mirror of
https://github.com/FliegendeWurst/cursive.git
synced 2024-11-23 17:35:00 +00:00
Move LinesIterator
to utils
module
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parent
e77512653d
commit
fb10e58188
@ -82,9 +82,9 @@ pub mod theme;
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pub mod align;
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pub mod menu;
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pub mod direction;
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pub mod utils;
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// This probably doesn't need to be public?
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mod utils;
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mod printer;
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mod xy;
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mod with;
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@ -1,4 +1,4 @@
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//! Module to build menus.
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//! Build menu trees.
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//!
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//! Menus are a way to arrange many actions in groups of more manageable size.
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//!
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@ -3,7 +3,7 @@
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use std::cmp::min;
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use unicode_segmentation::UnicodeSegmentation;
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use utils::head_bytes;
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use utils::prefix_length;
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use backend::Backend;
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use B;
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@ -47,7 +47,7 @@ impl Printer {
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let room = self.size.x - p.x;
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// We want the number of CHARACTERS, not bytes.
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// (Actually we want the "width" of the string, see unicode-width)
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let prefix_len = head_bytes(text.graphemes(true), room, "");
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let prefix_len = prefix_length(text.graphemes(true), room, "");
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let text = &text[..prefix_len];
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let p = p + self.offset;
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@ -1,4 +1,4 @@
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//! Module to handle colors and themes in the UI.
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//! Handle colors and themes in the UI.
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//!
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//! # Color palette
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//!
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135
src/utils.rs
135
src/utils.rs
@ -1,20 +1,123 @@
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use unicode_width::UnicodeWidthStr;
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//! Toolbox to make text layout easier.
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// Computes a sub-string length that fits in the given `width`.
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//
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// Takes non-breakable elements from `iter`, while keeping the
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// string width under `width` (and adding the length of `delimiter`
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// between each element).
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//
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// Example:
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//
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// ```
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// let my_text = "blah...";
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// // This returns the number of bytes for a prefix of `my_text` that
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// // fits within 5 cells.
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// head_bytes(my_text.graphemes(true), 5, "");
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// ```
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pub fn head_bytes<'a, I: Iterator<Item = &'a str>>(iter: I, width: usize,
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use unicode_width::UnicodeWidthStr;
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use unicode_segmentation::UnicodeSegmentation;
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/// Generates rows of text in constrained width.
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///
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/// Given a long text and a width constraint, it iterates over
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/// substrings of the text, each within the constraint.
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pub struct LinesIterator<'a> {
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content: &'a str,
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start: usize,
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width: usize,
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}
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impl<'a> LinesIterator<'a> {
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/// Returns a new `LinesIterator` on `content`.
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///
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/// Yields rows of `width` cells or less.
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pub fn new(content: &'a str, width: usize) -> Self {
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LinesIterator {
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content: content,
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width: width,
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start: 0,
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}
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}
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}
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/// Represents a row of text within a `String`.
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///
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/// A row is made of an offset into a parent `String` and a length.
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/// The corresponding substring should take `width` cells when printed.
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pub struct Row {
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/// Beginning of the row in the parent `String`.
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pub start: usize,
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/// Length of the row, in bytes.
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pub end: usize,
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/// Width of the row, in cells.
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pub width: usize,
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}
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impl<'a> Iterator for LinesIterator<'a> {
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type Item = Row;
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fn next(&mut self) -> Option<Row> {
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if self.start >= self.content.len() {
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// This is the end.
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return None;
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}
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let start = self.start;
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let content = &self.content[self.start..];
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let next = content.find('\n').unwrap_or(content.len());
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let content = &content[..next];
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let line_width = content.width();
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if line_width <= self.width {
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// We found a newline before the allowed limit.
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// Break early.
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self.start += next + 1;
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return Some(Row {
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start: start,
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end: next + start,
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width: line_width,
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});
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}
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// Keep adding indivisible tokens
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let prefix_length =
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match prefix_length(content.split(' '), self.width, " ") {
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0 => prefix_length(content.graphemes(true), self.width, ""),
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other => {
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self.start += 1;
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other
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}
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};
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if prefix_length == 0 {
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// This mean we can't even get a single char?
