makeover_tui/lib.rs
1//! The terminal renderer for [`makeover_layout`].
2//!
3//! <!-- wiki: makeover-tui -->
4//!
5//! Named for the target and not for ratatui, the same way
6//! `makeover-immediate` is named for the mode and not for egui.
7//!
8//! # What a terminal actually costs you
9//!
10//! Not colour. That was the original assumption here and it is wrong on any
11//! terminal built this decade. Measured across the 31 shipped themes
12//! (`makeover`'s `well_fidelity` example):
13//!
14//! | | ANSI-16 | ANSI-256 | truecolor |
15//! |---|---|---|---|
16//! | a well collapses onto its face | 18/31 | 4/31 | 2/31 |
17//! | at least one bevel edge vanishes into its face | 31/31 | 4/31 | 0 |
18//!
19//! The threshold is 256, not 24-bit, and the two failures that survive at
20//! truecolor are not terminal failures at all: they are the themes whose
21//! raised surface is already white, so the lightening clamps and the well
22//! lands exactly on its face. Those render identically in a browser.
23//! `makeover`'s own `well_is_distinct_from_its_face` test already names them.
24//!
25//! **What a terminal costs is geometry, and no amount of colour fixes it.**
26//! An edge occupies a whole cell on each side. A cell is roughly 8x17 pixels,
27//! so a one-pixel bevel becomes something an order of magnitude heavier, which
28//! is why [`frame`] hands back a shrunk [`Rect`] instead of pretending the
29//! region survived intact. There is nowhere to put a corner radius, so
30//! `radius_control` and `radius_container` mean the same thing here. A fill
31//! can only begin and end on a cell boundary.
32//!
33//! That is the constraint worth designing against. It does not improve, it is
34//! not detectable, and it applies equally to the best terminal ever written.
35//!
36//! What it does not mean is that the shape inside the cell stops mattering.
37//! Half of a cell is still addressable, and a bevel drawn in half-blocks reads
38//! as a lit edge where the same bevel in box-drawing reads as a line: `─` and
39//! `│` are one stroke through the middle, identical on all four sides, saying
40//! nothing about where the light is. Half-blocks also make the two corners
41//! where light meets shadow expressible, since a glyph that fills half a cell
42//! leaves the other half to the second tone.
43//!
44//! # Where fidelity does matter
45//!
46//! At [`Fidelity::Ansi16`] the depth vocabulary collapses outright: a well
47//! cannot be filled distinctly on most themes *and* a bevel loses an edge on
48//! every one of them, so a raised card and a well both read as a single-tone
49//! box. Colour cannot carry the distinction, so [`frame`] carries it with the
50//! glyphs instead.
51//!
52//! Above that, colour carries it and the glyph fallback never fires.
53//!
54//! [`Palette::shows`] is worth reading correctly in light of the numbers: it
55//! is **not** a low-colour workaround. It is a correctness check that a fill
56//! will be visible against what is behind it, and at truecolor it fires on
57//! exactly the two clamping themes, which is precisely when it should.
58//!
59//! # 0.13.0: a modal, and two cues four ports were about to each invent
60//!
61//! [`Depth::Overlay`](makeover_layout::Depth::Overlay) arrives in
62//! makeover-layout 0.14.0 and needed nothing here: [`Palette::fill`] has
63//! answered `Fill::Overlay` since this crate had a palette, so what was missing
64//! was the route from a description rather than the drawing. A test asserts it,
65//! because a route nothing exercises is one a refactor can quietly lose.
66//!
67//! [`Theme::selection_on`] and [`Theme::focus_ring`] are the other half, and
68//! both are DERIVED rather than authored. Every consumer measured did selection
69//! with `REVERSED`, for want of an on-accent foreground; every one that wanted
70//! a focus ring either spent makeover's `border-strong` on it, which is a
71//! divider at 1.63:1 on Akari Dawn, or derived its own the way `alloy_tui`
72//! does. Four terminal ports were each about to answer that separately.
73//!
74//! Derived, not authored, because the direction is one-way. An authored key can
75//! fall back to a derivation and break no theme on disk; a key this crate
76//! started requiring would break every theme that lacks it. So the theme format
77//! does not change and nothing on disk grows, and the promotion stays available
78//! for a theme that ever needs to tune either.
79//!
80//! # 0.14.0: the first structural widget
81//!
