window.rs

   1#![deny(unsafe_op_in_unsafe_fn)]
   2
   3use std::{
   4    cell::RefCell,
   5    num::NonZeroIsize,
   6    path::PathBuf,
   7    rc::{Rc, Weak},
   8    str::FromStr,
   9    sync::{Arc, Once},
  10    time::{Duration, Instant},
  11};
  12
  13use ::util::ResultExt;
  14use anyhow::{Context as _, Result};
  15use async_task::Runnable;
  16use futures::channel::oneshot::{self, Receiver};
  17use raw_window_handle as rwh;
  18use smallvec::SmallVec;
  19use windows::{
  20    Win32::{
  21        Foundation::*,
  22        Graphics::Gdi::*,
  23        System::{Com::*, LibraryLoader::*, Ole::*, SystemServices::*},
  24        UI::{Controls::*, HiDpi::*, Input::KeyboardAndMouse::*, Shell::*, WindowsAndMessaging::*},
  25    },
  26    core::*,
  27};
  28
  29use crate::*;
  30
  31pub(crate) struct WindowsWindow(pub Rc<WindowsWindowInner>);
  32
  33pub struct WindowsWindowState {
  34    pub origin: Point<Pixels>,
  35    pub logical_size: Size<Pixels>,
  36    pub min_size: Option<Size<Pixels>>,
  37    pub fullscreen_restore_bounds: Bounds<Pixels>,
  38    pub border_offset: WindowBorderOffset,
  39    pub appearance: WindowAppearance,
  40    pub scale_factor: f32,
  41    pub restore_from_minimized: Option<Box<dyn FnMut(RequestFrameOptions)>>,
  42
  43    pub callbacks: Callbacks,
  44    pub input_handler: Option<PlatformInputHandler>,
  45    pub pending_surrogate: Option<u16>,
  46    pub last_reported_modifiers: Option<Modifiers>,
  47    pub last_reported_capslock: Option<Capslock>,
  48    pub system_key_handled: bool,
  49    pub hovered: bool,
  50
  51    pub renderer: DirectXRenderer,
  52
  53    pub click_state: ClickState,
  54    pub system_settings: WindowsSystemSettings,
  55    pub current_cursor: Option<HCURSOR>,
  56    pub nc_button_pressed: Option<u32>,
  57
  58    pub display: WindowsDisplay,
  59    fullscreen: Option<StyleAndBounds>,
  60    initial_placement: Option<WindowOpenStatus>,
  61    hwnd: HWND,
  62}
  63
  64pub(crate) struct WindowsWindowInner {
  65    hwnd: HWND,
  66    pub(super) this: Weak<Self>,
  67    drop_target_helper: IDropTargetHelper,
  68    pub(crate) state: RefCell<WindowsWindowState>,
  69    pub(crate) handle: AnyWindowHandle,
  70    pub(crate) hide_title_bar: bool,
  71    pub(crate) is_movable: bool,
  72    pub(crate) executor: ForegroundExecutor,
  73    pub(crate) windows_version: WindowsVersion,
  74    pub(crate) validation_number: usize,
  75    pub(crate) main_receiver: flume::Receiver<Runnable>,
  76    pub(crate) main_thread_id_win32: u32,
  77}
  78
  79impl WindowsWindowState {
  80    fn new(
  81        hwnd: HWND,
  82        window_params: &CREATESTRUCTW,
  83        current_cursor: Option<HCURSOR>,
  84        display: WindowsDisplay,
  85        min_size: Option<Size<Pixels>>,
  86        appearance: WindowAppearance,
  87        disable_direct_composition: bool,
  88    ) -> Result<Self> {
  89        let scale_factor = {
  90            let monitor_dpi = unsafe { GetDpiForWindow(hwnd) } as f32;
  91            monitor_dpi / USER_DEFAULT_SCREEN_DPI as f32
  92        };
  93        let origin = logical_point(window_params.x as f32, window_params.y as f32, scale_factor);
  94        let logical_size = {
  95            let physical_size = size(
  96                DevicePixels(window_params.cx),
  97                DevicePixels(window_params.cy),
  98            );
  99            physical_size.to_pixels(scale_factor)
 100        };
 101        let fullscreen_restore_bounds = Bounds {
 102            origin,
 103            size: logical_size,
 104        };
 105        let border_offset = WindowBorderOffset::default();
 106        let restore_from_minimized = None;
 107        let renderer = DirectXRenderer::new(hwnd, disable_direct_composition)
 108            .context("Creating DirectX renderer")?;
 109        let callbacks = Callbacks::default();
 110        let input_handler = None;
 111        let pending_surrogate = None;
 112        let last_reported_modifiers = None;
 113        let last_reported_capslock = None;
 114        let system_key_handled = false;
 115        let hovered = false;
 116        let click_state = ClickState::new();
 117        let system_settings = WindowsSystemSettings::new(display);
 118        let nc_button_pressed = None;
 119        let fullscreen = None;
 120        let initial_placement = None;
 121
 122        Ok(Self {
 123            origin,
 124            logical_size,
 125            fullscreen_restore_bounds,
 126            border_offset,
 127            appearance,
 128            scale_factor,
 129            restore_from_minimized,
 130            min_size,
 131            callbacks,
 132            input_handler,
 133            pending_surrogate,
 134            last_reported_modifiers,
 135            last_reported_capslock,
 136            system_key_handled,
 137            hovered,
 138            renderer,
 139            click_state,
 140            system_settings,
 141            current_cursor,
 142            nc_button_pressed,
 143            display,
 144            fullscreen,
 145            initial_placement,
 146            hwnd,
 147        })
 148    }
 149
 150    #[inline]
 151    pub(crate) fn is_fullscreen(&self) -> bool {
 152        self.fullscreen.is_some()
 153    }
 154
 155    pub(crate) fn is_maximized(&self) -> bool {
 156        !self.is_fullscreen() && unsafe { IsZoomed(self.hwnd) }.as_bool()
 157    }
 158
 159    fn bounds(&self) -> Bounds<Pixels> {
 160        Bounds {
 161            origin: self.origin,
 162            size: self.logical_size,
 163        }
 164    }
 165
 166    // Calculate the bounds used for saving and whether the window is maximized.
