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80c0adcb 1[[chapter_pveceph]]
0840a663 2ifdef::manvolnum[]
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3pveceph(1)
4==========
404a158e 5:pve-toplevel:
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6
7NAME
8----
9
21394e70 10pveceph - Manage Ceph Services on Proxmox VE Nodes
0840a663 11
49a5e11c 12SYNOPSIS
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13--------
14
15include::pveceph.1-synopsis.adoc[]
16
17DESCRIPTION
18-----------
19endif::manvolnum[]
0840a663 20ifndef::manvolnum[]
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21Manage Ceph Services on Proxmox VE Nodes
22========================================
49d3ad91 23:pve-toplevel:
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24endif::manvolnum[]
25
1ff5e4e8 26[thumbnail="screenshot/gui-ceph-status.png"]
8997dd6e 27
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28{pve} unifies your compute and storage systems, i.e. you can use the same
29physical nodes within a cluster for both computing (processing VMs and
30containers) and replicated storage. The traditional silos of compute and
31storage resources can be wrapped up into a single hyper-converged appliance.
32Separate storage networks (SANs) and connections via network attached storages
33(NAS) disappear. With the integration of Ceph, an open source software-defined
34storage platform, {pve} has the ability to run and manage Ceph storage directly
35on the hypervisor nodes.
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36
37Ceph is a distributed object store and file system designed to provide
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38excellent performance, reliability and scalability.
39
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40.Some advantages of Ceph on {pve} are:
41- Easy setup and management with CLI and GUI support
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42- Thin provisioning
43- Snapshots support
44- Self healing
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45- Scalable to the exabyte level
46- Setup pools with different performance and redundancy characteristics
47- Data is replicated, making it fault tolerant
48- Runs on economical commodity hardware
49- No need for hardware RAID controllers
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50- Open source
51
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52For small to mid sized deployments, it is possible to install a Ceph server for
53RADOS Block Devices (RBD) directly on your {pve} cluster nodes, see
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54xref:ceph_rados_block_devices[Ceph RADOS Block Devices (RBD)]. Recent
55hardware has plenty of CPU power and RAM, so running storage services
56and VMs on the same node is possible.
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57
58To simplify management, we provide 'pveceph' - a tool to install and
59manage {ceph} services on {pve} nodes.
60
127ca409 61.Ceph consists of a couple of Daemons footnote:[Ceph intro http://docs.ceph.com/docs/luminous/start/intro/], for use as a RBD storage:
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62- Ceph Monitor (ceph-mon)
63- Ceph Manager (ceph-mgr)
64- Ceph OSD (ceph-osd; Object Storage Daemon)
65
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66TIP: We highly recommend to get familiar with Ceph's architecture
67footnote:[Ceph architecture http://docs.ceph.com/docs/luminous/architecture/]
68and vocabulary
69footnote:[Ceph glossary http://docs.ceph.com/docs/luminous/glossary].
1d54c3b4 70
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71
72Precondition
73------------
74
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75To build a hyper-converged Proxmox + Ceph Cluster there should be at least
76three (preferably) identical servers for the setup.
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77
78Check also the recommendations from
1d54c3b4 79http://docs.ceph.com/docs/luminous/start/hardware-recommendations/[Ceph's website].
21394e70 80
76f6eca4 81.CPU
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82Higher CPU core frequency reduce latency and should be preferred. As a simple
83rule of thumb, you should assign a CPU core (or thread) to each Ceph service to
84provide enough resources for stable and durable Ceph performance.
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85
86.Memory
87Especially in a hyper-converged setup, the memory consumption needs to be
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88carefully monitored. In addition to the intended workload from virtual machines
89and container, Ceph needs enough memory available to provide good and stable
90performance. As a rule of thumb, for roughly 1 TiB of data, 1 GiB of memory
91will be used by an OSD. OSD caching will use additional memory.
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92
93.Network
94We recommend a network bandwidth of at least 10 GbE or more, which is used
95exclusively for Ceph. A meshed network setup
96footnote:[Full Mesh Network for Ceph {webwiki-url}Full_Mesh_Network_for_Ceph_Server]
97is also an option if there are no 10 GbE switches available.
