common.ptimer unit right now exposes two APIs -
scale_ptimer() to scale the timer
ptimer_scalingfactor10x() to get the scaling factor
receiving scaling factor is not really necessary for user of
common.ptimer since it can be internally calculated in scale_ptimer()
function itself.
Hence make ptimer_scalingfactor10x() static and rename public API
scale_ptimer() to nvgpu_ptimer_scale()
nvgpu_ptimer_scale() will not accept timeout value as parameter
and return scaled timeout value in another pointer parameter.
Error code is returned if timeout value is invalid.
Jira NVGPU-6394
Change-Id: Ib882d99f6096c3af5f96eef298d713fb5e36dd87
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2546970
(cherry picked from commit 2da7c918efe91046818c83481664312e194ead8e)
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2551334
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Add REMAP ioctl and accompanying support to the linux nvgpu driver.
REMAP support provides per-page control over sparse VM areas using the
concept of a virtual memory pool.
The REMAP ioctl accepts a list of operations (each a map or unmap) that
modify the VM area pages tracked by the virtual mmemory pool.
Inclusion of REMAP support in the nvgpu build is controlled by the new
CONFIG_NVGPU_REMAP flag. This flag is enabled by default for linux builds.
A new NVGPU_GPU_FLAGS_SUPPORT_REMAP characteristics flag is added for use
in detecting when REMAP support is available.
When a VM allocation tagged with NVGPU_VM_AREA_ALLOC_SPARSE is made the
base virtual memory pool resources are allocated. Per-page resources are
later allocated when the NVGPU_AS_IOCTL_REMAP ioctl is issued. All REMAP
resources are released when the corresponding VM area is freed.
Jira NVGPU-6804
Change-Id: I1f2cdc0c06c1698a62640c1c6fbcb2f9db24a0bc
Signed-off-by: scottl <scottl@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2542178
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Replace all nvgpu_next functions/structs either by 1) collapsing them
into nvgpu legacy functions/structs 2) renaming them as follows:
- nvgpu_next_*() => nvgpu_(ga10b/ga100)_*()
- nvgpu_next_*() => (ga10b/ga100)_*()
- nvgpu_next_*() => nvgpu_*() [only if this doesn't cause collision]
- nvgpu_next_*() = > nvgpu_*_extra()
Create hal.sim unit and move Ampere+ SIM code into it.
Jira NVGPU-4771
Change-Id: I215594a0d0df4bd663bd875a0d0db47bcb9ff6a2
Signed-off-by: Antony Clince Alex <aalex@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2548056
Reviewed-by: svc_kernel_abi <svc_kernel_abi@nvidia.com>
Reviewed-by: Mahantesh Kumbar <mkumbar@nvidia.com>
Reviewed-by: Vijayakumar Subbu <vsubbu@nvidia.com>
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The CONFIG_NVGPU_NEXT config is no longer required now that ga10b and
ga100 sources have been collapsed. However, the ga100, ga10b sources
are not safety certified, so mark them as NON_FUSA by replacing
CONFIG_NVGPU_NEXT with CONFIG_NVGPU_NON_FUSA.
Move CONFIG_NVGPU_MIG to Makefile.linux.config and enable MIG support
by default on standard build.
Jira NVGPU-4771
Change-Id: Idc5861fe71d9d510766cf242c6858e2faf97d7d0
Signed-off-by: Antony Clince Alex <aalex@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2547092
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nvgpu does map attachment with DMA_BIDIRECTIONAL direction for buffers
irrespective of the GPU mapping type. nvmap will allow map attachment
with only DMA_TO_DEVICE direction for RO buffers for secure buffer
access.
nvgpu does RO GPU mapping if the buffer is RO for CPU or user requests
to map as RO. In both cases the dma_buf map attachment should be done
with DMA_TO_DEVICE direction as the intent for accessing the SGT is
reading from GPU.
Also, map the gpfifo buffer as read_only as it is intended to be read
only. The userd buffer is accessed by the GPU through iova and is not
GMMU mapped.