 167    fn calculate_window_bounds(&self) -> (Bounds<Pixels>, bool) {
 168        let placement = unsafe {
 169            let mut placement = WINDOWPLACEMENT {
 170                length: std::mem::size_of::<WINDOWPLACEMENT>() as u32,
 171                ..Default::default()
 172            };
 173            GetWindowPlacement(self.hwnd, &mut placement).log_err();
 174            placement
 175        };
 176        (
 177            calculate_client_rect(
 178                placement.rcNormalPosition,
 179                self.border_offset,
 180                self.scale_factor,
 181            ),
 182            placement.showCmd == SW_SHOWMAXIMIZED.0 as u32,
 183        )
 184    }
 185
 186    fn window_bounds(&self) -> WindowBounds {
 187        let (bounds, maximized) = self.calculate_window_bounds();
 188
 189        if self.is_fullscreen() {
 190            WindowBounds::Fullscreen(self.fullscreen_restore_bounds)
 191        } else if maximized {
 192            WindowBounds::Maximized(bounds)
 193        } else {
 194            WindowBounds::Windowed(bounds)
 195        }
 196    }
 197
 198    /// get the logical size of the app's drawable area.
 199    ///
 200    /// Currently, GPUI uses the logical size of the app to handle mouse interactions (such as
 201    /// whether the mouse collides with other elements of GPUI).
 202    fn content_size(&self) -> Size<Pixels> {
 203        self.logical_size
 204    }
 205}
 206
 207impl WindowsWindowInner {
 208    fn new(context: &WindowCreateContext, hwnd: HWND, cs: &CREATESTRUCTW) -> Result<Rc<Self>> {
 209        let state = RefCell::new(WindowsWindowState::new(
 210            hwnd,
 211            cs,
 212            context.current_cursor,
 213            context.display,
 214            context.min_size,
 215            context.appearance,
 216            context.disable_direct_composition,
 217        )?);
 218
 219        Ok(Rc::new_cyclic(|this| Self {
 220            hwnd,
 221            this: this.clone(),
 222            drop_target_helper: context.drop_target_helper.clone(),
 223            state,
 224            handle: context.handle,
 225            hide_title_bar: context.hide_title_bar,
 226            is_movable: context.is_movable,
 227            executor: context.executor.clone(),
 228            windows_version: context.windows_version,
 229            validation_number: context.validation_number,
 230            main_receiver: context.main_receiver.clone(),
 231            main_thread_id_win32: context.main_thread_id_win32,
 232        }))
 233    }
 234
 235    fn toggle_fullscreen(&self) {
 236        let Some(this) = self.this.upgrade() else {
 237            log::error!("Unable to toggle fullscreen: window has been dropped");
 238            return;
 239        };
 240        self.executor
 241            .spawn(async move {
 242                let mut lock = this.state.borrow_mut();
 243                let StyleAndBounds {
 244                    style,
 245                    x,
 246                    y,
 247                    cx,
 248                    cy,
 249                } = if let Some(state) = lock.fullscreen.take() {
 250                    state
 251                } else {
 252                    let (window_bounds, _) = lock.calculate_window_bounds();
 253                    lock.fullscreen_restore_bounds = window_bounds;
 254                    let style = WINDOW_STYLE(unsafe { get_window_long(this.hwnd, GWL_STYLE) } as _);
 255                    let mut rc = RECT::default();
 256                    unsafe { GetWindowRect(this.hwnd, &mut rc) }.log_err();
 257                    let _ = lock.fullscreen.insert(StyleAndBounds {
 258                        style,
 259                        x: rc.left,
 260                        y: rc.top,
 261                        cx: rc.right - rc.left,
 262                        cy: rc.bottom - rc.top,
 263                    });
 264                    let style = style
 265                        & !(WS_THICKFRAME
 266                            | WS_SYSMENU
 267                            | WS_MAXIMIZEBOX
 268                            | WS_MINIMIZEBOX
 269                            | WS_CAPTION);
 270                    let physical_bounds = lock.display.physical_bounds();
 271                    StyleAndBounds {
 272                        style,
 273                        x: physical_bounds.left().0,
 274                        y: physical_bounds.top().0,
 275                        cx: physical_bounds.size.width.0,
 276                        cy: physical_bounds.size.height.0,
 277                    }
 278                };
 279                drop(lock);
 280                unsafe { set_window_long(this.hwnd, GWL_STYLE, style.0 as isize) };
 281                unsafe {
 282                    SetWindowPos(
 283                        this.hwnd,
 284                        None,
 285                        x,
 286                        y,
 287                        cx,
 288                        cy,
 289                        SWP_FRAMECHANGED | SWP_NOACTIVATE | SWP_NOZORDER,
 290                    )
 291                }
 292                .log_err();
 293            })
 294            .detach();
 295    }
 296
 297    fn set_window_placement(&self) -> Result<()> {
 298        let Some(open_status) = self.state.borrow_mut().initial_placement.take() else {
 299            return Ok(());
 300        };
 301        match open_status.state {
 302            WindowOpenState::Maximized => unsafe {
 303                SetWindowPlacement(self.hwnd, &open_status.placement)?;
 304                ShowWindowAsync(self.hwnd, SW_MAXIMIZE).ok()?;
 305            },
 306            WindowOpenState::Fullscreen => {
 307                unsafe { SetWindowPlacement(self.hwnd, &open_status.placement)? };
 308                self.toggle_fullscreen();
 309            }
 310            WindowOpenState::Windowed => unsafe {
 311                SetWindowPlacement(self.hwnd, &open_status.placement)?;
 312            },
 313        }
 314        Ok(())
 315    }
 316}
 317
 318#[derive(Default)]
 319pub(crate) struct Callbacks {
 320    pub(crate) request_frame: Option<Box<dyn FnMut(RequestFrameOptions)>>,
 321    pub(crate) input: Option<Box<dyn FnMut(crate::PlatformInput) -> DispatchEventResult>>,
 322    pub(crate) active_status_change: Option<Box<dyn FnMut(bool)>>,
 323    pub(crate) hovered_status_change: Option<Box<dyn FnMut(bool)>>,
 324    pub(crate) resize: Option<Box<dyn FnMut(Size<Pixels>, f32)>>,
 325    pub(crate) moved: Option<Box<dyn FnMut()>>,
 326    pub(crate) should_close: Option<Box<dyn FnMut() -> bool>>,
