mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-08-27 16:28:58 -04:00
Pull driver core updates from Danilo Krummrich:
"container_of:
- Apply typeof_member(), remove the local __mptr variable to
eliminate variable shadowing warnings on nested container_of()
calls, and remove unnecessary parentheses
core:
- Add driver name to probe debug print for initcall_debug
- Avoid repeatedly printing the same 'Fixed dependency cycle' log
- Unwind device_add() on attribute creation failure in
attribute_container_add_class_device()
- Remove statistics group if encryption group creation fails in
transport_add_class_device()
debugfs:
- Fix lockdown check for mmap_prepare()
- Warn if file creation failed due to uninitialized debugfs
device property:
- Implement fw_devlink support for software nodes by adding
software_node_add_links(), which creates fwnode links from
DEV_PROP_REF properties to enable automatic probe ordering. Add
kunit-managed fwnode helpers and test coverage
- Fix infinite loop in fwnode_for_each_child_node() when the
secondary fwnode has more than one child. Add test cases
- Fix out-of-bounds access in software_node_get_reference_args() when
called with index -1 (UINT_MAX)
- Refactor to use RAII approach with __free()
- Add Bartosz Golaszewski as software node reviewer
firmware loader:
- Fix race where a sysfs fallback request can complete before being
queued as pending, leading to a use-after-free on the next fallback
request
- Reject 0-size built-in firmware and fail the build on empty
firmware files in CONFIG_EXTRA_FIRMWARE
kobject:
- Provide __KOBJ_ATTR() and __KOBJ_ATTR_RO/WO() initialization macros
and allow the constification of kobject attributes, enabling them
to reside in read-only memory
platform:
- Provide platform_device_set_of_node(), platform_device_set_fwnode(),
and platform_device_set_of_node_from_dev() helpers that encapsulate
firmware node reference counting for dynamically allocated platform
devices
Convert all in-tree users that manually assigned dev.of_node or
dev.fwnode, fixing a pre-existing refcount bug in powermac. Switch
to counting references of all firmware node types, not only OF
nodes
- Unify the release path for dynamically allocated platform devices
by removing platform_device_release_full(). Amend the fwnode setter
API contract to warn if a primary software node is overwritten. Add
KUnit tests for correct software node removal on device
unregistration
Rust:
- Auxiliary:
- Add registration_data_with() closure-based API for invariant
ForLt types
- Debugfs:
- Migrate BinaryWriter and BinaryReaderMut trait requirements
from kernel::transmute traits to zerocopy traits
- Device:
- Add BoundInternal device context and InternalBoundContext trait
for bus abstractions that need internal access to a bound
device.
- Make the lifetime on Core and CoreInternal invariant to prevent
coercion to shorter lifetimes
- Devres:
- Fix race between concurrent revokers where the losing revoker
could return before the winning revoker finished dropping the
inner data, causing use-after-free.
- Ensure revocation is complete before the device finishes
unbinding by making the synchronization bidirectional.
- Add DevresLt<F: ForLt>, a wrapper around Devres that shortens
'static back to the caller's borrow scope. Implement ForLt and
CovariantForLt for Bar, IoMem, and ExclusiveIoMem
- Driver:
- Switch from index-based to pointer-based device ID info lookup,
storing static references in driver_data. Centralize device ID
handling in device_id.rs, removing the open-coded ACPI/OF
matching logic and duplicate ID table from driver.rs
- I/O:
- Make I/O regions typed (with a dynamically-sized Region type
for the existing untyped case), create view types representing
subregions of a mapped I/O region, and add io_project!() for
safely creating subviews.
- Split Io into a base trait (IoBase) and an extension trait (Io)
with a blanket implementation, preventing implementers from
overriding provided methods that unsafe code relies on.
- Add a SysMem backend for shared system memory with volatile
access, and make Coherent implement Io via an I/O view type.
Add IoSysMap as sum type of Mmio and SysMem. Add copying
methods (memcpy_{from,to}io()) and read_val()/write_val() for
typed access.
