xref: /linux/rust/kernel/serdev.rs (revision 59e6295fac26b8e85c1ea859cdd89fa1e47519d7)
199f59aa8SMarkus Probst // SPDX-License-Identifier: GPL-2.0
299f59aa8SMarkus Probst 
399f59aa8SMarkus Probst //! Abstractions for the serial device bus.
499f59aa8SMarkus Probst //!
599f59aa8SMarkus Probst //! C header: [`include/linux/serdev.h`](srctree/include/linux/serdev.h)
699f59aa8SMarkus Probst 
799f59aa8SMarkus Probst use crate::{
899f59aa8SMarkus Probst     acpi,
999f59aa8SMarkus Probst     device,
1099f59aa8SMarkus Probst     driver,
1199f59aa8SMarkus Probst     error::{
1299f59aa8SMarkus Probst         from_result,
1399f59aa8SMarkus Probst         to_result,
1499f59aa8SMarkus Probst         VTABLE_DEFAULT_ERROR, //
1599f59aa8SMarkus Probst     },
1699f59aa8SMarkus Probst     new_mutex,
1799f59aa8SMarkus Probst     of,
1899f59aa8SMarkus Probst     prelude::*,
1999f59aa8SMarkus Probst     sync::{
2099f59aa8SMarkus Probst         aref::AlwaysRefCounted,
2199f59aa8SMarkus Probst         Mutex, //
2299f59aa8SMarkus Probst     },
2399f59aa8SMarkus Probst     time::Jiffies,
2499f59aa8SMarkus Probst     types::{
2599f59aa8SMarkus Probst         Opaque,
2699f59aa8SMarkus Probst         ScopeGuard, //
2799f59aa8SMarkus Probst     }, //
2899f59aa8SMarkus Probst };
2999f59aa8SMarkus Probst 
3099f59aa8SMarkus Probst use core::{
3199f59aa8SMarkus Probst     cell::UnsafeCell,
3299f59aa8SMarkus Probst     marker::PhantomData,
3399f59aa8SMarkus Probst     mem::{offset_of, MaybeUninit},
3499f59aa8SMarkus Probst     ptr::NonNull, //
3599f59aa8SMarkus Probst };
3699f59aa8SMarkus Probst 
3799f59aa8SMarkus Probst /// Parity bit to use with a serial device.
3899f59aa8SMarkus Probst #[repr(u32)]
3999f59aa8SMarkus Probst pub enum Parity {
4099f59aa8SMarkus Probst     /// No parity bit.
4199f59aa8SMarkus Probst     None = bindings::serdev_parity_SERDEV_PARITY_NONE,
4299f59aa8SMarkus Probst     /// Even partiy.
4399f59aa8SMarkus Probst     Even = bindings::serdev_parity_SERDEV_PARITY_EVEN,
4499f59aa8SMarkus Probst     /// Odd parity.
4599f59aa8SMarkus Probst     Odd = bindings::serdev_parity_SERDEV_PARITY_ODD,
4699f59aa8SMarkus Probst }
4799f59aa8SMarkus Probst 
4899f59aa8SMarkus Probst /// An adapter for the registration of serial device bus device drivers.
4999f59aa8SMarkus Probst pub struct Adapter<T: Driver>(T);
5099f59aa8SMarkus Probst 
5199f59aa8SMarkus Probst // SAFETY:
5299f59aa8SMarkus Probst // - `bindings::serdev_device_driver` is a C type declared as `repr(C)`.
5399f59aa8SMarkus Probst // - `PrivateData<'bound, T>` is the type of the driver's device private data.
5499f59aa8SMarkus Probst // - `struct serdev_device_driver` embeds a `struct device_driver`.
5599f59aa8SMarkus Probst // - `DEVICE_DRIVER_OFFSET` is the correct byte offset to the embedded `struct device_driver`.
5699f59aa8SMarkus Probst unsafe impl<T: Driver> driver::DriverLayout for Adapter<T> {
5799f59aa8SMarkus Probst     type DriverType = bindings::serdev_device_driver;
5899f59aa8SMarkus Probst     type DriverData<'bound> = PrivateData<'bound, T>;
5999f59aa8SMarkus Probst     const DEVICE_DRIVER_OFFSET: usize = core::mem::offset_of!(Self::DriverType, driver);
6099f59aa8SMarkus Probst }
6199f59aa8SMarkus Probst 
6299f59aa8SMarkus Probst // SAFETY: A call to `unregister` for a given instance of `DriverType` is guaranteed to be valid if
6399f59aa8SMarkus Probst // a preceding call to `register` has been successful.
6499f59aa8SMarkus Probst unsafe impl<T: Driver> driver::RegistrationOps for Adapter<T> {
6599f59aa8SMarkus Probst     unsafe fn register(
6699f59aa8SMarkus Probst         sdrv: &Opaque<Self::DriverType>,
6799f59aa8SMarkus Probst         name: &'static CStr,
6899f59aa8SMarkus Probst         module: &'static ThisModule,
6999f59aa8SMarkus Probst     ) -> Result {
7099f59aa8SMarkus Probst         let of_table = match T::OF_ID_TABLE {
7199f59aa8SMarkus Probst             Some(table) => table.as_ptr(),
7299f59aa8SMarkus Probst             None => core::ptr::null(),
7399f59aa8SMarkus Probst         };
7499f59aa8SMarkus Probst 
7599f59aa8SMarkus Probst         let acpi_table = match T::ACPI_ID_TABLE {
7699f59aa8SMarkus Probst             Some(table) => table.as_ptr(),
7799f59aa8SMarkus Probst             None => core::ptr::null(),
7899f59aa8SMarkus Probst         };
7999f59aa8SMarkus Probst 
8099f59aa8SMarkus Probst         // SAFETY: It's safe to set the fields of `struct serdev_device_driver` on initialization.
