use super::{ fold_map, tab_map::{self, Edit as TabEdit, Snapshot as TabSnapshot, TabPoint, TextSummary}, }; use crate::{editor::Point, settings::HighlightId, util::Bias}; use gpui::{ fonts::FontId, sum_tree::{self, Cursor, SumTree}, text_layout::LineWrapper, Entity, ModelContext, Task, }; use lazy_static::lazy_static; use smol::future::yield_now; use std::{collections::VecDeque, ops::Range, time::Duration}; pub struct WrapMap { snapshot: Snapshot, pending_edits: VecDeque<(TabSnapshot, Vec)>, wrap_width: Option, background_task: Option>, font: (FontId, f32), } impl Entity for WrapMap { type Event = (); } #[derive(Clone)] pub struct Snapshot { tab_snapshot: TabSnapshot, transforms: SumTree, interpolated: bool, } #[derive(Clone, Debug, Default, Eq, PartialEq)] struct Transform { summary: TransformSummary, display_text: Option<&'static str>, } #[derive(Clone, Debug, Default, Eq, PartialEq)] struct TransformSummary { input: TextSummary, output: TextSummary, } #[derive(Copy, Clone, Debug, Default, Eq, Ord, PartialOrd, PartialEq)] pub struct WrapPoint(super::Point); pub struct Chunks<'a> { input_chunks: tab_map::Chunks<'a>, input_chunk: &'a str, output_position: WrapPoint, transforms: Cursor<'a, Transform, WrapPoint, TabPoint>, } pub struct HighlightedChunks<'a> { input_chunks: tab_map::HighlightedChunks<'a>, input_chunk: &'a str, style_id: HighlightId, output_position: WrapPoint, max_output_row: u32, transforms: Cursor<'a, Transform, WrapPoint, TabPoint>, } pub struct BufferRows<'a> { input_buffer_rows: fold_map::BufferRows<'a>, input_buffer_row: u32, output_row: u32, soft_wrapped: bool, max_output_row: u32, transforms: Cursor<'a, Transform, WrapPoint, TabPoint>, } impl WrapMap { pub fn new( tab_snapshot: TabSnapshot, font_id: FontId, font_size: f32, wrap_width: Option, cx: &mut ModelContext, ) -> Self { let mut this = Self { font: (font_id, font_size), wrap_width: None, pending_edits: Default::default(), snapshot: Snapshot::new(tab_snapshot), background_task: None, }; this.set_wrap_width(wrap_width, cx); this } #[cfg(test)] pub fn is_rewrapping(&self) -> bool { self.background_task.is_some() } pub fn sync( &mut self, tab_snapshot: TabSnapshot, edits: Vec, cx: &mut ModelContext, ) -> Snapshot { self.pending_edits.push_back((tab_snapshot, edits)); self.flush_edits(cx); self.snapshot.clone() } pub fn set_font(&mut self, font_id: FontId, font_size: f32, cx: &mut ModelContext) { if (font_id, font_size) != self.font { self.font = (font_id, font_size); self.rewrap(cx) } } pub fn set_wrap_width(&mut self, wrap_width: Option, cx: &mut ModelContext) -> bool { if wrap_width == self.wrap_width { return false; } self.wrap_width = wrap_width; self.rewrap(cx); true } fn rewrap(&mut self, cx: &mut ModelContext) { self.background_task.take(); if let Some(wrap_width) = self.wrap_width { let mut new_snapshot = self.snapshot.clone(); let font_cache = cx.font_cache().clone(); let (font_id, font_size) = self.font; let task = cx.background().spawn(async move { let mut line_wrapper = font_cache.line_wrapper(font_id, font_size); let tab_snapshot = new_snapshot.tab_snapshot.clone(); let range = TabPoint::zero()..tab_snapshot.max_point(); new_snapshot .update( tab_snapshot, &[TabEdit { old_lines: range.clone(), new_lines: range.clone(), }], wrap_width, &mut line_wrapper, ) .await; new_snapshot }); match cx .background() .block_with_timeout(Duration::from_millis(5), task) { Ok(snapshot) => { self.snapshot = snapshot; cx.notify(); } Err(wrap_task) => { self.background_task = Some(cx.spawn(|this, mut cx| async move { let snapshot = wrap_task.await; this.update(&mut cx, |this, cx| { this.snapshot = snapshot; this.background_task = None; this.flush_edits(cx); cx.notify(); }); })); } } } else { self.snapshot.transforms = SumTree::new(); let summary = self.snapshot.tab_snapshot.text_summary(); if !summary.lines.is_zero() { self.snapshot .transforms .push(Transform::isomorphic(summary), &()); } } } fn flush_edits(&mut self, cx: &mut ModelContext) { if !self.snapshot.interpolated { let mut to_remove_len = 0; for (tab_snapshot, _) in &self.pending_edits { if tab_snapshot.version() <= self.snapshot.tab_snapshot.version() { to_remove_len += 1; } else { break; } } self.pending_edits.drain(..to_remove_len); } if self.pending_edits.is_empty() { return; } if let Some(wrap_width) = self.wrap_width { if self.background_task.is_none() { let pending_edits = self.pending_edits.clone(); let mut snapshot = self.snapshot.clone(); let font_cache = cx.font_cache().clone(); let (font_id, font_size) = self.font; let update_task = cx.background().spawn(async move { let mut line_wrapper = font_cache.line_wrapper(font_id, font_size); for (tab_snapshot, edits) in pending_edits { snapshot .update(tab_snapshot, &edits, wrap_width, &mut line_wrapper) .await; } snapshot }); match cx .background() .block_with_timeout(Duration::from_millis(1), update_task) { Ok(snapshot) => { self.snapshot = snapshot; } Err(update_task) => { self.background_task = Some(cx.spawn(|this, mut cx| async move { let snapshot = update_task.await; this.update(&mut cx, |this, cx| { this.snapshot = snapshot; this.background_task = None; this.flush_edits(cx); cx.notify(); }); })); } } } } let was_interpolated = self.snapshot.interpolated; let mut to_remove_len = 0; for (tab_snapshot, edits) in &self.pending_edits { if tab_snapshot.version() <= self.snapshot.tab_snapshot.version() { to_remove_len += 1; } else { self.snapshot.interpolate(tab_snapshot.clone(), &edits); } } if !was_interpolated { self.pending_edits.drain(..to_remove_len); } } } impl Snapshot { fn new(tab_snapshot: TabSnapshot) -> Self { let mut transforms = SumTree::new(); let extent = tab_snapshot.text_summary(); if !extent.lines.is_zero() { transforms.push(Transform::isomorphic(extent), &()); } Self { transforms, tab_snapshot, interpolated: true, } } fn interpolate(&mut self, new_tab_snapshot: TabSnapshot, edits: &[TabEdit]) { let mut new_transforms; if edits.is_empty() { new_transforms = self.transforms.clone(); } else { let mut old_cursor = self.transforms.cursor::(); let mut edits = edits.into_iter().peekable(); new_transforms = old_cursor.slice(&edits.peek().unwrap().old_lines.start, Bias::Right, &()); while let Some(edit) = edits.next() { if edit.new_lines.start > TabPoint::from(new_transforms.summary().input.lines) { let summary = new_tab_snapshot.text_summary_for_range( TabPoint::from(new_transforms.summary().input.lines)..edit.new_lines.start, ); new_transforms.push_or_extend(Transform::isomorphic(summary)); } if !edit.new_lines.is_empty() { new_transforms.push_or_extend(Transform::isomorphic( new_tab_snapshot.text_summary_for_range(edit.new_lines.clone()), )); } old_cursor.seek_forward(&edit.old_lines.end, Bias::Right, &()); if let Some(next_edit) = edits.peek() { if next_edit.old_lines.start > old_cursor.seek_end(&()) { if old_cursor.seek_end(&()) > edit.old_lines.end { let summary = self.tab_snapshot.text_summary_for_range( edit.old_lines.end..old_cursor.seek_end(&()), ); new_transforms.push_or_extend(Transform::isomorphic(summary)); } old_cursor.next(&()); new_transforms.push_tree( old_cursor.slice(&next_edit.old_lines.start, Bias::Right, &()), &(), ); } } else { if old_cursor.seek_end(&()) > edit.old_lines.end { let summary = self .tab_snapshot .text_summary_for_range(edit.old_lines.end..old_cursor.seek_end(&())); new_transforms.push_or_extend(Transform::isomorphic(summary)); } old_cursor.next(&()); new_transforms.push_tree(old_cursor.suffix(&()), &()); } } } self.transforms = new_transforms; self.tab_snapshot = new_tab_snapshot; self.interpolated = true; self.check_invariants(); } async fn update( &mut self, new_tab_snapshot: TabSnapshot, edits: &[TabEdit], wrap_width: f32, line_wrapper: &mut LineWrapper, ) { #[derive(Debug)] struct RowEdit { old_rows: Range, new_rows: Range, } let mut edits = edits.into_iter().peekable(); let mut row_edits = Vec::new(); while let Some(edit) = edits.next() { let mut row_edit = RowEdit { old_rows: edit.old_lines.start.row()..edit.old_lines.end.row() + 1, new_rows: edit.new_lines.start.row()..edit.new_lines.end.row() + 1, }; while let Some(next_edit) = edits.peek() { if next_edit.old_lines.start.row() <= row_edit.old_rows.end { row_edit.old_rows.end = next_edit.old_lines.end.row() + 1; row_edit.new_rows.end = next_edit.new_lines.end.row() + 1; edits.next(); } else { break; } } row_edits.push(row_edit); } let mut new_transforms; if row_edits.is_empty() { new_transforms = self.transforms.clone(); } else { let mut row_edits = row_edits.into_iter().peekable(); let mut old_cursor = self.transforms.cursor::(); new_transforms = old_cursor.slice( &TabPoint::new(row_edits.peek().unwrap().old_rows.start, 0), Bias::Right, &(), ); while let Some(edit) = row_edits.next() { if edit.new_rows.start > new_transforms.summary().input.lines.row { let summary = new_tab_snapshot.text_summary_for_range( TabPoint::new(new_transforms.summary().input.lines.row, 0) ..TabPoint::new(edit.new_rows.start, 0), ); new_transforms.push_or_extend(Transform::isomorphic(summary)); } let mut line = String::new(); let mut remaining = None; let mut chunks = new_tab_snapshot.chunks_at(TabPoint::new(edit.new_rows.start, 0)); let mut edit_transforms = Vec::::new(); for _ in edit.new_rows.start..edit.new_rows.end { while let Some(chunk) = remaining.take().or_else(|| chunks.next()) { if let Some(ix) = chunk.find('\n') { line.push_str(&chunk[..ix + 1]); remaining = Some(&chunk[ix + 1..]); break; } else { line.push_str(chunk) } } if line.is_empty() { break; } let mut prev_boundary_ix = 0; for boundary in line_wrapper.wrap_line(&line, wrap_width) { let wrapped = &line[prev_boundary_ix..boundary.ix]; push_isomorphic(&mut edit_transforms, TextSummary::from(wrapped)); edit_transforms.push(Transform::wrap(boundary.next_indent)); prev_boundary_ix = boundary.ix; } if prev_boundary_ix < line.len() { push_isomorphic( &mut edit_transforms, TextSummary::from(&line[prev_boundary_ix..]), ); } line.clear(); yield_now().await; } let mut edit_transforms = edit_transforms.into_iter(); if let Some(transform) = edit_transforms.next() { new_transforms.push_or_extend(transform); } new_transforms.extend(edit_transforms, &()); old_cursor.seek_forward(&TabPoint::new(edit.old_rows.end, 0), Bias::Right, &()); if let Some(next_edit) = row_edits.peek() { if