1use bstr::ByteSlice;
6
7use crate::matcher::{LineTerminator, Match};
8
9#[derive(Debug)]
17pub struct LineStep {
18 line_term: u8,
19 pos: usize,
20 end: usize,
21}
22
23impl LineStep {
24 pub fn new(line_term: u8, start: usize, end: usize) -> LineStep {
27 LineStep {
28 line_term,
29 pos: start,
30 end,
31 }
32 }
33
34 #[inline(always)]
36 pub fn next_match(&mut self, bytes: &[u8]) -> Option<Match> {
37 self.next_impl(bytes).map(|(s, e)| Match::new(s, e))
38 }
39
40 #[inline(always)]
41 fn next_impl(&mut self, mut bytes: &[u8]) -> Option<(usize, usize)> {
42 bytes = &bytes[..self.end];
43 match bytes[self.pos..].find_byte(self.line_term) {
44 None => {
45 if self.pos < bytes.len() {
46 let m = (self.pos, bytes.len());
47 assert!(m.0 <= m.1);
48
49 self.pos = m.1;
50 Some(m)
51 } else {
52 None
53 }
54 }
55 Some(line_end) => {
56 let m = (self.pos, self.pos + line_end + 1);
57 assert!(m.0 <= m.1);
58
59 self.pos = m.1;
60 Some(m)
61 }
62 }
63 }
64}
65
66pub fn count(bytes: &[u8], line_term: u8) -> u64 {
68 memchr::memchr_iter(line_term, bytes).count() as u64
69}
70
71#[inline(always)]
73pub fn without_terminator(bytes: &[u8], line_term: LineTerminator) -> &[u8] {
74 let line_term = line_term.as_bytes();
75 let start = bytes.len().saturating_sub(line_term.len());
76 if bytes.get(start..) == Some(line_term) {
77 return &bytes[..bytes.len() - line_term.len()];
78 }
79 bytes
80}
81
82#[inline(always)]
87pub fn locate(bytes: &[u8], line_term: u8, range: Match) -> Match {
88 let line_start = bytes[..range.start()]
89 .rfind_byte(line_term)
90 .map_or(0, |i| i + 1);
91 let line_end = if range.end() > line_start && bytes[range.end() - 1] == line_term {
92 range.end()
93 } else {
94 bytes[range.end()..]
95 .find_byte(line_term)
96 .map_or(bytes.len(), |i| range.end() + i + 1)
97 };
98 Match::new(line_start, line_end)
99}
100
101#[cfg(test)]
102mod tests {
103 use super::*;
104
105 const SHERLOCK: &str = "\
106For the Doctor Watsons of this world, as opposed to the Sherlock
107Holmeses, success in the province of detective work must always
108be, to a very large extent, the result of luck. Sherlock Holmes
109can extract a clew from a wisp of straw or a flake of cigar ash;
110but Doctor Watson has to have it taken out for him and dusted,
111and exhibited clearly, with a label attached.\
112";
113
114 fn m(start: usize, end: usize) -> Match {
115 Match::new(start, end)
116 }
117
118 fn lines(text: &str) -> Vec<&str> {
119 let mut results = vec![];
120 let mut it = LineStep::new(b'\n', 0, text.len());
121 while let Some(m) = it.next_match(text.as_bytes()) {
122 results.push(&text[m]);
123 }
124 results
125 }
126
127 fn line_ranges(text: &str) -> Vec<std::ops::Range<usize>> {
128 let mut results = vec![];
129 let mut it = LineStep::new(b'\n', 0, text.len());
130 while let Some(m) = it.next_match(text.as_bytes()) {