8199f59aa8SMarkus Probst         unsafe {
8299f59aa8SMarkus Probst             (*sdrv.get()).driver.name = name.as_char_ptr();
8399f59aa8SMarkus Probst             (*sdrv.get()).probe = Some(Self::probe_callback);
8499f59aa8SMarkus Probst             (*sdrv.get()).remove = Some(Self::remove_callback);
8599f59aa8SMarkus Probst             (*sdrv.get()).driver.of_match_table = of_table;
8699f59aa8SMarkus Probst             (*sdrv.get()).driver.acpi_match_table = acpi_table;
8799f59aa8SMarkus Probst         }
8899f59aa8SMarkus Probst 
8999f59aa8SMarkus Probst         // SAFETY: `sdrv` is guaranteed to be a valid `DriverType`.
90ddca0cd8SDanilo Krummrich         to_result(unsafe { bindings::__serdev_device_driver_register(sdrv.get(), module.as_ptr()) })
9199f59aa8SMarkus Probst     }
9299f59aa8SMarkus Probst 
9399f59aa8SMarkus Probst     unsafe fn unregister(sdrv: &Opaque<Self::DriverType>) {
9499f59aa8SMarkus Probst         // SAFETY: `sdrv` is guaranteed to be a valid `DriverType`.
9599f59aa8SMarkus Probst         unsafe { bindings::serdev_device_driver_unregister(sdrv.get()) };
9699f59aa8SMarkus Probst     }
9799f59aa8SMarkus Probst }
9899f59aa8SMarkus Probst 
9999f59aa8SMarkus Probst #[doc(hidden)]
10099f59aa8SMarkus Probst #[pin_data(PinnedDrop)]
10199f59aa8SMarkus Probst pub struct PrivateData<'bound, T: Driver> {
10299f59aa8SMarkus Probst     sdev: &'bound Device<device::Bound>,
10399f59aa8SMarkus Probst     #[pin]
10499f59aa8SMarkus Probst     driver: UnsafeCell<MaybeUninit<T::Data<'bound>>>,
10599f59aa8SMarkus Probst     open: UnsafeCell<bool>,
10699f59aa8SMarkus Probst     /// Whether `receive_buf_callback` is allowed to call `Driver::receive`.
10799f59aa8SMarkus Probst     ///
10899f59aa8SMarkus Probst     /// If locked, the receive_buf_callback will be blocked on data reception.
10999f59aa8SMarkus Probst     /// This is the case while the driver is being probed or while [`PrivateData`] is being dropped.
11099f59aa8SMarkus Probst     /// This is necessary, because we need to open the serdev device before the driver has been
11199f59aa8SMarkus Probst     /// probed in order to allow it to be configured, which allows `receive_buf_callback` to be
11299f59aa8SMarkus Probst     /// called. Thus we need to block data until probe completes and the driver data becomes
11399f59aa8SMarkus Probst     /// initialized.
11499f59aa8SMarkus Probst     ///
11599f59aa8SMarkus Probst     /// If unlocked and true, the receive_buf_callback will forward the data to
11699f59aa8SMarkus Probst     /// `Driver::receive`. This is the normal state of operation.
11799f59aa8SMarkus Probst     ///
11899f59aa8SMarkus Probst     /// If unlocked and false, the receive_buf_callback will throw away the data.
11999f59aa8SMarkus Probst     /// This is only the case, if the serdev device is open and
12099f59aa8SMarkus Probst     /// - the driver returned an error in probe
12199f59aa8SMarkus Probst     /// or
12299f59aa8SMarkus Probst     /// - the driver data already has been dropped, because it was unbound.
12399f59aa8SMarkus Probst     #[pin]
12499f59aa8SMarkus Probst     active: Mutex<bool>,
12599f59aa8SMarkus Probst }
12699f59aa8SMarkus Probst 
12799f59aa8SMarkus Probst #[pinned_drop]
12899f59aa8SMarkus Probst impl<T: Driver> PinnedDrop for PrivateData<'_, T> {
12999f59aa8SMarkus Probst     fn drop(self: Pin<&mut Self>) {
13099f59aa8SMarkus Probst         let mut active = self.active.lock();
13199f59aa8SMarkus Probst         if *active {
13299f59aa8SMarkus Probst             // SAFETY:
13399f59aa8SMarkus Probst             // - We have exclusive access to `self.driver`.
13499f59aa8SMarkus Probst             // - `self.driver` is guaranteed to be initialized.
13599f59aa8SMarkus Probst             unsafe { (*self.driver.get()).assume_init_drop() };
13699f59aa8SMarkus Probst             *active = false;
13799f59aa8SMarkus Probst         }
13899f59aa8SMarkus Probst         drop(active);
13999f59aa8SMarkus Probst 
14099f59aa8SMarkus Probst         // SAFETY: We have exclusive access to `self.open`.
14199f59aa8SMarkus Probst         if unsafe { *self.open.get() } {
14299f59aa8SMarkus Probst             // SAFETY: `self.sdev.as_raw()` is guaranteed to be a pointer to a valid
14399f59aa8SMarkus Probst             // `struct serdev_device`.
