vec<u8>) -> Result<()> {
372 for unit in values.chunks(VALUES) {
373 let base = unit.iter().copied().min().unwrap_or(0);
374 let offsets: Vec<u64> = unit.iter().map(|value| offset_from(*value, base)).collect();
375 let width = bitpack::required_width(&offsets);
376 put_i64(out, base);
377 put_u8(out, u8::try_from(width).map_err(|_| Error::internal("impossible width"))?);
378 if unit.len() == VALUES {
379 let mut packed = vec![0u64; bitpack::packed_len::<u64>(width)];
380 bitpack::pack(&offsets, width, &mut packed)?;
381 for word in packed {
382 put_u64(out, word);
383 }
384 } else {
385 bitpack::pack_tail(&offsets, width, out)?;
386 }
387 }
388 Ok(())
389}
390
391fn decode_chunk(reader: &mut Reader<'_>) -> Result<Vec<i64>> {
392 let kind = Kind::from_tag(reader.u8()?)?;
393 let count = reader.u32()? as usize;
394 match kind {
395 Kind::Constant => Ok(vec![reader.i64()?; count]),
396 Kind::Packed => {
397 let mut values = Vec::with_capacity(count);
398 while values.len() < count {
399 let base = reader.i64()?;
400 let width = reader.u8()? as usize;
401 let wanted = (count - values.len()).min(VALUES);
402 if wanted == VALUES {
403 let mut packed = vec![0u64; bitpack::packed_len::<u64>(width)];
404 for word in &mut packed {
405 *word = reader.u64()?;
406 }
407 let mut unit = vec![0u64; VALUES];
408 bitpack::unpack(&packed, width, &mut unit)?;
409 values.extend(unit.iter().map(|offset| value_from(*offset, base)));
410 } else {
411 let bytes = reader.bytes(bitpack::tail_len(wanted, width))?;
412 let unit = bitpack::unpack_tail(bytes, width, wanted)?;
413 values.extend(unit.iter().map(|offset| value_from(*offset, base)));
414 }
415 }
416 Ok(values)
417 }
418 Kind::Delta => {
419 let first = reader.i64()?;
420 let deltas = decode_chunk(reader)?;
421 let mut values = Vec::with_capacity(count);
422 values.push(first);
423 let mut current = first;
424 for delta in deltas {
425 current = current.wrapping_add(unzigzag(delta as u64));
426 values.push(current);
427 }
428 check_count(values.len(), count)?;
429 Ok(values)
430 }
431 Kind::Rle => {
432 let run_values = decode_chunk(reader)?;
433 let run_lengths = decode_chunk(reader)?;
434 if run_values.len() != run_lengths.len() {
435 return Err(Error::internal("an RLE chunk has more runs than run lengths"));
436 }
437 let mut values = Vec::with_capacity(count);
438 for (value, length) in run_values.into_iter().zip(run_lengths) {
439 let length = usize::try_from(length)
440 .map_err(|_| Error::internal("a negative RLE run length"))?;
441 values.extend(std::iter::repeat_n(value, length));
442 }
443 check_count(values.len(), count)?;
444 Ok(values)
445 }
446 Kind::Dict => {
447 let dictionary = decode_chunk(reader)?;
448 let codes = decode_chunk(reader)?;
449 let mut values = Vec::with_capacity(count);
450 for code in codes {
451 let index =
452 usize::try_from(code).ok().and_then(|index| dictionary.get(index)).ok_or_else(
453 || Error::internal(format!("code {code} is not in the dictionary")),
454 )?;
455 values.push(*index);
456 }
457 check_count(values.len(), count)?;
458 Ok(values)
459 }
460 Kind::Sparse => {
461 let value = reader.i64()?;
462 let exception_count = reader.u32()? as usize;
463 let positions = decode_chunk(reader)?;
464 let exceptions = decode_chunk(reader)?;
465 if positions.len() != exception_count || exceptions.len() != exception_count {
