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ratatui_image/
lib.rs

1//! # Image widgets with multiple graphics protocol backends for [ratatui]
2//!
3//! **Unify terminal image rendering across Sixels, Kitty, and iTerm2 protocols.**
4//!
5//! [ratatui] is an immediate-mode TUI library.
6//! ratatui-image tackles 3 general problems when rendering images with an immediate-mode TUI:
7//!
8//! **Query the terminal for available graphics protocols**
9//!
10//! Some terminals may implement one or more graphics protocols, such as Sixels, or the iTerm2 or
11//! Kitty graphics protocols. Guess by env vars. If that fails, query the terminal with some
12//! control sequences.
13//! Fallback to "halfblocks" which uses some unicode half-block characters with fore- and
14//! background colors.
15//!
16//! **Query the terminal for the font-size in pixels.**
17//!
18//! If there is an actual graphics protocol available, it is necessary to know the font-size to
19//! be able to map the image pixels to character cell area.
20//! Query the terminal with some control sequences for either the font-size directly, or the
21//! window-size in pixels and derive the font-size together with row/column count.
22//!
23//! **Render the image by the means of the guessed protocol.**
24//!
25//! Some protocols, like Sixels, are essentially "immediate-mode", but we still need to avoid the
26//! TUI from overwriting the image area, even with blank characters.
27//! Other protocols, like Kitty, are essentially stateful, but at least provide a way to re-render
28//! an image that has been loaded, at a different or same position.
29//! Since we have the font-size in pixels, we can precisely map the characters/cells/rows-columns
30//! that will be covered by the image and skip drawing over the image.
31//!
32//! # Quick start
33//! ```rust
34//! use ratatui::{backend::TestBackend, layout::Size, Terminal, Frame};
35//! use ratatui_image::{Image, picker::Picker, protocol::Protocol, Resize};
36//!
37//! struct App {
38//!     // We need to hold the image data somewhere.
39//!     image: Protocol,
40//! }
41//!
42//! fn main() -> Result<(), Box<dyn std::error::Error>> {
43//!     let backend = TestBackend::new(80, 30);
44//!     let mut terminal = Terminal::new(backend)?;
45//!
46//!     // Should use `Picker::from_query_stdio()?` to get the font size and protocol,
47//!     // but we can't put that here because that would break doctests!
48//!     let mut picker = Picker::halfblocks();
49//!
50//!     // Load an image with the image crate.
51//!     let dyn_img = image::ImageReader::open("./assets/Ada.png")?.decode()?;
52//!
53//!     let font_size = picker.font_size();
54//!     let size = Size::new(
55//!         dyn_img.width().div_ceil(font_size.width as u32) as u16,
56//!         dyn_img.height().div_ceil(font_size.height as u32) as u16,
57//!     );
58//!
59//!     // Create the Protocol once, or in other words, transform the image data to Sixels, Kitty
60//!     // data, iTerm2 base64 PNG data, or some kind of ASCII-art.
61//!     let image = picker.new_protocol(dyn_img, size, Resize::Fit(None))?;
62//!
63//!     let mut app = App { image };
64//!
65//!     // This would be your typical `loop {` in a real app:
66//!     terminal.draw(|f| {
67//!         let image = Image::new(&app.image);
68//!         // Rendering the transformed data is now cheap.
69//!         f.render_widget(image, f.area());
70//!     });
71//!
72//!     Ok(())
73//! }
74//! ```
75//! While this approach is usually sufficient, and leaves a lot of room for customizing where the
76//! image actually gets transformed, for more advanced usage I really recommend using
77//! [`thread::ThreadProtocol`] and looking at `excamples/thread.rs` to get an idea how to
78//! dynamically resize images to fit into some area but without blocking the UI.
79//!
80//! The [picker::Picker] helper is there to do all this font-size and graphics-protocol guessing,
81//! and also to map character-cell-size to pixel size so that we can e.g. "fit" an image inside
82//! a desired columns+rows bound, and so on.
