commit
cd48fe57c7
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@ -18,6 +18,7 @@ raw-window-handle = "0.3.3"
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xcb = { version = "0.9", features = ["thread", "xlib_xcb", "dri2"] }
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x11 = { version = "2.18", features = ["xlib"] }
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libc = "0.2"
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nix = "0.18"
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[target.'cfg(target_os="windows")'.dependencies]
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winapi = { version = "0.3.8", features = ["libloaderapi", "winuser", "windef", "minwindef", "guiddef", "combaseapi", "wingdi", "errhandlingapi"] }
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@ -20,7 +20,7 @@ impl WindowHandler for MyProgram {
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Self {}
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}
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fn draw(&mut self, window: &mut Window) {}
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fn draw(&mut self, _window: &mut Window) {}
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fn on_event(&mut self, window: &mut Window, event: Event) {
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match event {
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@ -1,28 +1,30 @@
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use std::ffi::CStr;
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use std::os::raw::{c_ulong, c_void};
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use std::time::*;
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use raw_window_handle::{unix::XlibHandle, HasRawWindowHandle, RawWindowHandle};
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use super::XcbConnection;
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use crate::{Event, MouseButtonID, MouseScroll, Parent, WindowHandler, WindowOpenOptions};
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use raw_window_handle::{unix::XlibHandle, HasRawWindowHandle, RawWindowHandle};
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pub struct Window {
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xcb_connection: XcbConnection,
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window_id: u32,
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scaling: f64,
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frame_interval: Duration,
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event_loop_running: bool
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}
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// FIXME: move to outer crate context
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pub struct WindowHandle;
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impl Window {
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pub fn open<H: WindowHandler>(options: WindowOpenOptions) -> WindowHandle {
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// Convert the parent to a X11 window ID if we're given one
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let parent = match options.parent {
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Parent::None => None,
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Parent::AsIfParented => None, // TODO: ???
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Parent::WithParent(p) => Some(p as u32),
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};
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// Connect to the X server
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let xcb_connection = XcbConnection::new();
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// FIXME: baseview error type instead of unwrap()
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let xcb_connection = XcbConnection::new().unwrap();
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// Get screen information (?)
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let setup = xcb_connection.conn.get_setup();
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@ -34,10 +36,9 @@ impl Window {
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let foreground = xcb_connection.conn.generate_id();
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// Convert parent into something that X understands
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let parent_id = if let Some(p) = parent {
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p
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} else {
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screen.root()
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let parent_id = match options.parent {
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Parent::WithParent(p) => p as u32,
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Parent::None | Parent::AsIfParented => screen.root(),
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};
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xcb::create_gc(
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@ -73,6 +74,7 @@ impl Window {
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| xcb::EVENT_MASK_KEY_RELEASE,
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)],
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);
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xcb::map_window(&xcb_connection.conn, window_id);
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// Change window title
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@ -89,22 +91,171 @@ impl Window {
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xcb_connection.conn.flush();
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let scaling = get_scaling_xft(&xcb_connection)
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.or(get_scaling_screen_dimensions(&xcb_connection))
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.unwrap_or(1.0);
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let scaling = xcb_connection.get_scaling().unwrap_or(1.0);
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let mut window = Self {
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xcb_connection,
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window_id,
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scaling,
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frame_interval: Duration::from_millis(15),
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event_loop_running: false
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};
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let mut handler = H::build(&mut window);
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run_event_loop(&mut window, &mut handler);
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window.run_event_loop(&mut handler);
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WindowHandle
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}
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#[inline]
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fn drain_xcb_events<H: WindowHandler>(&mut self, handler: &mut H) {
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while let Some(event) = self.xcb_connection.conn.poll_for_event() {
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self.handle_xcb_event(handler, event);
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}
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}
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// Event loop
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// FIXME: poll() acts fine on linux, sometimes funky on *BSD. XCB upstream uses a define to
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// switch between poll() and select() (the latter of which is fine on *BSD), and we should do
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// the same.
