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mermaid_cli/render/widgets/
input.rs

1use ratatui::{
2    buffer::Buffer,
3    layout::Rect,
4    style::Style,
5    widgets::{Block, Borders, Paragraph, StatefulWidget, Widget},
6};
7use unicode_width::{UnicodeWidthChar, UnicodeWidthStr};
8
9use crate::render::theme::Theme;
10
11/// State for the input widget
12#[derive(Debug, Clone)]
13pub struct InputState {
14    /// Cursor position in the input string
15    pub cursor_position: usize,
16}
17
18impl InputState {
19    /// Create a new input state
20    pub fn new() -> Self {
21        Self { cursor_position: 0 }
22    }
23
24    /// Calculate cursor position for wrapped text.
25    ///
26    /// `content_width` is in **display cells**. Returns `(row, col)` where
27    /// `col` is also in display cells — required because `Frame::set_cursor_
28    /// position` is cell-based, not byte-based. CJK / emoji input previously
29    /// mispositioned the cursor because the column was returned in bytes.
30    ///
31    /// Uses the shared `layout_rows` helper so the wrapping decisions match
32    /// `wrap_input_with_prompt` exactly (the two would silently drift
33    /// otherwise — `cursor_and_wrap_agree_on_line_structure` guards this).
34    pub fn calculate_cursor_position(
35        input: &str,
36        cursor_pos: usize,
37        content_width: usize,
38    ) -> (u16, u16) {
39        let cursor_pos = cursor_pos.min(input.len());
40
41        if content_width < 3 || input.is_empty() {
42            return (0, 0);
43        }
44
45        // Available cells per line after the 2-cell prefix ("> " or "  ")
46        let line_width = content_width.saturating_sub(2);
47        if line_width == 0 {
48            return (0, 0);
49        }
50
51        let rows = layout_rows(input, line_width);
52        for (idx, row) in rows.iter().enumerate() {
53            let content_end = row.start + row.len;
54            let gap_end = content_end + row.gap;
55            let is_last = idx + 1 == rows.len();
56
57            // Cursor belongs to this row if it falls within the row chars or
58            // the whitespace/newline gap after it, or if this is the last row.
59            if cursor_pos < gap_end || is_last {
60                // Cap at the row's content so trailing/gap whitespace doesn't
61                // overflow past the visible line.
62                let cursor_byte_in_line = cursor_pos.saturating_sub(row.start).min(row.len);
63                let line_text = &input[row.start..content_end];
64                let col_cells = line_text[..cursor_byte_in_line.min(line_text.len())].width();
65                return (idx as u16, col_cells as u16);
66            }
67        }
68        (0, 0)
69    }
70}
71
72impl Default for InputState {
73    fn default() -> Self {
74        Self::new()
75    }
76}
77
78/// Props for InputWidget. The slash-command palette is rendered
79/// separately as `SlashPaletteWidget` in the bottom region (see
80/// `render.rs`); this widget just draws the bordered input box.
81pub struct InputWidget<'a> {
82    pub input: &'a str,
83    /// True when a slash command is in flight (input starts with `/`).
84    /// Drives the warning-yellow border color so the user has a visual
85    /// cue that they're in command-entry mode.
86    pub showing_command_hints: bool,
87    pub theme: &'a Theme,
88    /// Reasoning is currently enabled (any non-`None` level). Drives the
89    /// cyan/sage border color cue.
90    pub reasoning_active: bool,
91}
92
93impl<'a> StatefulWidget for InputWidget<'a> {
94    type State = InputState;
95
96    fn render(self, area: Rect, buf: &mut Buffer, _state: &mut Self::State) {
97        let input_style = Style::new().fg(self.theme.colors.text_primary.to_color());
98
99        // Manually wrap input text with proper indentation (Claude Code style)
100        // First line: "> text"
101        // Continuation lines: "  text" (2 spaces to align with first line content)
102        // Always show "> " prompt, even when input is empty
103        let input_text = {
104            let width = area.width.saturating_sub(2) as usize; // Account for top/bottom borders
105            wrap_input_with_prompt(self.input, width)
106        };
107
108        // Border color priority: command-entry mode wins (yellow),
109        // then reasoning-enabled (cyan), then default gray.
