Only certain combination of channels of GFX/Compute object classes can
be assigned to particular pbdma and/or VEID. CILP can be enabled only
in certain configs. Implement checks for the configurations verified
during alloc_obj_ctx and/or setting preemption mode.
Bug 3677982
Change-Id: Ie7026cbb240819c1727b3736ed34044d7138d3cd
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2719995
Reviewed-by: Ankur Kishore <ankkishore@nvidia.com>
GVS: Gerrit_Virtual_Submit <buildbot_gerritrpt@nvidia.com>
This patch introduces following relationships among various nvgpu
objects to support multiple address spaces with subcontexts.
IOCTLs setting the relationships are shown in the braces.
nvgpu_tsg 1<---->n nvgpu_tsg_subctx (TSG_BIND_CHANNEL_EX)
nvgpu_tsg 1<---->n nvgpu_gr_ctx_mappings (ALLOC_OBJ_CTX)
nvgpu_tsg_subctx 1<---->1 nvgpu_gr_subctx (ALLOC_OBJ_CTX)
nvgpu_tsg_subctx 1<---->n nvgpu_channel (TSG_BIND_CHANNEL_EX)
nvgpu_gr_ctx_mappings 1<---->n nvgpu_gr_subctx (ALLOC_OBJ_CTX)
nvgpu_gr_ctx_mappings 1<---->1 vm_gk20a (ALLOC_OBJ_CTX)
On unbinding the channel, objects are deleted according
to dependencies.
Without subcontexts, gr_ctx buffers mappings are maintained in the
struct nvgpu_gr_ctx. For subcontexts, they are maintained in the
struct nvgpu_gr_subctx.
Preemption buffer with index NVGPU_GR_CTX_PREEMPT_CTXSW and PM
buffer with index NVGPU_GR_CTX_PM_CTX are to be mapped in all
subcontexts when they are programmed from respective ioctls.
Global GR context buffers are to be programmed only for VEID0.
Based on the channel object class the state is patched in
the patch buffer in every ALLOC_OBJ_CTX call unlike
setting it for only first channel like before.
PM and preemptions buffers programming is protected under TSG
ctx_init_lock.
tsg->vm is now removed. VM reference for gr_ctx buffers mappings
is managed through gr_ctx or gr_subctx mappings object.
For vGPU, gr_subctx and mappings objects are created to reference
VMs for the gr_ctx lifetime.
The functions nvgpu_tsg_subctx_alloc_gr_subctx and nvgpu_tsg_-
subctx_setup_subctx_header sets up the subcontext struct header
for native driver.
The function nvgpu_tsg_subctx_alloc_gr_subctx is called from
vgpu to manage the gr ctx mapping references.
free_subctx is now done when unbinding channel considering
references to the subcontext by other channels. It will unmap
the buffers in native driver case. It will just release the
VM reference in vgpu case.
Note that TEGRA_VGPU_CMD_FREE_CTX_HEADER ioctl is not called
by vgpu any longer as it would be taken care by native driver.
Bug 3677982
Change-Id: Ia439b251ff452a49f8514498832e24d04db86d2f
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2718760
Reviewed-by: Scott Long <scottl@nvidia.com>
Reviewed-by: Ankur Kishore <ankkishore@nvidia.com>
GVS: Gerrit_Virtual_Submit <buildbot_gerritrpt@nvidia.com>
In order to maintain separate mappings of GR TSG and global context
buffers for different subcontexts, we need to separate the memory
struct and the mapping struct for the buffers. This patch moves
the mappings of all GR ctx buffers to new structure
nvgpu_gr_ctx_mappings.
This will be instantiated per subcontext in the upcoming patches.
Summary of changes:
1. Various context buffers were allocated and mapped separately.
All TSG context buffers are now stored in gr_ctx->mem[] array
since allocation and mapping is unified for them.
2. Mapping/unmapping and querying the GPU VA of the context
buffers is now handled in ctx_mappings unit. Structure
nvgpu_gr_ctx_mappings in nvgpu_gr_ctx holds the maps.
On ALLOC_OBJ_CTX this struct is instantiated and deleted
on free_gr_ctx.
3. Introduce mapping flags for TSG and global context buffers.
This is to map different buffers with different caching
attribute. Map all buffers as cacheable except
PRIV_ACCESS_MAP, RTV_CIRCULAR_BUFFER, FECS_TRACE, GR CTX
and PATCH ctx buffers. Map all buffers as privileged.
4. Wherever VM or GPU VA is passed in the obj_ctx allocation
functions, they are now replaced by nvgpu_gr_ctx_mappings.
