HP Hewlett Packard Portable Media Storage XP10000 User Manual

HP StorageWorks  
Auto LUN XP user guide  
for the XP12000/XP10000  
Part number: T1715-96006  
Sixth edition: September 2007  
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Contents  
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Figures  
4
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Tables  
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About this guide  
This guide provides information about the following:  
Supported storage platforms and firmware  
In this guide, the term array refers to the following storage platforms:  
HP StorageWorks XP12000 Disk Array  
HP StorageWorks XP10000 Disk Array  
For information about required firmware versions, see the HP StorageWorks XP Remote Web Console user  
guide for XP12000/XP10000.  
Intended audience  
This guide is intended for customers and HP-authorized service providers with knowledge of the following:  
Disk array hardware and software  
Data processing and RAID storage subsystems and their basic functions  
Prerequisites  
Prerequisites for using this product include:  
Installation of the HP StorageWorks disk array(s)  
Installation of the license key for this product  
Related documentation  
In addition to this guide, please refer to other documents for this product:  
HP StorageWorks Command View XP user guide for XP Disk Arrays  
HP StorageWorks XP Remote Web Console user guide for XP12000/XP10000  
HP StorageWorks Continuous Access XP Journal user guide  
HP StorageWorks Performance Control XP user guide  
HP StorageWorks XP Disk/Cache Partition user guide  
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Hitachi True Copy for z/OS® for the XP128/XP1024/XP10000/XP1200  
HP StorageWorks RAID Manager XP user guide  
You can find these documents at http://www.hp.com/support/rwc/manuals.  
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1 Auto LUN XP for the XP12000/XP10000  
Auto LUN XP monitors resources in disk arrays and hosts connected to disk arrays. Auto LUN XP works with  
open system and mainframe volumes. You can analyze the information Auto LUN XP provides to optimize  
data storage and retrieval on disk arrays, resolve activity bottlenecks, and optimize volume allocation.  
Auto LUN XP features  
Auto LUN XP provides the following features:  
When a migration plan (set of detailed user-specified parameters) is in place, Auto LUN XP  
automatically migrates logical volumes in disk arrays.  
Auto LUN XP operations are completely non-disruptive. Data being migrated remains online to all hosts  
for read and write I/O operations throughout the volume migration process.  
Auto LUN XP supports manual volume migration operations and estimates performance improvements  
prior to migration.  
Auto LUN XP begins by obtaining usage statistics about physical hard disk drives, logical volumes,  
processors, and other resources in disk arrays. Then, using manual or automatic migration, Auto LUN XP  
balances the workload among hard disk drives, logical volumes, and processors to improve system  
performance.  
Use Performance Control XP to ensure that I/O operations requiring high performance receive higher  
priority than I/O operations from other, lower-priority hosts. You can set the priority of disk arrays, monitor  
I/O and transfer rates, and limit performance of less-critical arrays when necessary to maintain  
performance of high-priority arrays.  
NOTE: Partition-level users in the StorageAdmins group cannot use Auto LUN XP, but users with full array  
access can use Auto LUN XP.  
For users in the StorageAdmins group, the functions you can use are limited. For more information about  
these limitations, see the HP StorageWorks Command View XP user guide for XP Disk Arrays or the  
HP StorageWorks XP Remote Web Console user guide for XP12000/XP10000.  
Auto LUN XP tasks  
Load balance disk array resources to improve performance. Balancing resource usage can significantly  
improve disk array performance. Use Auto LUN XP data to optimize several areas of performance,  
including front-end and back-end processor usage and allocation of logical volumes to physical disk  
drives and RAID level.  
Optimize disk drive access patterns. Auto LUN XP collects and analyzes information about disk drive  
access patterns and can migrate volumes to optimize host access to data. For example, RAID-1  
technology might provide better performance than RAID-5 under certain conditions, and one disk drive  
type might provide better performance than another for certain types of access. Auto LUN XP fine-tunes  
logical volume allocation.  
Analyze disk array usage. Auto LUN XP displays performance data graphically to highlight peaks and  
trends. Use the graph to identify activity bottlenecks.  
Better utilize RAID levels and HDD types. The XP12000/XP10000 supports both RAID-1 and RAID-5  
technologies and a mixture of RAID-1 and RAID-5 parity groups. The XP12000/XP10000 also supports  
several types of hard disk drives (HDDs) and allows a mixture of HDD types within each disk array  
domain to provide maximum flexibility in configuration. Auto LUN XP takes into account RAID level and  
physical HDD performance of each parity group, enabling reallocation of logical volumes and  
optimization with respect to both RAID level and HDD type. The proper combination of RAID level and  
HDD type for logical volumes can significantly improve disk array performance.  
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Reserve volumes  
The reserve volume function reserves target volumes for automatic and manual migration operations. After  
you reserve a number of target volumes, Auto LUN XP maintains this number of reserved volumes by  
swapping the reserve attribute after each migration operation (following the migration operation, the  
original source volume becomes a reserved volume).  
Volume migration  
Auto LUN XP volume migration operations consist of two steps:  
Copy the data on the Auto LUN XP source volume to the Auto LUN XP target volume  
Transfer host access to the target volume to complete the migration  
The Auto LUN XP source volume can be online to hosts during migration. The target volume is reserved  
prior to migration to prevent host access during migration. The source and target volumes can be anywhere  
in the disk array.  
The Auto LUN XP copy operation copies the entire contents of the source volume to the target volume. If  
write I/Os update the source volume during the copy operation, the XP12000/XP10000 uses a cylinder  
map to track updates and performs additional copy operations after the initial copy is complete to  
duplicate the updates at the target volume.  
When volumes are fully synchronized (no differential data on source volume), the XP12000/XP10000  
completes the migration by swapping the reserve attribute (target becomes normal and source becomes  
reserved) and redirecting host access to the target volume. Auto LUN XP performs all migration operations  
sequentially (one volume migration at a time).  
Typical copy times for open system volumes (with no other I/O activity) are:  
OPEN-3: 1.5 minutes  
OPEN-8/9: 4.5 minutes  
OPEN-E: 9 minutes  
OPEN-V: variable  
For automatic and manual migration operations, Auto LUN XP checks the current write pending rate. If the  
write pending rate is higher than 60%, Auto LUN XP cancels the migration. For auto migration, Auto LUN  
XP also checks current disk usage of source volumes and source and target parity groups. If current disk  
usage is higher than the user-specified maximum for auto migration, Auto LUN XP cancels the migration.  
Figure 1 Data Flow during an Auto LUN XP Operation  
12 Auto LUN XP for the XP12000/XP10000  
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Figure 2 Data Flow after an Auto LUN XP operation  
NOTE: Immediately after a source volume and a target volume replace each other, RAID level before the  
replacement might be displayed or an internal error might occur in the disk array. In this case, select  
Refresh to update the display.  
Estimating usage rates  
The estimate function calculates expected usage of source and target parity groups after a proposed  
volume migration. The estimate function uses subsystem usage data collected by the monitor function, HDD  
performance characteristics, and RAID level to estimate expected usage rates. The automatic and manual  
migration functions use these estimated values to verify proposed migrations.  
For each proposed migration operation, Auto LUN XP automatically estimates expected usage rates for  
source and target parity groups. The estimate function calculates expected results of a proposed volume  
migration based on XP12000/XP10000 monitor data collected during the user-specified monitor data  
term. The estimate function considers RAID level and HDD type when estimating expected usage rates  
(RAID-1 and RAID-5 have different access characteristics).  
The estimate function is a critical component of the auto migration function. The estimate function calculates  
expected parity group usage for source and target parity groups, and the auto migration function uses  
these estimates to verify proposed migrations. If any condition prevents Auto LUN XP from estimating an  
expected usage rate (for example, invalid monitor data), the auto migration function will not schedule the  
migration operation.  
For manual migration operations, when you select the source volume, Auto LUN XP displays expected  
usage rates for the source parity group, so you can see the predicted effect of migrating the selected  
volume out of its group. When you select the target volume, Auto LUN XP displays expected usage rates for  
the target parity group, so you can see the predicted effect of adding the selected source volume to the  
selected parity group.  
Auto LUN XP does not estimate processor or access path usage. You can use Auto LUN XP migration  
operations to improve DKP and DRR usage, but cannot use them to address CHP or access path usage.  
Perform Auto LUN XP migration only when you expect a large improvement in disk array performance.  
Auto LUN XP migration might not provide significant improvement if parity group or volume usage varies  
only slightly or if overall DKP or DRR usage is relatively high. Also keep in mind that disk array tuning  
operations might improve performance in one area while decreasing performance in another. For  
example, suppose parity groups A and B have average usage values of 20% and 90%, respectively. Auto  
LUN XP estimates that if one logical volume is migrated from parity group B to parity group A, the usage  
values will become 55% and 55%. If you perform this migration operation, I/O response time for parity  
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group B will probably decrease and I/O response time for parity group A might increase, while the overall  
throughput might increase or decrease.  
From an open-system host, you can also use RAID Manager command to perform manual volume  
migration. To use RAID Manager to perform Auto LUN XP migration, install Auto LUN XP on the  
XP12000/XP10000. For more information, see ”Using RAID Manager for manual Auto LUN XP  
Automatic migration  
Auto migration is the primary tuning method for disk arrays. Auto migration analyzes data and executes  
migration plans automatically based on user-specified parameters. Use Auto LUN XP to schedule auto  
migration operations, select data to be analyzed, and specify maximum time and performance impact of  
auto migration operations. Auto LUN XP displays a detailed log of auto migration activities.  
Auto migration operations are based on the following major parameters:  
Hierarchy of parity groups. Auto LUN XP arranges parity groups in the XP12000/XP10000 in a  
hierarchy based on HDD type, and assigns each parity group to a class based on performance of its  
HDD type. Classes are ordered from highest performance drive (class A) to lowest performance drive  
(class B, C, or higher depending on number of HDD types available). The auto migration function uses  
this hierarchy to identify target volumes for auto migration operations.  
The auto migration function can also specify “fixed” parity groups that are excluded from auto  
migration operations.  
Maximum disk usage. The auto migration function specifies the maximum disk usage rate for each  
HDD class in the XP12000/XP10000, and uses these limits to identify source volumes for auto  
migration operations.  
You must identify and specify disk usage limits for your environment. When you use the same maximum  
disk usage rate for all HDD classes, HDD performance is the only factor used in determining auto  
migration plans. When you specify different usage limits for HDD classes, you can bias the auto  
migration function to favor (or avoid) certain HDD types. Migrating high-usage volumes to higher HDD  
classes should significantly improve host access to volumes, which can also have a large effect on disk  
array performance.  
The auto migration function also specifies the maximum disk usage rate during auto migration  
operations, so you can control the impact of Auto LUN XP copy operations on disk array performance.  
If source or target parity group usage exceeds the specified limit during migration, the auto migration  
operation is canceled.  
Do not perform manual migration operations while the auto migration function is active. Always turn off the  
auto migration function and cancel any existing auto migration plan before performing manual migration  
operations.  
Storage management by maximum disk usage  
Use the auto migration function to specify maximum usage rate for each HDD class in an  
XP12000/XP10000. When a parity group exceeds this limit, the auto migration function makes a plan to  
migrate one or more volumes in this parity group to a parity group in a higher HDD class or to a parity  
group in the same HDD class with lower usage.  
This storage tuning method addresses and can eliminate disk drive activity bottlenecks. Auto LUN XP uses  
its estimated usage rates to verify each proposed auto migration, and will not perform a migration  
operation that might result in a target parity group exceeding the user-specified maximum disk usage rate.  
The auto migration function identifies parity groups that exceed the user-specified usage limit, and selects  
high-usage volumes as source volumes to be migrated to parity groups in higher HDD classes or to other  
parity groups in the same HDD class with lower usage.  
Keep reserved volumes in high HDD classes  
When parity groups in the highest HDD classes start to run out of reserved (empty) volumes, Auto LUN XP  
maintains available reserve volumes by automatically migrating low-usage volumes from higher HDD class  
groups to lower HDD class groups.  
14 Auto LUN XP for the XP12000/XP10000  
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The auto migration function can move a high-usage volume to a higher HDD class group, forcing a  
low-usage volume out of that HDD class group. To do so, the auto migration function requires a minimum of  
5% difference in estimated disk usage between the two volumes. If the difference is less than 5%, this  
migration is considered ineffective and the volume is not moved.  
Figure 3 Auto migration function example 1  
The auto migration function can also move a volume from one parity group to another group of the same  
HDD class, forcing another volume out of the destination parity group. To do so, the auto migration  
function requires a minimum of 20% difference in estimated disk usage between the two volumes. If the  
difference is less than 20%, this migration is considered ineffective and the volume is not moved.  
Figure 4 Auto migration function example 2  
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Auto migration sequence of events  
The following are the typical steps to set up an auto migration plan:  
1. Analyze monitor data. You specify the monitor data term to be analyzed.  
2. Make auto migration plan. You specify the auto migration plan’s parameters.  
3. Perform auto migration plan. You specify when the auto migration plan is executed.  
4. Analyze monitor data to confirm tuning results.  
Manual migration  
Use manual migration to select and migrate logical volumes under direct, manual control. The manual  
migration function displays estimated results of proposed migration operations, which you can use to  
determine expected performance improvements prior to the actual migration.  
While auto migration operations are based on disk usage and hierarchy of parity groups, you can use  
manual migration operations to address back-end processor usage (DKPs and DRRs) and volume and  
parity group usage. If monitoring shows high or unbalanced processor usage, use manual migration  
operations to tune the processor performance of the XP12000/XP10000.  
Requirements and restrictions  
Selection of CU group  
When you select CU group CU00-3F, the Auto LUN XP buttion is available. With all other CU group  
selections, the button is deactivated (grayed out).  
Logical volumes  
Source and target volumes must be in the same XP12000/XP10000. Also, a combination of source and  
target volumes should satisfy the following conditions:  
The source and target volumes have the same emulation type and capacity.  
