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e4b0a90e77
Rather then combining hardlink creation for the geom(8) binary with shared library build, move libraries to src/lib/geom so they are built and installed normally. Create a common Makefile.classes which is included by both lib/geom/Makefile and sbin/geom/Makefile so the symlink and libraries stay in sync. The relocation of libraries allows libraries to be build for 32-bit compat. This also reduces the number of non-standard builds in the system. This commit is not sufficent to run a 32-bit /sbin/geom on a 64-bit system out of the box as it will look in the wrong place for libraries unless GEOM_LIBRARY_PATH is set appropriatly in the environment. Reviewed by: bdrewery Sponsored by: DARPA, AFRL Differential Revision: https://reviews.freebsd.org/D15360
378 lines
11 KiB
Groff
378 lines
11 KiB
Groff
.\" Copyright (c) 2007 Matthew Jacob
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.\" All rights reserved.
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.\"
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.\" Redistribution and use in source and binary forms, with or without
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.\" modification, are permitted provided that the following conditions
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.\" are met:
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.\" 1. Redistributions of source code must retain the above copyright
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.\" notice, this list of conditions and the following disclaimer.
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.\" 2. Redistributions in binary form must reproduce the above copyright
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.\" notice, this list of conditions and the following disclaimer in the
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.\" documentation and/or other materials provided with the distribution.
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.\"
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.\" THIS SOFTWARE IS PROVIDED BY THE AUTHORS AND CONTRIBUTORS ``AS IS'' AND
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.\" ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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.\" IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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.\" ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE LIABLE
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.\" FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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.\" DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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.\" OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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.\" HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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.\" LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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.\" OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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.\" SUCH DAMAGE.
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.\"
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.\" $FreeBSD$
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.\"
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.Dd September 8, 2016
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.Dt GMULTIPATH 8
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.Os
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.Sh NAME
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.Nm gmultipath
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.Nd "disk multipath control utility"
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.Sh SYNOPSIS
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.Nm
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.Cm create
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.Op Fl ARv
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.Ar name
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.Ar prov ...
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.Nm
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.Cm label
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.Op Fl ARv
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.Ar name
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.Ar prov ...
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.Nm
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.Cm configure
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.Op Fl APRv
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.Ar name
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.Nm
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.Cm add
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.Op Fl v
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.Ar name prov
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.Nm
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.Cm remove
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.Op Fl v
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.Ar name prov
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.Nm
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.Cm fail
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.Op Fl v
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.Ar name prov
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.Nm
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.Cm restore
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.Op Fl v
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.Ar name prov
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.Nm
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.Cm rotate
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.Op Fl v
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.Ar name
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.Nm
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.Cm prefer
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.Op Fl v
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.Ar name
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.Ar prov
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.Nm
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.Cm getactive
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.Op Fl v
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.Ar name
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.Nm
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.Cm destroy
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.Op Fl v
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.Ar name
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.Nm
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.Cm stop
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.Op Fl v
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.Ar name
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.Nm
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.Cm clear
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.Op Fl v
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.Ar prov ...
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.Nm
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.Cm list
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.Nm
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.Cm status
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.Nm
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.Cm load
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.Nm
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.Cm unload
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.Sh DESCRIPTION
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The
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.Nm
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utility is used for device multipath configuration.
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.Pp
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The multipath device can be configured using two different methods:
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.Dq manual
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or
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.Dq automatic .
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When using the
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.Dq manual
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method, no metadata are stored on the devices, so the multipath
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device has to be configured by hand every time it is needed.
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Additional device paths also will not be detected automatically.
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The
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.Dq automatic
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method uses on-disk metadata to detect device and all its paths.
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Metadata use the last sector of the underlying disk device and
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include device name and UUID.
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The UUID guarantees uniqueness in a shared storage environment
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but is in general too cumbersome to use.
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The name is what is exported via the device interface.
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.Pp
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The first argument to
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.Nm
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indicates an action to be performed:
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.Bl -tag -width ".Cm destroy"
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.It Cm create
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Create multipath device with
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.Dq manual
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method without writing any on-disk metadata.
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It is up to administrator, how to properly identify device paths.
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Kernel will only check that all given providers have same media and
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sector sizes.
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.Pp
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.Fl A
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option enables Active/Active mode,
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.Fl R
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option enables Active/Read mode, otherwise Active/Passive mode is used
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by default.
