harper_core/
token_string_ext.rs

1use crate::{Span, Token};
2use itertools::Itertools;
3use paste::paste;
4
5macro_rules! create_decl_for {
6    ($thing:ident) => {
7        paste! {
8            fn [< first_ $thing >](&self) -> Option<&Token>;
9
10            fn [< last_ $thing >](&self) -> Option<&Token>;
11
12            fn [< last_ $thing _index >](&self) -> Option<usize>;
13
14            fn [<iter_ $thing _indices>](&self) -> impl DoubleEndedIterator<Item = usize> + '_;
15
16            fn [<iter_ $thing s>](&self) -> impl Iterator<Item = &Token> + '_;
17        }
18    };
19}
20
21macro_rules! create_fns_for {
22    ($thing:ident) => {
23        paste! {
24            fn [< first_ $thing >](&self) -> Option<&Token> {
25                self.iter().find(|v| v.kind.[<is_ $thing>]())
26            }
27
28            fn [< last_ $thing >](&self) -> Option<&Token> {
29                self.iter().rev().find(|v| v.kind.[<is_ $thing>]())
30            }
31
32            fn [< last_ $thing _index >](&self) -> Option<usize> {
33                self.iter().rev().position(|v| v.kind.[<is_ $thing>]()).map(|i| self.len() - i - 1)
34            }
35
36            fn [<iter_ $thing _indices>](&self) -> impl DoubleEndedIterator<Item = usize> + '_ {
37                self.iter()
38                    .enumerate()
39                    .filter(|(_, t)| t.kind.[<is_ $thing>]())
40                    .map(|(i, _)| i)
41            }
42
43            fn [<iter_ $thing s>](&self) -> impl Iterator<Item = &Token> + '_ {
44                self.[<iter_ $thing _indices>]().map(|i| &self[i])
45            }
46        }
47    };
48}
49
50/// Extension methods for [`Token`] sequences that make them easier to wrangle and query.
51pub trait TokenStringExt {
52    fn first_sentence_word(&self) -> Option<&Token>;
53    fn first_non_whitespace(&self) -> Option<&Token>;
54    /// Grab the span that represents the beginning of the first element and the
55    /// end of the last element.
56    fn span(&self) -> Option<Span>;
57
58    create_decl_for!(adjective);
59    create_decl_for!(apostrophe);
60    create_decl_for!(at);
61    create_decl_for!(comma);
62    create_decl_for!(conjunction);
63    create_decl_for!(chunk_terminator);
64    create_decl_for!(currency);
65    create_decl_for!(ellipsis);
66    create_decl_for!(hostname);
67    create_decl_for!(likely_homograph);
68    create_decl_for!(number);
69    create_decl_for!(noun);
70    create_decl_for!(paragraph_break);
71    create_decl_for!(pipe);
72    create_decl_for!(preposition);
73    create_decl_for!(punctuation);
74    create_decl_for!(quote);
75    create_decl_for!(sentence_terminator);
76    create_decl_for!(space);
77    create_decl_for!(unlintable);
78    create_decl_for!(verb);
79    create_decl_for!(word);
80    create_decl_for!(word_like);
81
82    fn iter_linking_verb_indices(&self) -> impl Iterator<Item = usize> + '_;
83    fn iter_linking_verbs(&self) -> impl Iterator<Item = &Token> + '_;
84
85    /// Iterate over chunks.
86    ///
87    /// For example, the following sentence contains two chunks separated by a
88    /// comma:
89    ///
90    /// ```text
91    /// Here is an example, it is short.
92    /// ```
93    fn iter_chunks(&self) -> impl Iterator<Item = &'_ [Token]> + '_;
94
95    /// Get an iterator over token slices that represent the individual
96    /// paragraphs in a document.
97    fn iter_paragraphs(&self) -> impl Iterator<Item = &'_ [Token]> + '_;
98
99    /// Get an iterator over token slices that represent the individual
100    /// sentences in a document.
