display_map.rs

   1//! This module defines where the text should be displayed in an [`Editor`][Editor].
   2//!
   3//! Not literally though - rendering, layout and all that jazz is a responsibility of [`EditorElement`][EditorElement].
   4//! Instead, [`DisplayMap`] decides where Inlays/Inlay hints are displayed, when
   5//! to apply a soft wrap, where to add fold indicators, whether there are any tabs in the buffer that
   6//! we display as spaces and where to display custom blocks (like diagnostics).
   7//! Seems like a lot? That's because it is. [`DisplayMap`] is conceptually made up
   8//! of several smaller structures that form a hierarchy (starting at the bottom):
   9//! - [`InlayMap`] that decides where the [`Inlay`]s should be displayed.
  10//! - [`FoldMap`] that decides where the fold indicators should be; it also tracks parts of a source file that are currently folded.
  11//! - [`TabMap`] that keeps track of hard tabs in a buffer.
  12//! - [`WrapMap`] that handles soft wrapping.
  13//! - [`BlockMap`] that tracks custom blocks such as diagnostics that should be displayed within buffer.
  14//! - [`DisplayMap`] that adds background highlights to the regions of text.
  15//!   Each one of those builds on top of preceding map.
  16//!
  17//! [Editor]: crate::Editor
  18//! [EditorElement]: crate::element::EditorElement
  19
  20mod block_map;
  21mod crease_map;
  22mod custom_highlights;
  23mod fold_map;
  24mod inlay_map;
  25pub(crate) mod invisibles;
  26mod tab_map;
  27mod wrap_map;
  28
  29use crate::{
  30    EditorStyle, RowExt, hover_links::InlayHighlight, inlays::Inlay, movement::TextLayoutDetails,
  31};
  32pub use block_map::{
  33    Block, BlockChunks as DisplayChunks, BlockContext, BlockId, BlockMap, BlockPlacement,
  34    BlockPoint, BlockProperties, BlockRows, BlockStyle, CustomBlockId, EditorMargins, RenderBlock,
  35    StickyHeaderExcerpt,
  36};
  37use block_map::{BlockRow, BlockSnapshot};
  38use collections::{HashMap, HashSet};
  39pub use crease_map::*;
  40use fold_map::FoldSnapshot;
  41pub use fold_map::{
  42    ChunkRenderer, ChunkRendererContext, ChunkRendererId, Fold, FoldId, FoldPlaceholder, FoldPoint,
  43};
  44use gpui::{App, Context, Entity, Font, HighlightStyle, LineLayout, Pixels, UnderlineStyle};
  45use inlay_map::InlaySnapshot;
  46pub use inlay_map::{InlayOffset, InlayPoint};
  47pub use invisibles::{is_invisible, replacement};
  48use language::{
  49    OffsetUtf16, Point, Subscription as BufferSubscription, language_settings::language_settings,
  50};
  51use multi_buffer::{
  52    Anchor, AnchorRangeExt, MultiBuffer, MultiBufferPoint, MultiBufferRow, MultiBufferSnapshot,
  53    RowInfo, ToOffset, ToPoint,
  54};
  55use project::InlayId;
  56use project::project_settings::DiagnosticSeverity;
  57use serde::Deserialize;
  58
  59use std::{
  60    any::TypeId,
  61    borrow::Cow,
  62    fmt::Debug,
  63    iter,
  64    num::NonZeroU32,
  65    ops::{Add, Range, Sub},
  66    sync::Arc,
  67};
  68use sum_tree::{Bias, TreeMap};
  69use tab_map::TabSnapshot;
  70use text::{BufferId, LineIndent};
  71use ui::{SharedString, px};
  72use unicode_segmentation::UnicodeSegmentation;
  73use wrap_map::{WrapMap, WrapSnapshot};
  74
  75pub use crate::display_map::{fold_map::FoldMap, inlay_map::InlayMap, tab_map::TabMap};
  76
  77#[derive(Copy, Clone, Debug, PartialEq, Eq)]
  78pub enum FoldStatus {
  79    Folded,
  80    Foldable,
  81}
  82
  83#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash, PartialOrd, Ord)]
  84pub enum HighlightKey {
  85    Type(TypeId),
  86    TypePlus(TypeId, usize),
  87}
  88
  89pub trait ToDisplayPoint {
  90    fn to_display_point(&self, map: &DisplaySnapshot) -> DisplayPoint;
  91}
  92
  93type TextHighlights = TreeMap<HighlightKey, Arc<(HighlightStyle, Vec<Range<Anchor>>)>>;
  94type InlayHighlights = TreeMap<TypeId, TreeMap<InlayId, (HighlightStyle, InlayHighlight)>>;
  95
  96/// Decides how text in a [`MultiBuffer`] should be displayed in a buffer, handling inlay hints,
  97/// folding, hard tabs, soft wrapping, custom blocks (like diagnostics), and highlighting.
  98///
  99/// See the [module level documentation](self) for more information.
 100pub struct DisplayMap {
 101    /// The buffer that we are displaying.
 102    buffer: Entity<MultiBuffer>,
 103    buffer_subscription: BufferSubscription,
 104    /// Decides where the [`Inlay`]s should be displayed.
 105    inlay_map: InlayMap,
 106    /// Decides where the fold indicators should be and tracks parts of a source file that are currently folded.
 107    fold_map: FoldMap,
 108    /// Keeps track of hard tabs in a buffer.
 109    tab_map: TabMap,
 110    /// Handles soft wrapping.
 111    wrap_map: Entity<WrapMap>,
 112    /// Tracks custom blocks such as diagnostics that should be displayed within buffer.
 113    block_map: BlockMap,
 114    /// Regions of text that should be highlighted.
 115    text_highlights: TextHighlights,
 116    /// Regions of inlays that should be highlighted.
 117    inlay_highlights: InlayHighlights,
 118    /// A container for explicitly foldable ranges, which supersede indentation based fold range suggestions.
 119    crease_map: CreaseMap,
 120    pub(crate) fold_placeholder: FoldPlaceholder,
 121    pub clip_at_line_ends: bool,
 122    pub(crate) masked: bool,
 123    pub(crate) diagnostics_max_severity: DiagnosticSeverity,
 124}
 125
 126impl DisplayMap {
 127    pub fn new(
 128        buffer: Entity<MultiBuffer>,
 129        font: Font,
 130        font_size: Pixels,
 131        wrap_width: Option<Pixels>,
 132        buffer_header_height: u32,
 133        excerpt_header_height: u32,
 134        fold_placeholder: FoldPlaceholder,
 135        diagnostics_max_severity: DiagnosticSeverity,
 136        cx: &mut Context<Self>,
 137    ) -> Self {
 138        let buffer_subscription = buffer.update(cx, |buffer, _| buffer.subscribe());
 139
 140        let tab_size = Self::tab_size(&buffer, cx);
 141        let buffer_snapshot = buffer.read(cx).snapshot(cx);
 142        let crease_map = CreaseMap::new(&buffer_snapshot);
 143        let (inlay_map, snapshot) = InlayMap::new(buffer_snapshot);
 144        let (fold_map, snapshot) = FoldMap::new(snapshot);
 145        let (tab_map, snapshot) = TabMap::new(snapshot, tab_size);
 146        let (wrap_map, snapshot) = WrapMap::new(snapshot, font, font_size, wrap_width, cx);
 147        let block_map = BlockMap::new(snapshot, buffer_header_height, excerpt_header_height);
 148
 149        cx.observe(&wrap_map, |_, _, cx| cx.notify()).detach();
 150
 151        DisplayMap {
 152            buffer,
 153            buffer_subscription,
 154            fold_map,
 155            inlay_map,
 156            tab_map,
 157            wrap_map,
 158            block_map,
 159            crease_map,
 160            fold_placeholder,
 161            diagnostics_max_severity,
 162            text_highlights: Default::default(),
 163            inlay_highlights: Default::default(),
 164            clip_at_line_ends: false,
 165            masked: false,
 166        }
 167    }
 168
 169    pub fn snapshot(&mut self, cx: &mut Context<Self>) -> DisplaySnapshot {
 170        let buffer_snapshot = self.buffer.read(cx).snapshot(cx);
 171        let edits = self.buffer_subscription.consume().into_inner();
 172        let (inlay_snapshot, edits) = self.inlay_map.sync(buffer_snapshot, edits);
 173        let (fold_snapshot, edits) = self.fold_map.read(inlay_snapshot, edits);
 174        let tab_size = Self::tab_size(&self.buffer, cx);
 175        let (tab_snapshot, edits) = self.tab_map.sync(fold_snapshot, edits, tab_size);
 176        let (wrap_snapshot, edits) = self
 177            .wrap_map
 178            .update(cx, |map, cx| map.sync(tab_snapshot, edits, cx));
 179        let block_snapshot = self.block_map.read(wrap_snapshot, edits).snapshot;
 180
 181        DisplaySnapshot {
 182            block_snapshot,
 183            diagnostics_max_severity: self.diagnostics_max_severity,
 184            crease_snapshot: self.crease_map.snapshot(),
 185            text_highlights: self.text_highlights.clone(),
 186            inlay_highlights: self.inlay_highlights.clone(),
 187            clip_at_line_ends: self.clip_at_line_ends,
 188            masked: self.masked,
 189            fold_placeholder: self.fold_placeholder.clone(),
 190        }
 191    }
 192
 193    pub fn set_state(&mut self, other: &DisplaySnapshot, cx: &mut Context<Self>) {
 194        self.fold(
 195            other
 196                .folds_in_range(0..other.buffer_snapshot().len())
 197                .map(|fold| {
 198                    Crease::simple(
 199                        fold.range.to_offset(other.buffer_snapshot()),
 200                        fold.placeholder.clone(),
 201                    )
 202                })
 203                .collect(),
 204            cx,
 205        );
 206    }
 207
 208    /// Creates folds for the given creases.
 209    pub fn fold<T: Clone + ToOffset>(&mut self, creases: Vec<Crease<T>>, cx: &mut Context<Self>) {
 210        let buffer_snapshot = self.buffer.read(cx).snapshot(cx);
 211        let edits = self.buffer_subscription.consume().into_inner();
 212        let tab_size = Self::tab_size(&self.buffer, cx);
 213        let (snapshot, edits) = self.inlay_map.sync(buffer_snapshot.clone(), edits);
 214        let (mut fold_map, snapshot, edits) = self.fold_map.write(snapshot, edits);
 215        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 216        let (snapshot, edits) = self
 217            .wrap_map
 218            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 219        self.block_map.read(snapshot, edits);
 220
 221        let inline = creases.iter().filter_map(|crease| {
 222            if let Crease::Inline {
 223                range, placeholder, ..
 224            } = crease
 225            {
 226                Some((range.clone(), placeholder.clone()))
 227            } else {
 228                None
 229            }
 230        });
 231        let (snapshot, edits) = fold_map.fold(inline);
 232
 233        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 234        let (snapshot, edits) = self
 235            .wrap_map
 236            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 237        let mut block_map = self.block_map.write(snapshot, edits);
 238        let blocks = creases.into_iter().filter_map(|crease| {
 239            if let Crease::Block {
 240                range,
 241                block_height,
 242                render_block,
 243                block_style,
 244                block_priority,
 245                ..
 246            } = crease
 247            {
 248                Some((
 249                    range,
 250                    render_block,
 251                    block_height,
 252                    block_style,
 253                    block_priority,
 254                ))
 255            } else {
 256                None
 257            }
 258        });
 259        block_map.insert(
 260            blocks
 261                .into_iter()
 262                .map(|(range, render, height, style, priority)| {
 263                    let start = buffer_snapshot.anchor_before(range.start);
 264                    let end = buffer_snapshot.anchor_after(range.end);
 265                    BlockProperties {
 266                        placement: BlockPlacement::Replace(start..=end),
 267                        render,
 268                        height: Some(height),
 269                        style,
 270                        priority,
 271                    }
 272                }),
 273        );
 274    }
 275
 276    /// Removes any folds with the given ranges.
 277    pub fn remove_folds_with_type<T: ToOffset>(
 278        &mut self,
 279        ranges: impl IntoIterator<Item = Range<T>>,
 280        type_id: TypeId,
 281        cx: &mut Context<Self>,
 282    ) {
 283        let snapshot = self.buffer.read(cx).snapshot(cx);
 284        let edits = self.buffer_subscription.consume().into_inner();
 285        let tab_size = Self::tab_size(&self.buffer, cx);
 286        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 287        let (mut fold_map, snapshot, edits) = self.fold_map.write(snapshot, edits);
 288        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 289        let (snapshot, edits) = self
 290            .wrap_map
 291            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 292        self.block_map.read(snapshot, edits);
 293        let (snapshot, edits) = fold_map.remove_folds(ranges, type_id);
 294        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 295        let (snapshot, edits) = self
 296            .wrap_map
 297            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 298        self.block_map.write(snapshot, edits);
 299    }
 300
 301    /// Removes any folds whose ranges intersect any of the given ranges.