If the emulation type is not OPEN-V, the source and target volumes are customized volumes (CVs), or  
the volumes are normal volumes.  
If you use LUN Security XP Extension with Auto LUN XP, volume management areas (VMA) are set on  
the source and target volumes, or VMAs are not set on both volumes. You cannot set VMA on a volume  
that is already reserved by Auto LUN XP. To set VMA on a volume, perform the VMA setting first, and  
then reserve that volume.  
The CU:LDEV numbers of volumes take the value between 00:00 and 3F:FF.  
NOTE: For users in the StorageAdmins group, the functions you can use are limited. For more information  
about these limitations, see the HP StorageWorks Command View XP user guide for XP Disk Arrays or the  
HP StorageWorks XP Remote Web Console user guide for XP12000/XP10000.  
Whether you can or cannot perform volume migration with a pair consisting of CVs and normal volumes  
depends on the volumes’ emulation type. For details, see Table 2.  
Table 2 Movability of volumes in pairs consisting of CV and normal values  
Source volume  
Target volume  
Normal volume Normal volume  
Normal volume CV  
CV  
CV  
(not OPEN-V)  
(OPEN-Vwithout (OPEN-V with  
(not OPEN-V) (OPEN-Vwithout (OPEN-V with  
VMA setting)  
VMA setting)  
VMA setting)  
VMA setting)  
Normal volume  
(not OPEN-V)  
Movable  
Not movable  
Not movable  
Not movable Not movable  
Not movable  
Normal volume  
(OPEN-V without  
VMA setting)  
Not movable  
Movable  
Not movable  
Not movable Movable  
Not movable  
16 Auto LUN XP for the XP12000/XP10000  
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Table 2 Movability of volumes in pairs consisting of CV and normal values (continued)  
Source volume  
Target volume  
Normal volume  
(OPEN-V with  
VMA setting)  
Not movable  
Not movable  
Movable  
Not movable Not movable  
Not movable  
CV  
Not movable  
Not movable  
Not movable  
Movable  
Not movable  
Not movable  
Movable  
Not movable  
Not movable  
Not movable  
(not OPEN_V)  
CV  
Not movable Movable  
(OPEN-V without  
VMA setting)  
CV  
Not movable  
Not movable  
Movable  
Not movable Not movable  
Movable  
(OPEN-V with  
VMA setting)  
You cannot make pairs of the volumes.  
Specify the logical volumes satisfying the conditions described in Table 2 as the source and target  
volumes. The source and target volumes must be specified by LDEV ID.  
Source volumes  
The following describes whether volumes can be used as source volumes:  
Volumes set as command devices (reserved for use by hosts) cannot be used as source volumes.  
Volumes in an abnormal or inaccessible condition (for example, fenced) cannot be used as source  
volumes.  
Volumes with Cache LUN data stored in cache cannot be used as source volumes.  
iSCSI volumes (volumes to which paths are defined from iSCSI ports) cannot be used as source  
volumes.  
Volumes that HP StorageWorks Continuous Access XP Journal or Universal Replicator for z/OS® uses  
as a data or journal volume cannot be used as source volumes.  
Volumes reserved by a migration program other than Auto LUN XP cannot be used as source volumes.  
Volumes on which the RAID Manager is performing volume migration operations.  
Volumes that form a Snapshot XP pair cannot be used as source volumes.  
Volumes used by Continous Access XP Journal or Universal Replicator for z/OS® as a journal volume.  
Volumes used by the IBM 3990 Concurrent Copy (CC) host software function.  
Virtual and pool volumes cannot be used as source volumes.  
Inaccessible volumes, or volumes in an abnormal state cannot be used as source volumes (for example,  
pinned track or fenced volumes).  
Volumes being shredded.  
Universal Replicator for z/OS®: If the status of a Universal Replicator for z/OS® volume is Pending  
duplex or Duplex, the volume cannot be used as a source volume. Note that if you specify a Universal  
Replicator for z/OS® volume as a source volume, you cannot specify an external volume as the target  
volume.  
Continuous Access XP Journal. If the status of a HP StorageWorks Continuous Access XP Journal volume  
is PSUS, PSUE, or SMPL, the volume can be used as a source volume. If not, the volume cannot be used  
as a source volume. When a Continuous Access XP Journal pair is deleted from the MCU, the status of  
both volumes changes to SMPL, and both volumes can be used as source volumes. When a Continuous  
Access XP pair is deleted from the RCU, the status of the P-VOL changes to PSUS, the status of the S-VOL  
changes to SMPL, and both volumes can be used as source volumes.If the status of a Continuous  
Access XP Journal volume is COPY or PAIR, the volume cannot be used as a source volume. Note that  
if you specify a Continuous Access XP Journal volume as a source volume, you cannot specify an  
external volume as the target volume.  
Business Copy. Using a BC volume as a source volume depends on the status and cascade  
configuration of the volume. If the status of a BC volume is not split-pending COPY(SP) or PSUS(SP), the  
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volume can be used as a source volume. If the status is COPY(SP) or PSUS(SP), the volume cannot be  
used as a source volume. This applies to cascaded and non-cascaded volumes.  
Table 3 shows which non-cascaded volumes can be used as source volumes.  
Table 3 Non-cascaded volumes that can be used as source volumes  
Pair configuration  
Use P-VOL as source volume  
Use S-VOLs as source volumes  
Ratio of P-VOL to S-VOLs is 1:1  
Ratio of P-VOL to S-VOLs is 1:2  
Ratio of P-VOL to S-VOLs is 1:3  
Yes  
Yes  
No  
Yes  
Yes  
Yes  
Table 4 shows which cascaded volumes can be used as source volumes.  
Table 4 Cascaded volumes that can be used as source volumes  
Pair Configuration  
Use P-VOL as source volume  
Use S-VOLs as source volumes  
L1 pair, ratio of P-VOL to S-VOLs is 1:1  
L1 pair, ratio of P-VOL to S-VOLs is 1:2  
L1 pair, ratio of P-VOL to S-VOLs is 1:3  
L2 pair, ratio of P-VOL to S-VOLs is 1:1  
L2 pair, ratio of P-VOL to S-VOLs is 1:2  
Yes  
Yes  
No  
Yes  
No  
Yes  
Yes  
Yes  
No  
No  
If any of the following operations are performed on an Auto LUN XP source volume during migration, the  
Auto LUN XP volume migration process stops:  
Continuous Access XP operations that change the volume status to something other than PSUS, PSUE, or  
SMPL  
BC operations that change the volume status to COPY(SP) or PSUS(SP)  
Continuous Access XP Journal operations  
Continuous Access XP Journal or Universal Replicator for z/OS® operation that changes the volume  
status to COPY.  
LUSE source volumes  
To specify a LUSE source volume for migration, specify individual LDEVs within the LUSE volume (for  
example, LDEVs with high usage). Auto LUN XP migrates only specified LDEVs. If needed, specify all LDEVs  
of the LUSE volume to relocate the entire LUSE volume. In this case, ensure that the required reserved target  
LDEVs are available.  
Target volumes  
Target volumes must be reserved prior to migration. Hosts cannot access reserved volumes. The following  
volumes cannot be reserved:  
Logical Unit Size Expansion (LUSE) volumes  
Volumes set as command devices  
Volumes assigned to BC or Continuous Access XP pairs  
Volumes reserved for BC operations  
Volumes with Cache LUN data stored in cache  
iSCSI volumes (for example, volumes to which paths are defined from iSCSI ports)  
Volumes in abnormal or inaccessible conditions (for example, fenced)  
Volumes Continuous Access XP Journal uses  
Volumes specified with the Read Only or Protect attribute  
Volumes that Volume Security disabled for use as secondary volumes  
Volumes that LUN Security XP Extension specified as Read Only or Protect or disabled for use as  
secondary volumes  
18 Auto LUN XP for the XP12000/XP10000  
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Volumes reserved by a migration program other than Auto LUN XP  
Volumes on which the RAID Manager is performing volume migration operations.  
Volumes that form a Snapshot XP pair.  
Virtual and pool volumes.  
Number of volumes  
In manual migrations, the number of migration plans that can be executed concurrently might be restricted,  
depending on use of other Command View XP or XP Remote Web Console programs and emulation types  
and sizes of migrated volumes. Therefore, the number of migration plans that can be executed concurrently  
is not constant.  
A maximum of 36 Auto LUN XP copy operations can be requested at the same time. Auto LUN XP performs  
migration operations sequentially (one volume at a time).  
The maximum number of Auto LUN XP copy operations plus BC pairs is 1024.  
Calculating the number of Auto LUN XP concurrent migration plans  
When a migration plan is created, differential tables are used. Differential tables are disk array resources  
®
that are shared by Flex Copy XP, Business Copy XP, ShadowImage for z/OS , Hitachi FlashCopy  
Mirroring, Hitachi FlashCopy Mirroring Version2, Snapshot XP, and Auto LUN XP. The maximum number of  
differential tables that Auto LUN XP can use is the number of total differential tables in the disk array minus  
the number used by other applications.  
When using Auto LUN XP for manual volume migration, the number of migration plans that can be  
executed concurrently depends on the following:  
How much shared memory is available for differential tables. The number of differential tables  
available in one disk array is determined by whether additional shared memory for differential tables is  
installed.  
• You can use 13,652 differential tables if no additional shared memory for differential tables is  
installed.  
• You can use 30,718 differential tables if additional shared memory for differential tables is installed.  
NOTE: Contact your HP account support representative for more information about adding additional  
shared memory.  
The emulation type and capacity of each volume to be migrated:  
The number of differential tables needed to migrate one volume differs depending on the emulation  
type and size of the volume. For the number of differential tables needed for migrating a mainframe  
volume, see page 19. For the number of differential tables needed for migrating an open-system  
volume, see page 21.  
You can estimate the maximum number of migration plans that can be executed concurrently by applying  
the previously described conditions to the following equation: Σ(α) = (β) , where:  
Σ(α) is the total number of differential tables needed to migrate all volumes.  
(β) is the number of available differential tables.  
For example, if you want to create 20 migration plans of OPEN-3 volumes (volume size = 2,403,360 KB),  
calculate the number of required differential tables (page 21) and enter this number in the equation:  
[(1 × 20) = 20] 13,652 or 30,718 .  
Since this equation is true, you can create 20 migration plans of OPEN-3 volumes.  
Calculating differential tables for mainframe volume migration  
When you migrate mainframe volumes, use the following equation to calculate the total number of  
required differential tables per migration plan:  
(X + Y) × 15 ÷ Z = Total number of differential tables per migration plan , where:  
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X: The number of cylinders in the volume to be migrated. If the volume is a CVS volume, use the number  
of cylinders in the custom volume instead of the default value for the emulation type.  
Y: The number of control cylinders (See Table 5).  
Z: The number of slots that can be managed by a differential table: 1916 × 32 .  
NOTE: Round the result of the calculation up to the nearest whole number.  
For example, if a volume has the emulation type 3390-3, and 3339 cylinders, calculate the total number of  
differential tables with the following equation: (3339 + 6) × 15 ÷ (1916 × 32) = 0.81836 .  
When you round 0.81836 up to the nearest whole number, it becomes 1. Therefore, the total number of  
differential tables for one migration plan is 1 when emulation type is 3390-3.  
The following table shows the number of the control cylinders according to the emulation type.  
Table 5 Control cylinders by emulation type  
Emulation type  
3380-3  
Number of control cylinders  
7
3380-3A  
3380-3B  
3380-3C  
3380-F  
7
7
7
22  
7
3380-K  
3380-KA  
3380-KB  
3380-KC  
3390-3  
7
7
7
6
3390-3A  
3390-3B  
3390-3C  
3390-3R  
3390-9  
6
6
6
6
25  
25  
25  
25  
23  
23  
23  
53  
53  
53  
53  
23  
22  
3390-9A  
3390-9B  
3390-9C  
3390-L  
3390-LA  
3390-LB  
3390-M  
3390-MA  
3390-MB  
3390-MC  
3390-LC  
NF80-F  
20 Auto LUN XP for the XP12000/XP10000  
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Table 5 Control cylinders by emulation type (continued)  
NF80-K  
7
7
7
7
NF80-KA  
NF80-KB  
NF80-KC  
Calculating differential tables for open-system volume migration  
When you migrate open-system volumes, use the information in Table 6 to calculate the total number of  
required differential tables per migration plan.  
Table 6 Total number of differential tables per migration plan  
Emulation type  
OPEN-3  
Equation  
Total number of differential tables per migration plan = [(X ÷ 48) + (Y × 15)] ÷ Z  
1,2  
(X): Capacity of the volume to be migrated (KB)  
OPEN-8  
(Y): Number of control cylinders associated with the emulation type (see Table 7)  
(Z): Number of slots that can be managed by a differential table (1,916 × 32)  
OPEN-9  
OPEN-E  
NOTE: Round the result of the calculation up to the nearest whole number.  
OPEN-L  
For example, if the volume’s emulation type is OPEN-3, and it is not a custom volume, the  
volume capacity (X) is the default volume size, 2,403,360 KB, and the total number of  
differential tables is calculated as follows:  
[(2,403,360 ÷ 48) + (8 × 15)] ÷ (1,916 × 32) = 0.81860  
When you round to the nearest whole number, the result is 1. Therefore, the total number of  
differential tables for one migration plan is 1 when the emulation type is OPEN-3.  
OPEN-V  
Total number of differential tables per migration plan = (X ÷ 256) ÷ (Z)  
2
(X): Capacity of the volume to be migrated (KB)  
(Z): Number of slots that can be managed by a differential table (1,916 × 32)  
NOTE: Round the result of the calculation up to the nearest whole number.  
For example, if the volume capacity (X) is the maximum OPEN-V volume capacity of  
3,019,898,880 KB, the total number of differential tables is calculated as follows:  
(3,019,898,880 ÷ 256) ÷ (1,916 × 32) = 192.40084  
When you round up to the nearest whole number, the result is 193. Therefore, the total number  
of differential tables for migration plan is 193 when the emulation type is OPEN-V.  