131 results.push(m.start()..m.end());
132 }
133 results
134 }
135
136 fn loc(text: &str, start: usize, end: usize) -> Match {
137 locate(text.as_bytes(), b'\n', Match::new(start, end))
138 }
139
140 #[test]
141 fn line_count() {
142 assert_eq!(0, count(b"", b'\n'));
143 assert_eq!(1, count(b"\n", b'\n'));
144 assert_eq!(2, count(b"\n\n", b'\n'));
145 assert_eq!(2, count(b"a\nb\nc", b'\n'));
146 }
147
148 #[test]
149 fn line_locate() {
150 let t = SHERLOCK;
151 let lines = line_ranges(t);
152
153 assert_eq!(
154 loc(t, lines[0].start, lines[0].end),
155 m(lines[0].start, lines[0].end)
156 );
157 assert_eq!(
158 loc(t, lines[0].start + 1, lines[0].end),
159 m(lines[0].start, lines[0].end)
160 );
161 assert_eq!(
162 loc(t, lines[0].end - 1, lines[0].end),
163 m(lines[0].start, lines[0].end)
164 );
165 assert_eq!(
166 loc(t, lines[0].end, lines[0].end),
167 m(lines[1].start, lines[1].end)
168 );
169
170 assert_eq!(
171 loc(t, lines[5].start, lines[5].end),
172 m(lines[5].start, lines[5].end)
173 );
174 assert_eq!(
175 loc(t, lines[5].start + 1, lines[5].end),
176 m(lines[5].start, lines[5].end)
177 );
178 assert_eq!(
179 loc(t, lines[5].end - 1, lines[5].end),
180 m(lines[5].start, lines[5].end)
181 );
182 assert_eq!(
183 loc(t, lines[5].end, lines[5].end),
184 m(lines[5].start, lines[5].end)
185 );
186 }
187
188 #[test]
189 fn line_locate_weird() {
190 assert_eq!(loc("", 0, 0), m(0, 0));
191
192 assert_eq!(loc("\n", 0, 1), m(0, 1));
193 assert_eq!(loc("\n", 1, 1), m(1, 1));
194
195 assert_eq!(loc("\n\n", 0, 0), m(0, 1));
196 assert_eq!(loc("\n\n", 0, 1), m(0, 1));
197 assert_eq!(loc("\n\n", 1, 1), m(1, 2));
198 assert_eq!(loc("\n\n", 1, 2), m(1, 2));
199 assert_eq!(loc("\n\n", 2, 2), m(2, 2));
200
201 assert_eq!(loc("a\nb\nc", 0, 1), m(0, 2));
202 assert_eq!(loc("a\nb\nc", 1, 2), m(0, 2));
203 assert_eq!(loc("a\nb\nc", 2, 3), m(2, 4));
204 assert_eq!(loc("a\nb\nc", 3, 4), m(2, 4));
205 assert_eq!(loc("a\nb\nc", 4, 5), m(4, 5));
206 assert_eq!(loc("a\nb\nc", 5, 5), m(4, 5));
207 }
208
209 #[test]
210 fn line_iter() {
211 assert_eq!(lines("abc"), vec!["abc"]);
212
213 assert_eq!(lines("abc\n"), vec!["abc\n"]);
214 assert_eq!(lines("abc\nxyz"), vec!["abc\n", "xyz"]);
215 assert_eq!(lines("abc\nxyz\n"), vec!["abc\n", "xyz\n"]);
216
217 assert_eq!(lines("abc\n\n"), vec!["abc\n", "\n"]);
218 assert_eq!(lines("abc\n\n\n"), vec!["abc\n", "\n", "\n"]);
219 assert_eq!(lines("abc\n\nxyz"), vec!["abc\n", "\n", "xyz"]);
220 assert_eq!(lines("abc\n\nxyz\n"), vec!["abc\n", "\n", "xyz\n"]);
221 assert_eq!(lines("abc\nxyz\n\n"), vec!["abc\n", "xyz\n", "\n"]);
222
223 assert_eq!(lines("\n"), vec!["\n"]);
224 assert_eq!(lines(""), Vec::<&str>::new());
225 }
226
227 #[test]
228 fn line_iter_empty() {
229 let mut it = LineStep::new(b'\n', 0, 0);
230 assert_eq!(it.next_match(b"abc"), None);
231 }
232}