5. free_gr_ctx API need not accept the VM as mappings struct
will hold the VM. mappings struct will be kept in gr_ctx.
6. Move preemption buffers allocation logic out of
nvgpu_gr_obj_ctx_set_graphics_preemption_mode.
7. set_preemption_mode and gr_gk20a_update_hwpm_ctxsw_mode
functions need update to ensure buffers are allocated
and mapped.
8. Keep the unit tests and documentation updated.
With these changes there is clear seggregation of allocation and
mapping of GR context buffers. This will simplify further change
to add multiple address spaces support. With multiple address
spaces in a TSG, subcontexts created after first subcontext
just need to map the buffers.
Bug 3677982
Change-Id: I3cd5f1311dd85aad1cf547da8fa45293fb7a7cb3
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2712222
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set_patch_addr parameter to nvgpu_gr_ctx_set_patch_ctx was redundant.
Remove it.
Prepare new functions nvgpu_gr_ctx_set_hwpm_pm_mode to set PM mode,
nvgpu_gr_ctx_set_hwpm_ptr to set PM ptr in gr_ctx. Rename subctx
function to nvgpu_gr_subctx_set_hwpm_ptr.
This simplifies the logic in gr_gk20a_update_hwpm_ctxsw_mode to set
the PM mode and PM ptr. Channel loop is needed only for subcontexts.
Bug 3677982
Change-Id: I44acb09f6296ba8d510e278910188864f39e7157
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2743724
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Reviewed-by: Vijayakumar Subbu <vsubbu@nvidia.com>
GVS: Gerrit_Virtual_Submit
gr ctx buffer in non-cacheable hence there is no need to do L2 cache
flush when updating the buffer. Remove the flushes.
pm ctx buffer is cacheable hence add l2 flush in the function
nvgpu_profiler_quiesce_hwpm_streamout_non_resident since it
updates the buffer.
Bug 3677982
Change-Id: I0c15ec7a7f8fa250af1d25891122acc24443a872
Signed-off-by: Sagar Kamble <skamble@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2713916
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Introduce nvgpu_gmmu_map_partial() to map a specific size of a buffer
represented by nvgpu_mem, or what nvgpu_gmmu_map() used to do. Delete
the size parameter from nvgpu_gmmu_map() such that it now maps the
entire buffer. The separate size parameter is a historical artifact from
when nvgpu_mem did not exist yet; the typical use is to map the entire
buffer.
Mapping at a certain address with nvgpu_gmmu_map_fixed() still takes the
size parameter.
The returned address still has to be stored somewhere, typically to
mem.gpu_va by the caller so that the matching unmap variant finds the
right address.
Change-Id: I7d67a0b15d741c6bcee1aecff1678e3216cc28d2
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2601788
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Introduce nvgpu_gmmu_unmap_addr() to unmap a nvgpu_mem that was mapped
at some other address than mem.gpu_va, which can be the case for buffers
that are shared across different address spaces. Delete the address
parameter from nvgpu_gmmu_unmap(), as the common case is to store the
address to mem.gpu_va when mapping the buffer.
Modify some instances of consecutive unmap + free calls to call just
nvgpu_dma_unmap_free().
Change-Id: Iecd7c9aa41d04e9f48e055f6bc0c9227cd759c69
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2601787
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GFxP preemption for graphics contexts is not supported in safety.
But the support was enabled along with CONFIG_NVGPU_GRAPHICS since GFxP
preemption was protected under same config.
Add a separate config CONFIG_NVGPU_GFXP to protect all GFxP specific
code, enum values, and HALs.
Disable the config in safety profile.
Jira NVGPU-6893
Change-Id: Iebb5f754a1025dfa6e05a94704bdb8a7123b599a
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2534986
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Some of the RTV circular buffer programming is under GRAPHICS config and
some is under DGPU config. For nvgpu-next, RTV circular buffer is
required even for iGPU so keeping the code under DGPU config does not
make sense.
Move all the code from DGPU config to GRAPHICS config.
Bug 3159973
Change-Id: I8438cc0e25354d27701df2fe44762306a731d8cd
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2524897
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Add below updates to common.gr doxygen:
- Add doxygen comments for APIs that are mentioned in RM SWAD and in
RM-common.gr traceability document.
- Comment about valid ranges for input parameters of bunch of functions.
- Add nvgpu_assert() to ensure correct value is passed as input
parameter to number of functions.
- Add references to relevant functions with @see.
- Update Targets field for unit tests to cover newly doxygenated
functions.
- Update unit test test_gr_init_hal_pd_skip_table_gpc to take care of
new asserts added into some APIs.
