ОБЗОР » История » Версия 4
  Владимир Ипатов, 12.11.2012 01:04 
  
| 1 | 1 | Dmitry Chernyak | h1. OVERVIEW | 
|---|---|---|---|
| 2 | 1 | Dmitry Chernyak | |
| 3 | 1 | Dmitry Chernyak | {{toc}} | 
| 4 | 1 | Dmitry Chernyak | |
| 5 | 3 | Владимир Ипатов | [[INSTALL]] | [[BUILD-ISO]] | [[SETUP]] | [[OPERATIONS]] | [[GITMAGIC]] | [[LICENSE]] | [[STATUS]] | 
| 6 | 2 | Dmitry Chernyak | in Russian: [[ОБЗОР]] | [[УСТАНОВКА]] | [[НАСТРОЙКА]] | [[ОПЕРАЦИИ]] | [[МАГИЯ GIT]] | [[ЛИЦЕНЗИЯ]] | [[СОСТОЯНИЕ]] | 
| 7 | 1 | Dmitry Chernyak | |
| 8 | 1 | Dmitry Chernyak | h2. THE PROJECTS | 
| 9 | 1 | Dmitry Chernyak | |
| 10 | 1 | Dmitry Chernyak | "SkyCover Infrastructure" (*SCI*) is the multipurpose, mostly automated high | 
| 11 | 1 | Dmitry Chernyak | availability virtual server infrastructure, equipped with automatic monitoring, | 
| 12 | 1 | Dmitry Chernyak | backup and audit processes. | 
| 13 | 1 | Dmitry Chernyak | |
| 14 | 1 | Dmitry Chernyak | "SCI-CD" is the deployment engine for cheap and flexible virtual high | 
| 15 | 1 | Dmitry Chernyak | availability cluster, the ground level for *SCI*. | 
| 16 | 1 | Dmitry Chernyak | |
| 17 | 1 | Dmitry Chernyak | h2. INTRODUCTION | 
| 18 | 1 | Dmitry Chernyak | |
| 19 | 1 | Dmitry Chernyak | SCI-CD is created to make easy the deployment of the virtual infrastructure, | 
| 20 | 1 | Dmitry Chernyak | based on the Ganeti project (http://code.google.com/p/ganeti/). | 
| 21 | 1 | Dmitry Chernyak | |
| 22 | 1 | Dmitry Chernyak | With Ganeti you will be able to install the "farm" of several computers - | 
| 23 | 1 | Dmitry Chernyak | "nodes", each with it's own storage and to create the cluster environment over | 
| 24 | 1 | Dmitry Chernyak | them when each virtual instance will be started on the one node and backed up | 
| 25 | 1 | Dmitry Chernyak | on the another node with on-line disk synchronization (via DRBD) and fast | 
| 26 | 1 | Dmitry Chernyak | failover. | 
| 27 | 1 | Dmitry Chernyak | |
| 28 | 1 | Dmitry Chernyak | !cluster-sync.jpg! | 
| 29 | 1 | Dmitry Chernyak | |
| 30 | 1 | Dmitry Chernyak | This provides the way to made cheap redundant high available systems. | 
| 31 | 1 | Dmitry Chernyak | |
| 32 | 1 | Dmitry Chernyak | Ganeti is also able to manage "regular", stand-alone virtual instances. | 
| 33 | 1 | Dmitry Chernyak | |
| 34 | 1 | Dmitry Chernyak | h2. SOFTWARE | 
| 35 | 1 | Dmitry Chernyak | |
| 36 | 1 | Dmitry Chernyak | SCI-CD is based on the Debian/GNU project and uses it's installer (simple-cdd) | 
| 37 | 1 | Dmitry Chernyak | and also it's package repositories. | 
| 38 | 1 | Dmitry Chernyak | Installing SCI-CD you'll not got a new thing - you'll got a regular Debian/GNU | 
| 39 | 1 | Dmitry Chernyak | Linux system, just by the easy way and tuned as complex cluster platform. | 
| 40 | 1 | Dmitry Chernyak | |
| 41 | 1 | Dmitry Chernyak | SCI-CD contains the minimum of original software, instead it is focused on the | 
| 42 | 1 | Dmitry Chernyak | proper usage of existing open source components. | 
| 43 | 1 | Dmitry Chernyak | |