82//! [`table`] is the first thing here that draws content rather than a surface,
83//! and it exists because 14 call sites across `mnw-cli` and `viewer` were
84//! already drawing one. `mnw-cli` had written the mapping layer by hand
85//! (`src/tui/widgets.rs`: a muted bold header, a selected row carried by the
86//! background alone) and `viewer` had written a smaller one, which is two
87//! answers to a question this crate is supposed to answer once.
88//!
89//! It is a mapping layer over [`ratatui::widgets::Table`] rather than a table
90//! implementation, because ratatui already lays tracks out, draws a header,
91//! highlights a row and scrolls. What it has no answer for is content
92//! measurement and narrowing, and those are what the module is.
93//!
94//! # The correction this renderer forced
95//!
96//! [`makeover_layout::Fill`] briefly carried a `fallback` method, returning
97//! `Page` for `Well` so a consumer without `surface-well` had something to
98//! use. That is an answer for a renderer that can always paint a colour. Here
99//! it is actively wrong: page *is* the surface a well is usually cut into, so
100//! falling back to it produces the exact invisibility the fallback was meant
101//! to avoid.
102//!
103//! Substituting one intent for another is renderer policy, not description.
104//! The fallback moved out of the description and into
105//! `makeover-immediate`, where it belongs, which is the first thing a second
106//! renderer was built to find.
107
108#![forbid(unsafe_code)]
109
110use makeover_layout::{Bevel, Depth, Edge, Fill};
111use ratatui::buffer::Buffer;
112use ratatui::layout::Rect;
113use ratatui::style::Color;
114
115/// The description this crate renders, re-exported.
116///
117/// Every entry point here takes a type from it, so a consumer would otherwise
118/// have to depend on the description separately and keep two version
119/// requirements in step to name the argument it is already being handed.
120pub use makeover_layout;
121
122/// A loaded makeover theme, resolved to the colours ratatui draws with.
123///
124/// Behind the `theme` feature: it is the only thing here that needs `makeover`
125/// itself, and that crate embeds the shipped theme files. A consumer that wants
126/// [`frame`] and nothing else should not carry them.
127#[cfg(feature = "theme")]
128pub mod theme;
129
130#[cfg(feature = "theme")]
131pub use theme::{Mode, Quantize, Theme, ThemeError};
132
133/// Columns, narrowing, cell parts and the sort caret, over ratatui's own
134/// [`Table`](ratatui::widgets::Table).
135///
136/// Not feature-gated. It needs no theme: [`TableStyle`](table::TableStyle)
137/// carries the tones, and a caller with a loaded theme gets them from
138/// `TableStyle::from_theme` instead of supplying them.
139pub mod table;
140
141/// Word wrapping that answers a height and a drawing from the same measurement.
142///
143/// The half ratatui's `Paragraph` leaves out. A flow layout asks for rows at a
144/// width and then draws into the rect it was given, and if the two disagree by
145/// one row a node draws over the one under it.
146pub mod text;
147
148/// A meter, a badge, a control, a figure and a form field.
149///
150/// The pieces below the level [`table`] works at. Not feature-gated, on
151/// [`table`]'s footing: [`WidgetStyle`](widget::WidgetStyle) carries the tones,
152/// and a caller with a loaded theme reaches for `WidgetStyle::from_theme`.
153pub mod widget;
154
155/// How many colours the terminal can actually show.
156///
157/// Only [`Fidelity::Ansi16`] changes what this crate draws. Above it, colour
158/// separates a raised surface from a well on every shipped theme, and the
159/// glyph fallback below never fires. Recorded rather than inferred, because a
160/// caller that quantised its palette knows the answer and this crate cannot
161/// recover it from the colours afterwards.
162#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
163pub enum Fidelity {
164 /// Sixteen colours. Depth cannot be carried by colour: a well collapses
165 /// onto its face on 18 of 31 themes and a bevel loses an edge on all 31.
166 Ansi16,
167 /// The 6x6x6 cube and the grey ramp. Enough on 27 of 31 themes.
168 Ansi256,
169 /// 24-bit. The only failures left belong to the theme, not the terminal.
170 #[default]
171 TrueColor,
172}
173
174impl Fidelity {
175 /// Read the terminal's own claim, from `COLORTERM` then `TERM`.
176 ///
177 /// Deliberately credulous, and the fall-through is where that is decided.
