Read PHY_VDR_0_CONFIG to check if there is any change in the register and
decide based on that if P2P sequence to change the data rate of LT PHY
are required or not. This scenario only happens if the requested mode
uses 1.62Gbps with DP mode since LT PHY defaults to this mode if
any other mode is requested we need to follow the whole sequence.
Signed-off-by: Suraj Kandpal <suraj.kandpal@intel.com>
Reviewed-by: Arun R Murthy <arun.r.murthy@intel.com>
Link: https://patch.msgid.link/20251101032513.4171255-8-suraj.kandpal@intel.com
It is expected that VFs activity will be monitored and in some
cases admin might want to silence specific VF without killing
the VM where it was attached.
Add write-only attribute to stop GuC scheduling at VFs level.
/sys/bus/pci/drivers/xe/BDF/
├── sriov_admin/
├── vf1/
│ └── stop [WO] bool
├── vf2/
│ └── stop [WO] bool
Writing "1" or "y" (or whatever is recognized by the strtobool()
function) to this file will trigger the change of the VF state
to STOP (GuC will stop servicing the VF). To go back to a READY
state (to allow GuC to service this VF again) the VF FLR must be
triggered (which can be done by writing 1 to device/reset file).
Signed-off-by: Michal Wajdeczko <michal.wajdeczko@intel.com>
Cc: Lucas De Marchi <lucas.demarchi@intel.com>
Cc: Rodrigo Vivi <rodrigo.vivi@intel.com>
Reviewed-by: Piotr Piórkowski <piotr.piorkowski@intel.com>
Reviewed-by: Lucas De Marchi <lucas.demarchi@intel.com>
Link: https://patch.msgid.link/20251030222348.186658-17-michal.wajdeczko@intel.com
We have just added bulk change of the scheduling priority for all
VFs and PF, but that only allow to select LOW and NORMAL priority.
Add read-write attribute under PF to allow changing its priority
without impacting other VFs priority settings.
For completeness also add read-only attributes under VFs, to show
currently selected priority levels used by the VFs.
/sys/bus/pci/drivers/xe/BDF/
├── sriov_admin/
├── pf/
│ └── profile
│ └── sched_priority [RW] low, normal, high
├── vf1/
│ └── profile
│ └── sched_priority [RO] low, normal
Writing "high" to the PF read-write attribute will change PF
priority on all tiles/GTs to HIGH (schedule function in the next
time-slice after current one completes and it has work). Writing
"low" or "normal" to change priority to LOW/NORMAL is supported.
When read, those files will display the current and available
scheduling priorities. The currently active priority level will
be enclosed in square brackets, default output will be like:
$ grep . -h sriov_admin/{pf,vf1,vf2}/profile/sched_priority
[low] normal high
[low] normal
[low] normal
Signed-off-by: Michal Wajdeczko <michal.wajdeczko@intel.com>
Cc: Lucas De Marchi <lucas.demarchi@intel.com>
Cc: Rodrigo Vivi <rodrigo.vivi@intel.com>
Acked-by: Rodrigo Vivi <rodrigo.vivi@intel.com>
Reviewed-by: Lucas De Marchi <lucas.demarchi@intel.com>
Link: https://patch.msgid.link/20251030222348.186658-14-michal.wajdeczko@intel.com
It is expected to be a common practice to configure the same level
of scheduling priority across all VFs and PF (at least as starting
point). Due to current GuC FW limitations it is also the only way
to change VFs priority.
Add write-only sysfs attribute that will apply required priority
level to all VFs and PF at once.
/sys/bus/pci/drivers/xe/BDF/
├── sriov_admin/
├── .bulk_profile
│ └── sched_priority [WO] low, normal
Writing "low" to this write-only attribute will change PF and
VFs scheduling priority on all tiles/GTs to LOW (function will
be scheduled only if it has work submitted). Similarly, writing
"normal" will change functions priority to NORMAL (functions will
be scheduled irrespective of whether there is a work or not).
Signed-off-by: Michal Wajdeczko <michal.wajdeczko@intel.com>
Cc: Lucas De Marchi <lucas.demarchi@intel.com>
Cc: Rodrigo Vivi <rodrigo.vivi@intel.com>
Acked-by: Rodrigo Vivi <rodrigo.vivi@intel.com>
Reviewed-by: Lucas De Marchi <lucas.demarchi@intel.com>
Link: https://patch.msgid.link/20251030222348.186658-13-michal.wajdeczko@intel.com
We already have function to configure PF (or VF) scheduling priority
on a single GT, but we also need function that will cover all tiles
and GTs.
However, due to the current GuC FW limitation, we can't always rely
on per-GT function as it actually only works for the PF case. The
only way to change VFs scheduling priority is to use 'sched_if_idle'
policy KLV that will change priorities for all VFs (and the PF).
We will use these new functions in the upcoming patches.