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fn run_event_loop<H: WindowHandler>(&mut self, handler: &mut H) {
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use nix::poll::*;
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let xcb_fd = unsafe {
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let raw_conn = self.xcb_connection.conn.get_raw_conn();
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xcb::ffi::xcb_get_file_descriptor(raw_conn)
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};
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let mut next_frame = Instant::now() + self.frame_interval;
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self.event_loop_running = true;
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while self.event_loop_running {
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let now = Instant::now();
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let until_next_frame =
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if now > next_frame {
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handler.draw(self);
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next_frame = now + self.frame_interval;
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self.frame_interval
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} else {
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next_frame - now
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};
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let mut fds = [
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PollFd::new(xcb_fd, PollFlags::POLLIN)
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];
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// FIXME: handle errors
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poll(&mut fds, until_next_frame.subsec_millis() as i32)
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.unwrap();
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if let Some(revents) = fds[0].revents() {
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if revents.contains(PollFlags::POLLERR) {
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panic!("xcb connection poll error");
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}
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if revents.contains(PollFlags::POLLIN) {
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self.drain_xcb_events(handler);
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}
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}
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}
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}
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fn handle_xcb_event<H: WindowHandler>(&mut self, handler: &mut H, event: xcb::GenericEvent) {
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let event_type = event.response_type() & !0x80;
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// For all of the keyboard and mouse events, you can fetch
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// `x`, `y`, `detail`, and `state`.
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// - `x` and `y` are the position inside the window where the cursor currently is
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// when the event happened.
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// - `detail` will tell you which keycode was pressed/released (for keyboard events)
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// or which mouse button was pressed/released (for mouse events).
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// For mouse events, here's what the value means (at least on my current mouse):
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// 1 = left mouse button
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// 2 = middle mouse button (scroll wheel)
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// 3 = right mouse button
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// 4 = scroll wheel up
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// 5 = scroll wheel down
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// 8 = lower side button ("back" button)
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// 9 = upper side button ("forward" button)
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// Note that you *will* get a "button released" event for even the scroll wheel
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// events, which you can probably ignore.
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// - `state` will tell you the state of the main three mouse buttons and some of
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// the keyboard modifier keys at the time of the event.
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// http://rtbo.github.io/rust-xcb/src/xcb/ffi/xproto.rs.html#445
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match event_type {
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xcb::EXPOSE => {
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handler.draw(self);
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}
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xcb::MOTION_NOTIFY => {
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let event = unsafe { xcb::cast_event::<xcb::MotionNotifyEvent>(&event) };
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let detail = event.detail();
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if detail != 4 && detail != 5 {
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handler.on_event(
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self,
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Event::CursorMotion(event.event_x() as i32, event.event_y() as i32),
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);
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}
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}
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xcb::BUTTON_PRESS => {
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let event = unsafe { xcb::cast_event::<xcb::ButtonPressEvent>(&event) };
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let detail = event.detail();
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match detail {
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4 => {
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handler.on_event(
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self,
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Event::MouseScroll(MouseScroll {
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x_delta: 0.0,
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y_delta: 1.0,
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}),
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);
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}
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5 => {
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handler.on_event(
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self,
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Event::MouseScroll(MouseScroll {
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x_delta: 0.0,
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y_delta: -1.0,
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}),
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);
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}
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detail => {
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let button_id = mouse_id(detail);
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handler.on_event(self, Event::MouseDown(button_id));
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}
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}
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}
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xcb::BUTTON_RELEASE => {
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let event = unsafe { xcb::cast_event::<xcb::ButtonPressEvent>(&event) };
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let detail = event.detail();
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if detail != 4 && detail != 5 {
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let button_id = mouse_id(detail);
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handler.on_event(self, Event::MouseUp(button_id));
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}
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}
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xcb::KEY_PRESS => {
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let event = unsafe { xcb::cast_event::<xcb::KeyPressEvent>(&event) };
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let detail = event.detail();
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handler.on_event(self, Event::KeyDown(detail));
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}
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xcb::KEY_RELEASE => {
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let event = unsafe { xcb::cast_event::<xcb::KeyReleaseEvent>(&event) };
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let detail = event.detail();
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handler.on_event(self, Event::KeyUp(detail));
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}
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_ => {
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println!("Unhandled event type: {:?}", event_type);
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}
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}
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}
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}
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unsafe impl HasRawWindowHandle for Window {
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@ -117,189 +268,6 @@ unsafe impl HasRawWindowHandle for Window {
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}
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}
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pub struct WindowHandle;
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// Event loop
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fn run_event_loop<H: WindowHandler>(window: &mut Window, handler: &mut H) {
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loop {
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let ev = window.xcb_connection.conn.wait_for_event();
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if let Some(event) = ev {
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let event_type = event.response_type() & !0x80;
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// For all of the keyboard and mouse events, you can fetch
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// `x`, `y`, `detail`, and `state`.