98
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99The volume of traffic, especially during recovery, will interfere with other
100services on the same network and may even break the {pve} cluster stack.
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101
102Further, estimate your bandwidth needs. While one HDD might not saturate a 1 Gb
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103link, multiple HDD OSDs per node can, and modern NVMe SSDs will even saturate
10410 Gbps of bandwidth quickly. Deploying a network capable of even more bandwith
105will ensure that it isn't your bottleneck and won't be anytime soon, 25, 40 or
106even 100 GBps are possible.
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107
108.Disks
109When planning the size of your Ceph cluster, it is important to take the
110recovery time into consideration. Especially with small clusters, the recovery
111might take long. It is recommended that you use SSDs instead of HDDs in small
112setups to reduce recovery time, minimizing the likelihood of a subsequent
113failure event during recovery.
114
2f19a6b0 115In general SSDs will provide more IOPs than spinning disks. This fact and the
76f6eca4 116higher cost may make a xref:pve_ceph_device_classes[class based] separation of
2f19a6b0 117pools appealing. Another possibility to speedup OSDs is to use a faster disk
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118as journal or DB/**W**rite-**A**head-**L**og device, see
119xref:pve_ceph_osds[creating Ceph OSDs]. If a faster disk is used for multiple
120OSDs, a proper balance between OSD and WAL / DB (or journal) disk must be
121selected, otherwise the faster disk becomes the bottleneck for all linked OSDs.
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122
123Aside from the disk type, Ceph best performs with an even sized and distributed
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124amount of disks per node. For example, 4 x 500 GB disks with in each node is
125better than a mixed setup with a single 1 TB and three 250 GB disk.
126
127One also need to balance OSD count and single OSD capacity. More capacity
128allows to increase storage density, but it also means that a single OSD
129failure forces ceph to recover more data at once.
76f6eca4 130
a474ca1f 131.Avoid RAID
86be506d 132As Ceph handles data object redundancy and multiple parallel writes to disks
c78756be 133(OSDs) on its own, using a RAID controller normally doesn’t improve
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134performance or availability. On the contrary, Ceph is designed to handle whole
135disks on it's own, without any abstraction in between. RAID controller are not
136designed for the Ceph use case and may complicate things and sometimes even
137reduce performance, as their write and caching algorithms may interfere with
138the ones from Ceph.
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139
140WARNING: Avoid RAID controller, use host bus adapter (HBA) instead.
141
76f6eca4 142NOTE: Above recommendations should be seen as a rough guidance for choosing
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143hardware. Therefore, it is still essential to adapt it to your specific needs,
144test your setup and monitor health and performance continuously.
76f6eca4 145
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146[[pve_ceph_install_wizard]]
147Initial Ceph installation & configuration
148-----------------------------------------
149
150[thumbnail="screenshot/gui-node-ceph-install.png"]
151
152With {pve} you have the benefit of an easy to use installation wizard
153for Ceph. Click on one of your cluster nodes and navigate to the Ceph
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154section in the menu tree. If Ceph is not already installed you will be
155offered to do so now.
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156
157The wizard is divided into different sections, where each needs to be
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158finished successfully in order to use Ceph. After starting the installation
159the wizard will download and install all required packages from {pve}'s ceph
160repository.
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161
162After finishing the first step, you will need to create a configuration.
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163This step is only needed once per cluster, as this configuration is distributed
164automatically to all remaining cluster members through {pve}'s clustered
165xref:chapter_pmxcfs[configuration file system (pmxcfs)].
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166
167The configuration step includes the following settings:
168
169* *Public Network:* You should setup a dedicated network for Ceph, this
170setting is required. Separating your Ceph traffic is highly recommended,
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171because it could lead to troubles with other latency dependent services,
172e.g., cluster communication may decrease Ceph's performance, if not done.
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173
174[thumbnail="screenshot/gui-node-ceph-install-wizard-step2.png"]
175
176* *Cluster Network:* As an optional step you can go even further and
177separate the xref:pve_ceph_osds[OSD] replication & heartbeat traffic
178as well. This will relieve the public network and could lead to
179significant performance improvements especially in big clusters.