- Replace dma_read!()/dma_write!() with io_read!()/io_write!()
for primitives and copying methods for aggregates; drop the old
macros. Convert nova-core to use I/O projection.
- Fix internal shortcut rule dispatch in the register!() macro,
remove unused rule arguments, and use path fragments for alias
destinations
- IRQ:
- Make irq::Registration compatible with lifetime-bound drivers
by removing the 'static bound on Handler/ThreadedHandler and
replacing Devres<RegistrationInner> with direct
request_irq()/free_irq() calls. Handlers can now directly own
lifetime-bound device resources
- PCI:
- Convert IrqVectorRegistration to a lifetime-annotated owning
type, giving drivers explicit control over the allocation
lifetime. IrqVector embeds a resolved IrqRequest, making the
conversion infallible. Remove the redundant
request_irq()/request_threaded_irq() wrappers from pci::Device.
- Add pci_irq_type() C helper and expose it via irq_type() on
IrqVectorRegistration and IrqVector, returning PCI_IRQ_MSIX,
PCI_IRQ_MSI, or PCI_IRQ_INTX.
- Mark pci::Device refcount methods inline
- Serdev:
- Add Rust abstractions for the serial device bus, including
serdev::Driver trait, serdev::Device wrapping struct
serdev_device, and serdev::Adapter implementing
RegistrationOps. Includes a sample driver. Markus Probst takes
over as serdev maintainer for both C and Rust code
- Misc:
- Split ForLt into a base trait (providing the Of<'a> GAT) and an
unsafe CovariantForLt subtrait guaranteeing covariance,
enabling invariant types (e.g. those containing Mutex<&'bound T>)
to participate in the ForLt abstraction.
- Fix Coherent read past EOF returning -ERANGE instead of zero.
- Fix firmware example UB by avoiding null-pointer ARef
misc:
- Avoid iattr allocation in kernfs listxattr by using
kernfs_iattrs_noalloc().
- Unregister SoC bus on early device registration failure.
- Remove unused DMA_FENCE_TRACE Kconfig symbol.
- Fix /sys/module path in comment.
- Refactor ISA bus init to remove nested blocks.
- Remove redundant nodemask clears in numa_init().
- Add kernel-doc for fwnode_operations and sys_soc.h, mark
internal property data as private for kernel-doc, and add
property.h/fwnode.h to driver-api infrastructure docs.
- Add MAINTAINERS entry for sys_soc.h"
* tag 'driver-core-7.3-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/driver-core/driver-core: (129 commits)
rust: pci: expose the allocated interrupt type
PCI: Add pci_irq_type() to query the allocated interrupt type
rust: pci: remove request_irq() and request_threaded_irq() from Device
rust: pci: resolve IRQ in index() and embed IrqRequest in IrqVector
rust: pci: convert IrqVectorRegistration to a lifetime-managed owning type
kernfs: avoid iattr allocation in listxattr
rust: serdev: use ThisModule::as_ptr() instead of field access
ACPI/IORT: use platform_device_set_fwnode()
ACPI/APMT: use platform_device_set_fwnode()
firmware_loader: do not queue completed sysfs fallback requests
rust: pci: Mark Device refcount methods inline
rust: irq: make Registration compatible with lifetime-bound drivers
rust: net/phy: remove expansion from doc
rust: dma: return zero for Coherent reads past EOF
rust: io: register: use path fragment for alias destination
rust: io: register: remove unused rule arguments
rust: io: register: dispatch shortcut rules internally
MAINTAINERS: add sys_soc.h to DRIVER CORE
rust: debugfs: remove unsafe blocks from traits impl for Vec
rust: debugfs: migrate debugfs traits requirements to zerocopy
...
590 lines
20 KiB
Rust
590 lines
20 KiB
Rust
// SPDX-License-Identifier: GPL-2.0
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//! Abstractions for the platform bus.
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//!