Bug 200731819
Change-Id: Ifc60973f298f7cacab16c5dedecbb40c5f33ed1d
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2539312
Tested-by: mobile promotions <svcmobile_promotions@nvidia.com>
Reviewed-by: Deepak Nibade <dnibade@nvidia.com>
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To use enum gk20a_mem_rw_flag declaration, gmmu.h was included in qnx
nvgpu_nvmap_user.h. However with that recursive header inclusion
happens as below:
nvgpu_nvmap_user.h <- nvgpu/gmmu.h <- nvgpu/nvgpu-mem.h
<- nvgpu_rmos/include/nvgpu_mem.h <- nvgpu_nvmap_user.h
Remove this recursion by moving gk20a_mem_rw_flag to gmmu.h. Also
move nvgpu_aperture to gmmu.h. With this approach gmmu.h can be
included in nvgpu-mem.h as it is independent of OS header.
Bug 200717195
Bug 3250920
Change-Id: I6d3011d830e3778d8d4224ddfcc2eb85a49e444b
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2531788
Reviewed-by: svcacv <svcacv@nvidia.com>
Reviewed-by: svc_kernel_abi <svc_kernel_abi@nvidia.com>
Reviewed-by: Vijayakumar Subbu <vsubbu@nvidia.com>
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Add api to translate dmabuf's fmode_t to gk20a_mem_rw_flag
for read only/read write mapping selection.
By default dmabuf fd mapping permission should be a maximum
access permission associated to a particual dmabuf fd.
Remove bit flag MAP_ACCESS_NO_WRITE and add 2 bit values for
user access requests NVGPU_VM_MAP_ACCESS_DEFAULT|READ_ONLY|
READ_WRITE.
To unify map access type handling in Linux and QNX move the
parameter NVGPU_VM_MAP_ACCESS_* check to common function
nvgpu_vm_map.
Set MAP_ACCESS_TYPE enabled flag in common characteristics
init function as it is supported for Linux and QNX.
Bug 200717195
Bug 3250920
Change-Id: I1a249f7c52bda099390dd4f371b005e1a7cef62f
Signed-off-by: Lakshmanan M <lm@nvidia.com>
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2507150
Reviewed-by: svc_kernel_abi <svc_kernel_abi@nvidia.com>
Reviewed-by: Vijayakumar Subbu <vsubbu@nvidia.com>
Reviewed-by: svc-mobile-coverity <svc-mobile-coverity@nvidia.com>
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When force closing the app, poweron needed in channel close path will
fail as pg_task kthread creation fails with -EINTR (process is
SIGKILL'd so threads don't get created).
Upon poweron failure, device nodes are removed and the nvgpu power
state is not reset to NVGPU_STATE_POWERED_OFF. Hence on further
gk20a_busy attempts, poweron is not attempted and gpu remains
unusable from thereon.
Change the state to POWERED_OFF from POWERING_ON on poweron fail.
Bug 3308828
Change-Id: I2360f11a4937dfe93eb7933b30c13748fb570898
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2543797
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Presently, gk20a_user_deinit is used to remove all device nodes
including "power" node as well.
Split removal of power node into a separate function
gk20a_power_node_deinit to enable other device removal during the
normal runtime_suspend path to facilitate the fast path for MIG
reconfiguration. Powernode can be removed only during a call to
Rmmod. This also enables separately powering off the device nodes
in the unlikely case of a poweron failure.
Bug 3308828
Jira NVGPU-6920
Change-Id: Ib045a09a992a63c468492a837b273cca41e20f15
Signed-off-by: Debarshi Dutta <ddutta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2543014
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Reviewed-by: svcacv <svcacv@nvidia.com>
Reviewed-by: svc_kernel_abi <svc_kernel_abi@nvidia.com>
Reviewed-by: Dinesh T <dt@nvidia.com>
Reviewed-by: Lakshmanan M <lm@nvidia.com>
Reviewed-by: Vijayakumar Subbu <vsubbu@nvidia.com>
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1. misra_c_2012_rule_8_6_violation: "gm20b_gr_init_fe_go_idle_timeout"
is declared but never defined.
Fix by adding config CONFIG_NVGPU_HAL_NON_FUSA for header declaration
of "gm20b_gr_init_fe_go_idle_timeout"
2. misra_c_2012_rule_5_7_violation: Identifier "ops" is already used
to represent a type.