178 /// An unrecognised `TERM` is assumed capable, because the two wrong answers
179 /// do not cost the same: guessing [`TrueColor`](Self::TrueColor) on a
180 /// limited terminal costs some fidelity, and guessing
181 /// [`Ansi16`](Self::Ansi16) on a capable one throws away colour the user
182 /// paid for — and, for a caller that quantises its palette off this answer,
183 /// throws away the whole theme. `COLORTERM` is routinely stripped by ssh
184 /// and by multiplexers, so an unrecognised name is the common case rather
185 /// than the exotic one: `foot`, `xterm` and `screen` all land here.
186 ///
187 /// So sixteen colours is reached by naming the terminals that really have
188 /// them. The list is short and it does not grow: these are the fixed
189 /// consoles, and `TERM=linux` is the case this exists for — the Linux
190 /// virtual console, which is what an installer and a machine with no
191 /// desktop draw on.
192 #[must_use]
193 pub fn detect() -> Self {
194 Self::from_env(
195 &std::env::var("COLORTERM").unwrap_or_default(),
196 &std::env::var("TERM").unwrap_or_default(),
197 )
198 }
199
200 /// [`detect`](Self::detect) with the environment passed in, so the decision
201 /// can be tested without mutating a process-wide variable from a parallel
202 /// test.
203 #[must_use]
204 pub fn from_env(colorterm: &str, term: &str) -> Self {
205 if colorterm.contains("truecolor") || colorterm.contains("24bit") {
206 return Self::TrueColor;
207 }
208 match term {
209 "linux" | "vt100" | "vt220" | "ansi" | "dumb" => Self::Ansi16,
210 _ if term.contains("256color") || term.contains("direct") => Self::Ansi256,
211 _ => Self::TrueColor,
212 }
213 }
214
215 /// Whether colour alone can tell a raised surface from a well here.
216 #[must_use]
217 pub const fn separates_depth(self) -> bool {
218 !matches!(self, Self::Ansi16)
219 }
220}
221
222/// The resolved colours this renderer needs.
223///
224/// Supply them already quantised to whatever the terminal can show. That is
225/// what makes [`Palette::shows`] a plain inequality rather than a colour-space
226/// calculation: by the time a colour reaches here, the question of what the
227/// terminal will actually paint has been answered.
228#[derive(Debug, Clone, Copy, PartialEq, Eq)]
229pub struct Palette {
230 /// `surface-page`.
231 pub page: Color,
232 /// `surface-raised`.
233 pub raised: Color,
234 /// `surface-overlay`.
235 pub overlay: Color,
236 /// `surface-well`, absent on makeover before 2.3.0.
237 pub well: Option<Color>,
238 /// `bevel-light`.
239 pub bevel_light: Color,
240 /// `bevel-dark`.
241 pub bevel_dark: Color,
242 /// What the terminal can show. Defaults to [`Fidelity::TrueColor`].
243 pub fidelity: Fidelity,
244}
245
246impl Palette {
247 /// Resolve a surface intent, or `None` where this renderer has no colour
248 /// for it.
249 ///
250 /// No substitution happens here. A missing intent stays missing, and
251 /// [`frame`] answers it with structure instead of with a different colour.
252 /// That rule is what lets the wildcard below be a real answer rather than
253 /// a hole: [`Fill`] is `#[non_exhaustive]` from `makeover-layout` 0.4.0
254 /// onward, so the description can name a surface this renderer has not
255 /// learned to paint, and saying so is better than failing to build.
256 #[must_use]
257 pub const fn fill(&self, fill: Fill) -> Option<Color> {
258 match fill {
259 Fill::Page => Some(self.page),
260 Fill::Raised => Some(self.raised),
261 Fill::Overlay => Some(self.overlay),
262 Fill::Well => self.well,
263 // Includes Fill::Sunken, which this renderer has no tone for: a
264 // terminal cell has one background, so a surface set back by
265 // colour alone is not a thing it can say. The chosen tab is drawn
266 // forward instead.
267 _ => None,
268 }
269 }
270
271 /// Resolve a bevel edge intent.
272 #[must_use]
273 pub const fn edge(&self, edge: Edge) -> Color {
274 match edge {
275 Edge::Light => self.bevel_light,
276 Edge::Dark => self.bevel_dark,
277 }
278 }
279
280 /// Whether painting `fill` over `behind` would show anything.
281 ///
282 /// The whole of the terminal's problem in one predicate. On a truecolor
283 /// terminal this is almost always true; in sixteen colours it is false
284 /// often enough that a design relying on fills is a design that vanishes.
285 #[must_use]
286 pub fn shows(fill: Color, behind: Color) -> bool {
287 fill != behind
288 }
289
290 /// Whether this palette can express a bevel as two distinct edges.
