1use crate::license_detection::index::LicenseIndex;
4use crate::license_detection::index::dictionary::{KnownToken, QueryToken, TokenId, TokenKind};
5use crate::license_detection::models::PositionSpan;
6use crate::license_detection::position_set::PositionSet;
7use crate::license_detection::spdx_lid::split_spdx_lid;
8use crate::license_detection::tokenize::STOPWORDS;
9use crate::license_detection::tokenize::tokenize_as_ids;
10use once_cell::sync::Lazy;
11use regex::Regex;
12use std::cell::{OnceCell, RefCell};
13use std::collections::HashMap;
14
15static QUERY_PATTERN: Lazy<Regex> =
16 Lazy::new(|| Regex::new(r"[^_\W]+\+?[^_\W]*").expect("valid query regex"));
17static MATCHED_TEXT_PATTERN: Lazy<Regex> = Lazy::new(|| {
18 Regex::new(r"(?P<token>[^_\W]+\+?[^_\W]*)|(?P<punct>[_\W\s\+]+[_\W\s]?)")
19 .expect("valid matched text regex")
20});
21
22#[derive(Clone)]
23struct MatchedTextToken {
24 value: String,
25 line_num: usize,
26 pos: Option<usize>,
27 is_text: bool,
28 is_matched: bool,
29}
30
31#[derive(Debug)]
43pub struct Query<'a> {
44 pub text: String,
48
49 pub tokens: Vec<TokenId>,
53
54 pub line_by_pos: Vec<usize>,
61
62 pub unknowns_by_pos: HashMap<Option<i32>, usize>,
71
72 pub stopwords_by_pos: HashMap<Option<i32>, usize>,
78
79 pub shorts_and_digits_pos: PositionSet,
85
86 pub high_matchables: PositionSet,
92
93 pub low_matchables: PositionSet,
99
100 pub is_binary: bool,
104
105 pub(crate) query_run_ranges: Vec<(usize, Option<usize>)>,
111
112 pub spdx_lines: Vec<(String, usize, usize)>,
119
120 pub index: &'a LicenseIndex,
122}
123
124pub fn matched_text_from_text(text: &str, start_line: usize, end_line: usize) -> String {
125 if start_line == 0 || end_line == 0 || start_line > end_line {
126 return String::new();
127 }
128
129 text.lines()
130 .enumerate()
131 .filter_map(|(idx, line)| {
132 let line_num = idx + 1;
133 if line_num >= start_line && line_num <= end_line {
134 Some(line)
135 } else {
136 None
137 }
138 })
139 .collect::<Vec<_>>()
140 .join("\n")
141}
142
143pub fn matched_text_diagnostics_from_text(
144 text: &str,
145 query: &Query<'_>,
146 matched_positions: &PositionSet,
147 start_pos: usize,
148 end_pos: usize,
149 start_line: usize,
150 end_line: usize,
151) -> String {
152 let tokens = tokenize_matched_text(text, query);
153 let reportable_tokens = collect_reportable_tokens(
154 tokens,
155 matched_positions,
156 start_pos,
157 end_pos,
158 start_line,
159 end_line,
160 );
161 let line_endings = collect_line_endings(text);
162
163 render_diagnostic_tokens(&reportable_tokens, &line_endings)
164}
165
166fn tokenize_matched_text(text: &str, query: &Query<'_>) -> Vec<MatchedTextToken> {
167 let mut tokens = Vec::new();
168 let mut pos = 0usize;
169 let mut line_num = 1usize;
170
171 for line in text.split_inclusive('\n') {
172 for capture in MATCHED_TEXT_PATTERN.captures_iter(line) {
173 if let Some(token_match) = capture.name("token") {
174 let token_text = token_match.as_str();
175 let retokenized: Vec<String> = QUERY_PATTERN
176 .find_iter(&token_text.to_lowercase())
177 .map(|m| m.as_str().to_string())
178 .filter(|token| !STOPWORDS.contains(token.as_str()))
179 .collect();
180
181 if retokenized.is_empty() {