83//!
84//! # Widget choice
85//! * The [`Image`] widget has a fixed size in rows/columns. If the image pixel size exceeds the
86//!   pixel area of the rows/columns, the image is scaled down proportionally to "fit" once, at the
87//!   creation time of the [`Protocol`].  
88//!   The big upside is that this widget is _stateless_ (in terms of ratatui, i.e. immediate-mode),
89//!   and thus can never block the rendering thread/task. A lot of ratatui apps only use stateless
90//!   widgets, so this factor is also important when chosing.  
91//!   What happens when the image does not fit into the render area can be controlled with
92//!   [`Image::allow_clipping`].
93//! * The [StatefulImage] widget adapts to its render area at render-time. It can be set to fit,
94//!   crop, or scale to the available render area.
95//!   This means the widget must be stateful, i.e. use `render_stateful_widget` which takes a
96//!   mutable state parameter.
97//!   The resizing and encoding is blocking, and since it happens at render-time, it should always
98//!   be offloaded to another thread or async task, to keep the UI responsive (see
99//!   `examples/thread.rs` and `examples/tokio.rs` on how to use [`thread::ThreadProtocol`]).
100//!
101//! # Examples
102//!
103//! * `examples/demo.rs` is a fully fledged demo.
104//! * `examples/thread.rs` shows how to offload resize and encoding to another thread, to avoid
105//!   blocking the UI thread.
106//! * `examples/tokio.rs` same as `thread.rs` but with tokio.
107//! * `examples/sliced.rs` shows how to use an image that can have "rows" or "horizontal slices"
108//!   partially hidden with any protocol.
109//!
110//! The lib also includes a binary that renders an image file, but it is focused on testing.
111//!
112//! # Features
113//!
114//! ### Backend
115//!
116//! * `crossterm` (default) if this matches your ratatui backend (most likely).
117//! * `termion` if this matches your ratatui backend.
118//! * `termwiz` is available, but not working correctly with ratatui-image.
119//!
120//! ### Chafa library
121//!
122//! * `chafa-dyn` (default) to use the amazing [chafa](https://hpjansson.org/chafa/) library for
123//!   rendering without image protocols. Dynamically link against libchafa.so at compile time.
124//!   Requires libchafa to be available at runtime in the same way.
125//! * `chafa-static` to statically link against libchafa.a at compile time. The library is embedded
126//!   in the binary.
127//! * If you absolutely don't want to deal with libchafa, then you should use
128//!   `--no-default-features --features image-defaults,crossterm` or a variation thereof.
129//!
130//! Note: The chafa features are mutually exclusive - enable only one at a time.
131//! There is *NO* compiler error for enabling both features at the same time, because some tools
132//! (like cargo-semver-checks) need to build with all features enabled. If both features are
133//! enabled, then `chafa-dyn` takes precedence, because that one makes it easier for running such
134//! tools in CI.
135//!
136//! ### Others
137//!
138//! * `image-defaults` (default) just enables `image/defaults` (`image` has `default-features =
139//!   false`). To only support a selection of image formats and cut down dependencies, disable this
140//!   feature, add `image` to your crate, and enable its features/formats as desired. See
141//!   <https://doc.rust-lang.org/cargo/reference/features.html#feature-unification/>.
142//! * `serde` for `#[derive]`s on [picker::ProtocolType] for convenience, because it might be
143//!   useful to save it in some user configuration.
144//! * `tokio` whether to use tokio's `UnboundedSender` in `ThreadProtocol`.
145//!
146//!