| 44 | 1 | Dmitry Chernyak | h2. CONTENTS | 
| 45 | 1 | Dmitry Chernyak | |
| 46 | 1 | Dmitry Chernyak | SCI core platform consists of two Ganeti nodes and one *service instance* (virtual | 
| 47 | 1 | Dmitry Chernyak | machine, named 'sci'). | 
| 48 | 1 | Dmitry Chernyak | |
| 49 | 1 | Dmitry Chernyak | The service instance provides: | 
| 50 | 1 | Dmitry Chernyak | * DNS for local zones, forwarders, hint (BIND9 chrooted), | 
| 51 | 4 | Владимир Ипатов | * DHCP server for lan(disabled by default), | 
| 52 | 1 | Dmitry Chernyak | * Configuation management, able to tune up new nodes and instances (Puppet), | 
| 53 | 1 | Dmitry Chernyak | * Apt-proxy, with uplink to Debian mirrors and also with local repository, | 
| 54 | 1 | Dmitry Chernyak | copied from SCI-CD CD-ROM (Approx). | 
| 55 | 1 | Dmitry Chernyak | |
| 56 | 1 | Dmitry Chernyak | More virtual instances may be created and more functions may be assigned to them | 
| 57 | 1 | Dmitry Chernyak | using the regular Ganeti commands. | 
| 58 | 1 | Dmitry Chernyak | |
| 59 | 1 | Dmitry Chernyak | h2. HARDWARE | 
| 60 | 1 | Dmitry Chernyak | |
| 61 | 1 | Dmitry Chernyak | Minimal SCI core hardware is based on the two nodes which can be any two computers - | 
| 62 | 1 | Dmitry Chernyak | the major brands, such as HP, IBM, the "China brands", such as | 
| 63 | 1 | Dmitry Chernyak | SuperMicro or self-maiden servers or even workstations. | 
| 64 | 1 | Dmitry Chernyak | |
| 65 | 1 | Dmitry Chernyak | Of course, the performance of your system will be very dependent on the | 
| 66 | 1 | Dmitry Chernyak | hardware you have chosed - the CPU, memory, RAID subsystem - all will matters | 
| 67 | 1 | Dmitry Chernyak | as usual for the performance, but mostly - not for high availability | 
| 68 | 1 | Dmitry Chernyak | capabilities. | 
| 69 | 1 | Dmitry Chernyak | |
| 70 | 1 | Dmitry Chernyak | The HA features are supported by providing two separate nodes with their own | 
| 71 | 1 | Dmitry Chernyak | storage subsystems and on-line storage synchronization between them. In the | 
| 72 | 1 | Dmitry Chernyak | most cases this level of redundancy is sufficient to cover the data losses and | 
| 73 | 1 | Dmitry Chernyak | service interrupts even with the cheap hardware. | 
| 74 | 1 | Dmitry Chernyak | |
| 75 | 1 | Dmitry Chernyak | Of course, the systems which can't be interrupted even for a few minutes must | 
| 76 | 1 | Dmitry Chernyak | be sized and analyzed excluively. | 
| 77 | 1 | Dmitry Chernyak | |
| 78 | 1 | Dmitry Chernyak | h2. LOCAL NETWORKING | 
| 79 | 1 | Dmitry Chernyak | |
| 80 | 1 | Dmitry Chernyak | All nodes should be attached to one common TCP/IP network segment via the main | 
| 81 | 1 | Dmitry Chernyak | interface (exceptions are possible - see Ganeti manuals). | 
| 82 | 1 | Dmitry Chernyak | |
| 83 | 1 | Dmitry Chernyak | The SCI setup supports 802.1q VLAN tagging, so you can easy give your nodes and | 
| 84 | 1 | Dmitry Chernyak | instances the interfaces in different network segments (the network switch with | 