Jira NVGPU-6180
Change-Id: Ie889bed96b6428b1fd86dcf30b322944464e9d12
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2469397
(cherry picked from commit 5d7d7e9ce1c4efe836ab842d7962a3aee4e8972f)
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2469394
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APIs to set preemption modes right now have config based code to set
default preemption modes or to check if given preemption mode is valid
or not. This makes code unreadable and complex.
Rework nvgpu_gr_obj_ctx_init_ctxsw_preemption_mode() so that it checks
for initial preemption modes in the beginning. If no preemption mode is
passed while allocating context, get default preemption modes with
gops.gr.init.get_default_preemption_modes() and use them.
Rework nvgpu_gr_ctx_check_valid_preemption_mode() so that it is more
readable. Use gops.gr.init.get_supported_preemption_modes() to validate
incoming preemption modes against supported preemption modes.
Log preemption modes getting set in
nvgpu_gr_obj_ctx_set_ctxsw_preemption_mode().
Disable failing unit test. It will need rework according to new code.
Jira NVGPU-5648
Change-Id: Ie1a3e1aeae7826a123e104d9d016f181bea3b271
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2419034
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To achieve permanent fault coverage, the CTAs launched by
each kernel in the mission and redundant contexts must execute on
different hardware resources. This feature proposes modifications
in the software to modify the virtual SM id to TPC mapping across
the mission and redundant contexts. The virtual SM identifier to TPC
mapping is done by nvgpu when setting up the patch context.
The recommendation for the redundant setting is to offset the
assignment by one TPC, and not by one GPC. This will ensure that both
GPC and TPC diversity. The SM and Quadrant diversity will happen
naturally. For kernels with few CTAs, the diversity is guaranteed
to be 100%. In case of completely random CTA allocation,
e.g. large number of CTAs in the waiting queue, the diversity is
1 - 1/#SM, or 87.5% for GV11B, 97.9% for TU104.
Added NvGpu CFLAGS to enable/disable the SM diversity support
"CONFIG_NVGPU_SM_DIVERSITY".
This support is only enabled on gv11b and tu104 QNX non safety build.
JIRA NVGPU-4685
Change-Id: I8e3eaa72d8cf7aff97f61e4c2abd10b2afe0fe8b
Signed-off-by: Lakshmanan M <lm@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2268026
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Reviewed-by: Shashank Singh <shashsingh@nvidia.com>
Reviewed-by: svc-mobile-cert <svc-mobile-cert@nvidia.com>
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- nvgpu_gr_ctx_load_golden_ctx_image() does not return any error, change
the return type to void
- Check for preemption modes greater than CILP in
nvgpu_gr_ctx_check_valid_preemption_mode
- Check if received class is valid or not in
nvgpu_gr_setup_set_preemption_mode
- Compile out entire nvgpu_gr_obj_ctx_init_ctxsw_preemption_mode since
it is really not doing anything in safety
- Remove the switch statement in nvgpu_gr_obj_ctx_set_compute_preemption_mode
since it is not possible to receive any other value than supported.
Previous function calls ensure that input values are validated.
- nvgpu_gr_obj_ctx_commit_global_ctx_buffers() does not return any
error, change the return type to void
- gops.gr.init.preemption_state HAL is not needed in safety since it
only configures gfxp related timeout
- remove redundant call to gops.gr.init.wait_idle in
nvgpu_gr_obj_ctx_commit_hw_state. We trigger wait despite earlier
failure in same function call.
Jira NVGPU-4457
Change-Id: I06a474ef7cc1b16fbc3846e0cad1cda6bb2bf2af
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2260938
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- Set ENOMEM error if GPU mapping fails in nvgpu_gr_ctx_alloc().
- In nvgpu_gr_ctx_free_patch_ctx(), it is not possible to have a
valid patch buffer without GPU virtual address space. Hence instead
of checking for gpu_va, use nvgpu_mem_is_valid() to check if GPU
mappings can be removed.
- Check if RTV circular buffer is ready within DGPU config.
nvgpu_gr_global_ctx_buffer_map() already checks if buffer is ready
or not and returns error if buffer is not ready.
- g->ops.gr.ctxsw_prog.init_ctxsw_hdr_data() will always be set for
each chip. Remove unnecessary NULL check.
Jira NVGPU-4373
Change-Id: Ib490f81f8b8299f87cffbb8a33fde8cf98e6c288
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2259073
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Reviewed-by: Vinod Gopalakrishnakurup <vinodg@nvidia.com>
Reviewed-by: Alex Waterman <alexw@nvidia.com>
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Move code used only with graphics under
CONFIG_NVGPU_GRAPHICS check.
gm20b_gr_init_load_sw_bundle_init hal get called
without CONFIG_NVGPU_GR_GOLDEN_CTX_VERIFICATION check.