147//! [ratatui]: https://github.com/ratatui-org/ratatui
148//! [sixel]: https://en.wikipedia.org/wiki/Sixel
149//! [`render_stateful_widget`]: https://docs.rs/ratatui/latest/ratatui/terminal/struct.Frame.html#method.render_stateful_widget
150use std::{
151    cmp::{max, min},
152    marker::PhantomData,
153};
154
155use image::{DynamicImage, ImageBuffer, Rgba, imageops};
156use protocol::Protocol;
157use ratatui::{
158    buffer::Buffer,
159    layout::{Rect, Size},
160    widgets::{StatefulWidget, Widget},
161};
162
163pub mod errors;
164pub mod picker;
165pub mod protocol;
166pub mod sliced;
167pub mod thread;
168pub use image::imageops::FilterType;
169
170type Result<T> = std::result::Result<T, errors::Errors>;
171
172/// The terminal's font size in `(width, height)`
173#[derive(Copy, Clone, Debug)]
174pub struct FontSize {
175    pub width: u16,
176    pub height: u16,
177}
178
179impl FontSize {
180    pub const fn new(width: u16, height: u16) -> Self {
181        Self { width, height }
182    }
183}
184
185impl From<(u16, u16)> for FontSize {
186    fn from((width, height): (u16, u16)) -> Self {
187        Self::new(width, height)
188    }
189}
190
191/// Fixed size image widget that uses [Protocol].
192///
193/// The widget does **not** react to area resizes.
194/// Its advantage lies in that the [Protocol] needs only one initial resize.
195///
196/// The image won't render if it doesn't fit, unless [`Image::allow_clipping`] has been set.
197/// ```rust
198/// # use ratatui_image::picker::Picker;
199/// # use ratatui::layout::Size;
200/// # use ratatui_image::{*, sliced::{SlicedProtocol, SlicedImage}};
201/// # let mut terminal = ratatui::Terminal::new(ratatui::backend::TestBackend::new(80, 24))?;
202/// # let picker = Picker::halfblocks(); // Note: use from_query_studio
203/// // let picker = Picker::from_query_studio()?;
204/// let image = image::ImageReader::open("./assets/NixOS.png")?.decode()?;
205/// let proto = picker.new_protocol(image, Size::new(20, 10), Resize::Fit(None))?;
206///
207/// terminal.draw(|f| {
208///     f.render_widget(Image::new(&proto), f.area());
209/// });
210/// # Ok::<(), Box<dyn std::error::Error>>(())
211/// ```
212pub struct Image<'a> {
213    image: &'a Protocol,
214    allow_clipping: bool,
215}
216
217impl<'a> Image<'a> {
218    pub fn new(image: &'a Protocol) -> Self {
219        Self {
220            image,
221            allow_clipping: false,
222        }
223    }
224
225    /// Allow clipping the image if the render area is smaller than the image, and if the protocol
226    /// supports it ([`protocol::kitty`] and [`protocol::halfblocks`]).
227    ///
228    /// This is disabled by default to make the behavior consistent.
229    ///
230    /// See also [`protocol::Protocol::needs_placeholder`], which is an excellent complement if you
231    /// need to render *something* when the image couldn't.
232    ///
233    /// ```rust
234    /// # use ratatui_image::picker::Picker;
235    /// # use ratatui::layout::Size;
236    /// # use ratatui_image::{*, sliced::*};
237    /// # let mut terminal = ratatui::Terminal::new(ratatui::backend::TestBackend::new(80, 24))?;
238    /// # let picker = Picker::halfblocks();
239    /// # let dyn_img = image::ImageReader::open("./assets/NixOS.png")?.decode()?;
240    /// # let proto = picker.new_protocol(dyn_img, (20, 10).into(), Resize::Fit(None))?;
241    /// terminal.draw(|f| {
242    ///     if let Some(placeholder_area) = proto.needs_placeholder(f.area()) {
243    ///         // Render `Box` or something with placeholder_area.
244    ///     } else {
245    ///         f.render_widget(Image::new(&proto).allow_clipping(true), f.area());
246    ///     }
247    /// });
248    /// # Ok::<(), Box<dyn std::error::Error>>(())
249    /// ```
250    pub fn allow_clipping(mut self, allow: bool) -> Self {
251        self.allow_clipping = allow;
252        self
253    }
254}
255
256impl Widget for Image<'_> {
257    fn render(self, area: Rect, buf: &mut Buffer) {
258        if area.width == 0 || area.height == 0 {
259            return;
260        }
261
262        if !self.allow_clipping
263            && (self.image.size().width > area.width || self.image.size().height > area.height)
264        {
265            return;
266        }
267
268        self.image.render(area, buf);
269    }
270}
271
272pub trait ResizeEncodeRender {
273    /// Resize and encode if necessary, and render immediately.