1. If the selected volume is a CVS (custom volume size) volume, use the capacity of the custom volume instead of the default volume  
capacity for the emulation type. Since the OPEN-L emulation type does not support custom volume operations, you must use the  
default volume capacity of OPEN-L for X.  
2. 1 KB equals 1024 bytes.  
The following table shows the number of control cylinders according to the emulation type.  
Table 7 Control cylinders by emulation type  
Emulation type  
OPEN-3  
Number of control cylinders  
8 (5,760KB)  
OPEN-8  
27 (19,440KB)  
OPEN-9  
OPEN-E  
19 (13,680KB)  
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Table 7 Control cylinders by emulation type (continued)  
OPEN-L  
OPEN-V  
7 (5,040KB)  
0 (0KB)  
Auto migration planning  
Auto LUN XP will not plan an auto migration when:  
There is no reserve volume with the same emulation type and capacity as the source volume in the  
same or next higher/lower HDD class (auto migration is performed only between consecutive classes or  
within the same class)  
Auto LUN XP cannot estimate the usage rate for the target parity group because of some condition (for  
example, invalid monitor data)  
The estimated usage of the target parity group or volume is over the user-specified maximum disk usage  
value for that HDD class  
The estimated performance improvement is not large enough  
Auto migration execution  
Auto LUN XP will not execute an auto migration operation when:  
The current usage (last 15 minutes) of the source or target parity group or volume is over the maximum  
disk usage rate for auto migration  
The current write pending rate for the disk array is 60% or higher  
Manual migration execution  
Auto LUN XP will execute a manual migration operation when the current write pending rate for the disk  
array is 60% or higher.  
Copy Threshold option  
If Auto LUN XP performs migration operations when the disk array workload is heavy, host server I/O  
performance might be degraded. To minimize this performance degradation, enable Copy Threshold,  
which temporarily stops Auto LUN XP operations when the disk array has a heavy workload. Copy  
operations that are stopped by the Copy Threshold option resume when the disk array workload is lighter.  
CAUTION: A volume migration operation might fail if hosts frequently update the volumes being  
migrated. If you enable Copy Threshold, Auto LUN XP temporarily stops copy processing when the disk  
array is overloaded, which increases the possibility of a failed volume migration operation. Using the  
Copy Threshold operation is not recommended when hosts frequently update the volumes being migrated.  
IMPORTANT: Contact your HP support account representative for more information about the Copy  
Threshold option.  
In addition to Auto LUN XP operations, Copy Threshold temporarily stops copy operations for the following  
applications when the disk array workload is heavy:  
Business Copy XP  
ShadowImage for z/OS  
Hitachi FlashCopy Mirroring  
Hitachi FlashCopy Mirroring Version 2  
Snapshot XP  
Flex Copy XP  
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Progress value  
If a volumes with heavy and light workloads are migrated together, the migration might not complete (even  
though the progress value indicates 100%). If this happens perform one of the following tasks.  
Reduce the workloads between hosts and the disk array and complete the migration.  
Stop the migration for the volume with heavy workloads, migrate the other volume, and then retry the  
migration which has been stopped.  
Effects on other XP products  
When the workloads for update I/Os between hosts and the disk array are heavy, longer time will be  
required to complete the volume migration because the copy of differential data is repeatedly executed.  
Longer copying times may be required for other XP products when this copy of differential data is  
executed. These XP products include: Auto LUN XP, Business Copy XP, ShadowImage for z/OS®,  
Compatible Mirroring for IBM® FlashCopy®, and Flex Copy XP.  
See Figure 8 for the amount of affected copying time. The copying time of other XP products depends on  
the number of pairs set to the XP product, however, the copying time may be increased up to twice.  
Table 8 The estimated delay in the copying speed  
Capacity of Migrated Volume (MB)  
Estimated delay in the copying  
speed (in minutes)  
0 - 1,000  
4
1,001 - 5,000  
18  
5,001 - 10,000  
37  
10,001 - 50,000  
50,001 - 100,000  
100,001 - 500,000  
500,001 - 1,000,000  
1,000,001 - 2,150,400  
186  
372  
1860  
3720  
9667  
The above estimates are calculated based on the assumption that the  
workload for update I/Os for the migrated volume is 50 IOPS for one volume.  
Maintenance  
Do not perform Auto LUN XP migration operations during disk array maintenance activities (for example,  
cache or drive installation, replacement, de-installation, or replacement of the microprogram).  
Auto migration parameters  
Auto migration parameters are initialized when the disk array configuration is changed (for example, when  
new drives or LDEVs are installed). Parameters include disk usage limit and migration time. After a change  
is made to the subsystem configuration, you must specify auto migration parameters again.  
Powering off disk arrays  
To turn the power off at the disk array, ensure that volume migration is finished. If migration is not finished,  
HP strongly recommends that you do not turn off the power until the migration is finished.  
If you turn the power off while migration is in progress, data migration stops and some of the data are not  
migrated. If you turn the power on later, Auto LUN XP resumes data migration. If data remains in shared  
memory, which is volatile memory, Auto LUN XP attempts to copy only data that have not been migrated to  
the migration destination. However, if data is lost from shared memory, Auto LUN XP attempts to copy all  
data to the migration destination; therefore, the copy operation takes more time. Auto LUN XP attempts to  
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copy data that have not been migrated and data that have already been copied to the migration  
destination.  
To power off the disk array, obtain the monitoring results first. If you do not, the Physical tab will not display  
some monitoring results. For example, if 4:00 a.m. and p.m. is specified in the Gathering Time option in  
the Auto LUN XP Monitoring Options pane and you turn off the power to the disk array at 5:00 p.m., the  
Physical tab will not display the monitoring results from 4:00 p.m. to 5:00 p.m.  
Starting Auto LUN XP  
1. Log in to Command View XP or XP Remote Web Console. For more information, see the  
HP StorageWorks Command View XP user guide for XP Disk Arrays or the HP StorageWorks XP Remote  
Web Console user guide for XP12000/XP10000.  
2. Ensure that you are in Modify mode. For more information, see the HP StorageWorks Command View  
XP user guide for XP Disk Arrays or the HP StorageWorks XP Remote Web Console user guide for  
XP12000/XP10000.  
3. Click Auto LUN / Perf Control Base Monitor / PFC in the left pane. The Auto LUN pane appears.  
Figure 5 Auto LUN pane  
4. Click Monitoring Options. The Monitoring Options pane appears.  
Auto LUN pane  
The Auto LUN pane is the performance management pane. It displays usage rates for parity groups,  
logical volumes, channel processors, disk processors, and so forth. The pane has several sections.  
NOTE: If a hyphen appears in monitoring data columns on the Auto LUN pane, statistics cannot be  
collected for that item.  
Tabs and selection trees  
When you click one of the tabs (WWN, Port-LUN, LDEV, or Physical) in the lower-left portion of the pane,  
the pane displays different trees of items you can click.  
The top left of the pane shows the status of the Short range Monitor and Long range Monitor. For  
information about these monitors, see ”Auto LUN Monitoring Options pane” on page 50.  
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Monitoring term section  
Use this section to specify the monitoring period. This setting affects all Auto LUN XP monitoring panes.  
Use the From box and slide bar to specify the starting date for the monitoring period. Use the To box and  
slide bar to specify the ending date for the monitoring period.  
Click Real Time to display workload statistics in real time. Use the list to specify the data range to be  
displayed in the graph. This check box appears dimmed when the Physical or LDEV tab is active. If the  
service processor is overloaded, extra time might be required for gathering monitoring results, and a  
portion of the results will not be displayed.  
The Apply button applies the monitoring period settings to the disk array.  
Monitoring data section  
This section includes the following:  
A list on the left to specify the units in which usage are displayed (MB/s, IOPS, and so forth).  
The CAXJ Monitor pane displays information about Continuous Access XP Journal’s continuous access  
operation. This information is also displayed in the Usage Monitor pane. For more information, see the  
HP StorageWorks Continuous Access XP Journal user guide.  
The URz Monitor pane displays information about the Universal Replicator for z/OS’s continuous  
access operation. This information is also displayed in the Usage Monitor pane. For more information,  
see the Hitachi True Copy for z/OS for the XP128/XP1024/XP10000/XP1200.  
NOTE: If any continuous access function is not installed in your environment, the corresponding  
tab for that function is inactive and you cannot display that pane.  
A list on the right to specify the type of monitoring required: long range or short range. Long range  
monitoring is available only when the Physical tab is active.  
Table section  
This section displays the following:  
Statistics about traffic between host bus adapters (HBAs) in the hosts and ports on the disk array, if the  
WWN tab is active.  
Traffic statistics about WWNs and ports if the Port-LUN tab is active.  
Workload statistics about logical volumes if the LDEV tab is active.  
Statistics about parity group usage, processor usage, and so forth if the Physical tab is active.  
The Plan button is displayed when the Physical tab is active. Clicking this button displays Plan pane  
containing the Manual Migration, Auto Migration, Attribute, and History tabs.  
The Draw button draws a graph in the pane’s graph section. The graph charts the statistics displayed in  
the table section.  
The PFC button is displayed when the WWN or Port tab is active. Clicking this button displays the  
Performance Control pane. For details, see HP StorageWorks Performance Control XP user guide.  
The Current Control status is displayed when the WWN or Port tab is active. It displays the status of  
Performance Control:  
Port Control: System performance is controlled by the upper limits and threshold specified in the Port  
tab of the Performance Control pane  
WWN Control: System performance is controlled by the upper limits and threshold specified in the  
WWN tab of the Performance Control pane  
No Control: System performance is not controlled by Performance Control  
For further information, see HP StorageWorks Performance Control XP user guide.  
Graph section  
The graph shows statistics displayed in the table. The vertical axis shows usage values. The horizontal axis  
shows date or time.  
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Use the Chart Y Axis Rate list to select the highest value of the Y-axis (the vertical axis). This list is not  
displayed when the Plan button is active.  
If you click the Detail check box, the graph displays detailed statistics. This check box is displayed when  
the Port-LUN or LDEV tab is active. The contents of the graph depend on the item selected in the list to the  
right of the table, as shown in the following table.  
Table 9 Graph contents based on list selection (Port-LUN tab)  
Selection in list  
Graph contents  
I/O Rate (number of I/Os per second)  
Read (number of read accesses per second)  
Statistics in sequential access mode  
Statistics in random access mode  
Statistics in CFW (cache fast write) mode  
If the read hit ratio or write hit ratio is high, random  
access mode is used for transferring data instead of  
sequential access mode. For example, random  
access mode might be used for transferring data to  
disk areas where Cache LUN XP is applied.  
1
1
Write (number of write accesses per second)  
Read Hit (read hit ratio)  
Write Hit (write hit ratio)  
Back Transfer (backend transfer: number of I/Os  
between the cache memory and disk drives)  
Number of data transfers from the cache memory to  
disk drives  
Number of data transfers from disk drives to cache  
memory in sequential access mode  
Number of data transfers from disk drives to cache  
memory in random access mode  
Trans. Rate (number of data transfers)  
The graph does not display detailed information.  
1. Available only when I/O rates are displayed.  
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WWN, Port-LUN, LDEV, and Physical tabs  
Figure 6 WWN, Port-LUN, LDEV, and Physical tabs  
Click one of the tabs (WWN, Port-LUN, LDEV, or Physical) in the lower-left portion of the pane to view data  
about ports, LDEVs, or physical components.  
When you click a tab, the selection tree in the lower-left portion of the pane changes. You can then click  
entities to display information in the table and graph sections of the pane.  
If I/O workloads between hosts and the disk array become heavy, the disk array gives higher priority to  
I/O processing than monitoring processing; therefore, some monitoring data might be missing. If  
monitoring data are frequently missing, use the Gathering Interval option in the Monitoring Options pane  
to increase the collection interval.  
WWN tab  
This tab displays the Subsystem folder and PFC groups, which are groups of multiple WWNs.  
Double-clicking a PFC group (  
) displays host bus adapters (  
) in the PFC group. Double-clicking Not  
Grouped in the tree shows host bus adapters (WWNs) that do not belong to any PFC group.  
To start monitoring traffic between host bus adapters and disk array ports, you must specify settings before  
starting monitoring.  
If the SVP is overloaded, more time than the gathering interval allots might be required for updating the  
displayed monitoring data. In this case, some portion of monitoring data does not appear in the pane. For  
example, if the gathering interval is 1 minute, and the display in the pane is updated at 9 minutes and the  
next update occurs at 9:02, the pane (including the graph) does not display monitoring results for the  
period of 9:00 to 9:01. This situation occurs when you use a Command View XP or XP Remote Web  
Console system, and when the SVP is used to perform maintenance operations for the disk controller.  
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After replacing the micro program, monitoring data is not stored until a service technician releases the SVP  
from Modify mode.  
NOTE: If a host bus adapter’s WWN is displayed in red in the tree, the host bus adapter is connected to  
two or more ports, but Performance Control does not control traffic between the HBA and some ports. For  
information about controlling the traffic between the HBA and all connected ports, see HP StorageWorks  
Performance Control XP user guide.  
Port-LUN tab  
This tab displays ports. The tree view displays the following icons.  
Table 10 Auto LUN pane, Port-LUN tab icons  
Icon  
Status  
Short-wave Fibre Channel port in standard mode with LUN security.  
If the port name is followed by its fibre address, the port is a Fibre Channel port. For example, CL1-A(EF)  
indicates the CL1-A port is a Fibre Channel port.  
Short-wave Fibre Channel port in standard mode without LUN security.  
Short-wave Fibre Channel port in high-speed or high-speed (2 port) mode with LUN security.  
Short-wave Fibre Channel port in high-speed or high-speed (2 port) mode without LUN security.  
Long-wave Fibre Channel port in standard mode with LUN security.  
Long-wave Fibre Channel port in standard mode without LUN security.  
Long-wave Fibre Channel port in high-speed or high-speed (2 port) mode with LUN security.  
Long-wave Fibre Channel port in high-speed or high-speed (2 port) mode without LUN security.  
