mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git
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Now that IoMem is lifetime-parameterized, use it directly in probe rather than wrapping it in Devres and Arc. The I/O memory mapping is only used during probe and not stored in driver data, so device-managed revocation is unnecessary. This removes the Devres access(dev) pattern from issue_soft_reset(), GpuInfo::new(), and l2_power_on(), simplifying register access. Reviewed-by: Eliot Courtney <ecourtney@nvidia.com> Reviewed-by: Alexandre Courbot <acourbot@nvidia.com> Signed-off-by: Danilo Krummrich <dakr@kernel.org> Reviewed-by: Boris Brezillon <boris.brezillon@collabora.com> Tested-by: Deborah Brouwer <deborah.brouwer@collabora.com> Link: https://patch.msgid.link/20260529000106.2257996-3-dakr@kernel.org Signed-off-by: Alice Ryhl <aliceryhl@google.com>
176 lines
5.1 KiB
Rust
176 lines
5.1 KiB
Rust
// SPDX-License-Identifier: GPL-2.0 or MIT
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use core::ops::{
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Deref,
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DerefMut, //
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};
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use kernel::{
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device::{
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Bound,
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Device, //
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},
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io::{
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poll,
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register::Array,
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Io, //
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},
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prelude::*,
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time::Delta,
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transmute::AsBytes,
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uapi, //
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};
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use crate::{
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driver::IoMem,
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regs::{
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gpu_control::*,
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join_u64, //
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}, //
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};
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/// Struct containing information that can be queried by userspace. This is read from
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/// the GPU's registers.
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///
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/// # Invariants
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///
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/// - The layout of this struct is identical to the C `struct drm_panthor_gpu_info`.
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#[repr(transparent)]
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#[derive(Clone, Copy)]
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pub(crate) struct GpuInfo(pub(crate) uapi::drm_panthor_gpu_info);
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impl GpuInfo {
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pub(crate) fn new(io: &IoMem<'_>) -> Self {
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Self(uapi::drm_panthor_gpu_info {
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gpu_id: io.read(GPU_ID).into_raw(),
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gpu_rev: io.read(REVIDR).into_raw(),
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csf_id: io.read(CSF_ID).into_raw(),
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l2_features: io.read(L2_FEATURES).into_raw(),
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tiler_features: io.read(TILER_FEATURES).into_raw(),
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mem_features: io.read(MEM_FEATURES).into_raw(),
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mmu_features: io.read(MMU_FEATURES).into_raw(),
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thread_features: io.read(THREAD_FEATURES).into_raw(),
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max_threads: io.read(THREAD_MAX_THREADS).into_raw(),
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thread_max_workgroup_size: io.read(THREAD_MAX_WORKGROUP_SIZE).into_raw(),
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thread_max_barrier_size: io.read(THREAD_MAX_BARRIER_SIZE).into_raw(),
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coherency_features: io.read(COHERENCY_FEATURES).into_raw(),
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texture_features: [
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io.read(TEXTURE_FEATURES::at(0)).supported_formats().get(),
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io.read(TEXTURE_FEATURES::at(1)).supported_formats().get(),
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io.read(TEXTURE_FEATURES::at(2)).supported_formats().get(),
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io.read(TEXTURE_FEATURES::at(3)).supported_formats().get(),
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],
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as_present: io.read(AS_PRESENT).into_raw(),
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selected_coherency: uapi::drm_panthor_gpu_coherency_DRM_PANTHOR_GPU_COHERENCY_NONE,
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shader_present: join_u64(
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io.read(SHADER_PRESENT_LO).into_raw(),
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io.read(SHADER_PRESENT_HI).into_raw(),
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),
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l2_present: join_u64(
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io.read(L2_PRESENT_LO).into_raw(),
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io.read(L2_PRESENT_HI).into_raw(),
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),
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tiler_present: join_u64(
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io.read(TILER_PRESENT_LO).into_raw(),
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io.read(TILER_PRESENT_HI).into_raw(),
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),
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core_features: io.read(CORE_FEATURES).into_raw(),
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// Padding must be zero.
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pad: 0,
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//GPU_FEATURES register is not available; it was introduced in arch 11.x.
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gpu_features: 0,
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})
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}
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pub(crate) fn log(&self, dev: &Device<Bound>) {
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let gpu_id = GPU_ID::from_raw(self.gpu_id);
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let model_name = if let Some(model) = GPU_MODELS.iter().find(|&f| {
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f.arch_major == gpu_id.arch_major().get() && f.prod_major == gpu_id.prod_major().get()
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}) {
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model.name
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} else {
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"unknown"
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};
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dev_info!(
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dev,
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"mali-{} GPU_ID 0x{:x} major 0x{:x} minor 0x{:x} status 0x{:x}",
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model_name,
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gpu_id.into_raw(),
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gpu_id.ver_major().get(),
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gpu_id.ver_minor().get(),
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gpu_id.ver_status().get()
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);
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dev_info!(
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dev,
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"Features: L2:{:#x} Tiler:{:#x} Mem:{:#x} MMU:{:#x} AS:{:#x}",
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self.l2_features,
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self.tiler_features,
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self.mem_features,
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self.mmu_features,
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self.as_present,
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);
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dev_info!(
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dev,
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"shader_present=0x{:016x} l2_present=0x{:016x} tiler_present=0x{:016x}",
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self.shader_present,
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self.l2_present,
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self.tiler_present,
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);
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}
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}
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impl Deref for GpuInfo {
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type Target = uapi::drm_panthor_gpu_info;
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fn deref(&self) -> &Self::Target {
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&self.0
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}
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}
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impl DerefMut for GpuInfo {
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fn deref_mut(&mut self) -> &mut Self::Target {
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&mut self.0
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}
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}
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// SAFETY: `GpuInfo`'s invariant guarantees that it is the same type that is
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// already exposed to userspace by the C driver. This implies that it fulfills
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// the requirements for `AsBytes`.
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//
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// This means:
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//
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// - No implicit padding,
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// - No kernel pointers,
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// - No interior mutability.
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unsafe impl AsBytes for GpuInfo {}
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struct GpuModels {
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name: &'static str,
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arch_major: u32,
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prod_major: u32,
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}
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const GPU_MODELS: [GpuModels; 1] = [GpuModels {
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name: "g610",
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arch_major: 10,
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prod_major: 7,
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}];
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/// Powers on the l2 block.
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pub(crate) fn l2_power_on(dev: &Device, io: &IoMem<'_>) -> Result {
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io.write_reg(L2_PWRON_LO::zeroed().with_const_request::<1>());
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poll::read_poll_timeout(
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|| Ok(io.read(L2_READY_LO)),
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|status| status.ready() == 1,
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Delta::from_millis(1),
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Delta::from_millis(100),
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)
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.inspect_err(|_| dev_err!(dev, "Failed to power on the GPU."))?;
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Ok(())
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}
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