 302    pub fn unfold_intersecting<T: ToOffset>(
 303        &mut self,
 304        ranges: impl IntoIterator<Item = Range<T>>,
 305        inclusive: bool,
 306        cx: &mut Context<Self>,
 307    ) {
 308        let snapshot = self.buffer.read(cx).snapshot(cx);
 309        let offset_ranges = ranges
 310            .into_iter()
 311            .map(|range| range.start.to_offset(&snapshot)..range.end.to_offset(&snapshot))
 312            .collect::<Vec<_>>();
 313        let edits = self.buffer_subscription.consume().into_inner();
 314        let tab_size = Self::tab_size(&self.buffer, cx);
 315        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 316        let (mut fold_map, snapshot, edits) = self.fold_map.write(snapshot, edits);
 317        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 318        let (snapshot, edits) = self
 319            .wrap_map
 320            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 321        self.block_map.read(snapshot, edits);
 322
 323        let (snapshot, edits) =
 324            fold_map.unfold_intersecting(offset_ranges.iter().cloned(), inclusive);
 325        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 326        let (snapshot, edits) = self
 327            .wrap_map
 328            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 329        let mut block_map = self.block_map.write(snapshot, edits);
 330        block_map.remove_intersecting_replace_blocks(offset_ranges, inclusive);
 331    }
 332
 333    pub fn disable_header_for_buffer(&mut self, buffer_id: BufferId, cx: &mut Context<Self>) {
 334        let snapshot = self.buffer.read(cx).snapshot(cx);
 335        let edits = self.buffer_subscription.consume().into_inner();
 336        let tab_size = Self::tab_size(&self.buffer, cx);
 337        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 338        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 339        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 340        let (snapshot, edits) = self
 341            .wrap_map
 342            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 343        let mut block_map = self.block_map.write(snapshot, edits);
 344        block_map.disable_header_for_buffer(buffer_id)
 345    }
 346
 347    pub fn fold_buffers(
 348        &mut self,
 349        buffer_ids: impl IntoIterator<Item = language::BufferId>,
 350        cx: &mut Context<Self>,
 351    ) {
 352        let snapshot = self.buffer.read(cx).snapshot(cx);
 353        let edits = self.buffer_subscription.consume().into_inner();
 354        let tab_size = Self::tab_size(&self.buffer, cx);
 355        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 356        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 357        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 358        let (snapshot, edits) = self
 359            .wrap_map
 360            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 361        let mut block_map = self.block_map.write(snapshot, edits);
 362        block_map.fold_buffers(buffer_ids, self.buffer.read(cx), cx)
 363    }
 364
 365    pub fn unfold_buffers(
 366        &mut self,
 367        buffer_ids: impl IntoIterator<Item = language::BufferId>,
 368        cx: &mut Context<Self>,
 369    ) {
 370        let snapshot = self.buffer.read(cx).snapshot(cx);
 371        let edits = self.buffer_subscription.consume().into_inner();
 372        let tab_size = Self::tab_size(&self.buffer, cx);
 373        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 374        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 375        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 376        let (snapshot, edits) = self
 377            .wrap_map
 378            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 379        let mut block_map = self.block_map.write(snapshot, edits);
 380        block_map.unfold_buffers(buffer_ids, self.buffer.read(cx), cx)
 381    }
 382
 383    pub(crate) fn is_buffer_folded(&self, buffer_id: language::BufferId) -> bool {
 384        self.block_map.folded_buffers.contains(&buffer_id)
 385    }
 386
 387    pub(crate) fn folded_buffers(&self) -> &HashSet<BufferId> {
 388        &self.block_map.folded_buffers
 389    }
 390
 391    pub fn insert_creases(
 392        &mut self,
 393        creases: impl IntoIterator<Item = Crease<Anchor>>,
 394        cx: &mut Context<Self>,
 395    ) -> Vec<CreaseId> {
 396        let snapshot = self.buffer.read(cx).snapshot(cx);
 397        self.crease_map.insert(creases, &snapshot)
 398    }
 399
 400    pub fn remove_creases(
 401        &mut self,
 402        crease_ids: impl IntoIterator<Item = CreaseId>,
 403        cx: &mut Context<Self>,
 404    ) -> Vec<(CreaseId, Range<Anchor>)> {
 405        let snapshot = self.buffer.read(cx).snapshot(cx);
 406        self.crease_map.remove(crease_ids, &snapshot)
 407    }
 408
 409    pub fn insert_blocks(
 410        &mut self,
 411        blocks: impl IntoIterator<Item = BlockProperties<Anchor>>,
 412        cx: &mut Context<Self>,
 413    ) -> Vec<CustomBlockId> {
 414        let snapshot = self.buffer.read(cx).snapshot(cx);
 415        let edits = self.buffer_subscription.consume().into_inner();
 416        let tab_size = Self::tab_size(&self.buffer, cx);
 417        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 418        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 419        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 420        let (snapshot, edits) = self
 421            .wrap_map
 422            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 423        let mut block_map = self.block_map.write(snapshot, edits);
 424        block_map.insert(blocks)
 425    }
 426
 427    pub fn resize_blocks(&mut self, heights: HashMap<CustomBlockId, u32>, cx: &mut Context<Self>) {
 428        let snapshot = self.buffer.read(cx).snapshot(cx);
 429        let edits = self.buffer_subscription.consume().into_inner();
 430        let tab_size = Self::tab_size(&self.buffer, cx);
 431        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 432        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 433        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 434        let (snapshot, edits) = self
 435            .wrap_map
 436            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 437        let mut block_map = self.block_map.write(snapshot, edits);
 438        block_map.resize(heights);
 439    }
 440
 441    pub fn replace_blocks(&mut self, renderers: HashMap<CustomBlockId, RenderBlock>) {
 442        self.block_map.replace_blocks(renderers);
 443    }
 444
 445    pub fn remove_blocks(&mut self, ids: HashSet<CustomBlockId>, cx: &mut Context<Self>) {
 446        let snapshot = self.buffer.read(cx).snapshot(cx);
 447        let edits = self.buffer_subscription.consume().into_inner();
 448        let tab_size = Self::tab_size(&self.buffer, cx);
 449        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 450        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 451        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 452        let (snapshot, edits) = self
 453            .wrap_map
 454            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 455        let mut block_map = self.block_map.write(snapshot, edits);
 456        block_map.remove(ids);
 457    }
 458
 459    pub fn row_for_block(
 460        &mut self,
 461        block_id: CustomBlockId,
 462        cx: &mut Context<Self>,
 463    ) -> Option<DisplayRow> {
 464        let snapshot = self.buffer.read(cx).snapshot(cx);
 465        let edits = self.buffer_subscription.consume().into_inner();
 466        let tab_size = Self::tab_size(&self.buffer, cx);
 467        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 468        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 469        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 470        let (snapshot, edits) = self
 471            .wrap_map
 472            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 473        let block_map = self.block_map.read(snapshot, edits);
 474        let block_row = block_map.row_for_block(block_id)?;
 475        Some(DisplayRow(block_row.0))
 476    }
 477
 478    pub fn highlight_text(
 479        &mut self,
 480        key: HighlightKey,
 481        ranges: Vec<Range<Anchor>>,
 482        style: HighlightStyle,
 483    ) {
 484        self.text_highlights.insert(key, Arc::new((style, ranges)));
 485    }
 486
 487    pub(crate) fn highlight_inlays(
 488        &mut self,
 489        type_id: TypeId,
 490        highlights: Vec<InlayHighlight>,
 491        style: HighlightStyle,
 492    ) {
 493        for highlight in highlights {
 494            let update = self.inlay_highlights.update(&type_id, |highlights| {
 495                highlights.insert(highlight.inlay, (style, highlight.clone()))
 496            });
 497            if update.is_none() {
 498                self.inlay_highlights.insert(
 499                    type_id,
 500                    TreeMap::from_ordered_entries([(highlight.inlay, (style, highlight))]),
 501                );
 502            }
 503        }
 504    }
 505
 506    pub fn text_highlights(&self, type_id: TypeId) -> Option<(HighlightStyle, &[Range<Anchor>])> {
 507        let highlights = self.text_highlights.get(&HighlightKey::Type(type_id))?;
 508        Some((highlights.0, &highlights.1))
 509    }
 510
 511    #[cfg(feature = "test-support")]
 512    pub fn all_text_highlights(
 513        &self,
 514    ) -> impl Iterator<Item = &Arc<(HighlightStyle, Vec<Range<Anchor>>)>> {
 515        self.text_highlights.values()
 516    }
 517
 518    pub fn clear_highlights(&mut self, type_id: TypeId) -> bool {
 519        let mut cleared = self
 520            .text_highlights
 521            .remove(&HighlightKey::Type(type_id))
 522            .is_some();
 523        cleared |= self.inlay_highlights.remove(&type_id).is_some();
 524        cleared
 525    }
 526
 527    pub fn set_font(&self, font: Font, font_size: Pixels, cx: &mut Context<Self>) -> bool {
 528        self.wrap_map
 529            .update(cx, |map, cx| map.set_font_with_size(font, font_size, cx))
 530    }
 531
 532    pub fn set_wrap_width(&self, width: Option<Pixels>, cx: &mut Context<Self>) -> bool {
 533        self.wrap_map
 534            .update(cx, |map, cx| map.set_wrap_width(width, cx))
 535    }
 536
 537    pub fn update_fold_widths(
 538        &mut self,
 539        widths: impl IntoIterator<Item = (ChunkRendererId, Pixels)>,
 540        cx: &mut Context<Self>,
 541    ) -> bool {
 542        let snapshot = self.buffer.read(cx).snapshot(cx);
 543        let edits = self.buffer_subscription.consume().into_inner();
 544        let tab_size = Self::tab_size(&self.buffer, cx);
 545        let (snapshot, edits) = self.inlay_map.sync(snapshot, edits);
 546        let (mut fold_map, snapshot, edits) = self.fold_map.write(snapshot, edits);
 547        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 548        let (snapshot, edits) = self
 549            .wrap_map
 550            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 551        self.block_map.read(snapshot, edits);
 552
 553        let (snapshot, edits) = fold_map.update_fold_widths(widths);
 554        let widths_changed = !edits.is_empty();
 555        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 556        let (snapshot, edits) = self
 557            .wrap_map
 558            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 559        self.block_map.read(snapshot, edits);
 560
 561        widths_changed
 562    }
 563
 564    pub(crate) fn current_inlays(&self) -> impl Iterator<Item = &Inlay> {
 565        self.inlay_map.current_inlays()
 566    }
 567
 568    pub(crate) fn splice_inlays(
 569        &mut self,
 570        to_remove: &[InlayId],
 571        to_insert: Vec<Inlay>,
 572        cx: &mut Context<Self>,
 573    ) {
 574        if to_remove.is_empty() && to_insert.is_empty() {
 575            return;
 576        }
 577        let buffer_snapshot = self.buffer.read(cx).snapshot(cx);
 578        let edits = self.buffer_subscription.consume().into_inner();
 579        let (snapshot, edits) = self.inlay_map.sync(buffer_snapshot, edits);
 580        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 581        let tab_size = Self::tab_size(&self.buffer, cx);
 582        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 583        let (snapshot, edits) = self
 584            .wrap_map
 585            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 586        self.block_map.read(snapshot, edits);
 587
 588        let (snapshot, edits) = self.inlay_map.splice(to_remove, to_insert);
 589        let (snapshot, edits) = self.fold_map.read(snapshot, edits);
 590        let (snapshot, edits) = self.tab_map.sync(snapshot, edits, tab_size);
 591        let (snapshot, edits) = self
 592            .wrap_map
 593            .update(cx, |map, cx| map.sync(snapshot, edits, cx));
 594        self.block_map.read(snapshot, edits);
 595    }
 596
 597    fn tab_size(buffer: &Entity<MultiBuffer>, cx: &App) -> NonZeroU32 {
 598        let buffer = buffer.read(cx).as_singleton().map(|buffer| buffer.read(cx));
 599        let language = buffer
 600            .and_then(|buffer| buffer.language())
 601            .map(|l| l.name());
 602        let file = buffer.and_then(|buffer| buffer.file());
 603        language_settings(language, file, cx).tab_size
 604    }
 605
 606    #[cfg(test)]
 607    pub fn is_rewrapping(&self, cx: &gpui::App) -> bool {
 608        self.wrap_map.read(cx).is_rewrapping()
 609    }
 610}
 611
 612#[derive(Debug, Default)]
 613pub(crate) struct Highlights<'a> {
 614    pub text_highlights: Option<&'a TextHighlights>,
 615    pub inlay_highlights: Option<&'a InlayHighlights>,
 616    pub styles: HighlightStyles,
 617}
 618
 619#[derive(Clone, Copy, Debug)]
 620pub struct EditPredictionStyles {
 621    pub insertion: HighlightStyle,
 622    pub whitespace: HighlightStyle,
 623}
 624
 625#[derive(Default, Debug, Clone, Copy)]
 626pub struct HighlightStyles {
 627    pub inlay_hint: Option<HighlightStyle>,
 628    pub edit_prediction: Option<EditPredictionStyles>,
 629}
 630
 631#[derive(Clone)]
 632pub enum ChunkReplacement {
 633    Renderer(ChunkRenderer),
 634    Str(SharedString),
 635}
 636
 637pub struct HighlightedChunk<'a> {
 638    pub text: &'a str,
 639    pub style: Option<HighlightStyle>,
 640    pub is_tab: bool,
 641    pub is_inlay: bool,
 642    pub replacement: Option<ChunkReplacement>,
 643}
 644
 645impl<'a> HighlightedChunk<'a> {
 646    fn highlight_invisibles(
 647        self,
 648        editor_style: &'a EditorStyle,
 649    ) -> impl Iterator<Item = Self> + 'a {
 650        let mut chars = self.text.chars().peekable();
 651        let mut text = self.text;
 652        let style = self.style;
 653        let is_tab = self.is_tab;
 654        let renderer = self.replacement;