182 tokens.push(MatchedTextToken {
183 value: token_text.to_string(),
184 line_num,
185 pos: None,
186 is_text: true,
187 is_matched: false,
188 });
189 } else if retokenized.len() == 1 {
190 let token = &retokenized[0];
191 let token_pos = if query.index.dictionary.get(token).is_some() {
192 let current_pos = pos;
193 pos += 1;
194 Some(current_pos)
195 } else {
196 None
197 };
198
199 tokens.push(MatchedTextToken {
200 value: token_text.to_string(),
201 line_num,
202 pos: token_pos,
203 is_text: true,
204 is_matched: false,
205 });
206 } else {
207 for token in retokenized {
208 let token_pos = if query.index.dictionary.get(&token).is_some() {
209 let current_pos = pos;
210 pos += 1;
211 Some(current_pos)
212 } else {
213 None
214 };
215
216 tokens.push(MatchedTextToken {
217 value: token,
218 line_num,
219 pos: token_pos,
220 is_text: true,
221 is_matched: false,
222 });
223 }
224 }
225 } else if let Some(punct_match) = capture.name("punct") {
226 tokens.push(MatchedTextToken {
227 value: punct_match.as_str().to_string(),
228 line_num,
229 pos: None,
230 is_text: false,
231 is_matched: false,
232 });
233 }
234 }
235
236 line_num += 1;
237 }
238
239 tokens
240}
241
242fn collect_reportable_tokens(
243 tokens: Vec<MatchedTextToken>,
244 matched_positions: &PositionSet,
245 start_pos: usize,
246 end_pos: usize,
247 start_line: usize,
248 end_line: usize,
249) -> Vec<MatchedTextToken> {
250 let mut reportable = Vec::new();
251 let mut started = false;
252 let mut finished = false;
253 let mut end_real_pos = None;
254 let mut last_real_pos = None;
255
256 for (real_pos, mut token) in tokens.into_iter().enumerate() {
257 if token.line_num < start_line {
258 continue;
259 }
260
261 if token.line_num > end_line {
262 break;
263 }
264
265 let mut is_included = false;
266
267 if token.pos.is_some_and(|pos| matched_positions.contains(pos)) {
268 token.is_matched = true;
269 is_included = true;
270 }
271
272 if !started && token.pos == Some(start_pos) {
273 started = true;
274 is_included = true;
275 }
276
277 if started && !finished {
278 is_included = true;
279 }
280
281 if token.pos == Some(end_pos) {
282 finished = true;
283 started = false;
284 end_real_pos = Some(real_pos);
285 }
286
287 if finished && !started && end_real_pos.is_some() && last_real_pos == end_real_pos {
288 end_real_pos = None;
289 if !token.is_text && !token.value.trim().is_empty() {
290 is_included = true;
291 }
292 }
293
294 last_real_pos = Some(real_pos);
295
296 if is_included {
297 reportable.push(token);
298 }
299 }
300
301 reportable
302}
303
304fn collect_line_endings(text: &str) -> Vec<String> {
305 text.split_inclusive('\n')
306 .map(|line| {
307 if line.ends_with("\r\n") {
308 "\r\n".to_string()
309 } else if line.ends_with('\n') {
310 "\n".to_string()
311 } else {
312 String::new()
313 }
314 })
315 .collect()
316}
317
318fn render_diagnostic_tokens(tokens: &[MatchedTextToken], line_endings: &[String]) -> String {
319 let mut rendered = String::new();
320 let mut previous_line: Option<usize> = None;
321
322 for token in tokens {
323 if let Some(prev_line) = previous_line
324 && token.line_num > prev_line
325 {
326 for line in prev_line..token.line_num {