 327    pub(crate) close: Option<Box<dyn FnOnce()>>,
 328    pub(crate) hit_test_window_control: Option<Box<dyn FnMut() -> Option<WindowControlArea>>>,
 329    pub(crate) appearance_changed: Option<Box<dyn FnMut()>>,
 330}
 331
 332struct WindowCreateContext {
 333    inner: Option<Result<Rc<WindowsWindowInner>>>,
 334    handle: AnyWindowHandle,
 335    hide_title_bar: bool,
 336    display: WindowsDisplay,
 337    is_movable: bool,
 338    min_size: Option<Size<Pixels>>,
 339    executor: ForegroundExecutor,
 340    current_cursor: Option<HCURSOR>,
 341    windows_version: WindowsVersion,
 342    drop_target_helper: IDropTargetHelper,
 343    validation_number: usize,
 344    main_receiver: flume::Receiver<Runnable>,
 345    main_thread_id_win32: u32,
 346    appearance: WindowAppearance,
 347    disable_direct_composition: bool,
 348}
 349
 350impl WindowsWindow {
 351    pub(crate) fn new(
 352        handle: AnyWindowHandle,
 353        params: WindowParams,
 354        creation_info: WindowCreationInfo,
 355    ) -> Result<Self> {
 356        let WindowCreationInfo {
 357            icon,
 358            executor,
 359            current_cursor,
 360            windows_version,
 361            drop_target_helper,
 362            validation_number,
 363            main_receiver,
 364            main_thread_id_win32,
 365            disable_direct_composition,
 366        } = creation_info;
 367        register_window_class(icon);
 368        let hide_title_bar = params
 369            .titlebar
 370            .as_ref()
 371            .map(|titlebar| titlebar.appears_transparent)
 372            .unwrap_or(true);
 373        let window_name = HSTRING::from(
 374            params
 375                .titlebar
 376                .as_ref()
 377                .and_then(|titlebar| titlebar.title.as_ref())
 378                .map(|title| title.as_ref())
 379                .unwrap_or(""),
 380        );
 381
 382        let (mut dwexstyle, dwstyle) = if params.kind == WindowKind::PopUp {
 383            (WS_EX_TOOLWINDOW, WINDOW_STYLE(0x0))
 384        } else {
 385            (
 386                WS_EX_APPWINDOW,
 387                WS_THICKFRAME | WS_SYSMENU | WS_MAXIMIZEBOX | WS_MINIMIZEBOX,
 388            )
 389        };
 390        if !disable_direct_composition {
 391            dwexstyle |= WS_EX_NOREDIRECTIONBITMAP;
 392        }
 393
 394        let hinstance = get_module_handle();
 395        let display = if let Some(display_id) = params.display_id {
 396            // if we obtain a display_id, then this ID must be valid.
 397            WindowsDisplay::new(display_id).unwrap()
 398        } else {
 399            WindowsDisplay::primary_monitor().unwrap()
 400        };
 401        let appearance = system_appearance().unwrap_or_default();
 402        let mut context = WindowCreateContext {
 403            inner: None,
 404            handle,
 405            hide_title_bar,
 406            display,
 407            is_movable: params.is_movable,
 408            min_size: params.window_min_size,
 409            executor,
 410            current_cursor,
 411            windows_version,
 412            drop_target_helper,
 413            validation_number,
 414            main_receiver,
 415            main_thread_id_win32,
 416            appearance,
 417            disable_direct_composition,
 418        };
 419        let creation_result = unsafe {
 420            CreateWindowExW(
 421                dwexstyle,
 422                WINDOW_CLASS_NAME,
 423                &window_name,
 424                dwstyle,
 425                CW_USEDEFAULT,
 426                CW_USEDEFAULT,
 427                CW_USEDEFAULT,
 428                CW_USEDEFAULT,
 429                None,
 430                None,
 431                Some(hinstance.into()),
 432                Some(&context as *const _ as *const _),
 433            )
 434        };
 435
 436        // Failure to create a `WindowsWindowState` can cause window creation to fail,
 437        // so check the inner result first.
 438        let this = context.inner.take().unwrap()?;
 439        let hwnd = creation_result?;
 440
 441        register_drag_drop(&this)?;
 442        configure_dwm_dark_mode(hwnd, appearance);
 443        this.state.borrow_mut().border_offset.update(hwnd)?;
 444        let placement = retrieve_window_placement(
 445            hwnd,
 446            display,
 447            params.bounds,
 448            this.state.borrow().scale_factor,
 449            this.state.borrow().border_offset,
 450        )?;
 451        if params.show {
 452            unsafe { SetWindowPlacement(hwnd, &placement)? };
 453        } else {
 454            this.state.borrow_mut().initial_placement = Some(WindowOpenStatus {
 455                placement,
 456                state: WindowOpenState::Windowed,
 457            });
 458        }
 459
 460        Ok(Self(this))
 461    }
 462}
 463
 464impl rwh::HasWindowHandle for WindowsWindow {
 465    fn window_handle(&self) -> std::result::Result<rwh::WindowHandle<'_>, rwh::HandleError> {
 466        let raw = rwh::Win32WindowHandle::new(unsafe {
 467            NonZeroIsize::new_unchecked(self.0.hwnd.0 as isize)
 468        })
 469        .into();
 470        Ok(unsafe { rwh::WindowHandle::borrow_raw(raw) })
 471    }
 472}
 473
 474// todo(windows)
 475impl rwh::HasDisplayHandle for WindowsWindow {
 476    fn display_handle(&self) -> std::result::Result<rwh::DisplayHandle<'_>, rwh::HandleError> {
 477        unimplemented!()
 478    }
 479}
 480
 481impl Drop for WindowsWindow {
 482    fn drop(&mut self) {
 483        // clone this `Rc` to prevent early release of the pointer
 484        let this = self.0.clone();
 485        self.0
 486            .executor
 487            .spawn(async move {
 488                let handle = this.hwnd;
 489                unsafe {
 490                    RevokeDragDrop(handle).log_err();
 491                    DestroyWindow(handle).log_err();
 492                }
 493            })
 494            .detach();
 495    }
 496}
 497
 498impl PlatformWindow for WindowsWindow {
 499    fn bounds(&self) -> Bounds<Pixels> {
 500        self.0.state.borrow().bounds()
 501    }
 502
 503    fn is_maximized(&self) -> bool {
 504        self.0.state.borrow().is_maximized()
 505    }
 506
 507    fn window_bounds(&self) -> WindowBounds {
 508        self.0.state.borrow().window_bounds()
 509    }
 510
 511    /// get the logical size of the app's drawable area.
 512    ///
 513    /// Currently, GPUI uses the logical size of the app to handle mouse interactions (such as
 514    /// whether the mouse collides with other elements of GPUI).