Fix by renaming local variable ops to nonstall_ops in
gm20b_gr_intr_nonstall_isr()
3. missing_default: No default case found for the switch statement
"switch (offset << 2)"
Fix by adding break and default statements to switch case in
gv11b_gr_intr_handle_sw_method()
Jira NVGPU-6779
Change-Id: I8df097ec66479edcd2e81bf46bab5b5db52ac8c8
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2541246
(cherry picked from commit c4d9fe0449f8c6ee209051abfe58c6f3a745808d)
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2543012
Reviewed-by: svcacv <svcacv@nvidia.com>
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Query the num_perfmon requires golden context to be ready. Accessing
golden context might require gr_instance_id, specific to a GR engine.
On TOT, get_num_hwpm_perfmon() called from perfmon HAL which might
require to call nvgpu_gr_exec_with_err_for_instance().
It internally calls nvgpu_grmgr_config_gr_remap_window() to change
gr_window_remap register points to a current gr_instance_id for MIG.
This approach indirectly mandates to call
nvgpu_gr_exec_with_err_for_instance() which can be
completely avoided. get_num_hwpm_perfmon() is just a query call
which can be moved after the golden context creation.
Using this logic, we can avoid unnecessary invocation of
nvgpu_gr_exec_with_err_for_instance() during perform specific
HAL accesses.
1) Moved get_num_hwpm_perfmon() after golden context creation.
2) Added nvgpu_assert() if (g->num_sys_perfmon == 0U).
JIRA NVGPU-5656
Change-Id: I59a6ab4df93763adbc0765fa5e4d1712b2477521
Signed-off-by: Lakshmanan M <lm@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2542438
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Don't store the return value of elpg re-enable if disable fails; this
could make the local status value zero again, causing the elpg-protected
call to be executed with elpg still enabled and elpg re-enabled twice.
Commit c905858565 ("gpu: nvgpu: add cg and pg function") introduced
this bug; failure of re-enabling after a failed disable might be another
problem (and it's not clear why this is done in the first place) which
isn't propagated to the caller, but that would belong to another patch.
Bug 200565050
Change-Id: I7cf7a0887ae59e85bf0c56c38aaaadfefd16cc1c
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2541859
Reviewed-by: Debarshi Dutta <ddutta@nvidia.com>
Reviewed-by: svc_kernel_abi <svc_kernel_abi@nvidia.com>
Reviewed-by: Deepak Nibade <dnibade@nvidia.com>
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1) Expose logical mask instead of physical mask when MIG is enabled.
For legacy, NvGpu expose physical mask.
2) Added fb related info in struct nvgpu_gpu_instance().
4) Added utility api to get the logical id for a given local id
nvgpu_grmgr_get_gr_gpc_logical_id()
5) Added grmgr api to get max_gpc_count
nvgpu_grmgr_get_max_gpc_count().
5) Added grmgr's fbp api to get num_fbps and its enable masks.
nvgpu_grmgr_get_num_fbps()
nvgpu_grmgr_get_fbp_en_mask()
nvgpu_grmgr_get_fbp_rop_l2_en_mask()
6) Used grmgr's fbp apis in ioctl_ctrl.c
7) Moved fbp_init_support() in nvgpu_early_init()
8) Added nvgpu_assert handling in grmgr.c
9) Added vgpu hal for get_max_gpc_count().
JIRA NVGPU-5656
Change-Id: I90ac2ad99be608001e7d5d754f6242ad26c70cdb
Signed-off-by: Lakshmanan M <lm@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2538508
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gv11b_mm_mmu_fault_handle_mmu_fault_refch() right now checks/sets
mmu_nack_handled flag for MMU faults from all clients (i.e. GPC/HUB).
Handling of MMU nack in MMU fault handling path is only needed if MMU
nack exception is triggered by SM in GPC. Hence set and check this flag
only if source client is GPC.
In certain cases it is possible that CE engine triggers back to back
MMU faults on same channel. When this happens, and because of above
incorrect mmu_nack_handled flag handling, mmu_nack_handled flag is set
while handling second MMU fault from CE.
And because of this gv11b_mm_mmu_fault_handle_mmu_fault_refch() function
could end up dropping extra channel refcounts and trigger access after
free scenarios on that channel.
Bug 3315942
Change-Id: I28d8311edf34a041364dddedb5fc3a5b83132f85
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2540497
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Reviewed-by: Sagar Kamble <skamble@nvidia.com>
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