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b35bf318af
also, quote the variabls in source code with double quote. Signed-off-by: Kefu Chai <kchai@redhat.com>
153 lines
6.3 KiB
ReStructuredText
153 lines
6.3 KiB
ReStructuredText
=========
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ceph-disk
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=========
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device-mapper crypt
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===================
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Settings
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--------
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``osd_dmcrypt_type``
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:Description: this option specifies the mode in which ``cryptsetup`` works. It can be ``luks`` or ``plain``. It kicks in only if the ``--dmcrypt`` option is passed to ``ceph-disk``. See also `cryptsetup document <https://gitlab.com/cryptsetup/cryptsetup/wikis/DMCrypt#configuration-using-cryptsetup>`_ for more details.
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:Type: String
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:Default: ``luks``
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``osd_dmcrypt_key_size``
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:Description: the size of the random string in bytes used as the LUKS key. The string is read from ``/dev/urandom`` and then encoded using base64. It will be stored with the key of ``dm-crypt/osd/$uuid/luks`` using config-key.
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:Type: String
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:Default: 1024 if ``osd_dmcrypt_type`` is ``luks``, 256 otherwise.
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lockbox
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-------
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``ceph-disk`` supports dmcrypt (device-mapper crypt). If dmcrypt is enabled, the partitions will be encrypted using this machinary. For each OSD device, a lockbox is introduced for holding the information regarding how the dmcrypt key is stored. To prepare a lockbox, ``ceph-disk``
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#. creates a dedicated lockbox partition on device, and
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#. populates it with a tiny filesystem, then
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#. automounts it at ``/var/lib/ceph/osd-lockbox/$uuid``, read-only. where the ``uuid`` is the lockbox's uuid.
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under which, settings are stored using plain files:
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- key-management-mode: ``ceph-mon v1``
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- osd-uuid: the OSD's uuid
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- ceph_fsid: the fsid of the cluster
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- keyring: the lockbox's allowing one to fetch the LUKS key
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- block_uuid: the partition uuid for the block device
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- journal_uuid: the partition uuid for the journal device
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- block.db_uuid: the partition uuid for the block.db device
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- block.wal_uuid: the partition uuid for the block.wal device
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- magic: a magic string indicating that this partition is a lockbox. It's not used currently.
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- ``${space_uuid}``: symbolic links named after the uuid of space partitions pointing to ``/var/lib/ceph/osd-lockbox/$uuid``. in the case of FileStore, the space partitions are ``data`` and ``journal`` partitions, for BlueStore, they are ``data``, ``block.db`` and ``block.wal``.
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Currently, ``ceph-mon v1`` is the only supported key-management-mode. In that case, the LUKS key is stored using the config-key in the monitor store with the key of ``dm-crypt/osd/$uuid/luks``.
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partitions
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==========
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``ceph-disk`` creates partitions for preparing a device for OSD deployment. Their partition numbers are hardcoded. For instance, data partition's partition number is always *1* :
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1. data partition
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2. journal partition, if co-located with data
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3. block.db for BlueStore, if co-located with data
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4. block.wal for BlueStore, if co-located with data
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5. lockbox
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prepare class hierarchy
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=======================
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The ``ceph-disk`` prepare class hierarchy can be challenging to read
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and this guide is designed to explain how it is structured.
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The ``Prepare`` class roughly replaces the ``prepare_main`` function but also
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handles the ``prepare`` subcommand argument parsing. It creates the data
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and journal objects and delegate the actual work to them via the
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``prepare()`` method.
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The ``Prepare`` class assumes that preparing an OSD consists of the
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following phases:
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* optionally prepare auxiliary devices, such as the journal
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* prepare a data directory or device
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* populate the data directory with fsid etc. and optionally symbolic
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links to the auxiliary devices
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The ``PrepareFilestore`` class is derived from ``Prepare`` and implements the
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current model where there only is one auxiliary device, the journal. It
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utilizes ``PrepareJournal`` and ``PrepareFilestoredata`` for preparing its
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journal and its data directory respectively. The latter is a derived class
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of ``PrepareData``.
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The ``PrepareJournal`` class implements the *journal* functions and is
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based on a generic class ``PrepareSpace``, which handles the allocation of
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an auxiliary device. The only journal specific feature is left to the
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``PrepareJournal`` class: querying the OSD to figure out if a journal is
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wanted or not.
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The OSD data directory is prepared via the ``PrepareData`` class. It
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creates a file system if necessary (i.e. if a device) and populates the
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data directory. Further preparation is then delegated to the auxiliary
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devices (i.e. adding a symlink to the device for a journal).
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There was some code paths related dmcrypt / multipath devices in the
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prepare functions, although it is orthogonal. A class tree for ``Devices``
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was created to isolate that.
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Although that was the primary reason for adding a new class tree, two
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other aspects have also been moved there: ``ptypes`` (i.e. partition
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types) and partition creation. The ``ptypes`` are organized into a data
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structure with a few helpers in the hope that it will be easier to
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maintain. All references to the ``*_UUID`` variables have been
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updated.
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The creation of a partition is delegated to sgdisk and a wrapper helps
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reduce the code redundancy.
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The ``ptype`` of a given partition depends on the type of the device (is
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it dmcrypt'ed or a multipath device ?). It is best implemented by
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derivation so the prepare function does not need to be concerned about
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how the ``ptype`` of a partition is determined.
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Many functions could be refactored into a ``Device`` class and its
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derivatives, but that was not done to minimize the size of the
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refactor.
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* ``Device`` knows how to create a partition and figure out the ``ptype`` ``tobe``
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* ``DevicePartition`` a regular device partition
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* ``DevicePartitionMultipath`` a partition of a multipath device
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* ``DevicePartitionCrypt`` base class for luks/plain dmcrypt, can map/unmap
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* ``DevicePartitionCryptPlain`` knows how to setup dmcrypt plain
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* ``DevicePartitionCryptLuks`` knows how to setup dmcrypt luks
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The ``CryptHelpers`` class is introduced to factorize the code snippets
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that were duplicated in various places but that do not really belong
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because they are convenience wrappers to figure out:
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* if dcmrypt should be used
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* the keysize
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* the dmcrypt type (plain or luks)
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state transition of partitions
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==============================
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.. ditaa::
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/--------\ /---------\ /----------\
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| unused | ---------> | created |---------> | prepared |
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| | | (tobe) | | (ready) |
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\--------/ \---------/ \----------/
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| ^
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| /---------\ |
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+-----| zapped | -----+
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zap-disk | |
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\---------/
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