next_edit.old_rows.start > old_cursor.seek_end(&()).row() { if old_cursor.seek_end(&()) > TabPoint::new(edit.old_rows.end, 0) { let summary = self.tab_snapshot.text_summary_for_range( TabPoint::new(edit.old_rows.end, 0)..old_cursor.seek_end(&()), ); new_transforms.push_or_extend(Transform::isomorphic(summary)); } old_cursor.next(&()); new_transforms.push_tree( old_cursor.slice( &TabPoint::new(next_edit.old_rows.start, 0), Bias::Right, &(), ), &(), ); } } else { if old_cursor.seek_end(&()) > TabPoint::new(edit.old_rows.end, 0) { let summary = self.tab_snapshot.text_summary_for_range( TabPoint::new(edit.old_rows.end, 0)..old_cursor.seek_end(&()), ); new_transforms.push_or_extend(Transform::isomorphic(summary)); } old_cursor.next(&()); new_transforms.push_tree(old_cursor.suffix(&()), &()); } } } self.transforms = new_transforms; self.tab_snapshot = new_tab_snapshot; self.interpolated = false; self.check_invariants(); } pub fn chunks_at(&self, wrap_row: u32) -> Chunks { let point = WrapPoint::new(wrap_row, 0); let mut transforms = self.transforms.cursor::(); transforms.seek(&point, Bias::Right, &()); let mut input_position = TabPoint(transforms.sum_start().0); if transforms.item().map_or(false, |t| t.is_isomorphic()) { input_position.0 += point.0 - transforms.seek_start().0; } let input_chunks = self.tab_snapshot.chunks_at(input_position); Chunks { input_chunks, transforms, output_position: point, input_chunk: "", } } pub fn highlighted_chunks_for_rows(&mut self, rows: Range) -> HighlightedChunks { let output_start = WrapPoint::new(rows.start, 0); let output_end = WrapPoint::new(rows.end, 0); let mut transforms = self.transforms.cursor::(); transforms.seek(&output_start, Bias::Right, &()); let mut input_start = TabPoint(transforms.sum_start().0); if transforms.item().map_or(false, |t| t.is_isomorphic()) { input_start.0 += output_start.0 - transforms.seek_start().0; } let input_end = self .to_tab_point(output_end) .min(self.tab_snapshot.max_point()); HighlightedChunks { input_chunks: self.tab_snapshot.highlighted_chunks(input_start..input_end), input_chunk: "", style_id: HighlightId::default(), output_position: output_start, max_output_row: rows.end, transforms, } } pub fn max_point(&self) -> WrapPoint { self.to_wrap_point(self.tab_snapshot.max_point()) } pub fn line_len(&self, row: u32) -> u32 { let mut len = 0; for chunk in self.chunks_at(row) { if let Some(newline_ix) = chunk.find('\n') { len += newline_ix; break; } else { len += chunk.len(); } } len as u32 } pub fn soft_wrap_indent(&self, row: u32) -> Option { let mut cursor = self.transforms.cursor::<_, ()>(); cursor.seek(&WrapPoint::new(row + 1, 0), Bias::Right, &()); cursor.item().and_then(|transform| { if transform.is_isomorphic() { None } else { Some(transform.summary.output.lines.column) } }) } pub fn longest_row(&self) -> u32 { self.transforms.summary().output.longest_row } pub fn buffer_rows(&self, start_row: u32) -> BufferRows { let mut transforms = self.transforms.cursor::(); transforms.seek(&WrapPoint::new(start_row, 0), Bias::Left, &()); let mut input_row = transforms.sum_start().row(); if transforms.item().map_or(false, |t| t.is_isomorphic()) { input_row += start_row - transforms.seek_start().row(); } let soft_wrapped = transforms.item().map_or(false, |t| !t.is_isomorphic()); let mut input_buffer_rows = self.tab_snapshot.buffer_rows(input_row); let input_buffer_row = input_buffer_rows.next().unwrap(); BufferRows { transforms, input_buffer_row, input_buffer_rows, output_row: start_row, soft_wrapped, max_output_row: self.max_point().row(), } } pub fn to_tab_point(&self, point: WrapPoint) -> TabPoint { let mut cursor = self.transforms.cursor::(); cursor.seek(&point, Bias::Right, &()); let mut tab_point = cursor.sum_start().0; if cursor.item().map_or(false, |t| t.is_isomorphic()) { tab_point += point.0 - cursor.seek_start().0; } TabPoint(tab_point) } pub fn to_wrap_point(&self, point: TabPoint) -> WrapPoint { let mut cursor = self.transforms.cursor::(); cursor.seek(&point, Bias::Right, &()); WrapPoint(cursor.sum_start().0 + (point.0 - cursor.seek_start().0)) } pub fn clip_point(&self, mut point: WrapPoint, bias: Bias) -> WrapPoint { if bias == Bias::Left { let mut cursor = self.transforms.cursor::(); cursor.seek(&point, Bias::Right, &()); if cursor.item().map_or(false, |t| !t.is_isomorphic()) { point = *cursor.seek_start(); *point.column_mut() -= 1; } } self.to_wrap_point(self.tab_snapshot.clip_point(self.to_tab_point(point), bias)) } fn check_invariants(&self) { #[cfg(test)] { assert_eq!( TabPoint::from(self.transforms.summary().input.lines), self.tab_snapshot.max_point() ); { let mut transforms = self.transforms.cursor::<(), ()>().peekable(); while let Some(transform) = transforms.next() { if let Some(next_transform) = transforms.peek() { assert!(transform.is_isomorphic() != next_transform.is_isomorphic()); } } } let mut expected_buffer_rows = Vec::new(); let mut buffer_row = 0; let mut prev_tab_row = 0; for display_row in 0..=self.max_point().row() { let tab_point = self.to_tab_point(WrapPoint::new(display_row, 0)); let soft_wrapped; if tab_point.row() == prev_tab_row { soft_wrapped = display_row != 0; } else { let fold_point = self.tab_snapshot.to_fold_point(tab_point, Bias::Left).0; let buffer_point = fold_point.to_buffer_point(&self.tab_snapshot.fold_snapshot); buffer_row = buffer_point.row; prev_tab_row = tab_point.row(); soft_wrapped = false; } expected_buffer_rows.push((buffer_row, soft_wrapped)); } for start_display_row in 0..expected_buffer_rows.len() { assert_eq!( self.buffer_rows(start_display_row as u32) .collect::>(), &expected_buffer_rows[start_display_row..], "invalid buffer_rows({}..)", start_display_row ); } } } } impl<'a> Iterator for Chunks<'a> { type Item = &'a str; fn next(&mut self) -> Option { let transform = self.transforms.item()?; if let Some(display_text) = transform.display_text { if self.output_position > *self.transforms.seek_start() { self.output_position.0.column += transform.summary.output.lines.column; self.transforms.next(&()); return Some(&display_text[1..]); } else { self.output_position.0 += transform.summary.output.lines; self.transforms.next(&()); return Some(display_text); } } if self.input_chunk.is_empty() { self.input_chunk = self.input_chunks.next().unwrap(); } let mut input_len = 0; let transform_end = self.transforms.seek_end(&()); for c in self.input_chunk.chars() { let char_len = c.len_utf8(); input_len += char_len; if c == '\n' { *self.output_position.row_mut() += 1; *self.output_position.column_mut() = 0; } else { *self.output_position.column_mut() += char_len as u32; } if self.output_position >= transform_end { self.transforms.next(&()); break; } } let (prefix, suffix) = self.input_chunk.split_at(input_len); self.input_chunk = suffix; Some(prefix) } } impl<'a> Iterator for HighlightedChunks<'a> { type Item = (&'a str, HighlightId); fn