 515    fn content_size(&self) -> Size<Pixels> {
 516        self.0.state.borrow().content_size()
 517    }
 518
 519    fn resize(&mut self, size: Size<Pixels>) {
 520        let hwnd = self.0.hwnd;
 521        let bounds =
 522            crate::bounds(self.bounds().origin, size).to_device_pixels(self.scale_factor());
 523        let rect = calculate_window_rect(bounds, self.0.state.borrow().border_offset);
 524
 525        self.0
 526            .executor
 527            .spawn(async move {
 528                unsafe {
 529                    SetWindowPos(
 530                        hwnd,
 531                        None,
 532                        bounds.origin.x.0,
 533                        bounds.origin.y.0,
 534                        rect.right - rect.left,
 535                        rect.bottom - rect.top,
 536                        SWP_NOMOVE,
 537                    )
 538                    .context("unable to set window content size")
 539                    .log_err();
 540                }
 541            })
 542            .detach();
 543    }
 544
 545    fn scale_factor(&self) -> f32 {
 546        self.0.state.borrow().scale_factor
 547    }
 548
 549    fn appearance(&self) -> WindowAppearance {
 550        self.0.state.borrow().appearance
 551    }
 552
 553    fn display(&self) -> Option<Rc<dyn PlatformDisplay>> {
 554        Some(Rc::new(self.0.state.borrow().display))
 555    }
 556
 557    fn mouse_position(&self) -> Point<Pixels> {
 558        let scale_factor = self.scale_factor();
 559        let point = unsafe {
 560            let mut point: POINT = std::mem::zeroed();
 561            GetCursorPos(&mut point)
 562                .context("unable to get cursor position")
 563                .log_err();
 564            ScreenToClient(self.0.hwnd, &mut point).ok().log_err();
 565            point
 566        };
 567        logical_point(point.x as f32, point.y as f32, scale_factor)
 568    }
 569
 570    fn modifiers(&self) -> Modifiers {
 571        current_modifiers()
 572    }
 573
 574    fn capslock(&self) -> Capslock {
 575        current_capslock()
 576    }
 577
 578    fn set_input_handler(&mut self, input_handler: PlatformInputHandler) {
 579        self.0.state.borrow_mut().input_handler = Some(input_handler);
 580    }
 581
 582    fn take_input_handler(&mut self) -> Option<PlatformInputHandler> {
 583        self.0.state.borrow_mut().input_handler.take()
 584    }
 585
 586    fn prompt(
 587        &self,
 588        level: PromptLevel,
 589        msg: &str,
 590        detail: Option<&str>,
 591        answers: &[PromptButton],
 592    ) -> Option<Receiver<usize>> {
 593        let (done_tx, done_rx) = oneshot::channel();
 594        let msg = msg.to_string();
 595        let detail_string = match detail {
 596            Some(info) => Some(info.to_string()),
 597            None => None,
 598        };
 599        let handle = self.0.hwnd;
 600        let answers = answers.to_vec();
 601        self.0
 602            .executor
 603            .spawn(async move {
 604                unsafe {
 605                    let mut config = TASKDIALOGCONFIG::default();
 606                    config.cbSize = std::mem::size_of::<TASKDIALOGCONFIG>() as _;
 607                    config.hwndParent = handle;
 608                    let title;
 609                    let main_icon;
 610                    match level {
 611                        crate::PromptLevel::Info => {
 612                            title = windows::core::w!("Info");
 613                            main_icon = TD_INFORMATION_ICON;
 614                        }
 615                        crate::PromptLevel::Warning => {
 616                            title = windows::core::w!("Warning");
 617                            main_icon = TD_WARNING_ICON;
 618                        }
 619                        crate::PromptLevel::Critical => {
 620                            title = windows::core::w!("Critical");
 621                            main_icon = TD_ERROR_ICON;
 622                        }
 623                    };
 624                    config.pszWindowTitle = title;
 625                    config.Anonymous1.pszMainIcon = main_icon;
 626                    let instruction = HSTRING::from(msg);
 627                    config.pszMainInstruction = PCWSTR::from_raw(instruction.as_ptr());
 628                    let hints_encoded;
 629                    if let Some(ref hints) = detail_string {
 630                        hints_encoded = HSTRING::from(hints);
 631                        config.pszContent = PCWSTR::from_raw(hints_encoded.as_ptr());
 632                    };
 633                    let mut button_id_map = Vec::with_capacity(answers.len());
 634                    let mut buttons = Vec::new();
 635                    let mut btn_encoded = Vec::new();
 636                    for (index, btn) in answers.iter().enumerate() {
 637                        let encoded = HSTRING::from(btn.label().as_ref());
 638                        let button_id = if btn.is_cancel() {
 639                            IDCANCEL.0
 640                        } else {
 641                            index as i32 - 100
 642                        };
 643                        button_id_map.push(button_id);
 644                        buttons.push(TASKDIALOG_BUTTON {
 645                            nButtonID: button_id,
 646                            pszButtonText: PCWSTR::from_raw(encoded.as_ptr()),
 647                        });
 648                        btn_encoded.push(encoded);
 649                    }
 650                    config.cButtons = buttons.len() as _;
 651                    config.pButtons = buttons.as_ptr();
 652
 653                    config.pfCallback = None;
 654                    let mut res = std::mem::zeroed();
 655                    let _ = TaskDialogIndirect(&config, Some(&mut res), None, None)
 656                        .context("unable to create task dialog")
 657                        .log_err();
 658
 659                    let clicked = button_id_map
 660                        .iter()
 661                        .position(|&button_id| button_id == res)
 662                        .unwrap();
 663                    let _ = done_tx.send(clicked);
 664                }
 665            })
 666            .detach();
 667
 668        Some(done_rx)
 669    }
 670
 671    fn activate(&self) {
