817 lines
23 KiB
Rust
817 lines
23 KiB
Rust
#![allow(dead_code)]
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use std::mem;
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use super::rope::{Rope, RopeGraphemeIter};
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use string_utils::{is_line_ending, grapheme_count};
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/// A single line of text
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pub struct Line {
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text: Rope, // The text data, stored as UTF8
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pub ending: LineEnding, // The type of line ending, if any
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}
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impl Line {
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/// Creates a new empty Line
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pub fn new() -> Line {
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Line {
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text: Rope::new(),
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ending: LineEnding::None,
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}
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}
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/// Creates a new Line from a str.
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pub fn new_from_str(text: &str) -> Line {
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let mut ending = LineEnding::None;
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let mut end_pos = 0;
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// Find the slice before the line ending, if any
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for g in text.graphemes(true) {
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match g {
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//==============
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// Line endings
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//==============
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// CRLF
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"\u{000D}\u{000A}" => {
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ending = LineEnding::CRLF;
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break;
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},
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// LF
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"\u{000A}" => {
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ending = LineEnding::LF;
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break;
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},
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// VT
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"\u{000B}" => {
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ending = LineEnding::VT;
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break;
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},
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// FF
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"\u{000C}" => {
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ending = LineEnding::FF;
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break;
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},
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// CR
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"\u{000D}" => {
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ending = LineEnding::CR;
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break;
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},
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// NEL
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"\u{0085}" => {
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ending = LineEnding::NEL;
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break;
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},
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// LS
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"\u{2028}" => {
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ending = LineEnding::LS;
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break;
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},
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// PS
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"\u{2029}" => {
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ending = LineEnding::PS;
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break;
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},
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//==================
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// Other characters
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//==================
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_ => {
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end_pos += g.len();
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}
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}
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}
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// Create and return Line
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return Line {
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text: Rope::new_from_str(&text[..end_pos]),
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ending: ending,
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};
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}
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pub fn new_from_str_with_count_unchecked(text: &str, count: usize) -> Line {
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let mut ending = LineEnding::None;
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let bytes = text.as_bytes();
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// Check for line ending
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let mut le_size: usize = 0;
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let text_size = text.len();
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if text.len() >= 3 {
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match &text[(text_size-3)..] {
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// LS
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"\u{2028}" => {
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ending = LineEnding::LS;
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le_size = 3;
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},
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// PS
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"\u{2029}" => {
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ending = LineEnding::PS;
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le_size = 3;
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},
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_ => {}
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}
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}
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if le_size == 0 && text.len() >= 2 {
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match &text[(text_size-2)..] {
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// CRLF
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"\u{000D}\u{000A}" => {
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ending = LineEnding::CRLF;
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le_size = 2;
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},
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_ => {}
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}
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}
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if le_size == 0 && text.len() >= 1 {
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match &text[(text_size-1)..] {
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// LF
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"\u{000A}" => {
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ending = LineEnding::LF;
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le_size = 1;
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},
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// VT
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"\u{000B}" => {
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ending = LineEnding::VT;
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le_size = 1;
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},
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// FF
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"\u{000C}" => {
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ending = LineEnding::FF;
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le_size = 1;
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},
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// CR
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"\u{000D}" => {
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ending = LineEnding::CR;
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le_size = 1;
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},
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// NEL
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"\u{0085}" => {
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ending = LineEnding::NEL;
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le_size = 1;
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},
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_ => {}
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}
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}
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// Create and return Line
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let cnt = if ending == LineEnding::None { count } else { count - 1 };
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return Line {
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text: Rope::new_from_str_with_count(&text[..(bytes.len()-le_size)], cnt),
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ending: ending,
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};
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}
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/// Creates a new Line from a string.
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/// Does not check to see if the string has internal newlines.
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/// This is primarily used for efficient loading of files.
