Changpeng Liu d7120a3ee8 nvme: Fix max I/O size enforcement when no stripe size is specified
Intel DC P3*** NVMe devices specify a desired stripe size, which was
used for splitting I/O. Not all devices, however, specify a desired
stripe size (such as the Intel DC D3*** line), and for only these
devices there was a logic mistake that overwrote the maximum I/O
size with a 2MB default. This patch corrects that error.

Change-Id: I94b72a3a3dd1dfa18bd638daf7e01a592eb6ed17
Signed-off-by: Changpeng Liu <changpeng.liu@intel.com>
Signed-off-by: Ben Walker <benjamin.walker@intel.com>
2016-08-25 08:51:16 -07:00
2016-08-05 09:08:23 -07:00
2015-09-23 09:05:51 -07:00
2015-11-04 11:05:59 -07:00
2016-05-18 13:51:36 -07:00
2016-08-05 12:50:36 -07:00
2016-01-28 08:54:18 -07:00
2015-09-28 09:07:19 -07:00

Storage Performance Development Kit

Build Status

SPDK Mailing List

SPDK on 01.org

The Storage Performance Development Kit (SPDK) provides a set of tools and libraries for writing high performance, scalable, user-mode storage applications. It achieves high performance by moving all of the necessary drivers into userspace and operating in a polled mode instead of relying on interrupts, which avoids kernel context switches and eliminates interrupt handling overhead.

The development kit currently includes:

  • NVMe driver
  • I/OAT (DMA engine) driver
  • NVMe over Fabrics target

Documentation

Doxygen API documentation is available, as well as a Porting Guide for porting SPDK to different frameworks and operating systems.

Many examples are available in the examples directory.

Changelog

Prerequisites

To build SPDK, some dependencies must be installed.

Fedora/CentOS:

sudo dnf install -y gcc gcc-c++ libpciaccess-devel CUnit-devel libaio-devel openssl-devel
# Additional dependencies for NVMe over Fabrics:
sudo dnf install -y libibverbs-devel librdmacm-devel

Ubuntu/Debian:

sudo apt-get install -y gcc g++ libpciaccess-dev make libcunit1-dev libaio-dev libssl-dev
# Additional dependencies for NVMe over Fabrics:
sudo apt-get install -y libibverbs-dev librdmacm-dev

FreeBSD:

  • gcc
  • libpciaccess
  • gmake
  • cunit
  • openssl

Additionally, DPDK is required.

1) cd /path/to/spdk
2) wget http://fast.dpdk.org/rel/dpdk-16.07.tar.xz
3) tar xf dpdk-16.07.tar.xz

Linux:

4) (cd dpdk-16.07 && make install T=x86_64-native-linuxapp-gcc DESTDIR=.)

FreeBSD:

4) (cd dpdk-16.07 && gmake install T=x86_64-native-bsdapp-clang DESTDIR=.)

Building

Once the prerequisites are installed, run 'make' within the SPDK directory to build the SPDK libraries and examples.

make DPDK_DIR=/path/to/dpdk

If you followed the instructions above for building DPDK:

Linux:

make DPDK_DIR=./dpdk-16.07/x86_64-native-linuxapp-gcc

FreeBSD:

gmake DPDK_DIR=./dpdk-16.07/x86_64-native-bsdapp-clang

Hugepages and Device Binding

Before running an SPDK application, some hugepages must be allocated and any NVMe and I/OAT devices must be unbound from the native kernel drivers. SPDK includes a script to automate this process on both Linux and FreeBSD. This script should be run as root.

sudo scripts/setup.sh

Examples

Example code is located in the examples directory. The examples are compiled automatically as part of the build process. Simply call any of the examples with no arguments to see the help output. You'll likely need to run the examples as a privileged user (root) unless you've done additional configuration to grant your user permission to allocate huge pages and map devices through vfio.

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