Mapping of large buffers to GMMU end up needing many
pages for the PTE tables. Allocating these one by one
can end up being a performance bottleneck, particularly
in the virtualized case.
This is adding the following changes:
- As the TLB invalidation doesn't have access to mem_off,
allow top-level allocation by alloc_cache_direct().
- Define NVGPU_PD_CACHE_SIZE, the allocation size for a new slab
for the PD cache, effectively set to 64K bytes
- Use the PD cache for any allocation < NVGPU_PD_CACHE_SIZE
When freeing up cached entries, avoid prefetch errors by
invalidating the entry (memset to 0).
- Try to fall back to direct allocation of smaller chunk for
contiguous allocation failures.
- Unit test changes.
Bug 200649243
Change-Id: I0a667af0ba01d9147c703e64fc970880e52a8fbc
Signed-off-by: dt <dt@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2404371
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common.gr defined a temporary macro NVGPU_GR_NUM_INSTANCES to enable or
disable multiple GR instances from common.gr unit.
Multiple GR instance boot is now verified, so we can remove this
temporary solution.
Note that nvgpu_grmgr_get_num_gr_instances() will return more than 1
instance only if NVGPU_SUPPORT_MIG is enabled.
Update unit tests to set number of syspipes to 1 to allow enumeration
of GR instance by grmgr.
Jira NVGPU-5648
Change-Id: I795901ae516843ae7b6c1794dae0f023a213ab1d
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2418377
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Add a new header file <nvgpu/gr/gr_instances.h> that supports below
macros to execute various functions for GR instances
1) nvgpu_gr_exec_for_each_instance
Execute a function for each GR instance by configuring GR remap
window for that instance. Function being executed returns void.
2) nvgpu_gr_exec_with_ret_for_each_instance
Execute a function for each GR instance by configuring GR remap
window for that instance. Function being executed returns an error.
3) nvgpu_gr_exec_for_all_instances
Execute a function for all GR instances at once. For this GR remap
window needs to be disabled temporarily.
If CONFIG_NVGPU_MIG is disabled, all above macros will turn into simple
funciton calls.
If CONFIG_NVGPU_MIG is disabled or if runtime flag NVGPU_SUPPORT_MIG is
disabled, all above macros will turn into simple function calls that
configure single GR instance.
Separate out GR engine reset code into new API gr_reset_engine() and
execute it with nvgpu_gr_exec_with_ret_for_each_instance().
PROD values need to be loaded in legacy mode, hence call
nvgpu_cg_init_gr_load_gating_prod() inside
nvgpu_gr_exec_for_all_instances().
Rename gr_init_prepare_hw() to more appropriate
gr_reset_hw_and_load_prod()
Moe gops.gr.init.fifo_access() call to gr_init_reset_enable_hw().
Add new API nvgpu_grmgr_get_gr_syspipe_id() to query GR instance syspipe
id from common.grmgr unit. Add nvgpu_gr_get_syspipe_id() that returns
same value stored in nvgpu_gr struct.
Add cur_gr_instance field to struct nvgpu_gr to track current GR
instance being programmed under remap window.
Jira NVGPU-5648
Change-Id: I86920303427a6e6547ebf195daa37438365bb38e
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2403550
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common.gr unit exports a separate API nvgpu_gr_prepare_sw to
initialize some SW pieces required for nvgpu_gr_enable_hw().
A separate API is really unnecessary since same initialization
can be performed in nvgpu_gr_alloc().
Remove nvgpu_gr_prepare_sw() and HAL gops.gr.gr_prepare_sw().
Initialize falcon and interrupt structures in loop from
nvgpu_gr_alloc().
Move nvgpu_netlist_init_ctx_vars() from nvgpu_gr_prepare_sw() to
common init path since netlist parsing need not be done from
common.gr unit. It just needs to happen before nvgpu_gr_enable_hw().
Also, trigger nvgpu_gr_free() from gr_remove_support() instead
of OS specific paths. Also remove nvgpu_gr_free() calls from
probe error paths since nvgpu_gr_alloc is no longer called in
probe path.
Move interrupt and falcon data structure free calls to nvgpu_gr_free().
Also remove corresponding unit testing code that tests
nvgpu_gr_prepare_sw() specifically.
Update some unit tests to initialize ecc counters and netlist.
Disable some unit tests that fail for reasons unknown.
Jira NVGPU-5648
Change-Id: I82ec8160f76530bc40e0c11a9f26ba1c8f9cf643
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2400166
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Fix up what unit tests can be easily fixed up. Stage everything else.
