use crate::{ffi, Session, UsbDevice};
use glib::{
object::ObjectType as _,
prelude::*,
signal::{connect_raw, SignalHandlerId},
translate::*,
};
use std::{boxed::Box as Box_, pin::Pin};
glib::wrapper! {
#[doc(alias = "SpiceUsbDeviceManager")]
pub struct UsbDeviceManager(Object<ffi::SpiceUsbDeviceManager, ffi::SpiceUsbDeviceManagerClass>);
match fn {
type_ => || ffi::spice_usb_device_manager_get_type(),
}
}
impl UsbDeviceManager {
#[cfg(feature = "v0_40")]
#[cfg_attr(docsrs, doc(cfg(feature = "v0_40")))]
#[doc(alias = "spice_usb_device_manager_allocate_device_for_file_descriptor")]
pub fn allocate_device_for_file_descriptor(
&self,
file_descriptor: i32,
) -> Result<Option<UsbDevice>, glib::Error> {
unsafe {
let mut error = std::ptr::null_mut();
let ret = ffi::spice_usb_device_manager_allocate_device_for_file_descriptor(
self.to_glib_none().0,
file_descriptor,
&mut error,
);
if error.is_null() {
Ok(from_glib_full(ret))
} else {
Err(from_glib_full(error))
}
}
}
#[doc(alias = "spice_usb_device_manager_can_redirect_device")]
pub fn can_redirect_device(&self, device: &UsbDevice) -> Result<(), glib::Error> {
unsafe {
let mut error = std::ptr::null_mut();
let is_ok = ffi::spice_usb_device_manager_can_redirect_device(
self.to_glib_none().0,
mut_override(device.to_glib_none().0),
&mut error,
);
debug_assert_eq!(is_ok == glib::ffi::GFALSE, !error.is_null());
if error.is_null() {
Ok(())
} else {
Err(from_glib_full(error))
}
}
}
#[doc(alias = "spice_usb_device_manager_connect_device_async")]
pub fn connect_device_async<P: FnOnce(Result<(), glib::Error>) + 'static>(
&self,
device: &UsbDevice,
cancellable: Option<&impl IsA<gio::Cancellable>>,
callback: P,
) {
let main_context = glib::MainContext::ref_thread_default();
let is_main_context_owner = main_context.is_owner();
let has_acquired_main_context = (!is_main_context_owner)
.then(|| main_context.acquire().ok())
.flatten();
assert!(
is_main_context_owner || has_acquired_main_context.is_some(),
"Async operations only allowed if the thread is owning the MainContext"
);
let user_data: Box_<glib::thread_guard::ThreadGuard<P>> =
Box_::new(glib::thread_guard::ThreadGuard::new(callback));
unsafe extern "C" fn connect_device_async_trampoline<
P: FnOnce(Result<(), glib::Error>) + 'static,
>(
_source_object: *mut glib::gobject_ffi::GObject,
res: *mut gio::ffi::GAsyncResult,
user_data: glib::ffi::gpointer,
) {
unsafe {
let mut error = std::ptr::null_mut();
ffi::spice_usb_device_manager_connect_device_finish(
_source_object as *mut _,
res,
&mut error,
);
let result = if error.is_null() {
Ok(())
} else {
Err(from_glib_full(error))
};
let callback: Box_<glib::thread_guard::ThreadGuard<P>> =
Box_::from_raw(user_data as *mut _);
let callback: P = callback.into_inner();
callback(result);
}
}
let callback = connect_device_async_trampoline::<P>;
unsafe {
ffi::spice_usb_device_manager_connect_device_async(
self.to_glib_none().0,
mut_override(device.to_glib_none().0),
cancellable.map(|p| p.as_ref()).to_glib_none().0,
Some(callback),
Box_::into_raw(user_data) as *mut _,
);
}
}
pub fn connect_device_future(
&self,
device: &UsbDevice,
) -> Pin<Box_<dyn std::future::Future<Output = Result<(), glib::Error>> + 'static>> {
let device = device.clone();
Box_::pin(gio::GioFuture::new(self, move |obj, cancellable, send| {
obj.connect_device_async(&device, Some(cancellable), move |res| {
send.resolve(res);
});
}))
}
#[doc(alias = "spice_usb_device_manager_create_shared_cd_device")]
pub fn create_shared_cd_device(&self, filename: &str) -> Result<(), glib::Error> {
unsafe {
let mut error = std::ptr::null_mut();
let is_ok = ffi::spice_usb_device_manager_create_shared_cd_device(
self.to_glib_none().0,
filename.to_glib_none().0,
&mut error,
);
debug_assert_eq!(is_ok == glib::ffi::GFALSE, !error.is_null());
if error.is_null() {
Ok(())
} else {
Err(from_glib_full(error))
}
}
}
#[doc(alias = "spice_usb_device_manager_disconnect_device")]
pub fn disconnect_device(&self, device: &UsbDevice) {
unsafe {
ffi::spice_usb_device_manager_disconnect_device(
self.to_glib_none().0,
mut_override(device.to_glib_none().0),
);
}
}
#[doc(alias = "spice_usb_device_manager_disconnect_device_async")]
pub fn disconnect_device_async<P: FnOnce(Result<(), glib::Error>) + 'static>(
&self,
device: &UsbDevice,
cancellable: Option<&impl IsA<gio::Cancellable>>,
callback: P,
) {
let main_context = glib::MainContext::ref_thread_default();
let is_main_context_owner = main_context.is_owner();
let has_acquired_main_context = (!is_main_context_owner)