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pub fn new_from_string_unchecked(text: String) -> Line {
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// TODO: this can be smarter, and can pass the string
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// directly to the Rope after taking off any line
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// endings.
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return Line::new_from_str_with_count_unchecked(text.as_slice(), grapheme_count(text.as_slice()));
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}
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/// Returns the total number of unicode graphemes in the line
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pub fn grapheme_count(&self) -> usize {
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let mut count = self.text.grapheme_count();
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match self.ending {
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LineEnding::None => {},
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_ => {count += 1;}
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}
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return count;
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}
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/// Returns the total number of unicode graphemes in the line,
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/// not counting the line ending grapheme, if any.
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pub fn grapheme_count_sans_line_ending(&self) -> usize {
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self.text.grapheme_count()
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}
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pub fn grapheme_at_index<'a>(&'a self, index: usize) -> &'a str {
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// TODO: we don't have to iterate over the entire line
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// anymore because we're using a rope now. Update.
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let mut i = 0;
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for g in self.grapheme_iter() {
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if i == index {
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return g;
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}
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else {
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i += 1;
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}
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}
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// Should never get here
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panic!("Line::grapheme_at_index(): index past end of line.");
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}
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/// Returns a string containing the line's text
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pub fn to_string(&self) -> String {
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let s = self.text.to_string();
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return s;
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}
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/// Inserts `text` at grapheme index `pos`.
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/// NOTE: panics if it encounters a line ending in the text.
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pub fn insert_text(&mut self, text: &str, pos: usize) {
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// Check for line endings
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for g in text.graphemes(true) {
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if is_line_ending(g) {
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panic!("Line::insert_text(): line ending in inserted text.");
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}
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}
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// Insert text
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self.text.insert_text_at_grapheme_index(text, pos);
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}
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/// Appends `text` to the end of line, just before the line ending (if
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/// any).
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/// NOTE: panics if it encounters a line ending in the text.
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pub fn append_text(&mut self, text: &str) {
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// Check for line endings
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for g in text.graphemes(true) {
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if is_line_ending(g) {
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panic!("Line::append_text(): line ending in inserted text.");
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}
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}
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// Append text
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let gc = self.text.grapheme_count();
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self.text.insert_text_at_grapheme_index(text, gc);
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}
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/// Remove the text between grapheme positions 'pos_a' and 'pos_b'.
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pub fn remove_text(&mut self, pos_a: usize, pos_b: usize) {
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self.text.remove_text_between_grapheme_indices(pos_a, pos_b);
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}
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/// Insert a line break into the line, splitting it into two.
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/// This line stays as the first part of the split. The second
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/// part is returned.
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pub fn split(&mut self, ending: LineEnding, pos: usize) -> Line {
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// TODO: change code to use Rope
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let mut other = Line::new();
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// Inserting at very beginning: special cased for efficiency
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if pos == 0 {
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mem::swap(self, &mut other);
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self.ending = ending;
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}
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// Otherwise, general case
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else {
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// Split the text
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other.text = self.text.split(pos);
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// Set the line endings appropriately
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other.ending = self.ending;
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self.ending = ending;
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}
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return other;
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}
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/// Appends another line to the end of this one, consuming the other
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/// line.
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/// Note that the resulting line ending is the ending of the other
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/// line, if any.
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pub fn append(&mut self, other: Line) {
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self.ending = other.ending;
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self.text.append(other.text);
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}
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/// Returns an iterator over the graphemes of the line
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pub fn grapheme_iter<'a>(&'a self) -> LineGraphemeIter<'a> {
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LineGraphemeIter {
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graphemes: self.text.grapheme_iter(),
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grapheme_count: None,
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ending: self.ending,
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done: false,
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}
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}
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/// Returns an iterator over the graphemes of the line
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pub fn grapheme_iter_at_index<'a>(&'a self, index: usize) -> LineGraphemeIter<'a> {
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LineGraphemeIter {
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graphemes: self.text.grapheme_iter_at_index(index),
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grapheme_count: None,
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ending: self.ending,
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done: false,
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}
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}
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/// Returns an iterator over the graphemes of the line
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pub fn grapheme_iter_at_index_with_max_length<'a>(&'a self, index: usize, length: usize) -> LineGraphemeIter<'a> {
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LineGraphemeIter {
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graphemes: self.text.grapheme_iter_at_index(index),
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grapheme_count: Some(length),
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ending: self.ending,
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done: false,
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}
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}
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}
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/// Represents one of the valid Unicode line endings.