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//! C header: [`include/linux/platform_device.h`](srctree/include/linux/platform_device.h)
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use crate::{
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acpi,
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bindings,
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container_of,
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device::{
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self,
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Bound, //
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},
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driver,
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error::{
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from_result,
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to_result, //
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},
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io::Resource,
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irq::{
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self,
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IrqRequest, //
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},
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of,
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prelude::*,
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types::Opaque,
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ThisModule, //
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};
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#[cfg(CONFIG_HAS_IOMEM)]
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use crate::io::mem::IoRequest;
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use core::{
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marker::PhantomData,
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mem::offset_of,
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ptr::{
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addr_of_mut,
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NonNull, //
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},
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};
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/// An adapter for the registration of platform drivers.
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pub struct Adapter<T: Driver>(T);
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// SAFETY:
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// - `bindings::platform_driver` is a C type declared as `repr(C)`.
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// - `T::Data` is the type of the driver's device private data.
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// - `struct platform_driver` embeds a `struct device_driver`.
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// - `DEVICE_DRIVER_OFFSET` is the correct byte offset to the embedded `struct device_driver`.
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unsafe impl<T: Driver> driver::DriverLayout for Adapter<T> {
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type DriverType = bindings::platform_driver;
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type DriverData<'bound> = T::Data<'bound>;
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const DEVICE_DRIVER_OFFSET: usize = core::mem::offset_of!(Self::DriverType, driver);
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}
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// SAFETY: A call to `unregister` for a given instance of `DriverType` is guaranteed to be valid if
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// a preceding call to `register` has been successful.
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unsafe impl<T: Driver> driver::RegistrationOps for Adapter<T> {
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unsafe fn register(
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pdrv: &Opaque<Self::DriverType>,
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name: &'static CStr,
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module: &'static ThisModule,
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) -> Result {
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let of_table = match T::OF_ID_TABLE {
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Some(table) => table.as_ptr(),
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None => core::ptr::null(),
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};
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let acpi_table = match T::ACPI_ID_TABLE {
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Some(table) => table.as_ptr(),
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None => core::ptr::null(),
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};
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// SAFETY: It's safe to set the fields of `struct platform_driver` on initialization.
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unsafe {
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(*pdrv.get()).driver.name = name.as_char_ptr();
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(*pdrv.get()).probe = Some(Self::probe_callback);
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(*pdrv.get()).remove = Some(Self::remove_callback);
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(*pdrv.get()).driver.of_match_table = of_table;
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(*pdrv.get()).driver.acpi_match_table = acpi_table;
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}
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// SAFETY: `pdrv` is guaranteed to be a valid `DriverType`.
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to_result(unsafe {
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bindings::__platform_driver_register(pdrv.get(), module.as_ptr(), name.as_char_ptr())
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})
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}
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unsafe fn unregister(pdrv: &Opaque<Self::DriverType>) {
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// SAFETY: `pdrv` is guaranteed to be a valid `DriverType`.
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unsafe { bindings::platform_driver_unregister(pdrv.get()) };
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}
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}
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impl<T: Driver> Adapter<T> {
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extern "C" fn probe_callback(pdev: *mut bindings::platform_device) -> kernel::ffi::c_int {
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// SAFETY: The platform bus only ever calls the probe callback with a valid pointer to a
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// `struct platform_device`.
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//
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// INVARIANT: `pdev` is valid for the duration of `probe_callback()`.
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let pdev = unsafe { &*pdev.cast::<Device<device::CoreInternal<'_>>>() };
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// SAFETY: `pdev` matched data is of type `Self::IdInfo`.
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let info = unsafe { <Self as driver::Adapter>::id_info(pdev.as_ref()) };
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from_result(|| {
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let data = T::probe(pdev, info);
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pdev.as_ref().set_drvdata(data)?;
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Ok(0)
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})
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}
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extern "C" fn remove_callback(pdev: *mut bindings::platform_device) {
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// SAFETY: The platform bus only ever calls the remove callback with a valid pointer to a
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// `struct platform_device`.
