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Date:   Wed, 10 Apr 2019 11:41:24 -0400
From:   jglisse@...hat.com
To:     linux-kernel@...r.kernel.org
Cc:     Jérôme Glisse <jglisse@...hat.com>,
        linux-rdma@...r.kernel.org, Jason Gunthorpe <jgg@...lanox.com>,
        Leon Romanovsky <leonro@...lanox.com>,
        Doug Ledford <dledford@...hat.com>,
        Artemy Kovalyov <artemyko@...lanox.com>,
        Moni Shoua <monis@...lanox.com>,
        Mike Marciniszyn <mike.marciniszyn@...el.com>,
        Kaike Wan <kaike.wan@...el.com>,
        Dennis Dalessandro <dennis.dalessandro@...el.com>
Subject: [PATCH v3 0/1] Use HMM for ODP v3

From: Jérôme Glisse <jglisse@...hat.com>

Changes since v1/v2 are about rebase and better comments in the code.
Previous cover letter slightly updated.


This patchset convert RDMA ODP to use HMM underneath this is motivated
by stronger code sharing for same feature (share virtual memory SVM or
Share Virtual Address SVA) and also stronger integration with mm code to
achieve that. It depends on HMM patchset posted for inclusion in 5.2 [2]
and [3].

It has been tested with pingpong test with -o and others flags to test
different size/features associated with ODP.

Moreover they are some features of HMM in the works like peer to peer
support, fast CPU page table snapshot, fast IOMMU mapping update ...
It will be easier for RDMA devices with ODP to leverage those if they
use HMM underneath.

Quick summary of what HMM is:
    HMM is a toolbox for device driver to implement software support for
    Share Virtual Memory (SVM). Not only it provides helpers to mirror a
    process address space on a device (hmm_mirror). It also provides
    helper to allow to use device memory to back regular valid virtual
    address of a process (any valid mmap that is not an mmap of a device
    or a DAX mapping). They are two kinds of device memory. Private memory
    that is not accessible to CPU because it does not have all the expected
    properties (this is for all PCIE devices) or public memory which can
    also be access by CPU without restriction (with OpenCAPI or CCIX or
    similar cache-coherent and atomic inter-connect).

    Device driver can use each of HMM tools separatly. You do not have to
    use all the tools it provides.

For RDMA device i do not expect a need to use the device memory support
of HMM. This device memory support is geared toward accelerator like GPU.


You can find a branch [1] with all the prerequisite in. This patch is on
top of rdma-next with the HMM patchset [2] and mmu notifier patchset [3]
applied on top of it.

[1] https://cgit.freedesktop.org/~glisse/linux/log/?h=rdma-5.2
[2] https://lkml.org/lkml/2019/4/3/1032
[3] https://lkml.org/lkml/2019/3/26/900

Cc: linux-rdma@...r.kernel.org
Cc: Jason Gunthorpe <jgg@...lanox.com>
Cc: Leon Romanovsky <leonro@...lanox.com>
Cc: Doug Ledford <dledford@...hat.com>
Cc: Artemy Kovalyov <artemyko@...lanox.com>
Cc: Moni Shoua <monis@...lanox.com>
Cc: Mike Marciniszyn <mike.marciniszyn@...el.com>
Cc: Kaike Wan <kaike.wan@...el.com>
Cc: Dennis Dalessandro <dennis.dalessandro@...el.com>

Jérôme Glisse (1):
  RDMA/odp: convert to use HMM for ODP v3

 drivers/infiniband/core/umem_odp.c | 486 ++++++++---------------------
 drivers/infiniband/hw/mlx5/mem.c   |  20 +-
 drivers/infiniband/hw/mlx5/mr.c    |   2 +-
 drivers/infiniband/hw/mlx5/odp.c   | 106 ++++---
 include/rdma/ib_umem_odp.h         |  48 ++-
 5 files changed, 219 insertions(+), 443 deletions(-)

-- 
2.20.1

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