mirror of
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-08-28 14:34:17 -04:00
Pull drm updates from Dave Airlie:
"Highlights:
- dmemcg eviction support is good for low VRAM things like Steam
Machine
- AMD adds gfx6-8 modifier support for older GPUs that enables a
bunch of wayland stuff
- i915/xe has some new hw support but also a lot of display
refactoring
Everything:
perf:
- export perf_allow_ APIs for xe
udmabuf:
- remove default size limit of 64MB
rust:
- i/o rework (signed tag from driver-core tree)
- add registration guard and registration data
- fix unbounded lifetimes in ioctl handler args
- fix a drm_dev_register race
- gem_shmem: add DmaResvGuard helper
- gpuvm: require send/sync for driver data
- implement send/sync for GpuVaAlloc and GpuVmBo
- add SmContext lifetime
- rename dma_handle to dma_address
- change pci_sriov_get_totalvfs return to unsigned int
core:
- create drm_of_get_panel_orientation
- send per-connector hotplug events
- add thunderbolt UBHR tunneling support
connector:
- add color format property
dmem:
- introduce a peak file
- accept one region per limit
- add dmemcg support for eviction
gpusvm:
- reorg code to give drivers more flexibility
atomic:
- add create_state callback and helper
- add documentation on atomic commit lifetime
buddy:
- add per-order free
- add used block scoreboard
- fix UAF
- test buffer clearance on resume
- add phys_addr->block helper
gem:
- drop DRIVER_GEM_GPUVA flag
ttm:
- be more aggressive allocating below protection limit
sched:
- add test suite for concurrent job submissions
hdmi:
- hook the color format property in helpers
mipi-dsi:
- add MIPI_DSI_MODE_DSC_ALL_SLICES_IN_PKT
bridge:
- add atomic create callbacks
- drop atomic reset
- display-connector: don't autoenable HPD IRQ
- trigger initial HPD for DP
- ti-sn65dsi83: remove NO_HFP and NO_HBP mode flags
- analogix_dp: switch to DP link training helpers
dp:
- add support for DSC max delta BPP
edid:
- parse panel type from DisplayID 2.x Display Parameters
sysfb:
- improve panel, stride, framebuffer size validation
panel:
- implement ref counting for struct drm_panel
- himax-hx83121a: add backlight regulator support
- novatek-nt36672a: Inline panel init sequences
- visionox-vtdr6130: enable DSC
- novatek-nt37801: Use mipi_dsi_*_multi() functions
- samsung-s6d16d0: Fix prepare error handling
- support Novatek NT36536 plus DT bindings
- sofef00: fix backlight updates
- osd101t2587: use mipi_dsi_*_multi interface
- panel-edp: adjust timing for AUO displays
- panel-lvds: support Opto Logic SCX1001511GGC49
- panel-simple: support Kyocera tcg070wvlq
- panel-edp: quirks
- AUO B116XAT04.3, CMN N116BCP-EA2, CSW MNB601LS1-8
- BOE NV116WH2-M30, BOE NT116WHM-N21, BOE NV116FH1-M31
- BOE NV116FH1-M30, NV140FHM-N5B, TM156VDXP25
- BOE NE160QDM-NY1, MB116AS01
- new:
- Samsung ATNA40HQ08-0, Anbernic TD4310
- Chipone ICNA35XX, Ilitek ILI9488
- Ilitek ILI7807S, Renesas R63419
- MNE001BS6-2, MNF601BS4-1, Sharp LQ120P1JX51
virtio:
- add support for save/restore virtio_gpu_objects
- abort vq wait on device removal
amdgpu:
- add color format DRM property
- initial compute pipe reset support
- add GFX 6-8 modifier support
- initial DCN 6.0.0 support
- dmemcg eviction support
- improved boundary checking for bios parsing
- RAS updates and rework
- VCN secure submission fixes
- 8K panel fix
- Display KUNIT tests
- parse panel type from DisplayID
- Align IP discovery to pci device lifetime
- SOC15 register macro cleanups
- UVD memory placement fixes
- GFX9 mode2 reset fixes
- drop unnecessary BUG/BUG_ON