 655        let is_inlay = self.is_inlay;
 656        iter::from_fn(move || {
 657            let mut prefix_len = 0;
 658            while let Some(&ch) = chars.peek() {
 659                if !is_invisible(ch) {
 660                    prefix_len += ch.len_utf8();
 661                    chars.next();
 662                    continue;
 663                }
 664                if prefix_len > 0 {
 665                    let (prefix, suffix) = text.split_at(prefix_len);
 666                    text = suffix;
 667                    return Some(HighlightedChunk {
 668                        text: prefix,
 669                        style,
 670                        is_tab,
 671                        is_inlay,
 672                        replacement: renderer.clone(),
 673                    });
 674                }
 675                chars.next();
 676                let (prefix, suffix) = text.split_at(ch.len_utf8());
 677                text = suffix;
 678                if let Some(replacement) = replacement(ch) {
 679                    let invisible_highlight = HighlightStyle {
 680                        background_color: Some(editor_style.status.hint_background),
 681                        underline: Some(UnderlineStyle {
 682                            color: Some(editor_style.status.hint),
 683                            thickness: px(1.),
 684                            wavy: false,
 685                        }),
 686                        ..Default::default()
 687                    };
 688                    let invisible_style = if let Some(style) = style {
 689                        style.highlight(invisible_highlight)
 690                    } else {
 691                        invisible_highlight
 692                    };
 693                    return Some(HighlightedChunk {
 694                        text: prefix,
 695                        style: Some(invisible_style),
 696                        is_tab: false,
 697                        is_inlay,
 698                        replacement: Some(ChunkReplacement::Str(replacement.into())),
 699                    });
 700                } else {
 701                    let invisible_highlight = HighlightStyle {
 702                        background_color: Some(editor_style.status.hint_background),
 703                        underline: Some(UnderlineStyle {
 704                            color: Some(editor_style.status.hint),
 705                            thickness: px(1.),
 706                            wavy: false,
 707                        }),
 708                        ..Default::default()
 709                    };
 710                    let invisible_style = if let Some(style) = style {
 711                        style.highlight(invisible_highlight)
 712                    } else {
 713                        invisible_highlight
 714                    };
 715
 716                    return Some(HighlightedChunk {
 717                        text: prefix,
 718                        style: Some(invisible_style),
 719                        is_tab: false,
 720                        is_inlay,
 721                        replacement: renderer.clone(),
 722                    });
 723                }
 724            }
 725
 726            if !text.is_empty() {
 727                let remainder = text;
 728                text = "";
 729                Some(HighlightedChunk {
 730                    text: remainder,
 731                    style,
 732                    is_tab,
 733                    is_inlay,
 734                    replacement: renderer.clone(),
 735                })
 736            } else {
 737                None
 738            }
 739        })
 740    }
 741}
 742
 743#[derive(Clone)]
 744pub struct DisplaySnapshot {
 745    pub crease_snapshot: CreaseSnapshot,
 746    block_snapshot: BlockSnapshot,
 747    text_highlights: TextHighlights,
 748    inlay_highlights: InlayHighlights,
 749    clip_at_line_ends: bool,
 750    masked: bool,
 751    diagnostics_max_severity: DiagnosticSeverity,
 752    pub(crate) fold_placeholder: FoldPlaceholder,
 753}
 754
 755impl DisplaySnapshot {
 756    pub fn wrap_snapshot(&self) -> &WrapSnapshot {
 757        &self.block_snapshot.wrap_snapshot
 758    }
 759    pub fn tab_snapshot(&self) -> &TabSnapshot {
 760        &self.block_snapshot.wrap_snapshot.tab_snapshot
 761    }
 762
 763    pub fn fold_snapshot(&self) -> &FoldSnapshot {
 764        &self.block_snapshot.wrap_snapshot.tab_snapshot.fold_snapshot
 765    }
 766
 767    pub fn inlay_snapshot(&self) -> &InlaySnapshot {
 768        &self
 769            .block_snapshot
 770            .wrap_snapshot
 771            .tab_snapshot
 772            .fold_snapshot
 773            .inlay_snapshot
 774    }
 775
 776    pub fn buffer_snapshot(&self) -> &MultiBufferSnapshot {
 777        &self
 778            .block_snapshot
 779            .wrap_snapshot
 780            .tab_snapshot
 781            .fold_snapshot
 782            .inlay_snapshot
 783            .buffer
 784    }
 785
 786    #[cfg(test)]
 787    pub fn fold_count(&self) -> usize {
 788        self.fold_snapshot().fold_count()
 789    }
 790
 791    pub fn is_empty(&self) -> bool {
 792        self.buffer_snapshot().len() == 0
 793    }
 794
 795    pub fn row_infos(&self, start_row: DisplayRow) -> impl Iterator<Item = RowInfo> + '_ {
 796        self.block_snapshot.row_infos(BlockRow(start_row.0))
 797    }
 798
 799    pub fn widest_line_number(&self) -> u32 {
 800        self.buffer_snapshot().widest_line_number()
 801    }
 802
 803    pub fn prev_line_boundary(&self, mut point: MultiBufferPoint) -> (Point, DisplayPoint) {
 804        loop {
 805            let mut inlay_point = self.inlay_snapshot().to_inlay_point(point);
 806            let mut fold_point = self.fold_snapshot().to_fold_point(inlay_point, Bias::Left);
 807            fold_point.0.column = 0;
 808            inlay_point = fold_point.to_inlay_point(self.fold_snapshot());
 809            point = self.inlay_snapshot().to_buffer_point(inlay_point);
 810
 811            let mut display_point = self.point_to_display_point(point, Bias::Left);
 812            *display_point.column_mut() = 0;
 813            let next_point = self.display_point_to_point(display_point, Bias::Left);
 814            if next_point == point {
 815                return (point, display_point);
 816            }
 817            point = next_point;
 818        }
 819    }
 820
 821    pub fn next_line_boundary(
 822        &self,
 823        mut point: MultiBufferPoint,
 824    ) -> (MultiBufferPoint, DisplayPoint) {
 825        let original_point = point;
 826        loop {
 827            let mut inlay_point = self.inlay_snapshot().to_inlay_point(point);
 828            let mut fold_point = self.fold_snapshot().to_fold_point(inlay_point, Bias::Right);
 829            fold_point.0.column = self.fold_snapshot().line_len(fold_point.row());
 830            inlay_point = fold_point.to_inlay_point(self.fold_snapshot());
 831            point = self.inlay_snapshot().to_buffer_point(inlay_point);
 832
 833            let mut display_point = self.point_to_display_point(point, Bias::Right);
 834            *display_point.column_mut() = self.line_len(display_point.row());
 835            let next_point = self.display_point_to_point(display_point, Bias::Right);
 836            if next_point == point || original_point == point || original_point == next_point {
 837                return (point, display_point);
 838            }
 839            point = next_point;
 840        }
 841    }
 842
 843    // used by line_mode selections and tries to match vim behavior
 844    pub fn expand_to_line(&self, range: Range<Point>) -> Range<Point> {
 845        let new_start = MultiBufferPoint::new(range.start.row, 0);
 846        let new_end = if range.end.column > 0 {
 847            MultiBufferPoint::new(
 848                range.end.row,
 849                self.buffer_snapshot()
 850                    .line_len(MultiBufferRow(range.end.row)),
 851            )
 852        } else {
 853            range.end
 854        };
 855
 856        new_start..new_end
 857    }
 858
 859    pub fn point_to_display_point(&self, point: MultiBufferPoint, bias: Bias) -> DisplayPoint {
 860        let inlay_point = self.inlay_snapshot().to_inlay_point(point);
 861        let fold_point = self.fold_snapshot().to_fold_point(inlay_point, bias);
 862        let tab_point = self.tab_snapshot().to_tab_point(fold_point);
 863        let wrap_point = self.wrap_snapshot().tab_point_to_wrap_point(tab_point);
 864        let block_point = self.block_snapshot.to_block_point(wrap_point);
 865        DisplayPoint(block_point)
 866    }
 867
 868    pub fn display_point_to_point(&self, point: DisplayPoint, bias: Bias) -> Point {
 869        self.inlay_snapshot()
 870            .to_buffer_point(self.display_point_to_inlay_point(point, bias))
 871    }
 872
 873    pub fn display_point_to_inlay_offset(&self, point: DisplayPoint, bias: Bias) -> InlayOffset {
 874        self.inlay_snapshot()
 875            .to_offset(self.display_point_to_inlay_point(point, bias))
 876    }
 877
 878    pub fn anchor_to_inlay_offset(&self, anchor: Anchor) -> InlayOffset {
 879        self.inlay_snapshot()
 880            .to_inlay_offset(anchor.to_offset(self.buffer_snapshot()))
 881    }
 882
 883    pub fn display_point_to_anchor(&self, point: DisplayPoint, bias: Bias) -> Anchor {
 884        self.buffer_snapshot()
 885            .anchor_at(point.to_offset(self, bias), bias)
 886    }
 887
 888    fn display_point_to_inlay_point(&self, point: DisplayPoint, bias: Bias) -> InlayPoint {
 889        let block_point = point.0;
 890        let wrap_point = self.block_snapshot.to_wrap_point(block_point, bias);
 891        let tab_point = self.wrap_snapshot().to_tab_point(wrap_point);
 892        let fold_point = self.tab_snapshot().to_fold_point(tab_point, bias).0;
 893        fold_point.to_inlay_point(self.fold_snapshot())
 894    }
 895
 896    pub fn display_point_to_fold_point(&self, point: DisplayPoint, bias: Bias) -> FoldPoint {
 897        let block_point = point.0;
 898        let wrap_point = self.block_snapshot.to_wrap_point(block_point, bias);
 899        let tab_point = self.wrap_snapshot().to_tab_point(wrap_point);
 900        self.tab_snapshot().to_fold_point(tab_point, bias).0
 901    }
 902
 903    pub fn fold_point_to_display_point(&self, fold_point: FoldPoint) -> DisplayPoint {
 904        let tab_point = self.tab_snapshot().to_tab_point(fold_point);
 905        let wrap_point = self.wrap_snapshot().tab_point_to_wrap_point(tab_point);
 906        let block_point = self.block_snapshot.to_block_point(wrap_point);
 907        DisplayPoint(block_point)
 908    }
 909
 910    pub fn max_point(&self) -> DisplayPoint {
 911        DisplayPoint(self.block_snapshot.max_point())
 912    }
 913
 914    /// Returns text chunks starting at the given display row until the end of the file
 915    pub fn text_chunks(&self, display_row: DisplayRow) -> impl Iterator<Item = &str> {
 916        self.block_snapshot
 917            .chunks(
 918                display_row.0..self.max_point().row().next_row().0,
 919                false,
 920                self.masked,
 921                Highlights::default(),
 922            )
 923            .map(|h| h.text)
 924    }
 925
 926    /// Returns text chunks starting at the end of the given display row in reverse until the start of the file
 927    pub fn reverse_text_chunks(&self, display_row: DisplayRow) -> impl Iterator<Item = &str> {
 928        (0..=display_row.0).rev().flat_map(move |row| {
 929            self.block_snapshot
 930                .chunks(row..row + 1, false, self.masked, Highlights::default())
 931                .map(|h| h.text)
 932                .collect::<Vec<_>>()
 933                .into_iter()
 934                .rev()
 935        })
 936    }
 937
 938    pub fn chunks(
 939        &self,
 940        display_rows: Range<DisplayRow>,
 941        language_aware: bool,
 942        highlight_styles: HighlightStyles,
 943    ) -> DisplayChunks<'_> {
 944        self.block_snapshot.chunks(
 945            display_rows.start.0..display_rows.end.0,
 946            language_aware,
 947            self.masked,
 948            Highlights {
 949                text_highlights: Some(&self.text_highlights),
 950                inlay_highlights: Some(&self.inlay_highlights),
 951                styles: highlight_styles,
 952            },
 953        )
 954    }
 955
 956    pub fn highlighted_chunks<'a>(
 957        &'a self,
 958        display_rows: Range<DisplayRow>,
 959        language_aware: bool,
 960        editor_style: &'a EditorStyle,
 961    ) -> impl Iterator<Item = HighlightedChunk<'a>> {
 962        self.chunks(
 963            display_rows,
 964            language_aware,
 965            HighlightStyles {
 966                inlay_hint: Some(editor_style.inlay_hints_style),
 967                edit_prediction: Some(editor_style.edit_prediction_styles),
 968            },
 969        )
 970        .flat_map(|chunk| {
 971            let highlight_style = chunk
 972                .syntax_highlight_id
 973                .and_then(|id| id.style(&editor_style.syntax));
 974
 975            let chunk_highlight = chunk.highlight_style.map(|chunk_highlight| {
 976                HighlightStyle {
 977                    // For color inlays, blend the color with the editor background
 978                    // if the color has transparency (alpha < 1.0)
 979                    color: chunk_highlight.color.map(|color| {
 980                        if chunk.is_inlay && !color.is_opaque() {
 981                            editor_style.background.blend(color)
 982                        } else {
 983                            color
 984                        }
 985                    }),
 986                    ..chunk_highlight
 987                }
 988            });
 989
 990            let diagnostic_highlight = chunk
 991                .diagnostic_severity
 992                .filter(|severity| {
 993                    self.diagnostics_max_severity
 994                        .into_lsp()
 995                        .is_some_and(|max_severity| severity <= &max_severity)
 996                })
 997                .map(|severity| HighlightStyle {
 998                    fade_out: chunk
 999                        .is_unnecessary
1000                        .then_some(editor_style.unnecessary_code_fade),
1001                    underline: (chunk.underline
1002                        && editor_style.show_underlines
1003                        && !(chunk.is_unnecessary && severity > lsp::DiagnosticSeverity::WARNING))
1004                        .then(|| {
1005                            let diagnostic_color =
1006                                super::diagnostic_style(severity, &editor_style.status);
1007                            UnderlineStyle {