 672        let hwnd = self.0.hwnd;
 673        let this = self.0.clone();
 674        self.0
 675            .executor
 676            .spawn(async move {
 677                this.set_window_placement().log_err();
 678                unsafe { SetActiveWindow(hwnd).log_err() };
 679                unsafe { SetFocus(Some(hwnd)).log_err() };
 680                // todo(windows)
 681                // crate `windows 0.56` reports true as Err
 682                unsafe { SetForegroundWindow(hwnd).as_bool() };
 683            })
 684            .detach();
 685    }
 686
 687    fn is_active(&self) -> bool {
 688        self.0.hwnd == unsafe { GetActiveWindow() }
 689    }
 690
 691    fn is_hovered(&self) -> bool {
 692        self.0.state.borrow().hovered
 693    }
 694
 695    fn set_title(&mut self, title: &str) {
 696        unsafe { SetWindowTextW(self.0.hwnd, &HSTRING::from(title)) }
 697            .inspect_err(|e| log::error!("Set title failed: {e}"))
 698            .ok();
 699    }
 700
 701    fn set_background_appearance(&self, background_appearance: WindowBackgroundAppearance) {
 702        let hwnd = self.0.hwnd;
 703
 704        match background_appearance {
 705            WindowBackgroundAppearance::Opaque => {
 706                // ACCENT_DISABLED
 707                set_window_composition_attribute(hwnd, None, 0);
 708            }
 709            WindowBackgroundAppearance::Transparent => {
 710                // Use ACCENT_ENABLE_TRANSPARENTGRADIENT for transparent background
 711                set_window_composition_attribute(hwnd, None, 2);
 712            }
 713            WindowBackgroundAppearance::Blurred => {
 714                // Enable acrylic blur
 715                // ACCENT_ENABLE_ACRYLICBLURBEHIND
 716                set_window_composition_attribute(hwnd, Some((0, 0, 0, 0)), 4);
 717            }
 718        }
 719    }
 720
 721    fn minimize(&self) {
 722        unsafe { ShowWindowAsync(self.0.hwnd, SW_MINIMIZE).ok().log_err() };
 723    }
 724
 725    fn zoom(&self) {
 726        unsafe {
 727            if IsWindowVisible(self.0.hwnd).as_bool() {
 728                ShowWindowAsync(self.0.hwnd, SW_MAXIMIZE).ok().log_err();
 729            } else if let Some(status) = self.0.state.borrow_mut().initial_placement.as_mut() {
 730                status.state = WindowOpenState::Maximized;
 731            }
 732        }
 733    }
 734
 735    fn toggle_fullscreen(&self) {
 736        if unsafe { IsWindowVisible(self.0.hwnd).as_bool() } {
 737            self.0.toggle_fullscreen();
 738        } else if let Some(status) = self.0.state.borrow_mut().initial_placement.as_mut() {
 739            status.state = WindowOpenState::Fullscreen;
 740        }
 741    }
 742
 743    fn is_fullscreen(&self) -> bool {
 744        self.0.state.borrow().is_fullscreen()
 745    }
 746
 747    fn on_request_frame(&self, callback: Box<dyn FnMut(RequestFrameOptions)>) {
 748        self.0.state.borrow_mut().callbacks.request_frame = Some(callback);
 749    }
 750
 751    fn on_input(&self, callback: Box<dyn FnMut(PlatformInput) -> DispatchEventResult>) {
 752        self.0.state.borrow_mut().callbacks.input = Some(callback);
 753    }
 754
 755    fn on_active_status_change(&self, callback: Box<dyn FnMut(bool)>) {
 756        self.0.state.borrow_mut().callbacks.active_status_change = Some(callback);
 757    }
 758
 759    fn on_hover_status_change(&self, callback: Box<dyn FnMut(bool)>) {
 760        self.0.state.borrow_mut().callbacks.hovered_status_change = Some(callback);
 761    }
 762
 763    fn on_resize(&self, callback: Box<dyn FnMut(Size<Pixels>, f32)>) {
 764        self.0.state.borrow_mut().callbacks.resize = Some(callback);
 765    }
 766
 767    fn on_moved(&self, callback: Box<dyn FnMut()>) {
 768        self.0.state.borrow_mut().callbacks.moved = Some(callback);
 769    }
 770
 771    fn on_should_close(&self, callback: Box<dyn FnMut() -> bool>) {
 772        self.0.state.borrow_mut().callbacks.should_close = Some(callback);
 773    }
 774
 775    fn on_close(&self, callback: Box<dyn FnOnce()>) {
 776        self.0.state.borrow_mut().callbacks.close = Some(callback);
 777    }
 778
 779    fn on_hit_test_window_control(&self, callback: Box<dyn FnMut() -> Option<WindowControlArea>>) {
 780        self.0.state.borrow_mut().callbacks.hit_test_window_control = Some(callback);
 781    }
 782
 783    fn on_appearance_changed(&self, callback: Box<dyn FnMut()>) {
 784        self.0.state.borrow_mut().callbacks.appearance_changed = Some(callback);
 785    }
 786
 787    fn draw(&self, scene: &Scene) {
 788        self.0.state.borrow_mut().renderer.draw(scene).log_err();
 789    }
 790
 791    fn sprite_atlas(&self) -> Arc<dyn PlatformAtlas> {
 792        self.0.state.borrow().renderer.sprite_atlas()
 793    }
 794
 795    fn get_raw_handle(&self) -> HWND {
 796        self.0.hwnd
 797    }
 798
 799    fn gpu_specs(&self) -> Option<GpuSpecs> {
 800        self.0.state.borrow().renderer.gpu_specs().log_err()
 801    }
 802
 803    fn update_ime_position(&self, _bounds: Bounds<ScaledPixels>) {
 804        // There is no such thing on Windows.
 805    }
 806}
 807
 808#[implement(IDropTarget)]
 809struct WindowsDragDropHandler(pub Rc<WindowsWindowInner>);
 810
 811impl WindowsDragDropHandler {
 812    fn handle_drag_drop(&self, input: PlatformInput) {
 813        let mut lock = self.0.state.borrow_mut();
 814        if let Some(mut func) = lock.callbacks.input.take() {
 815            drop(lock);
 816            func(input);
 817            self.0.state.borrow_mut().callbacks.input = Some(func);
 818        }
 819    }
 820}
 821
 822#[allow(non_snake_case)]
 823impl IDropTarget_Impl for WindowsDragDropHandler_Impl {
 824    fn DragEnter(
 825        &self,
 826        pdataobj: windows::core::Ref<IDataObject>,
 827        _grfkeystate: MODIFIERKEYS_FLAGS,
 828        pt: &POINTL,
 829        pdweffect: *mut DROPEFFECT,
 830    ) -> windows::core::Result<()> {
 831        unsafe {
 832            let idata_obj = pdataobj.ok()?;
 833            let config = FORMATETC {
 834                cfFormat: CF_HDROP.0,
 835                ptd: std::ptr::null_mut() as _,
 836                dwAspect: DVASPECT_CONTENT.0,
 837                lindex: -1,
 838                tymed: TYMED_HGLOBAL.0 as _,
 839            };
 840            let cursor_position = POINT { x: pt.x, y: pt.y };
 841            if idata_obj.QueryGetData(&config as _) == S_OK {
 842                *pdweffect = DROPEFFECT_COPY;
 843                let Some(mut idata) = idata_obj.GetData(&config as _).log_err() else {
 844                    return Ok(());
 845                };
 846                if idata.u.hGlobal.is_invalid() {
 847                    return Ok(());
 848                }
 849                let hdrop = idata.u.hGlobal.0 as *mut HDROP;
 850                let mut paths = SmallVec::<[PathBuf; 2]>::new();
 851                with_file_names(*hdrop, |file_name| {
 852                    if let Some(path) = PathBuf::from_str(&file_name).log_err() {
 853                        paths.push(path);
 854                    }
 855                });
 856                ReleaseStgMedium(&mut idata);
 857                let mut cursor_position = cursor_position;
 858                ScreenToClient(self.0.hwnd, &mut cursor_position)
 859                    .ok()
 860                    .log_err();
 861                let scale_factor = self.0.state.borrow().scale_factor;
 862                let input = PlatformInput::FileDrop(FileDropEvent::Entered {
 863                    position: logical_point(
 864                        cursor_position.x as f32,
 865                        cursor_position.y as f32,
 866                        scale_factor,
 867                    ),
 868                    paths: ExternalPaths(paths),
 869                });
 870                self.handle_drag_drop(input);
 871            } else {
 872                *pdweffect = DROPEFFECT_NONE;
 873            }
 874            self.0
 875                .drop_target_helper
 876                .DragEnter(self.0.hwnd, idata_obj, &cursor_position, *pdweffect)
 877                .log_err();
 878        }
 879        Ok(())
 880    }
 881
 882    fn DragOver(
 883        &self,
 884        _grfkeystate: MODIFIERKEYS_FLAGS,
 885        pt: &POINTL,
 886        pdweffect: *mut DROPEFFECT,
 887    ) -> windows::core::Result<()> {
 888        let mut cursor_position = POINT { x: pt.x, y: pt.y };
 889        unsafe {
 890            *pdweffect = DROPEFFECT_COPY;
 891            self.0
 892                .drop_target_helper
 893                .DragOver(&cursor_position, *pdweffect)
 894                .log_err();
 895            ScreenToClient(self.0.hwnd, &mut cursor_position)
 896                .ok()
 897                .log_err();
 898        }
 899        let scale_factor = self.0.state.borrow().scale_factor;
 900        let input = PlatformInput::FileDrop(FileDropEvent::Pending {
 901            position: logical_point(
 902                cursor_position.x as f32,
 903                cursor_position.y as f32,
 904                scale_factor,
 905            ),
 906        });
 907        self.handle_drag_drop(input);
 908
 909        Ok(())
 910    }
 911
 912    fn DragLeave(&self) -> windows::core::Result<()> {
 913        unsafe {
 914            self.0.drop_target_helper.DragLeave().log_err();
 915        }
 916        let input = PlatformInput::FileDrop(FileDropEvent::Exited);
 917        self.handle_drag_drop(input);
 918
 919        Ok(())
 920    }
 921
 922    fn Drop(
 923        &self,
 924        pdataobj: windows::core::Ref<IDataObject>,
 925        _grfkeystate: MODIFIERKEYS_FLAGS,
 926        pt: &POINTL,
 927        pdweffect: *mut DROPEFFECT,
 928    ) -> windows::core::Result<()> {
 929        let idata_obj = pdataobj.ok()?;
 930        let mut cursor_position = POINT { x: pt.x, y: pt.y };
 931        unsafe {
 932            *pdweffect = DROPEFFECT_COPY;
 933            self.0
 934                .drop_target_helper
 935                .Drop(idata_obj, &cursor_position, *pdweffect)
 936                .log_err();
 937            ScreenToClient(self.0.hwnd, &mut cursor_position)
 938                .ok()
 939                .log_err();
 940        }
 941        let scale_factor = self.0.state.borrow().scale_factor;
 942        let input = PlatformInput::FileDrop(FileDropEvent::Submit {
 943            position: logical_point(
 944                cursor_position.x as f32,
 945                cursor_position.y as f32,
 946                scale_factor,
 947            ),
 948        });
 949        self.handle_drag_drop(input);
 950
 951        Ok(())
 952    }
 953}
 954
 955#[derive(Debug, Clone, Copy)]
 956pub(crate) struct ClickState {
 957    button: MouseButton,
 958    last_click: Instant,
 959    last_position: Point<DevicePixels>,
 960    double_click_spatial_tolerance_width: i32,
 961    double_click_spatial_tolerance_height: i32,
 962    double_click_interval: Duration,
 963    pub(crate) current_count: usize,
 964}
 965
 966impl ClickState {
 967    pub fn new() -> Self {
 968        let double_click_spatial_tolerance_width = unsafe { GetSystemMetrics(SM_CXDOUBLECLK) };
 969        let double_click_spatial_tolerance_height = unsafe { GetSystemMetrics(SM_CYDOUBLECLK) };
 970        let double_click_interval = Duration::from_millis(unsafe { GetDoubleClickTime() } as u64);
 971
 972        ClickState {
 973            button: MouseButton::Left,
 974            last_click: Instant::now(),
 975            last_position: Point::default(),
 976            double_click_spatial_tolerance_width,
 977            double_click_spatial_tolerance_height,
 978            double_click_interval,
 979            current_count: 0,
 980        }
 981    }
 982
 983    /// update self and return the needed click count
 984    pub fn update(&mut self, button: MouseButton, new_position: Point<DevicePixels>) -> usize {
 985        if self.button == button && self.is_double_click(new_position) {
 986            self.current_count += 1;
 987        } else {
 988            self.current_count = 1;
 989        }
 990        self.last_click = Instant::now();
 991        self.last_position = new_position;
 992        self.button = button;
 993
 994        self.current_count
 995    }
 996
 997    pub fn system_update(&mut self, wparam: usize) {
 998        match wparam {
 999            // SPI_SETDOUBLECLKWIDTH
1000            29 => {
1001                self.double_click_spatial_tolerance_width =
1002                    unsafe { GetSystemMetrics(SM_CXDOUBLECLK) }
1003            }
1004            // SPI_SETDOUBLECLKHEIGHT
1005            30 => {
1006                self.double_click_spatial_tolerance_height =
1007                    unsafe { GetSystemMetrics(SM_CYDOUBLECLK) }
1008            }
1009            // SPI_SETDOUBLECLICKTIME
1010            32 => {
1011                self.double_click_interval =
1012                    Duration::from_millis(unsafe { GetDoubleClickTime() } as u64)
1013            }
1014            _ => {}
1015        }
1016    }
1017
1018    #[inline]
1019    fn is_double_click(&self, new_position: Point<DevicePixels>) -> bool {
1020        let diff = self.last_position - new_position;
1021
1022        self.last_click.elapsed() < self.double_click_interval
1023            && diff.x.0.abs() <= self.double_click_spatial_tolerance_width
1024            && diff.y.0.abs() <= self.double_click_spatial_tolerance_height
1025    }
1026}
1027
1028struct StyleAndBounds {
1029    style: WINDOW_STYLE,
1030    x: i32,
1031    y: i32,
1032    cx: i32,
1033    cy: i32,
1034}
1035
1036#[repr(C)]
1037struct WINDOWCOMPOSITIONATTRIBDATA {
1038    attrib: u32,
1039    pv_data: *mut std::ffi::c_void,
1040    cb_data: usize,
1041}
1042
1043#[repr(C)]
1044struct AccentPolicy {
1045    accent_state: u32,
1046    accent_flags: u32,
1047    gradient_color: u32,
1048    animation_id: u32,
1049}
1050
1051type Color = (u8, u8, u8, u8);
1052
1053#[derive(Debug, Default, Clone, Copy)]
1054pub(crate) struct WindowBorderOffset {
1055    pub(crate) width_offset: i32,
1056    pub(crate) height_offset: i32,
1057}
1058
1059impl WindowBorderOffset {
1060    pub(crate) fn update(&mut self, hwnd: HWND) -> anyhow::Result<()> {
1061        let window_rect = unsafe {
1062            let mut rect = std::mem::zeroed();
1063            GetWindowRect(hwnd, &mut rect)?;
1064            rect
1065        };
1066        let client_rect = unsafe {
1067            let mut rect = std::mem::zeroed();
1068            GetClientRect(hwnd, &mut rect)?;
1069            rect
1070        };
1071        self.width_offset =
1072            (window_rect.right - window_rect.left) - (client_rect.right - client_rect.left);
1073        self.height_offset =
1074            (window_rect.bottom - window_rect.top) - (client_rect.bottom - client_rect.top);
1075        Ok(())
1076    }
1077}
1078
1079struct WindowOpenStatus {
1080    placement: WINDOWPLACEMENT,
1081    state: WindowOpenState,
1082}
1083
1084enum WindowOpenState {
1085    Maximized,
1086    Fullscreen,
1087    Windowed,
1088}
1089
1090const WINDOW_CLASS_NAME: PCWSTR = w!("Zed::Window");
1091
1092fn register_window_class(icon_handle: HICON) {
1093    static ONCE: Once = Once::new();
1094    ONCE.call_once(|| {
1095        let wc = WNDCLASSW {
1096            lpfnWndProc: Some(window_procedure),
1097            hIcon: icon_handle,
1098            lpszClassName: PCWSTR(WINDOW_CLASS_NAME.as_ptr()),
1099            style: CS_HREDRAW | CS_VREDRAW,
1100            hInstance: get_module_handle().into(),
1101            hbrBackground: unsafe { CreateSolidBrush(COLORREF(0x00000000)) },
1102            ..Default::default()
1103        };
1104        unsafe { RegisterClassW(&wc) };
1105    });
1106}
1107
1108unsafe extern "system" fn window_procedure(
1109    hwnd: HWND,
1110    msg: u32,
1111    wparam: WPARAM,
1112    lparam: LPARAM,
1113) -> LRESULT {
1114    if msg == WM_NCCREATE {
1115        let window_params = lparam.0 as *const CREATESTRUCTW;
1116        let window_params = unsafe { &*window_params };
1117        let window_creation_context = window_params.lpCreateParams as *mut WindowCreateContext;
1118        let window_creation_context = unsafe { &mut *window_creation_context };
1119        return match WindowsWindowInner::new(window_creation_context, hwnd, window_params) {
1120            Ok(window_state) => {
1121                let weak = Box::new(Rc::downgrade(&window_state));
1122                unsafe { set_window_long(hwnd, GWLP_USERDATA, Box::into_raw(weak) as isize) };
1123                window_creation_context.inner = Some(Ok(window_state));
1124                unsafe { DefWindowProcW(hwnd, msg, wparam, lparam) }
1125            }
1126            Err(error) => {
1127                window_creation_context.inner = Some(Err(error));
1128                LRESULT(0)
1129            }
1130        };
1131    }
1132
1133    let ptr = unsafe { get_window_long(hwnd, GWLP_USERDATA) } as *mut Weak<WindowsWindowInner>;
1134    if ptr.is_null() {
1135        return unsafe { DefWindowProcW(hwnd, msg, wparam, lparam) };
1136    }
1137    let inner = unsafe { &*ptr };
1138    let result = if let Some(inner) = inner.upgrade() {
1139        inner.handle_msg(hwnd, msg, wparam, lparam)
1140    } else {
1141        unsafe { DefWindowProcW(hwnd, msg, wparam, lparam) }
1142    };
1143
1144    if msg == WM_NCDESTROY {
1145        unsafe { set_window_long(hwnd, GWLP_USERDATA, 0) };
1146        unsafe { drop(Box::from_raw(ptr)) };
1147    }
1148
1149    result
1150}
1151
1152pub(crate) fn window_from_hwnd(hwnd: HWND) -> Option<Rc<WindowsWindowInner>> {
1153    if hwnd.is_invalid() {
1154        return None;
1155    }
1156
1157    let ptr = unsafe { get_window_long(hwnd, GWLP_USERDATA) } as *mut Weak<WindowsWindowInner>;
1158    if !ptr.is_null() {
1159        let inner = unsafe { &*ptr };
1160        inner.upgrade()
1161    } else {
1162        None
1163    }
1164}
1165
1166fn get_module_handle() -> HMODULE {
1167    unsafe {
1168        let mut h_module = std::mem::zeroed();
1169        GetModuleHandleExW(
1170            GET_MODULE_HANDLE_EX_FLAG_FROM_ADDRESS | GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT,
1171            windows::core::w!("ZedModule"),
1172            &mut h_module,
1173        )
1174        .expect("Unable to get module handle"); // this should never fail
1175
1176        h_module
1177    }
1178}
1179
1180fn register_drag_drop(window: &Rc<WindowsWindowInner>) -> Result<()> {
1181    let window_handle = window.hwnd;
1182    let handler = WindowsDragDropHandler(window.clone());
1183    // The lifetime of `IDropTarget` is handled by Windows, it won't release until
1184    // we call `RevokeDragDrop`.
1185    // So, it's safe to drop it here.
1186    let drag_drop_handler: IDropTarget = handler.into();
1187    unsafe {
1188        RegisterDragDrop(window_handle, &drag_drop_handler)
1189            .context("unable to register drag-drop event")?;
1190    }
1191    Ok(())
1192}
1193
1194fn calculate_window_rect(bounds: Bounds<DevicePixels>, border_offset: WindowBorderOffset) -> RECT {
1195    // NOTE:
1196    // The reason we're not using `AdjustWindowRectEx()` here is
1197    // that the size reported by this function is incorrect.
1198    // You can test it, and there are similar discussions online.
1199    // See: https://stackoverflow.com/questions/12423584/how-to-set-exact-client-size-for-overlapped-window-winapi
1200    //
1201    // So we manually calculate these values here.
1202    let mut rect = RECT {
1203        left: bounds.left().0,
1204        top: bounds.top().0,
1205        right: bounds.right().0,
1206        bottom: bounds.bottom().0,
1207    };
1208    let left_offset = border_offset.width_offset / 2;
1209    let top_offset = border_offset.height_offset / 2;
1210    let right_offset = border_offset.width_offset - left_offset;
1211    let bottom_offset = border_offset.height_offset - top_offset;
1212    rect.left -= left_offset;
1213    rect.top -= top_offset;
1214    rect.right += right_offset;
1215    rect.bottom += bottom_offset;
1216    rect
1217}
1218
1219fn calculate_client_rect(
1220    rect: RECT,
1221    border_offset: WindowBorderOffset,
1222    scale_factor: f32,
1223) -> Bounds<Pixels> {
1224    let left_offset = border_offset.width_offset / 2;
1225    let top_offset = border_offset.height_offset / 2;
1226    let right_offset = border_offset.width_offset - left_offset;
1227    let bottom_offset = border_offset.height_offset - top_offset;
1228    let left = rect.left + left_offset;
1229    let top = rect.top + top_offset;
1230    let right = rect.right - right_offset;
1231    let bottom = rect.bottom - bottom_offset;
1232    let physical_size = size(DevicePixels(right - left), DevicePixels(bottom - top));
1233    Bounds {
1234        origin: logical_point(left as f32, top as f32, scale_factor),
1235        size: physical_size.to_pixels(scale_factor),
1236    }
1237}
1238
1239fn retrieve_window_placement(
1240    hwnd: HWND,
1241    display: WindowsDisplay,
1242    initial_bounds: Bounds<Pixels>,
1243    scale_factor: f32,
1244    border_offset: WindowBorderOffset,
1245) -> Result<WINDOWPLACEMENT> {
1246    let mut placement = WINDOWPLACEMENT {
1247        length: std::mem::size_of::<WINDOWPLACEMENT>() as u32,
1248        ..Default::default()
1249    };
1250    unsafe { GetWindowPlacement(hwnd, &mut placement)? };
1251    // the bounds may be not inside the display
1252    let bounds = if display.check_given_bounds(initial_bounds) {
1253        initial_bounds
1254    } else {
1255        display.default_bounds()
1256    };
1257    let bounds = bounds.to_device_pixels(scale_factor);
1258    placement.rcNormalPosition = calculate_window_rect(bounds, border_offset);
1259    Ok(placement)
1260}
1261
1262fn set_window_composition_attribute(hwnd: HWND, color: Option<Color>, state: u32) {
1263    let mut version = unsafe { std::mem::zeroed() };
1264    let status = unsafe { windows::Wdk::System::SystemServices::RtlGetVersion(&mut version) };
1265    if !status.is_ok() || version.dwBuildNumber < 17763 {
1266        return;
1267    }
1268
1269    unsafe {
1270        type SetWindowCompositionAttributeType =
1271            unsafe extern "system" fn(HWND, *mut WINDOWCOMPOSITIONATTRIBDATA) -> BOOL;
1272        let module_name = PCSTR::from_raw(c"user32.dll".as_ptr() as *const u8);
1273        if let Some(user32) = GetModuleHandleA(module_name)
1274            .context("Unable to get user32.dll handle")
1275            .log_err()
1276        {
1277            let func_name = PCSTR::from_raw(c"SetWindowCompositionAttribute".as_ptr() as *const u8);
1278            let set_window_composition_attribute: SetWindowCompositionAttributeType =
1279                std::mem::transmute(GetProcAddress(user32, func_name));
1280            let mut color = color.unwrap_or_default();
1281            let is_acrylic = state == 4;
1282            if is_acrylic && color.3 == 0 {
1283                color.3 = 1;
1284            }
1285            let accent = AccentPolicy {
1286                accent_state: state,
1287                accent_flags: if is_acrylic { 0 } else { 2 },
1288                gradient_color: (color.0 as u32)
1289                    | ((color.1 as u32) << 8)
1290                    | ((color.2 as u32) << 16)
1291                    | ((color.3 as u32) << 24),
1292                animation_id: 0,
1293            };
1294            let mut data = WINDOWCOMPOSITIONATTRIBDATA {
1295                attrib: 0x13,
1296                pv_data: &accent as *const _ as *mut _,
1297                cb_data: std::mem::size_of::<AccentPolicy>(),
1298            };
1299            let _ = set_window_composition_attribute(hwnd, &mut data as *mut _ as _);
1300        }
1301    }
1302}
1303
1304#[cfg(test)]
1305mod tests {
1306    use super::ClickState;
1307    use crate::{DevicePixels, MouseButton, point};
1308    use std::time::Duration;
1309
1310    #[test]
1311    fn test_double_click_interval() {
1312        let mut state = ClickState::new();
1313        assert_eq!(
1314            state.update(MouseButton::Left, point(DevicePixels(0), DevicePixels(0))),
1315            1
1316        );
1317        assert_eq!(
1318            state.update(MouseButton::Right, point(DevicePixels(0), DevicePixels(0))),
1319            1
1320        );
1321        assert_eq!(
1322            state.update(MouseButton::Left, point(DevicePixels(0), DevicePixels(0))),
1323            1
1324        );
1325        assert_eq!(
1326            state.update(MouseButton::Left, point(DevicePixels(0), DevicePixels(0))),
1327            2
1328        );
1329        state.last_click -= Duration::from_millis(700);
1330        assert_eq!(
1331            state.update(MouseButton::Left, point(DevicePixels(0), DevicePixels(0))),
1332            1
1333        );
1334    }
1335
1336    #[test]
1337    fn test_double_click_spatial_tolerance() {
1338        let mut state = ClickState::new();
1339        assert_eq!(
1340            state.update(MouseButton::Left, point(DevicePixels(-3), DevicePixels(0))),
1341            1
1342        );
1343        assert_eq!(
1344            state.update(MouseButton::Left, point(DevicePixels(0), DevicePixels(3))),
1345            2
1346        );
1347        assert_eq!(
1348            state.update(MouseButton::Right, point(DevicePixels(3), DevicePixels(2))),
1349            1
1350        );
1351        assert_eq!(
1352            state.update(MouseButton::Right, point(DevicePixels(10), DevicePixels(0))),
1353            1
1354        );
1355    }
1356}