14499f59aa8SMarkus Probst             unsafe { bindings::serdev_device_close(self.sdev.as_raw()) };
14599f59aa8SMarkus Probst         }
14699f59aa8SMarkus Probst     }
14799f59aa8SMarkus Probst }
14899f59aa8SMarkus Probst 
14999f59aa8SMarkus Probst impl<T: Driver> Adapter<T> {
15099f59aa8SMarkus Probst     const OPS: &'static bindings::serdev_device_ops = &bindings::serdev_device_ops {
15199f59aa8SMarkus Probst         receive_buf: if T::HAS_RECEIVE {
15299f59aa8SMarkus Probst             Some(Self::receive_buf_callback)
15399f59aa8SMarkus Probst         } else {
15499f59aa8SMarkus Probst             None
15599f59aa8SMarkus Probst         },
15699f59aa8SMarkus Probst         write_wakeup: Some(bindings::serdev_device_write_wakeup),
15799f59aa8SMarkus Probst     };
15899f59aa8SMarkus Probst 
15999f59aa8SMarkus Probst     extern "C" fn probe_callback(sdev: *mut bindings::serdev_device) -> kernel::ffi::c_int {
16099f59aa8SMarkus Probst         // SAFETY: The serial device bus only ever calls the probe callback with a valid pointer to
16199f59aa8SMarkus Probst         // a `struct serdev_device`.
16299f59aa8SMarkus Probst         //
16399f59aa8SMarkus Probst         // INVARIANT: `sdev` is valid for the duration of `probe_callback()`.
16499f59aa8SMarkus Probst         let sdev = unsafe { &*sdev.cast::<Device<device::CoreInternal<'_>>>() };
1652c5d17cdSGary Guo         // SAFETY: `sdev` matched data is of type `Self::IdInfo`.
1662c5d17cdSGary Guo         let info = unsafe { <Self as driver::Adapter>::id_info(sdev.as_ref()) };
16799f59aa8SMarkus Probst 
16899f59aa8SMarkus Probst         from_result(|| {
16999f59aa8SMarkus Probst             sdev.as_ref().set_drvdata(try_pin_init!(PrivateData::<T> {
17099f59aa8SMarkus Probst                 sdev: &**sdev,
17199f59aa8SMarkus Probst                 driver: MaybeUninit::<T::Data<'_>>::zeroed().into(),
17299f59aa8SMarkus Probst                 open: false.into(),
17399f59aa8SMarkus Probst                 active <- new_mutex!(false),
17499f59aa8SMarkus Probst             }))?;
17599f59aa8SMarkus Probst             // SAFETY: We just set drvdata to `PrivateData<'_, T>`.
17699f59aa8SMarkus Probst             let private_data = unsafe { sdev.as_ref().drvdata_borrow::<PrivateData<'_, T>>() };
17799f59aa8SMarkus Probst             let private_data = ScopeGuard::new_with_data(private_data, |_| {
17899f59aa8SMarkus Probst                 // SAFETY: We just set drvdata to `PrivateData<'_, T>`.
17999f59aa8SMarkus Probst                 drop(unsafe { sdev.as_ref().drvdata_obtain::<PrivateData<'_, T>>() });
18099f59aa8SMarkus Probst             });
18199f59aa8SMarkus Probst             let mut active = private_data.active.lock();
18299f59aa8SMarkus Probst 
18399f59aa8SMarkus Probst             // SAFETY: `sdev.as_raw()` is guaranteed to be a valid pointer to `serdev_device`.
18499f59aa8SMarkus Probst             unsafe { bindings::serdev_device_set_client_ops(sdev.as_raw(), Self::OPS) };
18599f59aa8SMarkus Probst 
18699f59aa8SMarkus Probst             // SAFETY: The serial device bus only ever calls the probe callback with a valid pointer
18799f59aa8SMarkus Probst             // to a `serdev_device`.
18899f59aa8SMarkus Probst             to_result(unsafe { bindings::serdev_device_open(sdev.as_raw()) })?;
18999f59aa8SMarkus Probst 
19099f59aa8SMarkus Probst             // SAFETY: We have exclusive access to `private_data.open`.
19199f59aa8SMarkus Probst             unsafe { *private_data.open.get() = true };
19299f59aa8SMarkus Probst 
19399f59aa8SMarkus Probst             let data = T::probe(sdev, info);
19499f59aa8SMarkus Probst 
19599f59aa8SMarkus Probst             // SAFETY: We have exclusive access to `private_data.driver`.
19699f59aa8SMarkus Probst             let driver = unsafe { &mut *private_data.driver.get() };
19799f59aa8SMarkus Probst             // SAFETY:
19899f59aa8SMarkus Probst             // - `driver.as_mut_ptr()` is a valid pointer to uninitialized data.
19999f59aa8SMarkus Probst             // - `private_data.driver` is pinned.
200*59e6295fSLinus Torvalds             let result = unsafe { pin_init::raw_try_init(driver.as_mut_ptr(), data) };
20199f59aa8SMarkus Probst 
20299f59aa8SMarkus Probst             *active = result.is_ok();
20399f59aa8SMarkus Probst 
20499f59aa8SMarkus Probst             drop(active);
20599f59aa8SMarkus Probst 
20699f59aa8SMarkus Probst             result.map(|()| {
20799f59aa8SMarkus Probst                 private_data.dismiss();
20899f59aa8SMarkus Probst                 0
20999f59aa8SMarkus Probst             })
21099f59aa8SMarkus Probst         })
21199f59aa8SMarkus Probst     }
21299f59aa8SMarkus Probst 
21399f59aa8SMarkus Probst     extern "C" fn remove_callback(sdev: *mut bindings::serdev_device) {
21499f59aa8SMarkus Probst         // SAFETY: The serial device bus only ever calls the remove callback with a valid pointer
21599f59aa8SMarkus Probst         // to a `struct serdev_device`.
21699f59aa8SMarkus Probst         //
21799f59aa8SMarkus Probst         // INVARIANT: `sdev` is valid for the duration of `remove_callback()`.
21899f59aa8SMarkus Probst         let sdev = unsafe { &*sdev.cast::<Device<device::CoreInternal<'_>>>() };
21999f59aa8SMarkus Probst 
22099f59aa8SMarkus Probst         // SAFETY: `remove_callback` is only ever called after a successful call to
22199f59aa8SMarkus Probst         // `probe_callback`, hence it's guaranteed that `Device::set_drvdata()` has been called
22299f59aa8SMarkus Probst         // and stored a `Pin<KBox<PrivateData<'_, T>>>`.