291 ///
292 /// Measured, this is the wrong thing to worry about: the two edge colours
293 /// never quantise onto each other, at any depth, on any shipped theme.
294 /// What does happen is an edge vanishing into the *face* it is drawn on,
295 /// on every theme at sixteen colours. Kept because a hand-built palette
296 /// can still collide, and cheap to ask.
297 #[must_use]
298 pub fn two_tone(&self) -> bool {
299 self.bevel_light != self.bevel_dark
300 }
301
302 /// Whether depth has to be carried by glyphs rather than by colour.
303 ///
304 /// True when the terminal cannot separate the two surfaces, which is the
305 /// sixteen-colour case and nothing else.
306 #[must_use]
307 pub const fn needs_glyph_depth(&self) -> bool {
308 !self.fidelity.separates_depth()
309 }
310}
311
312/// The characters a frame's edges and corners are drawn with.
313///
314/// Per side rather than per axis, because the set that reads best as a bevel
315/// does not use the same glyph on opposite sides: a half-block edge is only
316/// half a cell, and which half it occupies is what says where the edge is.
317/// Box-drawing sets fill `top`/`bottom` and `left`/`right` with the same
318/// character and lose nothing by it.
319///
320/// Three sets. [`BEVEL`] is what a terminal that can show two tones gets. The
321/// other two exist because at sixteen colours the glyphs are the only thing
322/// left to carry depth: a well cannot be filled distinctly and a bevel loses
323/// an edge, so a raised card and a well would otherwise be the same
324/// single-tone box. A doubled line reads as standing off the page and a light
325/// one as cut into it, which is the same claim the fill and the bevel make in
326/// colour.
327#[derive(Debug, Clone, Copy, PartialEq, Eq)]
328pub(crate) struct GlyphSet {
329 pub(crate) top: &'static str,
330 pub(crate) bottom: &'static str,
331 pub(crate) left: &'static str,
332 pub(crate) right: &'static str,
333 pub(crate) top_left: &'static str,
334 pub(crate) top_right: &'static str,
335 pub(crate) bottom_left: &'static str,
336 pub(crate) bottom_right: &'static str,
337 /// Whether the two corners where light meets shadow carry both tones in
338 /// one cell, foreground over background.
339 ///
340 /// Only a half-cell glyph can: it already divides the cell, so the split
341 /// costs nothing and the corner reads as a transition rather than as one
342 /// edge overrunning the other. A box-drawing corner is a single stroke
343 /// with no such division, so those sets say `false` and both shared
344 /// corners go to dark — see [`paint_bevel_with`] for why that particular
345 /// fallback and not the other one.
346 pub(crate) split_corners: bool,
347}
348
349/// Half-blocks, which is what a bevel actually wants.
350///
351/// A cell is roughly 8x17 device pixels, so a half-block along the top and a
352/// half-cell column down the side are about the same number of pixels and the
353/// edge reads as even thickness. Box-drawing cannot do that: `─` and `│` are
354/// both a thin stroke through the middle of the cell, identical on all four
355/// sides, which draws a *line* rather than a lit edge and gives up the light
356/// model that makes a bevel legible.
357///
358/// Adopted from `alloy_tui`, which reached this independently and got there
359/// first (2026-07-26, two days before this crate existed).
360pub(crate) const BEVEL: GlyphSet = GlyphSet {
361 top: "▀",
362 bottom: "▄",
363 left: "▌",
364 right: "▐",
365 top_left: "▛",
366 // The two shared corners are the split ones: an upper half continues the
367 // lit top edge while the lower half starts the shaded right edge, and the
368 // mirror of that at bottom left.
369 top_right: "▀",
370 bottom_left: "▄",
371 bottom_right: "▟",
372 split_corners: true,
373};
374
375pub(crate) const LIGHT: GlyphSet = GlyphSet {
376 top: "─",
377 bottom: "─",
378 left: "│",
379 right: "│",
380 top_left: "┌",
381 top_right: "┐",
382 bottom_left: "└",
383 bottom_right: "┘",
384 split_corners: false,
385};
386
387pub(crate) const DOUBLE: GlyphSet = GlyphSet {
388 top: "═",
389 bottom: "═",
390 left: "║",
391 right: "║",
392 top_left: "╔",
393 top_right: "╗",
394 bottom_left: "╚",
395 bottom_right: "╝",
396 split_corners: false,
397};
398
399/// Paint a two-tone edge around the outside of `area`.