1008                                color: Some(diagnostic_color),
1009                                thickness: 1.0.into(),
1010                                wavy: true,
1011                            }
1012                        }),
1013                    ..Default::default()
1014                });
1015
1016            let style = [highlight_style, chunk_highlight, diagnostic_highlight]
1017                .into_iter()
1018                .flatten()
1019                .reduce(|acc, highlight| acc.highlight(highlight));
1020
1021            HighlightedChunk {
1022                text: chunk.text,
1023                style,
1024                is_tab: chunk.is_tab,
1025                is_inlay: chunk.is_inlay,
1026                replacement: chunk.renderer.map(ChunkReplacement::Renderer),
1027            }
1028            .highlight_invisibles(editor_style)
1029        })
1030    }
1031
1032    pub fn layout_row(
1033        &self,
1034        display_row: DisplayRow,
1035        TextLayoutDetails {
1036            text_system,
1037            editor_style,
1038            rem_size,
1039            scroll_anchor: _,
1040            visible_rows: _,
1041            vertical_scroll_margin: _,
1042        }: &TextLayoutDetails,
1043    ) -> Arc<LineLayout> {
1044        let mut runs = Vec::new();
1045        let mut line = String::new();
1046
1047        let range = display_row..display_row.next_row();
1048        for chunk in self.highlighted_chunks(range, false, editor_style) {
1049            line.push_str(chunk.text);
1050
1051            let text_style = if let Some(style) = chunk.style {
1052                Cow::Owned(editor_style.text.clone().highlight(style))
1053            } else {
1054                Cow::Borrowed(&editor_style.text)
1055            };
1056
1057            runs.push(text_style.to_run(chunk.text.len()))
1058        }
1059
1060        if line.ends_with('\n') {
1061            line.pop();
1062            if let Some(last_run) = runs.last_mut() {
1063                last_run.len -= 1;
1064                if last_run.len == 0 {
1065                    runs.pop();
1066                }
1067            }
1068        }
1069
1070        let font_size = editor_style.text.font_size.to_pixels(*rem_size);
1071        text_system.layout_line(&line, font_size, &runs, None)
1072    }
1073
1074    pub fn x_for_display_point(
1075        &self,
1076        display_point: DisplayPoint,
1077        text_layout_details: &TextLayoutDetails,
1078    ) -> Pixels {
1079        let line = self.layout_row(display_point.row(), text_layout_details);
1080        line.x_for_index(display_point.column() as usize)
1081    }
1082
1083    pub fn display_column_for_x(
1084        &self,
1085        display_row: DisplayRow,
1086        x: Pixels,
1087        details: &TextLayoutDetails,
1088    ) -> u32 {
1089        let layout_line = self.layout_row(display_row, details);
1090        layout_line.closest_index_for_x(x) as u32
1091    }
1092
1093    pub fn grapheme_at(&self, mut point: DisplayPoint) -> Option<SharedString> {
1094        point = DisplayPoint(self.block_snapshot.clip_point(point.0, Bias::Left));
1095        let chars = self
1096            .text_chunks(point.row())
1097            .flat_map(str::chars)
1098            .skip_while({
1099                let mut column = 0;
1100                move |char| {
1101                    let at_point = column >= point.column();
1102                    column += char.len_utf8() as u32;
1103                    !at_point
1104                }
1105            })
1106            .take_while({
1107                let mut prev = false;
1108                move |char| {
1109                    let now = char.is_ascii();
1110                    let end = char.is_ascii() && (char.is_ascii_whitespace() || prev);
1111                    prev = now;
1112                    !end
1113                }
1114            });
1115        chars.collect::<String>().graphemes(true).next().map(|s| {
1116            if let Some(invisible) = s.chars().next().filter(|&c| is_invisible(c)) {
1117                replacement(invisible).unwrap_or(s).to_owned().into()
1118            } else if s == "\n" {
1119                " ".into()
1120            } else {
1121                s.to_owned().into()
1122            }
1123        })
1124    }
1125
1126    pub fn buffer_chars_at(&self, mut offset: usize) -> impl Iterator<Item = (char, usize)> + '_ {
1127        self.buffer_snapshot().chars_at(offset).map(move |ch| {
1128            let ret = (ch, offset);
1129            offset += ch.len_utf8();
1130            ret
1131        })
1132    }
1133
1134    pub fn reverse_buffer_chars_at(
1135        &self,
1136        mut offset: usize,
1137    ) -> impl Iterator<Item = (char, usize)> + '_ {
1138        self.buffer_snapshot()
1139            .reversed_chars_at(offset)
1140            .map(move |ch| {
1141                offset -= ch.len_utf8();
1142                (ch, offset)
1143            })
1144    }
1145
1146    pub fn clip_point(&self, point: DisplayPoint, bias: Bias) -> DisplayPoint {
1147        let mut clipped = self.block_snapshot.clip_point(point.0, bias);
1148        if self.clip_at_line_ends {
1149            clipped = self.clip_at_line_end(DisplayPoint(clipped)).0
1150        }
1151        DisplayPoint(clipped)
1152    }
1153
1154    pub fn clip_ignoring_line_ends(&self, point: DisplayPoint, bias: Bias) -> DisplayPoint {
1155        DisplayPoint(self.block_snapshot.clip_point(point.0, bias))
1156    }
1157
1158    pub fn clip_at_line_end(&self, display_point: DisplayPoint) -> DisplayPoint {
1159        let mut point = self.display_point_to_point(display_point, Bias::Left);
1160
1161        if point.column != self.buffer_snapshot().line_len(MultiBufferRow(point.row)) {
1162            return display_point;
1163        }
1164        point.column = point.column.saturating_sub(1);
1165        point = self.buffer_snapshot().clip_point(point, Bias::Left);
1166        self.point_to_display_point(point, Bias::Left)
1167    }
1168
1169    pub fn folds_in_range<T>(&self, range: Range<T>) -> impl Iterator<Item = &Fold>
1170    where
1171        T: ToOffset,
1172    {
1173        self.fold_snapshot().folds_in_range(range)
1174    }
1175
1176    pub fn blocks_in_range(
1177        &self,
1178        rows: Range<DisplayRow>,
1179    ) -> impl Iterator<Item = (DisplayRow, &Block)> {
1180        self.block_snapshot
1181            .blocks_in_range(rows.start.0..rows.end.0)
1182            .map(|(row, block)| (DisplayRow(row), block))
1183    }
1184
1185    pub fn sticky_header_excerpt(&self, row: f64) -> Option<StickyHeaderExcerpt<'_>> {
1186        self.block_snapshot.sticky_header_excerpt(row)
1187    }
1188
1189    pub fn block_for_id(&self, id: BlockId) -> Option<Block> {
1190        self.block_snapshot.block_for_id(id)
1191    }
1192
1193    pub fn intersects_fold<T: ToOffset>(&self, offset: T) -> bool {
1194        self.fold_snapshot().intersects_fold(offset)
1195    }
1196
1197    pub fn is_line_folded(&self, buffer_row: MultiBufferRow) -> bool {
1198        self.block_snapshot.is_line_replaced(buffer_row)
1199            || self.fold_snapshot().is_line_folded(buffer_row)
1200    }
1201
1202    pub fn is_block_line(&self, display_row: DisplayRow) -> bool {
1203        self.block_snapshot.is_block_line(BlockRow(display_row.0))
1204    }
1205
1206    pub fn is_folded_buffer_header(&self, display_row: DisplayRow) -> bool {
1207        self.block_snapshot
1208            .is_folded_buffer_header(BlockRow(display_row.0))
1209    }
1210
1211    pub fn soft_wrap_indent(&self, display_row: DisplayRow) -> Option<u32> {
1212        let wrap_row = self
1213            .block_snapshot
1214            .to_wrap_point(BlockPoint::new(display_row.0, 0), Bias::Left)
1215            .row();
1216        self.wrap_snapshot().soft_wrap_indent(wrap_row)
1217    }
1218
1219    pub fn text(&self) -> String {
1220        self.text_chunks(DisplayRow(0)).collect()
1221    }
1222
1223    pub fn line(&self, display_row: DisplayRow) -> String {
1224        let mut result = String::new();
1225        for chunk in self.text_chunks(display_row) {
1226            if let Some(ix) = chunk.find('\n') {
1227                result.push_str(&chunk[0..ix]);
1228                break;
1229            } else {
1230                result.push_str(chunk);
1231            }
1232        }
1233        result
1234    }
1235
1236    pub fn line_indent_for_buffer_row(&self, buffer_row: MultiBufferRow) -> LineIndent {
1237        self.buffer_snapshot().line_indent_for_row(buffer_row)
1238    }
1239
1240    pub fn line_len(&self, row: DisplayRow) -> u32 {
1241        self.block_snapshot.line_len(BlockRow(row.0))
1242    }
1243
1244    pub fn longest_row(&self) -> DisplayRow {
1245        DisplayRow(self.block_snapshot.longest_row())
1246    }
1247
1248    pub fn longest_row_in_range(&self, range: Range<DisplayRow>) -> DisplayRow {
1249        let block_range = BlockRow(range.start.0)..BlockRow(range.end.0);
1250        let longest_row = self.block_snapshot.longest_row_in_range(block_range);
1251        DisplayRow(longest_row.0)
1252    }
1253
1254    pub fn starts_indent(&self, buffer_row: MultiBufferRow) -> bool {
1255        let max_row = self.buffer_snapshot().max_row();
1256        if buffer_row >= max_row {
1257            return false;
1258        }
1259
1260        let line_indent = self.line_indent_for_buffer_row(buffer_row);
1261        if line_indent.is_line_blank() {
1262            return false;
1263        }
1264
1265        (buffer_row.0 + 1..=max_row.0)
1266            .find_map(|next_row| {
1267                let next_line_indent = self.line_indent_for_buffer_row(MultiBufferRow(next_row));
1268                if next_line_indent.raw_len() > line_indent.raw_len() {
1269                    Some(true)
1270                } else if !next_line_indent.is_line_blank() {
1271                    Some(false)
1272                } else {
1273                    None
1274                }
1275            })
1276            .unwrap_or(false)
1277    }
1278
1279    pub fn crease_for_buffer_row(&self, buffer_row: MultiBufferRow) -> Option<Crease<Point>> {
1280        let start =
1281            MultiBufferPoint::new(buffer_row.0, self.buffer_snapshot().line_len(buffer_row));
1282        if let Some(crease) = self
1283            .crease_snapshot
1284            .query_row(buffer_row, self.buffer_snapshot())
1285        {
1286            match crease {
1287                Crease::Inline {
1288                    range,
1289                    placeholder,
1290                    render_toggle,
1291                    render_trailer,
1292                    metadata,
1293                } => Some(Crease::Inline {
1294                    range: range.to_point(self.buffer_snapshot()),
1295                    placeholder: placeholder.clone(),
1296                    render_toggle: render_toggle.clone(),
1297                    render_trailer: render_trailer.clone(),
1298                    metadata: metadata.clone(),
1299                }),
1300                Crease::Block {
1301                    range,
1302                    block_height,
1303                    block_style,
1304                    render_block,
1305                    block_priority,
1306                    render_toggle,
1307                } => Some(Crease::Block {
1308                    range: range.to_point(self.buffer_snapshot()),
1309                    block_height: *block_height,
1310                    block_style: *block_style,
1311                    render_block: render_block.clone(),
1312                    block_priority: *block_priority,
1313                    render_toggle: render_toggle.clone(),
1314                }),
1315            }
1316        } else if self.starts_indent(MultiBufferRow(start.row))
1317            && !self.is_line_folded(MultiBufferRow(start.row))
1318        {
1319            let start_line_indent = self.line_indent_for_buffer_row(buffer_row);
1320            let max_point = self.buffer_snapshot().max_point();
1321            let mut end = None;
1322
1323            for row in (buffer_row.0 + 1)..=max_point.row {
1324                let line_indent = self.line_indent_for_buffer_row(MultiBufferRow(row));
1325                if !line_indent.is_line_blank()
1326                    && line_indent.raw_len() <= start_line_indent.raw_len()
1327                {
1328                    let prev_row = row - 1;
1329                    end = Some(Point::new(
1330                        prev_row,
1331                        self.buffer_snapshot().line_len(MultiBufferRow(prev_row)),
1332                    ));
1333                    break;
1334                }
1335            }
1336
1337            let mut row_before_line_breaks = end.unwrap_or(max_point);
1338            while row_before_line_breaks.row > start.row
1339                && self
1340                    .buffer_snapshot()
1341                    .is_line_blank(MultiBufferRow(row_before_line_breaks.row))
1342            {
1343                row_before_line_breaks.row -= 1;
1344            }
1345
1346            row_before_line_breaks = Point::new(
1347                row_before_line_breaks.row,
1348                self.buffer_snapshot()
1349                    .line_len(MultiBufferRow(row_before_line_breaks.row)),
1350            );
1351
1352            Some(Crease::Inline {
1353                range: start..row_before_line_breaks,
1354                placeholder: self.fold_placeholder.clone(),
1355                render_toggle: None,
1356                render_trailer: None,
1357                metadata: None,
1358            })
1359        } else {
1360            None
1361        }
1362    }
1363
1364    #[cfg(any(test, feature = "test-support"))]
1365    pub fn text_highlight_ranges<Tag: ?Sized + 'static>(
1366        &self,
1367    ) -> Option<Arc<(HighlightStyle, Vec<Range<Anchor>>)>> {
1368        let type_id = TypeId::of::<Tag>();
1369        self.text_highlights
1370            .get(&HighlightKey::Type(type_id))
1371            .cloned()
1372    }
1373
1374    #[allow(unused)]
1375    #[cfg(any(test, feature = "test-support"))]
1376    pub(crate) fn inlay_highlights<Tag: ?Sized + 'static>(
1377        &self,
1378    ) -> Option<&TreeMap<InlayId, (HighlightStyle, InlayHighlight)>> {
1379        let type_id = TypeId::of::<Tag>();
1380        self.inlay_highlights.get(&type_id)
1381    }
1382
1383    pub fn buffer_header_height(&self) -> u32 {
1384        self.block_snapshot.buffer_header_height
1385    }
1386
1387    pub fn excerpt_header_height(&self) -> u32 {
1388        self.block_snapshot.excerpt_header_height
1389    }
1390
1391    /// Given a `DisplayPoint`, returns another `DisplayPoint` corresponding to
1392    /// the start of the buffer row that is a given number of buffer rows away
1393    /// from the provided point.
1394    ///
1395    /// This moves by buffer rows instead of display rows, a distinction that is
1396    /// important when soft wrapping is enabled.