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// - `x` and `y` are the position inside the window where the cursor currently is
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// when the event happened.
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// - `detail` will tell you which keycode was pressed/released (for keyboard events)
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// or which mouse button was pressed/released (for mouse events).
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// For mouse events, here's what the value means (at least on my current mouse):
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// 1 = left mouse button
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// 2 = middle mouse button (scroll wheel)
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// 3 = right mouse button
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// 4 = scroll wheel up
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// 5 = scroll wheel down
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// 8 = lower side button ("back" button)
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// 9 = upper side button ("forward" button)
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// Note that you *will* get a "button released" event for even the scroll wheel
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// events, which you can probably ignore.
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// - `state` will tell you the state of the main three mouse buttons and some of
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// the keyboard modifier keys at the time of the event.
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// http://rtbo.github.io/rust-xcb/src/xcb/ffi/xproto.rs.html#445
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match event_type {
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xcb::EXPOSE => {
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handler.draw(window);
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}
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xcb::MOTION_NOTIFY => {
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let event = unsafe { xcb::cast_event::<xcb::MotionNotifyEvent>(&event) };
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let detail = event.detail();
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if detail != 4 && detail != 5 {
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handler.on_event(
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window,
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Event::CursorMotion(event.event_x() as i32, event.event_y() as i32),
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);
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}
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}
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xcb::BUTTON_PRESS => {
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let event = unsafe { xcb::cast_event::<xcb::ButtonPressEvent>(&event) };
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let detail = event.detail();
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match detail {
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4 => {
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handler.on_event(
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window,
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Event::MouseScroll(MouseScroll {
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x_delta: 0.0,
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y_delta: 1.0,
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}),
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);
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}
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5 => {
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handler.on_event(
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window,
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Event::MouseScroll(MouseScroll {
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x_delta: 0.0,
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y_delta: -1.0,
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}),
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);
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}
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detail => {
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let button_id = mouse_id(detail);
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handler.on_event(window, Event::MouseDown(button_id));
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}
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}
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}
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xcb::BUTTON_RELEASE => {
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let event = unsafe { xcb::cast_event::<xcb::ButtonPressEvent>(&event) };
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let detail = event.detail();
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if detail != 4 && detail != 5 {
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let button_id = mouse_id(detail);
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handler.on_event(window, Event::MouseUp(button_id));
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}
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}
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xcb::KEY_PRESS => {
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let event = unsafe { xcb::cast_event::<xcb::KeyPressEvent>(&event) };
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let detail = event.detail();
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handler.on_event(window, Event::KeyDown(detail));
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}
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xcb::KEY_RELEASE => {
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let event = unsafe { xcb::cast_event::<xcb::KeyReleaseEvent>(&event) };
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let detail = event.detail();
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handler.on_event(window, Event::KeyUp(detail));
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}
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_ => {
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println!("Unhandled event type: {:?}", event_type);
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}
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}
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}
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}
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}
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// Try to get the scaling with this function first.