110        let border_color = if self.showing_command_hints {
111            self.theme.colors.warning.to_color()
112        } else if self.reasoning_active {
113            // Mermaid sage blue - same as the path color in status bar
114            self.theme.colors.info.to_color() // cyan
115        } else {
116            self.theme.colors.border.to_color() // gray
117        };
118
119        let block = if self.showing_command_hints {
120            Block::default()
121                .borders(Borders::TOP | Borders::BOTTOM)
122                .border_style(Style::new().fg(border_color))
123                .title(" Enter Command ")
124        } else {
125            Block::default()
126                .borders(Borders::TOP | Borders::BOTTOM)
127                .border_style(Style::new().fg(border_color))
128        };
129
130        let input = Paragraph::new(input_text).style(input_style).block(block);
131
132        input.render(area, buf);
133
134        // Note: Cursor positioning is handled in the main render loop after all widgets are rendered
135        // The Frame::set_cursor_position() is called there with the calculated position
136    }
137}
138
139/// Given a tail of input and a max line width (in **display cells**, not
140/// bytes), return the byte offset where this line should end.
141///
142/// Walks `remaining` char-by-char accumulating `UnicodeWidthChar::width`
143/// so CJK / emoji break at the visual edge instead of after ~1/3 of the
144/// space (the byte length of multi-byte chars exceeds their cell width).
145/// Prefers a whitespace break within the accepted range; falls back to a
146/// hard break at the char boundary if no whitespace exists. Always makes
147/// progress: if even the first character exceeds `line_width`, returns
148/// the byte offset *after* it so the caller can't infinite-loop.
149///
150/// Shared between `InputState::calculate_cursor_position` and
151/// `wrap_input_with_prompt` so both make identical wrapping decisions.
152fn find_line_break(remaining: &str, line_width: usize) -> usize {
153    if remaining.is_empty() {
154        return 0;
155    }
156
157    // Walk chars, accumulating display width, to find the byte offset at
158    // which the running cell-count would exceed `line_width`. If the whole
159    // string fits, we're done.
160    let mut acc_width = 0usize;
161    let mut hard_break = remaining.len();
162    for (byte_idx, ch) in remaining.char_indices() {
163        let ch_width = ch.width().unwrap_or(0);
164        if acc_width + ch_width > line_width {
165            hard_break = byte_idx;
166            break;
167        }
168        acc_width += ch_width;
169    }
170
171    if hard_break == remaining.len() {
172        return remaining.len();
173    }
174
175    // If the very first character is wider than the entire line (e.g. a
176    // double-width emoji on a 1-cell viewport), force progress by taking
177    // exactly one char — otherwise the caller loops forever.
178    if hard_break == 0 {
179        return remaining
180            .char_indices()
181            .nth(1)
182            .map(|(idx, _)| idx)
183            .unwrap_or(remaining.len());
184    }
185
186    // Prefer a whitespace break within the accepted byte range. Advance past
187    // the whitespace char by its UTF-8 length so the returned offset is always
188    // a char boundary — `char::is_whitespace` matches multibyte spaces (NBSP
189    // U+00A0 = 2 bytes, ideographic space U+3000 = 3 bytes, U+2028, …) that a
190    // naive `pos + 1` would split mid-codepoint, panicking the renderer on the
191    // subsequent slice. For 1-byte ASCII whitespace this is identical to the
192    // old `pos + 1`.
193    remaining[..hard_break]
194        .char_indices()
195        .rev()
196        .find(|(_, c)| c.is_whitespace())
197        .map(|(pos, c)| pos + c.len_utf8())
198        .unwrap_or(hard_break)
199}
200
201/// One rendered row's span within the original input, in bytes.
202///
203/// `start..start+len` is the row's visible text. `gap` is the
204/// whitespace/newline consumed after it before the next row begins (trimmed
205/// inter-word whitespace from a soft wrap, plus the `\n` byte of a hard
206/// break). Shared by `wrap_input_with_prompt` and `calculate_cursor_position`
207/// so they never disagree on line structure.
208struct RowSpan {
209    start: usize,
210    len: usize,
211    gap: usize,
212}
213
214/// Lay `input` out into rendered rows at `line_width` (display cells).
215/// Explicit `\n` forces a new row (so pasted/Shift+Enter newlines render as
216/// real lines); each resulting segment is then soft-wrapped on width via
217/// `find_line_break`. A trailing newline yields a final empty row.