In short the unit test code is _incredibly_ fragile since it's designed
to hit every branch, positive and negative, in the code. However, the
result of that is unit tests that are painful to modify.
A lot of unit tests are also extremely opaque and rely on internal
nvgpu behavior. This patch will be updated with fixes as I make them.
Or, alternatively, it may be worth just temporarily disabling unit
tests on dev-main. We'll have a _lot_ of work for Orin that will
essentially gut the gr, host, and interrupt code. If we retain the
unit test code for this, it may end up being backgreaking.
JIRA NVGPU-5421
Change-Id: I8055fc72521f6a3a8a0d8f07fbe50c649a675016
Signed-off-by: Alex Waterman <alexw@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2347274
Reviewed-by: Konsta Holtta <kholtta@nvidia.com>
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Many tests used various incarnations of the mock register framework.
This was based on a dump of gv11b registers. Tests that greatly
benefitted from having generally sane register values all rely
heavily on this framework.
However, every test essentially did their own thing. This was not
efficient and has caused a some issues in cleaning up the device and
host code.
Therefore introduce a much leaner and simplified register framework.
All unit tests now automatically get a good subset of the gv11b
registers auto-populated. As part of this also populate the HAL with
a nvgpu_detect_chip() call. Many tests can now _probably_ have all
their HAL init (except dummy HAL stuff) deleted. But this does
require a few fixups here and there to set HALs to NULL where tests
expect HALs to be NULL by default.
Where necessary HALs are cleared with a memset to prevent unwanted
code from executing.
Overall, this imposes a far smaller burden on tests to initialize
their environments.
Something to consider for the future, though, is how to handle
supporting multiple chips in the unit test world.
JIRA NVGPU-5422
Change-Id: Icf1a63f728e9c5671ee0fdb726c235ffbd2843e2
Signed-off-by: Alex Waterman <alexw@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2335334
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- Add test scenarios for achieving branch coverage
for failure of dynamic memory allocation while
preparing ucode blob.
- Add more branch coverage for nvgpu_acr_bootstrap_hs_acr()
- Move GR reg space required for ACR tests to ACR unit test
itself to remove dependency on GR unit
JIRA NVGPU-4319
Change-Id: I770a696a1681eb05243c7168878793a30cd59c13
Signed-off-by: Divya Singhatwaria <dsinghatwari@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2286257
Reviewed-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-by: Alex Waterman <alexw@nvidia.com>
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PMU IRQs were not enabled assuming entire functionality for LS PMU.
Debugging early init issues of PMU falcon ECC errors triggered
during nvgpu power-on will be cumbersome if interrupts are not
enabled early. FMEA analysis of the nvgpu init path also
requires this interrupt be enabled earlier.
Hence, Enable the PMU ECC IRQ early during nvgpu_finalize_poweron.
pmu_enable_irq is updated to enable interrupts differently for
safety and non-safety. PMU interrupts disabling is moved out
of nvgpu_pmu_destroy to nvgpu_prepare_poweroff. Prepared new
wrapper API nvgpu_pmu_enable_irq.
PMU ECC init and isr mutex init is moved to the beginning of
nvgpu_pmu_early_init as for safety, ls pmu code path is
disabled. Fixed the pmu_early_init dependent and mc
interrupt related unit tests.
Update the doxygen for changed functions.
JIRA NVGPU-4439
Change-Id: I1a1e792d2ad2cc7a926c8c1456d4d0d6d1f14d1a
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2251732
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To enable ecc interrupts early during nvgpu_finalize_poweron, ecc
support has to be enabled early. ecc support was being initialized
together for GR, LTC, PMU, FB units late in the poweron sequence.
Move the ecc init for each unit to respective unit's init functions.
And separate out the hal ecc functions from GR ecc unit to
respective hal units.
JIRA NVGPU-4336
Change-Id: I2c42fb6ba3192dece00be61411c64a56ce16740a
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2239153
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-Renamed ACR structs for FUSA, ACR FUSA code has struct names
ending with _v1 & ACR non-FUSA with _v0, removed _v1 for FUSA
code to keep struct without any versioning for doxygen.
-Renamed acr_blob_construct_v1.c/h to acr_blob_construct.c/h
JIRA NVGPU-2516
Change-Id: Id2d5e48e8169ce59371c2b08d04c5a65ba94c685
Signed-off-by: Mahantesh Kumbar <mkumbar@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2218265
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