466 return Err(Error::internal("a sparse chunk disagrees about its exception count"));
467 }
468 let mut values = vec![value; count];
469 for (position, exception) in positions.into_iter().zip(exceptions) {
470 let position = usize::try_from(position)
471 .ok()
472 .filter(|position| *position < count)
473 .ok_or_else(|| {
474 Error::internal(format!("exception at {position} is outside the chunk"))
475 })?;
476 values[position] = exception;
477 }
478 Ok(values)
479 }
480 }
481}
482
483fn describe_chunk(reader: &mut Reader<'_>) -> Result<String> {
484 let kind = Kind::from_tag(reader.u8()?)?;
485 let count = reader.u32()? as usize;
486 Ok(match kind {
487 Kind::Constant => {
488 reader.i64()?;
489 "CONSTANT".to_string()
490 }
491 Kind::Packed => {
492 let mut widths = Vec::new();
493 let mut seen = 0;
494 while seen < count {
495 reader.i64()?;
496 let width = reader.u8()? as usize;
497 let wanted = (count - seen).min(VALUES);
498 if wanted == VALUES {
499 for _ in 0..bitpack::packed_len::<u64>(width) {
500 reader.u64()?;
501 }
502 } else {
503 reader.bytes(bitpack::tail_len(wanted, width))?;
504 }
505 widths.push(width);
506 seen += wanted;
507 }
508 let low = widths.iter().copied().min().unwrap_or(0);
509 let high = widths.iter().copied().max().unwrap_or(0);
510 if low == high {
513 format!("FOR+BITPACK[{low}]")
514 } else {
515 format!("FOR+BITPACK[{low}..{high}]")
516 }
517 }
518 Kind::Delta => {
519 reader.i64()?;
520 format!("DELTA({})", describe_chunk(reader)?)
521 }
522 Kind::Rle => {
523 let values = describe_chunk(reader)?;
524 let lengths = describe_chunk(reader)?;
525 format!("RLE({values}, {lengths})")
526 }
527 Kind::Dict => {
528 let dictionary = describe_chunk(reader)?;
529 let codes = describe_chunk(reader)?;
530 format!("DICT({dictionary}, {codes})")
531 }
532 Kind::Sparse => {
533 reader.i64()?;
534 reader.u32()?;
535 let positions = describe_chunk(reader)?;
536 let exceptions = describe_chunk(reader)?;
537 format!("SPARSE({positions}, {exceptions})")
538 }
539 })
540}
541
542fn offset_from(value: i64, base: i64) -> u64 {
545 (i128::from(value) - i128::from(base)) as u64
546}
547
548fn value_from(offset: u64, base: i64) -> i64 {
549 (i128::from(base) + i128::from(offset)) as i64
550}
551
552fn zigzag(value: i64) -> u64 {
555 ((value << 1) ^ (value >> 63)) as u64
556}
557
558fn unzigzag(value: u64) -> i64 {
559 ((value >> 1) as i64) ^ -((value & 1) as i64)
560}
561
562fn deltas_fit(values: &[i64]) -> bool {
574 values.windows(2).all(|pair| i64::try_from(i128::from(pair[1]) - i128::from(pair[0])).is_ok())
575}
576
577fn deltas(values: &[i64]) -> Option<Vec<i64>> {
578 let mut deltas = Vec::with_capacity(values.len().saturating_sub(1));
579 for pair in values.windows(2) {
580 let difference = i128::from(pair[1]) - i128::from(pair[0]);
581 let difference = i64::try_from(difference).ok()?;
582 deltas.push(zigzag(difference) as i64);
583 }
584 Some(deltas)
585}
586
587fn run_count(values: &[i64]) -> usize {
588 let mut runs = 0;
589 let mut previous = None;
590 for value in values {
591 if previous != Some(value) {
592 runs += 1;
593 previous = Some(value);
594 }
595 }
596 runs
597}
598
599fn runs(values: &[i64]) -> (Vec<i64>, Vec<i64>) {
600 let mut run_values: Vec<i64> = Vec::new();
601 let mut run_lengths: Vec<i64> = Vec::new();
602 for value in values {
