Re: [PATCH v5 01/11] gpu: nova-core: Add public driver API to nova-core
From: "Danilo Krummrich" <dakr@kernel.org>
Date: 2026-08-31 20:09:05
Also in:
dri-devel, lkml, rust-for-linux
Subsystem:
core driver for nvidia gpus [rust], drm driver for nvidia gpus [rust], drm drivers, drm drivers and common infrastructure [rust], the rest · Maintainers:
Danilo Krummrich, Alexandre Courbot, David Airlie, Simona Vetter, Alice Ryhl, Linus Torvalds
On Fri Aug 28, 2026 at 5:35 AM CEST, Alistair Popple wrote:
+/// API handle for the auxiliary bus child drivers to interact with nova-core.
+pub struct NovaCoreApi<'bound> {
+ #[expect(unused)]
+ pub(crate) gpu: Pin<&'bound Gpu<'bound>>,
+}
+
+impl NovaCoreApi<'_> {
+ /// Obtain a [`NovaCoreApi`] handle from an auxiliary device registered
+ /// by nova-core.
+ pub fn of(adev: &auxiliary::Device<Bound>) -> Result<Pin<&NovaCoreApi<'_>>> {
+ adev.registration_data::<CovariantForLt!(NovaCoreApi<'_>)>()
+ }
+}
CovariantForLt does not hold anymore on latest drm-rust-next, as Cmdq has a
Mutex. So, this needs ForLt now and therefore the approach that I shared in [1]
a while ago. I applied the changes in [2] to fix it up.
I think the closure access through api.with(|api| ...) is fine in most cases,
but there are a few options if we run into cases where we consider it a bit
inconvinient.
I think it should be possible to support projections into T: 'static and
covariant fields. The reason I differentiate them is because T: 'static is very
convinient, but non-'static covariant types need an annoying turbofish.
For T: 'static types it would turn out like this
let spec = reg_data.api.project(|api| api.spec());
such that everything that needs spec does not need to be in the closure anymore.
For non-'static covariant fields we could have
let foo = reg_data.api.project_lt::<CovariantForLt!(Foo<'_>)>(|api| api.foo());
but as mentioned it unfortunately needs the turbofish. Of course we could invent
a macro around it to get rid of the turbofish, but we'd still need to explicitly
mention the type Foo<'_>, so it doesn't buy us a lot.
This is the implementation I came up with in nova-core
/// Projects a `'static` sub-field out of the registration data.
///
/// `T` is fully inferred from the closure. For projected types with a lifetime parameter,
/// use [`Self::project_lt`].
pub fn project<T: 'static>(
&self,
f: impl for<'b> FnOnce(Pin<&'b NovaCoreApi<'b>>) -> &'b T,
) -> &'a T {
self.adev
.registration_data_field::<ForLt!(NovaCoreApi<'_>), T>(f)
.expect("TypeId was validated in NovaCoreApiHandle::of()")
}
/// Projects a covariant sub-field out of the registration data.
///
/// Supports projected types with a lifetime parameter via a
/// [`CovariantForLt`](trait@CovariantForLt) encoding. Unlike [`Self::project`], `G` cannot
/// be inferred and must be specified explicitly.
pub fn project_lt<G: CovariantForLt + 'static>(
&self,
f: impl for<'b> FnOnce(Pin<&'b NovaCoreApi<'b>>) -> &'b G::Of<'b>,
) -> &'a G::Of<'a> {
self.adev
.registration_data_project::<ForLt!(NovaCoreApi<'_>), G>(f)
.expect("TypeId was validated in NovaCoreApiHandle::of()")
}
and this is what we'd need in the auxiliary bus
/// Projects a covariant sub-field out of potentially invariant registration data.
///
/// `F` is the [`ForLt`](trait@ForLt) encoding of the registration data type. `G` is the
/// [`CovariantForLt`](trait@CovariantForLt) encoding of the projected sub-field type.
///
/// For projected types that are `'static`, prefer [`Self::registration_data_field`] which
/// does not require a [`CovariantForLt`](trait@CovariantForLt) encoding and fully infers `T`.
///
/// Returns [`EINVAL`] if `F` does not match the type used by the parent driver when calling
/// [`Registration::new()`]. Returns [`ENOENT`] if no registration data has been set.