- GFX8 soft reset rework
- enable soft reset on GFX8
- PSP/SMU 15.0.9 update
- VI ASPM fix
- userq fixes
- amdgpu_vm_get_task_info_pasid lifetime fix
- DC CACP support
- change system_unbound_wq with system_dfl_wq
- Loosen VFCT bios parsing to deal with pci=realloc
- SI/SMU7 AC/DC switch fix
- VM fence handling fix
- GEM close optimisation
- Apple Studio Display fixes
- DC FRL fixes
amdkfd:
- initial compute pipe reset support
- allow applications to opt out of sigbus on fatal errors
- improve CRIU boundary checks
- MQD handling rework
- move TBA/TMA from system to device memory
- avoid topology-lock in kfd_mmap
- SVM eviction fixes
radeon:
- fix unset CONFIG_ACPI build
i915:
- Novalake (NVL display version 35) timing generator enabling
- NVL DC3CO enabling
- enable UBHR link rates on thunderbolt tunnels
- Reduce Xe3+ PM demand peak bandwidth
- enable pipe DMC error interrupts for display 30+
- add kunit tests for DP link config selection
- refactor and document DP link recovery
- i915/xe driver display probe/remove/suspend/resume/shutdown cleanup
and unification
- i915/xe display runtime PM unified
- Break i915 and xe panic dependency on struct intel_framebuffer
- Streamline Pre/Post-CSC LUT loops
- drop TGL DC3DO support
- CDCLK santization
- fix HDMI scrambling enable
- fix phys bo pread/pwrite with offset
- add missing nospec on parallel submit slot
- fix some NULL derefs
xe:
- drop force_execlist module param
- gate observation streams with perf_allow_cpu
- skip FORCE_WC and vm_bound check for external dma-bufs
- dmemcg eviction support
- remove unused NVL-S GuC
- TLB invalidation improvements
- NVL-S updated PCI-IDs and w/a
- madvise: optimise invalidation path
- fix infinite gt-reset loop in timeout recovery
- update TTM device benefical_order
- wait on external BO kernel fences in exec ioctl
- add/use more KLV helpers
- sriov: disable display in admin only PF mode
- add RAS GPU health indicator
- optimise TTM populate for DONTNEED BO
- drop force_probe for NVL-s
- add debugfs for pcode info
amdxdna:
- disable device buffer export
nova:
- build nova-core/nova-drm from drivers/gpu
- export nova-core rust symbols (workaround)
- GSP boot process consolidation
- Boot GSP with vGPU enabled
- TLV firmware image format support
- Hopper/Blackwell fixes and cleanups
- I/O projection adoption
tyr:
- firmware loading and MCU boot
- add generic slot manager + MMU
- GPU VM support ARM64 LPAE page tables
- add kernel buffer object for internal allocations
- add parser for Mali CSF
- add MCU booting
nouveau:
- race fixes
- check instmem iomapping at first use
- add dmemcg support
- expose NVDEC channels
- add scanline position/head state support for GSP
qxl:
- convert simple encoder to regular
ethosu:
- add perf counter support
etnaviv:
- force flush on power register ops
msm:
- support DSC configuration with slice_per_pkt > 1
mxsfb:
- fix disable sequence
panthor:
- support sparse mappings
rockchip:
- switch away from simple helpers
- support YUV background color
- fix layer config timeout
- add edp support for rk3576
- add batch command submission function
rocket:
- error handling and NULL ptr deref fixes
sun4i:
- switch away from simple helpers
imagination:
- mark BXM-4-64 MC1 as support
host1x:
- support tegra264
tegra:
- add DSI for tegra 20/30
v3d:
- reduce PM runtime autosuspend delay
- scheduler fixes and refactoring
- deprecate v3d 3.3 and 4.1
- validate CPU job query boundaries
hibmc:
- improve plane format handling
- switch to gem shmem
mediatek:
- cec: correct compat for mt7623-8167?