603 if run_values.last() == Some(value) {
604 *run_lengths.last_mut().expect("a run length exists beside every run value") += 1;
605 } else {
606 run_values.push(*value);
607 run_lengths.push(1);
608 }
609 }
610 (run_values, run_lengths)
611}
612
613fn spread_of(values: &[i64]) -> (usize, Option<(i64, usize)>) {
628 let mut sorted = values.to_vec();
629 sorted.sort_unstable();
630 let mut distinct = 0;
631 let mut best: Option<(i64, usize)> = None;
632 let mut index = 0;
633 while index < sorted.len() {
634 let value = sorted[index];
635 let mut end = index;
636 while end < sorted.len() && sorted[end] == value {
637 end += 1;
638 }
639 distinct += 1;
640 let count = end - index;
641 if best.is_none_or(|(_, seen)| count > seen) {
642 best = Some((value, count));
643 }
644 index = end;
645 }
646 (distinct, best)
647}
648
649fn distinct_values(values: &[i64]) -> Vec<i64> {
652 let mut distinct = values.to_vec();
653 distinct.sort_unstable();
654 distinct.dedup();
655 distinct
656}
657
658fn codes_over(values: &[i64], dictionary: &[i64]) -> Vec<i64> {
668 values
669 .iter()
670 .map(|value| {
671 dictionary
672 .binary_search(value)
673 .expect("the dictionary is the distinct values of this chunk") as i64
674 })
675 .collect()
676}
677
678fn check_count(actual: usize, expected: usize) -> Result<()> {
679 if actual == expected {
680 Ok(())
681 } else {
682 Err(Error::internal(format!(
683 "a chunk says it holds {expected} values and decoded to {actual}"
684 )))
685 }
686}
687
688fn too_long(len: usize) -> Error {
689 Error::internal(format!("a chunk of {len} values is longer than the format allows"))
690}
691
692fn put_u8(out: &mut Vec<u8>, value: u8) {
693 out.push(value);
694}
695
696fn put_u32(out: &mut Vec<u8>, value: u32) {
697 out.extend_from_slice(&value.to_le_bytes());
698}
699
700fn put_u64(out: &mut Vec<u8>, value: u64) {
701 out.extend_from_slice(&value.to_le_bytes());
702}
703
704fn put_i64(out: &mut Vec<u8>, value: i64) {
705 out.extend_from_slice(&value.to_le_bytes());
706}
707
708#[cfg(test)]
709mod tests {
710 use super::*;
711
712 fn round_trip(values: &[i64]) -> Vec<u8> {
713 let bytes = encode(values).unwrap();
714 assert_eq!(decode(&bytes).unwrap(), values, "{}", describe(&bytes).unwrap());
715 bytes
716 }
717
718 fn kind_of(bytes: &[u8]) -> Kind {
719 Kind::from_tag(bytes[0]).unwrap()
720 }
721
722 struct Random(u64);
724
725 impl Random {
726 fn new() -> Self {
727 Self(0x9e37_79b9_7f4a_7c15)
728 }
729
730 fn next(&mut self) -> u64 {
731 self.0 ^= self.0 << 13;
732 self.0 ^= self.0 >> 7;
733 self.0 ^= self.0 << 17;
734 self.0
735 }
736 }
737
738 #[test]
739 fn the_dictionary_is_sorted_and_the_codes_point_back_at_the_values() {
740 let values = vec![30i64, 10, 30, 20, 10, -5];
741 let dictionary = distinct_values(&values);
742 let codes = codes_over(&values, &dictionary);
743 assert_eq!(dictionary, vec![-5, 10, 20, 30]);
744 assert_eq!(codes, vec![3, 1, 3, 2, 1, 0]);
745 for (code, value) in codes.iter().zip(&values) {
746 assert_eq!(dictionary[*code as usize], *value);
747 }
748 }
749
750 #[test]
751 fn one_sort_gives_the_distinct_count_and_the_most_frequent_value() {
752 let values = vec![7i64, 7, 7, 1, 2, 2];
753 assert_eq!(spread_of(&values), (3, Some((7, 3))));
754 assert_eq!(spread_of(&[]), (0, None));
755 assert_eq!(spread_of(&[9]), (1, Some((9, 1))));
756