Remove dead code in
nvgpu_gr_ctx_check_valid_preemption_mode function.
Jira NVGPU-3968
Change-Id: I399126123006ae44dba29b3c08378d11fe82e543
Signed-off-by: vinodg <vinodg@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2247346
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Some of the debugger and graphics specific functions were already
not being used in safety build. Compile out their definitions
and declarations as well.
Also, fail preemption set call if non-zero graphics preemption mode
is requested in safety build.
Jira NVGPU-3967
Change-Id: Iaf5e3bd58e6096da40301b79e9295a6c5893cd4a
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2191764
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Add macros for whitelisting coverity violations. These macros use pragma
directives. The pragma directives and whitelisting macros are only
enabled when a coverity scan is being run.
The whitelisting macros have been added to a new header called
static_analysis.h. The contents of safe_ops.h (CERT C safe ops) have
been moved into static_analysis.h because this will be the new header
for static analysis related macros/defines/etc.
JIRA NVGPU-3820
Change-Id: I9c63f20f670880b420415535738034619314b7c3
Signed-off-by: Adeel Raza <araza@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2180600
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Error: CERT INT30-C:
drivers/gpu/nvgpu/common/gr/ctx.c:644:
cert_violation: Unsigned integer operation
"gr_ctx->patch_ctx.mem.size / 4UL - 2UL" may wrap.
Error: CERT INT31-C:
drivers/gpu/nvgpu/common/gr/ctx.c:580:
cert_violation: Casting "gr_ctx->boosted_ctx" from "bool" to "unsigned int"
without checking its value may result in lost or misinterpreted data.
JIRA NVGPU-3409
Change-Id: Ib3c865d43ecd3c0eaaafd47b7b65111aa77689bd
Signed-off-by: Nitin Kumbhar <nkumbhar@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2118521
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Fix misra errors from nvgpu_gr_ctx_prepare_hwpm_mode()
Error: MISRA C-2012 Rule 16.1:
nvgpu/drivers/gpu/nvgpu/common/gr/ctx.c:815:
missing_break: This switch clause does not end with
an unconditional break statement.
nvgpu/drivers/gpu/nvgpu/common/gr/ctx.c:785:
misra_violation: The switch statement is not well formed.
NVGPU-3224
Change-Id: Ica7029fd84f443b8ce3d51a5c5f32bb6a6172040
Signed-off-by: Nitin Kumbhar <nkumbhar@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2112703
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Debug boolean flag dump_ctxsw_stats_on_channel_close is right now stored
in gr_gk20a.ctx_vars struct
This flag logically is property of gr.ctx units since it indicates
whether each context should dump ctxsw stats on channel/context close
Move this flag to struct nvgpu_gr_ctx_desc and remove it from
gr_gk20a.ctx_vars
Expose below API from gr.ctx unit to check if flag is set
nvgpu_gr_ctx_desc_dump_ctxsw_stats_on_channel_close()
Move debugfs creation code to create corresponding debugfs to
gr_gk20a_debugfs_init() and change debugfs type from "u32" to "file"
Struct gr.gr_ctx_desc is created only during first poweron.
Return error if this struct is not available.
Remove unnecessary initialization of this variable from platform
specific probe functions
Jira NVGPU-3112
Change-Id: Id675e047237f82e9b8198a42082e99c95824578f
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2099399
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Debug boolean flags force_preemption_gfxp and force_preemption_cilp are
right now stored in gr_gk20a.ctx_vars struct
These flags logically are property of gr.ctx units since they indicate
whether each context should be forced to gfxp/cilp preemption mode by
default
Move these flags to struct nvgpu_gr_ctx_desc and remove them from
gr_gk20a.ctx_vars
Expose below APIs from gr.ctx unit to check if flags are set
nvgpu_gr_ctx_desc_force_preemption_gfxp()
nvgpu_gr_ctx_desc_force_preemption_cilp()
Move debugfs creation code to create corresponding debugfs to
gr_gk20a_debugfs_init() and change debugfs type from "u32" to "file"
Struct gr.gr_ctx_desc is created only during first poweron.
Return error if this struct is not available.
Remove unnecessary initialization of these variables from platform
specific probe functions
Jira NVGPU-3112
Change-Id: I8b2de27f0c71dd2ea5abcf94221c2e15c80073ea
Signed-off-by: Deepak Nibade <dnibade@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/2099398
Reviewed-by: svc-mobile-coverity <svc-mobile-coverity@nvidia.com>
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