exynos:
- remove simple dependency
- add error handling to encoder paths
- take i2c adapter module reference"
* tag 'drm-next-2026-08-20' of https://gitlab.freedesktop.org/drm/kernel: (2074 commits)
drm/xe/mcr: Take vcs1/vecs1 into account for first media slice
drm/xe: Fix a bug in pc_adjust_freq_bounds()
drm/xe: Fix xe_device_probe() failure
drm/xe/drm_ras: Move has_drm_ras check to drm_ras layer
drm/xe/ras: Fix boot-time ras error processing
drm/amd/display: make DC_RUN_WITH_PREEMPTION_ENABLED misuse a build error
drm/amd/pm: silence uninitialized variable warnings
drm/amdgpu: skip BOs being torn down during GTT recovery
drm/amdgpu: Reject UVD message with invalid number of h265 refs
drm/amdgpu: keep PRT mappings off the vm_bo state lists
drm/amdgpu: fix nbif 6.3.1 l1 low power not functional
drm/amd/display: fix BT.2020 YCbCr output CSC matrices for DCE
drm/amd/display: fix BT.2020 YCbCr limited output CSC matrix
drm/amdgpu: Implement insert_end for VCE 3
drm/amdgpu: Fix UVD min buffer sizes
drm/amdgpu: Fix UVD decode image min size calculation
drm/amdgpu: Fix UVD dpb min size calculation for H264
drm/amdgpu: Reject UVD message with dimensions above 4096
drm/amdgpu: check ASPM on the dGPU host link
drm/radeon: fix autosuspend cleanup during teardown
...
417 lines
12 KiB
Rust
417 lines
12 KiB
Rust
// SPDX-License-Identifier: GPL-2.0
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use core::ops::Range;
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use kernel::{
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device,
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dma::Device,
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fmt,
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io::Io,
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num::Bounded,
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pci,
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prelude::*,
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sizes::SizeConstants, //
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};
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use crate::{
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bounded_enum,
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driver::Bar0,
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falcon::{
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gsp::Gsp as GspFalcon,
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sec2::Sec2 as Sec2Falcon,
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Falcon, //
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},
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fb::SysmemFlush,
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fsp::Fsp,
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gsp::{
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self,
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commands::GetGspStaticInfoReply,
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Gsp,
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GspBootContext, //
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},
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regs,
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vgpu::VgpuManager, //
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};
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mod hal;
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macro_rules! define_chipset {
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({ $($variant:ident = $value:expr),* $(,)* }) =>
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{
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/// Enum representation of the GPU chipset.
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#[derive(fmt::Debug, Copy, Clone, PartialOrd, Ord, PartialEq, Eq)]
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pub(crate) enum Chipset {
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$($variant = $value),*,
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}
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impl Chipset {
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pub(crate) const ALL: &'static [Chipset] = &[
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$( Chipset::$variant, )*
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];
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::kernel::macros::paste!(
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/// Returns the name of this chipset, in lowercase.