400///
401/// Light takes the top and left, dark the bottom and right. What happens at
402/// the two corners where they meet depends on what the terminal can show.
403/// Above sixteen colours the edge is drawn in half-blocks and those corners
404/// carry both tones, one per half-cell. At sixteen it is box-drawing, whose
405/// single stroke has no half to give, so both shared corners go to dark.
406///
407/// Costs a cell on each side, which a pixel renderer's bevel does not. Use the
408/// [`Rect`] returned by [`frame`] rather than assuming the area is intact.
409pub fn paint_bevel(buf: &mut Buffer, area: Rect, bevel: Bevel, palette: &Palette) {
410 paint_bevel_with(buf, area, bevel, palette, set_for(palette, None));
411}
412
413/// Which glyphs to draw with, given what the terminal can show.
414///
415/// Above sixteen colours the two tones are available and [`BEVEL`] renders
416/// them as light. At sixteen the tones collapse, so the box-drawing sets carry
417/// the distinction in weight instead, and `depth` picks which: a doubled frame
418/// for a raised card and a light one for everything else. `None` means the
419/// caller is drawing a bevel with no depth behind it, which is never the
420/// doubled case.
421fn set_for(palette: &Palette, depth: Option<Depth>) -> GlyphSet {
422 if !palette.needs_glyph_depth() {
423 return BEVEL;
424 }
425 match depth {
426 Some(Depth::Raised) => DOUBLE,
427 _ => LIGHT,
428 }
429}
430
431fn paint_bevel_with(buf: &mut Buffer, area: Rect, bevel: Bevel, palette: &Palette, set: GlyphSet) {
432 if area.width < 2 || area.height < 2 {
433 return;
434 }
435 let (top_left, bottom_right) = bevel.edges();
436 let light = palette.edge(top_left);
437 let dark = palette.edge(bottom_right);
438
439 let (x0, y0) = (area.x, area.y);
440 let (x1, y1) = (area.right() - 1, area.bottom() - 1);
441
442 // Light first: top edge and left edge, corners included.
443 for x in x0..=x1 {
444 buf[(x, y0)].set_symbol(set.top).set_fg(light);
445 }
446 for y in y0..=y1 {
447 buf[(x0, y)].set_symbol(set.left).set_fg(light);
448 }
449 // Dark second, so on a set without split corners the two shared ones land
450 // on it by draw order alone.
451 for x in x0..=x1 {
452 buf[(x, y1)].set_symbol(set.bottom).set_fg(dark);
453 }
454 for y in y0..=y1 {
455 buf[(x1, y)].set_symbol(set.right).set_fg(dark);
456 }
457
458 buf[(x0, y0)].set_symbol(set.top_left).set_fg(light);
459 buf[(x1, y1)].set_symbol(set.bottom_right).set_fg(dark);
460
461 if set.split_corners {
462 // Where light meets shadow, both tones share the cell: the half the
463 // glyph fills is the foreground and the half it leaves is the
464 // background, so the corner is a transition rather than one edge
465 // overrunning the other.
466 buf[(x1, y0)]
467 .set_symbol(set.top_right)
468 .set_fg(light)
469 .set_bg(dark);
470 buf[(x0, y1)]
471 .set_symbol(set.bottom_left)
472 .set_fg(dark)
473 .set_bg(light);
474 } else {
475 // Both shared corners to dark. Not arbitrary: it is the same rule
476 // `makeover-immediate` produces by drawing its dark polyline second,
477 // so a control does not change which corner is lit when it moves
478 // between a terminal and a window. A single-stroke corner has no half
479 // to give the other tone, so this is the only rule available to these
480 // sets anyway.
481 buf[(x1, y0)].set_symbol(set.top_right).set_fg(dark);
482 buf[(x0, y1)].set_symbol(set.bottom_left).set_fg(dark);
483 }
484}
485
486/// Draw a region at a given [`Depth`] and return the area left for content.
487///
488/// The fill is painted only when it would be visible against what is already
489/// in the buffer. Everything else is the edge, which is why a well still reads
490/// as a well on a terminal that cannot colour one.
491pub fn frame(buf: &mut Buffer, area: Rect, depth: Depth, palette: &Palette) -> Rect {
492 if area.is_empty() {
493 return area;
494 }
495 let behind = buf[(area.x, area.y)].bg;
496
497 if let Some(color) = depth.fill().and_then(|f| palette.fill(f))
498 && Palette::shows(color, behind)
499 {
500 for y in area.top()..area.bottom() {
501 for x in area.left()..area.right() {
502 buf[(x, y)].set_bg(color);
503 }
504 }
505 }
506
507 match depth.bevel() {
508 Some(bevel) if area.width >= 2 && area.height >= 2 => {
509 // Colour separates raised from well wherever it can. Where it
510 // cannot, the glyphs do, and only then: a doubled frame on every
511 // terminal would be shouting.