274    fn resize_encode_render(&mut self, resize: &Resize, area: Rect, buf: &mut Buffer) {
275        if let Some(rect) = self.needs_resize(resize, area.into()) {
276            self.resize_encode(resize, rect);
277        }
278        self.render(area, buf);
279    }
280
281    /// Resize the image and encode it for rendering. The result should be stored statefully so
282    /// that next call for the given area does not need to redo the work.
283    ///
284    /// This can be done in a background thread, and the result is stored in this [protocol::StatefulProtocol].
285    fn resize_encode(&mut self, resize: &Resize, size: Size);
286
287    /// Render the currently resized and encoded data to the buffer.
288    fn render(&mut self, area: Rect, buf: &mut Buffer);
289
290    /// Check if the current image state would need resizing (grow or shrink) for the given area.
291    ///
292    /// This can be called by the UI thread to check if this [protocol::StatefulProtocol] should be sent off
293    /// to some background thread/task to do the resizing and encoding, instead of rendering. The
294    /// thread should then return the [protocol::StatefulProtocol] so that it can be rendered.
295    fn needs_resize(&self, resize: &Resize, size: Size) -> Option<Size>;
296}
297
298/// Resizeable image widget that uses a [protocol::StatefulProtocol] state.
299///
300/// This stateful widget resizes the image at render time.
301///
302/// **Do not use it withou [`thread::ThreadProtocol`] in a reactive UI**. Rendering the widget
303/// **will** block the UI thread if the image has not been resized by another thread.
304///
305/// ```rust
306/// # use ratatui::Frame;
307/// # use ratatui_image::{Resize, StatefulImage, protocol::{StatefulProtocol}};
308/// struct App {
309///     image_state: StatefulProtocol,
310/// }
311/// fn ui(f: &mut Frame<'_>, app: &mut App) {
312///     let image = StatefulImage::default().resize(Resize::Crop(None));
313///     f.render_stateful_widget(
314///         image,
315///         f.area(),
316///         &mut app.image_state,
317///     );
318/// }
319/// ```
320pub struct StatefulImage<T>
321where
322    T: ResizeEncodeRender,
323{
324    resize: Resize,
325    phantom: PhantomData<T>,
326}
327
328impl<T> Default for StatefulImage<T>
329where
330    T: ResizeEncodeRender,
331{
332    fn default() -> Self {
333        Self::new()
334    }
335}
336impl<T> StatefulImage<T>
337where
338    T: ResizeEncodeRender,
339{
340    pub const fn resize(self, resize: Resize) -> Self {
341        Self { resize, ..self }
342    }
343
344    pub const fn new() -> Self {
345        Self {
346            resize: Resize::Fit(None),
347            phantom: PhantomData,
348        }
349    }
350}
351
352impl<T> StatefulWidget for StatefulImage<T>
353where
354    T: ResizeEncodeRender,
355{
356    type State = T;
357    fn render(self, area: Rect, buf: &mut Buffer, state: &mut Self::State) {
358        if area.width == 0 || area.height == 0 {
359            return;
360        }
361
362        state.resize_encode_render(&self.resize, area, buf);
363    }
364}
365
366#[derive(Debug, Clone)]
367/// Resize accounting for terminal [`FontSize`].
368///
369/// Resizes images with [`FontSize`] grid boundaries.
370pub enum Resize {
371    /// Fit to a [`Size`].
372    ///
373    /// If the image width or height is smaller than the target size, the image will be resized
374    /// maintaining proportions.
375    ///
376    /// The [FilterType] (re-exported from the [image] crate) defaults to [FilterType::Nearest].