757 assert_eq!(spread_of(&[4i64, 4, 8, 8]), (2, Some((4, 2))));
760 }
761
762 #[test]
763 fn deltas_that_do_not_fit_are_refused_before_they_are_built() {
764 assert!(deltas_fit(&[1i64, 2, 3]));
765 assert!(deltas_fit(&[i64::MAX, i64::MAX]));
766 assert!(!deltas_fit(&[i64::MIN, i64::MAX]));
767 assert_eq!(deltas_fit(&[i64::MIN, i64::MAX]), deltas(&[i64::MIN, i64::MAX]).is_some());
768 assert_eq!(deltas_fit(&[1i64, 2, 3]), deltas(&[1i64, 2, 3]).is_some());
769 }
770
771 #[test]
772 fn what_the_chooser_returns_is_the_smallest_of_what_it_was_offered() {
773 let mut random = Random::new();
777 let noise: Vec<i64> = (0..2000).map(|_| (random.next() % 5000) as i64).collect();
778 let runs: Vec<i64> = (0..2000).map(|index: i64| index / 100).collect();
779 let climbing: Vec<i64> = (0..2000).map(|index| 1_700_000_000 + index).collect();
780 for values in [noise, runs, climbing, vec![7; 300], Vec::new()] {
781 let chosen = encode(&values).unwrap();
782 let mut smallest: Option<Vec<u8>> = None;
783 for kind in offered(&values) {
784 let Some(bytes) = encode_only(kind, &values).unwrap() else {
785 continue;
786 };
787 if smallest.as_ref().is_none_or(|best| bytes.len() < best.len()) {
788 smallest = Some(bytes);
789 }
790 }
791 assert_eq!(smallest.as_deref(), Some(chosen.as_slice()), "{}", values.len());
792 }
793 }
794
795 #[test]
796 fn an_empty_chunk_round_trips() {
797 let bytes = round_trip(&[]);
798 assert_eq!(bytes.len(), 5);
799 }
800
801 #[test]
802 fn a_constant_column_costs_thirteen_bytes_however_long_it_is() {
803 let bytes = round_trip(&vec![42; 1_000_000]);
804 assert_eq!(kind_of(&bytes), Kind::Constant);
805 assert_eq!(bytes.len(), 13);
806 }
807
808 #[test]
809 fn a_narrow_range_is_packed_at_the_width_of_the_range_and_not_of_the_type() {
810 let mut random = Random::new();
812 let values: Vec<i64> = (0..100_000).map(|_| 1000 + (random.next() % 64) as i64).collect();
813 let bytes = round_trip(&values);
814 assert_eq!(kind_of(&bytes), Kind::Packed);
815 let packed = 100_000 * 6 / 8;
816 assert!(bytes.len() < packed + 2000, "{} bytes for {packed} of payload", bytes.len());
817 assert!(bytes.len() > packed, "{} bytes cannot hold {packed}", bytes.len());
818 }
819
820 #[test]
821 fn a_counter_becomes_deltas_and_then_a_constant() {
822 let values: Vec<i64> = (0..1_000_000).collect();
825 let bytes = round_trip(&values);
826 assert_eq!(kind_of(&bytes), Kind::Delta);
827 assert_eq!(describe(&bytes).unwrap(), "DELTA(CONSTANT)");
828 assert!(bytes.len() < 40, "{} bytes for a counter", bytes.len());
829 }
830
831 #[test]
832 fn a_column_that_counts_down_is_as_cheap_as_one_that_counts_up() {
833 let up: Vec<i64> = (0..100_000).collect();
835 let down: Vec<i64> = (0..100_000).rev().collect();
836 assert_eq!(round_trip(&up).len(), round_trip(&down).len());
837 }
838
839 #[test]
840 fn long_runs_become_rle() {
841 let mut values = Vec::new();
842 for run in 0..1000 {
843 values.extend(std::iter::repeat_n(run % 7, 200));
844 }
845 let bytes = round_trip(&values);
846 assert_eq!(kind_of(&bytes), Kind::Rle);
847 assert!(bytes.len() < 2000, "{} bytes for 1000 runs", bytes.len());
848 }
849
850 #[test]
851 fn a_low_cardinality_column_becomes_a_dictionary() {
852 let mut random = Random::new();
855 let dictionary: Vec<i64> = (0..40).map(|index| 1_000_000_000 + index * 7919).collect();
856 let values: Vec<i64> =