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/// Also acts as an index into `LINE_ENDINGS`.
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#[derive(PartialEq, Copy)]
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pub enum LineEnding {
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None = 0, // No line ending
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CRLF = 1, // CarriageReturn followed by LineFeed
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LF = 2, // U+000A -- LineFeed
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VT = 3, // U+000B -- VerticalTab
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FF = 4, // U+000C -- FormFeed
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CR = 5, // U+000D -- CarriageReturn
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NEL = 6, // U+0085 -- NextLine
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LS = 7, // U+2028 -- Line Separator
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PS = 8, // U+2029 -- ParagraphSeparator
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}
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pub fn str_to_line_ending(g: &str) -> LineEnding {
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match g {
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//==============
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// Line endings
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//==============
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// CRLF
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"\u{000D}\u{000A}" => {
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return LineEnding::CRLF;
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},
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// LF
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"\u{000A}" => {
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return LineEnding::LF;
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},
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// VT
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"\u{000B}" => {
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return LineEnding::VT;
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},
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// FF
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"\u{000C}" => {
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return LineEnding::FF;
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},
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// CR
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"\u{000D}" => {
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return LineEnding::CR;
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},
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// NEL
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"\u{0085}" => {
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return LineEnding::NEL;
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},
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// LS
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"\u{2028}" => {
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return LineEnding::LS;
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},
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// PS
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"\u{2029}" => {
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return LineEnding::PS;
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},
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// Not a line ending
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_ => {
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return LineEnding::None;
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}
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}
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}
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pub fn line_ending_to_str(ending: LineEnding) -> &'static str {
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LINE_ENDINGS[ending as usize]
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}
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/// An array of string literals corresponding to the possible
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/// unicode line endings.
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pub const LINE_ENDINGS: [&'static str; 9] = ["",
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"\u{000D}\u{000A}",
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"\u{000A}",
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"\u{000B}",
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"\u{000C}",
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"\u{000D}",
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"\u{0085}",
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"\u{2028}",
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"\u{2029}"
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];
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/// An iterator over the graphemes of a Line
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pub struct LineGraphemeIter<'a> {
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graphemes: RopeGraphemeIter<'a>,