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.It Cm label
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Create multipath device with
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.Dq automatic
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method.
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Label the first given provider with on-disk metadata using the specified
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.Ar name .
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The rest of given providers will be retasted to detect these metadata.
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It reliably protects against specifying unrelated providers.
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Providers with no matching metadata detected will not be added to the device.
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.Pp
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.Fl A
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option enables Active/Active mode,
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.Fl R
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option enables Active/Read mode, otherwise Active/Passive mode is used
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by default.
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.It Cm configure
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Configure the given multipath device.
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.Pp
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.Fl A
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option enables Active/Active mode,
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.Fl P
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option enables Active/Passive mode,
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.Fl R
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option enables Active/Read mode.
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.It Cm add
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Add the given provider as a path to the given multipath device.
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Should normally be used only for devices created with
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.Dq manual
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method, unless you know what you are doing (you are sure that it is another
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device path, but tasting its metadata in regular
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.Dq automatic
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way is not possible).
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.It Cm remove
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Remove the given provider as a path from the given multipath device.
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If the last path removed, the multipath device will be destroyed.
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.It Cm fail
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Mark specified provider as a path of the specified multipath device as failed.
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If there are other paths present, new requests will be forwarded there.
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.It Cm restore
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Mark specified provider as a path of the specified multipath device as
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operational, allowing it to handle requests.
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.It Cm rotate
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Change the active provider/path to the next available provider in Active/Passive mode.
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.It Cm prefer
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Change the active provider/path to the specified provider in Active/Passive mode.
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.It Cm getactive
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Get the currently active provider(s)/path(s).
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.It Cm destroy
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Destroy the given multipath device clearing metadata.
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.It Cm stop
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Stop the given multipath device without clearing metadata.
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.It Cm clear
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Clear metadata on the given provider.
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.It Cm list
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See
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.Xr geom 8 .
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.It Cm status
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See
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.Xr geom 8 .
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.It Cm load
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See
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.Xr geom 8 .
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.It Cm unload
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See
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.Xr geom 8 .
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.El
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.Sh SYSCTL VARIABLES
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The following
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.Xr sysctl 8
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variable can be used to control the behavior of the
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.Nm MULTIPATH
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GEOM class.
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.Bl -tag -width indent
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.It Va kern.geom.multipath.debug : No 0
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Debug level of the
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.Nm MULTIPATH
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GEOM class.
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This can be set to 0 (default) or 1 to disable or enable various
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forms of chattiness.
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.It Va kern.geom.multipath.exclusive : No 1
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Open underlying providers exclusively, preventing individual paths access.
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.El
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.Sh EXIT STATUS
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Exit status is 0 on success, and 1 if the command fails.
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.Sh MULTIPATH ARCHITECTURE
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This is a multiple path architecture with no device knowledge or
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presumptions other than size matching built in.
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Therefore the user must exercise some care
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in selecting providers that do indeed represent multiple paths to the
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same underlying disk device.
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The reason for this is that there are several
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criteria across multiple underlying transport types that can
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.Ar indicate
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identity, but in all respects such identity can rarely be considered
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.Ar definitive .
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.Pp
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For example, if you use the World Word Port Name of a Fibre Channel
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disk object you might believe that two disks that have the same WWPN
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on different paths (or even disjoint fabrics) might be considered
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the same disk.
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Nearly always this would be a safe assumption, until
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you realize that a WWPN, like an Ethernet MAC address, is a soft
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programmable entity, and that a misconfigured Director Class switch
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could lead you to believe incorrectly that you have found multiple
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paths to the same device.
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This is an extreme and theoretical case, but
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it is possible enough to indicate that the policy for deciding which
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of multiple pathnames refer to the same device should be left to the
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system operator who will use tools and knowledge of their own storage
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subsystem to make the correct configuration selection.
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.Pp
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There are Active/Passive, Active/Read and Active/Active operation modes
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supported.
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In Active/Passive mode only one path has I/O moving on it
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at any point in time.
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This I/O continues until an I/O is returned with
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a generic I/O error or a "Nonexistent Device" error.
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When this occurs, that path is marked FAIL, the next path
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in a list is selected as active and the failed I/O reissued.
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In Active/Active mode all paths not marked FAIL may handle I/O at the same time.
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Requests are distributed between paths to equalize load.
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For capable devices it allows the utilisation of the bandwidth available on all paths.