22399f59aa8SMarkus Probst         let private_data = unsafe { sdev.as_ref().drvdata_borrow::<PrivateData<'_, T>>() };
22499f59aa8SMarkus Probst 
22599f59aa8SMarkus Probst         // SAFETY: No one has exclusive access to `private_data.driver`.
22699f59aa8SMarkus Probst         let data = unsafe { &*private_data.driver.get() };
22799f59aa8SMarkus Probst         // SAFETY:
22899f59aa8SMarkus Probst         // - `private_data.driver` is pinned.
22999f59aa8SMarkus Probst         // - `remove_callback` is only ever called after a successful call to `probe_callback`,
23099f59aa8SMarkus Probst         //   hence it's guaranteed that `private_data.driver` was initialized.
23199f59aa8SMarkus Probst         let data_pinned = unsafe { Pin::new_unchecked(data.assume_init_ref()) };
23299f59aa8SMarkus Probst 
23399f59aa8SMarkus Probst         T::unbind(sdev, data_pinned);
23499f59aa8SMarkus Probst     }
23599f59aa8SMarkus Probst 
23699f59aa8SMarkus Probst     extern "C" fn receive_buf_callback(
23799f59aa8SMarkus Probst         sdev: *mut bindings::serdev_device,
23899f59aa8SMarkus Probst         buf: *const u8,
23999f59aa8SMarkus Probst         length: usize,
24099f59aa8SMarkus Probst     ) -> usize {
24199f59aa8SMarkus Probst         // SAFETY: The serial device bus only ever calls the receive buf callback with a valid
24299f59aa8SMarkus Probst         // pointer to a `struct serdev_device`.
24399f59aa8SMarkus Probst         //
24499f59aa8SMarkus Probst         // INVARIANT: `sdev` is valid for the duration of `receive_buf_callback()`.
24599f59aa8SMarkus Probst         let sdev = unsafe { &*sdev.cast::<Device<device::BoundInternal>>() };
24699f59aa8SMarkus Probst 
24799f59aa8SMarkus Probst         // SAFETY: `receive_buf_callback` is only ever called after a successful call to
24899f59aa8SMarkus Probst         // `probe_callback`, hence it's guaranteed that `Device::set_drvdata()` has been called
24999f59aa8SMarkus Probst         // and stored a `Pin<KBox<PrivateData<'_, T>>>`.
25099f59aa8SMarkus Probst         let private_data = unsafe { sdev.as_ref().drvdata_borrow::<PrivateData<'_, T>>() };
25199f59aa8SMarkus Probst         let active = private_data.active.lock();
25299f59aa8SMarkus Probst 
25399f59aa8SMarkus Probst         if !*active {
25499f59aa8SMarkus Probst             return length;
25599f59aa8SMarkus Probst         }
25699f59aa8SMarkus Probst 
25799f59aa8SMarkus Probst         // SAFETY: No one has exclusive access to `private_data.driver`.
25899f59aa8SMarkus Probst         let data = unsafe { &*private_data.driver.get() };
25999f59aa8SMarkus Probst         // SAFETY:
26099f59aa8SMarkus Probst         // - `private_data.driver` is pinned.
26199f59aa8SMarkus Probst         // - `receive_buf_callback` is only ever called after a successful call to `probe_callback`,
26299f59aa8SMarkus Probst         //   hence it's guaranteed that `private_data.driver` was initialized.
26399f59aa8SMarkus Probst         let data_pinned = unsafe { Pin::new_unchecked(data.assume_init_ref()) };
26499f59aa8SMarkus Probst 
26599f59aa8SMarkus Probst         // SAFETY: `buf` is guaranteed to be non-null and has the size of `length`.
26699f59aa8SMarkus Probst         let buf = unsafe { core::slice::from_raw_parts(buf, length) };
26799f59aa8SMarkus Probst 
26899f59aa8SMarkus Probst         T::receive(sdev, data_pinned, buf)
26999f59aa8SMarkus Probst     }
27099f59aa8SMarkus Probst }
27199f59aa8SMarkus Probst 
27299f59aa8SMarkus Probst impl<T: Driver> driver::Adapter for Adapter<T> {
27399f59aa8SMarkus Probst     type IdInfo = T::IdInfo;
27499f59aa8SMarkus Probst 
27599f59aa8SMarkus Probst     fn of_id_table() -> Option<of::IdTable<Self::IdInfo>> {
27699f59aa8SMarkus Probst         T::OF_ID_TABLE
27799f59aa8SMarkus Probst     }
27899f59aa8SMarkus Probst 
27999f59aa8SMarkus Probst     fn acpi_id_table() -> Option<acpi::IdTable<Self::IdInfo>> {
28099f59aa8SMarkus Probst         T::ACPI_ID_TABLE
28199f59aa8SMarkus Probst     }
28299f59aa8SMarkus Probst }
28399f59aa8SMarkus Probst 
28499f59aa8SMarkus Probst /// Declares a kernel module that exposes a single serial device bus device driver.