1397    pub fn start_of_relative_buffer_row(&self, point: DisplayPoint, times: isize) -> DisplayPoint {
1398        let start = self.display_point_to_fold_point(point, Bias::Left);
1399        let target = start.row() as isize + times;
1400        let new_row = (target.max(0) as u32).min(self.fold_snapshot().max_point().row());
1401
1402        self.clip_point(
1403            self.fold_point_to_display_point(
1404                self.fold_snapshot()
1405                    .clip_point(FoldPoint::new(new_row, 0), Bias::Right),
1406            ),
1407            Bias::Right,
1408        )
1409    }
1410}
1411
1412impl std::ops::Deref for DisplaySnapshot {
1413    type Target = BlockSnapshot;
1414
1415    fn deref(&self) -> &Self::Target {
1416        &self.block_snapshot
1417    }
1418}
1419
1420#[derive(Copy, Clone, Default, Eq, Ord, PartialOrd, PartialEq)]
1421pub struct DisplayPoint(BlockPoint);
1422
1423impl Debug for DisplayPoint {
1424    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
1425        f.write_fmt(format_args!(
1426            "DisplayPoint({}, {})",
1427            self.row().0,
1428            self.column()
1429        ))
1430    }
1431}
1432
1433impl Add for DisplayPoint {
1434    type Output = Self;
1435
1436    fn add(self, other: Self) -> Self::Output {
1437        DisplayPoint(BlockPoint(self.0.0 + other.0.0))
1438    }
1439}
1440
1441impl Sub for DisplayPoint {
1442    type Output = Self;
1443
1444    fn sub(self, other: Self) -> Self::Output {
1445        DisplayPoint(BlockPoint(self.0.0 - other.0.0))
1446    }
1447}
1448
1449#[derive(Debug, Copy, Clone, Default, Eq, Ord, PartialOrd, PartialEq, Deserialize, Hash)]
1450#[serde(transparent)]
1451pub struct DisplayRow(pub u32);
1452
1453impl Add<DisplayRow> for DisplayRow {
1454    type Output = Self;
1455
1456    fn add(self, other: Self) -> Self::Output {
1457        DisplayRow(self.0 + other.0)
1458    }
1459}
1460
1461impl Add<u32> for DisplayRow {
1462    type Output = Self;
1463
1464    fn add(self, other: u32) -> Self::Output {
1465        DisplayRow(self.0 + other)
1466    }
1467}
1468
1469impl Sub<DisplayRow> for DisplayRow {
1470    type Output = Self;
1471
1472    fn sub(self, other: Self) -> Self::Output {
1473        DisplayRow(self.0 - other.0)
1474    }
1475}
1476
1477impl Sub<u32> for DisplayRow {
1478    type Output = Self;
1479
1480    fn sub(self, other: u32) -> Self::Output {
1481        DisplayRow(self.0 - other)
1482    }
1483}
1484
1485impl DisplayPoint {
1486    pub fn new(row: DisplayRow, column: u32) -> Self {
1487        Self(BlockPoint(Point::new(row.0, column)))
1488    }
1489
1490    pub fn zero() -> Self {
1491        Self::new(DisplayRow(0), 0)
1492    }
1493
1494    pub fn is_zero(&self) -> bool {
1495        self.0.is_zero()
1496    }
1497
1498    pub fn row(self) -> DisplayRow {
1499        DisplayRow(self.0.row)
1500    }
1501
1502    pub fn column(self) -> u32 {
1503        self.0.column
1504    }
1505
1506    pub fn row_mut(&mut self) -> &mut u32 {
1507        &mut self.0.row
1508    }
1509
1510    pub fn column_mut(&mut self) -> &mut u32 {
1511        &mut self.0.column
1512    }
1513
1514    pub fn to_point(self, map: &DisplaySnapshot) -> Point {
1515        map.display_point_to_point(self, Bias::Left)
1516    }
1517
1518    pub fn to_offset(self, map: &DisplaySnapshot, bias: Bias) -> usize {
1519        let wrap_point = map.block_snapshot.to_wrap_point(self.0, bias);
1520        let tab_point = map.wrap_snapshot().to_tab_point(wrap_point);
1521        let fold_point = map.tab_snapshot().to_fold_point(tab_point, bias).0;
1522        let inlay_point = fold_point.to_inlay_point(map.fold_snapshot());
1523        map.inlay_snapshot()
1524            .to_buffer_offset(map.inlay_snapshot().to_offset(inlay_point))
1525    }
1526}
1527
1528impl ToDisplayPoint for usize {
1529    fn to_display_point(&self, map: &DisplaySnapshot) -> DisplayPoint {
1530        map.point_to_display_point(self.to_point(map.buffer_snapshot()), Bias::Left)
1531    }
1532}
1533
1534impl ToDisplayPoint for OffsetUtf16 {
1535    fn to_display_point(&self, map: &DisplaySnapshot) -> DisplayPoint {
1536        self.to_offset(map.buffer_snapshot()).to_display_point(map)
1537    }
1538}
1539
1540impl ToDisplayPoint for Point {
1541    fn to_display_point(&self, map: &DisplaySnapshot) -> DisplayPoint {
1542        map.point_to_display_point(*self, Bias::Left)
1543    }
1544}
1545
1546impl ToDisplayPoint for Anchor {
1547    fn to_display_point(&self, map: &DisplaySnapshot) -> DisplayPoint {
1548        self.to_point(map.buffer_snapshot()).to_display_point(map)
1549    }
1550}
1551
1552#[cfg(test)]
1553pub mod tests {
1554    use super::*;
1555    use crate::{
1556        movement,
1557        test::{marked_display_snapshot, test_font},
1558    };
1559    use Bias::*;
1560    use block_map::BlockPlacement;
1561    use gpui::{
1562        App, AppContext as _, BorrowAppContext, Element, Hsla, Rgba, div, font, observe, px,
1563    };
1564    use language::{
1565        Buffer, Diagnostic, DiagnosticEntry, DiagnosticSet, Language, LanguageConfig,
1566        LanguageMatcher,
1567    };
1568    use lsp::LanguageServerId;
1569    use project::Project;
1570    use rand::{Rng, prelude::*};
1571    use settings::{SettingsContent, SettingsStore};
1572    use smol::stream::StreamExt;
1573    use std::{env, sync::Arc};
1574    use text::PointUtf16;
1575    use theme::{LoadThemes, SyntaxTheme};
1576    use unindent::Unindent as _;
1577    use util::test::{marked_text_ranges, sample_text};
1578
1579    #[gpui::test(iterations = 100)]
1580    async fn test_random_display_map(cx: &mut gpui::TestAppContext, mut rng: StdRng) {
1581        cx.background_executor.set_block_on_ticks(0..=50);
1582        let operations = env::var("OPERATIONS")
1583            .map(|i| i.parse().expect("invalid `OPERATIONS` variable"))
1584            .unwrap_or(10);
1585
1586        let mut tab_size = rng.random_range(1..=4);
1587        let buffer_start_excerpt_header_height = rng.random_range(1..=5);
1588        let excerpt_header_height = rng.random_range(1..=5);
1589        let font_size = px(14.0);
1590        let max_wrap_width = 300.0;
1591        let mut wrap_width = if rng.random_bool(0.1) {
1592            None
1593        } else {
1594            Some(px(rng.random_range(0.0..=max_wrap_width)))
1595        };
1596
1597        log::info!("tab size: {}", tab_size);
1598        log::info!("wrap width: {:?}", wrap_width);
1599
1600        cx.update(|cx| {
1601            init_test(cx, |s| {
1602                s.project.all_languages.defaults.tab_size = NonZeroU32::new(tab_size)
1603            });
1604        });
1605
1606        let buffer = cx.update(|cx| {
1607            if rng.random() {
1608                let len = rng.random_range(0..10);
1609                let text = util::RandomCharIter::new(&mut rng)
1610                    .take(len)
1611                    .collect::<String>();
1612                MultiBuffer::build_simple(&text, cx)
1613            } else {
1614                MultiBuffer::build_random(&mut rng, cx)
1615            }
1616        });
1617
1618        let font = test_font();
1619        let map = cx.new(|cx| {
1620            DisplayMap::new(
1621                buffer.clone(),
1622                font,
1623                font_size,
1624                wrap_width,
1625                buffer_start_excerpt_header_height,
1626                excerpt_header_height,
1627                FoldPlaceholder::test(),
1628                DiagnosticSeverity::Warning,
1629                cx,
1630            )
1631        });
1632        let mut notifications = observe(&map, cx);
1633        let mut fold_count = 0;
1634        let mut blocks = Vec::new();
1635
1636        let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
1637        log::info!("buffer text: {:?}", snapshot.buffer_snapshot().text());
1638        log::info!("fold text: {:?}", snapshot.fold_snapshot().text());
1639        log::info!("tab text: {:?}", snapshot.tab_snapshot().text());
1640        log::info!("wrap text: {:?}", snapshot.wrap_snapshot().text());
1641        log::info!("block text: {:?}", snapshot.block_snapshot.text());
1642        log::info!("display text: {:?}", snapshot.text());
1643
1644        for _i in 0..operations {
1645            match rng.random_range(0..100) {
1646                0..=19 => {
1647                    wrap_width = if rng.random_bool(0.2) {
1648                        None
1649                    } else {
1650                        Some(px(rng.random_range(0.0..=max_wrap_width)))
1651                    };
1652                    log::info!("setting wrap width to {:?}", wrap_width);
1653                    map.update(cx, |map, cx| map.set_wrap_width(wrap_width, cx));
1654                }
1655                20..=29 => {
1656                    let mut tab_sizes = vec![1, 2, 3, 4];
1657                    tab_sizes.remove((tab_size - 1) as usize);
1658                    tab_size = *tab_sizes.choose(&mut rng).unwrap();
1659                    log::info!("setting tab size to {:?}", tab_size);
1660                    cx.update(|cx| {
1661                        cx.update_global::<SettingsStore, _>(|store, cx| {
1662                            store.update_user_settings(cx, |s| {
1663                                s.project.all_languages.defaults.tab_size =
1664                                    NonZeroU32::new(tab_size);
1665                            });
1666                        });
1667                    });
1668                }
1669                30..=44 => {
1670                    map.update(cx, |map, cx| {
1671                        if rng.random() || blocks.is_empty() {
1672                            let snapshot = map.snapshot(cx);
1673                            let buffer = snapshot.buffer_snapshot();
1674                            let block_properties = (0..rng.random_range(1..=1))
1675                                .map(|_| {
1676                                    let position = buffer.anchor_after(buffer.clip_offset(
1677                                        rng.random_range(0..=buffer.len()),
1678                                        Bias::Left,
1679                                    ));
1680
1681                                    let placement = if rng.random() {
1682                                        BlockPlacement::Above(position)
1683                                    } else {
1684                                        BlockPlacement::Below(position)
1685                                    };
1686                                    let height = rng.random_range(1..5);
1687                                    log::info!(
1688                                        "inserting block {:?} with height {}",
1689                                        placement.as_ref().map(|p| p.to_point(&buffer)),
1690                                        height
1691                                    );
1692                                    let priority = rng.random_range(1..100);
1693                                    BlockProperties {
1694                                        placement,
1695                                        style: BlockStyle::Fixed,
1696                                        height: Some(height),
1697                                        render: Arc::new(|_| div().into_any()),
1698                                        priority,
1699                                    }
1700                                })
1701                                .collect::<Vec<_>>();
1702                            blocks.extend(map.insert_blocks(block_properties, cx));
1703                        } else {
1704                            blocks.shuffle(&mut rng);
1705                            let remove_count = rng.random_range(1..=4.min(blocks.len()));
1706                            let block_ids_to_remove = (0..remove_count)
1707                                .map(|_| blocks.remove(rng.random_range(0..blocks.len())))
1708                                .collect();
1709                            log::info!("removing block ids {:?}", block_ids_to_remove);
1710                            map.remove_blocks(block_ids_to_remove, cx);
1711                        }
1712                    });
1713                }
1714                45..=79 => {
1715                    let mut ranges = Vec::new();
1716                    for _ in 0..rng.random_range(1..=3) {
1717                        buffer.read_with(cx, |buffer, cx| {
1718                            let buffer = buffer.read(cx);
1719                            let end = buffer.clip_offset(rng.random_range(0..=buffer.len()), Right);
1720                            let start = buffer.clip_offset(rng.random_range(0..=end), Left);
1721                            ranges.push(start..end);
1722                        });
1723                    }
1724
1725                    if rng.random() && fold_count > 0 {
1726                        log::info!("unfolding ranges: {:?}", ranges);
1727                        map.update(cx, |map, cx| {
1728                            map.unfold_intersecting(ranges, true, cx);
1729                        });
1730                    } else {
1731                        log::info!("folding ranges: {:?}", ranges);
1732                        map.update(cx, |map, cx| {
1733                            map.fold(
1734                                ranges
1735                                    .into_iter()
1736                                    .map(|range| Crease::simple(range, FoldPlaceholder::test()))
1737                                    .collect(),
1738                                cx,
1739                            );
1740                        });
1741                    }
1742                }
1743                _ => {
1744                    buffer.update(cx, |buffer, cx| buffer.randomly_mutate(&mut rng, 5, cx));
1745                }
1746            }
1747
1748            if map.read_with(cx, |map, cx| map.is_rewrapping(cx)) {
1749                notifications.next().await.unwrap();
1750            }
1751
1752            let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
1753            fold_count = snapshot.fold_count();
1754            log::info!("buffer text: {:?}", snapshot.buffer_snapshot().text());
1755            log::info!("fold text: {:?}", snapshot.fold_snapshot().text());
1756            log::info!("tab text: {:?}", snapshot.tab_snapshot().text());
1757            log::info!("wrap text: {:?}", snapshot.wrap_snapshot().text());
1758            log::info!("block text: {:?}", snapshot.block_snapshot.text());
1759            log::info!("display text: {:?}", snapshot.text());
1760
1761            // Line boundaries
1762            let buffer = snapshot.buffer_snapshot();
1763            for _ in 0..5 {
1764                let row = rng.random_range(0..=buffer.max_point().row);
1765                let column = rng.random_range(0..=buffer.line_len(MultiBufferRow(row)));
1766                let point = buffer.clip_point(Point::new(row, column), Left);
1767
1768                let (prev_buffer_bound, prev_display_bound) = snapshot.prev_line_boundary(point);
1769                let (next_buffer_bound, next_display_bound) = snapshot.next_line_boundary(point);
1770
1771                assert!(prev_buffer_bound <= point);
1772                assert!(next_buffer_bound >= point);
1773                assert_eq!(prev_buffer_bound.column, 0);
1774                assert_eq!(prev_display_bound.column(), 0);
1775                if next_buffer_bound < buffer.max_point() {
1776                    assert_eq!(buffer.chars_at(next_buffer_bound).next(), Some('\n'));
1777                }
1778
1779                assert_eq!(
1780                    prev_display_bound,
1781                    prev_buffer_bound.to_display_point(&snapshot),
1782                    "row boundary before {:?}. reported buffer row boundary: {:?}",
1783                    point,
1784                    prev_buffer_bound
1785                );
1786                assert_eq!(
1787                    next_display_bound,
1788                    next_buffer_bound.to_display_point(&snapshot),
1789                    "display row boundary after {:?}. reported buffer row boundary: {:?}",
1790                    point,
1791                    next_buffer_bound
1792                );
1793                assert_eq!(
1794                    prev_buffer_bound,
1795                    prev_display_bound.to_point(&snapshot),
1796                    "row boundary before {:?}. reported display row boundary: {:?}",
1797                    point,
1798                    prev_display_bound
1799                );
1800                assert_eq!(
1801                    next_buffer_bound,
1802                    next_display_bound.to_point(&snapshot),
1803                    "row boundary after {:?}. reported display row boundary: {:?}",
1804                    point,
1805                    next_display_bound
1806                );
1807            }
1808
