HDFS-11963. Ozone: Documentation: Add getting started page. Contributed by Anu Engineer.
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<!---
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License. See accompanying LICENSE file.
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-->
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Ozone Command Shell
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===================
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Ozone command shell gives a command shell interface to work against ozone.
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Please note that this document assumes that cluster is deployed
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with simple authentication.
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The Ozone commands take the following format.
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* `hdfs oz --command_ http://hostname:port/volume/bucket/key -user
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<name> -root`
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The *--root* option is a command line short cut that allows *hdfs oz*
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commands to be run as the user that started the cluster. This is useful to
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indicate that you want the commands to be run as some admin user. The only
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reason for this option is that it makes the life of a lazy developer more
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easier.
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Ozone Volume Commands
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--------------------
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The volume commands allow users to create, delete and list the volumes in the
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ozone cluster.
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### Create Volume
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Volumes can be created only by Admins. Here is an example of creating a volume.
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* `hdfs oz -createVolume http://localhost:9864/hive -user bilbo -quota
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100TB -root`
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The above command creates a volume called `hive` owned by user `bilbo`. The
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`--root` option allows the command to be executed as user `hdfs` which is an
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admin in the cluster.
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### Update Volume
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Updates information like ownership and quota on an existing volume.
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* `hdfs oz -updateVolume http://localhost:9864/hive -quota 500TB -root`
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The above command changes the volume quota of hive from 100TB to 500TB.
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### Delete Volume
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Deletes a Volume if it is empty.
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* `hdfs oz -deleteVolume http://localhost:9864/hive -root`
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### Info Volume
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Info volume command allows the owner or the administrator of the cluster to read meta-data about a specific volume.
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* `hdfs oz -infoVolume http://localhost:9864/hive -root`
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### List Volumes
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List volume command can be used by administrator to list volumes of any user. It can also be used by a user to list volumes owned by him.
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* `hdfs oz -listVolume http://localhost:9864/ -user bilbo -root`
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The above command lists all volumes owned by user bilbo.
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Ozone Bucket Commands
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--------------------
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Bucket commands follow a similar pattern as volume commands. However bucket commands are designed to be run by the owner of the volume.
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Following examples assume that these commands are run by the owner of the volume or bucket.
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### Create Bucket
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Create bucket call allows the owner of a volume to create a bucket.
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* `hdfs oz -createBucket http://localhost:9864/hive/january`
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This call creates a bucket called `january` in the volume called `hive`. If
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the volume does not exist, then this call will fail.
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### Update Bucket
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Updates bucket meta-data, like ACLs.
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* `hdfs oz -updateBucket http://localhost:9864/hive/january -addAcl
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user:spark:rw`
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### Delete Bucket
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Deletes a bucket if it is empty.
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* `hdfs oz -deleteBucket http://localhost:9864/hive/january`
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### Info Bucket
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Returns information about a given bucket.
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* `hdfs oz -infoBucket http://localhost:9864/hive/january`
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### List Buckets
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List buckets on a given volume.
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* `hdfs oz -listtBucket http://localhost:9864/hive`
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Ozone Key Commands
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------------------
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Ozone key commands allows users to put, delete and get keys from ozone buckets.
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### Put Key
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Creates or overwrites a key in ozone store, -file points to the file you want
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to upload.
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* `hdfs oz -putKey http://localhost:9864/hive/january/processed.orc -file
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processed.orc`
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### Get Key
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Downloads a file from the ozone bucket.
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* `hdfs oz -getKey http://localhost:9864/hive/january/processed.orc -file
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processed.orc.copy`
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### Delete Key
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Deletes a key from the ozone store.
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* `hdfs oz -deleteKey http://localhost:9864/hive/january/processed.orc`
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### Info Key
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Reads key metadata from the ozone store.
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* `hdfs oz -infoKey http://localhost:9864/hive/january/processed.orc`
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### List Keys
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List all keys in an ozone bucket.
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* `hdfs oz -listKey http://localhost:9864/hive/january`
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<!---
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License. See accompanying LICENSE file.
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-->
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Ozone - Object store for Hadoop
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==============================
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Introduction
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------------
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Ozone is an object store for Hadoop. It is a redundant, distributed object
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store build by leveraging primitives present in HDFS. Ozone supports REST
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API for accessing the store.
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Getting Started
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---------------
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Ozone is a work in progress and currently lives in its own branch. To
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use it, you have to build a package by yourself and deploy a cluster.
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### Building Ozone
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To build Ozone, please checkout the hadoop sources from github. Then
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checkout the ozone branch, HDFS-7240 and build it.
