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	In Rust 1.63.0, Clippy introduced the `as_underscore` lint [1]: > The conversion might include lossy conversion or a dangerous cast that > might go undetected due to the type being inferred. > > The lint is allowed by default as using `_` is less wordy than always > specifying the type. Always specifying the type is especially helpful in function call contexts where the inferred type may change at a distance. Specifying the type also allows Clippy to spot more cases of `useless_conversion`. The primary downside is the need to specify the type in trivial getters. There are 4 such functions: 3 have become slightly less ergonomic, 1 was revealed to be a `useless_conversion`. While this doesn't eliminate unchecked `as` conversions, it makes such conversions easier to scrutinize. It also has the slight benefit of removing a degree of freedom on which to bikeshed. Thus apply the changes and enable the lint -- no functional change intended. Link: https://rust-lang.github.io/rust-clippy/master/index.html#as_underscore [1] Reviewed-by: Benno Lossin <benno.lossin@proton.me> Reviewed-by: Boqun Feng <boqun.feng@gmail.com> Signed-off-by: Tamir Duberstein <tamird@gmail.com> Acked-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> Acked-by: Danilo Krummrich <dakr@kernel.org> Link: https://lore.kernel.org/r/20250615-ptr-as-ptr-v12-4-f43b024581e8@gmail.com [ Changed `isize` to `c_long`. - Miguel ] Signed-off-by: Miguel Ojeda <ojeda@kernel.org>
		
			
				
	
	
		
			364 lines
		
	
	
	
		
			14 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			364 lines
		
	
	
	
		
