1use crate::ansi_codes::{BEL_BYTE, ESC_BYTE};
6use memchr::memchr;
7
8const ESC: u8 = ESC_BYTE;
9const BEL: u8 = BEL_BYTE;
10const DEL: u8 = 0x7f;
11const C1_ST: u8 = 0x9c;
12const C1_DCS: u8 = 0x90;
13const C1_SOS: u8 = 0x98;
14const C1_CSI: u8 = 0x9b;
15const C1_OSC: u8 = 0x9d;
16const C1_PM: u8 = 0x9e;
17const C1_APC: u8 = 0x9f;
18const CAN: u8 = 0x18;
19const SUB: u8 = 0x1a;
20const MAX_STRING_SEQUENCE_BYTES: usize = 4096;
21const MAX_CSI_SEQUENCE_BYTES: usize = 64;
22
23#[derive(Clone, Copy)]
24enum StringSequenceTerminator {
25 StOnly,
26 BelOrSt,
27}
28
29impl StringSequenceTerminator {
30 #[inline]
31 const fn allows_bel(self) -> bool {
32 matches!(self, Self::BelOrSt)
33 }
34}
35
36#[inline]
37fn parse_c1_at(bytes: &[u8], start: usize) -> Option<(u8, usize)> {
38 let first = *bytes.get(start)?;
39 if (0x80..=0x9f).contains(&first) {
40 return Some((first, 1));
41 }
42 None
43}
44
45#[inline]
46fn parse_csi(bytes: &[u8], start: usize) -> Option<usize> {
47 let mut index = start;
53 let mut phase = 0u8; let mut consumed = 0usize;
55
56 while index < bytes.len() {
57 let byte = bytes[index];
58 if byte == ESC {
59 return Some(index);
61 }
62 if byte == CAN || byte == SUB {
63 return Some(index + 1);
65 }
66
67 consumed += 1;
68 if consumed > MAX_CSI_SEQUENCE_BYTES {
69 return Some(index + 1);
71 }
72
73 if phase == 0 && (0x30..=0x3f).contains(&byte) {
74 index += 1;
75 continue;
76 }
77 if (0x20..=0x2f).contains(&byte) {
78 phase = 1;
79 index += 1;
80 continue;
81 }
82 if (0x40..=0x7e).contains(&byte) {
83 return Some(index + 1);
84 }
85
86 return Some(index);
88 }
89
90 None
91}
92
93#[inline]
94fn parse_string_sequence(bytes: &[u8], start: usize, terminator: StringSequenceTerminator) -> Option<usize> {
95 let mut consumed = 0usize;
96 for index in start..bytes.len() {
97 if bytes[index] == ESC && !(index + 1 < bytes.len() && bytes[index + 1] == b'\\') {
98 return Some(index);
100 }
101 if bytes[index] == CAN || bytes[index] == SUB {
102 return Some(index + 1);
103 }
104
105 if let Some((c1, len)) = parse_c1_at(bytes, index)
106 && c1 == C1_ST
107 {
108 return Some(index + len);
109 }
110
111 match bytes[index] {
112 BEL if terminator.allows_bel() => return Some(index + 1),
113 ESC if index + 1 < bytes.len() && bytes[index + 1] == b'\\' => return Some(index + 2),
114 _ => {}
115 }
116
117 consumed += 1;
118 if consumed > MAX_STRING_SEQUENCE_BYTES {
119 return Some(index + 1);
121 }
122 }
123 None
124}
125
126#[inline]
127fn push_visible_byte(output: &mut Vec<u8>, byte: u8) {
128 if matches!(byte, b'\n' | b'\r' | b'\t') || !(byte < 32 || byte == DEL) {
129 output.push(byte);
130 }
131}
132
133#[inline]
134fn parse_ansi_sequence_bytes(bytes: &[u8]) -> Option<usize> {
135 if bytes.is_empty() {
136 return None;
137 }
138
139 if let Some((c1, c1_len)) = parse_c1_at(bytes, 0) {
140 return match c1 {
141 C1_CSI => parse_csi(bytes, c1_len),
142 C1_OSC => parse_string_sequence(bytes, c1_len, StringSequenceTerminator::BelOrSt),
143 C1_DCS | C1_SOS | C1_PM | C1_APC => parse_string_sequence(bytes, c1_len, StringSequenceTerminator::StOnly),
144 _ => Some(c1_len),
145 };
146 }
147
148 match bytes[0] {
149 ESC => {
150 if bytes.len() < 2 {
151 return None;
152 }
153
154 match bytes[1] {
155 b'[' => parse_csi(bytes, 2),
156 b']' => parse_string_sequence(bytes, 2, StringSequenceTerminator::BelOrSt),