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In Active/Read mode all paths not marked FAIL may handle reads at the same time,
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but unlike in Active/Active mode only one path handles write requests at any
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point in time; closely following the original write request order if the layer
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above needs it for data consistency (not waiting for requisite write completion
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before sending dependent write).
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.Pp
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When new devices are added to the system the
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.Nm MULTIPATH
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GEOM class is given an opportunity to taste these new devices.
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If a new
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device has a
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.Nm MULTIPATH
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on-disk metadata label, the device is either used to create a new
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.Nm MULTIPATH
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GEOM, or added to the list of paths for an existing
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.Nm MULTIPATH
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GEOM.
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.Pp
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It is this mechanism that works reasonably with
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.Xr isp 4
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and
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.Xr mpt 4
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based Fibre Channel disk devices.
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For these devices, when a device disappears
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(due to e.g., a cable pull or power failure to a switch), the device is
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proactively marked as gone and I/O to it failed.
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This causes the
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.Nm MULTIPATH
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failure event just described.
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.Pp
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When Fibre Channel events inform either
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.Xr isp 4
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or
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.Xr mpt 4
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host bus adapters that new devices may have arrived (e.g., the arrival
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of an RSCN event from the Fabric Domain Controller), they can cause
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a rescan to occur and cause the attachment and configuration of any
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(now) new devices to occur, causing the taste event described above.
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.Pp
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This means that this multipath architecture is not a one-shot path
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failover, but can be considered to be steady state as long as failed
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paths are repaired (automatically or otherwise).
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.Pp
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Automatic rescanning is not a requirement.
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Nor is Fibre Channel.
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The
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same failover mechanisms work equally well for traditional "Parallel"
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SCSI but may require manual intervention with
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.Xr camcontrol 8
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to cause the reattachment of repaired device links.
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.Sh EXAMPLES
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The following example shows how to use
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.Xr camcontrol 8
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to find possible multiple path devices and to create a
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.Nm MULTIPATH
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GEOM class for them.
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.Bd -literal -offset indent
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mysys# camcontrol devlist
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<ECNCTX @WESTVILLE > at scbus0 target 0 lun 0 (da0,pass0)
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<ECNCTX @WESTVILLE > at scbus0 target 0 lun 1 (da1,pass1)
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<ECNCTX @WESTVILLE > at scbus1 target 0 lun 0 (da2,pass2)
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<ECNCTX @WESTVILLE > at scbus1 target 0 lun 1 (da3,pass3)
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mysys# camcontrol inquiry da0 -S
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ECNTX0LUN000000SER10ac0d01
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mysys# camcontrol inquiry da2 -S
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ECNTX0LUN000000SER10ac0d01
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.Ed
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.Pp
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Now that you have used the Serial Number to compare two disk paths
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it is not entirely unreasonable to conclude that these are multiple
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paths to the same device.
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However, only the user who is familiar
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with their storage is qualified to make this judgement.
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.Pp
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You can then use the
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.Nm
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command to label and create a
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.Nm MULTIPATH
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GEOM provider named
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.Ar FRED .
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.Bd -literal -offset indent
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gmultipath label -v FRED /dev/da0 /dev/da2
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disklabel -Brw /dev/multipath/FRED auto
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newfs /dev/multipath/FREDa
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mount /dev/multipath/FREDa /mnt....
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.Ed
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.Pp
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The resultant console output looks something like:
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.Bd -literal -offset indent
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GEOM_MULTIPATH: da0 added to FRED
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GEOM_MULTIPATH: da0 is now active path in FRED
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GEOM_MULTIPATH: da2 added to FRED
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.Ed
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.Pp
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To load the
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.Nm
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module at boot time, add this entry to
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.Pa /boot/loader.conf :
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.Bd -literal -offset ident
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geom_multipath_load="YES"
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.Ed
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.Sh SEE ALSO
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.Xr geom 4 ,
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.Xr isp 4 ,
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.Xr mpt 4 ,
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.Xr loader.conf 5 ,
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.Xr camcontrol 8 ,
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.Xr geom 8 ,
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.Xr mount 8 ,
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.Xr newfs 8 ,
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.Xr sysctl 8
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.Sh HISTORY
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The
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.Nm
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utility first appeared in
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.Fx 7.0
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.Sh AUTHORS
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.An Matthew Jacob Aq Mt mjacob@FreeBSD.org
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.An Alexander Motin Aq Mt mav@FreeBSD.org
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