			14 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
// SPDX-License-Identifier: GPL-2.0
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// Copyright (C) 2024 Google LLC.
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//! Miscdevice support.
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//!
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//! C headers: [`include/linux/miscdevice.h`](srctree/include/linux/miscdevice.h).
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//!
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//! Reference: <https://www.kernel.org/doc/html/latest/driver-api/misc_devices.html>
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use crate::{
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    bindings,
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    device::Device,
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    error::{to_result, Error, Result, VTABLE_DEFAULT_ERROR},
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    ffi::{c_int, c_long, c_uint, c_ulong},
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    fs::File,
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    mm::virt::VmaNew,
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    prelude::*,
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    seq_file::SeqFile,
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    str::CStr,
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    types::{ForeignOwnable, Opaque},
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};
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use core::{marker::PhantomData, mem::MaybeUninit, pin::Pin};
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/// Options for creating a misc device.
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#[derive(Copy, Clone)]
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pub struct MiscDeviceOptions {
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    /// The name of the miscdevice.
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    pub name: &'static CStr,
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}
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impl MiscDeviceOptions {
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    /// Create a raw `struct miscdev` ready for registration.
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    pub const fn into_raw<T: MiscDevice>(self) -> bindings::miscdevice {
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        // SAFETY: All zeros is valid for this C type.
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        let mut result: bindings::miscdevice = unsafe { MaybeUninit::zeroed().assume_init() };
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        result.minor = bindings::MISC_DYNAMIC_MINOR as ffi::c_int;
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        result.name = self.name.as_char_ptr();
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        result.fops = MiscdeviceVTable::<T>::build();
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        result
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    }
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}
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/// A registration of a miscdevice.
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///
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/// # Invariants
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///
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/// `inner` is a registered misc device.
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#[repr(transparent)]
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#[pin_data(PinnedDrop)]
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pub struct MiscDeviceRegistration<T> {
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    #[pin]
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    inner: Opaque<bindings::miscdevice>,
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    _t: PhantomData<T>,
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}
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// SAFETY: It is allowed to call `misc_deregister` on a different thread from where you called
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// `misc_register`.
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unsafe impl<T> Send for MiscDeviceRegistration<T> {}
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// SAFETY: All `&self` methods on this type are written to ensure that it is safe to call them in
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// parallel.
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unsafe impl<T> Sync for MiscDeviceRegistration<T> {}
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impl<T: MiscDevice> MiscDeviceRegistration<T> {
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    /// Register a misc device.
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    pub fn register(opts: MiscDeviceOptions) -> impl PinInit<Self, Error> {
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        try_pin_init!(Self {
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            inner <- Opaque::try_ffi_init(move |slot: *mut bindings::miscdevice| {
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                // SAFETY: The initializer can write to the provided `slot`.
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                unsafe { slot.write(opts.into_raw::<T>()) };
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                // SAFETY: We just wrote the misc device options to the slot. The miscdevice will
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                // get unregistered before `slot` is deallocated because the memory is pinned and
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                // the destructor of this type deallocates the memory.
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                // INVARIANT: If this returns `Ok(())`, then the `slot` will contain a registered
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                // misc device.
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                to_result(unsafe { bindings::misc_register(slot) })
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            }),
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            _t: PhantomData,
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        })
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    }
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    /// Returns a raw pointer to the misc device.
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    pub fn as_raw(&self) -> *mut bindings::miscdevice {
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        self.inner.get()
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    }
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    /// Access the `this_device` field.
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    pub fn device(&self) -> &Device {
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        // SAFETY: This can only be called after a successful register(), which always
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        // initialises `this_device` with a valid device. Furthermore, the signature of this
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        // function tells the borrow-checker that the `&Device` reference must not outlive the
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        // `&MiscDeviceRegistration<T>` used to obtain it, so the last use of the reference must be
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        // before the underlying `struct miscdevice` is destroyed.
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        unsafe { Device::as_ref((*self.as_raw()).this_device) }
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    }
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}
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#[pinned_drop]
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impl<T> PinnedDrop for MiscDeviceRegistration<T> {
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    fn drop(self: Pin<&mut Self>) {
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        // SAFETY: We know that the device is registered by the type invariants.
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        unsafe { bindings::misc_deregister(self.inner.get()) };
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    }
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}
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/// Trait implemented by the private data of an open misc device.
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#[vtable]
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pub trait MiscDevice: Sized {
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    /// What kind of pointer should `Self` be wrapped in.
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    type Ptr: ForeignOwnable + Send + Sync;
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    /// Called when the misc device is opened.
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    ///
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    /// The returned pointer will be stored as the private data for the file.
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    fn open(_file: &File, _misc: &MiscDeviceRegistration<Self>) -> Result<Self::Ptr>;
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    /// Called when the misc device is released.
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    fn release(device: Self::Ptr, _file: &File) {
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        drop(device);
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    }
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    /// Handle for mmap.
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    ///
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    /// This function is invoked when a user space process invokes the `mmap` system call on
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    /// `file`. The function is a callback that is part of the VMA initializer. The kernel will do