180
181You have two more options which are considered advanced and therefore
182should only changed if you are an expert.
183
184* *Number of replicas*: Defines the how often a object is replicated
185* *Minimum replicas*: Defines the minimum number of required replicas
6a711e64 186 for I/O to be marked as complete.
2394c306 187
6a711e64 188Additionally you need to choose your first monitor node, this is required.
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189
190That's it, you should see a success page as the last step with further
191instructions on how to go on. You are now prepared to start using Ceph,
192even though you will need to create additional xref:pve_ceph_monitors[monitors],
193create some xref:pve_ceph_osds[OSDs] and at least one xref:pve_ceph_pools[pool].
194
195The rest of this chapter will guide you on how to get the most out of
196your {pve} based Ceph setup, this will include aforementioned and
197more like xref:pveceph_fs[CephFS] which is a very handy addition to your
198new Ceph cluster.
21394e70 199
58f95dd7 200[[pve_ceph_install]]
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201Installation of Ceph Packages
202-----------------------------
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203Use {pve} Ceph installation wizard (recommended) or run the following
204command on each node:
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205
206[source,bash]
207----
19920184 208pveceph install
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209----
210
211This sets up an `apt` package repository in
212`/etc/apt/sources.list.d/ceph.list` and installs the required software.
213
214
215Creating initial Ceph configuration
216-----------------------------------
217
1ff5e4e8 218[thumbnail="screenshot/gui-ceph-config.png"]
8997dd6e 219
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220Use the {pve} Ceph installation wizard (recommended) or run the
221following command on one node:
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222
223[source,bash]
224----
225pveceph init --network 10.10.10.0/24
226----
227
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228This creates an initial configuration at `/etc/pve/ceph.conf` with a
229dedicated network for ceph. That file is automatically distributed to
230all {pve} nodes by using xref:chapter_pmxcfs[pmxcfs]. The command also
231creates a symbolic link from `/etc/ceph/ceph.conf` pointing to that file.
232So you can simply run Ceph commands without the need to specify a
233configuration file.
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234
235
d9a27ee1 236[[pve_ceph_monitors]]
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237Creating Ceph Monitors
238----------------------
239
1ff5e4e8 240[thumbnail="screenshot/gui-ceph-monitor.png"]
8997dd6e 241
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242The Ceph Monitor (MON)
243footnote:[Ceph Monitor http://docs.ceph.com/docs/luminous/start/intro/]
a474ca1f 244maintains a master copy of the cluster map. For high availability you need to
2394c306 245have at least 3 monitors. One monitor will already be installed if you
620d6725 246used the installation wizard. You won't need more than 3 monitors as long
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247as your cluster is small to midsize, only really large clusters will
248need more than that.
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249
250On each node where you want to place a monitor (three monitors are recommended),
251create it by using the 'Ceph -> Monitor' tab in the GUI or run.
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252
253
254[source,bash]
255----
d1fdb121 256pveceph mon create
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257----
258
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259This will also install the needed Ceph Manager ('ceph-mgr') by default. If you
260do not want to install a manager, specify the '-exclude-manager' option.
261
262
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263Destroying Ceph Monitor
264----------------------
265
266To remove a Ceph Monitor via the GUI first select a node in the tree view and
267go to the **Ceph -> Monitor** panel. Select the MON and click the **Destroy**
268button.
269
270To remove a Ceph Monitor via the CLI first connect to the node on which the MON
271is running. Then execute the following command:
272[source,bash]
273----
274pveceph mon destroy
275----
276
277NOTE: At least three Monitors are needed for quorum.
278
279
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280[[pve_ceph_manager]]
281Creating Ceph Manager
282----------------------
283
a474ca1f 284The Manager daemon runs alongside the monitors, providing an interface for
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285monitoring the cluster. Since the Ceph luminous release the
286ceph-mgr footnote:[Ceph Manager http://docs.ceph.com/docs/luminous/mgr/] daemon
287is required. During monitor installation the ceph manager will be installed as
288well.
289
290NOTE: It is recommended to install the Ceph Manager on the monitor nodes. For
291high availability install more then one manager.