512 let set = set_for(palette, Some(depth));
513 paint_bevel_with(buf, area, bevel, palette, set);
514 Rect::new(area.x + 1, area.y + 1, area.width - 2, area.height - 2)
515 }
516 _ => area,
517 }
518}
519
520#[cfg(test)]
521mod tests {
522 use super::*;
523
524 fn palette(well: Option<Color>) -> Palette {
525 Palette {
526 page: Color::Indexed(7),
527 raised: Color::Indexed(15),
528 overlay: Color::Indexed(8),
529 well,
530 bevel_light: Color::Indexed(15),
531 bevel_dark: Color::Indexed(0),
532 fidelity: Fidelity::TrueColor,
533 }
534 }
535
536 fn buffer() -> Buffer {
537 Buffer::empty(Rect::new(0, 0, 6, 4))
538 }
539
540 #[test]
541 fn a_well_that_cannot_be_coloured_is_still_drawn() {
542 // The 18-of-31 case: no surface-well token at all.
543 let p = palette(None);
544 let mut buf = buffer();
545 frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Well, &p);
546 // No fill was available, but the region still reads as recessed.
547 assert_eq!(buf[(0, 0)].symbol(), BEVEL.top_left);
548 assert_eq!(buf[(0, 0)].bg, Color::Reset);
549 }
550
551 #[test]
552 fn a_fill_that_matches_its_surroundings_is_not_painted() {
553 let p = palette(Some(Color::Indexed(7)));
554 let mut buf = buffer();
555 // Everything behind is already page-coloured, and the well quantised
556 // onto it. Painting it would be a no-op that hides the real problem.
557 for y in 0..4 {
558 for x in 0..6 {
559 buf[(x, y)].set_bg(Color::Indexed(7));
560 }
561 }
562 frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Well, &p);
563 assert!(!Palette::shows(Color::Indexed(7), Color::Indexed(7)));
564 // The edge is what carries the meaning here.
565 assert_eq!(buf[(5, 3)].symbol(), BEVEL.bottom_right);
566 }
567
568 #[test]
569 fn a_visible_fill_is_painted() {
570 let p = palette(Some(Color::Indexed(4)));
571 let mut buf = buffer();
572 frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Well, &p);
573 assert_eq!(buf[(2, 2)].bg, Color::Indexed(4));
574 }
575
576 #[test]
577 fn an_overlay_is_painted_and_left_unedged() {
578 // makeover-layout 0.14.0's Depth::Overlay, and the wiring under it was
579 // already here: `Palette::fill` has answered `Fill::Overlay` since this
580 // crate had a palette. So this asserts the route rather than building
581 // one, and it is the assertion that would catch the route being lost.
582 let p = palette(None);
583 let mut buf = buffer();
584 let inner = frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Overlay, &p);
585
586 assert_eq!(buf[(2, 2)].bg, p.overlay);
587 // A surface over the page is separated by the lift and by what sits
588 // behind it, so it takes no edge -- and with no edge drawn, nothing is
589 // given up to one: the content area is the whole region.
590 assert_eq!(buf[(0, 0)].symbol(), " ");
591 assert_eq!(inner, Rect::new(0, 0, 6, 4));
592 }
593
594 #[test]
595 fn the_light_falls_from_the_top_left() {
596 let p = palette(None);
597 let mut buf = buffer();
598 paint_bevel(&mut buf, Rect::new(0, 0, 6, 4), Bevel::Raised, &p);
599 assert_eq!(buf[(0, 0)].fg, p.bevel_light); // top-left
600 assert_eq!(buf[(3, 0)].fg, p.bevel_light); // top edge
601 assert_eq!(buf[(0, 2)].fg, p.bevel_light); // left edge
602 assert_eq!(buf[(5, 3)].fg, p.bevel_dark); // bottom-right
603 assert_eq!(buf[(3, 3)].fg, p.bevel_dark); // bottom edge
604 assert_eq!(buf[(5, 2)].fg, p.bevel_dark); // right edge
605 }
606
607 // Half-cell glyphs divide the cell already, so the corner where light
608 // meets shadow can hold both rather than picking one.