377    Fit(Option<FilterType>),
378    /// Crop to size.
379    ///
380    /// If the width or height is smaller than the area, the image will be cropped.
381    /// The behaviour is the same as using [`Image`] widget with the overhead of resizing,
382    /// but some terminals might misbehave when overdrawing characters over graphics.
383    /// For example, the sixel branch of Alacritty never draws text over a cell that is currently
384    /// being rendered by some sixel sequence, not necessarily originating from the same cell.
385    ///
386    /// The [CropOptions] defaults to clipping the bottom and the right sides.
387    Crop(Option<CropOptions>),
388    /// Scale the image
389    ///
390    /// Same as `Resize::Fit` except it resizes the image even if the image is smaller than the render area
391    Scale(Option<FilterType>),
392}
393
394impl Default for Resize {
395    fn default() -> Self {
396        Self::Fit(None)
397    }
398}
399
400#[derive(Debug, Clone, Copy, PartialEq, Eq)]
401/// Specifies which sides to be clipped when cropping an image.
402pub struct CropOptions {
403    /// If `true`, the top side should be clipped.
404    pub clip_top: bool,
405    /// If `true`, the left side should be clipped.
406    pub clip_left: bool,
407}
408
409const DEFAULT_BACKGROUND: Rgba<u8> = Rgba([0, 0, 0, 0]);
410
411impl Resize {
412    /// Resize [`image::DynamicImage`] to fit into the [`Size`] or smaller.
413    pub fn resize(
414        &self,
415        image: &DynamicImage,
416        font_size: FontSize,
417        size: Size,
418        background_color: Option<Rgba<u8>>,
419    ) -> DynamicImage {
420        let width = u32::from(size.width) * u32::from(font_size.width);
421        let height = u32::from(size.height) * u32::from(font_size.height);
422
423        // Resize/Crop/etc., fitting a multiple of font-size, but not necessarily the `size`.
424        let mut image = self.resize_pixels(image, width, height);
425
426        if image.width() != width || image.height() != height {
427            let mut bg: DynamicImage = ImageBuffer::from_pixel(
428                width,
429                height,
430                background_color.unwrap_or(DEFAULT_BACKGROUND),
431            )
432            .into();
433            imageops::overlay(&mut bg, &image, 0, 0);
434            image = bg;
435        }
436        image
437    }
438
439    /// Calculate the [`Size`] for the [`DynamicImage`] for `available` size after resizing.
440    pub fn size_for(&self, image: &DynamicImage, font_size: FontSize, available: Size) -> Size {
441        let (width, height) = self.needs_resize_pixels(
442            image,
443            (available.width as u32) * (font_size.width as u32),
444            (available.height as u32) * (font_size.height as u32),
445        );
446        Self::round_pixel_size_to_cells(width, height, font_size)
447    }
448
449    /// Calculate the "natural" [`Size`] needed to render the [`DynamicImage`] at the [`FontSize`],
450    /// without any resizing.
451    pub fn natural_size(image: &DynamicImage, font_size: FontSize) -> Size {
452        Self::round_pixel_size_to_cells(image.width(), image.height(), font_size)
453    }
454
455    /// Check if [`image::DynamicImage`]'s "desired" fits into `target` and is different than `current`.
456    ///
457    /// The returned `Size` is the area the image needs to be resized to, depending on the resize
458    /// type, or `None` if the image matches `target` perfectly at the [`FontSize`].
459    pub(crate) fn needs_resize(
460        &self,
461        image: &DynamicImage,
462        desired: Option<Size>,
463        font_size: FontSize,
464        current: Option<Size>,
465        target: Size,
466        force: bool,
467    ) -> Option<Size> {
468        let desired = desired.unwrap_or_else(|| Self::natural_size(image, font_size));
469
470        // Check if resize is needed at all.