292
293[source,bash]
294----
d1fdb121 295pveceph mgr create
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296----
297
21394e70 298
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299Destroying Ceph Manager
300----------------------
301
302To remove a Ceph Manager via the GUI first select a node in the tree view and
303go to the **Ceph -> Monitor** panel. Select the Manager and click the
304**Destroy** button.
305
306To remove a Ceph Monitor via the CLI first connect to the node on which the
307Manager is running. Then execute the following command:
308[source,bash]
309----
310pveceph mgr destroy
311----
312
313NOTE: A Ceph cluster can function without a Manager, but certain functions like
314the cluster status or usage require a running Manager.
315
316
d9a27ee1 317[[pve_ceph_osds]]
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318Creating Ceph OSDs
319------------------
320
1ff5e4e8 321[thumbnail="screenshot/gui-ceph-osd-status.png"]
8997dd6e 322
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323via GUI or via CLI as follows:
324
325[source,bash]
326----
d1fdb121 327pveceph osd create /dev/sd[X]
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328----
329
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330TIP: We recommend a Ceph cluster size, starting with 12 OSDs, distributed evenly
331among your, at least three nodes (4 OSDs on each node).
332
a474ca1f 333If the disk was used before (eg. ZFS/RAID/OSD), to remove partition table, boot
9bddef40 334sector and any OSD leftover the following command should be sufficient.
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335
336[source,bash]
337----
9bddef40 338ceph-volume lvm zap /dev/sd[X] --destroy
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339----
340
9bddef40 341WARNING: The above command will destroy data on the disk!
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342
343Ceph Bluestore
344~~~~~~~~~~~~~~
21394e70 345
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346Starting with the Ceph Kraken release, a new Ceph OSD storage type was
347introduced, the so called Bluestore
a474ca1f 348footnote:[Ceph Bluestore http://ceph.com/community/new-luminous-bluestore/].
9bddef40 349This is the default when creating OSDs since Ceph Luminous.
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350
351[source,bash]
352----
d1fdb121 353pveceph osd create /dev/sd[X]
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354----
355
1e834cb2 356.Block.db and block.wal
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357
358If you want to use a separate DB/WAL device for your OSDs, you can specify it
9bddef40 359through the '-db_dev' and '-wal_dev' options. The WAL is placed with the DB, if not
a474ca1f 360specified separately.
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361
362[source,bash]
363----
d1fdb121 364pveceph osd create /dev/sd[X] -db_dev /dev/sd[Y] -wal_dev /dev/sd[Z]
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365----
366
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367You can directly choose the size for those with the '-db_size' and '-wal_size'
368paremeters respectively. If they are not given the following values (in order)
369will be used:
370
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371* bluestore_block_{db,wal}_size from ceph configuration...
372** ... database, section 'osd'
373** ... database, section 'global'
374** ... file, section 'osd'
375** ... file, section 'global'
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376* 10% (DB)/1% (WAL) of OSD size
377
1d54c3b4 378NOTE: The DB stores BlueStore’s internal metadata and the WAL is BlueStore’s
ee4a0e96 379internal journal or write-ahead log. It is recommended to use a fast SSD or
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380NVRAM for better performance.
381
382
383Ceph Filestore
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384~~~~~~~~~~~~~~
385
352c803f 386Before Ceph Luminous, Filestore was used as default storage type for Ceph OSDs.
9bddef40 387Starting with Ceph Nautilus, {pve} does not support creating such OSDs with
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388'pveceph' anymore. If you still want to create filestore OSDs, use
389'ceph-volume' directly.
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390
391[source,bash]
392----
9bddef40 393ceph-volume lvm create --filestore --data /dev/sd[X] --journal /dev/sd[Y]
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394----
395
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396Destroying Ceph OSDs
397--------------------
398
399To remove an OSD via the GUI first select a {PVE} node in the tree view and go
400to the **Ceph -> OSD** panel. Select the OSD to destroy. Next click the **OUT**
401button. Once the OSD status changed from `in` to `out` click the **STOP**
402button. As soon as the status changed from `up` to `down` select **Destroy**
403from the `More` drop-down menu.
404
405To remove an OSD via the CLI run the following commands.