327 if let Some(line_ending) = line_endings.get(line.saturating_sub(1)) {
328 rendered.push_str(line_ending.as_str());
329 }
330 }
331 }
332
333 let token_value = if token.is_text {
334 token.value.as_str()
335 } else {
336 token
337 .value
338 .strip_suffix("\r\n")
339 .or_else(|| token.value.strip_suffix('\n'))
340 .unwrap_or(token.value.as_str())
341 };
342
343 if token.is_text && !STOPWORDS.contains(token.value.to_lowercase().as_str()) {
344 if token.is_matched {
345 rendered.push_str(token_value);
346 } else {
347 rendered.push('[');
348 rendered.push_str(token_value);
349 rendered.push(']');
350 }
351 } else {
352 rendered.push_str(token_value);
353 }
354
355 previous_line = Some(token.line_num);
356 }
357
358 rendered
359}
360
361impl<'a> Query<'a> {
362 const TEXT_LINE_THRESHOLD: usize = 15;
377 const BINARY_LINE_THRESHOLD: usize = 50;
378 const MAX_TOKEN_PER_LINE: usize = 25;
379
380 fn compute_spdx_offset(
381 tokens: &[QueryToken],
382 dictionary: &crate::license_detection::index::dictionary::TokenDictionary,
383 ) -> Option<usize> {
384 let get_known_id = |i: usize| -> Option<TokenId> {
385 match tokens.get(i)? {
386 QueryToken::Known(known) => Some(known.id),
387 _ => None,
388 }
389 };
390
391 let spdx_id = dictionary.get("spdx")?;
392 let license_id = dictionary.get("license")?;
393 let identifier_id = dictionary.get("identifier")?;
394 let licence_id = dictionary.get("licence");
395
396 let licenses_id = dictionary.get("licenses");
397 let nuget_id = dictionary.get("nuget");
398 let org_id = dictionary.get("org");
399
400 let is_spdx_prefix = |ids: [Option<TokenId>; 3]| -> bool {
401 ids.iter().all(|id| id.is_some())
402 && ids[0] == Some(spdx_id)
403 && (ids[1] == Some(license_id) || ids[1] == licence_id)
404 && ids[2] == Some(identifier_id)
405 };
406
407 let is_nuget_prefix = |ids: [Option<TokenId>; 3]| -> bool {
408 licenses_id.is_some()
409 && nuget_id.is_some()
410 && org_id.is_some()
411 && ids[0] == licenses_id
412 && ids[1] == Some(nuget_id.unwrap())
413 && ids[2] == Some(org_id.unwrap())
414 };
415
416 if tokens.len() >= 3 {
417 let first_three = [get_known_id(0), get_known_id(1), get_known_id(2)];
418 if is_spdx_prefix(first_three) || is_nuget_prefix(first_three) {
419 return Some(0);
420 }
421 }
422
423 if tokens.len() >= 4 {
424 let second_three = [get_known_id(1), get_known_id(2), get_known_id(3)];
425 if is_spdx_prefix(second_three) || is_nuget_prefix(second_three) {
426 return Some(1);
427 }
428 }
429
430 if tokens.len() >= 5 {
431 let third_three = [get_known_id(2), get_known_id(3), get_known_id(4)];
432 if is_spdx_prefix(third_three) || is_nuget_prefix(third_three) {
433 return Some(2);
434 }
435 }
436
437 None
438 }
439
440 pub fn from_extracted_text(
441 text: &str,
442 index: &'a LicenseIndex,
443 binary_derived: bool,
444 ) -> Result<Self, anyhow::Error> {
445 let line_threshold = if binary_derived {
446 Self::BINARY_LINE_THRESHOLD
447 } else {
448 Self::TEXT_LINE_THRESHOLD
449 };
450
451 Self::with_source_options(text, index, line_threshold, Some(binary_derived))
452 }
453
454 pub fn query_runs(&self) -> Vec<QueryRun<'_>> {
458 self.query_run_ranges
459 .iter()
460 .map(|&(start, end)| QueryRun::new(self, start, end))
461 .collect()
462 }
463