NOTE: High-speed (2 port) mode is available only if the XP disk array has firmware version 21.06.22 or  
later installed.  
NOTE: Auto LUN/Performance Control Base Monitor obtains statistics about traffic only on ports  
connected to open-system host groups. Statistics for ports connected to mainframe host groups cannot be  
obtained.  
LDEV tab  
This tab displays parity groups. Box folders appear below the Subsystem folder. The number at the end of  
a Box folder name indicates the number at the beginning of the parity group ID. For example, if you  
double-click the Box 1 folder, the tree view displays a list of parity groups that have IDs beginning with 1  
(such as 1-1 and 1-2).  
If you double-click a parity group, the logical volumes in the parity group appear in the table. If a parity  
group ID starts with the letter E, the logical volumes in the parity group are external LUs.  
The parity group icon ( ) represents a single parity group or two or more connected parity groups. If two  
or more parity groups are connected, logical volumes can be striped across two or more drives. Therefore,  
connected parity groups provide faster access (particularly faster sequential access) to data.  
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If the parity group icon represents a single parity group 1-3, the text 1-3 is displayed on the right of the  
icon. If the parity group icon represents two or more connected parity groups, all connected parity groups  
are displayed to the right of the icon. For example, if parity group 1-3 is connected with parity group 1-4,  
the text 1-3[1-4] is displayed on the right of the parity group icon. All parity groups connected with 1-3 are  
enclosed by square brackets.  
When the Business Copy or SI390 quick restore operation is being performed, a Control View pane might  
display old information (status prior to the quick restore operation) on logical volume (LDEV) configurations.  
In this case, wait until the quick restore operation completes, and click Refresh (  
Command View XP or XP Remote Web Console window.  
) to update the  
Physical tab  
This tab displays parity groups, CHAs, DKAs, and other related items. The tree view displays the following  
icons.  
Table 11 Auto LUN pane, Physical tab icons  
Icon  
Description  
Parity group.  
FICON channel adapter.  
CHA-1G (Mfibre 4Port)*  
CHA-1E (Fibre 16Port)*  
Short-wave Fibre Channel adapter in standard mode.This port icon indicates  
either of the following:  
a Fibre Channel port in Standard mode. LUN security is not applied to  
this port.  
an iSCSI port to which LUN security is not applied  
NOTE: Note: An iSCSI port is not supported in the present version of  
Command View XP.  
This port icon indicates either of the following:  
CHA-1E (Fibre 16Port)*  
a Fibre Channel port in Standard mode. LUN security is applied to this  
port.  
an iSCSI port to which LUN security is applied (Note: An iSCSI port is not  
supported in the present version of TagmaStore™ USP)  
If the port name is followed by its fibre address, the port is a Fibre Channel port. If  
the port name is followed by two hyphens, the port is an iSCSI port. For example,  
CL1-A(EF) indicates that the CL1-A port is a Fibre Channel port, and CL1-A(--)  
indicates that the CL1-A port is an iSCSI port.  
NOTE: An iSCSI port is not supported in the present version of Command  
View XP.  
NOTE: For detailed information about LUN security, please refer to LUN  
Manager User's Guide.  
Short-wave Fibre Channel adapter in high-speed or high-speed (2 port) mode.  
CHA-1E (Fibre 16Port)*  
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Table 11 Auto LUN pane, Physical tab icons (continued)  
Icon  
Description  
a Fibre Channel port in High Speed mode. LUN security is applied to this port.  
CHA-1E (Fibre 16Port)*  
CHA-1E (Fibre 16Port)*  
a Fibre Channel adapter in Initiator/External MIX mode  
a Fibre Channel port in Initiator/External MIX mode. LUN security is applied to this  
port  
CHA-1E (Fibre 16Port)*  
CHA-2U (iSCSI 4Port)*  
CHA-1F (NAS 4Port)*  
Long-wave Fibre Channel adapter in standard mode.  
Channel adapter for use in an iSCSI environment  
Long-wave Fibre Channel adapter in high-speed or high-speed (2 port) mode.  
Channel adapter for use in a NAS environment  
Disk processor (DKP).  
Data recovery and reconstruction processor (DRR).  
Access path.  
* The channel adapter number and number of ports that displayed on the right side of the icon are examples.  
NOTE: High-speed (2 port) mode is available only if the XP disk array has firmware version 21.06.22 or  
later installed.  
In short range, if I/O workloads between hosts and the disk array become heavy, the disk array gives  
higher priority to I/O processing than monitoring processing; therefore, some monitoring data might be  
missing. If monitoring data is missing frequently, use the Gathering Interval option in the Monitoring  
Options pane to increase the collection interval.  
NOTE: Short-range monitoring data and long-range monitoring data may have some margin of error.  
Creating and executing migration plans  
Before you use Auto LUN XP, you must first reserve logical volumes for migration destinations. See  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Plan - Manual Migration tab appears.  
There are four tabs: Manual Migration, Auto Migration, Attribute, and History. Click the tabs to access that  
pane. By default, the Manual Migration tab appears.  
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Manual Migration tab  
Use this tab to create and execute migration plans for manually migrating volumes.  
Figure 7 Manual Migration tab  
Pane contents  
This pane contains the following items:  
Monitoring Term: Displays the monitoring period specified in the Auto LUN pane, analyzes disk usage  
information collected by Auto LUN XP during the monitoring period, and calculates estimated usage  
rates of the source and target parity groups after a proposed volume migration.  
Gathering Time: Displays the time specified in the Auto LUN XP Monitoring Options pane. The disk  
array collects usage statistics about resources (such as hard disk drives) at the specified gathering time.  
Auto LUN XP uses collected usage statistics to estimate usage rates of parity groups after a proposed  
volume migration.  
Source LDEV section: Specifies the source volume (logical volume you want to migrate). On the right are  
the current usage rate for the parity group to which the source volume belongs and estimated usage  
rate for the parity group after a proposed volume migration.  
Target (Reserved) LDEV section: Specifies the target volume (where you want to migrate the source  
volume). On the right are the current usage rate for the parity group to which the target volume belongs  
and estimated usage rate for the parity group after a proposed volume migration.  
Tree view  
This view lists parity groups in the disk array. Double-clicking a parity group icon displays the logical  
volumes in that parity group.  
Table view  
Plan columns:  
Stat: Displays an error code if an error occurs during execution of a migration plan. To view  
detailed information about an error, select and right-click the error code, and click Details.  
DEL: Displays the character D if you delete a migration plan that is waiting for execution. Migration  
plans indicated by D are deleted when you click Apply.  
%: Displays the progress of the manual migration.  
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Source LDEV columns:  
LDEV: Logical volume ID  
Emulation: Emulation type of the logical volume  
Capacity: Capacity of the logical volume  
RAID: RAID type  
PG: Parity group ID (frame and group number)  
HDD: Type of hard disk drive  
CLPR: The numbers and names of CLPRs corresponding to each parity group to which the logical  
volume belongs  
Target LDEV columns:  
LDEV: Logical volume ID  
RAID: RAID type  
PG: Parity group ID (frame and group number)  
HDD: Type of hard disk drive  
Buttons  
Set: Adds a new manual migration plan consisting of the logical volume in SourceLDEV and the logical  
volume in TargetLDEV. Each row in the table indicates a migration plan.  
Delete: Deletes the migration plan. If you select a migration plan in black (migration plan waiting for  
execution or being executed) and click Delete, the DEL column displays the character D. The selected  
migration plan will not be deleted until you click Apply.  
Refresh: Updates information in the tab after applying a manual migration plan (after clicking the  
Apply button).  
Apply: Applies manual migration plans in the table to the disk array.  
Source LDEV addition: The button below the Source LDEV section.  
Target LDEV addition: The button below the Target (Reserved) LDEV section.  
Reset: Cancels execution of the manual migration plan.  
Close: Closes this pane.  
Migrating volumes manually  
To migrate volumes manually, you must create migration plans. A migration plan is a pair of  
volumes—source volume and corresponding target (destination) volume. To migrate more than one logical  
volume, you must create multiple migration plans.See also ”Calculating the number of Auto LUN XP  
NOTE: For manual migrations, you can specify logical volumes in a fixed parity group as source or target  
volumes.  
CAUTION: Do not perform manual migrations while the Auto Migration function is active. Doing so  
cancels all existing auto migration plans. Use the following procedure to turn off Auto Migration and  
cancel any auto migration plans before doing a manual migration.  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Before migrating logical volumes manually, click Auto Migration to turn off Auto Migration.  
4. In Auto Migration Plans, click Delete All to remove all auto migration plans.  
5. In Auto Migration Function, click OFF, and click Set.  
6. Click Manual Migration.  
32 Auto LUN XP for the XP12000/XP10000  
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7. In the tree, double-click a parity or external volume group. A list of logical volumes in that group  
appears. Logical volumes that can be migrated are indicated by the icon.  
icon, click the source volume (logical volume to migrate), and click the S  
8. From a volume with the  
button. The selected volume is defined as the source volume.  
9. In the tree, double-click the parity group to which you want to migrate the source volume. A list of  
logical volumes in that parity group appears. Click the target (destination) volume. You can click only  
volumes with a green pin icon or an icon framed by a blue line.  
10. From the logical volumes indicated by a blue icon with a left-pointing arrow, select the logical volume  
to define as the target volume, and click the T button below the Target (Reserved) LDEV section.  
Auto LUN XP calculates estimated usage rates of the source and target parity group. Estimated results  
are displayed on the right of the Source LDEV and Target (Reserved) LDEV text box and in the graph.  
11. Check the estimated results in Source LDEV, Target (Reserved) LDEV, and the graph. If you think you can  
achieve the necessary disk performance, go to the next step. If not, change the source or target volume.  
12. Click Set.  
A new migration plan, consisting of the specified source and target volumes, is added to the table. The  
new migration plan is shown in blue.  
To migrate more than one volume manually, repeat the steps to add migration plans.  
13. Click Apply.  
Migration plans are applied to the disk array and wait for execution. Auto LUN XP performs multiple  
migration plans concurrently. The font color of the migration plans changes from blue to black.  
When a logical volume starts migration, the % column displays the migration’s progress. When  
migration is complete, the volume’s migration plan disappears.  
If an error occurs during migration, an error code appears.  
Deleting manual migration plans  
To delete a migration plan, click a migration plan, and click Delete.  
You cannot use the Delete button to delete migration plans executed by programs other than Auto LUN XP.  
If you select a migration plan in black (migration plan waiting for execution or being executed) and click  
Delete, the character D is displayed in the DEL column. The migration plan will not be deleted until you  
click Apply.  
CAUTION: If you delete a migration plan that is being executed, the integrity of data on the target volume  
cannot be guaranteed.  
When an error condition exists on the disk array, resource usage can increase or become unbalanced. Do  
not use the usage statistics collected during an error condition as the basis for planning migration  
operations.  
Auto Migration tab  
Use this tab to make settings for automating volume migrations.  
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NOTE: Auto migration cannot use external volumes or volumes reserved by another program.  
Figure 8 Auto Migration tab  
Pane contents  
This pane contains the following items:  
Monitoring Term: Displays the monitoring period specified in the Auto LUN pane, analyzes disk usage  
information collected by Auto LUN XP during the monitoring period, and calculates estimated usage  
rates of the source and target parity groups after a proposed volume migration.  
Gathering Time: Displays the time specified in the Auto LUN XP Monitoring Options pane. The disk  
array collects usage statistics about resources (such as hard disk drives) at the specified gathering time.  
Auto LUN XP uses collected usage statistics to estimate usage rates of parity groups after a proposed  
volume migration.  
Auto Migration plans section  
Auto Migration Function: If Auto Migration Function is ON, auto migrations take place at the next  
migration time  
Migration Status: Progress of auto migration plans  
Not planned yet: Has not yet created auto migration plans  
Not performed yet: Has created auto migration plans, but has not executed them  
Failed to make plan: Failed to create auto migration plans  
Under migration: Is executing an auto migration plan  
Last migration has canceled (Please see log file): Has canceled the plan  
Migration successfully ended. Plan has done: Successfully executed the migration plans  
Plan Creation Time: When auto migration plans were created  
Next Migration Time: When the next auto migrations will be performed  
Make New Plan button: Discards existing auto migration plans and creates new auto migration plans  
Delete button: Deletes the selected auto migration plan  
Delete All button: Deletes all auto migration plans  
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Auto Plan parameter section  
Auto Migration Function: If you click ON, logical volumes are automatically migrated. If you click OFF,  
they are not.  
Sampling Term: The auto migration function analyzes resource usage within the SAMPLING TERM and  
creates auto migration plans based on that analysis. Use Sampling Term to narrow resource usage  
statistics to be analyzed.  
Date and Time: Specifies a date/time frequency for analyzing resource usage.  
Number of Sampling Points: Click All sampling points or X highest sampling points. With X highest  
sampling points, Auto LUN XP uses the Xth highest average usage rate during the sampling period to  
determine disk usage. Use the list to specify the value of X.  
Migration Time: Specifies the time when auto migration starts  
Auto Migration Condition: Specifies the following auto migration conditions:  
Max. migration duration: Time limit (10-120 minutes) for an auto migration plan. If the migration is  
not completed within this limit, remaining migration operations are performed at the next scheduled  
execution time.  
Max. disk utilization: Disk usage limit (10-100%) during auto migration. If the most recent usage for  
any source or target parity group is over this limit when auto migration starts, Auto LUN XP cancels  
the auto migration plan and retries the plan at the next execution time.  
Max. number of vols for migration: The maximum number of volumes (1-40) that can be migrated  
during one auto migration plan.  
Default button: Sets parameters to their default values and applies them to the disk array.  
Set button: Applies parameters to the disk array.  
Reset button: Restores parameters to the value before the change.  
Close button: Closes this pane.  
Setting auto migration parameters  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Click Auto Migration. The Auto Migration tab appears.  