406[source,bash]
407----
408ceph osd out <ID>
409systemctl stop ceph-osd@<ID>.service
410----
411NOTE: The first command instructs Ceph not to include the OSD in the data
412distribution. The second command stops the OSD service. Until this time, no
413data is lost.
414
415The following command destroys the OSD. Specify the '-cleanup' option to
416additionally destroy the partition table.
417[source,bash]
418----
419pveceph osd destroy <ID>
420----
421WARNING: The above command will destroy data on the disk!
422
423
07fef357 424[[pve_ceph_pools]]
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425Creating Ceph Pools
426-------------------
21394e70 427
1ff5e4e8 428[thumbnail="screenshot/gui-ceph-pools.png"]
8997dd6e 429
1d54c3b4 430A pool is a logical group for storing objects. It holds **P**lacement
90682f35 431**G**roups (`PG`, `pg_num`), a collection of objects.
1d54c3b4 432
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433When no options are given, we set a default of **128 PGs**, a **size of 3
434replicas** and a **min_size of 2 replicas** for serving objects in a degraded
435state.
1d54c3b4 436
5a54ef44 437NOTE: The default number of PGs works for 2-5 disks. Ceph throws a
90682f35 438'HEALTH_WARNING' if you have too few or too many PGs in your cluster.
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439
440It is advised to calculate the PG number depending on your setup, you can find
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441the formula and the PG calculator footnote:[PG calculator
442http://ceph.com/pgcalc/] online. While PGs can be increased later on, they can
443never be decreased.
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444
445
446You can create pools through command line or on the GUI on each PVE host under
447**Ceph -> Pools**.
448
449[source,bash]
450----
d1fdb121 451pveceph pool create <name>
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452----
453
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454If you would like to automatically also get a storage definition for your pool,
455mark the checkbox "Add storages" in the GUI or use the command line option
456'--add_storages' at pool creation.
21394e70 457
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458Further information on Ceph pool handling can be found in the Ceph pool
459operation footnote:[Ceph pool operation
460http://docs.ceph.com/docs/luminous/rados/operations/pools/]
461manual.
21394e70 462
76f6eca4 463[[pve_ceph_device_classes]]
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464Ceph CRUSH & device classes
465---------------------------
466The foundation of Ceph is its algorithm, **C**ontrolled **R**eplication
467**U**nder **S**calable **H**ashing
468(CRUSH footnote:[CRUSH https://ceph.com/wp-content/uploads/2016/08/weil-crush-sc06.pdf]).
469
470CRUSH calculates where to store to and retrieve data from, this has the
471advantage that no central index service is needed. CRUSH works with a map of
472OSDs, buckets (device locations) and rulesets (data replication) for pools.
473
474NOTE: Further information can be found in the Ceph documentation, under the
475section CRUSH map footnote:[CRUSH map http://docs.ceph.com/docs/luminous/rados/operations/crush-map/].
476
477This map can be altered to reflect different replication hierarchies. The object
478replicas can be separated (eg. failure domains), while maintaining the desired
479distribution.
480
481A common use case is to use different classes of disks for different Ceph pools.
482For this reason, Ceph introduced the device classes with luminous, to
483accommodate the need for easy ruleset generation.
484
485The device classes can be seen in the 'ceph osd tree' output. These classes
486represent their own root bucket, which can be seen with the below command.
487
488[source, bash]
489----
490ceph osd crush tree --show-shadow
491----
492
493Example output form the above command:
494
495[source, bash]
496----
497ID CLASS WEIGHT TYPE NAME
498-16 nvme 2.18307 root default~nvme
499-13 nvme 0.72769 host sumi1~nvme
500 12 nvme 0.72769 osd.12
501-14 nvme 0.72769 host sumi2~nvme
502 13 nvme 0.72769 osd.13
503-15 nvme 0.72769 host sumi3~nvme
504 14 nvme 0.72769 osd.14
505 -1 7.70544 root default
506 -3 2.56848 host sumi1
507 12 nvme 0.72769 osd.12
508 -5 2.56848 host sumi2
509 13 nvme 0.72769 osd.13
510 -7 2.56848 host sumi3
511 14 nvme 0.72769 osd.14
512----
513
514To let a pool distribute its objects only on a specific device class, you need
515to create a ruleset with the specific class first.