218fn layout_rows(input: &str, line_width: usize) -> Vec<RowSpan> {
219    let mut rows: Vec<RowSpan> = Vec::new();
220    if input.is_empty() {
221        return rows;
222    }
223    let total = input.len();
224    let mut seg_start = 0usize;
225    loop {
226        let seg_end = match input[seg_start..].find('\n') {
227            Some(rel) => seg_start + rel,
228            None => total,
229        };
230        let segment = &input[seg_start..seg_end];
231
232        // Soft-wrap this newline-free segment into >=1 rows.
233        let mut local = 0usize;
234        loop {
235            let rem = &segment[local..];
236            let bp = find_line_break(rem, line_width);
237            let after = &rem[bp..];
238            let ws_gap = after.len() - after.trim_start().len();
239            rows.push(RowSpan {
240                start: seg_start + local,
241                len: bp,
242                gap: ws_gap,
243            });
244            local += bp + ws_gap;
245            if local >= segment.len() {
246                break;
247            }
248        }
249
250        if seg_end >= total {
251            break;
252        }
253        // A '\n' follows: count it in the last row's gap so cursor math lands
254        // the caret on the correct side of the break.
255        if let Some(last) = rows.last_mut() {
256            last.gap += 1;
257        }
258        seg_start = seg_end + 1;
259        if seg_start == total {
260            // Trailing newline → a final empty row.
261            rows.push(RowSpan {
262                start: seg_start,
263                len: 0,
264                gap: 0,
265            });
266            break;
267        }
268    }
269    rows
270}
271
272/// Wrap input text with "> " prefix on the first line and "  " on
273/// continuation lines (Claude Code style). Always returns at least "> ",
274/// even when input is empty. Embedded newlines render as real rows.
275fn wrap_input_with_prompt(input: &str, width: usize) -> String {
276    if width < 3 {
277        // Not enough space for "> " prefix
278        return input.to_string();
279    }
280    if input.is_empty() {
281        return String::from("> ");
282    }
283
284    // First line and continuation lines both reserve 2 chars for their
285    // respective prefix ("> " or "  "), so they share the same line width.
286    let line_width = width.saturating_sub(2);
287
288    let mut result = String::new();
289    for (idx, row) in layout_rows(input, line_width).iter().enumerate() {
290        let text = input[row.start..row.start + row.len].trim_end();
291        if idx == 0 {
292            result.push_str("> ");
293        } else {
294            result.push('\n');
295            result.push_str("  ");
296        }
297        result.push_str(text);
298    }
299    result
300}
301
302#[cfg(test)]
303mod tests {
304    use super::*;
305
306    /// Parity: for every byte offset in `input`, `calculate_cursor_position`
307    /// must return a (row, col) that lands in the same visual line emitted
308    /// by `wrap_input_with_prompt`. Catches silent drift between the two
309    /// functions going forward.
310    #[test]
311    fn cursor_and_wrap_agree_on_line_structure() {
312        let inputs = [
313            "hello world",
314            "the quick brown fox jumps over the lazy dog",
315            "nospacesinthislonginputthatmusthardbreak",
316            "mixed short and verylongcontiguoustoken here",
317            "leading  double  spaces  between  words",
318            "",
319            // CJK inputs: each char is 3 bytes / 2 display cells. The wrap
320            // logic must agree on line structure across both functions.
321            "你好世界",
322            "你好 world 世界",
323            "abc你好def世界ghi",
324            // Embedded newlines (pasted / Shift+Enter): hard line breaks.
325            "first line\nsecond line",
326            "para one\n\npara two",
327            "trailing newline\n",
328            "\nleading newline",
329        ];
330        let content_width = 20usize;
331        for input in inputs {
332            let wrapped = wrap_input_with_prompt(input, content_width);
333
334            // Strip prefixes to count content lines (first line "> ",
335            // continuation lines "  "). This yields one vec per rendered
336            // line holding the post-prefix content.
337            let rendered_lines: Vec<String> = wrapped
338                .split('\n')
339                .enumerate()
340                .map(|(i, line)| {
341                    let prefix = if i == 0 { "> " } else { "  " };
342                    line.strip_prefix(prefix).unwrap_or(line).to_string()
343                })
344                .collect();
345
346            // For each byte offset in the input, ask the cursor function
347            // which (row, col) it belongs to, then assert the row index is
348            // in range for the wrapped text.