1809            // Movement
1810            let min_point = snapshot.clip_point(DisplayPoint::new(DisplayRow(0), 0), Left);
1811            let max_point = snapshot.clip_point(snapshot.max_point(), Right);
1812            for _ in 0..5 {
1813                let row = rng.random_range(0..=snapshot.max_point().row().0);
1814                let column = rng.random_range(0..=snapshot.line_len(DisplayRow(row)));
1815                let point = snapshot.clip_point(DisplayPoint::new(DisplayRow(row), column), Left);
1816
1817                log::info!("Moving from point {:?}", point);
1818
1819                let moved_right = movement::right(&snapshot, point);
1820                log::info!("Right {:?}", moved_right);
1821                if point < max_point {
1822                    assert!(moved_right > point);
1823                    if point.column() == snapshot.line_len(point.row())
1824                        || snapshot.soft_wrap_indent(point.row()).is_some()
1825                            && point.column() == snapshot.line_len(point.row()) - 1
1826                    {
1827                        assert!(moved_right.row() > point.row());
1828                    }
1829                } else {
1830                    assert_eq!(moved_right, point);
1831                }
1832
1833                let moved_left = movement::left(&snapshot, point);
1834                log::info!("Left {:?}", moved_left);
1835                if point > min_point {
1836                    assert!(moved_left < point);
1837                    if point.column() == 0 {
1838                        assert!(moved_left.row() < point.row());
1839                    }
1840                } else {
1841                    assert_eq!(moved_left, point);
1842                }
1843            }
1844        }
1845    }
1846
1847    #[gpui::test(retries = 5)]
1848    async fn test_soft_wraps(cx: &mut gpui::TestAppContext) {
1849        cx.background_executor
1850            .set_block_on_ticks(usize::MAX..=usize::MAX);
1851        cx.update(|cx| {
1852            init_test(cx, |_| {});
1853        });
1854
1855        let mut cx = crate::test::editor_test_context::EditorTestContext::new(cx).await;
1856        let editor = cx.editor.clone();
1857        let window = cx.window;
1858
1859        _ = cx.update_window(window, |_, window, cx| {
1860            let text_layout_details =
1861                editor.update(cx, |editor, _cx| editor.text_layout_details(window));
1862
1863            let font_size = px(12.0);
1864            let wrap_width = Some(px(96.));
1865
1866            let text = "one two three four five\nsix seven eight";
1867            let buffer = MultiBuffer::build_simple(text, cx);
1868            let map = cx.new(|cx| {
1869                DisplayMap::new(
1870                    buffer.clone(),
1871                    font("Helvetica"),
1872                    font_size,
1873                    wrap_width,
1874                    1,
1875                    1,
1876                    FoldPlaceholder::test(),
1877                    DiagnosticSeverity::Warning,
1878                    cx,
1879                )
1880            });
1881
1882            let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
1883            assert_eq!(
1884                snapshot.text_chunks(DisplayRow(0)).collect::<String>(),
1885                "one two \nthree four \nfive\nsix seven \neight"
1886            );
1887            assert_eq!(
1888                snapshot.clip_point(DisplayPoint::new(DisplayRow(0), 8), Bias::Left),
1889                DisplayPoint::new(DisplayRow(0), 7)
1890            );
1891            assert_eq!(
1892                snapshot.clip_point(DisplayPoint::new(DisplayRow(0), 8), Bias::Right),
1893                DisplayPoint::new(DisplayRow(1), 0)
1894            );
1895            assert_eq!(
1896                movement::right(&snapshot, DisplayPoint::new(DisplayRow(0), 7)),
1897                DisplayPoint::new(DisplayRow(1), 0)
1898            );
1899            assert_eq!(
1900                movement::left(&snapshot, DisplayPoint::new(DisplayRow(1), 0)),
1901                DisplayPoint::new(DisplayRow(0), 7)
1902            );
1903
1904            let x = snapshot
1905                .x_for_display_point(DisplayPoint::new(DisplayRow(1), 10), &text_layout_details);
1906            assert_eq!(
1907                movement::up(
1908                    &snapshot,
1909                    DisplayPoint::new(DisplayRow(1), 10),
1910                    language::SelectionGoal::None,
1911                    false,
1912                    &text_layout_details,
1913                ),
1914                (
1915                    DisplayPoint::new(DisplayRow(0), 7),
1916                    language::SelectionGoal::HorizontalPosition(f64::from(x))
1917                )
1918            );
1919            assert_eq!(
1920                movement::down(
1921                    &snapshot,
1922                    DisplayPoint::new(DisplayRow(0), 7),
1923                    language::SelectionGoal::HorizontalPosition(f64::from(x)),
1924                    false,
1925                    &text_layout_details
1926                ),
1927                (
1928                    DisplayPoint::new(DisplayRow(1), 10),
1929                    language::SelectionGoal::HorizontalPosition(f64::from(x))
1930                )
1931            );
1932            assert_eq!(
1933                movement::down(
1934                    &snapshot,
1935                    DisplayPoint::new(DisplayRow(1), 10),
1936                    language::SelectionGoal::HorizontalPosition(f64::from(x)),
1937                    false,
1938                    &text_layout_details
1939                ),
1940                (
1941                    DisplayPoint::new(DisplayRow(2), 4),
1942                    language::SelectionGoal::HorizontalPosition(f64::from(x))
1943                )
1944            );
1945
1946            let ix = snapshot.buffer_snapshot().text().find("seven").unwrap();
1947            buffer.update(cx, |buffer, cx| {
1948                buffer.edit([(ix..ix, "and ")], None, cx);
1949            });
1950
1951            let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
1952            assert_eq!(
1953                snapshot.text_chunks(DisplayRow(1)).collect::<String>(),
1954                "three four \nfive\nsix and \nseven eight"
1955            );
1956
1957            // Re-wrap on font size changes
1958            map.update(cx, |map, cx| {
1959                map.set_font(font("Helvetica"), font_size + Pixels::from(3.), cx)
1960            });
1961
1962            let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
1963            assert_eq!(
1964                snapshot.text_chunks(DisplayRow(1)).collect::<String>(),
1965                "three \nfour five\nsix and \nseven \neight"
1966            )
1967        });
1968    }
1969
1970    #[gpui::test]
1971    fn test_text_chunks(cx: &mut gpui::App) {
1972        init_test(cx, |_| {});
1973
1974        let text = sample_text(6, 6, 'a');
1975        let buffer = MultiBuffer::build_simple(&text, cx);
1976
1977        let font_size = px(14.0);
1978        let map = cx.new(|cx| {
1979            DisplayMap::new(
1980                buffer.clone(),
1981                font("Helvetica"),
1982                font_size,
1983                None,
1984                1,
1985                1,
1986                FoldPlaceholder::test(),
1987                DiagnosticSeverity::Warning,
1988                cx,
1989            )
1990        });
1991
1992        buffer.update(cx, |buffer, cx| {
1993            buffer.edit(
1994                vec![
1995                    (
1996                        MultiBufferPoint::new(1, 0)..MultiBufferPoint::new(1, 0),
1997                        "\t",
1998                    ),
1999                    (
2000                        MultiBufferPoint::new(1, 1)..MultiBufferPoint::new(1, 1),
2001                        "\t",
2002                    ),
2003                    (
2004                        MultiBufferPoint::new(2, 1)..MultiBufferPoint::new(2, 1),
2005                        "\t",
2006                    ),
2007                ],
2008                None,
2009                cx,
2010            )
2011        });
2012
2013        assert_eq!(
2014            map.update(cx, |map, cx| map.snapshot(cx))
2015                .text_chunks(DisplayRow(1))
2016                .collect::<String>()
2017                .lines()
2018                .next(),
2019            Some("    b   bbbbb")
2020        );
2021        assert_eq!(
2022            map.update(cx, |map, cx| map.snapshot(cx))
2023                .text_chunks(DisplayRow(2))
2024                .collect::<String>()
2025                .lines()
2026                .next(),
2027            Some("c   ccccc")
2028        );
2029    }
2030
2031    #[gpui::test]
2032    fn test_inlays_with_newlines_after_blocks(cx: &mut gpui::TestAppContext) {
2033        cx.update(|cx| init_test(cx, |_| {}));
2034
2035        let buffer = cx.new(|cx| Buffer::local("a", cx));
2036        let buffer = cx.new(|cx| MultiBuffer::singleton(buffer, cx));
2037        let buffer_snapshot = buffer.read_with(cx, |buffer, cx| buffer.snapshot(cx));
2038
2039        let font_size = px(14.0);
2040        let map = cx.new(|cx| {
2041            DisplayMap::new(
2042                buffer.clone(),
2043                font("Helvetica"),
2044                font_size,
2045                None,
2046                1,
2047                1,
2048                FoldPlaceholder::test(),
2049                DiagnosticSeverity::Warning,
2050                cx,
2051            )
2052        });
2053
2054        map.update(cx, |map, cx| {
2055            map.insert_blocks(
2056                [BlockProperties {
2057                    placement: BlockPlacement::Above(
2058                        buffer_snapshot.anchor_before(Point::new(0, 0)),
2059                    ),
2060                    height: Some(2),
2061                    style: BlockStyle::Sticky,
2062                    render: Arc::new(|_| div().into_any()),
2063                    priority: 0,
2064                }],
2065                cx,
2066            );
2067        });
2068        map.update(cx, |m, cx| assert_eq!(m.snapshot(cx).text(), "\n\na"));
2069
2070        map.update(cx, |map, cx| {
2071            map.splice_inlays(
2072                &[],
2073                vec![Inlay::edit_prediction(
2074                    0,
2075                    buffer_snapshot.anchor_after(0),
2076                    "\n",
2077                )],
2078                cx,
2079            );
2080        });
2081        map.update(cx, |m, cx| assert_eq!(m.snapshot(cx).text(), "\n\n\na"));
2082
2083        // Regression test: updating the display map does not crash when a
2084        // block is immediately followed by a multi-line inlay.
2085        buffer.update(cx, |buffer, cx| {
2086            buffer.edit([(1..1, "b")], None, cx);
2087        });
2088        map.update(cx, |m, cx| assert_eq!(m.snapshot(cx).text(), "\n\n\nab"));
2089    }
2090
2091    #[gpui::test]
2092    async fn test_chunks(cx: &mut gpui::TestAppContext) {
2093        let text = r#"
2094            fn outer() {}
2095
2096            mod module {
2097                fn inner() {}
2098            }"#
2099        .unindent();
2100
2101        let theme =
2102            SyntaxTheme::new_test(vec![("mod.body", Hsla::red()), ("fn.name", Hsla::blue())]);
2103        let language = Arc::new(
2104            Language::new(
2105                LanguageConfig {
2106                    name: "Test".into(),
2107                    matcher: LanguageMatcher {
2108                        path_suffixes: vec![".test".to_string()],
2109                        ..Default::default()
2110                    },
2111                    ..Default::default()
2112                },
2113                Some(tree_sitter_rust::LANGUAGE.into()),
2114            )
2115            .with_highlights_query(
2116                r#"
2117                (mod_item name: (identifier) body: _ @mod.body)
2118                (function_item name: (identifier) @fn.name)
2119                "#,
2120            )
2121            .unwrap(),
2122        );
2123        language.set_theme(&theme);
2124
2125        cx.update(|cx| {
2126            init_test(cx, |s| {
2127                s.project.all_languages.defaults.tab_size = Some(2.try_into().unwrap())
2128            })
2129        });
2130
2131        let buffer = cx.new(|cx| Buffer::local(text, cx).with_language(language, cx));
2132        cx.condition(&buffer, |buf, _| !buf.is_parsing()).await;
2133        let buffer = cx.new(|cx| MultiBuffer::singleton(buffer, cx));
2134
2135        let font_size = px(14.0);
2136
2137        let map = cx.new(|cx| {
2138            DisplayMap::new(
2139                buffer,
2140                font("Helvetica"),
2141                font_size,
2142                None,
2143                1,
2144                1,
2145                FoldPlaceholder::test(),
2146                DiagnosticSeverity::Warning,
2147                cx,
2148            )
2149        });
2150        assert_eq!(
2151            cx.update(|cx| syntax_chunks(DisplayRow(0)..DisplayRow(5), &map, &theme, cx)),
2152            vec![
2153                ("fn ".to_string(), None),
2154                ("outer".to_string(), Some(Hsla::blue())),
2155                ("() {}\n\nmod module ".to_string(), None),
2156                ("{\n    fn ".to_string(), Some(Hsla::red())),
2157                ("inner".to_string(), Some(Hsla::blue())),
2158                ("() {}\n}".to_string(), Some(Hsla::red())),
2159            ]
2160        );
2161        assert_eq!(
2162            cx.update(|cx| syntax_chunks(DisplayRow(3)..DisplayRow(5), &map, &theme, cx)),
2163            vec![
2164                ("    fn ".to_string(), Some(Hsla::red())),
2165                ("inner".to_string(), Some(Hsla::blue())),
2166                ("() {}\n}".to_string(), Some(Hsla::red())),
2167            ]
2168        );
2169
2170        map.update(cx, |map, cx| {
2171            map.fold(
2172                vec![Crease::simple(
2173                    MultiBufferPoint::new(0, 6)..MultiBufferPoint::new(3, 2),
2174                    FoldPlaceholder::test(),
2175                )],
2176                cx,
2177            )
2178        });
2179        assert_eq!(
2180            cx.update(|cx| syntax_chunks(DisplayRow(0)..DisplayRow(2), &map, &theme, cx)),
2181            vec![
2182                ("fn ".to_string(), None),
2183                ("out".to_string(), Some(Hsla::blue())),
2184                ("".to_string(), None),
2185                ("  fn ".to_string(), Some(Hsla::red())),
2186                ("inner".to_string(), Some(Hsla::blue())),
2187                ("() {}\n}".to_string(), Some(Hsla::red())),
2188            ]
2189        );
2190    }
2191
2192    #[gpui::test]
2193    async fn test_chunks_with_syntax_highlighting_across_blocks(cx: &mut gpui::TestAppContext) {
2194        cx.background_executor
2195            .set_block_on_ticks(usize::MAX..=usize::MAX);
2196
2197        let text = r#"
2198            const A: &str = "
2199                one
2200                two
2201                three
2202            ";
2203            const B: &str = "four";
2204        "#
2205        .unindent();
2206
2207        let theme = SyntaxTheme::new_test(vec![
2208            ("string", Hsla::red()),
2209            ("punctuation", Hsla::blue()),
2210            ("keyword", Hsla::green()),
2211        ]);
2212        let language = Arc::new(
2213            Language::new(
2214                LanguageConfig {
2215                    name: "Rust".into(),
2216                    ..Default::default()
2217                },
2218                Some(tree_sitter_rust::LANGUAGE.into()),
2219            )
2220            .with_highlights_query(
2221                r#"
2222                (string_literal) @string
2223                "const" @keyword
2224                [":" ";"] @punctuation
2225                "#,
2226            )
2227            .unwrap(),
2228        );
2229        language.set_theme(&theme);
2230
2231        cx.update(|cx| init_test(cx, |_| {}));
2232
2233        let buffer = cx.new(|cx| Buffer::local(text, cx).with_language(language, cx));
2234        cx.condition(&buffer, |buf, _| !buf.is_parsing()).await;
2235        let buffer = cx.new(|cx| MultiBuffer::singleton(buffer, cx));
2236        let buffer_snapshot = buffer.read_with(cx, |buffer, cx| buffer.snapshot(cx));
2237
2238        let map = cx.new(|cx| {
2239            DisplayMap::new(
2240                buffer,
2241                font("Courier"),
2242                px(16.0),
2243                None,
2244                1,
2245                1,
2246                FoldPlaceholder::test(),
2247                DiagnosticSeverity::Warning,
2248                cx,
2249            )
2250        });
2251
2252        // Insert two blocks in the middle of a multi-line string literal.
