use std::borrow::Cow;
use std::cmp::Ordering;
use std::fmt::Debug;
use std::mem::replace;
#[cfg(test)]
mod test;
use unicode_segmentation::{Graphemes, UnicodeSegmentation};
use crate::helix::stdx::rope::{RopeGraphemes, RopeSliceExt};
use crate::helix::graphemes::{Grapheme, GraphemeStr};
use crate::helix::syntax::Highlight;
use crate::helix::text_annotations::TextAnnotations;
use crate::helix::{Position, RopeSlice};
#[derive(Debug, Clone, Copy)]
pub enum GraphemeSource {
Document {
codepoints: u32,
},
VirtualText {
highlight: Option<Highlight>,
},
}
impl GraphemeSource {
pub fn is_virtual(self) -> bool {
matches!(self, GraphemeSource::VirtualText { .. })
}
pub fn is_eof(self) -> bool {
matches!(self, GraphemeSource::Document { codepoints: 0 })
}
pub fn doc_chars(self) -> usize {
match self {
GraphemeSource::Document { codepoints } => codepoints as usize,
GraphemeSource::VirtualText { .. } => 0,
}
}
}
#[derive(Debug, Clone)]
pub struct FormattedGrapheme<'a> {
pub raw: Grapheme<'a>,
pub source: GraphemeSource,
pub visual_pos: Position,
pub line_idx: usize,
pub char_idx: usize,
}
impl FormattedGrapheme<'_> {
pub fn is_virtual(&self) -> bool {
self.source.is_virtual()
}
pub fn doc_chars(&self) -> usize {
self.source.doc_chars()
}
pub fn is_whitespace(&self) -> bool {
self.raw.is_whitespace()
}
pub fn width(&self) -> usize {
self.raw.width()
}
pub fn is_word_boundary(&self) -> bool {
self.raw.is_word_boundary()
}
}
#[derive(Debug, Clone)]
struct GraphemeWithSource<'a> {
grapheme: Grapheme<'a>,
source: GraphemeSource,
}
impl<'a> GraphemeWithSource<'a> {
fn new(
g: GraphemeStr<'a>,
visual_x: usize,
tab_width: u16,
source: GraphemeSource,
) -> GraphemeWithSource<'a> {
GraphemeWithSource {
grapheme: Grapheme::new(g, visual_x, tab_width),
source,
}
}
fn placeholder() -> Self {
GraphemeWithSource {
grapheme: Grapheme::Other { g: " ".into() },
source: GraphemeSource::Document { codepoints: 0 },
}
}
fn doc_chars(&self) -> usize {
self.source.doc_chars()
}
fn is_whitespace(&self) -> bool {
self.grapheme.is_whitespace()
}
fn is_newline(&self) -> bool {
matches!(self.grapheme, Grapheme::Newline)
}
fn is_eof(&self) -> bool {
self.source.is_eof()
}
fn width(&self) -> usize {
self.grapheme.width()
}
fn is_word_boundary(&self) -> bool {
self.grapheme.is_word_boundary()
}
}
#[derive(Debug, Clone)]
pub struct TextFormat {
pub soft_wrap: bool,
pub tab_width: u16,
pub max_wrap: u16,
pub max_indent_retain: u16,
pub wrap_indicator: Box<str>,
pub wrap_indicator_highlight: Option<Highlight>,
pub viewport_width: u16,
pub soft_wrap_at_text_width: bool,
}
impl Default for TextFormat {
fn default() -> Self {
TextFormat {
soft_wrap: false,
tab_width: 4,
max_wrap: 3,
max_indent_retain: 4,
wrap_indicator: Box::from(" "),
viewport_width: 17,
wrap_indicator_highlight: None,
soft_wrap_at_text_width: false,
}
}
}
#[derive(Debug)]
pub struct DocumentFormatter<'t> {
text_fmt: &'t TextFormat,
annotations: &'t TextAnnotations<'t>,
visual_pos: Position,
graphemes: RopeGraphemes<'t>,
char_pos: usize,
line_pos: usize,
exhausted: bool,
inline_annotation_graphemes: Option<(Graphemes<'t>, Option<Highlight>)>,
indent_level: Option<usize>,
peeked_grapheme: Option<GraphemeWithSource<'t>>,
word_buf: Vec<GraphemeWithSource<'t>>,
word_i: usize,
}
impl<'t> DocumentFormatter<'t> {
pub fn new_at_prev_checkpoint(
text: RopeSlice<'t>,
text_fmt: &'t TextFormat,