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// Sucks. Let's bail.
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return None;
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}
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self.start += prefix_length;
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Some(Row {
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start: start,
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end: start + prefix_length,
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width: self.width,
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})
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}
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}
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/// Computes a sub-string length that fits in the given `width`.
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///
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/// Takes non-breakable elements from `iter`, while keeping the
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/// string width under `width` (and adding the length of `delimiter`
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/// between each element).
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///
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/// Given `total_text = iter.collect().join(delimiter)`, the result
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/// is the length of the longest prefix of `width` or less cells,
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/// without breaking inside an element.
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///
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/// Example:
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///
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/// ```
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/// # extern crate cursive;
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/// extern crate unicode_segmentation;
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/// use unicode_segmentation::UnicodeSegmentation;
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///
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/// # use cursive::utils::prefix_length;
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/// # fn main() {
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/// let my_text = "blah...";
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/// // This returns the number of bytes for a prefix of `my_text` that
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/// // fits within 5 cells.
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/// prefix_length(my_text.graphemes(true), 5, "");
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/// # }
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/// ```
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pub fn prefix_length<'a, I: Iterator<Item = &'a str>>(iter: I, width: usize,
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delimiter: &str)
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-> usize {
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let delimiter_width = delimiter.width();
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@ -1,4 +1,4 @@
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//! Define the base elements required to build views.
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//! Base elements required to build views.
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//!
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//! Views are the main building blocks of your UI.
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//!
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@ -1,4 +1,4 @@
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//! Defines various views to use when creating the layout.
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//! Various views to use when creating the layout.
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mod box_view;
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mod button;
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@ -2,16 +2,15 @@ use XY;
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use With;
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use direction::Direction;
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use vec::Vec2;
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use view::{View, SizeCache};
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use view::{SizeCache, View};
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use Printer;
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use align::*;
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use event::*;
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use view::ScrollBase;
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use utils::head_bytes;
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use utils::{Row, LinesIterator};
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use unicode_width::UnicodeWidthStr;
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use unicode_segmentation::UnicodeSegmentation;
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/// A simple view showing a fixed text
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@ -30,13 +29,6 @@ pub struct TextView {
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width: Option<usize>,
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}
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// Subset of the main content representing a row on the display.
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struct Row {
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start: usize,
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end: usize,
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width: usize,
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}
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// If the last character is a newline, strip it.
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fn strip_last_newline(content: &str) -> &str {
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if !content.is_empty() && content.chars().last().unwrap() == '\n' {
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@ -182,77 +174,6 @@ impl TextView {
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}
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}
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// Given a multiline string, and a given maximum width,
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// iterates on the computed rows.
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struct LinesIterator<'a> {
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content: &'a str,
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start: usize,
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width: usize,
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}
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impl<'a> LinesIterator<'a> {
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// Start an iterator on the given content.
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fn new(content: &'a str, width: usize) -> Self {
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LinesIterator {
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content: content,
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width: width,
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start: 0,
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}
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}
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}
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impl<'a> Iterator for LinesIterator<'a> {
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type Item = Row;
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fn next(&mut self) -> Option<Row> {
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if self.start >= self.content.len() {
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// This is the end.
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return None;
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}
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let start = self.start;
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let content = &self.content[self.start..];
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let next = content.find('\n').unwrap_or(content.len());
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let content = &content[..next];
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let line_width = content.width();
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if line_width <= self.width {
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// We found a newline before the allowed limit.
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// Break early.
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self.start += next + 1;
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return Some(Row {
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start: start,
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end: next + start,
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width: line_width,
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});
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}
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// Keep adding indivisible tokens
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let head_bytes =
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match head_bytes(content.split(' '), self.width, " ") {
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0 => head_bytes(content.graphemes(true), self.width, ""),
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other => {
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self.start += 1;
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other
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}
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};
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if head_bytes == 0 {
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// This mean we can't even get a single char?
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// Sucks. Let's bail.
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return None;
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}
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self.start += head_bytes;
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Some(Row {
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start: start,
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end: start + head_bytes,
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width: self.width,
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})
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}
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}
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impl View for TextView {
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fn draw(&self, printer: &Printer) {
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