mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
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Add the entrypoint for unmapping ranges in the GPUVM, and provide callbacks and VA types for the implementation. Co-developed-by: Asahi Lina <lina+kernel@asahilina.net> Signed-off-by: Asahi Lina <lina+kernel@asahilina.net> Reviewed-by: Daniel Almeida <daniel.almeida@collabora.com> Signed-off-by: Alice Ryhl <aliceryhl@google.com> Link: https://patch.msgid.link/20260409-gpuvm-rust-v6-4-b16e6ada7261@google.com Signed-off-by: Danilo Krummrich <dakr@kernel.org>
169 lines
5.2 KiB
Rust
169 lines
5.2 KiB
Rust
// SPDX-License-Identifier: GPL-2.0 OR MIT
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use super::*;
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/// Represents that a range of a GEM object is mapped in this [`GpuVm`] instance.
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///
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/// Does not assume that GEM lock is held.
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///
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/// # Invariants
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///
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/// * This is a valid `drm_gpuva` object that is resident in a [`GpuVm<T>`] instance.
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/// * It is associated with a [`GpuVmBo<T>`]. Or in other words, it's not an
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/// `gpuvm->kernel_alloc_node` and `DRM_GPUVA_SPARSE` is not set.
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/// * The associated [`GpuVmBo<T>`] is part of the GEM list.
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#[repr(C)]
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#[pin_data]
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pub struct GpuVa<T: DriverGpuVm> {
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#[pin]
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inner: Opaque<bindings::drm_gpuva>,
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#[pin]
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data: T::VaData,
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}
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impl<T: DriverGpuVm> PartialEq for GpuVa<T> {
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#[inline]
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fn eq(&self, other: &Self) -> bool {
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core::ptr::eq(self.as_raw(), other.as_raw())
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}
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}
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impl<T: DriverGpuVm> Eq for GpuVa<T> {}
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impl<T: DriverGpuVm> GpuVa<T> {
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/// Access this [`GpuVa`] from a raw pointer.
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///
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/// # Safety
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///
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/// * For the duration of `'a`, the pointer must reference a valid `drm_gpuva` associated with
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/// a [`GpuVm<T>`].
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/// * It must be associated with a [`GpuVmBo<T>`].
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/// * The associated [`GpuVmBo<T>`] is part of the GEM list.
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#[inline]
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pub unsafe fn from_raw<'a>(ptr: *mut bindings::drm_gpuva) -> &'a Self {
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// CAST: `drm_gpuva` is first field and `repr(C)`.
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// SAFETY: The safety requirements match the invariants of `GpuVa`.
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unsafe { &*ptr.cast() }
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}
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/// Returns a raw pointer to underlying C value.
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#[inline]
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pub fn as_raw(&self) -> *mut bindings::drm_gpuva {
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self.inner.get()
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}
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/// Returns the address of this mapping in the GPU virtual address space.
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#[inline]
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pub fn addr(&self) -> u64 {
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// SAFETY: The `va.addr` field of `drm_gpuva` is immutable.
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unsafe { (*self.as_raw()).va.addr }
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}
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/// Returns the length of this mapping.
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#[inline]
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pub fn length(&self) -> u64 {
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// SAFETY: The `va.range` field of `drm_gpuva` is immutable.
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unsafe { (*self.as_raw()).va.range }
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}
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/// Returns `addr..addr+length`.
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#[inline]
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pub fn range(&self) -> Range<u64> {
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let addr = self.addr();
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addr..addr + self.length()
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}
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/// Returns the offset within the GEM object.
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#[inline]
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pub fn gem_offset(&self) -> u64 {
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// SAFETY: The `gem.offset` field of `drm_gpuva` is immutable.
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unsafe { (*self.as_raw()).gem.offset }
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}
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/// Returns the GEM object.
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#[inline]
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pub fn obj(&self) -> &T::Object {
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// SAFETY: The `gem.obj` field of `drm_gpuva` is immutable. We know that it's not null
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// because this VA is associated with a `GpuVmBo<T>`.
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unsafe { <T::Object as IntoGEMObject>::from_raw((*self.as_raw()).gem.obj) }
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}
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/// Returns the underlying [`GpuVmBo`] object that backs this [`GpuVa`].
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#[inline]
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pub fn vm_bo(&self) -> &GpuVmBo<T> {
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// SAFETY: The `vm_bo` field of `drm_gpuva` is immutable. We know that it's not null
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// because this VA is associated with a `GpuVmBo<T>`. The BO is in the GEM list by the type
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// invariants.
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unsafe { GpuVmBo::from_raw((*self.as_raw()).vm_bo) }
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}
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}
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/// A pre-allocated [`GpuVa`] object.
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///
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/// # Invariants
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///
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/// The memory is zeroed.
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pub struct GpuVaAlloc<T: DriverGpuVm>(KBox<MaybeUninit<GpuVa<T>>>);
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impl<T: DriverGpuVm> GpuVaAlloc<T> {
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/// Pre-allocate a [`GpuVa`] object.
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pub fn new(flags: AllocFlags) -> Result<GpuVaAlloc<T>, AllocError> {
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// INVARIANTS: Memory allocated with __GFP_ZERO.
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Ok(GpuVaAlloc(KBox::new_uninit(flags | __GFP_ZERO)?))
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}
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/// Prepare this `drm_gpuva` for insertion into the GPUVM.
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#[must_use]
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pub(super) fn prepare(mut self, va_data: impl PinInit<T::VaData>) -> *mut bindings::drm_gpuva {
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let va_ptr = MaybeUninit::as_mut_ptr(&mut self.0);
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// SAFETY: The `data` field is pinned.
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let Ok(()) = unsafe { va_data.__pinned_init(&raw mut (*va_ptr).data) };
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KBox::into_raw(self.0).cast()
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}
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}
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/// A [`GpuVa`] object that has been removed.
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///
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/// # Invariants
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///
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/// The `drm_gpuva` is not resident in the [`GpuVm`].
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pub struct GpuVaRemoved<T: DriverGpuVm>(KBox<GpuVa<T>>);
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impl<T: DriverGpuVm> GpuVaRemoved<T> {
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/// Convert a raw pointer into a [`GpuVaRemoved`].
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///
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/// # Safety
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///
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/// * Must have been removed from a [`GpuVm<T>`].
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/// * It must not be a `gpuvm->kernel_alloc_node` va.
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pub(super) unsafe fn from_raw(ptr: *mut bindings::drm_gpuva) -> Self {
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// SAFETY: Since it used to be a VA in a `GpuVm<T>` and it's not a kernel_alloc_node, this
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// pointer references a `GpuVa<T>` with a valid `T::VaData`. Since it has been removed, we
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// can take ownership of the allocation.
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GpuVaRemoved(unsafe { KBox::from_raw(ptr.cast()) })
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}
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/// Take ownership of the VA data.
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pub fn into_inner(self) -> T::VaData
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where
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T::VaData: Unpin,
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{
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KBox::into_inner(self.0).data
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}
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}
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impl<T: DriverGpuVm> Deref for GpuVaRemoved<T> {
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type Target = T::VaData;
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fn deref(&self) -> &T::VaData {
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&self.0.data
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}
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}
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impl<T: DriverGpuVm> DerefMut for GpuVaRemoved<T>
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where
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T::VaData: Unpin,
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{
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fn deref_mut(&mut self) -> &mut T::VaData {
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&mut self.0.data
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}
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}
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