#[inline]
pub fn registration_data_project<F, G>(
&self,
project: impl for<'a> FnOnce(Pin<&'a F::Of<'a>>) -> &'a G::Of<'a>,
) -> Result<&G::Of<'_>>
where
F: ForLt + 'static,
G: CovariantForLt + 'static,
{
let ptr = self.registration_data_with::<F, *const ()>(|data| {
core::ptr::from_ref::<G::Of<'_>>(project(data)).cast::<()>()
})?;
// SAFETY:
// - The HRTB bound on `project` ensures the returned pointer is derived from the
// registration data (nothing else lives for universally quantified `'a`).
// - `G: CovariantForLt` guarantees that shortening the lifetime of `G::Of` is sound.
// - The registration data is heap-allocated and outlives the device's bound state.
Ok(unsafe { &*ptr.cast::<G::Of<'_>>() })
}
/// Projects a `'static` sub-field out of potentially invariant registration data.
///
/// Simplified variant of [`Self::registration_data_project`] for projected types that are
/// `'static`. Since `&'a T` is trivially covariant when `T: 'static`, no
/// [`CovariantForLt`](trait@CovariantForLt) encoding is needed and `T` is fully inferred
/// from the closure.
///
/// Returns [`EINVAL`] if `F` does not match the type used by the parent driver when calling
/// [`Registration::new()`]. Returns [`ENOENT`] if no registration data has been set.
#[inline]
pub fn registration_data_field<F: ForLt + 'static, T: 'static>(
&self,
project: impl for<'a> FnOnce(Pin<&'a F::Of<'a>>) -> &'a T,
) -> Result<&T> {
let ptr = self.registration_data_with::<F, *const T>(|data| {
core::ptr::from_ref(project(data))
})?;
// SAFETY:
// - The HRTB bound on `project` ensures the returned pointer is derived from the
// registration data (nothing else lives for universally quantified `'a`).
// - `T: 'static` means `&T` is trivially covariant; lifetime shortening is sound.
// - The registration data is heap-allocated and outlives the device's bound state.
Ok(unsafe { &*ptr })
}
with the documentation being written by an LLM and unchecked.
I think at least the T: 'static projection can provide an ergonomic advantage
and might be useful to add. Please let me know what you think.
Thanks,
Danilo
[1] https://lore.kernel.org/all/DJQSY9ZY5M5F.3VI537GS00E1G@kernel.org/ (local)
[2] CovariantForLt to ForLt changes for nova-core
diff --git a/drivers/gpu/drm/nova/driver.rs b/drivers/gpu/drm/nova/driver.rs
index 7fc0baef5f04..028020213ac5 100644
--- a/drivers/gpu/drm/nova/driver.rs
+++ b/drivers/gpu/drm/nova/driver.rs@@ -1,7 +1,5 @@ // SPDX-License-Identifier: GPL-2.0 -use core::pin::Pin; - use kernel::{ auxiliary, device::{
@@ -20,7 +18,10 @@ use crate::file::File; use crate::gem::NovaObject; -use nova_core::api::NovaCoreApi; +use nova_core::api::{ + NovaCoreApi, + NovaCoreApiHandle, // +}; pub(crate) struct NovaDriver;
@@ -32,7 +33,7 @@ pub(crate) struct Nova<'bound> { /// DRM registration data, accessible from ioctl handlers via the registration guard. pub(crate) struct DrmRegData<'bound> { - pub(crate) api: Pin<&'bound NovaCoreApi<'bound>>, + pub(crate) api: NovaCoreApiHandle<'bound>, } /// Convienence type alias for the DRM device type for this driver
@@ -69,7 +70,7 @@ fn probe<'bound>( ) -> impl PinInit<Self::Data<'bound>, Error> + 'bound { let drm = drm::UnregisteredDevice::<Self>::new(adev, Ok(()))?; let reg_data = DrmRegData { - api: NovaCoreApi::of(adev)?, + api: NovaCoreApi::handle(adev)?, }; // SAFETY: `reg` is stored in `Nova` and dropped when the driver is unbound; it is // never forgotten.