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//
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// INVARIANT: `pdev` is valid for the duration of `remove_callback()`.
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let pdev = unsafe { &*pdev.cast::<Device<device::CoreInternal<'_>>>() };
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// SAFETY: `remove_callback` is only ever called after a successful call to
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// `probe_callback`, hence it's guaranteed that `Device::set_drvdata()` has been called
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// and stored a `Pin<KBox<T::Data<'_>>>`.
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let data = unsafe { pdev.as_ref().drvdata_borrow::<T::Data<'_>>() };
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T::unbind(pdev, data);
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}
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}
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impl<T: Driver> driver::Adapter for Adapter<T> {
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type IdInfo = T::IdInfo;
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fn of_id_table() -> Option<of::IdTable<Self::IdInfo>> {
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T::OF_ID_TABLE
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}
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fn acpi_id_table() -> Option<acpi::IdTable<Self::IdInfo>> {
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T::ACPI_ID_TABLE
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}
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}
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/// Declares a kernel module that exposes a single platform driver.
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///
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/// # Examples
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///
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/// ```ignore
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/// kernel::module_platform_driver! {
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/// type: MyDriver,
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/// name: "Module name",
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/// authors: ["Author name"],
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/// description: "Description",
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/// license: "GPL v2",
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/// }
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/// ```
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#[macro_export]
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macro_rules! module_platform_driver {
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($($f:tt)*) => {
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$crate::module_driver!(<T>, $crate::platform::Adapter<T>, { $($f)* });
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};
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}
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/// The platform driver trait.
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///
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/// Drivers must implement this trait in order to get a platform driver registered.
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///
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/// # Examples
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///
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///```
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/// # use kernel::{
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/// # acpi,
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/// # bindings,
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/// # device::Core,
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/// # of,
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/// # platform,
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/// # };
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/// struct MyDriver;
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///
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/// kernel::of_device_table!(
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/// OF_TABLE,
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/// <MyDriver as platform::Driver>::IdInfo,
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/// [
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/// (of::DeviceId::new(c"test,device"), ())
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/// ]
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/// );
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///
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/// kernel::acpi_device_table!(
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/// ACPI_TABLE,
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/// <MyDriver as platform::Driver>::IdInfo,
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/// [
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/// (acpi::DeviceId::new(c"LNUXBEEF"), ())
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/// ]
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/// );
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///
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/// impl platform::Driver for MyDriver {
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/// type IdInfo = ();
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/// type Data<'bound> = Self;
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/// const OF_ID_TABLE: Option<of::IdTable<Self::IdInfo>> = Some(&OF_TABLE);
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/// const ACPI_ID_TABLE: Option<acpi::IdTable<Self::IdInfo>> = Some(&ACPI_TABLE);
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///
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/// fn probe<'bound>(
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/// _pdev: &'bound platform::Device<Core<'_>>,
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/// _id_info: Option<&'bound Self::IdInfo>,
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/// ) -> impl PinInit<Self::Data<'bound>, Error> + 'bound {
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/// Err(ENODEV)
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/// }
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/// }
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///```
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pub trait Driver {
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/// The type holding driver private data about each device id supported by the driver.
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// TODO: Use associated_type_defaults once stabilized:
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//
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// ```
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// type IdInfo: 'static = ();
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// ```
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type IdInfo: 'static;
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/// The type of the driver's bus device private data.
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type Data<'bound>: Send + 'bound;
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/// The table of OF device ids supported by the driver.
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const OF_ID_TABLE: Option<of::IdTable<Self::IdInfo>> = None;
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/// The table of ACPI device ids supported by the driver.
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const ACPI_ID_TABLE: Option<acpi::IdTable<Self::IdInfo>> = None;
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/// Platform driver probe.
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///
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/// Called when a new platform device is added or discovered.
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/// Implementers should attempt to initialize the device here.