464 fn with_source_options(
465 text: &str,
466 index: &'a LicenseIndex,
467 line_threshold: usize,
468 binary_derived: Option<bool>,
469 ) -> Result<Self, anyhow::Error> {
470 let is_binary = match binary_derived {
471 Some(is_binary) => is_binary,
472 None => Self::detect_binary(text)?,
473 };
474 let has_long_lines = Self::detect_long_lines(text);
475
476 let mut tokens = Vec::new();
477 let mut line_by_pos = Vec::new();
478 let mut unknowns_by_pos: HashMap<Option<i32>, usize> = HashMap::new();
479 let mut stopwords_by_pos: HashMap<Option<i32>, usize> = HashMap::new();
480 let mut shorts_and_digits_pos = PositionSet::new();
481 let mut spdx_lines: Vec<(String, usize, usize)> = Vec::new();
482
483 let mut known_pos = -1i32;
484 let mut started = false;
485 let mut current_line = 1usize;
486
487 let mut tokens_by_line: Vec<Vec<Option<KnownToken>>> = Vec::new();
488
489 for line in text.lines() {
490 let line_trimmed = line.trim();
491 let mut line_tokens: Vec<Option<KnownToken>> = Vec::new();
492
493 let mut line_first_known_pos = None;
494
495 let line_query_tokens = tokenize_as_ids(line_trimmed, &index.dictionary);
496
497 for query_token in &line_query_tokens {
498 match query_token {
499 QueryToken::Known(known_token) => {
500 known_pos += 1;
501 started = true;
502 tokens.push(known_token.id);
503 line_by_pos.push(current_line);
504 line_tokens.push(Some(*known_token));
505
506 if line_first_known_pos.is_none() {
507 line_first_known_pos = Some(known_pos);
508 }
509
510 if known_token.is_short_or_digit {
511 let _ = shorts_and_digits_pos.insert(known_pos as usize);
512 }
513 }
514 QueryToken::Unknown if !started => {
515 *unknowns_by_pos.entry(None).or_insert(0) += 1;
516 line_tokens.push(None);
517 }
518 QueryToken::Unknown => {
519 *unknowns_by_pos.entry(Some(known_pos)).or_insert(0) += 1;
520 line_tokens.push(None);
521 }
522 QueryToken::Stopword if !started => {
523 *stopwords_by_pos.entry(None).or_insert(0) += 1;
524 }
525 QueryToken::Stopword => {
526 *stopwords_by_pos.entry(Some(known_pos)).or_insert(0) += 1;
527 }
528 }
529 }
530
531 let line_last_known_pos = known_pos;
532
533 let spdx_start_offset =
534 Self::compute_spdx_offset(&line_query_tokens, &index.dictionary);
535
536 if let Some(offset) = spdx_start_offset
537 && let Some(line_first_known_pos) = line_first_known_pos
538 {
539 let (spdx_prefix, spdx_expression) = split_spdx_lid(line);
540 let spdx_text = format!("{}{}", spdx_prefix.unwrap_or_default(), spdx_expression);
541 let spdx_start_known_pos = line_first_known_pos + offset as i32;
542
543 if spdx_start_known_pos <= line_last_known_pos {
544 let spdx_start = spdx_start_known_pos as usize;
545 let spdx_end = (line_last_known_pos + 1) as usize;
546 spdx_lines.push((spdx_text, spdx_start, spdx_end));
547 }
548 }
549
550 tokens_by_line.push(line_tokens);
551 current_line += 1;
552 }
553
554 let high_matchables: PositionSet = tokens
555 .iter()
556 .enumerate()
557 .filter(|(_pos, tid)| index.dictionary.token_kind(**tid) == TokenKind::Legalese)
558 .map(|(pos, _tid)| pos)
559 .collect();
560
561 let low_matchables: PositionSet = tokens
562 .iter()
563 .enumerate()
564 .filter(|(_pos, tid)| index.dictionary.token_kind(**tid) == TokenKind::Regular)
