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use std::{
fs, io,
os::unix::io::{AsRawFd, FromRawFd, IntoRawFd, RawFd},
sync::{Arc, Mutex},
};
use wayland_client::protocol::wl_data_device_manager::DndAction;
use wayland_client::protocol::wl_data_offer;
use wayland_client::Main;
#[derive(Debug)]
struct Inner {
mime_types: Vec<String>,
actions: DndAction,
current_action: DndAction,
serial: u32,
}
#[derive(Debug)]
pub struct DataOffer {
pub(crate) offer: wl_data_offer::WlDataOffer,
inner: Arc<Mutex<Inner>>,
}
impl DataOffer {
pub(crate) fn new(offer: Main<wl_data_offer::WlDataOffer>) -> DataOffer {
let inner = Arc::new(Mutex::new(Inner {
mime_types: Vec::new(),
actions: DndAction::None,
current_action: DndAction::None,
serial: 0,
}));
let inner2 = inner.clone();
offer.quick_assign(move |_, event, _| {
use self::wl_data_offer::Event;
let mut inner = inner2.lock().unwrap();
match event {
Event::Offer { mime_type } => {
inner.mime_types.push(mime_type);
}
Event::SourceActions { source_actions } => {
inner.actions = source_actions;
}
Event::Action { dnd_action } => {
inner.current_action = dnd_action;
}
_ => unreachable!(),
}
});
DataOffer { offer: offer.detach(), inner }
}
pub fn with_mime_types<F, T>(&self, f: F) -> T
where
F: FnOnce(&[String]) -> T,
{
let inner = self.inner.lock().unwrap();
f(&inner.mime_types)
}
pub fn get_available_actions(&self) -> DndAction {
self.inner.lock().unwrap().actions
}
pub fn get_current_action(&self) -> DndAction {
self.inner.lock().unwrap().current_action
}
pub fn accept(&self, mime_type: Option<String>) {
let serial = self.inner.lock().unwrap().serial;
self.offer.accept(serial, mime_type);
}
pub fn receive(&self, mime_type: String) -> std::io::Result<ReadPipe> {
use nix::fcntl::OFlag;
use nix::unistd::{close, pipe2};
let (readfd, writefd) = pipe2(OFlag::O_CLOEXEC)?;
self.offer.receive(mime_type, writefd);
if let Err(err) = close(writefd) {
log::warn!("Failed to close write pipe: {}", err);
}
Ok(unsafe { FromRawFd::from_raw_fd(readfd) })
}
pub fn set_actions(&self, supported: DndAction, preferred: DndAction) {
self.offer.set_actions(supported, preferred);
}
pub fn finish(&self) {
self.offer.finish();
self.offer.destroy();
}
}
impl Drop for DataOffer {
fn drop(&mut self) {
self.offer.destroy();
}
}
#[derive(Debug)]
pub struct ReadPipe {
#[cfg(feature = "calloop")]
file: calloop::generic::Generic<fs::File>,
#[cfg(not(feature = "calloop"))]
file: fs::File,
}
#[cfg(feature = "calloop")]
impl io::Read for ReadPipe {
fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
self.file.file.read(buf)
}
}
#[cfg(not(feature = "calloop"))]
impl io::Read for ReadPipe {
fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
self.file.read(buf)
}
}
#[cfg(feature = "calloop")]
impl FromRawFd for ReadPipe {
unsafe fn from_raw_fd(fd: RawFd) -> ReadPipe {
ReadPipe {
file: calloop::generic::Generic::new(
FromRawFd::from_raw_fd(fd),
calloop::Interest::READ,
calloop::Mode::Level,
),
}
}
}
#[cfg(not(feature = "calloop"))]
impl FromRawFd for ReadPipe {
unsafe fn from_raw_fd(fd: RawFd) -> ReadPipe {
ReadPipe { file: FromRawFd::from_raw_fd(fd) }
}
}
#[cfg(feature = "calloop")]
impl AsRawFd for ReadPipe {
fn as_raw_fd(&self) -> RawFd {
self.file.file.as_raw_fd()
}
}
#[cfg(not(feature = "calloop"))]
impl AsRawFd for ReadPipe {
fn as_raw_fd(&self) -> RawFd {
self.file.as_raw_fd()
}
}
#[cfg(feature = "calloop")]
impl IntoRawFd for ReadPipe {
fn into_raw_fd(self) -> RawFd {
self.file.file.into_raw_fd()
}
}
#[cfg(not(feature = "calloop"))]
impl IntoRawFd for ReadPipe {
fn into_raw_fd(self) -> RawFd {
self.file.into_raw_fd()
}
}
#[cfg(feature = "calloop")]
impl calloop::EventSource for ReadPipe {
type Event = ();
type Metadata = fs::File;
type Ret = ();
fn process_events<F>(
&mut self,
readiness: calloop::Readiness,
token: calloop::Token,
mut callback: F,
) -> std::io::Result<calloop::PostAction>
where
F: FnMut((), &mut fs::File),
{
self.file.process_events(readiness, token, |_, file| {
callback((), file);
Ok(calloop::PostAction::Continue)
})
}
fn register(
&mut self,
poll: &mut calloop::Poll,
token_factory: &mut calloop::TokenFactory,
) -> std::io::Result<()> {
self.file.register(poll, token_factory)
}
fn reregister(
&mut self,
poll: &mut calloop::Poll,
token_factory: &mut calloop::TokenFactory,
) -> std::io::Result<()> {
self.file.reregister(poll, token_factory)
}
fn unregister(&mut self, poll: &mut calloop::Poll) -> std::io::Result<()> {
self.file.unregister(poll)
}
}