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grapheme_count: Option<usize>,
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ending: LineEnding,
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done: bool,
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}
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impl<'a> LineGraphemeIter<'a> {
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pub fn skip_graphemes(&mut self, n: usize) {
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for _ in range(0, n) {
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if let None = self.next() {
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break;
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}
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}
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}
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}
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impl<'a> Iterator for LineGraphemeIter<'a> {
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type Item = &'a str;
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fn next(&mut self) -> Option<&'a str> {
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if self.done {
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return None;
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}
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else if let Some(0) = self.grapheme_count {
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return None;
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}
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else {
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if let Some(ref mut i) = self.grapheme_count {
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*i -= 1;
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}
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let g = self.graphemes.next();
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if let Some(_) = g {
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return g;
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}
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else {
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self.done = true;
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if self.ending == LineEnding::None {
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return None;
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}
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else {
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return Some(LINE_ENDINGS[self.ending as usize]);
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}
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}
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}
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}
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}
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//=========================================================================
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// Line tests
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//=========================================================================
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#[cfg(test)]
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mod tests {
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use super::{Line, LineEnding, LineGraphemeIter};
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const TAB_WIDTH: usize = 4;
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#[test]
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fn new_text_line() {
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let tl = Line::new();
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assert_eq!(tl.text.grapheme_count(), 0);
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assert!(tl.ending == LineEnding::None);
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}
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#[test]
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fn new_text_line_from_str() {
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let tl = Line::new_from_str("Hello!");
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assert_eq!(tl.text.grapheme_count(), 6);
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assert!(&tl.text[0] == "H");
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assert!(&tl.text[1] == "e");
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assert!(&tl.text[2] == "l");
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assert!(&tl.text[3] == "l");
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assert!(&tl.text[4] == "o");
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assert!(&tl.text[5] == "!");
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assert!(tl.ending == LineEnding::None);
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}
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#[test]
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fn new_text_line_from_empty_str() {
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let tl = Line::new_from_str("");
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assert_eq!(tl.text.grapheme_count(), 0);
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assert!(tl.ending == LineEnding::None);