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- `git checkout HDFS-7240`
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- `mvn clean package -DskipTests=true -Dmaven.javadoc.skip=true -Pdist -Dtar -DskipShade`
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skipShade is just to make compilation faster and not really required.
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This will give you a tarball in your distribution directory. This is the
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tarball that can be used for deploying your hadoop cluster. Here is an
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example of the tarball that will be generated.
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* `~/apache/hadoop/hadoop-dist/target/hadoop-3.0.0-alpha4-SNAPSHOT.tar.gz`
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Please proceed to setup a hadoop cluster by creating the hdfs-site.xml and
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other configuration files that are needed for your cluster.
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### Ozone Configuration
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Ozone relies on its own configuration file called `ozone-site.xml`. It is
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just for convenience and ease of management -- you can add these settings
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to `hdfs-site.xml`, if you don't want to keep ozone settings separate.
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This document refers to `ozone-site.xml` so that ozone settings are in one
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place and not mingled with HDFS settings.
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* _*ozone.enabled*_ This is the most important setting for ozone.
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Currently, Ozone is an opt-in subsystem of HDFS. By default, Ozone is
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disabled. Setting this flag to `true` enables ozone in the HDFS cluster.
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Here is an example,
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```
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<property>
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<name>ozone.enabled</name>
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<value>True</value>
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</property>
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```
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* _*ozone.container.metadata.dirs*_ Ozone is designed with modern hardware
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in mind. It tries to use SSDs effectively. So users can specify where the
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datanode metadata must reside. Usually you pick your fastest disk (SSD if
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you have them on your datanodes). Datanodes will write the container metadata
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to these disks. This is a required setting, if this is missing datanodes will
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fail to come up. Here is an example,
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```
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<property>
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<name>ozone.container.metadata.dirs</name>
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<value>/data/disk1/container/meta</value>
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</property>
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```
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* _*ozone.scm.names*_ Ozone is build on top of container framework (See Ozone
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Architecture TODO). Storage container manager(SCM) is a distributed block
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service which is used by ozone and other storage services.
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This property allows datanodes to discover where SCM is, so that
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datanodes can send heartbeat to SCM. SCM is designed to be highly available
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and datanodes assume there are multiple instances of SCM which form a highly
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available ring. The HA feature of SCM is a work in progress. So we
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configure ozone.scm.names to be a single machine. Here is an example,
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```
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<property>
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<name>ozone.scm.names</name>
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<value>scm.hadoop.apache.org</value>
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</property>
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```
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* _*ozone.scm.datanode.id*_ Each datanode that speaks to SCM generates an ID
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just like HDFS. This ID is stored is a location pointed by this setting. If
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this setting is not valid, datanodes will fail to come up. Please note:
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This path that is will created by datanodes to store the datanode ID. Here is an example,
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```
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<property>
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<name>ozone.scm.datanode.id</name>
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<value>/data/disk1/scm/meta/node/datanode.id</value>
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</property>
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```
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* _*ozone.scm.block.client.address*_ Storage Container Manager(SCM) offers a
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set of services that can be used to build a distributed storage system. One
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of the services offered is the block services. KSM and HDFS would use this
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service. This property describes where KSM can discover SCM's block service
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endpoint. There is corresponding ports etc, but assuming that we are using
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default ports, the server address is the only required field. Here is an
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example,
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```
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<property>
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<name>ozone.scm.block.client.address</name>
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<value>scm.hadoop.apache.org</value>
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</property>
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```
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* _*ozone.ksm.address*_ KSM server address. This is used by Ozonehandler and
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Ozone File System.
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```
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<property>
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<name>ozone.ksm.address</name>
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<value>ksm.hadoop.apache.org</value>
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</property>
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```
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Here is a quick summary of settings needed by Ozone.
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| Setting | Value | Comment |
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|--------------------------------|------------------------------|------------------------------------------------------------------|
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| ozone.enabled | True | This enables SCM and containers in HDFS cluster. |
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| ozone.container.metadata.dirs | file path | The container metadata will be stored here in the datanode. |
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| ozone.scm.names | SCM server name | Hostname:port or or IP:port address of SCM. |
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| ozone.scm.datanode.id | file path | Data node ID is the location of datanode's ID file |
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| ozone.scm.block.client.address | SCM server name | Used by services like KSM |
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| ozone.ksm.address | KSM server name | Used by Ozone handler and Ozone file system. |
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Here is a working example of`ozone-site.xml`.