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///
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/// # Examples
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///
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/// ```
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/// let chipset = Chipset::GA102;
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/// assert_eq!(chipset.name(), "ga102");
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/// ```
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pub(crate) const fn name(&self) -> &'static str {
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match *self {
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$(
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Chipset::$variant => stringify!([<$variant:lower>]),
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)*
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}
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}
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);
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}
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// TODO[FPRI]: replace with something like derive(FromPrimitive)
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impl TryFrom<u32> for Chipset {
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type Error = kernel::error::Error;
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fn try_from(value: u32) -> Result<Self, Self::Error> {
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match value {
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$( $value => Ok(Chipset::$variant), )*
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_ => Err(ENODEV),
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}
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}
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}
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}
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}
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define_chipset!({
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// Turing
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TU102 = 0x162,
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TU104 = 0x164,
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TU106 = 0x166,
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TU117 = 0x167,
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TU116 = 0x168,
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// Ampere
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GA100 = 0x170,
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GA102 = 0x172,
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GA103 = 0x173,
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GA104 = 0x174,
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GA106 = 0x176,
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GA107 = 0x177,
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// Hopper
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GH100 = 0x180,
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// Ada
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AD102 = 0x192,
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AD103 = 0x193,
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AD104 = 0x194,
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AD106 = 0x196,
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AD107 = 0x197,
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// Blackwell GB10x
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GB100 = 0x1a0,
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GB102 = 0x1a2,
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// Blackwell GB20x
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GB202 = 0x1b2,
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GB203 = 0x1b3,
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GB205 = 0x1b5,
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GB206 = 0x1b6,
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GB207 = 0x1b7,
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});
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impl Chipset {
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pub(crate) const fn arch(self) -> Architecture {
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match self {
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Self::TU102 | Self::TU104 | Self::TU106 | Self::TU117 | Self::TU116 => {
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Architecture::Turing
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}
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Self::GA100 | Self::GA102 | Self::GA103 | Self::GA104 | Self::GA106 | Self::GA107 => {
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Architecture::Ampere
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}
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Self::GH100 => Architecture::Hopper,
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Self::AD102 | Self::AD103 | Self::AD104 | Self::AD106 | Self::AD107 => {
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Architecture::Ada
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}
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Self::GB100 | Self::GB102 => Architecture::BlackwellGB10x,
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Self::GB202 | Self::GB203 | Self::GB205 | Self::GB206 | Self::GB207 => {
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Architecture::BlackwellGB20x
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}
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}
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}
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/// Returns the address range of the PCI config mirror space.
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pub(crate) fn pci_config_mirror_range(self) -> Range<u32> {
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hal::gpu_hal(self).pci_config_mirror_range()
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}
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}
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// TODO
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//
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// The resulting strings are used to generate firmware paths, hence the
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// generated strings have to be stable.
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//
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// Hence, replace with something like strum_macros derive(Display).
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//
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// For now, redirect to fmt::Debug for convenience.
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impl fmt::Display for Chipset {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(f, "{self:?}")
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}
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}
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bounded_enum! {
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/// Enum representation of the GPU generation.
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#[derive(fmt::Debug, Copy, Clone)]
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pub(crate) enum Architecture with TryFrom<Bounded<u32, 6>> {
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Turing = 0x16,
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Ampere = 0x17,
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Hopper = 0x18,
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Ada = 0x19,
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BlackwellGB10x = 0x1a,
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BlackwellGB20x = 0x1b,
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}
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}
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#[derive(Clone, Copy)]
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pub(crate) struct Revision {
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major: Bounded<u8, 4>,
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minor: Bounded<u8, 4>,
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}
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impl From<regs::NV_PMC_BOOT_42> for Revision {
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fn from(boot0: regs::NV_PMC_BOOT_42) -> Self {
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Self {
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major: boot0.major_revision().cast(),
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minor: boot0.minor_revision().cast(),
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}
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}
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}
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impl fmt::Display for Revision {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(f, "{:x}.{:x}", self.major, self.minor)
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}
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}
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/// Structure holding a basic description of the GPU: `Chipset` and `Revision`.
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#[derive(Clone, Copy)]
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pub(crate) struct Spec {
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chipset: Chipset,
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revision: Revision,
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}
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impl Spec {
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fn new(dev: &device::Device, bar: Bar0<'_>) -> Result<Spec> {
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// Some brief notes about boot0 and boot42, in chronological order:
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//
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// NV04 through NV50:
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//
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// Not supported by Nova. boot0 is necessary and sufficient to identify these GPUs.
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// boot42 may not even exist on some of these GPUs.