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    /// initial setup of the VMA before calling this function. The function can then interact with
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    /// the VMA initialization by calling methods of `vma`. If the function does not return an
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    /// error, the kernel will complete initialization of the VMA according to the properties of
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    /// `vma`.
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    fn mmap(
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        _device: <Self::Ptr as ForeignOwnable>::Borrowed<'_>,
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        _file: &File,
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        _vma: &VmaNew,
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    ) -> Result {
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        build_error!(VTABLE_DEFAULT_ERROR)
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    }
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    /// Handler for ioctls.
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    ///
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    /// The `cmd` argument is usually manipulated using the utilities in [`kernel::ioctl`].
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    ///
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    /// [`kernel::ioctl`]: mod@crate::ioctl
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    fn ioctl(
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        _device: <Self::Ptr as ForeignOwnable>::Borrowed<'_>,
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        _file: &File,
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        _cmd: u32,
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        _arg: usize,
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    ) -> Result<isize> {
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        build_error!(VTABLE_DEFAULT_ERROR)
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    }
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    /// Handler for ioctls.
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    ///
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    /// Used for 32-bit userspace on 64-bit platforms.
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    ///
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    /// This method is optional and only needs to be provided if the ioctl relies on structures
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    /// that have different layout on 32-bit and 64-bit userspace. If no implementation is
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    /// provided, then `compat_ptr_ioctl` will be used instead.
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    #[cfg(CONFIG_COMPAT)]
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    fn compat_ioctl(
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        _device: <Self::Ptr as ForeignOwnable>::Borrowed<'_>,
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        _file: &File,
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        _cmd: u32,
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        _arg: usize,
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    ) -> Result<isize> {
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        build_error!(VTABLE_DEFAULT_ERROR)
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    }
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    /// Show info for this fd.
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    fn show_fdinfo(
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        _device: <Self::Ptr as ForeignOwnable>::Borrowed<'_>,
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        _m: &SeqFile,
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        _file: &File,
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    ) {
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        build_error!(VTABLE_DEFAULT_ERROR)
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    }
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}
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/// A vtable for the file operations of a Rust miscdevice.
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struct MiscdeviceVTable<T: MiscDevice>(PhantomData<T>);
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impl<T: MiscDevice> MiscdeviceVTable<T> {
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    /// # Safety
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    ///
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    /// `file` and `inode` must be the file and inode for a file that is undergoing initialization.
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    /// The file must be associated with a `MiscDeviceRegistration<T>`.
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    unsafe extern "C" fn open(inode: *mut bindings::inode, raw_file: *mut bindings::file) -> c_int {
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        // SAFETY: The pointers are valid and for a file being opened.
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        let ret = unsafe { bindings::generic_file_open(inode, raw_file) };
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        if ret != 0 {
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            return ret;
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        }
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        // SAFETY: The open call of a file can access the private data.
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        let misc_ptr = unsafe { (*raw_file).private_data };
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        // SAFETY: This is a miscdevice, so `misc_open()` set the private data to a pointer to the
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        // associated `struct miscdevice` before calling into this method. Furthermore,
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        // `misc_open()` ensures that the miscdevice can't be unregistered and freed during this
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        // call to `fops_open`.
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        let misc = unsafe { &*misc_ptr.cast::<MiscDeviceRegistration<T>>() };
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        // SAFETY:
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        // * This underlying file is valid for (much longer than) the duration of `T::open`.
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        // * There is no active fdget_pos region on the file on this thread.
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        let file = unsafe { File::from_raw_file(raw_file) };
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        let ptr = match T::open(file, misc) {
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            Ok(ptr) => ptr,
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            Err(err) => return err.to_errno(),
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        };
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        // This overwrites the private data with the value specified by the user, changing the type
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        // of this file's private data. All future accesses to the private data is performed by
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        // other fops_* methods in this file, which all correctly cast the private data to the new
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        // type.
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        //
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        // SAFETY: The open call of a file can access the private data.
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        unsafe { (*raw_file).private_data = ptr.into_foreign().cast() };
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        0
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    }
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    /// # Safety
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    ///
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    /// `file` and `inode` must be the file and inode for a file that is being released. The file
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    /// must be associated with a `MiscDeviceRegistration<T>`.
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    unsafe extern "C" fn release(_inode: *mut bindings::inode, file: *mut bindings::file) -> c_int {
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        // SAFETY: The release call of a file owns the private data.
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        let private = unsafe { (*file).private_data }.cast();
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        // SAFETY: The release call of a file owns the private data.
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        let ptr = unsafe { <T::Ptr as ForeignOwnable>::from_foreign(private) };
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        // SAFETY:
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        // * The file is valid for the duration of this call.
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        // * There is no active fdget_pos region on the file on this thread.
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        T::release(ptr, unsafe { File::from_raw_file(file) });
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        0
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    }
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    /// # Safety
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    ///
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    /// `file` must be a valid file that is associated with a `MiscDeviceRegistration<T>`.
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    /// `vma` must be a vma that is currently being mmap'ed with this file.
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    unsafe extern "C" fn mmap(