next(&mut self) -> Option { if self.output_position.row() >= self.max_output_row { return None; } let transform = self.transforms.item()?; if let Some(display_text) = transform.display_text { let mut start_ix = 0; let mut end_ix = display_text.len(); let mut summary = transform.summary.output.lines; if self.output_position > *self.transforms.seek_start() { // Exclude newline starting prior to the desired row. start_ix = 1; summary.row = 0; } else if self.output_position.row() + 1 >= self.max_output_row { // Exclude soft indentation ending after the desired row. end_ix = 1; summary.column = 0; } self.output_position.0 += summary; self.transforms.next(&()); return Some((&display_text[start_ix..end_ix], self.style_id)); } if self.input_chunk.is_empty() { let (chunk, style_id) = self.input_chunks.next().unwrap(); self.input_chunk = chunk; self.style_id = style_id; } let mut input_len = 0; let transform_end = self.transforms.seek_end(&()); for c in self.input_chunk.chars() { let char_len = c.len_utf8(); input_len += char_len; if c == '\n' { *self.output_position.row_mut() += 1; *self.output_position.column_mut() = 0; } else { *self.output_position.column_mut() += char_len as u32; } if self.output_position >= transform_end { self.transforms.next(&()); break; } } let (prefix, suffix) = self.input_chunk.split_at(input_len); self.input_chunk = suffix; Some((prefix, self.style_id)) } } impl<'a> Iterator for BufferRows<'a> { type Item = (u32, bool); fn next(&mut self) -> Option { if self.output_row > self.max_output_row { return None; } let buffer_row = self.input_buffer_row; let soft_wrapped = self.soft_wrapped; self.output_row += 1; self.transforms .seek_forward(&WrapPoint::new(self.output_row, 0), Bias::Left, &()); if self.transforms.item().map_or(false, |t| t.is_isomorphic()) { self.input_buffer_row = self.input_buffer_rows.next().unwrap(); self.soft_wrapped = false; } else { self.soft_wrapped = true; } Some((buffer_row, soft_wrapped)) } } impl Transform { fn isomorphic(summary: TextSummary) -> Self { #[cfg(test)] assert!(!summary.lines.is_zero()); Self { summary: TransformSummary { input: summary.clone(), output: summary, }, display_text: None, } } fn wrap(indent: u32) -> Self { lazy_static! { static ref WRAP_TEXT: String = { let mut wrap_text = String::new(); wrap_text.push('\n'); wrap_text.extend((0..LineWrapper::MAX_INDENT as usize).map(|_| ' ')); wrap_text }; } Self { summary: TransformSummary { input: TextSummary::default(), output: TextSummary { lines: Point::new(1, indent), first_line_chars: 0, last_line_chars: indent, longest_row: 1, longest_row_chars: indent, }, }, display_text: Some(&WRAP_TEXT[..1 + indent as usize]), } } fn is_isomorphic(&self) -> bool { self.display_text.is_none() } } impl sum_tree::Item for Transform { type Summary = TransformSummary; fn summary(&self) -> Self::Summary { self.summary.clone() } } fn push_isomorphic(transforms: &mut Vec, summary: TextSummary) { if let Some(last_transform) = transforms.last_mut() { if last_transform.is_isomorphic() { last_transform.summary.input += &summary; last_transform.summary.output += &summary; return; } } transforms.push(Transform::isomorphic(summary)); } trait SumTreeExt { fn push_or_extend(&mut self, transform: Transform); } impl SumTreeExt for SumTree { fn push_or_extend(&mut self, transform: Transform) { let mut transform = Some(transform); self.update_last( |last_transform| { if