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//
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// Fermi through Volta:
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//
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// Not supported by Nova. boot0 is still sufficient to identify these GPUs, but boot42
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// is also guaranteed to be both present and accurate.
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//
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// Turing and later:
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//
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// Supported by Nova. Identified by first checking boot0 to ensure that the GPU is not
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// from an earlier (pre-Fermi) era, and then using boot42 to precisely identify the GPU.
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// Somewhere in the Rubin timeframe, boot0 will no longer have space to add new GPU IDs.
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let boot0 = bar.read(regs::NV_PMC_BOOT_0);
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if boot0.is_older_than_fermi() {
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return Err(ENODEV);
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}
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let boot42 = bar.read(regs::NV_PMC_BOOT_42);
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Spec::try_from(boot42).inspect_err(|_| {
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dev_err!(dev, "Unsupported chipset: {}\n", boot42);
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})
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}
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}
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impl TryFrom<regs::NV_PMC_BOOT_42> for Spec {
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type Error = Error;
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fn try_from(boot42: regs::NV_PMC_BOOT_42) -> Result<Self> {
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Ok(Self {
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chipset: boot42.chipset()?,
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revision: boot42.into(),
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})
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}
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}
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impl fmt::Display for Spec {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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f.write_fmt(fmt!(
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"Chipset: {}, Architecture: {:?}, Revision: {}",
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self.chipset,
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self.chipset.arch(),
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self.revision
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))
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}
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}
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/// Self-contained resources to operate and drop the GSP.
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#[pin_data(PinnedDrop)]
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struct GspResources<'gpu> {
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/// Device owning the GPU.
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device: &'gpu pci::Device<device::Bound>,
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/// Details about the chipset.
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spec: Spec,
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/// MMIO mapping of PCI BAR 0.
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bar: Bar0<'gpu>,
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/// GSP falcon instance, used for GSP boot up and cleanup.
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gsp_falcon: Falcon<'gpu, GspFalcon>,
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/// SEC2 falcon instance, used for GSP boot up and cleanup.
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sec2_falcon: Falcon<'gpu, Sec2Falcon>,
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/// FSP instance, if on an arch that supports it.
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// TODO: use different resource types for each boot method, and make the relevant Gsp methods
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// generic against them.
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fsp: Option<Fsp<'gpu>>,
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/// vGPU state detected before GSP boot.
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vgpu: VgpuManager,
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/// GSP runtime data.
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#[pin]
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gsp: Gsp,
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/// GSP unload firmware bundle, if any.
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unload_bundle: Option<gsp::UnloadBundle>,
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}
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/// Structure holding the resources required to operate the GPU.
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#[pin_data]
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pub(crate) struct Gpu<'gpu> {
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spec: Spec,
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/// Static GPU information as provided by the GSP.
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gsp_static_info: GetGspStaticInfoReply,
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/// GSP and its resources.
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#[pin]
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gsp_resources: GspResources<'gpu>,
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/// System memory page required for flushing all pending GPU-side memory writes done through
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/// PCIE into system memory, via sysmembar (A GPU-initiated HW memory-barrier operation).
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///
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/// Must be kept declared *after* `gsp_resources`, as the latter's `PinnedDrop` implementation
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/// requires the sysmem flush page to be in place.