4. In the Date and Time boxes in Sampling Term, specify a period to analyze resource usage statistics.  
Ensure that the data term and auto migration execution time are separated by at least one hour. For  
example, if the sampling term is from 10:00 to 14:00, auto migration should not be performed  
between 09:00 and 15:00.  
5. In Number of Sampling Points, click All sampling points or X highest sampling points, and click the  
value of X in the list.  
6. In Migration Time, specify when to start auto migration operations. The following scheduling restrictions  
apply to Migration Time:  
• Must be at least 15 minutes plus the specified maximum migration duration earlier than disk array  
auto-reboot or data gathering.  
• Must be at least 30 minutes later than disk array auto-reboot or data gathering.  
• Must be at least 15 minutes plus the specified maximum migration duration earlier than the specified  
Data Term start time.  
• Must be at least 60 minutes later than the specified Data Term end time.  
7. If necessary, set the auto migration parameters as follows:  
Max. migration duration: Set a time limit for auto migrations. If auto migration is not completed  
within this limit, Auto LUN XP cancels operations.  
Max. disk utilization: Set a disk usage limit.  
Max. number of vols for migration: Specify the maximum number of volumes that can be auto  
migrated at the same time.  
8. In Auto Migration Function, click ON.  
9. Click Set.  
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10. Click Close.  
Deleting auto migration plans  
To delete all auto migration plans, click Delete All.  
To delete one auto migration plan, click the plan in the table, and click Delete.  
Remaking auto migration plans  
If auto migration operations do not produce enough improvements in disk access performance, discard the  
current migration plans and create new auto migration plans.  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Click Auto Migration. The Auto Migration tab appears.  
4. In the Auto Migration tab, change the limit on the disk usage rate for HDD classes.  
5. Make any other changes in the Auto Plan Parameters section of the pane.  
6. Click Make New Plan. The existing auto migration plans are deleted and new auto migration plans are  
created.  
7. Click Close.  
Attribute tab  
Use this tab to find out which parity group belongs to which HDD class. The tab also displays information  
about parity groups, such as parity group usage, logical volume capacity, and RAID type.  
Figure 9 Attribute pane  
Pane contents  
This pane contains the following items:  
Monitoring Term: Displays the monitoring period specified in the Auto LUN pane, analyzes disk usage  
information collected by Auto LUN XP during the monitoring period, and calculates estimated usage  
rates of the source and target parity groups after a proposed volume migration.  
Gathering Time: Displays the time specified in the Auto LUN XP Monitoring Options pane. The disk  
array collects usage statistics about resources (such as hard disk drives) at the specified gathering time.  
36 Auto LUN XP for the XP12000/XP10000  
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Auto LUN XP uses collected usage statistics to estimate usage rates of parity groups after a proposed  
volume migration.  
Attribute tree: Lists HDD classes. When you double-click an HDD class icon, a list of parity groups in  
that HDD class appears.  
Apply button: Applies settings in the Attribute tab to the disk array.  
Reset button: Discards changes in the Attribute tab and restores the original settings.  
Close button: Closes this pane.  
Class table boxes: When you click a class in the Attribute tree, the table displays information about  
parity groups in that class.  
Figure 10 Class table boxes  
PG: Parity group ID.  
HDD: Type of hard disk drive.  
Ave.: Average usage rate for the parity group. If an exclamation mark (!) appears, the reported  
usage rate might be inaccurate because the configuration has changed (for example, volumes have  
been moved by a migration plan or changed by VSC).  
Max.: Maximum usage rate for the parity group. If an exclamation mark (!) appears, the reported  
usage rate might be inaccurate.  
Total: Total number of logical volumes in the parity group.  
CLPR: The number and name of the CLPR that corresponds to the parity group to which the logical  
volume belongs, in the format CLPR number:CLPRname. For more information, see the  
HP StorageWorks XP Disk/Cache Partition user guide.  
Parity group table boxes: When you click a parity group, the table displays information about logical  
volumes in that parity group.  
Figure 11 Parity group table boxes  
Icons: A reserved volume ( ), which can be used as a migration destination; a normal volume  
(
), which cannot be used as a migration destination; free space ( ); and so forth.  
LDEV: Logical volume ID.  
Emulation: Emulation type of logical volume.  
Capacity: Capacity of logical volume.  
Ave.: Average usage rate for logical volume. If an exclamation mark (!) appears, the reported  
usage rate might be inaccurate.  
Max.: Maximum usage rate for logical volume. If an exclamation mark (!) appears, the reported  
usage rate might be inaccurate.  
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CLPR: Number and name of the CLPR that corresponds to the parity group to which the logical  
volume belongs, in the format CLPR number:CLPRname. For more information about CLPRs, see the  
HP StorageWorks XP Disk/Cache Partition user guide.  
Owner: Program that reserved the volume. If Auto LUN XP reserved this volume, USP is displayed. If  
another program reserved this volume, Other[XX] is displayed, where [XX] is the program ID. If this  
volume is not reserved and is a normal volume, a hyphen (-) is displayed.  
Reserving target volumes  
To migrate volumes, you must reserve logical volumes as migration destinations (targets) regardless of the  
migration method (manual or automatic). Migration will not take place if no logical volume is reserved.  
NOTE: The term reserved volume refers to a volume that is reserved for use as a migration destination.  
Reserved volumes are denoted by blue  
is not reserved as a migration destination.  
icons. The term normal volume sometime refers to a volume that  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Click Attribute. The Attribute tab appears.  
4. In the Attribute tree, locate a logical volume to use as a migration destination. First click an HDD class  
to display a list of parity groups in that class. Next, click a parity group to display a list of logical  
volumes in that group.  
5. In the table on the right, locate logical volumes preceded by the  
or  
icons. From those logical  
volumes, choose the logical volume, and right-click.  
6. Click Reserved LDEV. The icon changes to  
.
7. Click Apply. The settings in the pane are applied to the disk array. The specified logical volume is  
reserved as a migration destination.  
If you right-click a logical volume preceded by the  
icon changes to  
icon (reserved volume) and click Normal LDEV, the  
, and you cannot use the volume as a migration destination. This procedure does not  
work when the logical volume is preceded by the green Reserved icon, which indicates another program  
reserved the volume.  
Setting (fixing) parity groups  
The auto migration function excludes fixed parity groups. However, volumes in a fixed parity group can be  
used for manual migration operations.  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Click Attribute. The Attribute tab appears.  
4. In the tree, double-click an HDD class folder.  
The table on the right displays a list of parity groups in the HDD class. An icon indicates parity groups  
that can include source or target volumes. A different icon indicates fixed parity groups, which cannot  
include source nor target volumes.  
38 Auto LUN XP for the XP12000/XP10000  
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5. Right-click the parity group you want to fix.  
Figure 12 Attribute tab tree  
6. Click Fixed PG. The parity group becomes fixed and is marked with an icon.  
7. Click Apply.  
Releasing (unfixing) parity groups  
To move logical volumes in a fixed parity group to another parity group, change the fixed parity group to  
a normal parity group. To do this, go to the Attribute tab, right-click the fixed parity group, and click  
Normal PG.  
Changing maximum disk usage rates for HDD classes  
Each HDD class has a default disk usage rate. This limit affects auto migration behavior. You can change  
the limit on disk usage rate.  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Click Attribute. The Attribute tab appears.  
4. In the Attribute tree, right-click an HDD class folder, and click Change Class Threshold. The Change  
Threshold pane appears.  
5. Click the value you want to use as the limit.  
6. Click OK. In the Attribute tree, the selected value is displayed to the right of the specified class.  
7. Click Apply. The new limit is applied to the disk array.  
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History tab  
Use this tab to display information about automatic and manual migration operations that occurred in the  
past. You can find out when migration operations took place and whether they finished successfully.  
Figure 13 History tab  
Pane contents  
This pane contains the following items:  
Monitoring Term: Displays the monitoring period specified in the Auto LUN pane, analyzes disk usage  
information collected by Auto LUN XP during the monitoring period, and calculates estimated usage  
rates of the source and target parity groups after a proposed volume migration.  
Gathering Time: Displays the time specified in the Auto LUN XP Monitoring Options pane. The disk  
array collects usage statistics about resources (such as hard disk drives) at the specified gathering time.  
Auto LUN XP uses the collected usage statistics to estimate usage rates of parity groups after a  
proposed volume migration.  
Auto Migration History: Displays log information, showing the creation and execution of auto migration  
plans. The Erase button erases the information.  
Migration History: Displays a log of volume migration events and a log or migration plan executed by  
programs other than Auto LUN XP. The table displays the following information:  
Date: Event date  
Time: Event time  
Action: Description of migration operation or event  
Source[Parity PR.]: Source volume and parity group  
Destination: Target volume and parity group  
Owner: Program that reserved the volume. If Auto LUN XP reserved this volume, USP is displayed. If  
another program reserved this volume, Other[XX] is displayed, where [XX] is the program ID.  
Refresh button: Updates information in the History tab.  
Close button: Closes this pane.  
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Viewing migration history logs  
The History tab displays logs of automatic and manual migration operations.  
1. In the Auto LUN pane, click Physical.  
2. Click Plan. The Manual Migration tab appears.  
3. Click the History tab. The History tab appears.  
To view logs of auto operations, look at Auto Migration History.  
To view logs of manual migration operations, look at Migration History.  
The migration logs may display the following messages.  
Normal end of migration:  
Migration Complete (CU:LDEV->CU:LDEV) Start:yyyy/mm/dd hh:min:sec -> End:yyyy/mm/dd  
hh:min:sec  
(a)  
(b)  
(c)  
(d)  
(a) Source volume  
(b) Target volume  
(c) Copy start time  
(d) Copy end time  
Migration was canceled (over the limit duration):  
Migration Canceled (CU:LDEV->CU:LDEV) Start:yyyy/mm/dd hh:min:sec -> End:yyyy/mm/dd  
hh:min:sec  
(a)  
(b)  
(c)  
(d)  
(a) Source volume  
(b) Target volume  
(c) Copy start time  
(d) Copy end time  
Migration was canceled (invalid parity group):  
Migration Canceled (CU:LDEV (X-X)->CU:LDEV (X-X)) yyyy/mm/dd hh:min:sec (Invalid Parity  
Group)  
(a)  
(b)  
(c)  
(d)  
(e)  
(a) Source volume  
(b) Parity group of the source volume  
(c) Target volume  
(d) Parity group of the target volume  
(e) Canceled time  
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Migration was stopped (other reason):  
Migration Stopped (CU:LDEV->CU:LDEV) yyyy/mm/dd hh:min:sec (XXXXXXXXXXXX)  
(a)  
(b)  
(c)  
(d)  
(a) Source volume  
(b) Target volume  
(c) Canceled time  
(d) Reason for cancellation:  
No reserve volume. No reserved volume is set. Please make another plan.  
Reserve volume emulation is different. The reserved volume's emulation type is  
different.  
Utilization check. The usage rate is over the limit, or there is no monitor data.  
Migration failed. Error code: XXXX. The migration operation failed.  
Reserve volume size is different. Reserve volume size is different.  
Reserve volume emulation is not supported. The emulation type of reserved volume is  
not supported.  
Utilization check failed. The check of the usage rate finished abnormally.  
Reserve volume check failed. The check of the reserved volume finished abnormally.  
Migration plan was deleted (because the previous plan had been deleted):  
Migration Plan deleted (CU:LDEV->CU:LDEV) yyyy/mm/dd hh:min:sec (Pre-Plan is deleted)  
(a)  
(b)  
(c)  
(a) Source volume  
(b) Target volume  
(c) Canceled time  
Started making an auto migration plan:  
yyyy/mm/dd hh:min : MakePlan function starts  
(a)  
(a) Start time  
Finished making an auto migration plan:  
yyyy/mm/dd hh:min : MakePlan function finishes  
(a)  
(a) End time  
Output the auto migration plans:  
X plans are output  
(a)  
(a) Number of plans  
Contents of auto migration plan:  
PlanXXX: Src LDEV CU:LDEV in Grp X-X, Dst LDEV CU:LDEV in Grp X-X  
(a) (b)  
(c)  
(d)  
(e)  
(a) Plan number  
(b) Source volume  
(c) Parity group of the source volume  
(d) Target volume  
(e) Parity group of the target volume  
42 Auto LUN XP for the XP12000/XP10000  
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Failed making an auto migration plan:  
yyyy/mm/dd hh:min : MakePlan is terminated by error: XXXXXXXXXX  
(a)  
(b)  
(a) End time  
(b) Reason for failure:  
Cannot make proper migration plan: The program could not make a proper migration plan.  
Check the number of the reserved volumes and their locations. Check the maximum disk  
usage and change if necessary.  
Failed to get XXXXXXXXXX (information or data: The program failed to get the  
information or data to make a plan. In the case of information, make the initial value  
again by selecting [Initialize]. In the case of data, check the status of gathered  
data and get them again.  
Failed to write to XXXXXXXXXX (information or data): The program failed to write the  
information to make a plan.  
Invalid XXXXXXXXXX (information or data): The required information/data could not be  
used because the information was invalid. In the case of information, make the initial  
value again by selecting [Initialize]. In the case of data, check the status of  
gathered data and get them again.  
Memory allocation error: The program failed to allocate the memory to make the plan.  
"C:\dkc200\others\Auto LUNatm.ini does not exist.": Auto LUN failed to make plans  
because the Auto LUN atm.ini file did not exist. Click the [Initialize] button before  
making plans again.  
Log entry that the auto migration plan could not be made:  
Cannot make plan: Class X Grp X-X  
(a)  
(b)  
(a) Class  
(b) Parity group  
Some monitor data samples were invalidated:  
Grp X-X: X samples are invalidated because of migration.  
New volumes have been installed:  
New entries are added for following LDEVs: CU:LDEV, CU:LDEV, ...  
Invalid data:  
Too many invalid data: invalidated all data  
Volume utilization check failed:  
Utilization check failed  
Check volume usage failed because the necessary data could not be obtained. Please get  
the data again.  
Volume reserve attribute check failed:  
Reserve volume check failed  
Check volume reserve attribute failed because the necessary data could not be obtained.  