| 85 | 1 | Dmitry Chernyak | 802.1q support is required). | 
| 86 | 1 | Dmitry Chernyak | |
| 87 | 1 | Dmitry Chernyak | h2. STORAGE NETWORKING | 
| 88 | 1 | Dmitry Chernyak | |
| 89 | 1 | Dmitry Chernyak | The nodes need to be interconnected with the fast TCP/IP interlink to transfer | 
| 90 | 1 | Dmitry Chernyak | storage data (DRBD synchronization). 1GigE is recommended. | 
| 91 | 1 | Dmitry Chernyak | |
| 92 | 1 | Dmitry Chernyak | It is possible (and recommended) that the storage interlink should be | 
| 93 | 1 | Dmitry Chernyak | separated from the main TCP/IP access interfaces. In the other words, each | 
| 94 | 1 | Dmitry Chernyak | node should have a two network adapters and at least one of them should | 
| 95 | 1 | Dmitry Chernyak | support 1GigE. | 
| 96 | 1 | Dmitry Chernyak | |
| 97 | 1 | Dmitry Chernyak | For only two nodes the storage network may be constructed without an Ethernet | 
| 98 | 1 | Dmitry Chernyak | switch, using simple cat5e cross-over cable. | 
| 99 | 1 | Dmitry Chernyak | |
| 100 | 1 | Dmitry Chernyak | For the simple and demo tasks there is possible to use only one network adapter | 
| 101 | 1 | Dmitry Chernyak | on the node, but it *MUST* support 1GigE speed. | 
| 102 | 1 | Dmitry Chernyak | |
| 103 | 1 | Dmitry Chernyak | h2. INTERNET NETWORKING | 
| 104 | 1 | Dmitry Chernyak | |
| 105 | 1 | Dmitry Chernyak | In order to access to the Internet you should connect your local network segment | 
| 106 | 1 | Dmitry Chernyak | to the Internet router. | 
| 107 | 1 | Dmitry Chernyak | |
| 108 | 1 | Dmitry Chernyak | The simplest way is to use the separate router with NAT. | 
| 109 | 1 | Dmitry Chernyak | |
| 110 | 1 | Dmitry Chernyak | The more advanced way is to construct the router/firewall on the cluster's virtual | 
| 111 | 1 | Dmitry Chernyak | instance. This setup is not the part SCI-CD project but can be implemented on the | 
| 112 | 1 | Dmitry Chernyak | top of it. | 
| 113 | 1 | Dmitry Chernyak | |
| 114 | 1 | Dmitry Chernyak | h2. DEBIAN REPOSITORIES | 
| 115 | 1 | Dmitry Chernyak | |
| 116 | 1 | Dmitry Chernyak | The service instance provides "approx" apt proxy, which can be uplinked to | 
| 117 | 1 | Dmitry Chernyak | regular Debian mirrors or to the intermediate mirrors or apt proxies in your LAN. | 
| 118 | 1 | Dmitry Chernyak | |
| 119 | 1 | Dmitry Chernyak | In any case, the service instance's "approx" is loaded by the copy of the | 
| 120 | 1 | Dmitry Chernyak | repository from the SCI-CD CD-ROM. It can be used even in absence of the uplink | 
| 121 | 1 | Dmitry Chernyak | to the external sources. | 
| 122 | 1 | Dmitry Chernyak | |
| 123 | 1 | Dmitry Chernyak | The standard reposiporise list is pushed automatically into the sources.lists | 
| 124 | 1 | Dmitry Chernyak | of the puppet-client instances (which are by default all the nodes and | 
| 125 | 1 | Dmitry Chernyak | instances). | 
| 126 | 1 | Dmitry Chernyak | |
| 127 | 1 | Dmitry Chernyak | h2. INSTALLATION | 
| 128 | 1 | Dmitry Chernyak | |
| 129 | 1 | Dmitry Chernyak | Please read [[INSTALL]] for instructions. |