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fn probe<'bound>(
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dev: &'bound Device<device::Core<'_>>,
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id_info: Option<&'bound Self::IdInfo>,
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) -> impl PinInit<Self::Data<'bound>, Error> + 'bound;
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/// Platform driver unbind.
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///
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/// Called when a [`Device`] is unbound from its bound [`Driver`]. Implementing this callback
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/// is optional.
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///
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/// This callback serves as a place for drivers to perform teardown operations that require a
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/// `&Device<Core>` or `&Device<Bound>` reference. For instance, drivers may try to perform I/O
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/// operations to gracefully tear down the device.
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///
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/// Otherwise, release operations for driver resources should be performed in `Drop`.
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fn unbind<'bound>(dev: &'bound Device<device::Core<'_>>, this: Pin<&Self::Data<'bound>>) {
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let _ = (dev, this);
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}
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}
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/// The platform device representation.
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///
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/// This structure represents the Rust abstraction for a C `struct platform_device`. The
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/// implementation abstracts the usage of an already existing C `struct platform_device` within Rust
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/// code that we get passed from the C side.
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///
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/// # Invariants
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///
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/// A [`Device`] instance represents a valid `struct platform_device` created by the C portion of
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/// the kernel.
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#[repr(transparent)]
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pub struct Device<Ctx: device::DeviceContext = device::Normal>(
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Opaque<bindings::platform_device>,
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PhantomData<Ctx>,
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);
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impl<Ctx: device::DeviceContext> Device<Ctx> {
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fn as_raw(&self) -> *mut bindings::platform_device {
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self.0.get()
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}
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/// Returns the resource at `index`, if any.
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pub fn resource_by_index(&self, index: u32) -> Option<&Resource> {
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// SAFETY: `self.as_raw()` returns a valid pointer to a `struct platform_device`.
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let resource = unsafe {
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bindings::platform_get_resource(self.as_raw(), bindings::IORESOURCE_MEM, index)
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};
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if resource.is_null() {
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return None;
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}
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// SAFETY: `resource` is a valid pointer to a `struct resource` as
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// returned by `platform_get_resource`.
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Some(unsafe { Resource::from_raw(resource) })
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}
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/// Returns the resource with a given `name`, if any.
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pub fn resource_by_name(&self, name: &CStr) -> Option<&Resource> {
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// SAFETY: `self.as_raw()` returns a valid pointer to a `struct
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// platform_device` and `name` points to a valid C string.
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let resource = unsafe {
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bindings::platform_get_resource_byname(
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self.as_raw(),
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bindings::IORESOURCE_MEM,
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name.as_char_ptr(),
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)
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};
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if resource.is_null() {
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return None;
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}
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// SAFETY: `resource` is a valid pointer to a `struct resource` as
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// returned by `platform_get_resource`.
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Some(unsafe { Resource::from_raw(resource) })
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}
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}
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#[cfg(CONFIG_HAS_IOMEM)]
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impl Device<Bound> {
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/// Returns an `IoRequest` for the resource at `index`, if any.
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pub fn io_request_by_index(&self, index: u32) -> Option<IoRequest<'_>> {
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self.resource_by_index(index)
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// SAFETY: `resource` is a valid resource for `&self` during the
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// lifetime of the `IoRequest`.
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.map(|resource| unsafe { IoRequest::new(self.as_ref(), resource) })
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}
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/// Returns an `IoRequest` for the resource with a given `name`, if any.
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pub fn io_request_by_name(&self, name: &CStr) -> Option<IoRequest<'_>> {
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self.resource_by_name(name)
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// SAFETY: `resource` is a valid resource for `&self` during the
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// lifetime of the `IoRequest`.
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.map(|resource| unsafe { IoRequest::new(self.as_ref(), resource) })
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}
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}
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// SAFETY: `platform::Device` is a transparent wrapper of `struct platform_device`.
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// The offset is guaranteed to point to a valid device field inside `platform::Device`.
