Lisa Gundy IBM Corporation. Wednesday, March 12, 2014: lisat@us.ibm.com. 11:00 AM 12:00 PM Session 15077



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Transcription:

Continuing the understanding of IBM Copy Services: Peer-to-Peer-Remote-Copy (PPRC) and Point in Time Copy (FlashCopy) for High Availability (HA) and Disaster Recovery (DR) Lisa Gundy IBM Corporation lisat@us.ibm.com Wednesday, March 12, 2014: 11:00 AM 12:00 PM Session 15077

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Agenda HA and DR Considerations The Role of Peer to Peer Remote Copy The Role of FlashCopy Solutions / Configurations based on Business Requirements 5

Business Continuity 101 HA and DR Considerations 6

Business Continuity Business Continuity is not simply IT Disaster Recovery... it is a management process that relies on each component in the business chain to sustain operations at all times. Effective Business Continuity depends on ability to: Reduce the risk of a business interruption Stay in business when an interruption occurs Respond to customers Maintain public confidence Comply with requirements: Audit Regulator/Legislative Insurance Health and Safety People Facilities Business Processes Infrastructure Applications... An end-to-end Business Continuity program is only as strong as its weakest link 7

Aspects of Availability 8 High Availability Fault-tolerant, failureresistant infrastructure supporting continuous application processing Protection of critical business data Recovery is predictable and reliable Continuous Operations Non-disruptive backups and system maintenance coupled with continuous availability of applications Operations continue after a disaster Costs are predictable and manageable Disaster Recovery Protection against unplanned outages such as disasters through reliable, predictable recovery

Customer Business Objectives Determine business continuity objectives: Recovery Time Objective (RTO) How long can you afford to be without your systems? Recovery Point Objective (RPO) How much data can you afford to lose / recreate? Select technology(s) to meet business objectives SYNCHRONOUS Remote Copy METRO MIRROR Continuous data availability. Use when: Response time impact is acceptable Within metro distance No data loss is the objective Fastest recovery time is required ASYNCHRONOUS Remote Copy GLOBAL MIRROR Extended distance disaster recovery. Use when: Smallest response time impact to applications is required Extended distance disaster recovery is the objective Minimal data loss is acceptable 9

Lessons Learned About IT Survival 10 Repeated Testing before a disaster is crucial to successful recovery after a disaster TTWYR Test The Way You Recover RTWYT Recover The Way You Test After a disaster, everything is different Staff well-being will be 1st priority Repeated Testing before a disaster is crucial to successful recovery after a disaster Company will benefit greatly from well-documented, tested, available TTWYR Test and The automated Way You (to Recover the extent possible) recovery procedures RTWYT May be Recover necessary The Way to implement You Test in-house D/R solution to meet RTO/RPO After Plan a disaster, geographically everything is dispersed different IT facilities IT equipment, control center, offices, workstations, phones, staff,... Company will benefit greatly from well-documented, tested, available and Network entry points automated recovery procedures Installed server capacity at second data center can be utilized to meet normal day-to-day needs Failover capacity can be obtained by Prioritizing workloads Exploit new technology: Capacity Back Up (CBU) Data backup planning and execution must be flawless Disk mirroring required for <12hr RTO (need 2x capacity) Machine-readable data can be backed up; not so for paper files Check D/R readiness of critical suppliers, vendors

Automation: Critical for successful rapid recovery and continuity The benefits of automation: Allows business continuity processes to be built on a reliable, consistent recovery time Recovery times can remain consistent as the system scales to provide a flexible solution designed to meet changing business needs Reduces infrastructure management cost and staffing skills Reduces or eliminates human error during the recovery process at time of disaster Facilitates regular testing to help ensure repeatable, reliable, scalable business continuity Helps maintain recovery readiness by managing and monitoring the server, data replication, workload and the network along with the notification of events that occur within the environment Monitor and manage for planned and unplanned events Automate - Automate - Automate 11

12 Peer to Peer Remote Copy (PPRC)

Metro Mirror (synchronous PPRC) Overview PPRC Metro Mirror Synchronous remote data mirroring Application receives I/O complete when both primary and secondary disks are updated Typically supports metropolitan distance Performance impact must be considered Latency of 10 us/km z/os and open data supported MVS z/os z9 1 4 UNIX NT 2 3 13

PPRC communication LSS A primary LSS may be related with up to 4 secondary LSS LSS LSS LSS It is recommended, but not required, that configuration be symmetrical (LSS to LSS mapping) LSS LSS 14

PPRC FREEZE Freeze scope is LSS to LSS LSS LSS LSS LSS LSS Extended Long Busy (ELB) at primary for consistency. Removes paths and suspends pairs. LSS 15

HyperSwap the Technology application UCB UCB P PPRC S Substitutes PPRC secondary for primary device No operator interaction - GDPS-managed Can swap large number of devices - fast Includes volumes with Sysres, page DS, catalogs Non-disruptive - applications keep running 16 Brings different technologies together to provide a comprehensive application and data availability solution

Planned Swap GDPS/PPRC CF1 P2 P1 K1 CF2 12 1 12 11 11 1 10 2 9 3 8 4 7 5 6 10 2 9 3 8 4 7 5 6 dupl CDS_p d u p l e x d u p l e x CDS_a dupl HyperSwap P dupl P L L P S P P S S S s u s p e n d e d S S P P P L CDS_p/a L S dupl S Without HyperSwap PLANNED ACTION INITIATED shutdown systems, remove systems from Sysplex, reverse PPRC (suspend PPRC), restart systems 1-2 hrs (approx) With HyperSwap and FO/FB 15 Seconds! (6545 vol pairs, 19.6 TB, 46 LSS s)! PPRC Failover, swap the primary & secondary PPRC UCBs, systems continue P1, P2 remain active throughout the procedure 17