last_transform.is_isomorphic() && transform.as_ref().unwrap().is_isomorphic() { let transform = transform.take().unwrap(); last_transform.summary.input += &transform.summary.input; last_transform.summary.output += &transform.summary.output; } }, &(), ); if let Some(transform) = transform { self.push(transform, &()); } } } impl WrapPoint { pub fn new(row: u32, column: u32) -> Self { Self(super::Point::new(row, column)) } #[cfg(test)] pub fn is_zero(&self) -> bool { self.0.is_zero() } pub fn row(self) -> u32 { self.0.row } pub fn column(self) -> u32 { self.0.column } pub fn row_mut(&mut self) -> &mut u32 { &mut self.0.row } pub fn column_mut(&mut self) -> &mut u32 { &mut self.0.column } } impl sum_tree::Summary for TransformSummary { type Context = (); fn add_summary(&mut self, other: &Self, _: &()) { self.input += &other.input; self.output += &other.output; } } impl<'a> sum_tree::Dimension<'a, TransformSummary> for TabPoint { fn add_summary(&mut self, summary: &'a TransformSummary, _: &()) { self.0 += summary.input.lines; } } impl<'a> sum_tree::Dimension<'a, TransformSummary> for WrapPoint { fn add_summary(&mut self, summary: &'a TransformSummary, _: &()) { self.0 += summary.output.lines; } } #[cfg(test)] mod tests { use super::*; use crate::{ editor::{ display_map::{fold_map::FoldMap, tab_map::TabMap}, Buffer, }, test::Observer, util::RandomCharIter, }; use rand::prelude::*; use std::env; #[gpui::test(iterations = 100)] async fn test_random_wraps(mut cx: gpui::TestAppContext, mut rng: StdRng) { cx.foreground().set_block_on_ticks(0..=50); cx.foreground().forbid_parking(); let operations = env::var("OPERATIONS") .map(|i| i.parse().expect("invalid `OPERATIONS` variable")) .unwrap_or(10); let font_cache = cx.font_cache().clone(); let font_system = cx.platform().fonts(); let mut wrap_width = if rng.gen_bool(0.1) { None } else { Some(rng.gen_range(0.0..=1000.0)) }; let tab_size = rng.gen_range(1..=4); let family_id = font_cache.load_family(&["Helvetica"]).unwrap(); let font_id = font_cache .select_font(family_id, &Default::default()) .unwrap(); let font_size = 14.0; log::info!("Tab size: {}", tab_size); log::info!("Wrap width: {:?}", wrap_width); let buffer = cx.add_model(|cx| { let len = rng.gen_range(0..10); let text = RandomCharIter::new(&mut rng).take(len).collect::(); Buffer::new(0, text, cx) }); let (mut fold_map, folds_snapshot) = cx.read(|cx| FoldMap::new(buffer.clone(), cx)); let (tab_map, tabs_snapshot) = TabMap::new(folds_snapshot.clone(), tab_size); log::info!( "Unwrapped text (no folds): {:?}", buffer.read_with(&cx, |buf, _| buf.text()) ); log::info!( "Unwrapped text (unexpanded tabs): {:?}", folds_snapshot.text() ); log::info!("Unwrapped text (expanded tabs): {:?}", tabs_snapshot.text()); let mut line_wrapper = LineWrapper::new(font_id, font_size, font_system); let unwrapped_text = tabs_snapshot.text(); let expected_text = wrap_text(&unwrapped_text, wrap_width, &mut line_wrapper); let wrap_map = cx.add_model(|cx| { WrapMap::new(tabs_snapshot.clone(), font_id, font_size, wrap_width, cx) }); let (_observer, notifications) = Observer::new(&wrap_map, &mut cx); if wrap_map.read_with(&cx, |map, _| map.is_rewrapping()) { notifications.recv().await.unwrap(); } let snapshot = wrap_map.update(&mut cx, |map, cx| map.sync(tabs_snapshot, Vec::new(), cx)); let actual_text = snapshot.text(); assert_eq!( actual_text, expected_text, "unwrapped text is: {:?}", unwrapped_text ); log::info!("Wrapped text: {:?