2253        // The second block has zero height.
2254        map.update(cx, |map, cx| {
2255            map.insert_blocks(
2256                [
2257                    BlockProperties {
2258                        placement: BlockPlacement::Below(
2259                            buffer_snapshot.anchor_before(Point::new(1, 0)),
2260                        ),
2261                        height: Some(1),
2262                        style: BlockStyle::Sticky,
2263                        render: Arc::new(|_| div().into_any()),
2264                        priority: 0,
2265                    },
2266                    BlockProperties {
2267                        placement: BlockPlacement::Below(
2268                            buffer_snapshot.anchor_before(Point::new(2, 0)),
2269                        ),
2270                        height: None,
2271                        style: BlockStyle::Sticky,
2272                        render: Arc::new(|_| div().into_any()),
2273                        priority: 0,
2274                    },
2275                ],
2276                cx,
2277            )
2278        });
2279
2280        pretty_assertions::assert_eq!(
2281            cx.update(|cx| syntax_chunks(DisplayRow(0)..DisplayRow(7), &map, &theme, cx)),
2282            [
2283                ("const".into(), Some(Hsla::green())),
2284                (" A".into(), None),
2285                (":".into(), Some(Hsla::blue())),
2286                (" &str = ".into(), None),
2287                ("\"\n    one\n".into(), Some(Hsla::red())),
2288                ("\n".into(), None),
2289                ("    two\n    three\n\"".into(), Some(Hsla::red())),
2290                (";".into(), Some(Hsla::blue())),
2291                ("\n".into(), None),
2292                ("const".into(), Some(Hsla::green())),
2293                (" B".into(), None),
2294                (":".into(), Some(Hsla::blue())),
2295                (" &str = ".into(), None),
2296                ("\"four\"".into(), Some(Hsla::red())),
2297                (";".into(), Some(Hsla::blue())),
2298                ("\n".into(), None),
2299            ]
2300        );
2301    }
2302
2303    #[gpui::test]
2304    async fn test_chunks_with_diagnostics_across_blocks(cx: &mut gpui::TestAppContext) {
2305        cx.background_executor
2306            .set_block_on_ticks(usize::MAX..=usize::MAX);
2307
2308        let text = r#"
2309            struct A {
2310                b: usize;
2311            }
2312            const c: usize = 1;
2313        "#
2314        .unindent();
2315
2316        cx.update(|cx| init_test(cx, |_| {}));
2317
2318        let buffer = cx.new(|cx| Buffer::local(text, cx));
2319
2320        buffer.update(cx, |buffer, cx| {
2321            buffer.update_diagnostics(
2322                LanguageServerId(0),
2323                DiagnosticSet::new(
2324                    [DiagnosticEntry {
2325                        range: PointUtf16::new(0, 0)..PointUtf16::new(2, 1),
2326                        diagnostic: Diagnostic {
2327                            severity: lsp::DiagnosticSeverity::ERROR,
2328                            group_id: 1,
2329                            message: "hi".into(),
2330                            ..Default::default()
2331                        },
2332                    }],
2333                    buffer,
2334                ),
2335                cx,
2336            )
2337        });
2338
2339        let buffer = cx.new(|cx| MultiBuffer::singleton(buffer, cx));
2340        let buffer_snapshot = buffer.read_with(cx, |buffer, cx| buffer.snapshot(cx));
2341
2342        let map = cx.new(|cx| {
2343            DisplayMap::new(
2344                buffer,
2345                font("Courier"),
2346                px(16.0),
2347                None,
2348                1,
2349                1,
2350                FoldPlaceholder::test(),
2351                DiagnosticSeverity::Warning,
2352                cx,
2353            )
2354        });
2355
2356        let black = gpui::black().to_rgb();
2357        let red = gpui::red().to_rgb();
2358
2359        // Insert a block in the middle of a multi-line diagnostic.
2360        map.update(cx, |map, cx| {
2361            map.highlight_text(
2362                HighlightKey::Type(TypeId::of::<usize>()),
2363                vec![
2364                    buffer_snapshot.anchor_before(Point::new(3, 9))
2365                        ..buffer_snapshot.anchor_after(Point::new(3, 14)),
2366                    buffer_snapshot.anchor_before(Point::new(3, 17))
2367                        ..buffer_snapshot.anchor_after(Point::new(3, 18)),
2368                ],
2369                red.into(),
2370            );
2371            map.insert_blocks(
2372                [BlockProperties {
2373                    placement: BlockPlacement::Below(
2374                        buffer_snapshot.anchor_before(Point::new(1, 0)),
2375                    ),
2376                    height: Some(1),
2377                    style: BlockStyle::Sticky,
2378                    render: Arc::new(|_| div().into_any()),
2379                    priority: 0,
2380                }],
2381                cx,
2382            )
2383        });
2384
2385        let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
2386        let mut chunks = Vec::<(String, Option<lsp::DiagnosticSeverity>, Rgba)>::new();
2387        for chunk in snapshot.chunks(DisplayRow(0)..DisplayRow(5), true, Default::default()) {
2388            let color = chunk
2389                .highlight_style
2390                .and_then(|style| style.color)
2391                .map_or(black, |color| color.to_rgb());
2392            if let Some((last_chunk, last_severity, last_color)) = chunks.last_mut()
2393                && *last_severity == chunk.diagnostic_severity
2394                && *last_color == color
2395            {
2396                last_chunk.push_str(chunk.text);
2397                continue;
2398            }
2399
2400            chunks.push((chunk.text.to_string(), chunk.diagnostic_severity, color));
2401        }
2402
2403        assert_eq!(
2404            chunks,
2405            [
2406                (
2407                    "struct A {\n    b: usize;\n".into(),
2408                    Some(lsp::DiagnosticSeverity::ERROR),
2409                    black
2410                ),
2411                ("\n".into(), None, black),
2412                ("}".into(), Some(lsp::DiagnosticSeverity::ERROR), black),
2413                ("\nconst c: ".into(), None, black),
2414                ("usize".into(), None, red),
2415                (" = ".into(), None, black),
2416                ("1".into(), None, red),
2417                (";\n".into(), None, black),
2418            ]
2419        );
2420    }
2421
2422    #[gpui::test]
2423    async fn test_point_translation_with_replace_blocks(cx: &mut gpui::TestAppContext) {
2424        cx.background_executor
2425            .set_block_on_ticks(usize::MAX..=usize::MAX);
2426
2427        cx.update(|cx| init_test(cx, |_| {}));
2428
2429        let buffer = cx.update(|cx| MultiBuffer::build_simple("abcde\nfghij\nklmno\npqrst", cx));
2430        let buffer_snapshot = buffer.read_with(cx, |buffer, cx| buffer.snapshot(cx));
2431        let map = cx.new(|cx| {
2432            DisplayMap::new(
2433                buffer.clone(),
2434                font("Courier"),
2435                px(16.0),
2436                None,
2437                1,
2438                1,
2439                FoldPlaceholder::test(),
2440                DiagnosticSeverity::Warning,
2441                cx,
2442            )
2443        });
2444
2445        let snapshot = map.update(cx, |map, cx| {
2446            map.insert_blocks(
2447                [BlockProperties {
2448                    placement: BlockPlacement::Replace(
2449                        buffer_snapshot.anchor_before(Point::new(1, 2))
2450                            ..=buffer_snapshot.anchor_after(Point::new(2, 3)),
2451                    ),
2452                    height: Some(4),
2453                    style: BlockStyle::Fixed,
2454                    render: Arc::new(|_| div().into_any()),
2455                    priority: 0,
2456                }],
2457                cx,
2458            );
2459            map.snapshot(cx)
2460        });
2461
2462        assert_eq!(snapshot.text(), "abcde\n\n\n\n\npqrst");
2463
2464        let point_to_display_points = [
2465            (Point::new(1, 0), DisplayPoint::new(DisplayRow(1), 0)),
2466            (Point::new(2, 0), DisplayPoint::new(DisplayRow(1), 0)),
2467            (Point::new(3, 0), DisplayPoint::new(DisplayRow(5), 0)),
2468        ];
2469        for (buffer_point, display_point) in point_to_display_points {
2470            assert_eq!(
2471                snapshot.point_to_display_point(buffer_point, Bias::Left),
2472                display_point,
2473                "point_to_display_point({:?}, Bias::Left)",
2474                buffer_point
2475            );
2476            assert_eq!(
2477                snapshot.point_to_display_point(buffer_point, Bias::Right),
2478                display_point,
2479                "point_to_display_point({:?}, Bias::Right)",
2480                buffer_point
2481            );
2482        }
2483
2484        let display_points_to_points = [
2485            (
2486                DisplayPoint::new(DisplayRow(1), 0),
2487                Point::new(1, 0),
2488                Point::new(2, 5),
2489            ),
2490            (
2491                DisplayPoint::new(DisplayRow(2), 0),
2492                Point::new(1, 0),
2493                Point::new(2, 5),
2494            ),
2495            (
2496                DisplayPoint::new(DisplayRow(3), 0),
2497                Point::new(1, 0),
2498                Point::new(2, 5),
2499            ),
2500            (
2501                DisplayPoint::new(DisplayRow(4), 0),
2502                Point::new(1, 0),
2503                Point::new(2, 5),
2504            ),
2505            (
2506                DisplayPoint::new(DisplayRow(5), 0),
2507                Point::new(3, 0),
2508                Point::new(3, 0),
2509            ),
2510        ];
2511        for (display_point, left_buffer_point, right_buffer_point) in display_points_to_points {
2512            assert_eq!(
2513                snapshot.display_point_to_point(display_point, Bias::Left),
2514                left_buffer_point,
2515                "display_point_to_point({:?}, Bias::Left)",
2516                display_point
2517            );
2518            assert_eq!(
2519                snapshot.display_point_to_point(display_point, Bias::Right),
2520                right_buffer_point,
2521                "display_point_to_point({:?}, Bias::Right)",
2522                display_point
2523            );
2524        }
2525    }
2526
2527    #[gpui::test]
2528    async fn test_chunks_with_soft_wrapping(cx: &mut gpui::TestAppContext) {
2529        cx.background_executor
2530            .set_block_on_ticks(usize::MAX..=usize::MAX);
2531
2532        let text = r#"
2533            fn outer() {}
2534
2535            mod module {
2536                fn inner() {}
2537            }"#
2538        .unindent();
2539
2540        let theme =
2541            SyntaxTheme::new_test(vec![("mod.body", Hsla::red()), ("fn.name", Hsla::blue())]);
2542        let language = Arc::new(
2543            Language::new(
2544                LanguageConfig {
2545                    name: "Test".into(),
2546                    matcher: LanguageMatcher {
2547                        path_suffixes: vec![".test".to_string()],
2548                        ..Default::default()
2549                    },
2550                    ..Default::default()
2551                },
2552                Some(tree_sitter_rust::LANGUAGE.into()),
2553            )
2554            .with_highlights_query(
2555                r#"
2556                (mod_item name: (identifier) body: _ @mod.body)
2557                (function_item name: (identifier) @fn.name)
2558                "#,
2559            )
2560            .unwrap(),
2561        );
2562        language.set_theme(&theme);
2563
2564        cx.update(|cx| init_test(cx, |_| {}));
2565
2566        let buffer = cx.new(|cx| Buffer::local(text, cx).with_language(language, cx));
2567        cx.condition(&buffer, |buf, _| !buf.is_parsing()).await;
2568        let buffer = cx.new(|cx| MultiBuffer::singleton(buffer, cx));
2569
2570        let font_size = px(16.0);
2571
2572        let map = cx.new(|cx| {
2573            DisplayMap::new(
2574                buffer,
2575                font("Courier"),
2576                font_size,
2577                Some(px(40.0)),
2578                1,
2579                1,
2580                FoldPlaceholder::test(),
2581                DiagnosticSeverity::Warning,
2582                cx,
2583            )
2584        });
2585        assert_eq!(
2586            cx.update(|cx| syntax_chunks(DisplayRow(0)..DisplayRow(5), &map, &theme, cx)),
2587            [
2588                ("fn \n".to_string(), None),
2589                ("oute".to_string(), Some(Hsla::blue())),
2590                ("\n".to_string(), None),
2591                ("r".to_string(), Some(Hsla::blue())),
2592                ("() \n{}\n\n".to_string(), None),
2593            ]
2594        );
2595        assert_eq!(
2596            cx.update(|cx| syntax_chunks(DisplayRow(3)..DisplayRow(5), &map, &theme, cx)),
2597            [("{}\n\n".to_string(), None)]
2598        );
2599
2600        map.update(cx, |map, cx| {
2601            map.fold(
2602                vec![Crease::simple(
2603                    MultiBufferPoint::new(0, 6)..MultiBufferPoint::new(3, 2),
2604                    FoldPlaceholder::test(),