annotations: &'t TextAnnotations,
char_idx: usize,
) -> Self {
let block_line_idx = text.char_to_line(char_idx.min(text.len_chars()));
let block_char_idx = text.line_to_char(block_line_idx);
annotations.reset_pos(block_char_idx);
DocumentFormatter {
text_fmt,
annotations,
visual_pos: Position { row: 0, col: 0 },
graphemes: text.slice(block_char_idx..).graphemes(),
char_pos: block_char_idx,
exhausted: false,
indent_level: None,
peeked_grapheme: None,
word_buf: Vec::with_capacity(64),
word_i: 0,
line_pos: block_line_idx,
inline_annotation_graphemes: None,
}
}
pub fn resume_at_row(
text: RopeSlice<'t>,
text_fmt: &'t TextFormat,
annotations: &'t TextAnnotations,
char_idx: usize,
line_idx: usize,
row: usize,
col: usize,
indent: Option<usize>,
) -> Self {
annotations.reset_pos(char_idx);
DocumentFormatter {
text_fmt,
annotations,
visual_pos: Position { row, col },
graphemes: text.slice(char_idx..).graphemes(),
char_pos: char_idx,
exhausted: false,
indent_level: indent,
peeked_grapheme: None,
word_buf: Vec::with_capacity(64),
word_i: 0,
line_pos: line_idx,
inline_annotation_graphemes: None,
}
}
pub fn indent_level(&self) -> Option<usize> {
self.indent_level
}
fn next_inline_annotation_grapheme(
&mut self,
char_pos: usize,
) -> Option<(&'t str, Option<Highlight>)> {
loop {
if let Some(&mut (ref mut annotation, highlight)) =
self.inline_annotation_graphemes.as_mut()
{
if let Some(grapheme) = annotation.next() {
return Some((grapheme, highlight));
}
}
if let Some((annotation, highlight)) =
self.annotations.next_inline_annotation_at(char_pos)
{
self.inline_annotation_graphemes = Some((
UnicodeSegmentation::graphemes(&*annotation.text, true),
highlight,
))
} else {
return None;
}
}
}
fn advance_grapheme(&mut self, col: usize, char_pos: usize) -> Option<GraphemeWithSource<'t>> {
let (grapheme, source) =
if let Some((grapheme, highlight)) = self.next_inline_annotation_grapheme(char_pos) {
(grapheme.into(), GraphemeSource::VirtualText { highlight })
} else if let Some(grapheme) = self.graphemes.next() {
let codepoints = grapheme.len_chars() as u32;
let overlay = self.annotations.overlay_at(char_pos);
let grapheme = match overlay {
Some((overlay, _)) => overlay.grapheme.as_str().into(),
None => Cow::from(grapheme).into(),
};
(grapheme, GraphemeSource::Document { codepoints })
} else {
if self.exhausted {
return None;
}
self.exhausted = true;
return Some(GraphemeWithSource {
grapheme: Grapheme::Other { g: " ".into() },
source: GraphemeSource::Document { codepoints: 0 },
});
};
let grapheme = GraphemeWithSource::new(grapheme, col, self.text_fmt.tab_width, source);
Some(grapheme)
}
fn wrap_word(&mut self) -> usize {
let indent_carry_over = if let Some(indent) = self.indent_level {
if indent as u16 <= self.text_fmt.max_indent_retain {
indent as u16
} else {
0
}
} else {
self.indent_level = Some(0);
0
};
let virtual_lines =
self.annotations
.virtual_lines_at(self.char_pos, self.visual_pos, self.line_pos);
self.visual_pos.col = indent_carry_over as usize;
self.visual_pos.row += 1 + virtual_lines;
let mut i = 0;
let mut word_width = 0;
let wrap_indicator = UnicodeSegmentation::graphemes(&*self.text_fmt.wrap_indicator, true)
.map(|g| {
i += 1;
let grapheme = GraphemeWithSource::new(
g.into(),
self.visual_pos.col + word_width,
self.text_fmt.tab_width,
GraphemeSource::VirtualText {
highlight: self.text_fmt.wrap_indicator_highlight,