Signed-off-by: Michal Wajdeczko <michal.wajdeczko@intel.com>
Reviewed-by: Piotr Piórkowski <piotr.piorkowski@intel.com>
Link: https://patch.msgid.link/20251030222348.186658-12-michal.wajdeczko@intel.com
On current platforms, in SR-IOV virtualization, the GPU is shared
between VFs on the time-slice basis. The 'execution quantum' (EQ)
and 'preemption timeout' (PT) are two main scheduling parameters
that could be set individually per each VF.
Add EQ/PT read-write attributes for the PF and all VFs.
By exposing those two parameters over sysfs, the admin can change
their default values (infinity) and let the GuC scheduler enforce
that settings.
/sys/bus/pci/drivers/xe/BDF/
├── sriov_admin/
├── pf/
│ └── profile
│ ├── exec_quantum_ms [RW] unsigned integer
│ └── preempt_timeout_us [RW] unsigned integer
├── vf1/
│ └── profile
│ ├── exec_quantum_ms [RW] unsigned integer
│ └── preempt_timeout_us [RW] unsigned integer
Writing 0 to these files will set infinity EQ/PT for the VF on all
tiles/GTs. This is a default value. Writing non-zero integers to
these files will change EQ/PT to new value (in their respective
units: msec or usec).
Reading from these files will return EQ/PT as previously set on
all tiles/GTs. In case of inconsistent values detected, due to
errors or low-level configuration done using debugfs, -EUCLEAN
error will be returned.
Signed-off-by: Michal Wajdeczko <michal.wajdeczko@intel.com>
Cc: Lucas De Marchi <lucas.demarchi@intel.com>
Cc: Rodrigo Vivi <rodrigo.vivi@intel.com>
Acked-by: Rodrigo Vivi <rodrigo.vivi@intel.com>
Reviewed-by: Piotr Piórkowski <piotr.piorkowski@intel.com>
Reviewed-by: Lucas De Marchi <lucas.demarchi@intel.com>
Link: https://patch.msgid.link/20251030222348.186658-6-michal.wajdeczko@intel.com
We already have some SR-IOV specific knobs exposed as debugfs
files to allow low level tuning of the SR-IOV configurations,
but those files are mainly for the use by the developers and
debugfs might not be available on the production builds.
Start building dedicated sysfs sub-tree under xe device, where
in upcoming patches we will add selected attributes that will
help provision and manage PF and all VFs:
/sys/bus/pci/drivers/xe/BDF/
├── sriov_admin/
├── pf/
├── vf1/
├── vf2/
:
└── vfN/
Add all required data types and helper macros that will be used
by upcoming patches to define actual attributes.
Signed-off-by: Michal Wajdeczko <michal.wajdeczko@intel.com>
Cc: Lucas De Marchi <lucas.demarchi@intel.com>
Cc: Rodrigo Vivi <rodrigo.vivi@intel.com>
Acked-by: Rodrigo Vivi <rodrigo.vivi@intel.com>
Reviewed-by: Lucas De Marchi <lucas.demarchi@intel.com>
Link: https://patch.msgid.link/20251030222348.186658-2-michal.wajdeczko@intel.com
Driver Changes:
More xe3p support (Harish, Brian, Balasubramani, Matt Roper)
Make panic support work on VRAM for display (Maarten)
Fix stolen size check (Shuicheng)
xe_pci_test update (Gustavo)
VF migration updates (Tomasz)
A couple of fixes around allocation and PM references (Matt Brost)
Migration update for the MEM_COPY instruction (Matt Auld)
Initial CRI support (Balasubramani, Matt Roper)
Use SVM range helpers in PT layer (Matt Brost)
Drop MAX_GT_TYPE_CHARS constant (Matt Roper)
Fix spelling and typos (Sanjay)
Fix VF FLR synchronization between all GTs (Michal)
Add a Workaround (Nitin)
Access VF's register using dedicated MMIO view (Michal)
Signed-off-by: Simona Vetter <simona.vetter@ffwll.ch>
From: Thomas Hellstrom <thomas.hellstrom@linux.intel.com>
Link: https://patch.msgid.link/aQCl9uJxN6CWJ8Vg@fedora
Enhance the PAT table dump by marking reserved entries with an
asterisk (*) for improved readability and debugging.
V2:
Added a note in the "PAT table" header explaining the meaning of
the asterisk(*) to improve clarity for readers. (Matt Roper)
V3:
Introduced a valid field in struct xe_pat_table_entry to
explicitly track whether an entry is valid or reserved, avoiding
reliance on coh_mode == 0. (Matt Roper)
Signed-off-by: Xin Wang <x.wang@intel.com>
Reviewed-by: Matt Roper <matthew.d.roper@intel.com>
Link: https://patch.msgid.link/20251030221734.1058350-1-x.wang@intel.com
Signed-off-by: Matt Roper <matthew.d.roper@intel.com>
It was reported that Weston stops at an assert, which checks that the
page flip event timestamp is the same or newer than the previous
timestamp:
weston_output_finish_frame: Assertion `timespec_sub_to_nsec(stamp, &output->frame_time) >= 0' failed.