2605                )],
2606                cx,
2607            )
2608        });
2609        assert_eq!(
2610            cx.update(|cx| syntax_chunks(DisplayRow(1)..DisplayRow(4), &map, &theme, cx)),
2611            [
2612                ("out".to_string(), Some(Hsla::blue())),
2613                ("\n".to_string(), None),
2614                ("  ".to_string(), Some(Hsla::red())),
2615                ("\n".to_string(), None),
2616                ("fn ".to_string(), Some(Hsla::red())),
2617                ("i".to_string(), Some(Hsla::blue())),
2618                ("\n".to_string(), None)
2619            ]
2620        );
2621    }
2622
2623    #[gpui::test]
2624    async fn test_chunks_with_text_highlights(cx: &mut gpui::TestAppContext) {
2625        cx.update(|cx| init_test(cx, |_| {}));
2626
2627        let theme =
2628            SyntaxTheme::new_test(vec![("operator", Hsla::red()), ("string", Hsla::green())]);
2629        let language = Arc::new(
2630            Language::new(
2631                LanguageConfig {
2632                    name: "Test".into(),
2633                    matcher: LanguageMatcher {
2634                        path_suffixes: vec![".test".to_string()],
2635                        ..Default::default()
2636                    },
2637                    ..Default::default()
2638                },
2639                Some(tree_sitter_rust::LANGUAGE.into()),
2640            )
2641            .with_highlights_query(
2642                r#"
2643                ":" @operator
2644                (string_literal) @string
2645                "#,
2646            )
2647            .unwrap(),
2648        );
2649        language.set_theme(&theme);
2650
2651        let (text, highlighted_ranges) = marked_text_ranges(r#"constˇ «a»«:» B = "c «d»""#, false);
2652
2653        let buffer = cx.new(|cx| Buffer::local(text, cx).with_language(language, cx));
2654        cx.condition(&buffer, |buf, _| !buf.is_parsing()).await;
2655
2656        let buffer = cx.new(|cx| MultiBuffer::singleton(buffer, cx));
2657        let buffer_snapshot = buffer.read_with(cx, |buffer, cx| buffer.snapshot(cx));
2658
2659        let font_size = px(16.0);
2660        let map = cx.new(|cx| {
2661            DisplayMap::new(
2662                buffer,
2663                font("Courier"),
2664                font_size,
2665                None,
2666                1,
2667                1,
2668                FoldPlaceholder::test(),
2669                DiagnosticSeverity::Warning,
2670                cx,
2671            )
2672        });
2673
2674        enum MyType {}
2675
2676        let style = HighlightStyle {
2677            color: Some(Hsla::blue()),
2678            ..Default::default()
2679        };
2680
2681        map.update(cx, |map, _cx| {
2682            map.highlight_text(
2683                HighlightKey::Type(TypeId::of::<MyType>()),
2684                highlighted_ranges
2685                    .into_iter()
2686                    .map(|range| {
2687                        buffer_snapshot.anchor_before(range.start)
2688                            ..buffer_snapshot.anchor_before(range.end)
2689                    })
2690                    .collect(),
2691                style,
2692            );
2693        });
2694
2695        assert_eq!(
2696            cx.update(|cx| chunks(DisplayRow(0)..DisplayRow(10), &map, &theme, cx)),
2697            [
2698                ("const ".to_string(), None, None),
2699                ("a".to_string(), None, Some(Hsla::blue())),
2700                (":".to_string(), Some(Hsla::red()), Some(Hsla::blue())),
2701                (" B = ".to_string(), None, None),
2702                ("\"c ".to_string(), Some(Hsla::green()), None),
2703                ("d".to_string(), Some(Hsla::green()), Some(Hsla::blue())),
2704                ("\"".to_string(), Some(Hsla::green()), None),
2705            ]
2706        );
2707    }
2708
2709    #[gpui::test]
2710    fn test_clip_point(cx: &mut gpui::App) {
2711        init_test(cx, |_| {});
2712
2713        fn assert(text: &str, shift_right: bool, bias: Bias, cx: &mut gpui::App) {
2714            let (unmarked_snapshot, mut markers) = marked_display_snapshot(text, cx);
2715
2716            match bias {
2717                Bias::Left => {
2718                    if shift_right {
2719                        *markers[1].column_mut() += 1;
2720                    }
2721
2722                    assert_eq!(unmarked_snapshot.clip_point(markers[1], bias), markers[0])
2723                }
2724                Bias::Right => {
2725                    if shift_right {
2726                        *markers[0].column_mut() += 1;
2727                    }
2728
2729                    assert_eq!(unmarked_snapshot.clip_point(markers[0], bias), markers[1])
2730                }
2731            };
2732        }
2733
2734        use Bias::{Left, Right};
2735        assert("ˇˇα", false, Left, cx);
2736        assert("ˇˇα", true, Left, cx);
2737        assert("ˇˇα", false, Right, cx);
2738        assert("ˇαˇ", true, Right, cx);
2739        assert("ˇˇ✋", false, Left, cx);
2740        assert("ˇˇ✋", true, Left, cx);
2741        assert("ˇˇ✋", false, Right, cx);
2742        assert("ˇ✋ˇ", true, Right, cx);
2743        assert("ˇˇ🍐", false, Left, cx);
2744        assert("ˇˇ🍐", true, Left, cx);
2745        assert("ˇˇ🍐", false, Right, cx);
2746        assert("ˇ🍐ˇ", true, Right, cx);
2747        assert("ˇˇ\t", false, Left, cx);
2748        assert("ˇˇ\t", true, Left, cx);
2749        assert("ˇˇ\t", false, Right, cx);
2750        assert("ˇ\tˇ", true, Right, cx);
2751        assert(" ˇˇ\t", false, Left, cx);
2752        assert(" ˇˇ\t", true, Left, cx);
2753        assert(" ˇˇ\t", false, Right, cx);
2754        assert(" ˇ\tˇ", true, Right, cx);
2755        assert("   ˇˇ\t", false, Left, cx);
2756        assert("   ˇˇ\t", false, Right, cx);
2757    }
2758
2759    #[gpui::test]
2760    fn test_clip_at_line_ends(cx: &mut gpui::App) {
2761        init_test(cx, |_| {});
2762
2763        fn assert(text: &str, cx: &mut gpui::App) {
2764            let (mut unmarked_snapshot, markers) = marked_display_snapshot(text, cx);
2765            unmarked_snapshot.clip_at_line_ends = true;
2766            assert_eq!(
2767                unmarked_snapshot.clip_point(markers[1], Bias::Left),
2768                markers[0]
2769            );
2770        }
2771
2772        assert("ˇˇ", cx);
2773        assert("ˇaˇ", cx);
2774        assert("aˇbˇ", cx);
2775        assert("aˇαˇ", cx);
2776    }
2777
2778    #[gpui::test]
2779    fn test_creases(cx: &mut gpui::App) {
2780        init_test(cx, |_| {});
2781
2782        let text = "aaa\nbbb\nccc\nddd\neee\nfff\nggg\nhhh\niii\njjj\nkkk\nlll";
2783        let buffer = MultiBuffer::build_simple(text, cx);
2784        let font_size = px(14.0);
2785        cx.new(|cx| {
2786            let mut map = DisplayMap::new(
2787                buffer.clone(),
2788                font("Helvetica"),
2789                font_size,
2790                None,
2791                1,
2792                1,
2793                FoldPlaceholder::test(),
2794                DiagnosticSeverity::Warning,
2795                cx,
2796            );
2797            let snapshot = map.buffer.read(cx).snapshot(cx);
2798            let range =
2799                snapshot.anchor_before(Point::new(2, 0))..snapshot.anchor_after(Point::new(3, 3));
2800
2801            map.crease_map.insert(
2802                [Crease::inline(
2803                    range,
2804                    FoldPlaceholder::test(),
2805                    |_row, _status, _toggle, _window, _cx| div(),
2806                    |_row, _status, _window, _cx| div(),
2807                )],
2808                &map.buffer.read(cx).snapshot(cx),
2809            );
2810
2811            map
2812        });
2813    }
2814
2815    #[gpui::test]
2816    fn test_tabs_with_multibyte_chars(cx: &mut gpui::App) {
2817        init_test(cx, |_| {});
2818
2819        let text = "\t\tα\nβ\t\n🏀β\t\tγ";
2820        let buffer = MultiBuffer::build_simple(text, cx);
2821        let font_size = px(14.0);
2822
2823        let map = cx.new(|cx| {
2824            DisplayMap::new(
2825                buffer.clone(),
2826                font("Helvetica"),
2827                font_size,
2828                None,
2829                1,
2830                1,
2831                FoldPlaceholder::test(),
2832                DiagnosticSeverity::Warning,
2833                cx,
2834            )
2835        });
2836        let map = map.update(cx, |map, cx| map.snapshot(cx));
2837        assert_eq!(map.text(), "✅       α\nβ   \n🏀β      γ");
2838        assert_eq!(
2839            map.text_chunks(DisplayRow(0)).collect::<String>(),
2840            "✅       α\nβ   \n🏀β      γ"
2841        );
2842        assert_eq!(
2843            map.text_chunks(DisplayRow(1)).collect::<String>(),
2844            "β   \n🏀β      γ"
2845        );
2846        assert_eq!(
2847            map.text_chunks(DisplayRow(2)).collect::<String>(),
2848            "🏀β      γ"
2849        );
2850
2851        let point = MultiBufferPoint::new(0, "\t\t".len() as u32);
2852        let display_point = DisplayPoint::new(DisplayRow(0), "".len() as u32);
2853        assert_eq!(point.to_display_point(&map), display_point);
2854        assert_eq!(display_point.to_point(&map), point);
2855
2856        let point = MultiBufferPoint::new(1, "β\t".len() as u32);
2857        let display_point = DisplayPoint::new(DisplayRow(1), "β   ".len() as u32);
2858        assert_eq!(point.to_display_point(&map), display_point);
2859        assert_eq!(display_point.to_point(&map), point,);
2860
2861        let point = MultiBufferPoint::new(2, "🏀β\t\t".len() as u32);
2862        let display_point = DisplayPoint::new(DisplayRow(2), "🏀β      ".len() as u32);
2863        assert_eq!(point.to_display_point(&map), display_point);
2864        assert_eq!(display_point.to_point(&map), point,);
2865
2866        // Display points inside of expanded tabs
2867        assert_eq!(
2868            DisplayPoint::new(DisplayRow(0), "".len() as u32).to_point(&map),
2869            MultiBufferPoint::new(0, "\t".len() as u32),
2870        );
2871        assert_eq!(
2872            DisplayPoint::new(DisplayRow(0), "".len() as u32).to_point(&map),
2873            MultiBufferPoint::new(0, "".len() as u32),
2874        );
2875
2876        // Clipping display points inside of multi-byte characters
2877        assert_eq!(
2878            map.clip_point(
2879                DisplayPoint::new(DisplayRow(0), "".len() as u32 - 1),
2880                Left
2881            ),
2882            DisplayPoint::new(DisplayRow(0), 0)
2883        );
2884        assert_eq!(
2885            map.clip_point(
2886                DisplayPoint::new(DisplayRow(0), "".len() as u32 - 1),
2887                Bias::Right
2888            ),
2889            DisplayPoint::new(DisplayRow(0), "".len() as u32)
2890        );
2891    }
2892
2893    #[gpui::test]
2894    fn test_max_point(cx: &mut gpui::App) {
2895        init_test(cx, |_| {});
2896
2897        let buffer = MultiBuffer::build_simple("aaa\n\t\tbbb", cx);
2898        let font_size = px(14.0);
2899        let map = cx.new(|cx| {
2900            DisplayMap::new(
2901                buffer.clone(),
2902                font("Helvetica"),
2903                font_size,
2904                None,
2905                1,
2906                1,
2907                FoldPlaceholder::test(),
2908                DiagnosticSeverity::Warning,
2909                cx,
2910            )
2911        });
2912        assert_eq!(
2913            map.update(cx, |map, cx| map.snapshot(cx)).max_point(),
2914            DisplayPoint::new(DisplayRow(1), 11)
2915        )
2916    }
2917
2918    fn syntax_chunks(
2919        rows: Range<DisplayRow>,
2920        map: &Entity<DisplayMap>,
2921        theme: &SyntaxTheme,
2922        cx: &mut App,
2923    ) -> Vec<(String, Option<Hsla>)> {
2924        chunks(rows, map, theme, cx)
2925            .into_iter()
2926            .map(|(text, color, _)| (text, color))
2927            .collect()
2928    }
2929
2930    fn chunks(
2931        rows: Range<DisplayRow>,
2932        map: &Entity<DisplayMap>,
2933        theme: &SyntaxTheme,
2934        cx: &mut App,
2935    ) -> Vec<(String, Option<Hsla>, Option<Hsla>)> {
2936        let snapshot = map.update(cx, |map, cx| map.snapshot(cx));
2937        let mut chunks: Vec<(String, Option<Hsla>, Option<Hsla>)> = Vec::new();
2938        for chunk in snapshot.chunks(rows, true, HighlightStyles::default()) {
2939            let syntax_color = chunk
2940                .syntax_highlight_id
2941                .and_then(|id| id.style(theme)?.color);
2942            let highlight_color = chunk.highlight_style.and_then(|style| style.color);
2943            if let Some((last_chunk, last_syntax_color, last_highlight_color)) = chunks.last_mut()
2944                && syntax_color == *last_syntax_color
2945                && highlight_color == *last_highlight_color
2946            {
2947                last_chunk.push_str(chunk.text);
2948                continue;
2949            }
2950            chunks.push((chunk.text.to_string(), syntax_color, highlight_color));
2951        }
2952        chunks
2953    }
2954
2955    fn init_test(cx: &mut App, f: impl Fn(&mut SettingsContent)) {
2956        let settings = SettingsStore::test(cx);
2957        cx.set_global(settings);
2958        workspace::init_settings(cx);
2959        language::init(cx);
2960        crate::init(cx);
2961        Project::init_settings(cx);
2962        theme::init(LoadThemes::JustBase, cx);
2963        cx.update_global::<SettingsStore, _>(|store, cx| {
2964            store.update_user_settings(cx, f);
2965        });
2966    }
2967}