609 #[test]
610 fn the_shared_corners_carry_both_tones_when_the_glyph_can_split() {
611 let p = palette(None);
612 let mut buf = buffer();
613 paint_bevel(&mut buf, Rect::new(0, 0, 6, 4), Bevel::Raised, &p);
614 let top_right = &buf[(5, 0)];
615 assert_eq!(top_right.fg, p.bevel_light);
616 assert_eq!(top_right.bg, p.bevel_dark);
617 let bottom_left = &buf[(0, 3)];
618 assert_eq!(bottom_left.fg, p.bevel_dark);
619 assert_eq!(bottom_left.bg, p.bevel_light);
620 }
621
622 // A single-stroke corner has no half to give the second tone, so the
623 // box-drawing sets keep the old rule: both shared corners to dark, which
624 // is what makeover-immediate produces by drawing its dark polyline second.
625 // Changing that would move the lit corner between a terminal and a window.
626 #[test]
627 fn box_drawing_corners_stay_dark_and_match_the_immediate_renderer() {
628 let p = Palette {
629 fidelity: Fidelity::Ansi16,
630 ..palette(None)
631 };
632 let mut buf = buffer();
633 paint_bevel(&mut buf, Rect::new(0, 0, 6, 4), Bevel::Raised, &p);
634 assert_eq!(buf[(5, 0)].symbol(), LIGHT.top_right);
635 assert_eq!(buf[(5, 0)].fg, p.bevel_dark);
636 assert_eq!(buf[(5, 0)].bg, Color::Reset, "a stroke has no second tone");
637 assert_eq!(buf[(0, 3)].fg, p.bevel_dark);
638 }
639
640 // The whole outline, as a reader sees it. Asserted as glyphs because the
641 // shape is the point: an even-weight edge on all four sides, which is what
642 // box-drawing could not give.
643 #[test]
644 fn a_bevel_draws_an_even_outline_and_leaves_the_middle_alone() {
645 let p = palette(None);
646 let mut buf = Buffer::empty(Rect::new(0, 0, 5, 4));
647 paint_bevel(&mut buf, Rect::new(0, 0, 5, 4), Bevel::Raised, &p);
648 let rows: Vec<String> = (0..4)
649 .map(|y| (0..5).map(|x| buf[(x, y)].symbol()).collect())
650 .collect();
651 assert_eq!(rows, vec!["▛▀▀▀▀", "▌ ▐", "▌ ▐", "▄▄▄▄▟"]);
652 }
653
654 #[test]
655 fn pressing_swaps_the_lit_side() {
656 let p = palette(None);
657 let mut buf = buffer();
658 paint_bevel(&mut buf, Rect::new(0, 0, 6, 4), Bevel::Raised.pressed(), &p);
659 assert_eq!(buf[(0, 0)].fg, p.bevel_dark);
660 }
661
662 #[test]
663 fn a_sixteen_colour_terminal_can_lose_the_second_tone() {
664 // Not a failure: one box is still a boundary. The palette says so
665 // rather than the renderer pretending otherwise.
666 let flat = Palette {
667 bevel_dark: Color::Indexed(15),
668 ..palette(None)
669 };
670 assert!(!flat.two_tone());
671 assert!(palette(None).two_tone());
672 }
673
674 #[test]
675 fn an_edge_costs_a_cell_on_every_side() {
676 let p = palette(None);
677 let mut buf = buffer();
678 let inner = frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Raised, &p);
679 assert_eq!(inner, Rect::new(1, 1, 4, 2));
680 // Flat takes no cells, because it draws no edge.
681 let same = frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Flat, &p);
682 assert_eq!(same, Rect::new(0, 0, 6, 4));
683 }
684
685 #[test]
686 fn sixteen_colours_carries_depth_in_the_glyphs_instead() {
687 // Colour cannot separate raised from well here: the fill collapses on
688 // most themes and an edge vanishes on all of them. The frame has to
689 // say it some other way or the two become the same box.
690 let p = Palette {
691 fidelity: Fidelity::Ansi16,
692 ..palette(None)
693 };
694 assert!(p.needs_glyph_depth());
695 let mut raised = buffer();
696 frame(&mut raised, Rect::new(0, 0, 6, 4), Depth::Raised, &p);
697 let mut well = buffer();
698 frame(&mut well, Rect::new(0, 0, 6, 4), Depth::Well, &p);
699 assert_eq!(raised[(0, 0)].symbol(), DOUBLE.top_left);
700 assert_eq!(well[(0, 0)].symbol(), LIGHT.top_left);
701 assert_ne!(raised[(0, 0)].symbol(), well[(0, 0)].symbol());
702 }
703
704 #[test]
705 fn above_sixteen_colours_the_glyphs_stay_out_of_it() {
706 // The doubled fallback must not fire where colour already works, or
707 // every modern terminal gets a heavier frame it did not need. What it
708 // gets instead is the half-block bevel.