516
517[source, bash]
518----
519ceph osd crush rule create-replicated <rule-name> <root> <failure-domain> <class>
520----
521
522[frame="none",grid="none", align="left", cols="30%,70%"]
523|===
524|<rule-name>|name of the rule, to connect with a pool (seen in GUI & CLI)
525|<root>|which crush root it should belong to (default ceph root "default")
526|<failure-domain>|at which failure-domain the objects should be distributed (usually host)
527|<class>|what type of OSD backing store to use (eg. nvme, ssd, hdd)
528|===
529
530Once the rule is in the CRUSH map, you can tell a pool to use the ruleset.
531
532[source, bash]
533----
534ceph osd pool set <pool-name> crush_rule <rule-name>
535----
536
537TIP: If the pool already contains objects, all of these have to be moved
538accordingly. Depending on your setup this may introduce a big performance hit on
539your cluster. As an alternative, you can create a new pool and move disks
540separately.
541
542
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543Ceph Client
544-----------
545
1ff5e4e8 546[thumbnail="screenshot/gui-ceph-log.png"]
8997dd6e 547
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548You can then configure {pve} to use such pools to store VM or
549Container images. Simply use the GUI too add a new `RBD` storage (see
550section xref:ceph_rados_block_devices[Ceph RADOS Block Devices (RBD)]).
551
620d6725 552You also need to copy the keyring to a predefined location for an external Ceph
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553cluster. If Ceph is installed on the Proxmox nodes itself, then this will be
554done automatically.
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555
556NOTE: The file name needs to be `<storage_id> + `.keyring` - `<storage_id>` is
557the expression after 'rbd:' in `/etc/pve/storage.cfg` which is
558`my-ceph-storage` in the following example:
559
560[source,bash]
561----
562mkdir /etc/pve/priv/ceph
563cp /etc/ceph/ceph.client.admin.keyring /etc/pve/priv/ceph/my-ceph-storage.keyring
564----
0840a663 565
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566[[pveceph_fs]]
567CephFS
568------
569
570Ceph provides also a filesystem running on top of the same object storage as
571RADOS block devices do. A **M**eta**d**ata **S**erver (`MDS`) is used to map
572the RADOS backed objects to files and directories, allowing to provide a
573POSIX-compliant replicated filesystem. This allows one to have a clustered
574highly available shared filesystem in an easy way if ceph is already used. Its
575Metadata Servers guarantee that files get balanced out over the whole Ceph
576cluster, this way even high load will not overload a single host, which can be
d180eb39 577an issue with traditional shared filesystem approaches, like `NFS`, for
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578example.
579
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580[thumbnail="screenshot/gui-node-ceph-cephfs-panel.png"]
581
2394c306 582{pve} supports both, using an existing xref:storage_cephfs[CephFS as storage]
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583to save backups, ISO files or container templates and creating a
584hyper-converged CephFS itself.
585
586
587[[pveceph_fs_mds]]
588Metadata Server (MDS)
589~~~~~~~~~~~~~~~~~~~~~
590
591CephFS needs at least one Metadata Server to be configured and running to be
592able to work. One can simply create one through the {pve} web GUI's `Node ->
593CephFS` panel or on the command line with:
594
595----
596pveceph mds create
597----
598
599Multiple metadata servers can be created in a cluster. But with the default
600settings only one can be active at any time. If an MDS, or its node, becomes
601unresponsive (or crashes), another `standby` MDS will get promoted to `active`.
602One can speed up the hand-over between the active and a standby MDS up by using
603the 'hotstandby' parameter option on create, or if you have already created it
604you may set/add:
605
606----
607mds standby replay = true
608----
609
610in the ceph.conf respective MDS section. With this enabled, this specific MDS
611will always poll the active one, so that it can take over faster as it is in a
3580eb13 612`warm` state. But naturally, the active polling will cause some additional
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613performance impact on your system and active `MDS`.