Unplanned Swap GDPS/PPRC CF1 P2 P1 K1 CF2 12 1 12 11 11 1 10 2 9 3 8 4 7 5 6 10 2 9 3 8 4 7 5 6 dupl CDS_p d u p l e x d u p l e x CDS_a dupl P L P P P S S S L S HyperSwap dupl S L s u s p e n d e d CDS_p/a L dupl P Without HyperSwap With HyperSwap and FO/FB FREEZE TAKEOVER PROMPT systems quiesced (RESET) if Freeze & Stop/Cond Decision Time // TAKEOVER STARTED remove systems from Sysplex recover secondary PPRC volumes restart systems 30 60 Minutes or more 13 Seconds! (6545 volume pairs, 19.6 TB, 46 LSSs) Only changed data needs to be copied to restore to original configuration PPRC Failover, swap the primary & secondary PPRC UCBs, systems continue P1, P2, remain active throughout the procedure 18

Global Mirror Overview Global Mirror GM (Global Mirror) Asynchronous remote data mirroring Unlimited distance support Performance impact negligible Copy consistency: managed autonomically by Master Control Server in master storage server Up to 16 ESSs in GM session (w/rpq) Supports System z and OPEN Systems data 4 MVS S/390 z/os 1 UNIX NT 2 3 6 5 FlashCopy 19

Global Mirror Site 1 Failure 10 9 8 12 11 1 12 11 1 2 10 Blue sysplex Red sysplex Non sysplex 7 6 5 4 3 Application Site CF1 zp2 zp3 zp5 zp1 zp4 CF2 9 8 7 6 5 GDPS K-sys 2 4 3 GDPS R-sys NetView communication Recovery Site zp2 zp1 Capacity Back Up zp3 (CBU) zp4 zp5 10 9 8 12 11 1 7 6 5 2 4 3 RTO < 1 hour RPO < 1 minute (depends on bandwidth) Open Systems O7 O6 Backup open systems O7 O6 P P P S S S P P L S S L z/os and Open Systems sharing disk subsystem z/os and Open Systems sharing disk subsystem Global Mirror over Unlimited Distance 20

21 FlashCopy

FlashCopy Point in Time copy Establishes logical copy in seconds Source and target quickly available for full read/write Uses Online backup Tape backup Moving datasets Practice Copy Safety Copy Options Full volume FlashCopy Dataset FlashCopy (z/os only) FlashCopy consistency groups Incremental FlashCopy Inband FlashCopy Space Efficient FlashCopy Fast Reverse Restore Remote Pair FlashCopy 22

Incremental FlashCopy Full volume FlashCopy with incremental After Flash Copy, Background Copy partially complete - update on source Background Copy Complete Next increment, only changed tracks copied Incremental 23

Inband FlashCopy (continued) Initiates FlashCopy from PPRC Secondary No need for UCB for FlashCopy volumes PPRC Primary Practice copy Safety copy Full volume only PPRC Secondary / FlashCopy Source FlashCopy Target 24

FlashCopy Fast Reverse Restore FlashCopy relationship exists, target T0 Stop updates to the A volume A Source B Target Perform a Fast Reverse Restore B>A to reset A back to T0 Source Target Once the background copy B>A is complete, A is now T0 Can FlashCopy A back to B Source Target 25

Remote Pair FlashCopy (PPRC Preserve Mirror) Local Storage Server Remote Storage Server Local A full duplex FlashCopy Remote A FlashCopy Metro Mirror FlashCopy Local B full duplex Remote B 26

Metro Mirror and FlashCopy MM Practice Copy FlashCopy with FREEZE option for consistency Data dependency consistent (power off consistency) Global Mirror MVS S/390 z/os UNIX NT Can use Inband or direct addressability FlashCopy Can use Incremental to reduce tracks to be copied 27

Global Mirror and FlashCopy Global Mirror GM Practice Copy Global Mirror Pause with Consistency Session will pause, and suspend all pairs Secondaries are consistent Perform FlashCopy at secondary site Resume session Pairs will be resync ed and session resumed MVS S/390 z/os UNIX NT GM CG FlashCopy Can use Incremental to reduce tracks to be copied FlashCopy 2 28

29 Solutions / Configurations

What are customers doing today? Continuous Availability of Data within a Data Center Continuous Availability / Disaster Recovery within a Metropolitan Region Disaster Recovery at Extended Distance Continuous Availability Regionally and Disaster Recovery Extended Distance Single Data Center Two Data Centers Two Data Centers Three Data Centers Applications remain active Continuous access to data in the event of a storage subsystem outage Systems remain active Multi-site workloads can withstand site and/or storage failures Rapid Systems Disaster Recovery with seconds of Data Loss Disaster recovery for out of region interruptions High availability for site disasters Disaster recovery for regional disasters A B C HyperSwap Metro Mirror Global Mirror Metro/Global Mirror RPO=0 & RTO=0 RPO=0 & RTO<1 hr RPO secs & RTO <1 hr 30

4-site topology with Metro Global Mirror Global Copy from Global Mirror secondary devices already used for datacentre migrations Ksys PROD Metro Mirror Global Mirror Global Copy Ksys Global Copy in secondary site converted to Metro Mirror in case of disaster or planned site switch 31

Additional Information Questions? 32