28599f59aa8SMarkus Probst ///
28699f59aa8SMarkus Probst /// # Examples
28799f59aa8SMarkus Probst ///
28899f59aa8SMarkus Probst /// ```ignore
28999f59aa8SMarkus Probst /// kernel::module_serdev_device_driver! {
29099f59aa8SMarkus Probst ///     type: MyDriver,
29199f59aa8SMarkus Probst ///     name: "Module name",
29299f59aa8SMarkus Probst ///     authors: ["Author name"],
29399f59aa8SMarkus Probst ///     description: "Description",
29499f59aa8SMarkus Probst ///     license: "GPL v2",
29599f59aa8SMarkus Probst /// }
29699f59aa8SMarkus Probst /// ```
29799f59aa8SMarkus Probst #[macro_export]
29899f59aa8SMarkus Probst macro_rules! module_serdev_device_driver {
29999f59aa8SMarkus Probst     ($($f:tt)*) => {
30099f59aa8SMarkus Probst         $crate::module_driver!(<T>, $crate::serdev::Adapter<T>, { $($f)* });
30199f59aa8SMarkus Probst     };
30299f59aa8SMarkus Probst }
30399f59aa8SMarkus Probst 
30499f59aa8SMarkus Probst /// The serial device bus device driver trait.
30599f59aa8SMarkus Probst ///
30699f59aa8SMarkus Probst /// Drivers must implement this trait in order to get a serial device bus device driver registered.
30799f59aa8SMarkus Probst ///
30899f59aa8SMarkus Probst /// # Examples
30999f59aa8SMarkus Probst ///
31099f59aa8SMarkus Probst ///```
31199f59aa8SMarkus Probst /// # use kernel::{
31299f59aa8SMarkus Probst ///     acpi,
31399f59aa8SMarkus Probst ///     bindings,
31499f59aa8SMarkus Probst ///     device::{
31599f59aa8SMarkus Probst ///         Bound,
31699f59aa8SMarkus Probst ///         Core, //
31799f59aa8SMarkus Probst ///     },
31899f59aa8SMarkus Probst ///     of,
31999f59aa8SMarkus Probst ///     serdev, //
32099f59aa8SMarkus Probst /// };
32199f59aa8SMarkus Probst ///
32299f59aa8SMarkus Probst /// struct MyDriver;
32399f59aa8SMarkus Probst ///
32499f59aa8SMarkus Probst /// kernel::of_device_table!(
32599f59aa8SMarkus Probst ///     OF_TABLE,
32699f59aa8SMarkus Probst ///     <MyDriver as serdev::Driver>::IdInfo,
32799f59aa8SMarkus Probst ///     [
32899f59aa8SMarkus Probst ///         (of::DeviceId::new(c"test,device"), ())
32999f59aa8SMarkus Probst ///     ]
33099f59aa8SMarkus Probst /// );
33199f59aa8SMarkus Probst ///
33299f59aa8SMarkus Probst /// kernel::acpi_device_table!(
33399f59aa8SMarkus Probst ///     ACPI_TABLE,
33499f59aa8SMarkus Probst ///     <MyDriver as serdev::Driver>::IdInfo,
33599f59aa8SMarkus Probst ///     [
33699f59aa8SMarkus Probst ///         (acpi::DeviceId::new(c"LNUXBEEF"), ())
33799f59aa8SMarkus Probst ///     ]
33899f59aa8SMarkus Probst /// );
33999f59aa8SMarkus Probst ///
34099f59aa8SMarkus Probst /// #[vtable]
34199f59aa8SMarkus Probst /// impl serdev::Driver for MyDriver {
34299f59aa8SMarkus Probst ///     type IdInfo = ();
34399f59aa8SMarkus Probst ///     type Data<'bound> = Self;
34499f59aa8SMarkus Probst ///     const OF_ID_TABLE: Option<of::IdTable<Self::IdInfo>> = Some(&OF_TABLE);
34599f59aa8SMarkus Probst ///     const ACPI_ID_TABLE: Option<acpi::IdTable<Self::IdInfo>> = Some(&ACPI_TABLE);
34699f59aa8SMarkus Probst ///
34799f59aa8SMarkus Probst ///     fn probe<'bound>(
34899f59aa8SMarkus Probst ///         sdev: &'bound serdev::Device<Core<'_>>,
34999f59aa8SMarkus Probst ///         _id_info: Option<&'bound Self::IdInfo>,
35099f59aa8SMarkus Probst ///     ) -> impl PinInit<Self::Data<'bound>, Error> + 'bound {
35199f59aa8SMarkus Probst ///         sdev.set_baudrate(115200);
35299f59aa8SMarkus Probst ///         sdev.write_all(b"Hello\n", 0)?;
35399f59aa8SMarkus Probst ///         Ok(MyDriver)
35499f59aa8SMarkus Probst ///     }
35599f59aa8SMarkus Probst /// }
35699f59aa8SMarkus Probst ///```
35799f59aa8SMarkus Probst #[vtable]
35899f59aa8SMarkus Probst pub trait Driver {
35999f59aa8SMarkus Probst     /// The type holding driver private data about each device id supported by the driver.
36099f59aa8SMarkus Probst     // TODO: Use associated_type_defaults once stabilized:
36199f59aa8SMarkus Probst     //
36299f59aa8SMarkus Probst     // ```
36399f59aa8SMarkus Probst     // type IdInfo: 'static = ();
36499f59aa8SMarkus Probst     // ```
36599f59aa8SMarkus Probst     type IdInfo: 'static;
36699f59aa8SMarkus Probst 
36799f59aa8SMarkus Probst     /// The type of the driver's bus device private data.
36899f59aa8SMarkus Probst     type Data<'bound>: Send + Sync + 'bound;
36999f59aa8SMarkus Probst 
37099f59aa8SMarkus Probst     /// The table of OF device ids supported by the driver.
37199f59aa8SMarkus Probst     const OF_ID_TABLE: Option<of::IdTable<Self::IdInfo>> = None;
37299f59aa8SMarkus Probst 
37399f59aa8SMarkus Probst     /// The table of ACPI device ids supported by the driver.
37499f59aa8SMarkus Probst     const ACPI_ID_TABLE: Option<acpi::IdTable<Self::IdInfo>> = None;
37599f59aa8SMarkus Probst 
37699f59aa8SMarkus Probst     /// Serial device bus device driver probe.