471        if !force
472            && !matches!(self, &Resize::Scale(_))
473            && desired.width <= target.width
474            && desired.height <= target.height
475            && (current.is_none() || current == Some(desired))
476        {
477            let width = u32::from(desired.width) * u32::from(font_size.width);
478            let height = u32::from(desired.height) * u32::from(font_size.height);
479            if image.width() == width || image.height() == height {
480                return None;
481            }
482        }
483
484        let rect = self.size_for(image, font_size, target);
485        debug_assert!(
486            rect.width <= target.width,
487            "needs_resize exceeds area width"
488        );
489        debug_assert!(
490            rect.height <= target.height,
491            "needs_resize exceeds area height"
492        );
493        if force || Some(rect) != current {
494            return Some(rect);
495        }
496        None
497    }
498
499    fn resize_pixels(&self, image: &DynamicImage, width: u32, height: u32) -> DynamicImage {
500        const DEFAULT_FILTER_TYPE: FilterType = FilterType::Nearest;
501        const DEFAULT_CROP_OPTIONS: CropOptions = CropOptions {
502            clip_top: false,
503            clip_left: false,
504        };
505        match self {
506            Self::Fit(filter_type) | Self::Scale(filter_type) => {
507                image.resize(width, height, filter_type.unwrap_or(DEFAULT_FILTER_TYPE))
508            }
509            Self::Crop(options) => {
510                let options = options.as_ref().unwrap_or(&DEFAULT_CROP_OPTIONS);
511                let y = if options.clip_top {
512                    image.height().saturating_sub(height)
513                } else {
514                    0
515                };
516                let x = if options.clip_left {
517                    image.width().saturating_sub(width)
518                } else {
519                    0
520                };
521                image.crop_imm(x, y, width, height)
522            }
523        }
524    }
525
526    fn needs_resize_pixels(&self, image: &DynamicImage, width: u32, height: u32) -> (u32, u32) {
527        match self {
528            Self::Fit(_) => fit_area_proportionally(
529                image.width(),
530                image.height(),
531                min(width, image.width()),
532                min(height, image.height()),
533            ),
534
535            Self::Crop(_) => (min(image.width(), width), min(image.height(), height)),
536            Self::Scale(_) => fit_area_proportionally(image.width(), image.height(), width, height),
537        }
538    }
539
540    /// Round an image pixel size to the nearest matching cell size, given a font size.
541    fn round_pixel_size_to_cells(img_width: u32, img_height: u32, font_size: FontSize) -> Size {
542        let width = (img_width as f32 / font_size.width as f32).ceil() as u16;
543        let height = (img_height as f32 / font_size.height as f32).ceil() as u16;
544        Size::new(width, height)
545    }
546}
547
548/// Ripped from https://github.com/image-rs/image/blob/master/src/math/utils.rs#L12
549/// Calculates the width and height an image should be resized to.
550/// This preserves aspect ratio, and based on the `fill` parameter
551/// will either fill the dimensions to fit inside the smaller constraint
552/// (will overflow the specified bounds on one axis to preserve
553/// aspect ratio), or will shrink so that both dimensions are
554/// completely contained within the given `width` and `height`,
555/// with empty space on one axis.