}", actual_text); for _i in 0..operations { match rng.gen_range(0..=100) { 0..=19 => { wrap_width = if rng.gen_bool(0.2) { None } else { Some(rng.gen_range(0.0..=1000.0)) }; log::info!("Setting wrap width to {:?}", wrap_width); wrap_map.update(&mut cx, |map, cx| map.set_wrap_width(wrap_width, cx)); } 20..=39 => { for (folds_snapshot, edits) in cx.read(|cx| fold_map.randomly_mutate(&mut rng, cx)) { let (tabs_snapshot, edits) = tab_map.sync(folds_snapshot, edits); let mut snapshot = wrap_map.update(&mut cx, |map, cx| map.sync(tabs_snapshot, edits, cx)); snapshot.check_invariants(); snapshot.verify_chunks(&mut rng); } } _ => { buffer.update(&mut cx, |buffer, cx| buffer.randomly_mutate(&mut rng, cx)); } } log::info!( "Unwrapped text (no folds): {:?}", buffer.read_with(&cx, |buf, _| buf.text()) ); let (folds_snapshot, edits) = cx.read(|cx| fold_map.read(cx)); log::info!( "Unwrapped text (unexpanded tabs): {:?}", folds_snapshot.text() ); let (tabs_snapshot, edits) = tab_map.sync(folds_snapshot, edits); log::info!("Unwrapped text (expanded tabs): {:?}", tabs_snapshot.text()); let unwrapped_text = tabs_snapshot.text(); let expected_text = wrap_text(&unwrapped_text, wrap_width, &mut line_wrapper); let mut snapshot = wrap_map.update(&mut cx, |map, cx| { map.sync(tabs_snapshot.clone(), edits, cx) }); snapshot.check_invariants(); snapshot.verify_chunks(&mut rng); if wrap_map.read_with(&cx, |map, _| map.is_rewrapping()) && rng.gen_bool(0.4) { log::info!("Waiting for wrapping to finish"); while wrap_map.read_with(&cx, |map, _| map.is_rewrapping()) { notifications.recv().await.unwrap(); } } if !wrap_map.read_with(&cx, |map, _| map.is_rewrapping()) { let mut wrapped_snapshot = wrap_map.update(&mut cx, |map, cx| map.sync(tabs_snapshot, Vec::new(), cx)); let actual_text = wrapped_snapshot.text(); log::info!("Wrapping finished: {:?}", actual_text); wrapped_snapshot.check_invariants(); wrapped_snapshot.verify_chunks(&mut rng); assert_eq!( actual_text, expected_text, "unwrapped text is: {:?}", unwrapped_text ); } } } fn wrap_text( unwrapped_text: &str, wrap_width: Option, line_wrapper: &mut LineWrapper, ) -> String { if let Some(wrap_width) = wrap_width { let mut wrapped_text = String::new(); for (row, line) in unwrapped_text.split('\n').enumerate() { if row > 0 { wrapped_text.push('\n') } let mut prev_ix = 0; for boundary in line_wrapper.wrap_line(line, wrap_width) { wrapped_text.push_str(&line[prev_ix..boundary.ix]); wrapped_text.push('\n'); wrapped_text.push_str(&" ".repeat(boundary.next_indent as usize)); prev_ix = boundary.ix; } wrapped_text.push_str(&line[prev_ix..]); } wrapped_text } else { unwrapped_text.to_string() } } impl Snapshot { fn text(&self) -> String { self.chunks_at(0).collect() } fn verify_chunks(&mut self, rng: &mut impl Rng) { for _ in 0..5 { let mut end_row = rng.gen_range(0..=self.max_point().row()); let start_row = rng.gen_range(0..=end_row); end_row += 1; let mut expected_text = self.chunks_at(start_row).collect::(); if expected_text.ends_with("\n") { expected_text.push('\n'); } let mut expected_text = expected_text .lines() .take((end_row - start_row) as usize) .collect::>() .join("\n"); if end_row <= self.max_point().row() { expected_text.push('\n'); } let actual_text = self .highlighted_chunks_for_rows(start_row..end_row) .map(|c| c.0) .collect::(); assert_eq!( expected_text, actual_text, "chunks != highlighted_chunks for rows {:?}", start_row..end_row ); } } } }