diff --git a/drivers/gpu/drm/nova/file.rs b/drivers/gpu/drm/nova/file.rs
index e1223a29f8b1..798b14f33e20 100644
--- a/drivers/gpu/drm/nova/file.rs
+++ b/drivers/gpu/drm/nova/file.rs@@ -32,13 +32,15 @@ impl GpuInfo { fn new(reg_data: &DrmRegData<'_>) -> Self { - Self(uapi::drm_nova_gpu_info { - architecture: reg_data.api.architecture(), - implementation: reg_data.api.implementation(), - vram_size: reg_data.api.vram_size(), - gpu_name: reg_data.api.gpu_name(), - gpu_short_name: reg_data.api.gpu_short_name(), - gpu_gid: reg_data.api.gpu_gid(), + reg_data.api.with(|api| { + Self(uapi::drm_nova_gpu_info { + architecture: api.architecture(), + implementation: api.implementation(), + vram_size: api.vram_size(), + gpu_name: api.gpu_name(), + gpu_short_name: api.gpu_short_name(), + gpu_gid: api.gpu_gid(), + }) }) } }
@@ -74,7 +76,7 @@ pub(crate) fn get_param( _file: &drm::File<File>, ) -> Result<u32> { let value = match getparam.param as u32 { - uapi::NOVA_GETPARAM_VRAM_BAR_SIZE => reg_data.api.bar1_size()?, + uapi::NOVA_GETPARAM_VRAM_BAR_SIZE => reg_data.api.with(|api| api.bar1_size())?, _ => return Err(EINVAL), };
diff --git a/drivers/gpu/nova-core/api.rs b/drivers/gpu/nova-core/api.rs
index ad4b62db1e5f..c9ae48d278af 100644
--- a/drivers/gpu/nova-core/api.rs
+++ b/drivers/gpu/nova-core/api.rs@@ -10,7 +10,7 @@ device::Bound, pci, prelude::*, - types::CovariantForLt, // + types::ForLt, // }; use crate::gpu::{
@@ -39,10 +39,9 @@ impl NovaCoreApi<'_> { *self.gpu.gsp_static_info.gpu_gid() } - /// Obtain a [`NovaCoreApi`] handle from an auxiliary device registered - /// by nova-core. - pub fn of(adev: &auxiliary::Device<Bound>) -> Result<Pin<&NovaCoreApi<'_>>> { - adev.registration_data::<CovariantForLt!(NovaCoreApi<'_>)>() + /// Obtain a [`NovaCoreApiHandle`] from an auxiliary device registered by nova-core. + pub fn handle(adev: &auxiliary::Device<Bound>) -> Result<NovaCoreApiHandle<'_>> { + NovaCoreApiHandle::of(adev) } /// Returns the architecture identifier of this GPU.
@@ -66,3 +65,22 @@ pub fn vram_size(&self) -> u64 { self.gpu.gsp_static_info.vram_size() } } + +/// Closure-based API handle for invariant registration data types. +pub struct NovaCoreApiHandle<'a> { + adev: &'a auxiliary::Device<Bound>, +} + +impl<'a> NovaCoreApiHandle<'a> { + fn of(adev: &'a auxiliary::Device<Bound>) -> Result<Self> { + adev.registration_data_with::<ForLt!(NovaCoreApi<'_>), ()>(|_| ())?; + Ok(Self { adev }) + } + + /// Access the [`NovaCoreApi`] through a closure. + pub fn with<R>(&self, f: impl for<'b> FnOnce(Pin<&'b NovaCoreApi<'b>>) -> R) -> R { + self.adev + .registration_data_with::<ForLt!(NovaCoreApi<'_>), R>(f) + .expect("TypeId was validated in NovaCoreApiHandle::of()") + } +}
diff --git a/drivers/gpu/nova-core/driver.rs b/drivers/gpu/nova-core/driver.rs
index 4d3c18d6a733..025ba2869d6c 100644
--- a/drivers/gpu/nova-core/driver.rs
+++ b/drivers/gpu/nova-core/driver.rs@@ -15,7 +15,7 @@ Atomic, Relaxed, // }, - types::CovariantForLt, + types::ForLt, }; use crate::{
@@ -29,7 +29,7 @@ #[pin_data] pub(crate) struct NovaCore<'bound> { #[allow(clippy::type_complexity)] - _reg: auxiliary::Registration<'bound, CovariantForLt!(NovaCoreApi<'_>)>, + _reg: auxiliary::Registration<'bound, ForLt!(NovaCoreApi<'_>)>, #[pin] pub(crate) gpu: Gpu<'bound>, bar: pci::Bar<'bound, BAR0_SIZE>,