Please get the data again.  
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The migration logs may display the following messages:  
Table 12 Migration log messages  
Message  
Meaning  
Migration Start  
Migration Complete  
Migration Cancel  
Migration Failed  
Migration Give Up  
Migration operation started  
Migration operation completed successfully  
User canceled the migration operation  
Migration operation failed  
Migration operation was canceled by Auto LUN XP (for example, volume usage rate  
exceeded specified maximum)  
Migration Canceled  
by Controller  
The migration operation was canceled by Auto LUN XP (e.g., volume usage rate  
exceeded specified maximum).  
Migration Canceled  
by Controller  
(Business Copy XP)  
Because each XP product started processing, the migration operation was  
canceled by Auto LUN XP.  
Migration Canceled  
by Controller (CA  
(*1))  
Migration Canceled  
by Controller (Data  
Migration (*2))  
Migration Canceled  
by Controller (CA  
(*3))  
Migration Canceled  
by Controller  
(XRC(*4))  
Migration Canceled  
by Controller  
(CC(*5))  
*1 : It indicates Continous Access XP or Continous Access XP Journal.  
*2 : It indicates Hitachi Online Data Migration.  
*3 : It indicates Continous Access XP or Continous Access XP Journal.  
*4 : It indicates Compatible Replication for IBM® XRC, which is abbreviated as XRC  
Replication.  
*5 : It indicates IBM 3990 Concurrent Copy.  
Troubleshooting Auto LUN XP  
Auto LUN XP displays error messages on the Command View XP or XP Remote Web Console GUI when  
error conditions occur during Auto LUN XP operations.  
If you need to contact your HP account support representative, provide as much information about the  
problem as possible, including the error codes.  
Using RAID Manager for manual Auto LUN XP migrations  
Use RAID Manager to perform manual Auto LUN XP migrations from an open-system host when Auto LUN  
XP is installed on the XP12000/XP10000. See the HP StorageWorks RAID Manager XP user guide for  
more information.  
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The following is an example of the procedure for using RAID Manager commands to perform manual Auto  
LUN XP migrations. In this example, group1is the group name in the RAID Manager configuration file,  
and pair1is the name of the volume pair that is a target of the operation.  
1. Start RAID Manager.  
2. Type the following command for an SMPL pair to begin the Auto LUN XP migration:  
paircreate -g group1 -d pair1 -m cc -vl  
When Auto LUN XP migration starts, the status of the pair changes to COPY.  
3. Type the following command to check the pair’s status:  
pairdisplay -g group1 -d pair1 -fcex  
When the Auto LUN XP migration completes, the pair’s status becomes PSUS. If the Auto LUN XP  
migration fails, the pair’s status becomes PSUE.  
4. When the pair’s status becomes PSUS or PSUE, use the following command to return the pair status to  
SMPL:  
pairsplit -s -g group1 -d pair1  
NOTE: If the migration fails (the pair’s status becomes PSUE), repeat step 2 and step 3. If the pair’s status  
still becomes PSUE, contact your HP account support representative.  
The status transition chart of a pair when the volume migration is performed by using RAID Manager is  
shown in Figure 14. You can view the status shown in this chart by typing pairdisplayin RAID  
Manager.  
Figure 14 Pair status transitions during Auto LUN XP migrations using RAID Manager  
When you perform Auto LUN XP migrations using RAID Manager, the following restrictions apply:  
An Auto LUN XP reserved volume cannot be used.  
A migration plan being executed by Auto LUN XP cannot be canceled from RAID Manager.  
A migration plan created by Auto LUN XP cannot be displayed using RAID Manager.  
Before checking RAID Manager settings in a Command View XP or XP Remote Web Console pane,  
click All Refresh.  
Migration cannot be performed when either of the specified volumes is a LUSE volume.  
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When you try Auto LUN XP migrations or migration cancellations using RAID Manager, EX_CMDRJE  
might appear and the command might be refused, depending on the condition in the disk controller.  
Table 13 shows error codes, causes, and solutions for this case.  
Table 13 Errors during Auto LUN XP migrations or migration cancellations using RAID Manager  
Error code Cause  
Solution  
2051  
2055  
2056  
2057  
2058  
2301  
2306  
2309  
Migration target volume is being used with LUN  
Release the volume from LUN Security XP  
Security XP Extension.  
Extension, and perform the volume migration.  
Migration target volume is being used with  
Continuous Access XP Journal.  
Release the volume from Continuous Access XP  
Journal, and perform the volume migration.  
Migration source volume is being used with  
Continuous Access XP Journal.  
Release the volume from Continuous Access XP  
Journal, and perform the volume migration.  
VMA setting is different between the migration  
target and source volumes.  
Volume migration cannot be executed. Check the  
configuration definition file.  
Migration target and source volumes belong to  
the same parity group.  
Volume migration cannot be executed. Check the  
configuration definition file.  
Auto LUN XP is not installed on the  
XP12000/XP10000.  
Install Auto LUN XP, and perform the volume  
migration.  
LBA size does not match between the migration  
target and source volumes.  
Volume migration cannot be executed. Check the  
configuration definition file.  
Maximum number of pairs that can be set in the  
disk array is exceeded.  
Reduce the number of pairs set in the disk array,  
and perform the volume migration (see  
2311  
2312  
232F  
2331  
Auto LUN XP already reserved the migration  
target volume.  
Cancel the Auto LUN XP reservation, and perform  
the volume migration.  
Migration source volume is online with the host.  
Take the migration source volume off-line from the  
host, and perform the volume migration.  
Migration source volume is already specified as  
an Auto LUN XP target volume.  
Release the volume from Auto LUN XP, and  
perform the volume migration.  
Consider the following causes:  
Do the following:  
Auto LUN XP already reserved the migration  
source volume.  
1. Cancel the Auto LUN XP reservation, and  
perform the volume migration.  
Number of slots in the migration target and  
source volumes does not match.  
2. Volume migration cannot be executed. Check  
the configuration definition file.  
2332  
2333  
You cannot add pair settings any more to the  
migration source volume.  
Reduce the number of pair settings of the  
specified volume, and perform the migration (see  
Volume specified by the migration cancellation is RAID Manager is trying to perform the migration  
not a migration source volume.  
cancellation for a pair that is not migrating.  
Check the configuration definition file.  
2336  
2337  
233B  
233C  
Emulation type of the migration target and source Volume migration cannot be executed. Check the  
volumes does not match.  
configuration definition file.  
Migration source volume is a Business Copy XP  
leaf volume.  
Release the Business Copy XP pair, and perform  
the volume migration.  
Migration target volume is a Business Copy XP  
primary volume.  
Release the Business Copy XP pair, and perform  
the volume migration.  
Migration target volume is a Business Copy XP  
secondary volume.  
Release the Business Copy XP pair, and perform  
the volume migration.  
46 Auto LUN XP for the XP12000/XP10000  
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Table 13 Errors during Auto LUN XP migrations or migration cancellations using RAID Manager  
Error code Cause  
Solution  
2342  
Migration target volume is already specified as  
an Auto LUN XP target volume.  
Release the Auto LUN XP volume, and perform the  
volume migration.  
2344  
Volume specified by the migration cancellation is RAID Manager is trying to perform the migration  
not a migration target volume.  
cancellation for a pair that is not migrating.  
Check the configuration definition file.  
2346  
2347  
234B  
2355  
2356  
2362  
2363  
2366  
2368  
Migration target volume is a Continuous Access  
XP primary volume.  
Release the Continuous Access XP pair, and  
perform the volume migration.  
Migration target volume is a Continuous Access  
XP secondary volume.  
Release the Continuous Access XP pair, and  
perform the volume migration.  
Migration target volume is already specified as  
an Auto LUN XP source volume.  
Release the volume from Auto LUN XP, and  
perform the volume migration.  
Volume Management setting in the migration  
target and source volumes is different.  
Volume migration cannot be executed. Check the  
configuration definition file.  
Migration target volume is being used with Flex  
Copy XP.  
Release the Flex Copy XP pair, and perform the  
volume migration.  
Migration source volume is an XRC primary  
volume.  
Release the XRC pair, and perform the volume  
migration.  
Migration target volume is an XRC primary  
volume.  
Release the XRC pair, and perform the volume  
migration.  
Migration target volume is a Concurrent Copy  
primary volume.  
Release the Concurrent Copy pair, and perform  
the volume migration.  
Migration source volume is a Continuous Access Put the Continuous Access XP pair in the  
XP primary volume that is not in the SUSPEND  
status.  
SUSPEND status or release the Continuous Access  
XP pair, and perform the volume migration.  
236B  
2372  
2373  
237C  
Migration source volume is a Business Copy XP  
volume that is in the SP-PEND status.  
Perform the volume migration after the Business  
Copy XP pair is changed to the SPLIT status.  
Migration source volume is being formatted.  
Perform the volume migration after formatting is  
completed.  
Migration source volume is a command device.  
Volume migration cannot be executed. Check the  
configuration definition file.  
Migration source volume is an external volume  
specified as a Continuous Access XP primary  
volume.  
Release the Continuous Access XP pair, and  
perform the volume migration.  
237E  
2382  
2383  
2389  
238A  
238B  
Specified pair is being used with Flex Copy XP.  
Migration target volume is being formatted.  
Migration target volume is a command device.  
Release the Flex Copy XP pair, and perform the  
volume migration.  
Perform the volume migration after formatting  
completes.  
Volume migration cannot be executed. Check the  
configuration definition file.  
Cache LUN XP is set on the migration source  
volume.  
Release the Cache LUN XP setting, and perform  
the volume migration.  
Cache LUN XP is set on the migration target  
volume.  
Release the Cache LUN XP setting, and perform  
the volume migration.  
Migration source and target volumes are  
specified as LUSE volumes.  
Volume migration cannot be executed. Check the  
configuration definition file.  
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Table 13 Errors during Auto LUN XP migrations or migration cancellations using RAID Manager  
Error code Cause  
Solution  
238C  
Migration target volume is a Business Copy XP  
reserved volume.  
Cancel the Business Copy XP reservation, and  
perform the volume migration.  
239D  
Migration target volume is an ENAS system  
volume.  
Volume migration cannot be executed. Check the  
configuration definition file.  
48 Auto LUN XP for the XP12000/XP10000  
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2 Auto LUN/Performance Control Base Monitor  
Auto LUN XP statistics  
Disk arrays automatically collect statistics twice a day (in the morning and afternoon). Auto LUN XP  
monitors disk arrays and obtains usage statistics about resources such as front-end and back-end  
processors, hard disk drives, and logical volumes every 15 minutes.  
Auto LUN XP displays statistics collected for the last three months. Statistics over three months old are  
discarded.  
You can specify a time period and view a graph illustrating how usage rates change within that time  
period. You can also view average and maximum usage rates.  
You can analyze information displayed on the pane and identify overloaded resources. If necessary, take  
load-balancing measures to improve system performance.  
Auto LUN XP displays the following types of information:  
Usage statistics about parity groups. If data shows overall high parity group usage, consider installing  
additional HDDs and using Auto LUN XP to migrate high-usage volumes to the new parity groups. If  
monitor data shows unbalanced parity group usage, use Auto LUN XP to migrate volumes from  
high-usage parity groups to low-usage parity groups.  
Usage statistics about logical volumes. Auto LUN XP displays average and maximum usage, including  
sequential and random access, for each LDEV in a parity group. Logical volume usage is the time in  
use (sequential and random access) of the physical drives of each LDEV, averaged by number of  
physical drives in the parity group.  
If data shows overall high logical volume usage, consider installing additional hardware (for example,  
HDDs, DKAs, or cache). If monitor data shows unbalanced volume usage, use Auto LUN XP to migrate  
high-usage volumes to higher HDD classes and/or lower-usage parity groups. You can also use logical  
volume usage data to analyze access characteristics of volumes and determine appropriate RAID level  
and/or HDD type for the volumes.  
Usage statistics about channel adapters and channel processors. Channel adapters (CHAs) process  
host commands and control data transfer between hosts and cache. A channel adapter contains  
multiple channel processors (CHPs), which process host commands and control data transfer.  
If data shows overall high CHA usage, consider installing additional CHAs. If data shows unbalanced  
CHP usage, consider moving some devices defined on overloaded ports to ports with lower-usage  
CHPs to balance front-end usage.  
Usage statistics about disk adapters and disk processors. Disk adapters (DKAs) control data transfer  
between cache and disk devices. A disk adapter contains multiple disk processors (DKPs), which  
control data transfer.  
If data shows overall high DKP usage, consider installing additional HDDs and/or DKAs and using  
Auto LUN XP to migrate high-write-usage volumes (especially sequential writes) to the new parity  
groups. If data shows unbalanced DKP usage, use Auto LUN XP to migrate logical volumes from  
high-usage parity groups to low-usage parity groups.  
Auto LUN XP cannot estimate DKP usage. Use Auto LUN XP migration only for obvious cases of high or  
unbalanced DKP usage. Auto LUN XP migration might not improve performance if DKP usage values  
vary only slightly or if overall DRR usage values are relatively high.  
Usage statistics about data recovery and reconstruction processors. Data recovery and reconstruction  
processors (DRRs) are microprocessors located on DKAs that generate parity data for RAID-5 parity  
groups. DRRs use “old data + new data + old parity” to generate new parity.  
If data shows overall high DRR usage, this might indicate a high write penalty. Consult your  
HP representative about high write penalty conditions. If data shows unbalanced DRR usage, consider  
using Auto LUN XP to relocate volumes to balance DRR usage within the disk array.  
Write pending rate. The write pending rate indicates the ratio of write-pending data to cache memory  
capacity. The Auto LUN pane displays average and maximum write pending rates for the specified time  
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period. The pane also displays a graph indicating how the write pending rate changed within that  
period.  
Usage statistics about access paths. An access path is a path through which data and commands are  
transferred within a disk array.  
In a disk array, channel adapters control data transfer between hosts and cache memory. Disk  
adapters control data transfer between cache memory and disk drives. Data transfer does not occur  
between channel adapters and disk adapters. Data is transferred via the cache switch (CSW) to cache  
memory.  