37799f59aa8SMarkus Probst     ///
37899f59aa8SMarkus Probst     /// Called when a new serial device bus device is added or discovered.
37999f59aa8SMarkus Probst     /// Implementers should attempt to initialize the device here.
38099f59aa8SMarkus Probst     fn probe<'bound>(
38199f59aa8SMarkus Probst         sdev: &'bound Device<device::Core<'_>>,
38299f59aa8SMarkus Probst         id_info: Option<&'bound Self::IdInfo>,
38399f59aa8SMarkus Probst     ) -> impl PinInit<Self::Data<'bound>, Error> + 'bound;
38499f59aa8SMarkus Probst 
38599f59aa8SMarkus Probst     /// Serial device bus device driver unbind.
38699f59aa8SMarkus Probst     ///
38799f59aa8SMarkus Probst     /// Called when a [`Device`] is unbound from its bound [`Driver`]. Implementing this callback
38899f59aa8SMarkus Probst     /// is optional.
38999f59aa8SMarkus Probst     ///
39099f59aa8SMarkus Probst     /// This callback serves as a place for drivers to perform teardown operations that require a
39199f59aa8SMarkus Probst     /// `&Device<Core>` or `&Device<Bound>` reference. For instance.
39299f59aa8SMarkus Probst     ///
39399f59aa8SMarkus Probst     /// Otherwise, release operations for driver resources should be performed in `Drop`.
39499f59aa8SMarkus Probst     fn unbind<'bound>(sdev: &'bound Device<device::Core<'_>>, this: Pin<&Self::Data<'bound>>) {
39599f59aa8SMarkus Probst         let _ = (sdev, this);
39699f59aa8SMarkus Probst     }
39799f59aa8SMarkus Probst 
39899f59aa8SMarkus Probst     /// Serial device bus device data receive callback.
39999f59aa8SMarkus Probst     ///
40099f59aa8SMarkus Probst     /// Called when data got received from device.
40199f59aa8SMarkus Probst     ///
40299f59aa8SMarkus Probst     /// Returns the number of bytes accepted.
40399f59aa8SMarkus Probst     fn receive<'bound>(
40499f59aa8SMarkus Probst         sdev: &'bound Device<device::Bound>,
40599f59aa8SMarkus Probst         this: Pin<&Self::Data<'bound>>,
40699f59aa8SMarkus Probst         data: &[u8],
40799f59aa8SMarkus Probst     ) -> usize {
40899f59aa8SMarkus Probst         let _ = (sdev, this, data);
40999f59aa8SMarkus Probst         build_error!(VTABLE_DEFAULT_ERROR)
41099f59aa8SMarkus Probst     }
41199f59aa8SMarkus Probst }
41299f59aa8SMarkus Probst 
41399f59aa8SMarkus Probst /// The serial device bus device representation.
41499f59aa8SMarkus Probst ///
41599f59aa8SMarkus Probst /// This structure represents the Rust abstraction for a C `struct serdev_device`. The
41699f59aa8SMarkus Probst /// implementation abstracts the usage of an already existing C `struct serdev_device` within Rust
41799f59aa8SMarkus Probst /// code that we get passed from the C side.
41899f59aa8SMarkus Probst ///
41999f59aa8SMarkus Probst /// # Invariants
42099f59aa8SMarkus Probst ///
42199f59aa8SMarkus Probst /// A [`Device`] instance represents a valid `struct serdev_device` created by the C portion of
42299f59aa8SMarkus Probst /// the kernel.
42399f59aa8SMarkus Probst #[repr(transparent)]
42499f59aa8SMarkus Probst pub struct Device<Ctx: device::DeviceContext = device::Normal>(
42599f59aa8SMarkus Probst     Opaque<bindings::serdev_device>,
42699f59aa8SMarkus Probst     PhantomData<Ctx>,
42799f59aa8SMarkus Probst );
42899f59aa8SMarkus Probst 
42999f59aa8SMarkus Probst impl<Ctx: device::DeviceContext> Device<Ctx> {
43099f59aa8SMarkus Probst     #[inline]
43199f59aa8SMarkus Probst     fn as_raw(&self) -> *mut bindings::serdev_device {
43299f59aa8SMarkus Probst         self.0.get()
43399f59aa8SMarkus Probst     }
43499f59aa8SMarkus Probst }
43599f59aa8SMarkus Probst 
43699f59aa8SMarkus Probst impl Device<device::Bound> {
43799f59aa8SMarkus Probst     /// Set the baudrate in bits per second.
43899f59aa8SMarkus Probst     ///
43999f59aa8SMarkus Probst     /// Common baudrates are 115200, 9600, 19200, 57600, 4800.
44099f59aa8SMarkus Probst     ///
44199f59aa8SMarkus Probst     /// Use [`Device::write_flush`] before calling this if you have written data prior to this call.
44299f59aa8SMarkus Probst     #[inline]
44399f59aa8SMarkus Probst     pub fn set_baudrate(&self, speed: u32) -> Result<(), u32> {
44499f59aa8SMarkus Probst         // SAFETY: `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
44599f59aa8SMarkus Probst         let ret = unsafe { bindings::serdev_device_set_baudrate(self.as_raw(), speed) };
44699f59aa8SMarkus Probst         if ret == speed {
44799f59aa8SMarkus Probst             Ok(())
44899f59aa8SMarkus Probst         } else {
44999f59aa8SMarkus Probst             Err(ret)
45099f59aa8SMarkus Probst         }
45199f59aa8SMarkus Probst     }
45299f59aa8SMarkus Probst 
45399f59aa8SMarkus Probst     /// Set if flow control should be enabled.
45499f59aa8SMarkus Probst     ///
45599f59aa8SMarkus Probst     /// Use [`Device::write_flush`] before calling this if you have written data prior to this call.