614
1e834cb2 615.Multiple Active MDS
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616
617Since Luminous (12.2.x) you can also have multiple active metadata servers
618running, but this is normally only useful for a high count on parallel clients,
619as else the `MDS` seldom is the bottleneck. If you want to set this up please
620refer to the ceph documentation. footnote:[Configuring multiple active MDS
127ca409 621daemons http://docs.ceph.com/docs/luminous/cephfs/multimds/]
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622
623[[pveceph_fs_create]]
624Create a CephFS
625~~~~~~~~~~~~~~~
626
627With {pve}'s CephFS integration into you can create a CephFS easily over the
628Web GUI, the CLI or an external API interface. Some prerequisites are required
629for this to work:
630
631.Prerequisites for a successful CephFS setup:
632- xref:pve_ceph_install[Install Ceph packages], if this was already done some
633 time ago you might want to rerun it on an up to date system to ensure that
634 also all CephFS related packages get installed.
635- xref:pve_ceph_monitors[Setup Monitors]
636- xref:pve_ceph_monitors[Setup your OSDs]
637- xref:pveceph_fs_mds[Setup at least one MDS]
638
639After this got all checked and done you can simply create a CephFS through
640either the Web GUI's `Node -> CephFS` panel or the command line tool `pveceph`,
641for example with:
642
643----
644pveceph fs create --pg_num 128 --add-storage
645----
646
647This creates a CephFS named `'cephfs'' using a pool for its data named
648`'cephfs_data'' with `128` placement groups and a pool for its metadata named
649`'cephfs_metadata'' with one quarter of the data pools placement groups (`32`).
650Check the xref:pve_ceph_pools[{pve} managed Ceph pool chapter] or visit the
651Ceph documentation for more information regarding a fitting placement group
652number (`pg_num`) for your setup footnote:[Ceph Placement Groups
127ca409 653http://docs.ceph.com/docs/luminous/rados/operations/placement-groups/].
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654Additionally, the `'--add-storage'' parameter will add the CephFS to the {pve}
655storage configuration after it was created successfully.
656
657Destroy CephFS
658~~~~~~~~~~~~~~
659
fa9b4ee1 660WARNING: Destroying a CephFS will render all its data unusable, this cannot be
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661undone!
662
663If you really want to destroy an existing CephFS you first need to stop, or
620d6725 664destroy, all metadata servers (`M̀DS`). You can destroy them either over the Web
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665GUI or the command line interface, with:
666
667----
668pveceph mds destroy NAME
669----
670on each {pve} node hosting a MDS daemon.
671
672Then, you can remove (destroy) CephFS by issuing a:
673
674----
de2f8225 675ceph fs rm NAME --yes-i-really-mean-it
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676----
677on a single node hosting Ceph. After this you may want to remove the created
678data and metadata pools, this can be done either over the Web GUI or the CLI
679with:
680
681----
682pveceph pool destroy NAME
683----
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686Ceph monitoring and troubleshooting
687-----------------------------------
688A good start is to continuosly monitor the ceph health from the start of
689initial deployment. Either through the ceph tools itself, but also by accessing
690the status through the {pve} link:api-viewer/index.html[API].
6ff32926 691
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692The following ceph commands below can be used to see if the cluster is healthy
693('HEALTH_OK'), if there are warnings ('HEALTH_WARN'), or even errors
694('HEALTH_ERR'). If the cluster is in an unhealthy state the status commands
620d6725 695below will also give you an overview of the current events and actions to take.
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696
697----
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698# single time output
699pve# ceph -s
700# continuously output status changes (press CTRL+C to stop)
701pve# ceph -w
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702----
703
704To get a more detailed view, every ceph service has a log file under
705`/var/log/ceph/` and if there is not enough detail, the log level can be
706adjusted footnote:[Ceph log and debugging http://docs.ceph.com/docs/luminous/rados/troubleshooting/log-and-debug/].
707
708You can find more information about troubleshooting
709footnote:[Ceph troubleshooting http://docs.ceph.com/docs/luminous/rados/troubleshooting/]
620d6725 710a Ceph cluster on the official website.
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711
712
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713ifdef::manvolnum[]
714include::pve-copyright.adoc[]
715endif::manvolnum[]