When hosts issue commands, they are transferred via channel adapters to shared memory (SM). Disk  
adapters check the contents of shared memory.  
Auto LUN XP monitors and displays usage rates for the following access paths:  
• Between channel adapters and the cache switch  
• Between disk adapters and the cache switch  
• Between the cache switch and cache memory  
• Between channel adapters and shared memory  
• Between disk adapters and shared memory  
Statistics about logical devices. You can check whether I/O operations converge on particular logical  
volumes or how much data is read from logical volumes into cache memory.  
Auto LUN XP displays the following information:  
• Number of read and write requests made to logical devices (or parity groups)  
• Number of data transfers occurring between logical devices (or parity groups) and cache memory  
• Size of data transferred to logical devices (or parity groups)  
• Read hit rate  
• Write hit rate  
For read I/Os, when requested data is already in cache, the operation is a read hit. For example, if ten  
read requests were made from hosts to devices during a time period, and the read data was already in  
cache memory for three of the ten requests, the read hit rate for that time period is 30 percent. Higher  
read hit rates imply higher processing speed because fewer data transfers are made between devices  
and cache memory.  
For write I/Os, when requested data is already in cache, the operation is a write hit. For example, if  
ten write requests were made from hosts to devices during a time period, and the write data was  
already in cache memory for three of the ten requests, the write hit rate for that time period is  
30 percent. Higher write hit rates imply higher processing speed because fewer data transfers are  
made between devices and cache memory.  
Statistics about port traffic. Auto LUN XP monitors host ports and disk array ports to obtain statistics  
about I/O and transfer rates. If you analyze these rates, you can determine which host issues the most  
I/O requests and which host transfers the most data.  
Statistics about LU path traffic. Auto LUN XP monitors LU paths to obtain statistics about I/O and  
transfer rates. If you analyze these rates, you can determine which LU paths are used to make many of  
the I/O requests to disks and which LU paths are used to transfer much of the data to disks.  
Auto LUN Monitoring Options pane  
Use this pane to set the gathering time for monitoring.  
NOTE: When statistics are collected, a heavy workload is likely to be placed on servers. This might slow  
down client processing.  
The pane contents vary according to your disk array.  
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NOTE: Settings in the Monitor Options pane work with settings for Continuous Access XP and Continuous  
Access XP Journal. Therefore, changes you make to one pane affect the settings in the other panes.  
XP12000/XP10000 disk arrays  
NOTE: To begin monitoring the disk array, Command View XP or XP Remote Web Console must be in  
Modify mode. A yellow background color signals Modify mode. A gray background color signifies View  
mode. You cannot change in the Monitoring Options pane in View mode.  
To change settings, when the background color of the lock icon is blue, click the lock icon. If the  
background of the lock icon is red, wait a few minutes and try again.  
XP12000/XP10000 arrays display the following pane:  
Figure 15 Auto LUN Monitoring Options pane  
This pane contains the following items:  
Current Status: Specifies whether the disk array is monitored. Click Enable to start monitoring. Click  
Disable to stop monitoring. The default is Disable.  
Gathering Interval: If Current Status is Enable, specifies the collection interval during which statistics are  
collected, in minutes. For example, if you enter 2, statistics are gathered every two minutes. The default  
is 1 minute. The interval in long range is fixed at 15 minutes.  
Usage statistics  
Collecting usage statistics about disk array resources  
To obtain usage statistics about a disk array’s resources, complete the following instructions to start  
monitoring the disk array.  
1. In the Auto LUN pane, click Monitoring Options. The Monitoring Options pane appears.  
2. Click Enable for the Current Status option.  
3. Use the Gathering Interval box to specify the collection interval during which the disk array collects  
statistics. The interval in long range is fixed at 15 minutes.  
4. Click Apply. Auto LUN XP starts monitoring the disk array.  
To stop monitoring the disk array, complete the following instructions. If you stop monitoring, Auto LUN XP  
stops collecting statistics.  
1. In the Auto LUN pane, click Monitoring Options. The Monitoring Options pane appears.  
2. Click Disable for the Current Status option.  
3. Click Apply.  
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Viewing parity group usage statistics  
Auto LUN XP monitors parity groups, and displays average and maximum usage rates for the specified  
period. Auto LUN XP also displays a graph illustrating changes in parity group usage within that period.  
1. In the Auto LUN pane, click Physical, and click the Parity Group folder. The table displays usage  
statistics about the parity group.  
Figure 16 Parity group usage statistics  
NOTE: If an exclamation mark (!) appears before a usage rate, that parity group usage rate might  
be inaccurate because the configuration has changed (for example, volumes have been moved by  
a migration plan or changed by VSC).  
2. To display a graph illustrating changes in usage rates, click the parity groups in the table, and click  
Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
PG: Parity group ID.  
RAID: RAID level (RAID-5 or RAID-1).  
Drive Type: Hard disk drive type.  
Usage: The Ave. (Total) column displays the average usage rate in the specified period. The Max.  
column displays the maximum usage rate in the specified period.  
CLPR: The number and name of the CLPR that corresponds to the parity group. For more information  
about CLPRs, see the HP StorageWorks XP Disk/Cache Partition user guide.  
Viewing logical volume usage statistics  
1. In the Auto LUN pane, click Physical, and double-click the Parity Group folder. The folder opens. A list  
of parity groups appears below the folder.  
2. Click the parity group. The table displays usage statistics about logical volumes in the specified parity  
group.  
NOTE: To view the ratio of Business Copy XP and ShadowImage for z/OS processing to all  
processing in the physical drive, select Short Range.  
Figure 17 Logical volume usage statistics  
52 Auto LUN/Performance Control Base Monitor  
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NOTE: If an exclamation mark (!) appears before a usage rate, that parity group usage rate might  
be inaccurate because the configuration has changed (for example, volumes have been moved by  
a migration plan or changed by VSC).  
3. To display a graph illustrating changes in usage rates for parity groups, click the parity groups in the  
table, and click Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
LDEV: Logical volumes (LDEVs). The number on the left of the colon is the CU image number. The  
number on the right of the colon is the LDEV number.  
Emulation: Device emulation type.  
Usage: The Ave. column displays the average usage rate in the specified period. The Max. column  
displays the maximum usage rate in the specified period.  
Read Rate: The Rnd. column indicates the random read rate, which is the ratio of random read requests  
to read and write requests. The Seq. column indicates the sequential read rate, which is the ratio of  
sequential read requests to read and write requests.  
Write Rate: The Rnd. column indicates the random write rate, which is the ratio of random write  
requests to read and write requests. The Seq. column indicates the sequential write rate, which is the  
ratio of sequential write requests to read and write requests.  
Parity Gr. Use[Exp](%): Expected (estimated) average and maximum usage rates of the parity group, if  
the volume was migrated out of the group (or de-installed). The Ave. (Total) column indicates an  
estimated change in average usage rate. The Max. column indicates an estimated change in maximum  
usage rate. For example, if the Ave. (Total) box for volume 0:01 displays 20 -> 18, average usage rate  
of the parity group to which the volume belongs is 20 percent. If the volume was migrated out of the  
parity group, average usage rate of that group is expected to drop to 18 percent.  
Business Copy: (Displayed only when you select Short Range as the storing period of statistics.) For  
each logical volume, the percentage of processing of the following programs to all processing of the  
physical drives:  
• ShadowImage for z/OS  
• Business Copy XP  
• Flex Copy XP  
• Hitachi® FlashCopy® Mirroring  
• Hitachi® FlashCopy® Mirroring Version 2  
• Auto LUN XP  
• Snapshot XP  
This value is found by dividing access time to physical drives by the following programs by all the  
access time to physical drives. The Ave. (Total) column indicates the average percentage of processing  
in the specified period for the programs listed above. The Max. column indicates the maximum  
percentage of processing of the programs listed above in the specified period. For more information,  
see the programs’ documentation.  
CLPR: The number and name of the CLPR that corresponds to the parity group to which the logical  
volume belongs, in the format CLPR number:CLPR name. For more information about CLPRs, see the  
HP StorageWorks XP Disk/Cache Partition user guide.  
Viewing channel adapter (CHA) usage statistics  
Auto LUN XP monitors channel adapters, and displays average and maximum usage rates in the specified  
period.  
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1. In the Auto LUN pane, click Physical, and click the CHA folder. The table displays usage statistics about  
channel adapters (CHAs).  
Figure 18 CHA usage statistics  
2. To display a graph illustrating changes in usage rates for channel adapters, click the channel adapters  
in the table, and click Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
ID: Channel processor ID numbers.  
Usage: The Ave. (Total) column displays the average usage rate in the specified period. The Max.  
column displays the maximum usage rate in the specified period.  
Viewing channel processor (CHP) usage statistics  
Auto LUN XP monitors channel processors in each channel adapter, and displays average and maximum  
usage rates in the specified period.  
1. In the Auto LUN pane, click Physical, and double-click the CHA folder. A list of channel adapters  
appears below the CHA folder.  
2. Click a channel adapter. The table displays usage statistics about channel processors in the selected  
channel adapter.  
Figure 19 CHP usage statistics  
3. To display a graph illustrating changes in usage rates for channel processors, click the channel  
processors in the table, and click Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
ID: Channel processor ID numbers.  
Usage: The Ave. (Total) column displays the average usage rate in the specified period. The Max.  
column displays the maximum usage rate in the specified period.  
Viewing disk adapter (DKA) usage statistics  
Auto LUN XP monitors disk adapters, and displays average and maximum usage rates in the specified  
period. If you click the ACP folder, the table displays a list of disk adapters and indicates whether each  
disk adapter is located in Cluster-1 or Cluster-2.  
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In the Auto LUN pane, click Physical, and click the ACP folder. The table displays a list of disk adapters.  
Figure 20 DKA usage statistics  
The table displays the following items:  
Adapter: Disk adapter ID numbers.  
Cluster-1: If the Cluster-1 column displays 0 and the Cluster-2 column displays a hyphen, the disk  
adapter is located in Cluster-1.  
Cluster-2: If the Cluster-2 column displays 0 and the Cluster-1 column displays a hyphen, the disk  
adapter is located in Cluster-2.  
Viewing disk processor (DKP) usage statistics  
Auto LUN XP monitors disk processors, and displays average and maximum usage rates in the specified  
period.  
1. In the Auto LUN pane, click Physical, and double-click the ACP folder. A list of disk processors appears  
below the ACP folder.  
2. Click the DKP. The table displays usage statistics about disk processors in the disk adapter.  
Figure 21 DKP usage statistics  
3. To display a graph illustrating changes in usage rates for disk processors, click the disk processors in  
the table, and click Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
ID: Disk processor ID numbers.  
Usage: The Ave. (Total) column displays the average usage rate in the specified period. The Max.  
column displays the maximum usage rate in the specified period.  
Viewing data recovery and reconstruction processor (DRR) usage statistics  
Auto LUN XP monitors data recovery and reconstruction processors (DRRs), and displays average and  
maximum usage rates in the specified period.  
1. In the Auto LUN pane, click Physical, and double-click the ACP folder. A list of DDRs appears below the  
ACP folder.  
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2. Click the DRR below the disk adapter. The table displays usage statistics about DRRs in the disk  
adapter.  
Figure 22 DRR usage statistics  
3. To display a graph illustrating changes in usage rate for DRRs, click the DRRs in the table, and click  
Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
ID: DDR ID numbers.  
Usage: The Ave. (Total) column displays the average usage rate in the specified period. The Max.  
column displays the maximum usage rate in the specified period.  
Viewing write pending rates  
Auto LUN XP displays write pending rates. The write pending rate indicates the ratio of write-pending data  
to cache memory capacity. Auto LUN XP displays average and maximum write pending rates in the  
specified period.  
1. In the Auto LUN pane, click Physical, and click the Cache folder.  
Figure 23 Write pending rates  
2. To display a graph illustrating changes in the write pending rate, click the write pending rate in the  
table, and click Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
CLPR: The number and name of the CLPR that corresponds to the parity group to which the logical  
volume belongs, in the format CLPR number:CLPR name. For more information about CLPRs, see the  
HP StorageWorks XP Disk/Cache Partition user guide.  
Write Pending (%): The Ave. column displays the average write pending rate for the specified period.  
The Moment Max. column displays the maximum write pending rate for the specified period.  
Viewing access path usage statistics  
Channel adapters (CHAs) and disk adapters (DKAs) transfer data to the cache switch (CSW) and shared  
memory (SM) when I/O requests are issued from hosts to the disk array. Also, the cache switch transfers  
data to cache memory.  
Auto LUN XP monitors these data transfer paths, and displays average and maximum usage rates for the  
paths in a specified period.  
1. In the Auto LUN pane, click Physical, and double-click the Access Path Usage folder.  
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2. Do any of the following:  
• To check usage statistics about paths between adapters (CHAs and DKAs) and the cache switch,  
click Adapter-CSW below the Access Path Usage folder.  
Figure 24 Usage statistics about paths between adapters and the cache switch  
• To check usage statistics about paths between adapters (CHAs and DKAs) and shared memory,  
click Adapter-SM below the Access Path Usage folder.  
Figure 25 Usage statistics about paths between adapters and shared memory  
• To check usage statistics about paths between cache switches and cache memory, click CSW-Cache  
below the Access Path Usage folder.  
Figure 26 Usage statistics about paths between cache switches and cache memory  
3. To display a graph illustrating changes in usage statistics about paths, click the paths in the table, and  
click Draw.  
The table displays the following items:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
Usage(%): The Ave. (Total) column displays the average path usage rate in the specified period. The  
Max. column displays the maximum path usage rate in the specified period.  
Workload and traffic statistics  
Collecting workload and traffic statistics about disk drives, ports, and LU paths  
To obtain usage statistics about workloads, port traffic, LU path traffic, and traffic between host bus  
adapters and ports, complete the following instructions to start monitoring the disk array:  
1. In the Auto LUN pane, click Monitoring Options. The Monitoring Options pane appears.  
2. Click Enable for the Current Status option.  
3. Use the Gathering Interval box to specify the collection interval during which the disk array collects  
statistics. The interval in long range is fixed at 15 minutes.  