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        file: *mut bindings::file,
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        vma: *mut bindings::vm_area_struct,
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    ) -> c_int {
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        // SAFETY: The mmap call of a file can access the private data.
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        let private = unsafe { (*file).private_data };
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        // SAFETY: This is a Rust Miscdevice, so we call `into_foreign` in `open` and
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        // `from_foreign` in `release`, and `fops_mmap` is guaranteed to be called between those
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        // two operations.
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        let device = unsafe { <T::Ptr as ForeignOwnable>::borrow(private.cast()) };
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        // SAFETY: The caller provides a vma that is undergoing initial VMA setup.
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        let area = unsafe { VmaNew::from_raw(vma) };
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        // SAFETY:
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        // * The file is valid for the duration of this call.
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        // * There is no active fdget_pos region on the file on this thread.
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        let file = unsafe { File::from_raw_file(file) };
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        match T::mmap(device, file, area) {
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            Ok(()) => 0,
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            Err(err) => err.to_errno(),
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        }
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    }
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    /// # Safety
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    ///
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    /// `file` must be a valid file that is associated with a `MiscDeviceRegistration<T>`.
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    unsafe extern "C" fn ioctl(file: *mut bindings::file, cmd: c_uint, arg: c_ulong) -> c_long {
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        // SAFETY: The ioctl call of a file can access the private data.
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        let private = unsafe { (*file).private_data }.cast();
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        // SAFETY: Ioctl calls can borrow the private data of the file.
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        let device = unsafe { <T::Ptr as ForeignOwnable>::borrow(private) };
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        // SAFETY:
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        // * The file is valid for the duration of this call.
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        // * There is no active fdget_pos region on the file on this thread.
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        let file = unsafe { File::from_raw_file(file) };
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        match T::ioctl(device, file, cmd, arg) {
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            Ok(ret) => ret as c_long,
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            Err(err) => err.to_errno() as c_long,
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        }
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    }
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    /// # Safety
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    ///
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    /// `file` must be a valid file that is associated with a `MiscDeviceRegistration<T>`.
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    #[cfg(CONFIG_COMPAT)]
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    unsafe extern "C" fn compat_ioctl(
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        file: *mut bindings::file,
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        cmd: c_uint,
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        arg: c_ulong,
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    ) -> c_long {
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        // SAFETY: The compat ioctl call of a file can access the private data.
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        let private = unsafe { (*file).private_data }.cast();
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        // SAFETY: Ioctl calls can borrow the private data of the file.
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        let device = unsafe { <T::Ptr as ForeignOwnable>::borrow(private) };
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        // SAFETY:
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        // * The file is valid for the duration of this call.
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        // * There is no active fdget_pos region on the file on this thread.
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        let file = unsafe { File::from_raw_file(file) };
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        match T::compat_ioctl(device, file, cmd, arg) {
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            Ok(ret) => ret as c_long,
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            Err(err) => err.to_errno() as c_long,
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        }
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    }
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    /// # Safety
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    ///
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    /// - `file` must be a valid file that is associated with a `MiscDeviceRegistration<T>`.
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    /// - `seq_file` must be a valid `struct seq_file` that we can write to.
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    unsafe extern "C" fn show_fdinfo(seq_file: *mut bindings::seq_file, file: *mut bindings::file) {
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        // SAFETY: The release call of a file owns the private data.
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        let private = unsafe { (*file).private_data }.cast();
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        // SAFETY: Ioctl calls can borrow the private data of the file.
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        let device = unsafe { <T::Ptr as ForeignOwnable>::borrow(private) };
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        // SAFETY:
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        // * The file is valid for the duration of this call.
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        // * There is no active fdget_pos region on the file on this thread.
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        let file = unsafe { File::from_raw_file(file) };
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        // SAFETY: The caller ensures that the pointer is valid and exclusive for the duration in
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        // which this method is called.
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        let m = unsafe { SeqFile::from_raw(seq_file) };
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        T::show_fdinfo(device, m, file);
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    }
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    const VTABLE: bindings::file_operations = bindings::file_operations {
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        open: Some(Self::open),
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        release: Some(Self::release),
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        mmap: if T::HAS_MMAP { Some(Self::mmap) } else { None },
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        unlocked_ioctl: if T::HAS_IOCTL {
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            Some(Self::ioctl)
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        } else {
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            None
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        },
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        #[cfg(CONFIG_COMPAT)]
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        compat_ioctl: if T::HAS_COMPAT_IOCTL {
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            Some(Self::compat_ioctl)
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        } else if T::HAS_IOCTL {
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            Some(bindings::compat_ptr_ioctl)
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        } else {
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            None
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        },
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        show_fdinfo: if T::HAS_SHOW_FDINFO {
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            Some(Self::show_fdinfo)
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        } else {
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            None
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        },
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        // SAFETY: All zeros is a valid value for `bindings::file_operations`.
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        ..unsafe { MaybeUninit::zeroed().assume_init() }
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    };
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    const fn build() -> &'static bindings::file_operations {
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        &Self::VTABLE
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    }
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}
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