channel_joblist_peek() returns NULL if the list is empty.
nvgpu_channel_joblist_is_empty() has been used only together with that
function; remove it and check against NULL to see whether there are jobs
in flight.
This removes some duplication, simplifies the call sites slightly, and
gets rid of a Coverity nag about a possible NULL pointer from peek that
really isn't (when the emptiness was already checked).
Jira NVGPU-5772
Change-Id: I814e9c510d99b88e59539359992fb44d4e7ce2ea
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2397394
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GVS: Gerrit_Virtual_Submit
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As the submit job metadata has been simplified, the fence pool for job
tracking fences is now just complex code for very simple purposes, so
delete it. It's enough to hold the fence memory in the job struct itself
instead of having separately allocated objects with different lifetimes.
Each channel is using preallocated job arrays based on the prespecified
inflight job count. The fences are used for tracking job completion, and
a new job cannot be submitted before a previous wait has completed.
This means that even with a ringbuffer with space for only one job, the
previous job memory cannot get reclaimed by a new submit because the
submits are ordered.
Jira NVGPU-5773
Change-Id: I0c777df700aa7cfda6f971efa47aa72c5462b53a
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2392704
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Unify the job metadata handling by deleting the parts that have handled
dynamically allocated job structs and fences. Now a channel can be in
one less mode than before which reduces branching in tricky places and
makes the submit/cleanup sequence easier to understand.
While preallocating all the resources upfront may increase average
memory consumption by some kilobytes, users of channels have to supply
the worst case numbers anyway and this preallocation has been already
done on deterministic channels.
Flip the channel_joblist_delete() call in nvgpu_channel_clean_up_jobs()
to be done after nvgpu_channel_free_job(). Deleting from the list (which
is a ringbuffer) makes it possible to reuse the job again, so the job
must be freed before that. The comment about using post_fence is no
longer valid; nvgpu_channel_abort() does not use fences.
This inverse order has not posed problems before because it's been buggy
only for deterministic channels, and such channels do not do the cleanup
asynchronously so no races are possible. With preallocated job list for
all channels, this would have become a problem.
Jira NVGPU-5492
Change-Id: I085066b0c9c2475e38be885a275d7be629725d64
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2346064
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GVS: Gerrit_Virtual_Submit
Move preallocation of priv cmdbuf metadata structs to the priv cmdbuf
level and do it always, not only on deterministic channels. This makes
job tracking simpler and loosens dependencies from jobs to cmdbuf
internals. The underlying dma memory for the cmdbuf data has always been
preallocated.
Rename the priv cmdbuf functions to have a consistent prefix.
Refactor the channel sync wait and incr ops to free any priv cmdbufs
they allocate. They have been depending on the caller to free their
resources even on error conditions, requiring the caller to know how
they work.
The error paths that could occur after a priv cmdbuf has been allocated
have likely been wrong for a long time. Usually the cmdbuf queue allows
allocating only from one end and freeing from only the other end, as
that's natural with the hardware job queue. However, in error conditions
the just recently allocated entries need to be put back. Improve the
interface for this.
[not part of the cherry-pick:] Delete the error prints about not enough
priv cmd buffer space. That is not an error. When obeying the
user-provided job sizes more strictly, momentarily running out of job
tracking resources is possible when the job cleanup thread does not
catch up quickly enough. In such a case the number of inflight jobs on
the hardware could be less than the maximum, but the inflight job count
that nvgpu sees via the consumed resources could reach the maximum.
Also remove the wrong translation to -EINVAL from err from one call to
nvgpu_priv_cmdbuf_alloc() - the -EAGAIN from the failed allocation is
important.
[not part of the cherry-pick: a bunch of MISRA mitigations.]
Jira NVGPU-4548
Change-Id: I09d02bd44d50a5451500d09605f906d74009a8a4
Signed-off-by: Konsta Hölttä <kholtta@nvidia.com>
Reviewed-on: https://git-master.nvidia.com/r/c/linux-nvgpu/+/2329657
(cherry picked from commit 25412412f31436688c6b45684886f7552075da83)
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GVS: Gerrit_Virtual_Submit
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