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unsafe impl<Ctx: device::DeviceContext> device::AsBusDevice<Ctx> for Device<Ctx> {
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const OFFSET: usize = offset_of!(bindings::platform_device, dev);
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}
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macro_rules! define_irq_accessor_by_index {
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(
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$(#[$meta:meta])* $fn_name:ident,
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$request_fn:ident,
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$reg_type:ident,
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$handler_trait:ident
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) => {
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$(#[$meta])*
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///
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/// # Safety
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///
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/// Callers must not `mem::forget()` the resulting registration or otherwise prevent its
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/// [`Drop`] implementation from running.
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pub unsafe fn $fn_name<'a, T: irq::$handler_trait + 'a>(
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&'a self,
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flags: irq::Flags,
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index: u32,
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name: &'static CStr,
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handler: impl PinInit<T, Error> + 'a,
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) -> impl PinInit<irq::$reg_type<'a, T>, Error> + 'a {
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pin_init::pin_init_scope(move || {
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let request = self.$request_fn(index)?;
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// SAFETY: Caller guarantees the Registration will not be leaked.
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Ok(unsafe {
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irq::$reg_type::<T>::new(
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|
request,
|
|
flags,
|
|
name,
|
|
handler,
|
|
)
|
|
})
|
|
})
|
|
}
|
|
};
|
|
}
|
|
|
|
macro_rules! define_irq_accessor_by_name {
|
|
(
|
|
$(#[$meta:meta])* $fn_name:ident,
|
|
$request_fn:ident,
|
|
$reg_type:ident,
|
|
$handler_trait:ident
|
|
) => {
|
|
$(#[$meta])*
|
|
///
|
|
/// # Safety
|
|
///
|
|
/// Callers must not `mem::forget()` the resulting registration or otherwise prevent its
|
|
/// [`Drop`] implementation from running.
|
|
pub unsafe fn $fn_name<'a, T: irq::$handler_trait + 'a>(
|
|
&'a self,
|
|
flags: irq::Flags,
|
|
irq_name: &'a CStr,
|
|
name: &'static CStr,
|
|
handler: impl PinInit<T, Error> + 'a,
|
|
) -> impl PinInit<irq::$reg_type<'a, T>, Error> + 'a {
|
|
pin_init::pin_init_scope(move || {
|
|
let request = self.$request_fn(irq_name)?;
|
|
|
|
// SAFETY: Caller guarantees the Registration will not be leaked.
|
|
Ok(unsafe {
|
|
irq::$reg_type::<T>::new(
|
|
request,
|
|
flags,
|
|
name,
|
|
handler,
|
|
)
|
|
})
|
|
})
|
|
}
|
|
};
|
|
}
|
|
|
|
impl Device<Bound> {
|
|
/// Returns an [`IrqRequest`] for the IRQ at the given index, if any.
|
|
pub fn irq_by_index(&self, index: u32) -> Result<IrqRequest<'_>> {
|
|
// SAFETY: `self.as_raw` returns a valid pointer to a `struct platform_device`.
|
|
let irq = unsafe { bindings::platform_get_irq(self.as_raw(), index) };
|
|
|
|
if irq < 0 {
|
|
return Err(Error::from_errno(irq));
|
|
}
|
|
|
|
// SAFETY: `irq` is guaranteed to be a valid IRQ number for `&self`.
|
|
Ok(unsafe { IrqRequest::new(self.as_ref(), irq as u32) })
|
|
}
|
|
|
|
/// Returns an [`IrqRequest`] for the IRQ at the given index, but does not
|
|
/// print an error if the IRQ cannot be obtained.
|
|
pub fn optional_irq_by_index(&self, index: u32) -> Result<IrqRequest<'_>> {
|
|
// SAFETY: `self.as_raw` returns a valid pointer to a `struct platform_device`.
