On 07/19/2015 09:07 AM, Sagi Grimberg wrote:
On 7/16/2015 6:25 PM, Bart Van Assche wrote:
As you probably know for write requests "immediate data" means sending
the data in the same packet as the write command instead of sending it
as a separate packet. This approach improves performance and reduces
latency. Although support for immediate data has not been standardized,

Has anyone tried to get it into the standard? It would seem beneficial
to just add it. I wouldn't want this to be a Linux compatible only
feature...

Earlier today I have asked the SanDisk representative in the ANSI T10 committee for his opinion about standardizing support for immediate data for the SRP protocol. I'm now waiting for his reply.

it is easy to add to the SRP initiator and target drivers.
Implementations exist in the ib_srp-backport initiator driver and the
SCST SRP target driver (see also
https://github.com/bvanassche/ib_srp-backport and
http://sourceforge.net/p/scst/svn/HEAD/tree/trunk/srpt/). These
implementations are available since considerable time, work reliably,
are backwards compatible and support zero-copy. Since using immediate
data provides a measurable performance improvement I'm wondering whether
it would be acceptable to add support for immediate data to the SRP
drivers in the Linux kernel tree (ib_srp and ib_srpt) ?

Was this tested against any other array besides SCST and LIO? I know
people are using SRP against various arrays (Oracle ZFS, RamSan TMS,
DDN Fusion, NIMBUS, NetApp E5400A...). Their not running upstream
kernels, but they will catch up at some point...

Not yet, but the existing implementation is backwards compatible. The SRP initiator sets a flag in the login request to request the target driver to enable immediate data (SRP_BUF_FORMAT_IMM), and only if the target driver sends a login response in which the same flag is set immediate data is enabled. Immediate data could only be enabled when it should not be enabled if an SRP target sets other flags in its login reply than those that have been standardized by the ANSI T10 committee.

Bart.

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