565 .map(|(pos, _tid)| pos)
566 .collect();
567
568 let query_runs = Self::compute_query_runs(&tokens_by_line, line_threshold, has_long_lines);
569
570 Ok(Query {
571 text: text.to_string(),
572 tokens,
573 line_by_pos,
574 unknowns_by_pos,
575 stopwords_by_pos,
576 shorts_and_digits_pos,
577 high_matchables,
578 low_matchables,
579 is_binary,
580 query_run_ranges: query_runs,
581 spdx_lines,
582 index,
583 })
584 }
585
586 fn detect_binary(text: &str) -> Result<bool, anyhow::Error> {
600 let null_byte_count = text.bytes().filter(|&b| b == 0).count();
601
602 if null_byte_count > 0 {
603 return Ok(true);
604 }
605
606 let non_printable_ratio = text
607 .chars()
608 .filter(|&c| {
609 !c.is_ascii() && !c.is_ascii_graphic() && c != '\n' && c != '\r' && c != '\t'
610 })
611 .count() as f64
612 / text.len().max(1) as f64;
613
614 Ok(non_printable_ratio > 0.3)
615 }
616
617 fn detect_long_lines(text: &str) -> bool {
627 text.lines()
628 .any(|line| crate::license_detection::tokenize::count_tokens(line) > 25)
629 }
630
631 fn break_long_lines(lines: &[Vec<Option<KnownToken>>]) -> Vec<Vec<Option<KnownToken>>> {
632 lines
633 .iter()
634 .flat_map(|line| {
635 if line.is_empty() {
636 return Vec::new();
637 }
638
639 if line.len() <= Self::MAX_TOKEN_PER_LINE {
640 vec![line.clone()]
641 } else {
642 line.chunks(Self::MAX_TOKEN_PER_LINE)
643 .map(|chunk| chunk.to_vec())
644 .collect()
645 }
646 })
647 .collect()
648 }
649
650 fn compute_query_runs(
651 tokens_by_line: &[Vec<Option<KnownToken>>],
652 line_threshold: usize,
653 has_long_lines: bool,
654 ) -> Vec<(usize, Option<usize>)> {
655 let processed_lines = if has_long_lines {
656 Self::break_long_lines(tokens_by_line)
657 } else {
658 tokens_by_line.to_vec()
659 };
660
661 let mut query_runs = Vec::new();
662 let mut query_run_start = 0usize;
663 let mut query_run_end = None;
664 let mut empty_lines = 0usize;
665 let mut pos = 0usize;
666 let mut query_run_is_all_digit = true;
667
668 for line_tokens in processed_lines {
669 if query_run_end.is_some() && empty_lines >= line_threshold {
670 if !query_run_is_all_digit {
671 query_runs.push((query_run_start, query_run_end));
672 }
673 query_run_start = pos;
674 query_run_end = None;
675 empty_lines = 0;
676 query_run_is_all_digit = true;
677 }
678
679 if query_run_end.is_none() {
680 query_run_start = pos;
681 }
682
683 if line_tokens.is_empty() {
684 empty_lines += 1;
685 continue;
686 }
687
688 let line_is_all_digit = line_tokens
689 .iter()
690 .all(|token_id| token_id.map(|known| known.is_digit_only).unwrap_or(true));
691 let mut line_has_known_tokens = false;
692 let mut line_has_good_tokens = false;
693
694 for known in line_tokens.into_iter().flatten() {
695 line_has_known_tokens = true;
696 if known.kind == TokenKind::Legalese {
697 line_has_good_tokens = true;
698 }
699 if !known.is_digit_only {
700 query_run_is_all_digit = false;
701 }
702 query_run_end = Some(pos);
703 pos += 1;
704 }
705
706 if line_is_all_digit || !line_has_known_tokens {
707 empty_lines += 1;
708 continue;
709 }
710
711 if line_has_good_tokens {
712 empty_lines = 0;
713 } else {
714 empty_lines += 1;
715 }
716 }
717
718 if let Some(end) = query_run_end
719 && !query_run_is_all_digit
720 {
721 query_runs.push((query_run_start, Some(end)));
722 }
723
724 query_runs
725 }
726
727 #[inline]
737 pub fn line_for_pos(&self, pos: usize) -> Option<usize> {
738 self.line_by_pos.get(pos).copied()
739 }
740
741 #[inline]
743 pub fn is_empty(&self) -> bool {
744 self.tokens.is_empty()
745 }
746
747 pub fn whole_query_run(&self) -> QueryRun<'a> {
751 QueryRun::whole_query_snapshot(self)
752 }
753
754 pub fn subtract(&mut self, span: &PositionSpan) {
763 self.high_matchables.remove_span(span);
764 self.low_matchables.remove_span(span);
765 }
766
767 pub fn matched_text(&self, start_line: usize, end_line: usize) -> String {
781 matched_text_from_text(&self.text, start_line, end_line)
782 }
783}
784
785#[derive(Debug, Clone)]
786struct WholeQueryRunSnapshot<'a> {
787 index: &'a LicenseIndex,
788 tokens: Vec<TokenId>,
789 line_by_pos: Vec<usize>,
790 high_matchables: PositionSet,
791 low_matchables: PositionSet,
792}
793
794#[derive(Debug, Clone)]
802pub struct QueryRun<'a> {
803 query: Option<&'a Query<'a>>,
804 whole_query_snapshot: Option<WholeQueryRunSnapshot<'a>>,
805 pub start: usize,
806 pub end: Option<usize>,
807 cached_high_matchables: OnceCell<PositionSet>,
808 cached_low_matchables: OnceCell<PositionSet>,
809 combined_matchables: RefCell<Option<PositionSet>>,
810}
811
812impl<'a> QueryRun<'a> {
813 pub fn new(query: &'a Query<'a>, start: usize, end: Option<usize>) -> Self {
822 Self {
823 query: Some(query),
824 whole_query_snapshot: None,
825 start,
826 end,
827 cached_high_matchables: OnceCell::new(),
828 cached_low_matchables: OnceCell::new(),
829 combined_matchables: RefCell::new(None),
830 }
831 }
832
833 fn whole_query_snapshot(query: &Query<'a>) -> Self {
834 let end = if query.is_empty() {
835 None
836 } else {
837 Some(query.tokens.len() - 1)
838 };
839
840 Self {
841 query: None,
842 whole_query_snapshot: Some(WholeQueryRunSnapshot {
843 index: query.index,
844 tokens: query.tokens.clone(),
845 line_by_pos: query.line_by_pos.clone(),
846 high_matchables: query.high_matchables.clone(),
847 low_matchables: query.low_matchables.clone(),
848 }),
849 start: 0,
850 end,
851 cached_high_matchables: OnceCell::new(),
852 cached_low_matchables: OnceCell::new(),
853 combined_matchables: RefCell::new(None),
854 }
855 }
856
857 fn source_tokens(&self) -> &[TokenId] {
858 if let Some(query) = self.query {
859 &query.tokens
860 } else {
861 &self
862 .whole_query_snapshot
863 .as_ref()
864 .expect("snapshot-backed whole query run should have snapshot data")
865 .tokens
866 }
867 }
868
869 fn source_line_by_pos(&self) -> &[usize] {
870 if let Some(query) = self.query {
871 &query.line_by_pos
872 } else {
873 &self
874 .whole_query_snapshot
875 .as_ref()
876 .expect("snapshot-backed whole query run should have snapshot data")
877 .line_by_pos
878 }
879 }
880
881 fn source_high_matchables(&self) -> &PositionSet {
882 if let Some(query) = self.query {
883 &query.high_matchables
884 } else {
885 &self
886 .whole_query_snapshot
887 .as_ref()
888 .expect("snapshot-backed whole query run should have snapshot data")
889 .high_matchables
890 }
891 }
892
893 fn source_low_matchables(&self) -> &PositionSet {
894 if let Some(query) = self.query {
895 &query.low_matchables
896 } else {
897 &self
898 .whole_query_snapshot
899 .as_ref()
900 .expect("snapshot-backed whole query run should have snapshot data")
901 .low_matchables
902 }
903 }
904
905 pub fn get_index(&self) -> &LicenseIndex {
907 if let Some(query) = self.query {
908 query.index
909 } else {
910 self.whole_query_snapshot
911 .as_ref()
912 .expect("snapshot-backed whole query run should have snapshot data")
913 .index
914 }
915 }
916
917 pub fn line_for_pos(&self, pos: usize) -> Option<usize> {
925 self.source_line_by_pos().get(pos).copied()
926 }
927
928 pub fn tokens(&self) -> &[TokenId] {
934 match self.end {
935 Some(end) => &self.source_tokens()[self.start..=end],
936 None => &[],
937 }
938 }
939
940 pub fn tokens_with_pos(&self) -> impl Iterator<Item = (usize, TokenId)> + '_ {
944 self.tokens()
945 .iter()
946 .copied()
947 .enumerate()
948 .map(|(i, tid)| (self.start + i, tid))
949 }
950
951 pub fn is_digits_only(&self) -> bool {
955 self.tokens()
956 .iter()
957 .all(|&tid| self.get_index().dictionary.is_digit_only_token(tid))
958 }
959
960 pub fn is_matchable(&self, include_low: bool, exclude_positions: &[PositionSpan]) -> bool {
970 if self.is_digits_only() {
971 return false;
972 }
973
974 let matchables = self.matchables(include_low);
975
976 if exclude_positions.is_empty() {
977 return !matchables.is_empty();
978 }
979
980 let mut matchable_set = matchables;
981 for span in exclude_positions {
982 matchable_set.remove_span(span);
983 }
984
985 !matchable_set.is_empty()
986 }
987
988 pub fn matchables(&self, include_low: bool) -> PositionSet {
989 if include_low {
990 if let Some(ref cached) = *self.combined_matchables.borrow() {
991 return cached.clone();
992 }
993 let combined = self.low_matchables().union(&self.high_matchables());
994 *self.combined_matchables.borrow_mut() = Some(combined.clone());
995 combined
996 } else {
997 self.high_matchables()
998 }
999 }
1000
1001 pub fn matchable_tokens(&self) -> Vec<i32> {
1002 let high_matchables = self.high_matchables();
1003 if high_matchables.is_empty() {
1004 return Vec::new();
1005 }
1006
1007 let matchables = self.matchables(true);
1008 self.tokens_with_pos()
1009 .map(|(pos, tid)| {
1010 if matchables.contains(pos) {
1011 tid.raw() as i32
1012 } else {
1013 -1
1014 }
1015 })
1016 .collect()
1017 }
1018
1019 pub fn high_matchables(&self) -> PositionSet {
1020 self.cached_high_matchables
1021 .get_or_init(|| {
1022 let start = self.start;
1023 let end = self.end.map(|e| e + 1).unwrap_or(usize::MAX);
1024 let source = self.source_high_matchables();
1025 let live_span = PositionSpan::new(start, end);
1026 source
1027 .iter()
1028 .filter(|&pos| live_span.contains(pos))
1029 .collect()
1030 })
1031 .clone()
1032 }
1033
1034 pub fn low_matchables(&self) -> PositionSet {
1035 self.cached_low_matchables
1036 .get_or_init(|| {
1037 let start = self.start;
1038 let end = self.end.map(|e| e + 1).unwrap_or(usize::MAX);
1039 let source = self.source_low_matchables();
1040 let live_span = PositionSpan::new(start, end);
1041 source
1042 .iter()
1043 .filter(|&pos| live_span.contains(pos))
1044 .collect()
1045 })
1046 .clone()
1047 }
1048}
1049
1050#[cfg(test)]
1051mod test;