157 b'P' | b'^' | b'_' | b'X' => parse_string_sequence(bytes, 2, StringSequenceTerminator::StOnly),
158 b' ' | b'#' | b'%' | b'(' | b')' | b'*' | b'+' => {
164 if bytes.len() > 2 {
165 Some(3)
166 } else {
167 None
168 }
169 }
170 next if next < 128 => Some(2),
171 _ => Some(1),
172 }
173 }
174 _ => None,
175 }
176}
177
178pub fn strip_ansi_codes(text: &str) -> std::borrow::Cow<'_, str> {
182 if !text.contains('\x1b') {
183 return std::borrow::Cow::Borrowed(text);
184 }
185 std::borrow::Cow::Owned(strip_ansi(text))
186}
187
188pub fn strip_ansi(text: &str) -> String {
190 let mut output = Vec::with_capacity(text.len());
191 let bytes = text.as_bytes();
192 let mut i = 0;
193
194 while i < bytes.len() {
195 let next_esc = memchr(ESC, &bytes[i..]).map_or(bytes.len(), |offset| i + offset);
196 for &b in &bytes[i..next_esc] {
199 push_visible_byte(&mut output, b);
200 }
201 i = next_esc;
202
203 if i >= bytes.len() {
204 break;
205 }
206
207 if let Some(len) = parse_ansi_sequence_bytes(&bytes[i..]) {
208 i += len;
209 continue;
210 } else {
211 break;
213 }
214 }
215
216 String::from_utf8_lossy(&output).into_owned()
217}
218
219pub fn strip_ansi_bytes(input: &[u8]) -> Vec<u8> {
223 let mut output = Vec::with_capacity(input.len());
224 let bytes = input;
225 let mut i = 0;
226
227 while i < bytes.len() {
228 let rest = &bytes[i..];
230
231 if (rest[0] == ESC || parse_c1_at(bytes, i).is_some())
232 && let Some(len) = parse_ansi_sequence_bytes(rest)
233 {
234 i += len;
235 continue;
236 }
237 if rest[0] == ESC || parse_c1_at(bytes, i).is_some() {
238 break;
240 }
241
242 push_visible_byte(&mut output, rest[0]);
243 i += 1;
244 }
245 output
246}
247
248pub fn parse_ansi_sequence(text: &str) -> Option<usize> {
250 let bytes = text.as_bytes();
251 parse_ansi_sequence_bytes(bytes)
252}
253
254pub fn strip_ansi_ascii_only(text: &str) -> String {
256 let mut output = String::with_capacity(text.len());
257 let bytes = text.as_bytes();
258 let mut search_start = 0;
259 let mut copy_start = 0;
260
261 while let Some(offset) = memchr(ESC, &bytes[search_start..]) {
262 let esc_index = search_start + offset;
263 if let Some(len) = parse_ansi_sequence_bytes(&bytes[esc_index..]) {
264 if copy_start < esc_index {
265 output.push_str(&text[copy_start..esc_index]);
266 }
267 copy_start = esc_index + len;
268 search_start = copy_start;
269 } else {
270 search_start = esc_index + 1;
271 }
272 }
273
274 if copy_start < text.len() {
275 output.push_str(&text[copy_start..]);
276 }
277
278 output
279}
280
281#[must_use]
283pub fn contains_unicode(text: &str) -> bool {
284 text.bytes().any(|b| b >= 0x80)
285}
286
287#[cfg(test)]
288mod tests {
289 use super::{CAN, SUB, strip_ansi, strip_ansi_ascii_only};
290
291 #[test]
292 fn strips_esc_csi_sequences() {
293 let input = "a\x1b[31mred\x1b[0mz";
294 assert_eq!(strip_ansi(input), "aredz");
295 assert_eq!(strip_ansi_ascii_only(input), "aredz");
296 }
297
298 #[test]
299 fn utf8_encoded_c1_is_not_reprocessed_as_control() {
300 let input = "a\u{009b}31mred";
302 assert_eq!(strip_ansi(input), input);
303 }
304
305 #[test]
306 fn strip_removes_ascii_del_control() {
307 let input = format!("a{}b", char::from(0x7f));
308 assert_eq!(strip_ansi(&input), "ab");
309 }
310
311 #[test]
312 fn csi_aborts_on_esc_then_new_sequence_parses() {
313 let input = "a\x1b[31\x1b[32mgreen\x1b[0mz";
314 assert_eq!(strip_ansi(input), "agreenz");
315 }
316
317 #[test]
318 fn csi_aborts_on_can_and_sub() {
319 let can = format!("a\x1b[31{}b", char::from(CAN));
320 let sub = format!("a\x1b[31{}b", char::from(SUB));
321 assert_eq!(strip_ansi(&can), "ab");
322 assert_eq!(strip_ansi(&sub), "ab");
323 }
324
325 #[test]
326 fn osc_aborts_on_esc_non_st() {
327 let input = "a\x1b]title\x1b[31mred\x1b[0mz";
328 assert_eq!(strip_ansi(input), "aredz");
329 }
330
331 #[test]
332 fn incomplete_sequence_drops_tail() {
333 let input = "text\x1b[31";
334 assert_eq!(strip_ansi(input), "text");
335 }
336
337 #[test]
338 fn ascii_only_incomplete_sequence_keeps_tail() {
339 let input = "text\x1b[31";
340 assert_eq!(strip_ansi_ascii_only(input), input);
341 }
342
343 #[test]
344 fn strips_common_progress_redraw_sequences() {
345 let input = "\r\x1b[2KProgress 10%\r\x1b[2KDone\n";
348 assert_eq!(strip_ansi(input), "\rProgress 10%\rDone\n");
349 }
350
351 #[test]
352 fn strips_cursor_navigation_sequences() {
353 let input = "left\x1b[1D!\nup\x1b[1Arow";
354 assert_eq!(strip_ansi(input), "left!\nuprow");
355 }
356
357 #[test]
358 fn strip_ansi_bytes_supports_raw_c1_csi() {
359 let input = [b'a', 0x9b, b'3', b'1', b'm', b'r', b'e', b'd', 0x9b, b'0', b'm', b'z'];
360 let out = super::strip_ansi_bytes(&input);
361 assert_eq!(out, b"aredz");
362 }
363
364 #[test]
365 fn strip_ansi_bytes_supports_raw_c1_osc_and_st() {
366 let mut input = b"pre".to_vec();
367 input.extend_from_slice(&[0x9d]);
368 input.extend_from_slice(b"8;;https://example.com");
369 input.extend_from_slice(&[0x9c]);
370 input.extend_from_slice(b"link");
371 input.extend_from_slice(&[0x9d]);
372 input.extend_from_slice(b"8;;");
373 input.extend_from_slice(&[0x9c]);
374 input.extend_from_slice(b"post");
375 let out = super::strip_ansi_bytes(&input);
376 assert_eq!(out, b"prelinkpost");
377 }
378
379 #[test]
380 fn csi_respects_parameter_intermediate_final_grammar() {
381 let input = "a\x1b[1;2 mred\x1b[0mz";
383 assert_eq!(strip_ansi(input), "aredz");
384 }
385
386 #[test]
387 fn malformed_csi_does_not_consume_following_text() {
388 let malformed = format!("a\x1b[12{}visible", char::from(0x10));
390 assert_eq!(strip_ansi(&malformed), "avisible");
391 }
392
393 #[test]
394 fn strips_wikipedia_sgr_8bit_color_pattern() {
395 let input = "x\x1b[38;5;196mred\x1b[0my";
396 assert_eq!(strip_ansi(input), "xredy");
397 }
398
399 #[test]
400 fn strips_wikipedia_sgr_truecolor_pattern() {
401 let input = "x\x1b[48;2;12;34;56mblock\x1b[0my";
402 assert_eq!(strip_ansi(input), "xblocky");
403 }
404
405 #[test]
406 fn strips_wikipedia_osc8_hyperlink_pattern() {
407 let input = "go \x1b]8;;https://example.com\x1b\\here\x1b]8;;\x1b\\ now";
408 assert_eq!(strip_ansi(input), "go here now");
409 }
410
411 #[test]
412 fn strips_dec_private_mode_csi() {
413 let input = "a\x1b[?25lb\x1b[?25hc";
414 assert_eq!(strip_ansi(input), "abc");
415 }
416
417 #[test]
418 fn strips_three_byte_esc_sequences() {
419 let input = "a\x1b#8b";
421 assert_eq!(strip_ansi(input), "ab");
422
423 let input2 = "a\x1b(Bb";
425 assert_eq!(strip_ansi(input2), "ab");
426
427 let input3 = "a\x1b Fb";
429 assert_eq!(strip_ansi(input3), "ab");
430
431 let input4 = "a\x1b%Gb";
433 assert_eq!(strip_ansi(input4), "ab");
434 }
435
436 #[test]
437 fn incomplete_three_byte_esc_sequence_drops_tail() {
438 let input = "text\x1b#";
440 assert_eq!(strip_ansi(input), "text");
441 }
442}