|
|
let irq = unsafe { bindings::platform_get_irq_optional(self.as_raw(), index) };
|
|
|
|
if irq < 0 {
|
|
return Err(Error::from_errno(irq));
|
|
}
|
|
|
|
// SAFETY: `irq` is guaranteed to be a valid IRQ number for `&self`.
|
|
Ok(unsafe { IrqRequest::new(self.as_ref(), irq as u32) })
|
|
}
|
|
|
|
/// Returns an [`IrqRequest`] for the IRQ with the given name, if any.
|
|
pub fn irq_by_name(&self, name: &CStr) -> Result<IrqRequest<'_>> {
|
|
// SAFETY: `self.as_raw` returns a valid pointer to a `struct platform_device`.
|
|
let irq = unsafe { bindings::platform_get_irq_byname(self.as_raw(), name.as_char_ptr()) };
|
|
|
|
if irq < 0 {
|
|
return Err(Error::from_errno(irq));
|
|
}
|
|
|
|
// SAFETY: `irq` is guaranteed to be a valid IRQ number for `&self`.
|
|
Ok(unsafe { IrqRequest::new(self.as_ref(), irq as u32) })
|
|
}
|
|
|
|
/// Returns an [`IrqRequest`] for the IRQ with the given name, but does not
|
|
/// print an error if the IRQ cannot be obtained.
|
|
pub fn optional_irq_by_name(&self, name: &CStr) -> Result<IrqRequest<'_>> {
|
|
// SAFETY: `self.as_raw` returns a valid pointer to a `struct platform_device`.
|
|
let irq = unsafe {
|
|
bindings::platform_get_irq_byname_optional(self.as_raw(), name.as_char_ptr())
|
|
};
|
|
|
|
if irq < 0 {
|
|
return Err(Error::from_errno(irq));
|
|
}
|
|
|
|
// SAFETY: `irq` is guaranteed to be a valid IRQ number for `&self`.
|
|
Ok(unsafe { IrqRequest::new(self.as_ref(), irq as u32) })
|
|
}
|
|
|
|
define_irq_accessor_by_index!(
|
|
/// Returns a [`irq::Registration`] for the IRQ at the given index.
|
|
request_irq_by_index,
|
|
irq_by_index,
|
|
Registration,
|
|
Handler
|
|
);
|
|
define_irq_accessor_by_name!(
|
|
/// Returns a [`irq::Registration`] for the IRQ with the given name.
|
|
request_irq_by_name,
|
|
irq_by_name,
|
|
Registration,
|
|
Handler
|
|
);
|
|
define_irq_accessor_by_index!(
|
|
/// Does the same as [`Self::request_irq_by_index`], except that it does
|
|
/// not print an error message if the IRQ cannot be obtained.
|
|
request_optional_irq_by_index,
|
|
optional_irq_by_index,
|
|
Registration,
|
|
Handler
|
|
);
|
|
define_irq_accessor_by_name!(
|
|
/// Does the same as [`Self::request_irq_by_name`], except that it does
|
|
/// not print an error message if the IRQ cannot be obtained.
|
|
request_optional_irq_by_name,
|
|
optional_irq_by_name,
|
|
Registration,
|
|
Handler
|
|
);
|
|
|
|
define_irq_accessor_by_index!(
|
|
/// Returns a [`irq::ThreadedRegistration`] for the IRQ at the given index.
|
|
request_threaded_irq_by_index,
|
|
irq_by_index,
|
|
ThreadedRegistration,
|
|
ThreadedHandler
|
|
);
|
|
define_irq_accessor_by_name!(
|
|
/// Returns a [`irq::ThreadedRegistration`] for the IRQ with the given name.
|
|
request_threaded_irq_by_name,
|
|
irq_by_name,
|
|
ThreadedRegistration,
|
|
ThreadedHandler
|
|
);
|
|
define_irq_accessor_by_index!(
|
|
/// Does the same as [`Self::request_threaded_irq_by_index`], except
|
|
/// that it does not print an error message if the IRQ cannot be
|
|
/// obtained.