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sysmem_flush: SysmemFlush<'gpu>,
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}
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#[pinned_drop]
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impl PinnedDrop for GspResources<'_> {
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fn drop(self: Pin<&mut Self>) {
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let this = self.project();
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let device = *this.device;
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let bar = *this.bar;
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let bundle = this.unload_bundle.take();
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let _ = this
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.gsp
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.as_ref()
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.get_ref()
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.unload(
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GspBootContext {
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pdev: device,
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bar,
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chipset: this.spec.chipset,
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gsp_falcon: &*this.gsp_falcon,
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sec2_falcon: &*this.sec2_falcon,
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fsp: this.fsp.as_mut(),
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vgpu: &*this.vgpu,
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},
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bundle,
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)
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.inspect_err(|e| dev_err!(device, "failed to unload GSP: {:?}\n", e));
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}
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}
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impl<'gpu> Gpu<'gpu> {
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pub(crate) fn new<'a>(
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pdev: &'gpu pci::Device<device::Core<'a>>,
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bar: Bar0<'gpu>,
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) -> impl PinInit<Self, Error> + use<'gpu, 'a> {
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let dev = pdev.as_ref();
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try_pin_init!(Self {
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spec: Spec::new(dev, bar).inspect(|spec| {
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dev_info!(dev,"NVIDIA ({})\n", spec);
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})?,
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// We must wait for GFW_BOOT completion before doing any significant setup on the GPU.
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_: {
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let hal = hal::gpu_hal(spec.chipset);
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let dma_mask = hal.dma_mask();
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|
|
// SAFETY: `Gpu` owns all DMA allocations for this device, and we are
|
|
// still constructing it, so no concurrent DMA allocations can exist.
|
|
unsafe { pdev.dma_set_mask_and_coherent(dma_mask)? };
|
|
|
|
hal.wait_gfw_boot_completion(bar)
|
|
.inspect_err(|_| dev_err!(dev, "GFW boot did not complete\n"))?;
|
|
},
|
|
|
|
// Initialize this early because `gsp_resources` depends on it.
|
|
sysmem_flush: SysmemFlush::register(dev, bar, spec.chipset)?,
|
|
|
|
gsp_resources <- try_pin_init!(GspResources {
|
|
device: pdev,
|
|
|
|
spec: *spec,
|
|
|
|
bar,
|
|
|
|
gsp_falcon: Falcon::new(
|
|
dev,
|
|
spec.chipset,
|
|
bar
|
|
)
|
|
.inspect(|falcon| falcon.clear_swgen0_intr())?,
|
|
|
|
sec2_falcon: Falcon::new(dev, spec.chipset, bar)?,
|
|
|
|
fsp: Fsp::try_new(dev, bar, spec.chipset)?,
|
|
|
|
vgpu: VgpuManager::new(pdev, spec.chipset, fsp.as_mut()),
|
|
|
|
gsp <- Gsp::new(pdev),
|
|
|
|
// This member must be initialized last, so the `UnloadBundle` can never be dropped
|
|
// from outside of the constructed `GspResources`, ensuring that the unload sequence
|
|
// is properly run in case of failure.
|
|
unload_bundle: gsp.boot(GspBootContext {
|
|
pdev,
|
|
bar,
|
|
chipset: spec.chipset,
|
|
gsp_falcon,
|
|
sec2_falcon,
|
|
fsp: fsp.as_mut(),
|
|
vgpu,
|
|
})?,
|
|
}),
|
|
|
|
gsp_static_info: {
|
|
// Obtain and display basic GPU information.
|
|
let info = gsp_resources.gsp.get_static_info(bar)?;
|
|
match info.gpu_name() {
|
|
Ok(name) => dev_info!(dev, "GPU name: {}\n", name),
|
|
Err(e) => dev_warn!(dev, "GPU name unavailable: {:?}\n", e),
|
|
}
|
|
|
|
if !info.usable_fb_regions.is_empty() {
|
|
dev_dbg!(dev, "Usable FB regions:\n");
|
|
for region in &info.usable_fb_regions {
|
|
dev_dbg!(dev, " - {:#x?}\n", region);
|
|
}
|
|
|
|
dev_dbg!(
|
|
dev,
|
|
"Total usable VRAM: {} MiB\n",
|
|
info.usable_fb_regions.iter().fold(0u64, |res, region| res
|
|
.saturating_add(region.end - region.start))
|
|
/ u64::SZ_1M
|
|
);
|
|
}
|
|
|
|
info
|
|
}
|
|
})
|
|
}
|
|
}
|