.then(|| main_context.acquire().ok())
.flatten();
assert!(
is_main_context_owner || has_acquired_main_context.is_some(),
"Async operations only allowed if the thread is owning the MainContext"
);
let user_data: Box_<glib::thread_guard::ThreadGuard<P>> =
Box_::new(glib::thread_guard::ThreadGuard::new(callback));
unsafe extern "C" fn disconnect_device_async_trampoline<
P: FnOnce(Result<(), glib::Error>) + 'static,
>(
_source_object: *mut glib::gobject_ffi::GObject,
res: *mut gio::ffi::GAsyncResult,
user_data: glib::ffi::gpointer,
) {
unsafe {
let mut error = std::ptr::null_mut();
ffi::spice_usb_device_manager_disconnect_device_finish(
_source_object as *mut _,
res,
&mut error,
);
let result = if error.is_null() {
Ok(())
} else {
Err(from_glib_full(error))
};
let callback: Box_<glib::thread_guard::ThreadGuard<P>> =
Box_::from_raw(user_data as *mut _);
let callback: P = callback.into_inner();
callback(result);
}
}
let callback = disconnect_device_async_trampoline::<P>;
unsafe {
ffi::spice_usb_device_manager_disconnect_device_async(
self.to_glib_none().0,
mut_override(device.to_glib_none().0),
cancellable.map(|p| p.as_ref()).to_glib_none().0,
Some(callback),
Box_::into_raw(user_data) as *mut _,
);
}
}
pub fn disconnect_device_future(
&self,
device: &UsbDevice,
) -> Pin<Box_<dyn std::future::Future<Output = Result<(), glib::Error>> + 'static>> {
let device = device.clone();
Box_::pin(gio::GioFuture::new(self, move |obj, cancellable, send| {
obj.disconnect_device_async(&device, Some(cancellable), move |res| {
send.resolve(res);
});
}))
}
#[doc(alias = "spice_usb_device_manager_get_devices")]
#[doc(alias = "get_devices")]
pub fn devices(&self) -> Vec<UsbDevice> {
unsafe {
FromGlibPtrContainer::from_glib_full(ffi::spice_usb_device_manager_get_devices(
self.to_glib_none().0,
))
}
}
#[doc(alias = "spice_usb_device_manager_get_devices_with_filter")]
#[doc(alias = "get_devices_with_filter")]
pub fn devices_with_filter(&self, filter: Option<&str>) -> Vec<UsbDevice> {
unsafe {
FromGlibPtrContainer::from_glib_full(
ffi::spice_usb_device_manager_get_devices_with_filter(
self.to_glib_none().0,
filter.to_glib_none().0,
),
)
}
}
#[doc(alias = "spice_usb_device_manager_is_device_connected")]
pub fn is_device_connected(&self, device: &UsbDevice) -> bool {
unsafe {
from_glib(ffi::spice_usb_device_manager_is_device_connected(
self.to_glib_none().0,
mut_override(device.to_glib_none().0),
))
}
}
#[doc(alias = "spice_usb_device_manager_is_device_shared_cd")]
pub fn is_device_shared_cd(&self, device: &UsbDevice) -> bool {
unsafe {
from_glib(ffi::spice_usb_device_manager_is_device_shared_cd(
self.to_glib_none().0,
mut_override(device.to_glib_none().0),
))
}
}
#[doc(alias = "spice_usb_device_manager_is_redirecting")]
pub fn is_redirecting(&self) -> bool {
unsafe {
from_glib(ffi::spice_usb_device_manager_is_redirecting(
self.to_glib_none().0,
))
}
}
#[doc(alias = "auto-connect")]
pub fn is_auto_connect(&self) -> bool {
ObjectExt::property(self, "auto-connect")
}
#[doc(alias = "auto-connect")]
pub fn set_auto_connect(&self, auto_connect: bool) {
ObjectExt::set_property(self, "auto-connect", auto_connect)
}
#[doc(alias = "auto-connect-filter")]
pub fn auto_connect_filter(&self) -> Option<glib::GString> {
ObjectExt::property(self, "auto-connect-filter")
}
#[doc(alias = "auto-connect-filter")]
pub fn set_auto_connect_filter(&self, auto_connect_filter: Option<&str>) {
ObjectExt::set_property(self, "auto-connect-filter", auto_connect_filter)
}
#[doc(alias = "free-channels")]
pub fn free_channels(&self) -> i32 {
ObjectExt::property(self, "free-channels")
}
#[doc(alias = "redirect-on-connect")]
pub fn redirect_on_connect(&self) -> Option<glib::GString> {
ObjectExt::property(self, "redirect-on-connect")
}
#[doc(alias = "redirect-on-connect")]
pub fn set_redirect_on_connect(&self, redirect_on_connect: Option<&str>) {
ObjectExt::set_property(self, "redirect-on-connect", redirect_on_connect)
}
pub fn session(&self) -> Option<Session> {
ObjectExt::property(self, "session")
}
#[doc(alias = "spice_usb_device_manager_get")]
pub fn get(session: &Session) -> Result<UsbDeviceManager, glib::Error> {
skip_assert_initialized!();
unsafe {
let mut error = std::ptr::null_mut();
let ret = ffi::spice_usb_device_manager_get(session.to_glib_none().0, &mut error);
if error.is_null() {
Ok(from_glib_none(ret))
} else {
Err(from_glib_full(error))
}
}
}
#[doc(alias = "auto-connect-failed")]
pub fn connect_auto_connect_failed<F: Fn(&Self, &UsbDevice, &glib::Error) + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn auto_connect_failed_trampoline<
