402 lines
13 KiB
Rust
402 lines
13 KiB
Rust
use crate::{
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display_map::ToDisplayPoint, AnchorRangeExt, Autoscroll, DisplayPoint, Editor, MultiBuffer,
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};
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use collections::BTreeMap;
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use futures::Future;
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use gpui::{
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AnyWindowHandle, AppContext, ForegroundExecutor, Keystroke, ModelContext, View, ViewContext,
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VisualTestContext, WindowHandle,
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};
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use indoc::indoc;
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use itertools::Itertools;
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use language::{Buffer, BufferSnapshot};
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use parking_lot::RwLock;
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use project::{FakeFs, Project};
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use std::{
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any::TypeId,
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ops::{Deref, DerefMut, Range},
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sync::{
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atomic::{AtomicUsize, Ordering},
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Arc,
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},
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};
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use util::{
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assert_set_eq,
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test::{generate_marked_text, marked_text_ranges},
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};
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use super::build_editor_with_project;
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pub struct EditorTestContext<'a> {
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pub cx: gpui::VisualTestContext<'a>,
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pub window: AnyWindowHandle,
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pub editor: View<Editor>,
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pub assertion_cx: AssertionContextManager,
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}
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impl<'a> EditorTestContext<'a> {
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pub async fn new(cx: &'a mut gpui::TestAppContext) -> EditorTestContext<'a> {
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let fs = FakeFs::new(cx.executor());
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// fs.insert_file("/file", "".to_owned()).await;
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fs.insert_tree(
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"/root",
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gpui::serde_json::json!({
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"file": "",
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}),
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)
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.await;
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let project = Project::test(fs, ["/root".as_ref()], cx).await;
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let buffer = project
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.update(cx, |project, cx| {
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project.open_local_buffer("/root/file", cx)
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})
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.await
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.unwrap();
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let editor = cx.add_window(|cx| {
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let editor =
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build_editor_with_project(project, MultiBuffer::build_from_buffer(buffer, cx), cx);
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editor.focus(cx);
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editor
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});
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let editor_view = editor.root_view(cx).unwrap();
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Self {
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cx: VisualTestContext::from_window(*editor.deref(), cx),
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window: editor.into(),
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editor: editor_view,
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assertion_cx: AssertionContextManager::new(),
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}
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}
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pub fn condition(
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&self,
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predicate: impl FnMut(&Editor, &AppContext) -> bool,
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) -> impl Future<Output = ()> {
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self.editor
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.condition::<crate::EditorEvent>(&self.cx, predicate)
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}
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#[track_caller]
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pub fn editor<F, T>(&mut self, read: F) -> T
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where
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F: FnOnce(&Editor, &ViewContext<Editor>) -> T,
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{
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self.editor
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.update(&mut self.cx, |this, cx| read(&this, &cx))
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}
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#[track_caller]
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pub fn update_editor<F, T>(&mut self, update: F) -> T
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where
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F: FnOnce(&mut Editor, &mut ViewContext<Editor>) -> T,
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{
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self.editor.update(&mut self.cx, update)
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}
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pub fn multibuffer<F, T>(&mut self, read: F) -> T
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where
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F: FnOnce(&MultiBuffer, &AppContext) -> T,
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{
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self.editor(|editor, cx| read(editor.buffer().read(cx), cx))
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}
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pub fn update_multibuffer<F, T>(&mut self, update: F) -> T
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where
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F: FnOnce(&mut MultiBuffer, &mut ModelContext<MultiBuffer>) -> T,
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{
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self.update_editor(|editor, cx| editor.buffer().update(cx, update))
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}
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pub fn buffer_text(&mut self) -> String {
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self.multibuffer(|buffer, cx| buffer.snapshot(cx).text())
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}
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pub fn buffer<F, T>(&mut self, read: F) -> T
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where
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F: FnOnce(&Buffer, &AppContext) -> T,
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{
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self.multibuffer(|multibuffer, cx| {
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let buffer = multibuffer.as_singleton().unwrap().read(cx);
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read(buffer, cx)
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})
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}
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pub fn update_buffer<F, T>(&mut self, update: F) -> T
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where
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F: FnOnce(&mut Buffer, &mut ModelContext<Buffer>) -> T,
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{
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self.update_multibuffer(|multibuffer, cx| {
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let buffer = multibuffer.as_singleton().unwrap();
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buffer.update(cx, update)
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})
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}
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pub fn buffer_snapshot(&mut self) -> BufferSnapshot {
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self.buffer(|buffer, _| buffer.snapshot())
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}
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pub fn add_assertion_context(&self, context: String) -> ContextHandle {
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self.assertion_cx.add_context(context)
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}
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pub fn assertion_context(&self) -> String {
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self.assertion_cx.context()
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}
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pub fn simulate_keystroke(&mut self, keystroke_text: &str) -> ContextHandle {
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let keystroke_under_test_handle =
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self.add_assertion_context(format!("Simulated Keystroke: {:?}", keystroke_text));
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let keystroke = Keystroke::parse(keystroke_text).unwrap();
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self.cx.dispatch_keystroke(self.window, keystroke, false);
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keystroke_under_test_handle
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}
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pub fn simulate_keystrokes<const COUNT: usize>(
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&mut self,
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keystroke_texts: [&str; COUNT],
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) -> ContextHandle {
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let keystrokes_under_test_handle =
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self.add_assertion_context(format!("Simulated Keystrokes: {:?}", keystroke_texts));
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for keystroke_text in keystroke_texts.into_iter() {
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self.simulate_keystroke(keystroke_text);
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}
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// it is common for keyboard shortcuts to kick off async actions, so this ensures that they are complete
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// before returning.
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// NOTE: we don't do this in simulate_keystroke() because a possible cause of bugs is that typing too
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// quickly races with async actions.
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self.cx.background_executor.run_until_parked();
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keystrokes_under_test_handle
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}
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pub fn ranges(&mut self, marked_text: &str) -> Vec<Range<usize>> {
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let (unmarked_text, ranges) = marked_text_ranges(marked_text, false);
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assert_eq!(self.buffer_text(), unmarked_text);
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ranges
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}
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pub fn display_point(&mut self, marked_text: &str) -> DisplayPoint {
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let ranges = self.ranges(marked_text);
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let snapshot = self
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.editor
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.update(&mut self.cx, |editor, cx| editor.snapshot(cx));
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ranges[0].start.to_display_point(&snapshot)
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}
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// Returns anchors for the current buffer using `«` and `»`
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pub fn text_anchor_range(&mut self, marked_text: &str) -> Range<language::Anchor> {
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let ranges = self.ranges(marked_text);
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let snapshot = self.buffer_snapshot();
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snapshot.anchor_before(ranges[0].start)..snapshot.anchor_after(ranges[0].end)
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}
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pub fn set_diff_base(&mut self, diff_base: Option<&str>) {
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let diff_base = diff_base.map(String::from);
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self.update_buffer(|buffer, cx| buffer.set_diff_base(diff_base, cx));
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}
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/// Change the editor's text and selections using a string containing
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/// embedded range markers that represent the ranges and directions of
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/// each selection.
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///
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/// Returns a context handle so that assertion failures can print what
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/// editor state was needed to cause the failure.
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///
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/// See the `util::test::marked_text_ranges` function for more information.
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pub fn set_state(&mut self, marked_text: &str) -> ContextHandle {
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let state_context = self.add_assertion_context(format!(
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"Initial Editor State: \"{}\"",
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marked_text.escape_debug().to_string()
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));
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let (unmarked_text, selection_ranges) = marked_text_ranges(marked_text, true);
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self.editor.update(&mut self.cx, |editor, cx| {
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editor.set_text(unmarked_text, cx);
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editor.change_selections(Some(Autoscroll::fit()), cx, |s| {
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s.select_ranges(selection_ranges)
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})
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});
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state_context
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}
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/// Only change the editor's selections
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pub fn set_selections_state(&mut self, marked_text: &str) -> ContextHandle {
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let state_context = self.add_assertion_context(format!(
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"Initial Editor State: \"{}\"",
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marked_text.escape_debug().to_string()
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));
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let (unmarked_text, selection_ranges) = marked_text_ranges(marked_text, true);
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self.editor.update(&mut self.cx, |editor, cx| {
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assert_eq!(editor.text(cx), unmarked_text);
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editor.change_selections(Some(Autoscroll::fit()), cx, |s| {
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s.select_ranges(selection_ranges)
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})
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});
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state_context
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}
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/// Make an assertion about the editor's text and the ranges and directions
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/// of its selections using a string containing embedded range markers.
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///
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/// See the `util::test::marked_text_ranges` function for more information.
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#[track_caller]
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pub fn assert_editor_state(&mut self, marked_text: &str) {
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let (unmarked_text, expected_selections) = marked_text_ranges(marked_text, true);
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let buffer_text = self.buffer_text();
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if buffer_text != unmarked_text {
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panic!("Unmarked text doesn't match buffer text\nBuffer text: {buffer_text:?}\nUnmarked text: {unmarked_text:?}\nRaw buffer text\n{buffer_text}Raw unmarked text\n{unmarked_text}");
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}
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self.assert_selections(expected_selections, marked_text.to_string())
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}
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pub fn editor_state(&mut self) -> String {
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generate_marked_text(self.buffer_text().as_str(), &self.editor_selections(), true)
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}
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#[track_caller]
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pub fn assert_editor_background_highlights<Tag: 'static>(&mut self, marked_text: &str) {
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let expected_ranges = self.ranges(marked_text);
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let actual_ranges: Vec<Range<usize>> = self.update_editor(|editor, cx| {
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let snapshot = editor.snapshot(cx);
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editor
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.background_highlights
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.get(&TypeId::of::<Tag>())
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.map(|h| h.1.clone())
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.unwrap_or_default()
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.into_iter()
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.map(|range| range.to_offset(&snapshot.buffer_snapshot))
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.collect()
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});
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assert_set_eq!(actual_ranges, expected_ranges);
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}
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#[track_caller]
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pub fn assert_editor_text_highlights<Tag: ?Sized + 'static>(&mut self, marked_text: &str) {
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let expected_ranges = self.ranges(marked_text);
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let snapshot = self.update_editor(|editor, cx| editor.snapshot(cx));
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let actual_ranges: Vec<Range<usize>> = snapshot
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.text_highlight_ranges::<Tag>()
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.map(|ranges| ranges.as_ref().clone().1)
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.unwrap_or_default()
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.into_iter()
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.map(|range| range.to_offset(&snapshot.buffer_snapshot))
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.collect();
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assert_set_eq!(actual_ranges, expected_ranges);
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}
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#[track_caller]
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pub fn assert_editor_selections(&mut self, expected_selections: Vec<Range<usize>>) {
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let expected_marked_text =
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generate_marked_text(&self.buffer_text(), &expected_selections, true);
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self.assert_selections(expected_selections, expected_marked_text)
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}
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#[track_caller]
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fn editor_selections(&mut self) -> Vec<Range<usize>> {
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self.editor
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.update(&mut self.cx, |editor, cx| {
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editor.selections.all::<usize>(cx)
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})
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.into_iter()
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.map(|s| {
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if s.reversed {
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s.end..s.start
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} else {
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s.start..s.end
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}
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})
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.collect::<Vec<_>>()
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}
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#[track_caller]
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fn assert_selections(
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&mut self,
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expected_selections: Vec<Range<usize>>,
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expected_marked_text: String,
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) {
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let actual_selections = self.editor_selections();
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let actual_marked_text =
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generate_marked_text(&self.buffer_text(), &actual_selections, true);
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if expected_selections != actual_selections {
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panic!(
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indoc! {"
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{}Editor has unexpected selections.
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Expected selections:
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{}
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Actual selections:
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{}
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"},
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self.assertion_context(),
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expected_marked_text,
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actual_marked_text,
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);
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}
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}
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}
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impl<'a> Deref for EditorTestContext<'a> {
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type Target = gpui::TestAppContext;
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fn deref(&self) -> &Self::Target {
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&self.cx
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}
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}
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impl<'a> DerefMut for EditorTestContext<'a> {
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fn deref_mut(&mut self) -> &mut Self::Target {
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&mut self.cx
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}
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}
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/// Tracks string context to be printed when assertions fail.
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/// Often this is done by storing a context string in the manager and returning the handle.
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#[derive(Clone)]
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pub struct AssertionContextManager {
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id: Arc<AtomicUsize>,
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contexts: Arc<RwLock<BTreeMap<usize, String>>>,
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}
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impl AssertionContextManager {
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pub fn new() -> Self {
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Self {
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id: Arc::new(AtomicUsize::new(0)),
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contexts: Arc::new(RwLock::new(BTreeMap::new())),
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}
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}
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pub fn add_context(&self, context: String) -> ContextHandle {
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let id = self.id.fetch_add(1, Ordering::Relaxed);
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let mut contexts = self.contexts.write();
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contexts.insert(id, context);
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ContextHandle {
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id,
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manager: self.clone(),
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}
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}
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pub fn context(&self) -> String {
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let contexts = self.contexts.read();
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format!("\n{}\n", contexts.values().join("\n"))
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}
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}
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/// Used to track the lifetime of a piece of context so that it can be provided when an assertion fails.
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/// For example, in the EditorTestContext, `set_state` returns a context handle so that if an assertion fails,
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/// the state that was set initially for the failure can be printed in the error message
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pub struct ContextHandle {
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id: usize,
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manager: AssertionContextManager,
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}
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impl Drop for ContextHandle {
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fn drop(&mut self) {
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let mut contexts = self.manager.contexts.write();
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contexts.remove(&self.id);
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}
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}
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