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}
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#[test]
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fn new_text_line_from_str_with_lf() {
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let tl = Line::new_from_str("Hello!\n");
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assert_eq!(tl.text.grapheme_count(), 6);
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assert!(&tl.text[0] == "H");
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assert!(&tl.text[1] == "e");
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assert!(&tl.text[2] == "l");
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assert!(&tl.text[3] == "l");
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assert!(&tl.text[4] == "o");
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assert!(&tl.text[5] == "!");
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assert!(tl.ending == LineEnding::LF);
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}
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#[test]
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fn new_text_line_from_str_with_crlf() {
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let tl = Line::new_from_str("Hello!\r\n");
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assert_eq!(tl.text.grapheme_count(), 6);
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assert!(&tl.text[0] == "H");
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assert!(&tl.text[1] == "e");
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assert!(&tl.text[2] == "l");
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assert!(&tl.text[3] == "l");
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assert!(&tl.text[4] == "o");
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assert!(&tl.text[5] == "!");
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assert!(tl.ending == LineEnding::CRLF);
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}
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#[test]
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fn new_text_line_from_str_with_crlf_and_too_long() {
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let tl = Line::new_from_str("Hello!\r\nLa la la la");
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assert_eq!(tl.text.grapheme_count(), 6);
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assert!(&tl.text[0] == "H");
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assert!(&tl.text[1] == "e");
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assert!(&tl.text[2] == "l");
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assert!(&tl.text[3] == "l");
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assert!(&tl.text[4] == "o");
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assert!(&tl.text[5] == "!");
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assert!(tl.ending == LineEnding::CRLF);
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}
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#[test]
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fn new_text_line_from_string_unchecked() {
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let s = String::from_str("Hello!");
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let tl = Line::new_from_string_unchecked(s);
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assert_eq!(tl.text.grapheme_count(), 6);
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assert!(&tl.text[0] == "H");
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assert!(&tl.text[1] == "e");
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assert!(&tl.text[2] == "l");
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assert!(&tl.text[3] == "l");
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assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == "!");
|
|
assert!(tl.ending == LineEnding::None);
|
|
}
|
|
|
|
#[test]
|
|
fn new_text_line_from_string_unchecked_with_lf() {
|
|
let s = String::from_str("Hello!\u{000A}");
|
|
|
|
let tl = Line::new_from_string_unchecked(s);
|
|
|
|
assert_eq!(tl.text.grapheme_count(), 6);
|
|
assert!(&tl.text[0] == "H");
|
|
assert!(&tl.text[1] == "e");
|
|
assert!(&tl.text[2] == "l");
|
|
assert!(&tl.text[3] == "l");
|
|
assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == "!");
|
|
assert!(tl.ending == LineEnding::LF);
|
|
}
|
|
|
|
#[test]
|
|
fn new_text_line_from_string_unchecked_with_crlf() {
|
|
let s = String::from_str("Hello!\u{000D}\u{000A}");
|
|
|
|
let tl = Line::new_from_string_unchecked(s);
|
|
|
|
assert_eq!(tl.text.grapheme_count(), 6);
|
|
assert!(&tl.text[0] == "H");
|
|
assert!(&tl.text[1] == "e");
|
|
assert!(&tl.text[2] == "l");
|
|
assert!(&tl.text[3] == "l");
|
|
assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == "!");
|
|
assert!(tl.ending == LineEnding::CRLF);
|
|
}
|
|
|
|
#[test]
|
|
fn new_text_line_from_string_unchecked_with_ls() {
|
|
let s = String::from_str("Hello!\u{2028}");
|
|
|
|
let tl = Line::new_from_string_unchecked(s);
|
|
|
|
assert_eq!(tl.text.grapheme_count(), 6);
|
|
assert!(&tl.text[0] == "H");
|
|
assert!(&tl.text[1] == "e");
|
|
assert!(&tl.text[2] == "l");
|
|
assert!(&tl.text[3] == "l");
|
|
assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == "!");
