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c3fc1b88fe
Since it has a functional role, we can not just replace it, we must keep it around. This also allows us to simplify the code slightly. We must fix this before we fix #1438 since otherwise the \n will be missing with --style=plain, since we will stop adding it if it is missing.
148 lines
4.7 KiB
Rust
148 lines
4.7 KiB
Rust
use console::AnsiCodeIterator;
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/// Expand tabs like an ANSI-enabled expand(1).
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pub fn expand_tabs(line: &str, width: usize, cursor: &mut usize) -> String {
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let mut buffer = String::with_capacity(line.len() * 2);
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for chunk in AnsiCodeIterator::new(line) {
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match chunk {
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(text, true) => buffer.push_str(text),
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(mut text, false) => {
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while let Some(index) = text.find('\t') {
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// Add previous text.
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if index > 0 {
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*cursor += index;
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buffer.push_str(&text[0..index]);
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}
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// Add tab.
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let spaces = width - (*cursor % width);
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*cursor += spaces;
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buffer.push_str(&*" ".repeat(spaces));
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// Next.
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text = &text[index + 1..text.len()];
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}
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*cursor += text.len();
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buffer.push_str(text);
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}
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}
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}
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buffer
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}
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fn try_parse_utf8_char(input: &[u8]) -> Option<(char, usize)> {
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let str_from_utf8 = |seq| std::str::from_utf8(seq).ok();
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let decoded = input
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.get(0..1)
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.and_then(str_from_utf8)
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.map(|c| (c, 1))
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.or_else(|| input.get(0..2).and_then(str_from_utf8).map(|c| (c, 2)))
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.or_else(|| input.get(0..3).and_then(str_from_utf8).map(|c| (c, 3)))
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.or_else(|| input.get(0..4).and_then(str_from_utf8).map(|c| (c, 4)));
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decoded.map(|(seq, n)| (seq.chars().next().unwrap(), n))
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}
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pub fn replace_nonprintable(input: &[u8], tab_width: usize) -> String {
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let mut output = String::new();
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let tab_width = if tab_width == 0 { 4 } else { tab_width };
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let mut idx = 0;
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let len = input.len();
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while idx < len {
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if let Some((chr, skip_ahead)) = try_parse_utf8_char(&input[idx..]) {
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idx += skip_ahead;
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match chr {
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// space
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' ' => output.push('·'),
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// tab
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'\t' => {
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if tab_width == 1 {
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output.push('↹');
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} else {
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output.push('├');
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output.push_str(&"─".repeat(tab_width - 2));
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output.push('┤');
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}
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}
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// line feed
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'\x0A' => output.push_str("␊\x0A"),
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// carriage return
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'\x0D' => output.push('␍'),
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// null
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'\x00' => output.push('␀'),
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// bell
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'\x07' => output.push('␇'),
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// backspace
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'\x08' => output.push('␈'),
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// escape
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'\x1B' => output.push('␛'),
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// printable ASCII
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c if c.is_ascii_alphanumeric()
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|| c.is_ascii_punctuation()
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|| c.is_ascii_graphic() =>
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{
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output.push(c)
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}
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// everything else
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c => output.push_str(&c.escape_unicode().collect::<String>()),
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}
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} else {
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output.push_str(&format!("\\x{:02X}", input[idx]));
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idx += 1;
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}
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}
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output
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}
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#[test]
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fn test_try_parse_utf8_char() {
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assert_eq!(try_parse_utf8_char(&[0x20]), Some((' ', 1)));
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assert_eq!(try_parse_utf8_char(&[0x20, 0x20]), Some((' ', 1)));
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assert_eq!(try_parse_utf8_char(&[0x20, 0xef]), Some((' ', 1)));
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assert_eq!(try_parse_utf8_char(&[0x00]), Some(('\x00', 1)));
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assert_eq!(try_parse_utf8_char(&[0x1b]), Some(('\x1b', 1)));
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assert_eq!(try_parse_utf8_char(&[0xc3, 0xa4]), Some(('ä', 2)));
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assert_eq!(try_parse_utf8_char(&[0xc3, 0xa4, 0xef]), Some(('ä', 2)));
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assert_eq!(try_parse_utf8_char(&[0xc3, 0xa4, 0x20]), Some(('ä', 2)));
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assert_eq!(try_parse_utf8_char(&[0xe2, 0x82, 0xac]), Some(('€', 3)));
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assert_eq!(
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try_parse_utf8_char(&[0xe2, 0x82, 0xac, 0xef]),
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Some(('€', 3))
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);
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assert_eq!(
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try_parse_utf8_char(&[0xe2, 0x82, 0xac, 0x20]),
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Some(('€', 3))
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);
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assert_eq!(try_parse_utf8_char(&[0xe2, 0x88, 0xb0]), Some(('∰', 3)));
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assert_eq!(
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try_parse_utf8_char(&[0xf0, 0x9f, 0x8c, 0x82]),
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Some(('🌂', 4))
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);
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assert_eq!(
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try_parse_utf8_char(&[0xf0, 0x9f, 0x8c, 0x82, 0xef]),
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Some(('🌂', 4))
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);
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assert_eq!(
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try_parse_utf8_char(&[0xf0, 0x9f, 0x8c, 0x82, 0x20]),
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Some(('🌂', 4))
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);
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assert_eq!(try_parse_utf8_char(&[]), None);
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assert_eq!(try_parse_utf8_char(&[0xef]), None);
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assert_eq!(try_parse_utf8_char(&[0xef, 0x20]), None);
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assert_eq!(try_parse_utf8_char(&[0xf0, 0xf0]), None);
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}
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