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author | Matthew Auld <matthew.auld@intel.com> | 2023-09-25 12:42:18 +0100 |
---|---|---|
committer | Rodrigo Vivi <rodrigo.vivi@intel.com> | 2023-12-21 11:45:07 -0500 |
commit | e1fbc4f18d5b4405271e964670b9b054c4397127 (patch) | |
tree | 30998784f152528761b830cd4b22c7523a0c870a /include | |
parent | drm/xe/pat: annotate pat_index with coherency mode (diff) | |
download | linux-e1fbc4f18d5b4405271e964670b9b054c4397127.tar.gz linux-e1fbc4f18d5b4405271e964670b9b054c4397127.tar.bz2 linux-e1fbc4f18d5b4405271e964670b9b054c4397127.zip |
drm/xe/uapi: support pat_index selection with vm_bind
Allow userspace to directly control the pat_index for a given vm
binding. This should allow directly controlling the coherency, caching
behaviour, compression and potentially other stuff in the future for the
ppGTT binding.
The exact meaning behind the pat_index is very platform specific (see
BSpec or PRMs) but effectively maps to some predefined memory
attributes. From the KMD pov we only care about the coherency that is
provided by the pat_index, which falls into either NONE, 1WAY or 2WAY.
The vm_bind coherency mode for the given pat_index needs to be at least
1way coherent when using cpu_caching with DRM_XE_GEM_CPU_CACHING_WB. For
platforms that lack the explicit coherency mode attribute, we treat
UC/WT/WC as NONE and WB as AT_LEAST_1WAY.
For userptr mappings we lack a corresponding gem object, so the expected
coherency mode is instead implicit and must fall into either 1WAY or
2WAY. Trying to use NONE will be rejected by the kernel. For imported
dma-buf (from a different device) the coherency mode is also implicit
and must also be either 1WAY or 2WAY.
v2:
- Undefined coh_mode(pat_index) can now be treated as programmer
error. (Matt Roper)
- We now allow gem_create.coh_mode <= coh_mode(pat_index), rather than
having to match exactly. This ensures imported dma-buf can always
just use 1way (or even 2way), now that we also bundle 1way/2way into
at_least_1way. We still require 1way/2way for external dma-buf, but
the policy can now be the same for self-import, if desired.
- Use u16 for pat_index in uapi. u32 is massive overkill. (José)
- Move as much of the pat_index validation as we can into
vm_bind_ioctl_check_args. (José)
v3 (Matt Roper):
- Split the pte_encode() refactoring into separate patch.
v4:
- Rebase
v5:
- Check for and reject !coh_mode which would indicate hw reserved
pat_index on xe2.
v6:
- Rebase on removal of coh_mode from uapi. We just need to reject
cpu_caching=wb + pat_index with coh_none.
Testcase: igt@xe_pat
Bspec: 45101, 44235 #xe
Bspec: 70552, 71582, 59400 #xe2
Signed-off-by: Matthew Auld <matthew.auld@intel.com>
Cc: Pallavi Mishra <pallavi.mishra@intel.com>
Cc: Thomas Hellström <thomas.hellstrom@linux.intel.com>
Cc: Joonas Lahtinen <joonas.lahtinen@linux.intel.com>
Cc: Lucas De Marchi <lucas.demarchi@intel.com>
Cc: Matt Roper <matthew.d.roper@intel.com>
Cc: José Roberto de Souza <jose.souza@intel.com>
Cc: Filip Hazubski <filip.hazubski@intel.com>
Cc: Carl Zhang <carl.zhang@intel.com>
Cc: Effie Yu <effie.yu@intel.com>
Cc: Zhengguo Xu <zhengguo.xu@intel.com>
Cc: Francois Dugast <francois.dugast@intel.com>
Tested-by: José Roberto de Souza <jose.souza@intel.com>
Reviewed-by: José Roberto de Souza <jose.souza@intel.com>
Acked-by: Zhengguo Xu <zhengguo.xu@intel.com>
Acked-by: Bartosz Dunajski <bartosz.dunajski@intel.com>
Signed-off-by: Rodrigo Vivi <rodrigo.vivi@intel.com>
Diffstat (limited to 'include')
-rw-r--r-- | include/uapi/drm/xe_drm.h | 48 |
1 files changed, 47 insertions, 1 deletions
diff --git a/include/uapi/drm/xe_drm.h b/include/uapi/drm/xe_drm.h index ab7d1b26c773..1a844fa7af8a 100644 --- a/include/uapi/drm/xe_drm.h +++ b/include/uapi/drm/xe_drm.h @@ -636,8 +636,54 @@ struct drm_xe_vm_bind_op { */ __u32 obj; + /** + * @pat_index: The platform defined @pat_index to use for this mapping. + * The index basically maps to some predefined memory attributes, + * including things like caching, coherency, compression etc. The exact + * meaning of the pat_index is platform specific and defined in the + * Bspec and PRMs. When the KMD sets up the binding the index here is + * encoded into the ppGTT PTE. + * + * For coherency the @pat_index needs to be at least 1way coherent when + * drm_xe_gem_create.cpu_caching is DRM_XE_GEM_CPU_CACHING_WB. The KMD + * will extract the coherency mode from the @pat_index and reject if + * there is a mismatch (see note below for pre-MTL platforms). + * + * Note: On pre-MTL platforms there is only a caching mode and no + * explicit coherency mode, but on such hardware there is always a + * shared-LLC (or is dgpu) so all GT memory accesses are coherent with + * CPU caches even with the caching mode set as uncached. It's only the + * display engine that is incoherent (on dgpu it must be in VRAM which + * is always mapped as WC on the CPU). However to keep the uapi somewhat + * consistent with newer platforms the KMD groups the different cache + * levels into the following coherency buckets on all pre-MTL platforms: + * + * ppGTT UC -> COH_NONE + * ppGTT WC -> COH_NONE + * ppGTT WT -> COH_NONE + * ppGTT WB -> COH_AT_LEAST_1WAY + * + * In practice UC/WC/WT should only ever used for scanout surfaces on + * such platforms (or perhaps in general for dma-buf if shared with + * another device) since it is only the display engine that is actually + * incoherent. Everything else should typically use WB given that we + * have a shared-LLC. On MTL+ this completely changes and the HW + * defines the coherency mode as part of the @pat_index, where + * incoherent GT access is possible. + * + * Note: For userptr and externally imported dma-buf the kernel expects + * either 1WAY or 2WAY for the @pat_index. + * + * For DRM_XE_VM_BIND_FLAG_NULL bindings there are no KMD restrictions + * on the @pat_index. For such mappings there is no actual memory being + * mapped (the address in the PTE is invalid), so the various PAT memory + * attributes likely do not apply. Simply leaving as zero is one + * option (still a valid pat_index). + */ + __u16 pat_index; + /** @pad: MBZ */ - __u32 pad; + __u16 pad; union { /** |