|
|
assert!(tl.ending == LineEnding::LS);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_insert_text() {
|
|
let mut tl = Line::new_from_str("Hello!\r\n");
|
|
|
|
tl.insert_text(" world", 5);
|
|
|
|
assert_eq!(tl.text.grapheme_count(), 12);
|
|
assert!(&tl.text[0] == "H");
|
|
assert!(&tl.text[1] == "e");
|
|
assert!(&tl.text[2] == "l");
|
|
assert!(&tl.text[3] == "l");
|
|
assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == " ");
|
|
assert!(&tl.text[6] == "w");
|
|
assert!(&tl.text[7] == "o");
|
|
assert!(&tl.text[8] == "r");
|
|
assert!(&tl.text[9] == "l");
|
|
assert!(&tl.text[10] == "d");
|
|
assert!(&tl.text[11] == "!");
|
|
assert!(tl.ending == LineEnding::CRLF);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_append_text() {
|
|
let mut tl = Line::new_from_str("Hello\r\n");
|
|
|
|
tl.append_text(" world!");
|
|
|
|
assert_eq!(tl.text.grapheme_count(), 12);
|
|
assert!(&tl.text[0] == "H");
|
|
assert!(&tl.text[1] == "e");
|
|
assert!(&tl.text[2] == "l");
|
|
assert!(&tl.text[3] == "l");
|
|
assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == " ");
|
|
assert!(&tl.text[6] == "w");
|
|
assert!(&tl.text[7] == "o");
|
|
assert!(&tl.text[8] == "r");
|
|
assert!(&tl.text[9] == "l");
|
|
assert!(&tl.text[10] == "d");
|
|
assert!(&tl.text[11] == "!");
|
|
assert!(tl.ending == LineEnding::CRLF);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_remove_text() {
|
|
let mut tl = Line::new_from_str("Hello world!\r\n");
|
|
|
|
tl.remove_text(5, 11);
|
|
|
|
assert_eq!(tl.text.grapheme_count(), 6);
|
|
assert!(&tl.text[0] == "H");
|
|
assert!(&tl.text[1] == "e");
|
|
assert!(&tl.text[2] == "l");
|
|
assert!(&tl.text[3] == "l");
|
|
assert!(&tl.text[4] == "o");
|
|
assert!(&tl.text[5] == "!");
|
|
assert!(tl.ending == LineEnding::CRLF);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_split() {
|
|
let mut tl1 = Line::new_from_str("Hello world!\r\n");
|
|
|
|
let tl2 = tl1.split(LineEnding::LF, 5);
|
|
|
|
assert_eq!(tl1.text.grapheme_count(), 5);
|
|
assert!(&tl1.text[0] == "H");
|
|
assert!(&tl1.text[1] == "e");
|
|
assert!(&tl1.text[2] == "l");
|
|
assert!(&tl1.text[3] == "l");
|
|
assert!(&tl1.text[4] == "o");
|
|
assert!(tl1.ending == LineEnding::LF);
|
|
|
|
assert_eq!(tl2.text.grapheme_count(), 7);
|
|
assert!(&tl2.text[0] == " ");
|
|
assert!(&tl2.text[1] == "w");
|
|
assert!(&tl2.text[2] == "o");
|
|
assert!(&tl2.text[3] == "r");
|
|
assert!(&tl2.text[4] == "l");
|
|
assert!(&tl2.text[5] == "d");
|
|
assert!(&tl2.text[6] == "!");
|
|
assert!(tl2.ending == LineEnding::CRLF);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_split_beginning() {
|
|
let mut tl1 = Line::new_from_str("Hello!\r\n");
|
|
|
|
let tl2 = tl1.split(LineEnding::LF, 0);
|
|
|
|
assert_eq!(tl1.text.grapheme_count(), 0);
|
|
assert!(tl1.ending == LineEnding::LF);
|
|
|
|
assert_eq!(tl2.text.grapheme_count(), 6);
|
|
assert!(&tl2.text[0] == "H");
|
|
assert!(&tl2.text[1] == "e");
|
|
assert!(&tl2.text[2] == "l");
|
|
assert!(&tl2.text[3] == "l");
|
|
assert!(&tl2.text[4] == "o");
|
|
assert!(&tl2.text[5] == "!");
|
|
assert!(tl2.ending == LineEnding::CRLF);
|
|
}
|
|
|
|
|
|
//=========================================================================
|
|
// LineGraphemeIter tests
|
|
//=========================================================================
|
|
|
|
#[test]
|
|
fn text_line_grapheme_iter() {
|
|
let tl = Line::new_from_str("Hello!");
|
|
let mut iter = tl.grapheme_iter();
|
|
|
|
assert!(iter.next() == Some("H"));
|
|
assert!(iter.next() == Some("e"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("o"));
|
|
assert!(iter.next() == Some("!"));
|
|
assert!(iter.next() == None);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_grapheme_iter_with_lf() {
|
|
let tl = Line::new_from_str("Hello!\n");
|
|
let mut iter = tl.grapheme_iter();
|
|
|
|
assert!(iter.next() == Some("H"));
|
|
assert!(iter.next() == Some("e"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("o"));
|
|
assert!(iter.next() == Some("!"));
|
|
assert!(iter.next() == Some("\n"));
|
|
assert!(iter.next() == None);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_grapheme_iter_with_crlf() {
|
|
let tl = Line::new_from_str("Hello!\r\n");
|
|
let mut iter = tl.grapheme_iter();
|
|
|
|
assert!(iter.next() == Some("H"));
|
|
assert!(iter.next() == Some("e"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("o"));
|
|
assert!(iter.next() == Some("!"));
|
|
assert!(iter.next() == Some("\r\n"));
|
|
assert!(iter.next() == None);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_grapheme_iter_at_index() {
|
|
let tl = Line::new_from_str("Hello!");
|
|
let mut iter = tl.grapheme_iter_at_index(2);
|
|
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("l"));
|
|
assert!(iter.next() == Some("o"));
|
|
assert!(iter.next() == Some("!"));
|
|
assert!(iter.next() == None);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_grapheme_iter_at_index_past_end() {
|
|
let tl = Line::new_from_str("Hello!");
|
|
let mut iter = tl.grapheme_iter_at_index(10);
|
|
|
|
assert!(iter.next() == None);
|
|
}
|
|
|
|
#[test]
|
|
fn text_line_grapheme_iter_at_index_at_lf() {
|
|
let tl = Line::new_from_str("Hello!\n");
|
|
let mut iter = tl.grapheme_iter_at_index(6);
|
|
|
|
assert!(iter.next() == Some("\n"));
|
|
assert!(iter.next() == None);
|
|
}
|
|
|
|
} |