|
|
request_optional_threaded_irq_by_index,
|
|
optional_irq_by_index,
|
|
ThreadedRegistration,
|
|
ThreadedHandler
|
|
);
|
|
define_irq_accessor_by_name!(
|
|
/// Does the same as [`Self::request_threaded_irq_by_name`], except that
|
|
/// it does not print an error message if the IRQ cannot be obtained.
|
|
request_optional_threaded_irq_by_name,
|
|
optional_irq_by_name,
|
|
ThreadedRegistration,
|
|
ThreadedHandler
|
|
);
|
|
}
|
|
|
|
// SAFETY: `Device` is a transparent wrapper of a type that doesn't depend on `Device`'s generic
|
|
// argument.
|
|
kernel::impl_device_context_deref!(unsafe { Device });
|
|
kernel::impl_device_context_into_aref!(Device);
|
|
|
|
impl<'a> crate::dma::Device<'a> for Device<device::Core<'a>> {}
|
|
|
|
// SAFETY: Instances of `Device` are always reference-counted.
|
|
unsafe impl crate::sync::aref::AlwaysRefCounted for Device {
|
|
fn inc_ref(&self) {
|
|
// SAFETY: The existence of a shared reference guarantees that the refcount is non-zero.
|
|
unsafe { bindings::get_device(self.as_ref().as_raw()) };
|
|
}
|
|
|
|
unsafe fn dec_ref(obj: NonNull<Self>) {
|
|
// SAFETY: The safety requirements guarantee that the refcount is non-zero.
|
|
unsafe { bindings::platform_device_put(obj.cast().as_ptr()) }
|
|
}
|
|
}
|
|
|
|
impl<Ctx: device::DeviceContext> AsRef<device::Device<Ctx>> for Device<Ctx> {
|
|
fn as_ref(&self) -> &device::Device<Ctx> {
|
|
// SAFETY: By the type invariant of `Self`, `self.as_raw()` is a pointer to a valid
|
|
// `struct platform_device`.
|
|
let dev = unsafe { addr_of_mut!((*self.as_raw()).dev) };
|
|
|
|
// SAFETY: `dev` points to a valid `struct device`.
|
|
unsafe { device::Device::from_raw(dev) }
|
|
}
|
|
}
|
|
|
|
impl<Ctx: device::DeviceContext> TryFrom<&device::Device<Ctx>> for &Device<Ctx> {
|
|
type Error = kernel::error::Error;
|
|
|
|
fn try_from(dev: &device::Device<Ctx>) -> Result<Self, Self::Error> {
|
|
// SAFETY: By the type invariant of `Device`, `dev.as_raw()` is a valid pointer to a
|
|
// `struct device`.
|
|
if !unsafe { bindings::dev_is_platform(dev.as_raw()) } {
|
|
return Err(EINVAL);
|
|
}
|
|
|
|
// SAFETY: We've just verified that the bus type of `dev` equals
|
|
// `bindings::platform_bus_type`, hence `dev` must be embedded in a valid
|
|
// `struct platform_device` as guaranteed by the corresponding C code.
|
|
let pdev = unsafe { container_of!(dev.as_raw(), bindings::platform_device, dev) };
|
|
|
|
// SAFETY: `pdev` is a valid pointer to a `struct platform_device`.
|
|
Ok(unsafe { &*pdev.cast() })
|
|
}
|
|
}
|
|
|
|
// SAFETY: A `Device` is always reference-counted and can be released from any thread.
|
|
unsafe impl Send for Device {}
|
|
|
|
// SAFETY: `Device` can be shared among threads because all methods of `Device`
|
|
// (i.e. `Device<Normal>) are thread safe.
|
|
unsafe impl Sync for Device {}
|
|
|
|
// SAFETY: Same as `Device<Normal>` -- the underlying `struct platform_device` is the same;
|
|
// `Bound` is a zero-sized type-state marker that does not affect thread safety.
|
|
unsafe impl Sync for Device<device::Bound> {}
|