857 (0..100_000).map(|_| dictionary[(random.next() % 40) as usize]).collect();
858 let bytes = round_trip(&values);
859 assert_eq!(kind_of(&bytes), Kind::Dict);
860 assert!(bytes.len() < 100_000, "{} bytes", bytes.len());
861 }
862
863 #[test]
864 fn a_nearly_constant_column_becomes_sparse() {
865 let mut values = vec![0i64; 100_000];
866 for index in 0..300 {
867 values[index * 331] = 1 << 40;
868 }
869 let bytes = round_trip(&values);
870 assert_eq!(kind_of(&bytes), Kind::Sparse);
871 assert!(bytes.len() < 3000, "{} bytes for 300 exceptions", bytes.len());
872 }
873
874 #[test]
875 fn the_cascade_goes_more_than_one_level_deep() {
876 let mut values = Vec::new();
879 for index in 0..2000i64 {
880 values.extend(std::iter::repeat_n(1_000_000 + (index % 5) * 104_729, 100));
881 }
882 let bytes = round_trip(&values);
883 let shape = describe(&bytes).unwrap();
884 assert!(shape.contains('('), "{shape} is not a cascade");
885 assert!(bytes.len() < 4000, "{} bytes: {shape}", bytes.len());
886 }
887
888 #[test]
889 fn random_data_is_packed_at_full_width_and_costs_what_it_costs() {
890 let mut random = Random::new();
893 let values: Vec<i64> = (0..10_000).map(|_| random.next() as i64).collect();
894 let bytes = round_trip(&values);
895 assert_eq!(kind_of(&bytes), Kind::Packed);
896 assert!(bytes.len() < 10_000 * 8 + 1000, "{} bytes", bytes.len());
897 }
898
899 #[test]
900 fn the_extremes_of_the_type_survive() {
901 let values = vec![i64::MIN, i64::MAX, 0, -1, i64::MIN, i64::MAX];
904 round_trip(&values);
905 round_trip(&[i64::MIN; 3]);
906 round_trip(&[i64::MIN, i64::MIN + 1]);
907 }
908
909 #[test]
910 fn a_chunk_that_is_not_a_multiple_of_the_unit_round_trips() {
911 for len in [1, 2, 1023, 1024, 1025, 2047, 2049] {
912 let values: Vec<i64> = (0..len).map(|index| (index * 31 % 97) as i64).collect();
913 round_trip(&values);
914 }
915 }
916
917 #[test]
918 fn a_partial_unit_costs_its_own_values_and_not_a_whole_unit() {
919 let values = vec![1i64 << 39, (1 << 39) + 7, 1 << 38];
923 let bytes = encode_only(Kind::Packed, &values).unwrap().unwrap();
924 assert_eq!(bytes.len(), 5 + 9 + 15);
925 assert_eq!(decode(&bytes).unwrap(), values);
926 }
927
928 #[test]
929 fn the_frame_of_reference_is_per_unit_and_not_per_chunk() {
930 let values: Vec<i64> =
934 (0..4096i64).map(|index| (index / 1024) * 1_000_000 + (index % 1024)).collect();
935 let bytes = encode_only(Kind::Packed, &values).unwrap().unwrap();
936 assert_eq!(describe(&bytes).unwrap(), "FOR+BITPACK[10]");
937 assert_eq!(decode(&bytes).unwrap(), values);
938 }
939
940 #[test]
941 fn every_candidate_that_applies_decodes_to_the_input() {
942 let mut values = vec![5i64; 3000];
946 for (index, value) in values.iter_mut().enumerate() {
947 if index % 500 == 0 {
948 *value = index as i64;
949 }
950 }
951 let applicable = candidates(&values, 0);
952 assert!(applicable.len() >= 4, "{applicable:?}");
953 for kind in applicable {
954 let bytes = encode_only(kind, &values).unwrap().unwrap();
955 assert_eq!(decode(&bytes).unwrap(), values, "{}", kind.name());
956 }
957 }
958
959 #[test]
960 fn the_chooser_picks_the_smallest_candidate_rather_than_the_first_that_applies() {
961 let mut values = vec![5i64; 3000];
962 values[1500] = 9;
963 let chosen = encode(&values).unwrap();
964 for (_, size) in candidate_sizes(&values).unwrap() {
965 assert!(chosen.len() <= size);
966 }
