1use std::hash::{Hash, Hasher};
8
9use cranpose_core::hash::default;
10
11#[derive(Debug, Clone)]
13pub struct LineLayout {
14 pub start_offset: usize,
16 pub end_offset: usize,
18 pub y: f32,
20 pub height: f32,
22}
23
24#[derive(Debug, Clone, Copy, PartialEq)]
26pub struct GlyphLayout {
27 pub line_index: usize,
29 pub start_offset: usize,
31 pub end_offset: usize,
33 pub x: f32,
35 pub y: f32,
37 pub width: f32,
39 pub height: f32,
41}
42
43#[derive(Debug, Clone)]
50pub struct TextLayoutData {
51 pub width: f32,
53 pub height: f32,
55 pub line_height: f32,
57 pub glyph_x_positions: Vec<f32>,
59 pub char_to_byte: Vec<usize>,
61 pub lines: Vec<LineLayout>,
63 pub glyph_layouts: Vec<GlyphLayout>,
65}
66
67#[derive(Debug, Clone)]
68pub struct TextLayoutResult {
69 pub width: f32,
71 pub height: f32,
73 pub line_height: f32,
75 glyph_x_positions: Vec<f32>,
76 char_to_byte: Vec<usize>,
77 pub lines: Vec<LineLayout>,
79 glyph_layouts: Vec<GlyphLayout>,
80 text_hash: u64,
81}
82
83impl TextLayoutResult {
84 pub fn new(text: &str, data: TextLayoutData) -> Self {
86 Self {
87 width: data.width,
88 height: data.height,
89 line_height: data.line_height,
90 glyph_x_positions: data.glyph_x_positions,
91 char_to_byte: data.char_to_byte,
92 lines: data.lines,
93 glyph_layouts: data.glyph_layouts,
94 text_hash: Self::hash_text(text),
95 }
96 }
97
98 pub fn get_cursor_x(&self, byte_offset: usize) -> f32 {
101 let char_idx = self
102 .char_to_byte
103 .iter()
104 .position(|&b| b > byte_offset)
105 .map(|i| i.saturating_sub(1))
106 .unwrap_or(self.char_to_byte.len().saturating_sub(1));
107
108 self.glyph_x_positions
109 .get(char_idx)
110 .copied()
111 .unwrap_or(self.width)
112 }
113
114 pub fn get_offset_for_x(&self, x: f32) -> usize {
117 if self.glyph_x_positions.is_empty() {
118 return 0;
119 }
120
121 let char_idx = match self
122 .glyph_x_positions
123 .binary_search_by(|pos| pos.partial_cmp(&x).unwrap_or(std::cmp::Ordering::Equal))
124 {
125 Ok(i) => i,
126 Err(i) => {
127 if i == 0 {
128 0
129 } else if i >= self.glyph_x_positions.len() {
130 self.glyph_x_positions.len() - 1
131 } else {
132 let before = self.glyph_x_positions[i - 1];
133 let after = self.glyph_x_positions[i];
134 if (x - before) < (after - x) { i - 1 } else { i }
135 }
136 }
137 };
138
139 self.char_to_byte.get(char_idx).copied().unwrap_or(0)
140 }
141
142 pub fn is_valid_for(&self, text: &str) -> bool {
144 self.text_hash == Self::hash_text(text)
145 }
146
147 pub fn glyph_layouts(&self) -> &[GlyphLayout] {
149 &self.glyph_layouts
150 }
151
152 fn hash_text(text: &str) -> u64 {
153 let mut hasher = default::new();
154 text.hash(&mut hasher);
155 hasher.finish()
156 }
157
158 pub fn monospaced(text: &str, char_width: f32, line_height: f32) -> Self {
160 let mut glyph_x_positions = Vec::new();
161 let mut char_to_byte = Vec::new();
162 let mut glyph_layouts = Vec::new();
163 let mut cursor_x = 0.0;
164
165 for (byte_offset, _c) in text.char_indices() {
166 glyph_x_positions.push(cursor_x);
167 char_to_byte.push(byte_offset);
168 cursor_x += char_width;
169 }
170 glyph_x_positions.push(cursor_x);
171 char_to_byte.push(text.len());
172
173 let mut line_x = 0.0;
174 let mut line_y = 0.0;
175 let mut line_index = 0usize;
176 for (byte_offset, c) in text.char_indices() {
177 if c == '\n' {
178 line_index = line_index.saturating_add(1);
179 line_y += line_height;
180 line_x = 0.0;
181 continue;
182 }
183 let glyph_start = byte_offset;
184 let glyph_end = glyph_start + c.len_utf8();
185 glyph_layouts.push(GlyphLayout {
186 line_index,
187 start_offset: glyph_start,
188 end_offset: glyph_end,
189 x: line_x,
190 y: line_y,
191 width: char_width,
192 height: line_height,
193 });
194 line_x += char_width;
195 }
196
197 let line_texts: Vec<&str> = text.split('\n').collect();
198 let line_count = line_texts.len();
199 let mut lines = Vec::with_capacity(line_count);
200 let mut line_start = 0;
201 let mut y = 0.0;
202 let mut max_width: f32 = 0.0;
203
204 for (i, line_text) in line_texts.iter().enumerate() {
205 let line_end = if i == line_count - 1 {
206 text.len()
207 } else {
208 line_start + line_text.len()
209 };
210
211 let line_width = line_text.chars().count() as f32 * char_width;
212 max_width = max_width.max(line_width);
213
214 lines.push(LineLayout {
215 start_offset: line_start,
216 end_offset: line_end,
217 y,
218 height: line_height,
219 });
220
221 line_start = line_end + 1;
222 y += line_height;
223 }
224
225 if lines.is_empty() {
226 lines.push(LineLayout {
227 start_offset: 0,
228 end_offset: 0,
229 y: 0.0,
230 height: line_height,
231 });
232 }
233
234 Self::new(
235 text,
236 TextLayoutData {
237 width: max_width,
238 height: lines.len() as f32 * line_height,
239 line_height,
240 glyph_x_positions,
241 char_to_byte,
242 lines,
243 glyph_layouts,
244 },
245 )
246 }
247}
248
249#[cfg(test)]
250mod tests {
251 use super::*;
252
253 #[test]
254 fn test_monospaced_layout() {
255 let layout = TextLayoutResult::monospaced("Hello", 10.0, 20.0);
256
257 assert_eq!(layout.get_cursor_x(0), 0.0);
258 assert_eq!(layout.get_cursor_x(5), 50.0);
259 }
260
261 #[test]
262 fn test_get_offset_for_x() {
263 let layout = TextLayoutResult::monospaced("Hello", 10.0, 20.0);
264
265 let offset = layout.get_offset_for_x(25.0);
266 assert!(offset == 2 || offset == 3);
267 }
268
269 #[test]
270 fn test_multiline() {
271 let layout = TextLayoutResult::monospaced("Hi\nWorld", 10.0, 20.0);
272
273 assert_eq!(layout.lines.len(), 2);
274 assert_eq!(layout.lines[0].start_offset, 0);
275 assert_eq!(layout.lines[1].start_offset, 3);
276 }
277
278 #[test]
279 fn test_validity() {
280 let layout = TextLayoutResult::monospaced("Hello", 10.0, 20.0);
281
282 assert!(layout.is_valid_for("Hello"));
283 assert!(!layout.is_valid_for("World"));
284 }
285}