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// If this gives you `None`, fall back to `get_scaling_screen_dimensions`.
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// If neither work, I guess just assume 96.0 and don't do any scaling.
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fn get_scaling_xft(xcb_connection: &XcbConnection) -> Option<f64> {
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use std::ffi::CString;
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use x11::xlib::{
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XResourceManagerString, XrmDestroyDatabase, XrmGetResource, XrmGetStringDatabase, XrmValue,
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};
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let display = xcb_connection.conn.get_raw_dpy();
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unsafe {
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let rms = XResourceManagerString(display);
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if !rms.is_null() {
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let db = XrmGetStringDatabase(rms);
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if !db.is_null() {
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let mut value = XrmValue {
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size: 0,
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addr: std::ptr::null_mut(),
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};
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let mut value_type: *mut libc::c_char = std::ptr::null_mut();
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let name_c_str = CString::new("Xft.dpi").unwrap();
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let c_str = CString::new("Xft.Dpi").unwrap();
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let dpi = if XrmGetResource(
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db,
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name_c_str.as_ptr(),
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c_str.as_ptr(),
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&mut value_type,
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&mut value,
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) != 0
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&& !value.addr.is_null()
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{
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let value_addr: &CStr = CStr::from_ptr(value.addr);
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value_addr.to_str().ok();
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let value_str = value_addr.to_str().ok()?;
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let value_f64: f64 = value_str.parse().ok()?;
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let dpi_to_scale = value_f64 / 96.0;
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Some(dpi_to_scale)
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} else {
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None
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};
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XrmDestroyDatabase(db);
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return dpi;
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}
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}
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}
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None
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}
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// Try to get the scaling with `get_scaling_xft` first.
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// Only use this function as a fallback.
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// If neither work, I guess just assume 96.0 and don't do any scaling.
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fn get_scaling_screen_dimensions(xcb_connection: &XcbConnection) -> Option<f64> {
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// Figure out screen information
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let setup = xcb_connection.conn.get_setup();
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let screen = setup
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.roots()
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.nth(xcb_connection.xlib_display as usize)
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.unwrap();
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// Get the DPI from the screen struct
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//
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// there are 2.54 centimeters to an inch; so there are 25.4 millimeters.
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// dpi = N pixels / (M millimeters / (25.4 millimeters / 1 inch))
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// = N pixels / (M inch / 25.4)
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// = N * 25.4 pixels / M inch
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let width_px = screen.width_in_pixels() as f64;
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let width_mm = screen.width_in_millimeters() as f64;
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let height_px = screen.height_in_pixels() as f64;
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let height_mm = screen.height_in_millimeters() as f64;
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let _xres = width_px * 25.4 / width_mm;
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let yres = height_px * 25.4 / height_mm;
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let yscale = yres / 96.0;
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// TODO: choose between `xres` and `yres`? (probably both are the same?)
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Some(yscale)
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}
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|
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fn mouse_id(id: u8) -> MouseButtonID {
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match id {
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1 => MouseButtonID::Left,
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||||
|
|
|
@ -2,14 +2,109 @@
|
|||
///
|
||||
/// Keeps track of the xcb connection itself and the xlib display ID that was used to connect.
|
||||
|
||||
use std::ffi::{
|
||||
CString,
|
||||
CStr
|
||||
};
|
||||
|
||||
pub struct XcbConnection {
|
||||
pub conn: xcb::Connection,
|
||||
pub xlib_display: i32,
|
||||
}
|
||||
|
||||
impl XcbConnection {
|
||||
pub fn new() -> Self {
|
||||
let (conn, xlib_display) = xcb::Connection::connect_with_xlib_display().unwrap();
|
||||
Self { conn, xlib_display }
|
||||
pub fn new() -> Result<Self, xcb::base::ConnError> {
|
||||
xcb::Connection::connect_with_xlib_display()
|
||||
.map(|(conn, xlib_display)|
|
||||
Self {
|
||||
conn,
|
||||
xlib_display
|
||||
})
|
||||
}
|
||||
|
||||
// Try to get the scaling with this function first.