967 }
968
969 #[test]
970 fn a_truncated_chunk_is_an_error_and_not_a_panic() {
971 let bytes = encode(&[1, 2, 3, 4, 5]).unwrap();
972 for len in 0..bytes.len() {
973 let error = decode(&bytes[..len]).unwrap_err();
974 assert!(error.message().contains("chunk"), "{error}");
975 }
976 }
977
978 #[test]
979 fn trailing_bytes_are_an_error() {
980 let mut bytes = encode(&[1, 2, 3]).unwrap();
981 bytes.push(0);
982 let error = decode(&bytes).unwrap_err();
983 assert!(error.message().contains("left over"), "{error}");
984 }
985
986 #[test]
987 fn an_unknown_tag_is_an_error() {
988 let error = decode(&[99, 0, 0, 0, 0]).unwrap_err();
989 assert!(error.message().contains("unknown encoding tag"), "{error}");
990 }
991
992 #[test]
993 fn a_dictionary_code_outside_the_dictionary_is_an_error() {
994 let mut bytes = vec![Kind::Dict.tag()];
999 put_u32(&mut bytes, 1);
1000 bytes.extend_from_slice(&encode(&[10]).unwrap());
1001 bytes.extend_from_slice(&encode(&[5]).unwrap());
1002 let error = decode(&bytes).unwrap_err();
1003 assert!(error.message().contains("not in the dictionary"), "{error}");
1004 }
1005
1006 #[test]
1007 fn a_negative_run_length_is_an_error() {
1008 let mut bytes = vec![Kind::Rle.tag()];
1011 put_u32(&mut bytes, 4);
1012 bytes.extend_from_slice(&encode(&[7]).unwrap());
1013 bytes.extend_from_slice(&encode(&[-4]).unwrap());
1014 let error = decode(&bytes).unwrap_err();
1015 assert!(error.message().contains("negative"), "{error}");
1016 }
1017
1018 #[test]
1019 fn the_cascade_depth_is_bounded() {
1020 let values: Vec<i64> = (0..50_000).map(|index| (index / 100) % 250).collect();
1024 let bytes = round_trip(&values);
1025 let shape = describe(&bytes).unwrap();
1026 let depth = shape.matches('(').count();
1027 assert!(depth <= MAX_DEPTH as usize, "{shape} is {depth} deep");
1028 }
1029
1030 #[test]
1031 fn candidate_sizes_reports_what_the_chooser_looked_at() {
1032 let values: Vec<i64> = (0..5000).map(|index| index % 17).collect();
1033 let sizes = candidate_sizes(&values).unwrap();
1034 assert!(sizes.iter().any(|(kind, _)| *kind == Kind::Dict));
1035 assert!(sizes.iter().any(|(kind, _)| *kind == Kind::Packed));
1036 assert!(sizes.iter().all(|(_, size)| *size > 0));
1037 }
1038
1039 #[test]
1040 fn a_chunk_can_be_read_from_the_front_of_a_longer_buffer() {
1041 let first = encode(&[1, 2, 3]).unwrap();
1044 let second: Vec<i64> = (0..3000).map(|index| index % 11).collect();
1045 let second_bytes = encode(&second).unwrap();
1046 let mut joined = first.clone();
1047 joined.extend_from_slice(&second_bytes);
1048 joined.extend_from_slice(b"and then something else");
1049
1050 let (values, used) = decode_prefix(&joined).unwrap();
1051 assert_eq!(values, vec![1, 2, 3]);
1052 assert_eq!(used, first.len());
1053 let (more, used_again) = decode_prefix(&joined[used..]).unwrap();
1054 assert_eq!(more, second);
1055 assert_eq!(used_again, second_bytes.len());
1056
1057 let (text, described) = describe_prefix(&joined).unwrap();
1058 assert_eq!(described, first.len());
1059 assert_eq!(text, describe(&first).unwrap());
1060 }
1061
1062 #[test]
1063 fn a_truncated_chunk_is_still_an_error_when_read_as_a_prefix() {
1064 let bytes = encode(&(0..2000).collect::<Vec<i64>>()).unwrap();
1065 for len in 0..bytes.len() {
1066 assert!(decode_prefix(&bytes[..len]).is_err(), "{len} bytes decoded");
1067 }
1068 }
1069}