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4. Click Apply. Auto LUN XP starts monitoring the disk array.  
To stop monitoring the disk array, complete the following instructions. If you stop monitoring, Auto LUN XP  
stops collecting statistics.  
1. In the Auto LUN pane, click Monitoring Options. The Monitoring Options pane appears.  
2. Click Disable for the Current Status option.  
3. Click Apply.  
Viewing disk drive workload statistics  
Use the LDEV tab of the Auto LUN pane to check workloads on physical disk drives (parity groups) or  
logical volumes. The pane displays the following information:  
Number of I/O requests issued to parity groups and logical volumes  
Amount of data transferred to parity groups and logical volumes  
Read hit rate  
Write hit rate  
Number of data transfers between parity groups (or logical volumes) and cache memory  
1. In the Auto LUN pane, click LDEV. The LDEV tree displays a list of parity groups.  
2. In the list on the right, click IOPS to specify I/Os per second, or click MB/s to specify megabytes  
transferred per second.  
3. In the LDEV tree, do one of the following:  
• To check workload statistics for all parity groups, click the folder containing the parity groups.  
Figure 27 Workload statistics for all parity groups  
• To check workload statistics for certain parity groups, click a Box folder. For example, if you click  
the Box 1 folder, the table displays only parity groups that have IDs beginning with 1-.  
Figure 28 Workload statistics for a specific parity group  
• To check workload statistics for logical volumes in a parity group, click the parity group.  
Figure 29 Workload statistics for logical volumes in a parity group  
4. To display a graph, click the parity groups or logical volumes, use the list on the lower-right side of the  
table to select the type of information you want to view, and click Draw. A graph displays below the  
table. The horizontal axis indicates the time.  
5. To view detailed information in the graph, click the Detail check box on the lower-right side of the table,  
and click Draw. The graph contents change. If you specify more than one parity group or logical  
volume, you cannot click the Detail check box to view detailed information.  
If the graph does not display changes in workload statistics, change the value in the Chart Y Axis Rate  
list. For example, if the largest value in the table is 200 and the value in Chart Y Axis Rate is 100,  
select a value larger than 200 from Chart Y Axis Rate.  
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The table displays the following:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
Group: Parity group ID. If the ID starts with the letter E, logical volumes in the parity group are external  
LUs.  
LDEV: Logical volume ID. If the ID ends with the symbol #, logical volume is an external LU.  
Type: Emulation type.  
IO Rate (IOPS): Number of I/O requests to the parity group (or logical volume) per second. This column  
is displayed when IOPS is selected in the list on the upper-right side of the table.  
Read (IOPS): Number of read accesses to the parity group (or logical volume) per second. This column  
is displayed when IOPS is selected in the list on the upper-right side of the table.  
Write (IOPS): Number of write accesses to the parity group (or logical volume) per second. This column  
is displayed when IOPS is selected in the list on the upper-right side of the table.  
Trans.(MB/s): Size (in megabytes) of data transferred to the parity group (or logical volume) per  
second. This column is displayed when MB/s is selected in the list on the upper-right side of the table.  
Read Hit(%): Read hit rate.  
Write Hit(%): Write hit rate.  
Back Trans.(count/sec): Number of data transfers between parity group (or logical volume) and cache  
memory.  
Response Time (ms): Time (in microseconds) for replying from an external volume group when I/O  
accesses are made from the disk array to the external volume group. Average response time in the  
period specified for Monitoring Term is displayed.  
CLPR: The number and name of the CLPR that corresponds to the parity group to which the logical  
volume belongs, in the format CLPR number:CLPRname. For more information, see the  
HP StorageWorks XP Disk/Cache Partition user guide.  
Viewing disk array port traffic statistics  
1. In the Auto LUN pane, click Port-LUN, and click the Subsystem folder in the tree. The Port-LUN tree lists  
ports on the disk array. When you double-click a port, a list of host groups for the port appears. When  
you double-click a host group, the LUN icon appears.  
2. To check the number of I/Os, click IOPS in the list on the right side of the pane. To check the amount of  
data transferred, click MB/s. To view IOPS or amount of data in real time, select the Real Time option,  
specify the number of collections to display, and click Apply.  
3. In the Port-LUN tree, do one of the following:  
• To view traffic statistics about ports in the disk array, click the root.  
Figure 30 Traffic statistics about ports in a disk array  
• To view traffic statistics about host ports to which a disk array port is connected, click the disk array  
port.  
Figure 31 Traffic statistics about host ports to which a disk array port is connected  
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• To view traffic statistics about host ports in a host group, click the host group.  
Figure 32 Traffic statistics about host ports in a host group  
• To view traffic statistics about LU paths, click the LUN icon.  
Figure 33 Traffic statistics about LU paths  
4. To find out how traffic has changed, click the ports, WWNs, or LUNs, and click Draw. A graph  
appears below the table.  
5. To view more detailed information in the graph, click the Detail check box on the lower-right side of the  
table, and click Draw. The graph contents change.  
The table displays the following:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
Port: Ports on the disk array.  
WWN: WWNs of the host bus adapters.  
LUN: LUNs (logical unit numbers).  
PFC Name: PFC names of host bus adapters.  
Nickname: Nickname for host bus adapters. LUN Manager allows you to assign a nickname to each  
host bus adapter so you can easily identify each host bus adapter in the LUN Manager panes.  
CU:LDEV: Logical volume IDs. The number on the left of the colon is the CU image number. The number  
on the right of the colon is the LDEV number. If a logical volume ID ends with the symbol #, the logical  
volume is an external LU.  
Emulation: Emulation types.  
Paths: Number of LU paths.  
Current: Current I/O rate.  
Ave.: Average I/O rate for the specified period.  
Max.: Maximum I/O rate for the specified period.  
Response Time (ms): Time (in microseconds) for replying from an external volume group when I/O  
accesses are made from disk array to external volume group. Average response time in the period  
specified for Monitoring Term is displayed.  
If you select a port in the list, click Draw, and select the Detail check box, a detailed graph of the port  
I/O rate is drawn. The Peak value means the top of the Max. line in this graph.  
Attribute: Priority of each port. Prio. indicates a prioritized port. Non-Prio. indicates a non-prioritized  
port. When calculating I/O rates to be displayed in the All Prio. row, Auto LUN XP uses I/O rates of  
other prioritized ports.  
Viewing HBA/port traffic statistics  
If Performance Control XP is enabled, Auto LUN XP monitors paths between host bus adapters (HBAs) in  
host servers and ports on disk arrays. You can view both I/O and transfer rates between HBAs and ports.  
1. In the Auto LUN pane, click WWN.  
The tree view displays a list of PFC groups (  
groups.  
• If you double-click a PFC group, host bus adapters (  
). The Not Grouped item appears below the PFC  
) in the PFC group are displayed.  
60 Auto LUN/Performance Control Base Monitor  
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• If you double-click Not Grouped, host bus adapters (  
) that do not belong to any PFC group are  
displayed.  
2. In the list on the right side of the pane, do either of the following:  
• To view I/O rates, select IOPS.  
• To view transfer rates, select 100KB/s (MB/s [XP 12000]).  
3. In the tree view, do one of the following:  
• To view traffic statistics for host bus adapters in a PFC group, click the PFC group.  
Figure 34 Traffic statistics for host bus adapters  
• To view traffic statistics for host bus adapters that do not belong to any PFC group, click Not  
Grouped (see Figure 34).  
• To view the I/O or transfer rates at each PFC group, click the Subsystem folder.  
Figure 35 Traffic statistics for each PFC group  
• To view traffic statistics for each port connected to a given host bus adapter, click the HBA.  
Figure 36 Traffic statistics for each port connected to a specified HBA  
4. To find out how traffic has changed, in the table, click the PFC groups or WWNs, and click Draw. A  
graph appears below the table.  
NOTE: If a host bus adapter’s WWN is displayed in red in the tree view, the host bus adapter is  
connected to two or more ports, but Performance Control XP does not control traffic between the  
HBA and some ports. When many-to-many connections are established between HBAs and ports,  
monitor all traffic between HBAs and ports. For information about controlling traffic between the  
HBA and connected ports, see HP StorageWorks Performance Control XP user guide.  
5. To view more detailed information in the graph, click the Detail check box on the lower-right side of the  
table, and click Draw. The graph contents change.  
The table displays the following:  
Graph column: The check mark icon indicates the graph is currently illustrating data for that item.  
Group: PFC groups.  
PFC Name: PFC names of host bus adapters.  
Port: Ports on the disk array.  
Current: Current I/O or transfer rate.  
Ave.: Average I/O or transfer rate for the specified period.  
Max.: Maximum I/O or transfer rate for the specified period.  
Response Time: Time between when the DKC receives the read/write command and when the DKC  
responds to the command. The value is average response time over one minute.  
Attribute: Priority of each host bus adapter. Prio. indicates a high-priority HBA (prioritized WWN).  
Non-Prio. indicates a low-priority HBA (non-prioritized WWN). When calculating I/O rates displayed  
in the All Prio. row, Auto LUN XP uses I/O rates of other prioritized ports.  
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62 Auto LUN/Performance Control Base Monitor  
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Index  
A
G
access path usage statistics 50, 56  
Attribute tab 36  
Graph section 25  
H
audience, documentation 7  
Auto LUN pane 24  
auto migration  
hard disk drives (HDDs)  
Attribute tab 36  
execution 22  
disk usage  
history 40  
maximum 14  
parameters 14  
planning 22  
powering off disk arrays 23  
reserving target volumes 38  
settings 33  
disk usage, maximum 39  
estimating usage 13  
optimizing performance 11  
reserved volumes 14  
HBAs (host bus adapters) traffic statistics 60  
HDDs  
C
Attribute tab 36  
auto migration 14  
calculating migration plans 19  
cascaded volumes 18  
disk usage, maximum 14, 39  
estimating usage 13  
optimizing performance 11  
reserved volumes 14  
help  
HP technical support 8  
History tab, migrations 40  
host bus adapters (HBAs) traffic statistics 60  
HP  
channel adapters (CHAs) usage statistics 49, 53  
channel processors (CHPs) usage statistics 49, 54  
CHAs (channel adapters) usage statistics 49, 53  
CHPs (channel processors) usage statistics 49, 54  
conventions, document 8  
customer support 8  
D
storage web site 9  
Subscriber’s choice web site 9  
technical support 8  
data recovery and reconstruction processors (DRRs)  
usage statistics 13, 49, 55  
differential tables - calculating migration plans 19  
disk adapters (DKAs) usage statistics 49, 54  
disk arrays  
L
powering off 23  
resource statistics 51  
LDEV tab 27, 28  
LDEVs source volumes 18  
logical volumes  
disk processors (DKPs) usage statistics 13, 49, 55  
disk usage  
requirements 16  
auto migration 14  
maximum 39  
usage statistics 49, 50, 52  
workload statistics 58  
logs, migration 41  
LU path traffic statistics 50, 57  
LUSE source volumes 18  
disk usage, auto migration 14  
DKAs (disk adapters) usage statistics 49, 54  
DKPs (disk processors) usage statistics 13, 49, 55  
document conventions 8  
documentation, related 7  
DRRs usage statistics 13, 49, 55  
M
manual migration  
about 16  
E
execution 22  
fixing parity groups 38  
history 40  
error messages  
Auto LUN XP 44  
RAID Manager 46  
estimating usage rates 13  
RAID manager, using 44  
settings 31  
migration  
F
estimating usage rates 13  
fixing parity groups 38  
history tab 40  
features 11  
fixing parity groups 38  
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logs 41  
access path usage 56  
channel adapters (CHAs) 53  
channel processors (CHPs) 54  
data recovery and reconstruction processors (DRRs)  
disk adapters (DKAs) 54  
disk array resources 51  
disk processors (DKPs) 55  
HBA/port traffic 60  
operations 12  
plans 30  
powering off disk arrays 23  
RAID Manager, using 44  
releasing parity groups 39  
target volumes 38  
Monitoring Data section 25  
Monitoring Options pane 50  
Monitoring Term section 25  
logical volume usage 52  
Monitoring Options pane 50  
parity group usage 52  
port traffic 59, 60  
N
traffic 57  
non-cascaded volumes 18  
types of 49  
workload 58  
O
Subscriber’s choice, HP 9  
optimizing performance 11  
T
P
Table section 25  
target volumes 18, 38  
tasks 11  
technical support, HP 8  
traffic statistics 50, 57  
troubleshooting  
parity groups  
Attribute tab 36  
auto migration 14  
fixing 38  
LDEV tab 28  
releasing 39  
statistics 49  
Auto LUN XP 44  
RAID Manager 46  
usage rate, estimating 13  
usage statistics 52  
workload statistics 58  
Physical tab 27, 29  
plans, migration  
accessing 30  
auto 33  
manual 31  
Port-LUN tab 27, 28  
ports, traffic statistics  
about 50  
U
usage statistics  
access path 56  
channel adapters (CHAs) 53  
channel processors (CHPs) 54  
data recovery and reconstruction processors (DRRs)  
disk adapters (DKAs) 54  
disk processors (DKPs) 55  
logical volumes 52  
disk arrays 59  
HBAs 60  
parity groups 52  
monitoring 57  
powering off disk arrays 23  
prerequisites 7  
W
web sites  
HP documentation 8  
HP storage 9  
HP Subscriber’s choice 9  
workload statistics 58  
write-pending data 50, 56  
WWN tab 27  
R
RAID Manager, using for manual migration 44  
RAID parity groups, optimizing performance 11, 13  
releasing parity groups 39  
reserve volumes  
HDD classes 14  
maintaining 12  
selecting 38  
reserving target volumes 38  
restrictions 16  
S
source volumes 16, 17  
starting Auto LUN XP 24  
statistics  
64  
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Figures  
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Tables  
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