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```
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<?xml version="1.0" encoding="UTF-8"?>
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<?xml-stylesheet type="text/xsl" href="configuration.xsl"?>
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<configuration>
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<property>
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<name>ozone.enabled</name>
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<value>True</value>
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</property>
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<property>
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<name>ozone.container.metadata.dirs</name>
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<value>/data/disk1/scm/meta</value>
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</property>
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<property>
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<name>ozone.scm.names</name>
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<value>scm.hadoop.apache.org</value>
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</property>
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<property>
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<name>ozone.scm.datanode.id</name>
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<value>/data/disk1/scm/meta/node/datanode.id</value>
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</property>
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<property>
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<name>ozone.scm.block.client.address</name>
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<value>scm.hadoop.apache.org</value>
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</property>
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<property>
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<name>ozone.ksm.address</name>
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<value>ksm.hadoop.apache.org</value>
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</property>
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</configuration>
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```
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### Starting Ozone
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Ozone is designed to run concurrently with HDFS. The simplest way to [start
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HDFS](../hadoop-common/ClusterSetup.html) is to run `start-dfs.sh` from the
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`$HADOOP/sbin/start-dfs.sh`. Once HDFS
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is running, please verify it is fully functional by running some commands like
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- *./hdfs dfs -mkdir /usr*
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- *./hdfs dfs -ls /*
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Once you are sure that HDFS is running, start Ozone. To start ozone, you
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need to start SCM and KSM. Currently we assume that both KSM and SCM
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is running on the same node, this will change in future.
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- `./hdfs --daemon start scm`
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- `./hdfs --daemon start ksm`
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if you would like to start HDFS and Ozone together, you can do that by running
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a single command.
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- `$HADOOP/sbin/start-ozone.sh`
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This command will start HDFS and then start the ozone components.
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Once you have ozone running you can use these ozone [shell](./OzoneCommandShell.html)
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commands to create a volume, bucket and keys.
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### Diagnosing issues
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Ozone tries not to pollute the existing HDFS streams of configuration and
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logging. So ozone logs are by default configured to be written to a file
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called `ozone.log`. This is controlled by the settings in `log4j.properties`
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file in the hadoop configuration directory.
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Here is the log4j properties that are added by ozone.
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```
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#
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# Add a logger for ozone that is separate from the Datanode.
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#
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#log4j.debug=true
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log4j.logger.org.apache.hadoop.ozone=DEBUG,OZONE,FILE
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# Do not log into datanode logs. Remove this line to have single log.
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log4j.additivity.org.apache.hadoop.ozone=false
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# For development purposes, log both to console and log file.
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log4j.appender.OZONE=org.apache.log4j.ConsoleAppender
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log4j.appender.OZONE.Threshold=info
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log4j.appender.OZONE.layout=org.apache.log4j.PatternLayout
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log4j.appender.OZONE.layout.ConversionPattern=%d{ISO8601} [%t] %-5p \
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%X{component} %X{function} %X{resource} %X{user} %X{request} - %m%n
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# Real ozone logger that writes to ozone.log
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log4j.appender.FILE=org.apache.log4j.DailyRollingFileAppender
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log4j.appender.FILE.File=${hadoop.log.dir}/ozone.log
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log4j.appender.FILE.Threshold=debug
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log4j.appender.FILE.layout=org.apache.log4j.PatternLayout
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log4j.appender.FILE.layout.ConversionPattern=%d{ISO8601} [%t] %-5p \
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(%F:%L) %X{function} %X{resource} %X{user} %X{request} - \
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%m%n
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```
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If you would like to have a single datanode log instead of ozone stuff
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getting written to ozone.log, please remove this line or set this to true.
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` log4j.additivity.org.apache.hadoop.ozone=false`
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On the SCM/KSM side, you will be able to see
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- `hadoop-hdfs-ksm-hostname.log`
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- `hadoop-hdfs-scm-hostname.log`
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Please file any issues you see under [Object store in HDFS (HDFS-7240)](https://issues.apache.org/jira/browse/HDFS-7240)
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as this is still a work in progress.
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@ -109,6 +109,12 @@
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<item name="Provided Storage" href="hadoop-project-dist/hadoop-hdfs/HdfsProvidedStorage.html"/>
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</menu>
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<menu name="Ozone" inherit="top">
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<item name="Getting Started" href="hadoop-project-dist/hadoop-hdfs/OzoneGettingStarted.html"/>
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<item name="Commands Reference" href="hadoop-project-dist/hadoop-hdfs/OzoneCommandShell.html"/>
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<item name="Ozone Metrics" href="hadoop-project-dist/hadoop-hdfs/Ozonemetrics.html"/>
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</menu>
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<menu name="MapReduce" inherit="top">
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<item name="Tutorial" href="hadoop-mapreduce-client/hadoop-mapreduce-client-core/MapReduceTutorial.html"/>
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<item name="Commands Reference" href="hadoop-mapreduce-client/hadoop-mapreduce-client-core/MapredCommands.html"/>
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