101    fn iter_sentences(&self) -> impl Iterator<Item = &'_ [Token]> + '_;
102}
103
104impl TokenStringExt for [Token] {
105    create_fns_for!(adjective);
106    create_fns_for!(apostrophe);
107    create_fns_for!(at);
108    create_fns_for!(chunk_terminator);
109    create_fns_for!(comma);
110    create_fns_for!(conjunction);
111    create_fns_for!(currency);
112    create_fns_for!(ellipsis);
113    create_fns_for!(hostname);
114    create_fns_for!(likely_homograph);
115    create_fns_for!(noun);
116    create_fns_for!(number);
117    create_fns_for!(paragraph_break);
118    create_fns_for!(pipe);
119    create_fns_for!(preposition);
120    create_fns_for!(punctuation);
121    create_fns_for!(quote);
122    create_fns_for!(sentence_terminator);
123    create_fns_for!(space);
124    create_fns_for!(unlintable);
125    create_fns_for!(verb);
126    create_fns_for!(word_like);
127    create_fns_for!(word);
128
129    fn first_non_whitespace(&self) -> Option<&Token> {
130        self.iter().find(|t| !t.kind.is_whitespace())
131    }
132
133    fn first_sentence_word(&self) -> Option<&Token> {
134        let (w_idx, word) = self.iter().find_position(|v| v.kind.is_word())?;
135
136        let Some(u_idx) = self.iter().position(|v| v.kind.is_unlintable()) else {
137            return Some(word);
138        };
139
140        if w_idx < u_idx { Some(word) } else { None }
141    }
142
143    fn span(&self) -> Option<Span> {
144        let min_max = self
145            .iter()
146            .flat_map(|v| [v.span.start, v.span.end].into_iter())
147            .minmax();
148
149        match min_max {
150            itertools::MinMaxResult::NoElements => None,
151            itertools::MinMaxResult::OneElement(min) => Some(Span::new(min, min)),
152            itertools::MinMaxResult::MinMax(min, max) => Some(Span::new(min, max)),
153        }
154    }
155
156    fn iter_linking_verb_indices(&self) -> impl Iterator<Item = usize> + '_ {
157        self.iter_word_indices().filter(|idx| {
158            let word = &self[*idx];
159            let Some(Some(meta)) = word.kind.as_word() else {
160                return false;
161            };
162
163            meta.is_linking_verb()
164        })
165    }
166
167    fn iter_linking_verbs(&self) -> impl Iterator<Item = &Token> + '_ {
168        self.iter_linking_verb_indices().map(|idx| &self[idx])
169    }
170
171    fn iter_chunks(&self) -> impl Iterator<Item = &'_ [Token]> + '_ {
172        let first_chunk = self
173            .iter_chunk_terminator_indices()
174            .next()
175            .map(|first_term| &self[0..=first_term]);
176
177        let rest = self
178            .iter_chunk_terminator_indices()
179            .tuple_windows()
180            .map(move |(a, b)| &self[a + 1..=b]);
181
182        let last = if let Some(last_i) = self.last_chunk_terminator_index() {
183            if last_i + 1 < self.len() {
184                Some(&self[last_i + 1..])
185            } else {
186                None
187            }
188        } else {
189            Some(self)
190        };
191
192        first_chunk.into_iter().chain(rest).chain(last)
193    }
194
195    fn iter_paragraphs(&self) -> impl Iterator<Item = &'_ [Token]> + '_ {
196        let first_pg = self
197            .iter_paragraph_break_indices()
198            .next()
199            .map(|first_term| &self[0..=first_term]);
200
201        let rest = self
202            .iter_paragraph_break_indices()
203            .tuple_windows()
204            .map(move |(a, b)| &self[a + 1..=b]);
205
206        let last_pg = if let Some(last_i) = self.last_paragraph_break_index() {
207            if last_i + 1 < self.len() {
208                Some(&self[last_i + 1..])
209            } else {
210                None
211            }
212        } else {
213            Some(self)
214        };
215
216        first_pg.into_iter().chain(rest).chain(last_pg)
217    }
218
219    fn iter_sentences(&self) -> impl Iterator<Item = &'_ [Token]> + '_ {
220        let first_sentence = self
221            .iter_sentence_terminator_indices()
222            .next()
223            .map(|first_term| &self[0..=first_term]);
224
225        let rest = self
226            .iter_sentence_terminator_indices()
227            .tuple_windows()
228            .map(move |(a, b)| &self[a + 1..=b]);
229
230        let last_sentence = if let Some(last_i) = self.last_sentence_terminator_index() {
231            if last_i + 1 < self.len() {
232                Some(&self[last_i + 1..])
233            } else {
234                None
235            }
236        } else {
237            Some(self)
238        };
239
240        first_sentence.into_iter().chain(rest).chain(last_sentence)
241    }
242}