},
);
word_width += grapheme.width();
grapheme
});
self.word_buf.splice(0..0, wrap_indicator);
for grapheme in &mut self.word_buf[i..] {
let visual_x = self.visual_pos.col + word_width;
grapheme
.grapheme
.change_position(visual_x, self.text_fmt.tab_width);
word_width += grapheme.width();
}
if let Some(grapheme) = &mut self.peeked_grapheme {
let visual_x = self.visual_pos.col + word_width;
grapheme
.grapheme
.change_position(visual_x, self.text_fmt.tab_width);
}
word_width
}
fn peek_grapheme(&mut self, col: usize, char_pos: usize) -> Option<&GraphemeWithSource<'t>> {
if self.peeked_grapheme.is_none() {
self.peeked_grapheme = self.advance_grapheme(col, char_pos);
}
self.peeked_grapheme.as_ref()
}
fn next_grapheme(&mut self, col: usize, char_pos: usize) -> Option<GraphemeWithSource<'t>> {
self.peek_grapheme(col, char_pos);
self.peeked_grapheme.take()
}
fn advance_to_next_word(&mut self) {
self.word_buf.clear();
let mut word_width = 0;
let mut word_chars = 0;
if self.exhausted {
return;
}
loop {
let mut col = self.visual_pos.col + word_width;
let char_pos = self.char_pos + word_chars;
match col.cmp(&(self.text_fmt.viewport_width as usize)) {
Ordering::Equal
if self.text_fmt.soft_wrap_at_text_width
&& self
.peek_grapheme(col, char_pos)
.is_some_and(|grapheme| grapheme.is_newline() || grapheme.is_eof()) => {
}
Ordering::Equal if word_width > self.text_fmt.max_wrap as usize => return,
Ordering::Greater if word_width > self.text_fmt.max_wrap as usize => {
self.peeked_grapheme = self.word_buf.pop();
return;
}
Ordering::Equal | Ordering::Greater => {
word_width = self.wrap_word();
col = self.visual_pos.col + word_width;
}
Ordering::Less => (),
}
let Some(grapheme) = self.next_grapheme(col, char_pos) else {
return;
};
word_chars += grapheme.doc_chars();
if !grapheme.is_whitespace() && self.indent_level.is_none() {
self.indent_level = Some(self.visual_pos.col);
} else if grapheme.grapheme == Grapheme::Newline {
self.indent_level = None;
}
let is_word_boundary = grapheme.is_word_boundary();
word_width += grapheme.width();
self.word_buf.push(grapheme);
if is_word_boundary {
return;
}
}
}
pub fn next_char_pos(&self) -> usize {
self.char_pos
}
pub fn next_visual_pos(&self) -> Position {
self.visual_pos
}
}
impl<'t> Iterator for DocumentFormatter<'t> {
type Item = FormattedGrapheme<'t>;
fn next(&mut self) -> Option<Self::Item> {
let grapheme = if self.text_fmt.soft_wrap {
if self.word_i >= self.word_buf.len() {
self.advance_to_next_word();
self.word_i = 0;
}
let grapheme = replace(
self.word_buf.get_mut(self.word_i)?,
GraphemeWithSource::placeholder(),
);
self.word_i += 1;
grapheme
} else {
self.advance_grapheme(self.visual_pos.col, self.char_pos)?
};
let grapheme = FormattedGrapheme {
raw: grapheme.grapheme,
source: grapheme.source,
visual_pos: self.visual_pos,
line_idx: self.line_pos,
char_idx: self.char_pos,
};
self.char_pos += grapheme.doc_chars();
if !grapheme.is_virtual() {
self.annotations.process_virtual_text_anchors(&grapheme);
}
if grapheme.raw == Grapheme::Newline {
self.visual_pos.col += 1;
let virtual_lines =
self.annotations
.virtual_lines_at(self.char_pos, self.visual_pos, self.line_pos);
self.visual_pos.row += 1 + virtual_lines;
self.visual_pos.col = 0;
if !grapheme.is_virtual() {
self.line_pos += 1;
}
} else {
self.visual_pos.col += grapheme.width();
}
Some(grapheme)
}
}