45699f59aa8SMarkus Probst     #[inline]
45799f59aa8SMarkus Probst     pub fn set_flow_control(&self, enable: bool) {
45899f59aa8SMarkus Probst         // SAFETY: `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
45999f59aa8SMarkus Probst         unsafe { bindings::serdev_device_set_flow_control(self.as_raw(), enable) };
46099f59aa8SMarkus Probst     }
46199f59aa8SMarkus Probst 
46299f59aa8SMarkus Probst     /// Set parity to use.
46399f59aa8SMarkus Probst     ///
46499f59aa8SMarkus Probst     /// Use [`Device::write_flush`] before calling this if you have written data prior to this call.
46599f59aa8SMarkus Probst     #[inline]
46699f59aa8SMarkus Probst     pub fn set_parity(&self, parity: Parity) -> Result {
46799f59aa8SMarkus Probst         // SAFETY: `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
46899f59aa8SMarkus Probst         to_result(unsafe { bindings::serdev_device_set_parity(self.as_raw(), parity as u32) })
46999f59aa8SMarkus Probst     }
47099f59aa8SMarkus Probst 
47199f59aa8SMarkus Probst     /// Write data to the serial device until the controller has accepted all the data or has
47299f59aa8SMarkus Probst     /// been interrupted by a timeout or signal.
47399f59aa8SMarkus Probst     ///
47499f59aa8SMarkus Probst     /// Note that any accepted data has only been buffered by the controller. Use
47599f59aa8SMarkus Probst     /// [`Device::wait_until_sent`] to make sure the controller write buffer has actually been
47699f59aa8SMarkus Probst     /// emptied.
47799f59aa8SMarkus Probst     ///
47899f59aa8SMarkus Probst     /// Use a timeout of 0 to wait indefinitely.
47999f59aa8SMarkus Probst     ///
48099f59aa8SMarkus Probst     /// Returns the number of bytes written (less than `data.len()` if interrupted).
48199f59aa8SMarkus Probst     /// [`kernel::error::code::ETIMEDOUT`] or [`kernel::error::code::ERESTARTSYS`] if interrupted
48299f59aa8SMarkus Probst     /// before any bytes were written. [`kernel::error::code::EINVAL`] if `data.len() > i32::MAX`.
48399f59aa8SMarkus Probst     #[inline]
48499f59aa8SMarkus Probst     pub fn write_all(&self, data: &[u8], timeout: Jiffies) -> Result<usize> {
48599f59aa8SMarkus Probst         if data.len() > i32::MAX as usize {
48699f59aa8SMarkus Probst             return Err(EINVAL);
48799f59aa8SMarkus Probst         }
48899f59aa8SMarkus Probst 
48999f59aa8SMarkus Probst         // SAFETY:
49099f59aa8SMarkus Probst         // - `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
49199f59aa8SMarkus Probst         // - `data.as_ptr()` is guaranteed to be a valid array pointer with the size of
49299f59aa8SMarkus Probst         //   `data.len()`.
49399f59aa8SMarkus Probst         let ret = unsafe {
49499f59aa8SMarkus Probst             bindings::serdev_device_write(
49599f59aa8SMarkus Probst                 self.as_raw(),
49699f59aa8SMarkus Probst                 data.as_ptr(),
49799f59aa8SMarkus Probst                 data.len(),
49899f59aa8SMarkus Probst                 isize::try_from(timeout).unwrap_or_default(),
49999f59aa8SMarkus Probst             )
50099f59aa8SMarkus Probst         };
50199f59aa8SMarkus Probst         // CAST: negative return values are guaranteed to be between `-MAX_ERRNO` and `-1`,
50299f59aa8SMarkus Probst         // which always fit into a `i32`.
50399f59aa8SMarkus Probst         to_result(ret as i32).map(|()| ret.unsigned_abs())
50499f59aa8SMarkus Probst     }
50599f59aa8SMarkus Probst 
50699f59aa8SMarkus Probst     /// Write data to the serial device.
50799f59aa8SMarkus Probst     ///
50899f59aa8SMarkus Probst     /// If you want to write until the controller has accepted all the data, use
50999f59aa8SMarkus Probst     /// [`Device::write_all`].
51099f59aa8SMarkus Probst     ///
51199f59aa8SMarkus Probst     /// Note that any accepted data has only been buffered by the controller. Use
51299f59aa8SMarkus Probst     /// [`Device::wait_until_sent`] to make sure the controller write buffer has actually been
51399f59aa8SMarkus Probst     /// emptied.
51499f59aa8SMarkus Probst     ///
51599f59aa8SMarkus Probst     /// Returns the number of bytes written (less than `data.len()` if not enough room in the
51699f59aa8SMarkus Probst     /// write buffer).
51799f59aa8SMarkus Probst     #[inline]
51899f59aa8SMarkus Probst     pub fn write(&self, data: &[u8]) -> Result<u32> {
51999f59aa8SMarkus Probst         if data.len() > i32::MAX as usize {
52099f59aa8SMarkus Probst             return Err(EINVAL);
52199f59aa8SMarkus Probst         }
52299f59aa8SMarkus Probst 
52399f59aa8SMarkus Probst         // SAFETY:
52499f59aa8SMarkus Probst         // - `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
52599f59aa8SMarkus Probst         // - `data.as_ptr()` is guaranteed to be a valid array pointer with the size of
52699f59aa8SMarkus Probst         //   `data.len()`.
52799f59aa8SMarkus Probst         let ret =
52899f59aa8SMarkus Probst             unsafe { bindings::serdev_device_write_buf(self.as_raw(), data.as_ptr(), data.len()) };
52999f59aa8SMarkus Probst 
53099f59aa8SMarkus Probst         to_result(ret as i32).map(|()| ret.unsigned_abs())
53199f59aa8SMarkus Probst     }
53299f59aa8SMarkus Probst 
53399f59aa8SMarkus Probst     /// Send data to the serial device immediately.