349            for cursor_pos in 0..=input.len() {
350                if !input.is_char_boundary(cursor_pos) {
351                    continue;
352                }
353                let (row, _col) =
354                    InputState::calculate_cursor_position(input, cursor_pos, content_width);
355                assert!(
356                    (row as usize) < rendered_lines.len().max(1),
357                    "cursor row {} out of wrap range ({} lines) for input {:?} at byte {}",
358                    row,
359                    rendered_lines.len(),
360                    input,
361                    cursor_pos,
362                );
363            }
364        }
365    }
366
367    #[test]
368    fn find_line_break_whitespace_preferred() {
369        assert_eq!(find_line_break("hello world foo", 10), 6);
370    }
371
372    #[test]
373    fn find_line_break_hard_break_without_whitespace() {
374        assert_eq!(find_line_break("abcdefghijklmno", 5), 5);
375    }
376
377    #[test]
378    fn find_line_break_respects_char_boundary() {
379        // 3-byte CJK chars: each is 3 bytes / 2 display cells. With
380        // `line_width = 4` cells we fit exactly two CJK chars (4 cells,
381        // 6 bytes). Old byte-based code returned 3 (only the first char),
382        // wasting half the line.
383        let s = "你好";
384        assert_eq!(find_line_break(s, 4), 6);
385    }
386
387    #[test]
388    fn find_line_break_uses_display_width_for_cjk() {
389        // Cell width of "你好世界abc" = 4*2 + 3 = 11 cells; `line_width=10`
390        // fits "你好世界ab" (10 cells, 14 bytes) and breaks before "c".
391        let s = "你好世界abc";
392        assert_eq!(find_line_break(s, 10), 14);
393    }
394
395    #[test]
396    fn find_line_break_whole_remaining_fits() {
397        assert_eq!(find_line_break("short", 100), "short".len());
398    }
399
400    #[test]
401    fn find_line_break_makes_progress_when_first_char_overflows() {
402        // Double-width char on a 1-cell viewport: must still consume the
403        // char (return offset 3) so the wrap loop can't spin forever.
404        assert_eq!(find_line_break("你hello", 1), 3);
405    }
406
407    #[test]
408    fn find_line_break_multibyte_whitespace_is_char_boundary() {
409        // Regression: `char::is_whitespace` matches multibyte spaces (NBSP
410        // U+00A0 = 2 bytes, ideographic space U+3000 = 3 bytes, U+2028,
411        // U+202F …). A naive `pos + 1` break offset lands mid-codepoint and
412        // the caller's `&rem[bp..]` slice panics the whole renderer. The
413        // break must always be a char boundary, and the full wrap path must
414        // not panic.
415        for s in [
416            "aaaa\u{00A0}bbbbbbbbbbbbbbbb",
417            "\u{3000}\u{3000}wwwwwwwwwwwwwww",
418            "word\u{2028}word\u{202F}wordwordword",
419        ] {
420            for width in 1..=20 {
421                let bp = find_line_break(s, width);
422                assert!(
423                    s.is_char_boundary(bp),
424                    "break {bp} not a char boundary in {s:?} at width {width}",
425                );
426                let _ = &s[bp..]; // must not panic
427            }
428            let _ = wrap_input_with_prompt(s, 8);
429        }
430    }
431
432    #[test]
433    fn wrap_renders_embedded_newlines_as_rows() {
434        // A pasted multi-line block must show as multiple rows, not a single
435        // space-joined paragraph.
436        assert_eq!(wrap_input_with_prompt("a\nb", 20), "> a\n  b");
437        // Consecutive newlines keep the blank line.
438        assert_eq!(wrap_input_with_prompt("a\n\nb", 20), "> a\n  \n  b");
439        // A trailing newline yields an empty continuation row.
440        assert_eq!(wrap_input_with_prompt("a\n", 20), "> a\n  ");
441    }
442
443    #[test]
444    fn cursor_tracks_rows_across_newlines() {
445        // "a\nb": byte 0=before a, 1=after a (on \n), 2=before b, 3=after b.
446        assert_eq!(InputState::calculate_cursor_position("a\nb", 0, 20), (0, 0));
447        assert_eq!(InputState::calculate_cursor_position("a\nb", 1, 20), (0, 1));
448        assert_eq!(InputState::calculate_cursor_position("a\nb", 2, 20), (1, 0));
449        assert_eq!(InputState::calculate_cursor_position("a\nb", 3, 20), (1, 1));
450    }
451}