709 for f in [Fidelity::Ansi256, Fidelity::TrueColor] {
710 let p = Palette {
711 fidelity: f,
712 ..palette(Some(Color::Indexed(4)))
713 };
714 assert!(!p.needs_glyph_depth());
715 let mut buf = buffer();
716 frame(&mut buf, Rect::new(0, 0, 6, 4), Depth::Raised, &p);
717 assert_eq!(
718 buf[(0, 0)].symbol(),
719 BEVEL.top_left,
720 "{f:?} got a heavier frame"
721 );
722 assert_ne!(buf[(0, 0)].symbol(), DOUBLE.top_left);
723 }
724 }
725
726 // Raised and well are both bevels and differ only in which way they are
727 // lit, so above sixteen colours they draw the same glyphs and the tones
728 // carry the difference. That is exactly what stops holding at Ansi16, and
729 // why the doubled set exists.
730 #[test]
731 fn colour_alone_separates_raised_from_well_where_it_can() {
732 let p = palette(Some(Color::Indexed(4)));
733 let mut raised = buffer();
734 frame(&mut raised, Rect::new(0, 0, 6, 4), Depth::Raised, &p);
735 let mut well = buffer();
736 frame(&mut well, Rect::new(0, 0, 6, 4), Depth::Well, &p);
737 assert_eq!(raised[(0, 0)].symbol(), well[(0, 0)].symbol());
738 assert_eq!(raised[(0, 0)].fg, p.bevel_light);
739 assert_eq!(well[(0, 0)].fg, p.bevel_dark);
740 }
741
742 #[test]
743 fn detection_defaults_generously_and_only_downgrades_on_evidence() {
744 assert!(Fidelity::default().separates_depth());
745 assert!(Fidelity::TrueColor.separates_depth());
746 assert!(Fidelity::Ansi256.separates_depth());
747 assert!(!Fidelity::Ansi16.separates_depth());
748 }
749
750 // Sixteen colours is reached by naming a console, never by failing to
751 // recognise a terminal. `COLORTERM` is stripped by ssh and by every
752 // multiplexer, so an unrecognised name carries no evidence at all, and a
753 // caller quantising its palette off this answer would flatten a whole theme
754 // on the strength of it.
755 #[test]
756 fn an_unrecognised_terminal_is_assumed_capable() {
757 let f = Fidelity::from_env;
758 assert_eq!(f("", "foot"), Fidelity::TrueColor);
759 assert_eq!(f("", "xterm"), Fidelity::TrueColor);
760 assert_eq!(f("", "screen"), Fidelity::TrueColor);
761 assert_eq!(f("", ""), Fidelity::TrueColor);
762 }
763
764 #[test]
765 fn a_console_that_really_has_sixteen_colours_is_named() {
766 let f = Fidelity::from_env;
767 assert_eq!(f("", "linux"), Fidelity::Ansi16);
768 assert_eq!(f("", "vt100"), Fidelity::Ansi16);
769 assert_eq!(f("", "dumb"), Fidelity::Ansi16);
770 }
771
772 #[test]
773 fn a_terminal_naming_its_depth_is_taken_at_its_word() {
774 let f = Fidelity::from_env;
775 assert_eq!(f("", "xterm-256color"), Fidelity::Ansi256);
776 assert_eq!(f("", "screen-256color"), Fidelity::Ansi256);
777 assert_eq!(f("", "xterm-direct"), Fidelity::Ansi256);
778 // And a claim of 24-bit beats the name, which is only ever a floor.
779 assert_eq!(f("truecolor", "xterm-256color"), Fidelity::TrueColor);
780 assert_eq!(f("24bit", "linux"), Fidelity::TrueColor);
781 }
782
783 #[test]
784 fn a_region_too_small_for_an_edge_is_left_alone() {
785 let p = palette(None);
786 let mut buf = buffer();
787 let inner = frame(&mut buf, Rect::new(0, 0, 1, 1), Depth::Raised, &p);
788 assert_eq!(inner, Rect::new(0, 0, 1, 1));
789 }
790}