556fn fit_area_proportionally(width: u32, height: u32, nwidth: u32, nheight: u32) -> (u32, u32) {
557    let wratio = nwidth as f64 / width as f64;
558    let hratio = nheight as f64 / height as f64;
559
560    let ratio = f64::min(wratio, hratio);
561
562    let nw = max((width as f64 * ratio).round() as u64, 1);
563    let nh = max((height as f64 * ratio).round() as u64, 1);
564
565    if nw > u64::from(u16::MAX) {
566        let ratio = u16::MAX as f64 / width as f64;
567        (u32::MAX, max((height as f64 * ratio).round() as u32, 1))
568    } else if nh > u64::from(u16::MAX) {
569        let ratio = u16::MAX as f64 / height as f64;
570        (max((width as f64 * ratio).round() as u32, 1), u32::MAX)
571    } else {
572        (nw as u32, nh as u32)
573    }
574}
575
576#[cfg(test)]
577mod tests {
578    use image::{ImageBuffer, Rgba};
579
580    use super::*;
581
582    const FONT_SIZE: FontSize = FontSize::new(10, 10);
583
584    fn s(w: u16, h: u16) -> DynamicImage {
585        let image: DynamicImage =
586            ImageBuffer::from_pixel(w as _, h as _, Rgba::<u8>([255, 0, 0, 255])).into();
587        image
588    }
589
590    fn r(w: u16, h: u16) -> Size {
591        Size::new(w, h)
592    }
593
594    #[test]
595    fn needs_resize_fit() {
596        let resize = Resize::Fit(None);
597
598        let to = resize.needs_resize(
599            &s(100, 100),
600            None,
601            FONT_SIZE,
602            Some(r(10, 10)),
603            r(10, 10),
604            false,
605        );
606        assert_eq!(None, to);
607
608        let to = resize.needs_resize(
609            &s(101, 101),
610            None,
611            FONT_SIZE,
612            Some(r(10, 10)),
613            r(10, 10),
614            false,
615        );
616        assert_eq!(None, to);
617
618        let to = resize.needs_resize(
619            &s(80, 100),
620            None,
621            FONT_SIZE,
622            Some(r(8, 10)),
623            r(10, 10),
624            false,
625        );
626        assert_eq!(None, to);
627
628        let to = resize.needs_resize(
629            &s(100, 100),
630            None,
631            FONT_SIZE,
632            Some(r(99, 99)),
633            r(8, 10),
634            false,
635        );
636        assert_eq!(Some(r(8, 8)), to);
637
638        let to = resize.needs_resize(
639            &s(100, 100),
640            None,
641            FONT_SIZE,
642            Some(r(99, 99)),
643            r(10, 8),
644            false,
645        );
646        assert_eq!(Some(r(8, 8)), to);
647
648        let to = resize.needs_resize(
649            &s(100, 50),
650            None,
651            FONT_SIZE,
652            Some(r(99, 99)),
653            r(4, 4),
654            false,
655        );
656        assert_eq!(Some(r(4, 2)), to);
657
658        let to = resize.needs_resize(
659            &s(50, 100),
660            None,
661            FONT_SIZE,
662            Some(r(99, 99)),
663            r(4, 4),
664            false,
665        );
666        assert_eq!(Some(r(2, 4)), to);
667
668        let to = resize.needs_resize(
669            &s(100, 100),
670            None,
671            FONT_SIZE,
672            Some(r(8, 8)),
673            r(11, 11),
674            false,
675        );
676        assert_eq!(Some(r(10, 10)), to);
677
678        let to = resize.needs_resize(
679            &s(100, 100),
680            None,
681            FONT_SIZE,
682            Some(r(10, 10)),
683            r(11, 11),
684            false,
685        );
686        assert_eq!(None, to);
687    }
688
689    #[test]
690    fn needs_resize_crop() {
691        let resize = Resize::Crop(None);
692
693        let to = resize.needs_resize(
694            &s(100, 100),
695            None,
696            FONT_SIZE,
697            Some(r(10, 10)),
698            r(10, 10),
699            false,
700        );
701        assert_eq!(None, to);
702
703        let to = resize.needs_resize(
704            &s(80, 100),
705            None,
706            FONT_SIZE,
707            Some(r(8, 10)),
708            r(10, 10),
709            false,
710        );
711        assert_eq!(None, to);
712
713        let to = resize.needs_resize(
714            &s(100, 100),
715            None,
716            FONT_SIZE,
717            Some(r(10, 10)),
718            r(8, 10),
719            false,
720        );
721        assert_eq!(Some(r(8, 10)), to);
722
723        let to = resize.needs_resize(
724            &s(100, 100),
725            None,
726            FONT_SIZE,
727            Some(r(10, 10)),
728            r(10, 8),
729            false,
730        );
731        assert_eq!(Some(r(10, 8)), to);
732    }
733}