F: Fn(&UsbDeviceManager, &UsbDevice, &glib::Error) + 'static,
>(
this: *mut ffi::SpiceUsbDeviceManager,
device: *mut ffi::SpiceUsbDevice,
error: *mut glib::ffi::GError,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(
&from_glib_borrow(this),
&from_glib_borrow(device),
&from_glib_borrow(error),
)
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"auto-connect-failed".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
auto_connect_failed_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "device-added")]
pub fn connect_device_added<F: Fn(&Self, &UsbDevice) + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn device_added_trampoline<
F: Fn(&UsbDeviceManager, &UsbDevice) + 'static,
>(
this: *mut ffi::SpiceUsbDeviceManager,
device: *mut ffi::SpiceUsbDevice,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(&from_glib_borrow(this), &from_glib_borrow(device))
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"device-added".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
device_added_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "device-error")]
pub fn connect_device_error<F: Fn(&Self, &UsbDevice, &glib::Error) + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn device_error_trampoline<
F: Fn(&UsbDeviceManager, &UsbDevice, &glib::Error) + 'static,
>(
this: *mut ffi::SpiceUsbDeviceManager,
device: *mut ffi::SpiceUsbDevice,
error: *mut glib::ffi::GError,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(
&from_glib_borrow(this),
&from_glib_borrow(device),
&from_glib_borrow(error),
)
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"device-error".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
device_error_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "device-removed")]
pub fn connect_device_removed<F: Fn(&Self, &UsbDevice) + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn device_removed_trampoline<
F: Fn(&UsbDeviceManager, &UsbDevice) + 'static,
>(
this: *mut ffi::SpiceUsbDeviceManager,
device: *mut ffi::SpiceUsbDevice,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(&from_glib_borrow(this), &from_glib_borrow(device))
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"device-removed".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
device_removed_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "auto-connect")]
pub fn connect_auto_connect_notify<F: Fn(&Self) + 'static>(&self, f: F) -> SignalHandlerId {
unsafe extern "C" fn notify_auto_connect_trampoline<F: Fn(&UsbDeviceManager) + 'static>(
this: *mut ffi::SpiceUsbDeviceManager,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(&from_glib_borrow(this))
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"notify::auto-connect".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_auto_connect_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "auto-connect-filter")]
pub fn connect_auto_connect_filter_notify<F: Fn(&Self) + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_auto_connect_filter_trampoline<
F: Fn(&UsbDeviceManager) + 'static,
>(
this: *mut ffi::SpiceUsbDeviceManager,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(&from_glib_borrow(this))
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"notify::auto-connect-filter".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_auto_connect_filter_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "free-channels")]
pub fn connect_free_channels_notify<F: Fn(&Self) + 'static>(&self, f: F) -> SignalHandlerId {
unsafe extern "C" fn notify_free_channels_trampoline<F: Fn(&UsbDeviceManager) + 'static>(
this: *mut ffi::SpiceUsbDeviceManager,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(&from_glib_borrow(this))
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"notify::free-channels".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_free_channels_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "redirect-on-connect")]
pub fn connect_redirect_on_connect_notify<F: Fn(&Self) + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_redirect_on_connect_trampoline<
F: Fn(&UsbDeviceManager) + 'static,
>(
this: *mut ffi::SpiceUsbDeviceManager,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
unsafe {
let f: &F = &*(f as *const F);
f(&from_glib_borrow(this))
}
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
c"notify::redirect-on-connect".as_ptr(),
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_redirect_on_connect_trampoline::<F> as *const (),
)),
Box_::into_raw(f),
)
}
}
}