1use std::fs::File;
6use std::io::{Read, Seek};
7use std::path::Path;
8
9use crate::encoding::{detect_and_transcode, detect_encoding, skip_bom};
10use crate::error::{Result, SnifferError};
11use crate::field_type::Type;
12use crate::metadata::{Dialect, Header, Metadata, Quote};
13use crate::sample::{DatePreference, SampleSize};
14use crate::tum::potential_dialects::{
15 PotentialDialect, detect_line_terminator, generate_dialects_with_terminator,
16};
17use crate::tum::score::{DialectScore, find_best_dialect, score_all_dialects_with_best_table};
18use crate::tum::table::{Table, parse_table};
19use crate::tum::type_detection::infer_column_types;
20
21#[derive(Debug, Clone)]
36pub struct Sniffer {
37 sample_size: SampleSize,
39 date_preference: DatePreference,
41 forced_delimiter: Option<u8>,
43 forced_quote: Option<Quote>,
45}
46
47impl Default for Sniffer {
48 fn default() -> Self {
49 Self::new()
50 }
51}
52
53impl Sniffer {
54 pub const fn new() -> Self {
56 Self {
57 sample_size: SampleSize::Records(100),
58 date_preference: DatePreference::MdyFormat,
59 forced_delimiter: None,
60 forced_quote: None,
61 }
62 }
63
64 pub fn sample_size(&mut self, sample_size: SampleSize) -> &mut Self {
66 self.sample_size = sample_size;
67 self
68 }
69
70 pub fn date_preference(&mut self, date_preference: DatePreference) -> &mut Self {
72 self.date_preference = date_preference;
73 self
74 }
75
76 pub fn delimiter(&mut self, delimiter: u8) -> &mut Self {
78 self.forced_delimiter = Some(delimiter);
79 self
80 }
81
82 pub fn quote(&mut self, quote: Quote) -> &mut Self {
84 self.forced_quote = Some(quote);
85 self
86 }
87
88 pub fn sniff_path<P: AsRef<Path>>(&mut self, path: P) -> Result<Metadata> {
90 let file = File::open(path.as_ref())?;
91 let mut reader = std::io::BufReader::new(file);
92 self.sniff_reader(&mut reader)
93 }
94
95 pub fn sniff_reader<R: Read + Seek>(&mut self, reader: R) -> Result<Metadata> {
97 let data = self.read_sample(reader)?;
98
99 if data.is_empty() {
100 return Err(SnifferError::EmptyData);
101 }
102
103 self.sniff_bytes(&data)
104 }
105
106 pub fn sniff_bytes(&self, data: &[u8]) -> Result<Metadata> {
108 if data.is_empty() {
109 return Err(SnifferError::EmptyData);
110 }
111
112 let (transcoded_data, was_transcoded) = detect_and_transcode(data);
114 let data = &transcoded_data[..];
115
116 let encoding_info = detect_encoding(data);
118 let is_utf8 = !was_transcoded || encoding_info.is_utf8;
119
120 let data = skip_bom(data);
122
123 let (comment_preamble_rows, data) = skip_preamble(data);
125
126 let line_terminator = detect_line_terminator(data);
128
129 let dialects = if let Some(delim) = self.forced_delimiter {
131 let quotes = if let Some(q) = self.forced_quote {
133 vec![q]
134 } else {
135 vec![Quote::Some(b'"'), Quote::Some(b'\''), Quote::None]
136 };
137
138 quotes
139 .into_iter()
140 .map(|q| PotentialDialect::new(delim, q, line_terminator))
141 .collect()
142 } else {
143 generate_dialects_with_terminator(line_terminator)
144 };
145
146 let max_rows = match self.sample_size {
148 SampleSize::Records(n) => n,
149 SampleSize::Bytes(_) | SampleSize::All => 0, };
151
152 let (scores, best_table) = score_all_dialects_with_best_table(data, &dialects, max_rows);
154
155 let best = find_best_dialect(&scores)
157 .ok_or_else(|| SnifferError::NoDialectDetected("No valid dialect found".to_string()))?;
158
159 let table_for_preamble =
161 best_table.unwrap_or_else(|| parse_table(data, &best.dialect, max_rows));
162 let structural_preamble = detect_structural_preamble(&table_for_preamble);
163
164 let total_preamble_rows = comment_preamble_rows + structural_preamble;
166
167 self.build_metadata(
171 data,
172 best,
173 is_utf8,
174 structural_preamble,
175 total_preamble_rows,
176 table_for_preamble,
177 )
178 }
179
180 fn read_sample<R: Read + Seek>(&self, mut reader: R) -> Result<Vec<u8>> {
182 match self.sample_size {
183 SampleSize::Bytes(n) => {
184 let mut buffer = vec![0u8; n];
185 let bytes_read = reader.read(&mut buffer)?;
186 buffer.truncate(bytes_read);
187 Ok(buffer)
188 }
189 SampleSize::All => {
190 let mut buffer = Vec::new();
191 reader.read_to_end(&mut buffer)?;
192 Ok(buffer)
193 }
194 SampleSize::Records(n) => {
195 let estimated_size = (n * 1024).max(8192);
198 let mut buffer = vec![0u8; estimated_size];
199 let bytes_read = reader.read(&mut buffer)?;
200 buffer.truncate(bytes_read);
201
202 if bytes_read == estimated_size {
204 let newlines = bytecount::count(&buffer, b'\n');
206 if newlines < n {
207 let additional = (n - newlines) * 2048;
209 let mut more = vec![0u8; additional];
210 let more_read = reader.read(&mut more)?;
211 more.truncate(more_read);
212 buffer.extend(more);
213 }
214 }
215
216 Ok(buffer)
217 }
218 }
219 }
220
221 fn build_metadata(
228 &self,
229 data: &[u8],
230 score: &DialectScore,
231 is_utf8: bool,
232 structural_preamble: usize,
233 total_preamble_rows: usize,
234 table: Table,
235 ) -> Result<Metadata> {
236 if table.is_empty() {
237 return Err(SnifferError::EmptyData);
238 }
239
240 let effective_table = if structural_preamble > 0 && table.rows.len() > structural_preamble {
243 let mut et = crate::tum::table::Table::new();
244 et.rows = table.rows[structural_preamble..].to_vec();
245 et.field_counts = table.field_counts[structural_preamble..].to_vec();
246 et.update_modal_field_count();
247 et
248 } else {
249 table.clone()
250 };
251
252 let header = detect_header(&effective_table, &score.dialect, total_preamble_rows);
254
255 let fields = if header.has_header_row && !effective_table.rows.is_empty() {
257 effective_table.rows[0].clone()
258 } else {
259 (0..score.num_fields)
261 .map(|i| format!("field_{}", i + 1))
262 .collect()
263 };
264
265 let data_table = if header.has_header_row && effective_table.rows.len() > 1 {
267 let mut dt = crate::tum::table::Table::new();
268 dt.rows = effective_table.rows[1..].to_vec();
269 dt.field_counts = effective_table.field_counts[1..].to_vec();
270 dt.update_modal_field_count();
271 dt
272 } else {
273 effective_table
274 };
275
276 let types = infer_column_types(&data_table);
278
279 let dialect = Dialect {
281 delimiter: score.dialect.delimiter,
282 header,
283 quote: score.dialect.quote,
284 flexible: !score.is_uniform,
285 is_utf8,
286 };
287
288 let avg_record_len = calculate_avg_record_len(data, table.num_rows());
290
291 Ok(Metadata {
292 dialect,
293 avg_record_len,
294 num_fields: score.num_fields,
295 fields,
296 types,
297 })
298 }
299}
300
301fn detect_header(
303 table: &crate::tum::table::Table,
304 _dialect: &PotentialDialect,
305 preamble_rows: usize,
306) -> Header {
307 if table.rows.is_empty() {
308 return Header::new(false, preamble_rows);
309 }
310
311 if table.rows.len() < 2 {
312 return Header::new(false, preamble_rows);
314 }
315
316 let first_row = &table.rows[0];
317 let second_row = &table.rows[1];
318
319 let mut header_score = 0.0;
325 let mut checks = 0;
326
327 let first_types: Vec<Type> = first_row
329 .iter()
330 .map(|s| crate::tum::type_detection::detect_cell_type(s))
331 .collect();
332 let second_types: Vec<Type> = second_row
333 .iter()
334 .map(|s| crate::tum::type_detection::detect_cell_type(s))
335 .collect();
336
337 let first_text_count = first_types.iter().filter(|&&t| t == Type::Text).count();
338 let second_text_count = second_types.iter().filter(|&&t| t == Type::Text).count();
339
340 if first_text_count > second_text_count {
341 header_score += 1.0;
342 }
343 checks += 1;
344
345 let first_numeric_count = first_types.iter().filter(|&&t| t.is_numeric()).count();
347 if first_text_count > first_numeric_count {
348 header_score += 0.5;
349 }
350 checks += 1;
351
352 let unique_count = {
354 let mut seen = std::collections::HashSet::new();
355 first_row.iter().filter(|s| seen.insert(s.as_str())).count()
356 };
357 if unique_count == first_row.len() {
358 header_score += 0.5;
359 }
360 checks += 1;
361
362 let avg_first_len: f64 = first_row
364 .iter()
365 .map(std::string::String::len)
366 .sum::<usize>() as f64
367 / first_row.len().max(1) as f64;
368 let avg_second_len: f64 = second_row
369 .iter()
370 .map(std::string::String::len)
371 .sum::<usize>() as f64
372 / second_row.len().max(1) as f64;
373
374 if avg_first_len <= avg_second_len {
375 header_score += 0.3;
376 }
377 checks += 1;
378
379 let has_header = (header_score / checks as f64) > 0.4;
381
382 Header::new(has_header, preamble_rows)
383}
384
385const fn calculate_avg_record_len(data: &[u8], num_rows: usize) -> usize {
387 if num_rows == 0 {
388 return 0;
389 }
390 data.len() / num_rows
391}
392
393fn skip_preamble(data: &[u8]) -> (usize, &[u8]) {
398 let mut preamble_rows = 0;
399 let mut offset = 0;
400
401 while offset < data.len() {
402 let mut line_start = offset;
404 while line_start < data.len() && (data[line_start] == b' ' || data[line_start] == b'\t') {
405 line_start += 1;
406 }
407
408 if line_start < data.len() && data[line_start] == b'#' {
410 let mut line_end = line_start;
412 while line_end < data.len() && data[line_end] != b'\n' && data[line_end] != b'\r' {
413 line_end += 1;
414 }
415
416 if line_end < data.len() && data[line_end] == b'\r' {
418 line_end += 1;
419 }
420 if line_end < data.len() && data[line_end] == b'\n' {
421 line_end += 1;
422 }
423
424 preamble_rows += 1;
425 offset = line_end;
426 } else {
427 break;
429 }
430 }
431
432 (preamble_rows, &data[offset..])
433}
434
435fn detect_structural_preamble(table: &crate::tum::table::Table) -> usize {
440 let n = table.field_counts.len();
441 if n < 3 {
442 return 0;
443 }
444
445 let modal_count = table.modal_field_count();
446
447 let mut matching_suffix = vec![0usize; n];
450 let mut count = 0;
451 for i in (0..n).rev() {
452 if table.field_counts[i] == modal_count {
453 count += 1;
454 }
455 matching_suffix[i] = count;
456 }
457
458 for (i, &field_count) in table.field_counts.iter().enumerate() {
460 if field_count == modal_count {
461 let remaining_len = n - i;
462 let matching = matching_suffix[i];
463 let consistency = matching as f64 / remaining_len as f64;
464
465 if consistency >= 0.8 {
466 return i;
467 }
468 }
469 }
470
471 0
472}
473
474#[cfg(test)]
475mod tests {
476 use super::*;
477
478 #[test]
479 fn test_sniffer_builder() {
480 let mut sniffer = Sniffer::new();
481 sniffer
482 .sample_size(SampleSize::Records(50))
483 .date_preference(DatePreference::DmyFormat)
484 .delimiter(b',');
485
486 assert_eq!(sniffer.sample_size, SampleSize::Records(50));
487 assert_eq!(sniffer.date_preference, DatePreference::DmyFormat);
488 assert_eq!(sniffer.forced_delimiter, Some(b','));
489 }
490
491 #[test]
492 fn test_sniff_bytes() {
493 let data = b"name,age,city\nAlice,30,NYC\nBob,25,LA\n";
494 let sniffer = Sniffer::new();
495
496 let metadata = sniffer.sniff_bytes(data).unwrap();
497
498 assert_eq!(metadata.dialect.delimiter, b',');
499 assert!(metadata.dialect.header.has_header_row);
500 assert_eq!(metadata.num_fields, 3);
501 assert_eq!(metadata.fields, vec!["name", "age", "city"]);
502 }
503
504 #[test]
505 fn test_sniff_tsv() {
506 let data = b"name\tage\tcity\nAlice\t30\tNYC\nBob\t25\tLA\n";
507 let sniffer = Sniffer::new();
508
509 let metadata = sniffer.sniff_bytes(data).unwrap();
510
511 assert_eq!(metadata.dialect.delimiter, b'\t');
512 assert!(metadata.dialect.header.has_header_row);
513 }
514
515 #[test]
516 fn test_sniff_semicolon() {
517 let data = b"name;age;city\nAlice;30;NYC\nBob;25;LA\n";
518 let sniffer = Sniffer::new();
519
520 let metadata = sniffer.sniff_bytes(data).unwrap();
521
522 assert_eq!(metadata.dialect.delimiter, b';');
523 }
524
525 #[test]
526 fn test_sniff_no_header() {
527 let data = b"1,2,3\n4,5,6\n7,8,9\n";
528 let sniffer = Sniffer::new();
529
530 let metadata = sniffer.sniff_bytes(data).unwrap();
531
532 assert_eq!(metadata.dialect.delimiter, b',');
533 assert!(!metadata.dialect.header.has_header_row);
535 }
536
537 #[test]
538 fn test_sniff_with_quotes() {
539 let data = b"\"name\",\"value\"\n\"hello, world\",123\n\"test\",456\n";
540 let sniffer = Sniffer::new();
541
542 let metadata = sniffer.sniff_bytes(data).unwrap();
543
544 assert_eq!(metadata.dialect.delimiter, b',');
545 assert_eq!(metadata.dialect.quote, Quote::Some(b'"'));
546 }
547
548 #[test]
549 fn test_sniff_empty() {
550 let data = b"";
551 let sniffer = Sniffer::new();
552
553 let result = sniffer.sniff_bytes(data);
554 assert!(result.is_err());
555 }
556
557 #[test]
558 fn test_skip_preamble() {
559 let data = b"# This is a comment\n# Another comment\nname,age\nAlice,30\n";
561 let (preamble_rows, remaining) = skip_preamble(data);
562 assert_eq!(preamble_rows, 2);
563 assert_eq!(remaining, b"name,age\nAlice,30\n");
564
565 let data = b"name,age\nAlice,30\n";
567 let (preamble_rows, remaining) = skip_preamble(data);
568 assert_eq!(preamble_rows, 0);
569 assert_eq!(remaining, b"name,age\nAlice,30\n");
570
571 let data = b" # Indented comment\nname,age\n";
573 let (preamble_rows, remaining) = skip_preamble(data);
574 assert_eq!(preamble_rows, 1);
575 assert_eq!(remaining, b"name,age\n");
576 }
577
578 #[test]
579 fn test_sniff_with_preamble() {
580 let data = b"# LimeSurvey export\n# Generated 2024-01-01\nname,age,city\nAlice,30,NYC\nBob,25,LA\n";
581 let sniffer = Sniffer::new();
582
583 let metadata = sniffer.sniff_bytes(data).unwrap();
584
585 assert_eq!(metadata.dialect.delimiter, b',');
586 assert!(metadata.dialect.header.has_header_row);
587 assert_eq!(metadata.num_fields, 3);
588 }
589
590 #[test]
591 fn test_comment_preamble_propagated() {
592 let data = b"# Comment 1\n# Comment 2\nname,age\nAlice,30\nBob,25\n";
593 let metadata = Sniffer::new().sniff_bytes(data).unwrap();
594 assert_eq!(metadata.dialect.header.num_preamble_rows, 2);
595 assert!(metadata.dialect.header.has_header_row);
596 assert_eq!(metadata.fields, vec!["name", "age"]);
597 }
598
599 #[test]
600 fn test_structural_preamble_detection() {
601 let data = b"TITLE\nSUB,TITLE\nA,B,C,D,E\n1,2,3,4,5\n2,3,4,5,6\n3,4,5,6,7\n";
603 let metadata = Sniffer::new().sniff_bytes(data).unwrap();
604 assert_eq!(metadata.dialect.header.num_preamble_rows, 2);
605 assert!(metadata.dialect.header.has_header_row);
606 assert_eq!(metadata.fields, vec!["A", "B", "C", "D", "E"]);
607 }
608
609 #[test]
610 fn test_mixed_preamble_detection() {
611 let data =
614 b"# File header\nMETADATA\nname,age,city\nAlice,30,NYC\nBob,25,LA\nCharlie,35,CHI\n";
615 let metadata = Sniffer::new().sniff_bytes(data).unwrap();
616 assert_eq!(metadata.dialect.header.num_preamble_rows, 2);
618 assert!(metadata.dialect.header.has_header_row);
619 assert_eq!(metadata.fields, vec!["name", "age", "city"]);
620 }
621
622 #[test]
623 fn test_no_preamble() {
624 let data = b"a,b,c\n1,2,3\n4,5,6\n";
625 let metadata = Sniffer::new().sniff_bytes(data).unwrap();
626 assert_eq!(metadata.dialect.header.num_preamble_rows, 0);
627 }
628
629 #[test]
630 fn test_detect_structural_preamble_function() {
631 use crate::tum::table::Table;
632
633 let mut table = Table::new();
635 table.rows = vec![
636 vec!["TITLE".to_string()],
637 vec!["".to_string(), "".to_string()],
638 vec!["A".to_string(), "B".to_string(), "C".to_string()],
639 vec!["1".to_string(), "2".to_string(), "3".to_string()],
640 vec!["4".to_string(), "5".to_string(), "6".to_string()],
641 ];
642 table.field_counts = vec![1, 2, 3, 3, 3];
643 table.update_modal_field_count();
644 assert_eq!(detect_structural_preamble(&table), 2);
645
646 let mut table = Table::new();
648 table.rows = vec![
649 vec!["A".to_string(), "B".to_string(), "C".to_string()],
650 vec!["1".to_string(), "2".to_string(), "3".to_string()],
651 ];
652 table.field_counts = vec![3, 3];
653 table.update_modal_field_count();
654 assert_eq!(detect_structural_preamble(&table), 0);
655
656 let mut table = Table::new();
658 table.rows = vec![vec!["A".to_string()]];
659 table.field_counts = vec![1];
660 table.update_modal_field_count();
661 assert_eq!(detect_structural_preamble(&table), 0);
662 }
663}