53499f59aa8SMarkus Probst     ///
53599f59aa8SMarkus Probst     /// Note that this doesn't guarantee that the data has been transmitted.
53699f59aa8SMarkus Probst     /// Use [`Device::wait_until_sent`] for this purpose.
53799f59aa8SMarkus Probst     #[inline]
53899f59aa8SMarkus Probst     pub fn write_flush(&self) {
53999f59aa8SMarkus Probst         // SAFETY: `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
54099f59aa8SMarkus Probst         unsafe { bindings::serdev_device_write_flush(self.as_raw()) };
54199f59aa8SMarkus Probst     }
54299f59aa8SMarkus Probst 
54399f59aa8SMarkus Probst     /// Wait for the data to be sent.
54499f59aa8SMarkus Probst     ///
54599f59aa8SMarkus Probst     /// After this function, the write buffer of the controller should be empty or the timeout
54699f59aa8SMarkus Probst     /// elapsed.
54799f59aa8SMarkus Probst     ///
54899f59aa8SMarkus Probst     /// Use a timeout of 0 to wait indefinitely.
54999f59aa8SMarkus Probst     #[inline]
55099f59aa8SMarkus Probst     pub fn wait_until_sent(&self, timeout: Jiffies) {
55199f59aa8SMarkus Probst         // SAFETY: `self.as_raw()` is guaranteed to be a pointer to a valid `serdev_device`.
55299f59aa8SMarkus Probst         unsafe {
55399f59aa8SMarkus Probst             bindings::serdev_device_wait_until_sent(
55499f59aa8SMarkus Probst                 self.as_raw(),
55599f59aa8SMarkus Probst                 isize::try_from(timeout).unwrap_or_default(),
55699f59aa8SMarkus Probst             )
55799f59aa8SMarkus Probst         };
55899f59aa8SMarkus Probst     }
55999f59aa8SMarkus Probst }
56099f59aa8SMarkus Probst 
56199f59aa8SMarkus Probst // SAFETY: `serdev::Device` is a transparent wrapper of `struct serdev_device`.
56299f59aa8SMarkus Probst // The offset is guaranteed to point to a valid device field inside `serdev::Device`.
56399f59aa8SMarkus Probst unsafe impl<Ctx: device::DeviceContext> device::AsBusDevice<Ctx> for Device<Ctx> {
56499f59aa8SMarkus Probst     const OFFSET: usize = offset_of!(bindings::serdev_device, dev);
56599f59aa8SMarkus Probst }
56699f59aa8SMarkus Probst 
56799f59aa8SMarkus Probst // SAFETY: `Device` is a transparent wrapper of a type that doesn't depend on `Device`'s generic
56899f59aa8SMarkus Probst // argument.
56999f59aa8SMarkus Probst kernel::impl_device_context_deref!(unsafe { Device });
57099f59aa8SMarkus Probst kernel::impl_device_context_into_aref!(Device);
57199f59aa8SMarkus Probst 
57299f59aa8SMarkus Probst // SAFETY: Instances of `Device` are always reference-counted.
57399f59aa8SMarkus Probst unsafe impl AlwaysRefCounted for Device {
57499f59aa8SMarkus Probst     fn inc_ref(&self) {
57599f59aa8SMarkus Probst         self.as_ref().inc_ref();
57699f59aa8SMarkus Probst     }
57799f59aa8SMarkus Probst 
57899f59aa8SMarkus Probst     unsafe fn dec_ref(obj: NonNull<Self>) {
57999f59aa8SMarkus Probst         // SAFETY: The safety requirements guarantee that the refcount is non-zero.
58099f59aa8SMarkus Probst         unsafe { bindings::serdev_device_put(obj.cast().as_ptr()) }
58199f59aa8SMarkus Probst     }
58299f59aa8SMarkus Probst }
58399f59aa8SMarkus Probst 
58499f59aa8SMarkus Probst impl<Ctx: device::DeviceContext> AsRef<device::Device<Ctx>> for Device<Ctx> {
58599f59aa8SMarkus Probst     fn as_ref(&self) -> &device::Device<Ctx> {
58699f59aa8SMarkus Probst         // SAFETY: By the type invariant of `Self`, `self.as_raw()` is a pointer to a valid
58799f59aa8SMarkus Probst         // `struct serdev_device`.
58899f59aa8SMarkus Probst         let dev = unsafe { &raw mut (*self.as_raw()).dev };
58999f59aa8SMarkus Probst 
59099f59aa8SMarkus Probst         // SAFETY: `dev` points to a valid `struct device`.
59199f59aa8SMarkus Probst         unsafe { device::Device::from_raw(dev) }
59299f59aa8SMarkus Probst     }
59399f59aa8SMarkus Probst }
59499f59aa8SMarkus Probst 
59599f59aa8SMarkus Probst // SAFETY: A `Device` is always reference-counted and can be released from any thread.
59699f59aa8SMarkus Probst unsafe impl Send for Device {}
59799f59aa8SMarkus Probst 
59899f59aa8SMarkus Probst // SAFETY: `Device` can be shared among threads because all methods of `Device`
59999f59aa8SMarkus Probst // (i.e. `Device<Normal>) are thread safe.
60099f59aa8SMarkus Probst unsafe impl Sync for Device {}
60199f59aa8SMarkus Probst 
60299f59aa8SMarkus Probst // SAFETY: Same as `Device<Normal>` -- the underlying `struct serdev_device` is the same;
60399f59aa8SMarkus Probst // `Bound` is a zero-sized type-state marker that does not affect thread safety.
60499f59aa8SMarkus Probst unsafe impl Sync for Device<device::Bound> {}
605