|
||||
// If this gives you `None`, fall back to `get_scaling_screen_dimensions`.
|
||||
// If neither work, I guess just assume 96.0 and don't do any scaling.
|
||||
fn get_scaling_xft(&self) -> Option<f64> {
|
||||
use x11::xlib::{
|
||||
XResourceManagerString, XrmDestroyDatabase, XrmGetResource, XrmGetStringDatabase, XrmValue,
|
||||
};
|
||||
|
||||
let display = self.conn.get_raw_dpy();
|
||||
unsafe {
|
||||
let rms = XResourceManagerString(display);
|
||||
if !rms.is_null() {
|
||||
let db = XrmGetStringDatabase(rms);
|
||||
if !db.is_null() {
|
||||
let mut value = XrmValue {
|
||||
size: 0,
|
||||
addr: std::ptr::null_mut(),
|
||||
};
|
||||
|
||||
let mut value_type: *mut libc::c_char = std::ptr::null_mut();
|
||||
let name_c_str = CString::new("Xft.dpi").unwrap();
|
||||
let c_str = CString::new("Xft.Dpi").unwrap();
|
||||
|
||||
let dpi = if XrmGetResource(
|
||||
db,
|
||||
name_c_str.as_ptr(),
|
||||
c_str.as_ptr(),
|
||||
&mut value_type,
|
||||
&mut value,
|
||||
) != 0
|
||||
&& !value.addr.is_null()
|
||||
{
|
||||
let value_addr: &CStr = CStr::from_ptr(value.addr);
|
||||
value_addr.to_str().ok();
|
||||
let value_str = value_addr.to_str().ok()?;
|
||||
let value_f64: f64 = value_str.parse().ok()?;
|
||||
let dpi_to_scale = value_f64 / 96.0;
|
||||
Some(dpi_to_scale)
|
||||
} else {
|
||||
None
|
||||
};
|
||||
XrmDestroyDatabase(db);
|
||||
|
||||
return dpi;
|
||||
}
|
||||
}
|
||||
}
|
||||
None
|
||||
}
|
||||
|
||||
// Try to get the scaling with `get_scaling_xft` first.
|
||||
// Only use this function as a fallback.
|
||||
// If neither work, I guess just assume 96.0 and don't do any scaling.
|
||||
fn get_scaling_screen_dimensions(&self) -> Option<f64> {
|
||||
// Figure out screen information
|
||||
let setup = self.conn.get_setup();
|
||||
let screen = setup
|
||||
.roots()
|
||||
.nth(self.xlib_display as usize)
|
||||
.unwrap();
|
||||
|
||||
// Get the DPI from the screen struct
|
||||
//
|
||||
// there are 2.54 centimeters to an inch; so there are 25.4 millimeters.
|
||||
// dpi = N pixels / (M millimeters / (25.4 millimeters / 1 inch))
|
||||
// = N pixels / (M inch / 25.4)
|
||||
// = N * 25.4 pixels / M inch
|
||||
let width_px = screen.width_in_pixels() as f64;
|
||||
let width_mm = screen.width_in_millimeters() as f64;
|
||||
let height_px = screen.height_in_pixels() as f64;
|
||||
let height_mm = screen.height_in_millimeters() as f64;
|
||||
let _xres = width_px * 25.4 / width_mm;
|
||||
let yres = height_px * 25.4 / height_mm;
|
||||
|
||||
let yscale = yres / 96.0;
|
||||
|
||||
// TODO: choose between `xres` and `yres`? (probably both are the same?)
|
||||
Some(yscale)
|
||||
}
|
||||
|
||||
#[inline]
|
||||
pub fn get_scaling(&self) -> Option<f64> {
|
||||
self.get_scaling_xft()
|
||||
.or(self.get_scaling_screen_dimensions())
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue