1use crate::{SeqBytes, SeqBytesIter, SeqBytesIterMut};
2use alloc::{string::String, vec::Vec};
3use core::fmt;
4
5#[derive(Clone, Default, Eq, PartialEq, Hash)]
19pub struct SeqStr {
20 inner: SeqBytes,
21}
22
23impl SeqStr {
24 pub fn new() -> Self {
26 Self::default()
27 }
28
29 pub fn is_empty(&self) -> bool {
31 self.inner.is_empty()
32 }
33
34 pub fn len(&self) -> usize {
36 self.inner.len()
37 }
38
39 pub fn reserve(&mut self, extra: usize) {
41 self.inner.reserve(extra);
42 }
43
44 pub fn shrink_to_fit(&mut self) {
46 self.inner.shrink_to_fit();
47 }
48
49 pub fn get(&self, idx: usize) -> Option<&str> {
51 self.inner
52 .get(idx)
53 .map(|b| unsafe { str::from_utf8_unchecked(b) })
54 }
55
56 pub fn get_mut(&mut self, idx: usize) -> Option<&mut str> {
58 self.inner
59 .get_mut(idx)
60 .map(|b| unsafe { str::from_utf8_unchecked_mut(b) })
61 }
62
63 pub fn contains(&self, s: impl AsRef<str>) -> bool {
65 self.inner.contains(s.as_ref().as_bytes())
66 }
67
68 pub fn push(&mut self, s: impl AsRef<str>) {
70 self.inner.push(s.as_ref().as_bytes());
71 }
72
73 pub fn last(&self) -> Option<&str> {
75 self.inner
76 .last()
77 .map(|b| unsafe { str::from_utf8_unchecked(b) })
78 }
79
80 pub fn pop(&mut self) {
83 self.inner.pop()
84 }
85
86 pub fn range(
92 &self,
93 range_bounds: impl core::ops::RangeBounds<usize>,
94 ) -> core::iter::Map<SeqBytesIter<'_>, fn(&[u8]) -> &str> {
95 fn helper(b: &[u8]) -> &str {
96 unsafe { str::from_utf8_unchecked(b) }
97 }
98
99 self.inner.range(range_bounds).map(helper)
100 }
101
102 pub fn range_mut(
104 &mut self,
105 range_bounds: impl core::ops::RangeBounds<usize>,
106 ) -> core::iter::Map<SeqBytesIterMut<'_>, fn(&mut [u8]) -> &mut str> {
107 fn helper(b: &mut [u8]) -> &mut str {
108 unsafe { str::from_utf8_unchecked_mut(b) }
109 }
110
111 self.inner.range_mut(range_bounds).map(helper)
112 }
113
114 pub fn iter(&self) -> core::iter::Map<SeqBytesIter<'_>, fn(&[u8]) -> &str> {
116 fn helper(b: &[u8]) -> &str {
117 unsafe { str::from_utf8_unchecked(b) }
118 }
119
120 self.inner.iter().map(helper)
121 }
122
123 pub fn iter_mut(&mut self) -> core::iter::Map<SeqBytesIterMut<'_>, fn(&mut [u8]) -> &mut str> {
125 fn helper(b: &mut [u8]) -> &mut str {
126 unsafe { str::from_utf8_unchecked_mut(b) }
127 }
128
129 self.inner.iter_mut().map(helper)
130 }
131
132 pub fn truncate(&mut self, new_size: usize) {
134 self.inner.truncate(new_size)
135 }
136
137 pub fn resize(&mut self, new_size: usize) {
139 self.inner.resize(new_size)
140 }
141
142 pub fn retain(&mut self, mut pred: impl FnMut(&str) -> bool) {
145 self.inner
146 .retain(move |b| pred(unsafe { str::from_utf8_unchecked(b) }));
147 }
148
149 pub fn retain_mut(&mut self, mut pred: impl FnMut(&mut str) -> bool) {
152 self.inner
153 .retain_mut(move |b| pred(unsafe { str::from_utf8_unchecked_mut(b) }));
154 }
155
156 pub fn in_place_writer(&mut self) -> impl core::fmt::Write {
159 struct Sink<T: FnMut(&[u8])>(pub T);
161
162 impl<T: FnMut(&[u8])> core::fmt::Write for Sink<T> {
163 fn write_str(&mut self, s: &str) -> std::fmt::Result {
164 (self.0)(s.as_bytes());
165 Ok(())
166 }
167 }
168
169 Sink(self.inner.in_place_writer_no_std())
170 }
171
172 pub fn from_display_iter<T: core::fmt::Display, I: Iterator<Item = T>>(it: I) -> Self {
175 use core::fmt::Write;
176
177 let mut result = Self::default();
178 result.reserve(it.size_hint().0);
179 for item in it {
180 write!(result.in_place_writer(), "{item}")
183 .expect("a Display implementation returned an error unexpectedly");
184 }
185 result
186 }
187
188 pub fn as_vec(&self) -> Vec<&str> {
195 self.iter().collect()
196 }
197
198 pub fn concat(&self) -> &str {
200 unsafe { core::str::from_utf8_unchecked(self.inner.concat()) }
201 }
202
203 pub fn join(&self, separator: &str) -> String {
205 let mut result = String::with_capacity(self.inner.num_bytes() + self.inner.len().saturating_sub(1) * separator.len());
206 let mut first = true;
207
208 for s in self.iter() {
209 if first {
210 first = false;
211 } else {
212 result += separator;
213 }
214 result += s;
215 }
216 result
217 }
218}
219
220impl core::ops::Index<usize> for SeqStr {
221 type Output = str;
222
223 fn index(&self, index: usize) -> &str {
224 unsafe { str::from_utf8_unchecked(self.inner.index(index)) }
225 }
226}
227
228impl core::ops::IndexMut<usize> for SeqStr {
229 fn index_mut(&mut self, index: usize) -> &mut str {
230 unsafe { str::from_utf8_unchecked_mut(self.inner.index_mut(index)) }
231 }
232}
233
234impl fmt::Debug for SeqStr {
235 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
236 f.debug_list().entries(self.iter()).finish()
237 }
238}
239
240impl<A: AsRef<str>> Extend<A> for SeqStr {
241 fn extend<T>(&mut self, iter: T)
242 where
243 T: IntoIterator<Item = A>,
244 {
245 let iter = iter.into_iter();
246 self.reserve(iter.size_hint().0);
247 for item in iter {
248 self.push(item);
249 }
250 }
251}
252
253impl<A: AsRef<str>> FromIterator<A> for SeqStr {
254 fn from_iter<T>(iter: T) -> Self
256 where
257 T: IntoIterator<Item = A>,
258 {
259 let mut result = SeqStr::default();
260 result.extend(iter);
261 result
262 }
263}
264
265impl<'a> IntoIterator for &'a SeqStr {
268 type Item = &'a str;
269 type IntoIter = core::iter::Map<SeqBytesIter<'a>, fn(&[u8]) -> &str>;
270
271 fn into_iter(self) -> Self::IntoIter {
272 fn helper(b: &[u8]) -> &str {
273 unsafe { core::str::from_utf8_unchecked(b) }
274 }
275
276 self.inner.iter().map(helper)
277 }
278}
279
280#[cfg(feature = "serde")]
281mod serde_impls {
282 use super::*;
283 use ::serde::{
284 Deserialize, Serialize,
285 de::{Deserializer, SeqAccess, Visitor},
286 ser::{SerializeSeq, Serializer},
287 };
288
289 impl Serialize for SeqStr {
290 fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
291 where
292 S: Serializer,
293 {
294 let mut seq = serializer.serialize_seq(Some(self.len()))?;
295 for e in self {
296 seq.serialize_element(e)?;
297 }
298 seq.end()
299 }
300 }
301
302 impl<'de> Deserialize<'de> for SeqStr {
303 fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
304 where
305 D: Deserializer<'de>,
306 {
307 deserializer.deserialize_seq(SeqStrVis {})
308 }
309 }
310
311 struct SeqStrVis {}
312
313 impl<'de> Visitor<'de> for SeqStrVis {
314 type Value = SeqStr;
315
316 fn expecting(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
317 formatter.write_str("a sequence of strings")
318 }
319
320 fn visit_seq<A>(self, mut seq: A) -> Result<Self::Value, A::Error>
321 where
322 A: SeqAccess<'de>,
323 {
324 let mut result = SeqStr::default();
325
326 if let Some(size) = seq.size_hint() {
327 result.reserve(size);
328 }
329
330 loop {
331 let maybe_next_str: Option<&str> = seq.next_element()?;
332 if let Some(next_str) = maybe_next_str {
333 result.push(next_str);
334 } else {
335 return Ok(result);
336 }
337 }
338 }
339 }
340}
341
342#[cfg(test)]
343mod tests {
344 use super::*;
345 use alloc::{borrow::ToOwned, vec, vec::Vec};
346
347 #[test]
348 fn vec_str_conversions() {
349 let vec_str = vec!["1", "2", "3"];
350
351 let seq_str: SeqStr = vec_str.into_iter().collect();
352
353 assert_eq!(seq_str.len(), 3);
354 assert_eq!(&seq_str[0], "1");
355 assert_eq!(&seq_str[1], "2");
356 assert_eq!(&seq_str[2], "3");
357
358 let vec_str2 = seq_str.iter().map(ToOwned::to_owned).collect::<Vec<_>>();
359
360 assert_eq!(vec_str2.len(), 3);
361 assert_eq!(vec_str2[0], "1");
362 assert_eq!(vec_str2[1], "2");
363 assert_eq!(vec_str2[2], "3");
364 }
365
366 #[test]
367 fn vec_string_conversions() {
368 let vec_string = vec!["1".to_owned(), "2".to_owned(), "3".to_owned()];
369
370 let seq_str: SeqStr = vec_string.into_iter().collect();
371
372 assert_eq!(seq_str.len(), 3);
373 assert_eq!(&seq_str[0], "1");
374 assert_eq!(&seq_str[1], "2");
375 assert_eq!(&seq_str[2], "3");
376
377 let vec_str2 = seq_str.iter().map(ToOwned::to_owned).collect::<Vec<_>>();
378
379 assert_eq!(vec_str2.len(), 3);
380 assert_eq!(vec_str2[0], "1");
381 assert_eq!(vec_str2[1], "2");
382 assert_eq!(vec_str2[2], "3");
383 }
384
385 #[test]
386 fn from_display_iter() {
387 let v = vec![1, 2, 3, 45, 67];
388
389 let seq_str = SeqStr::from_display_iter(v.into_iter());
390
391 assert_eq!(seq_str.len(), 5);
392 assert_eq!(&seq_str[0], "1");
393 assert_eq!(&seq_str[1], "2");
394 assert_eq!(&seq_str[2], "3");
395 assert_eq!(&seq_str[3], "45");
396 assert_eq!(&seq_str[4], "67");
397 }
398
399 #[test]
400 fn range() {
401 let v = vec![1, 2, 3, 45, 67];
402
403 let seq_str = SeqStr::from_display_iter(v.into_iter());
404
405 let seq_str2: SeqStr = seq_str.range(1..4).collect();
406 assert_eq!(seq_str2.len(), 3);
407 assert_eq!(&seq_str2[0], "2");
408 assert_eq!(&seq_str2[1], "3");
409 assert_eq!(&seq_str2[2], "45");
410
411 let seq_str2: SeqStr = seq_str.range(3..).collect();
412 assert_eq!(seq_str2.len(), 2);
413 assert_eq!(&seq_str2[0], "45");
414 assert_eq!(&seq_str2[1], "67");
415
416 let seq_str2: SeqStr = seq_str.range(..3).collect();
417 assert_eq!(seq_str2.len(), 3);
418 assert_eq!(&seq_str2[0], "1");
419 assert_eq!(&seq_str2[1], "2");
420 assert_eq!(&seq_str2[2], "3");
421
422 let seq_str2: SeqStr = seq_str.range(..).collect();
423 assert_eq!(seq_str2.len(), 5);
424 assert_eq!(&seq_str2[0], "1");
425 assert_eq!(&seq_str2[1], "2");
426 assert_eq!(&seq_str2[2], "3");
427 assert_eq!(&seq_str2[3], "45");
428 assert_eq!(&seq_str2[4], "67");
429 }
430
431 #[test]
432 fn iter_mut() {
433 let mut seq_str = SeqStr::from_iter(["asdf", "jkl;", ""]);
434
435 assert_eq!(seq_str.len(), 3);
436 assert_eq!(&seq_str[0], "asdf");
437 assert_eq!(&seq_str[1], "jkl;");
438 assert_eq!(&seq_str[2], "");
439
440 for s in seq_str.iter_mut() {
441 s.make_ascii_uppercase();
442 }
443
444 assert_eq!(seq_str.len(), 3);
445 assert_eq!(&seq_str[0], "ASDF");
446 assert_eq!(&seq_str[1], "JKL;");
447 assert_eq!(&seq_str[2], "");
448 }
449
450 #[test]
451 fn test_serde() {
452 let seq_str: SeqStr = serde_json::from_str("[\"asdf\", \"jkl;\", \"\"]").unwrap();
453
454 assert_eq!(seq_str.len(), 3);
455 assert_eq!(&seq_str[0], "asdf");
456 assert_eq!(&seq_str[1], "jkl;");
457 assert_eq!(&seq_str[2], "");
458
459 let ser = serde_json::to_string(&seq_str).unwrap();
460
461 let seq_str2: SeqStr = serde_json::from_str(&ser).unwrap();
462
463 assert_eq!(seq_str, seq_str2);
464 }
465
466 #[test]
467 fn test_join() {
468 let seq_str = SeqStr::from_iter(["asdf", "jkl;", "", ":)"]);
469
470 assert_eq!(seq_str.concat(), "asdfjkl;:)");
471 assert_eq!(seq_str.join(", "), "asdf, jkl;, , :)");
472 }
473}