With manual tests, I can see that when I enable the CRTC, I get a page
flip event with a timestamp of 0. Tracking this down led to
drm_reset_vblank_timestamp() which does "t_vblank = 0" if
"high-precision query" is not available.
TI DSS does not have any hardware timestamping, and thus the default
ktime_get() is used in the DRM framework to get the vblank timestamp,
and ktime_get() is not "high precision" here.
It is not quite clear why the framework behaves this way, but I assume
the idea is that drm_crtc_vblank_on(), which calls
drm_reset_vblank_timestamp(), can be called at any time, and thus
ktime_get() wouldn't give a good timestamp. And, the idea is that the
driver would wait until next vblank after the CRTC enable, and then we
could get a good timestamp. This is hinted in the comment: "reinitialize
delayed at next vblank interrupt and assign 0 for now".
I think that makes sense. However, when we enable the CRTC in TI DSS,
i.e. we write the enable bit to the hardware, that's the exact moment
when the "vblank cycle" starts. It is the zero point in the cycle, and
thus ktime_get() would give a good timestamp.
I am not sure if this is applicable to other hardware, and if so, how
should it be solved in the framework. So, let's fix this in the tidss
driver at least for now.
This patch updates the vblank->time manually to ktime_get() just before
sending the vblank event, and we enable the crtc just before calling
ktime_get(). To get even more exact timing, the dispc_vp_enable() is
moved inside the event_lock spinlock.
With this, we get a proper timestamp for the page flip event from
enabling the CRTC, and Weston is happy.
Reviewed-by: Devarsh Thakkar <devarsht@ti.com>
Link: https://patch.msgid.link/20250905-tidss-fix-timestamp-v1-2-c2aedf31e2c9@ideasonboard.com
Signed-off-by: Tomi Valkeinen <tomi.valkeinen@ideasonboard.com>
Closes: https://e2e.ti.com/support/processors-group/processors/f/processors-forum/1553964/processor-sdk-am62x-weston-fails-to-wake-from-idle-time-sleep-restarts-after-sigterm
Closes: https://e2e.ti.com/support/processors-group/processors/f/processors-forum/1416342/am625-am625-doesn-t-wake-up-from-standy-when-idle-time-is-configured-in-weston-ini
tidss_crtc.c calls dispc_vp_prepare() and dispc_vp_enable() in that
order, next to each other. dispc_vp_prepare() does preparations for
enabling the crtc, by writing some registers, and dispc_vp_enable() does
more preparations. As the last thing, dispc_vp_enable() enables the CRTC
by writing the enable bit.
There might have been a reason at some point in the history for this
split, but I can't find any point to it. They also do a bit of
overlapping work: both call dispc_vp_find_bus_fmt(). They could as well
be a single function.
But instead of combining them, this patch moves everything from
dispc_vp_enable() to dispc_vp_prepare(), except the actual CRTC enable
bit write. The reason for this is that unlike all the preparatory
register writes, CRTC enable has an immediate effect, starting the
timing generator and the CRTC as a whole. Thus it may be important to
time the enable just right (as we do in the next patch).
No functional changes.
Reviewed-by: Devarsh Thakkar <devarsht@ti.com>
Link: https://patch.msgid.link/20250905-tidss-fix-timestamp-v1-1-c2aedf31e2c9@ideasonboard.com
Signed-off-by: Tomi Valkeinen <tomi.valkeinen@ideasonboard.com>
The assembled developers agreed at the X.Org Developers Conference 2025
that the hack added for amdgpu in drm_sched_fini() shall be removed. It
shouldn't be needed by amdgpu anymore.
As it's unclear whether all drivers really follow the life time rule of
entities having to be torn down before their scheduler, it is reasonable
to warn for a while before removing the hack.
Add a warning in drm_sched_fini() that fires if an entity is still
active.
Acked-by: Pierre-Eric Pelloux-Prayer <pierre-eric.pelloux-prayer@amd.com>
Signed-off-by: Philipp Stanner <phasta@kernel.org>
Link: https://patch.msgid.link/20251023123429.139848-2-phasta@kernel.org
There is a hw restriction that we could enable the FBC for FP16
formats only if the pixel normalization block is enabled. Hence
enable the pixel normalizer block with normalzation factor as
1.0 for the supported FP16 formats to get the FBC enabled. Two
existing helper function definitions are moved up to avoid the
forward declarations as part of this patch as well.
v2: sw/hw state differentiation on handling pixel normalizer (Jani)
Bspec: 69863, 68881
Cc: Shekhar Chauhan <shekhar.chauhan@intel.com>
Signed-off-by: Vinod Govindapillai <vinod.govindapillai@intel.com>
Signed-off-by: Gustavo Sousa <gustavo.sousa@intel.com>
Reviewed-by: Uma Shankar <uma.shankar@intel.com>
Link: https://patch.msgid.link/20251027134001.325064-5-vinod.govindapillai@intel.com