On 21/08/26 16:02:18, Jorge Ramirez wrote:
> On 17/08/26 16:38:40, Jorge Ramirez wrote:
> > On 07/08/26 16:01:05, Jorge Ramirez-Ortiz wrote:
> > > OP-TEE secure storage (CFG_RPMB_FS) relies on an RPMB partition, but
> > > U-Boot's OP-TEE RPMB supplicant only speaks the legacy single-command
> > > interface, which is bound to eMMC. SoCs that are UFS-only and have no
> > > eMMC (for example the Qualcomm SA8775P) therefore cannot back OP-TEE
> > > secure storage from U-Boot today. This series adds that support.
> > > 
> > > It introduces the transport-agnostic OP-TEE RPMB "subsystem" interface
> > > (PROBE_RESET / PROBE_NEXT / FRAMES), where the normal world enumerates
> > > the RPMB device and reports its kind, size and CID, then carries the
> > > signed frames. The legacy eMMC supplicant is preserved unchanged, only
> > > renamed to rpmb_emmc.c, with the new UFS backend added as a separate
> > > rpmb_ufs.c; the two are mutually exclusive via Kconfig (SUPPORT_UFS_RPMB
> > > depends on !SUPPORT_EMMC_RPMB) because the OP-TEE supplicant handles a
> > > single RPMB transport. The subsystem interface is UFS-only for now; eMMC
> > > can be migrated onto it later as the legacy path is retired.
> > > 
> > > On top of that it adds a UFS RPMB transport that moves JEDEC RPMB frames
> > > to and from the RPMB Well-Known LUN using SCSI SECURITY PROTOCOL IN/OUT.
> > > The per-region 16-byte CID is derived by BLAKE2b-hashing the exact
> > > device-id string the Linux kernel builds (ufshcd_create_device_id()
> > > plus a "-R<region>" suffix), so OP-TEE derives an RPMB key that matches
> > > the one Linux would use.
> > > 
> > > The first patch is a standalone UFS descriptor fix the RPMB path depends
> > > on (UTF-16BE string decoding); the transport patches also include a
> > > power-on UNIT ATTENTION retry and a DMA-alignment bounce for the RPMB
> > > WLUN.
> > > 
> > > Note: reading UFS descriptors reliably also requires the descriptor
> > > data-segment cache-invalidation fix, which has already been posted and
> > > merged separately, so this series is based on top of it.
> > > 
> > > Tested on the Qualcomm IQ-9075-EVK (SA8775P): OP-TEE with CFG_RPMB_FS
> > > programs the RPMB key through U-Boot and reads/writes secure-storage
> > > objects, with the derived CID matching the Linux UFS device_id ABI.
> > > 
> > > Dependencies:
> > > Linux kernel:
> > >  
> > > https://lore.kernel.org/linux-scsi/[email protected]/
> > > Op-tee
> > >  https://github.com/OP-TEE/optee_os/pull/7881
> > > 
> > > v4:
> > >  - ufs: decode string descriptors: dropped the in-place
> > >    ufshcd_str_desc_to_cpu() byte-swap helper; instead added an endian
> > >    argument to utf16_to_utf8() (UTF16_HOST/LITTLE/BIG_ENDIAN) and decode
> > >    with UTF16_BIG_ENDIAN, mirroring the kernel's utf16s_to_utf8s().
> > >    Existing EFI callers pass UTF16_HOST_ENDIAN.
> > >  - ufs: RPMB transport: build the SECURITY PROTOCOL CDB with
> > >    put_unaligned_be16()/put_unaligned_be32(); drop the
> > >    rpmb_frame_request() helper in favour of get_unaligned_be16(); move
> > >    ufs_rpmb_read_geometry() to the patch that first uses it so it is not
> > >    an unused static function during git bisect.
> > >  - ufs: per-region CID/size: reject an out-of-range device-reported
> > >    logical block size before shifting and split the size computation into
> > >    separate statements for readability; order <u-boot/...> after
> > >    <linux/...>; note that the serial hex encoding matches the kernel
> > >    device-id ABI.
> > > 
> > 
> > any further comments, is it ok to merge?
> > 
> 
> EOW reminder - this has been pending for a long while


anyone care to comment please? 

Reply via email to