Exchange 2013: how to set up multiple domain for OWA and ECP

Exchange 2013 on Windows 2012R2
Currently we have set this up using the guide below:
http://mouzzamh.wordpress.com/2013/02/04/accessing-owa-from-multiple-domain-url/
We can access OWA and ECP using the internal IP address/owa or ECP but when we use the URL it fails.
We gave it an external IP address as well just to check if it will externally since the external DNS are pointing to the correct records: same issue it only works on IP address/owa or /ecp
We were able to follow the guide from start to finish including the certs..
The only difference on the guide and our exchange IIS environment for the new website is when he mentioned "Under IIS Settings / ISAPI and CGI Restrictions" we only have "ISAPI filters"...." ISAPI and CGI Restrictions" is only
applicable to the default and backend website..
Also, when the guide points to the path, should it be the new website path?
Or maybe to avoid confusion, can anyone guide me on how to do it or any other guide that helped you if ever you had the same issue as mine?
Thanks.

Hi,
Please run the following to check your OWA virtual directories for all web sites:
Get-OWAVirtualDirectory | FL Identity,*URL*,path
Personal suggestion, please consider to deploy another new CAS server. Then we can configure different OWA URLs in different servers. And pointed mail.domain.com and webmail.domain.com to two CAS servers respectively.
Regards,
Winnie Liang
TechNet Community Support

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    DB time     2,039.77     
    background elapsed time     122.00     
    background cpu time     113.42     
    Statistic     Value     End Value
    NUM_LCPUS     0     
    NUM_VCPUS     0     
    AVG_BUSY_TIME     12,339     
    AVG_IDLE_TIME     348,838     
    AVG_IOWAIT_TIME     221     
    AVG_SYS_TIME     2,274     
    AVG_USER_TIME     9,944     
    BUSY_TIME     299,090     
    IDLE_TIME     8,375,051     
    IOWAIT_TIME     6,820     
    SYS_TIME     57,512     
    USER_TIME     241,578     
    LOAD     1     2
    OS_CPU_WAIT_TIME     312,200     
    PHYSICAL_MEMORY_BYTES     137,438,953,472     
    NUM_CPUS     24     
    NUM_CPU_CORES     12     
    GLOBAL_RECEIVE_SIZE_MAX     1,310,720     
    GLOBAL_SEND_SIZE_MAX     1,310,720     
    TCP_RECEIVE_SIZE_DEFAULT     16,384     
    TCP_RECEIVE_SIZE_MAX     9,223,372,036,854,775,807     
    TCP_RECEIVE_SIZE_MIN     4,096     
    TCP_SEND_SIZE_DEFAULT     16,384     
    TCP_SEND_SIZE_MAX     9,223,372,036,854,775,807     
    TCP_SEND_SIZE_MIN     4,096     
    Back to Wait Events Statistics
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    Operating System Statistics - Detail
    Snap Time     Load     %busy     %user     %sys     %idle     %iowait
    27-Nov 16:00:06     0.58                         
    27-Nov 17:00:17     1.50     3.45     2.79     0.66     96.55     0.08
    Back to Wait Events Statistics
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    Foreground Wait Class
    * s - second, ms - millisecond - 1000th of a second
    * ordered by wait time desc, waits desc
    * %Timeouts: value of 0 indicates value was < .5%. Value of null is truly 0
    * Captured Time accounts for 95.7% of Total DB time 2,039.77 (s)
    * Total FG Wait Time: 163.14 (s) DB CPU time: 1,789.38 (s)
    Wait Class     Waits     %Time -outs     Total Wait Time (s)     Avg wait (ms)     %DB time
    DB CPU               1,789          87.72
    User I/O     61,229     0     92     1     4.49
    Other     102,743     40     31     0     1.50
    Concurrency     3,169     10     24     7     1.16
    Cluster     58,920     0     11     0     0.52
    System I/O     45,407     0     6     0     0.29
    Configuration     107     7     1     5     0.03
    Commit     383     0     0     1     0.01
    Network     15,275     0     0     0     0.00
    Application     52     8     0     0     0.00
    Back to Wait Events Statistics
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    Foreground Wait Events
    * s - second, ms - millisecond - 1000th of a second
    * Only events with Total Wait Time (s) >= .001 are shown
    * ordered by wait time desc, waits desc (idle events last)
    * %Timeouts: value of 0 indicates value was < .5%. Value of null is truly 0
    Event     Waits     %Time -outs     Total Wait Time (s)     Avg wait (ms)     Waits /txn     % DB time
    db file sequential read     27,531     0     50     2     18.93     2.45
    db file scattered read     26,322     0     30     1     18.10     1.47
    row cache lock     1,798     0     20     11     1.24     0.96
    OJVM: Generic     36     42     15     421     0.02     0.74
    db file parallel read     394     0     7     19     0.27     0.36
    control file sequential read     22,248     0     6     0     15.30     0.28
    reliable message     4,439     0     4     1     3.05     0.18
    gc current grant busy     7,597     0     3     0     5.22     0.16
    PX Deq: Slave Session Stats     2,661     0     3     1     1.83     0.16
    DFS lock handle     3,208     0     3     1     2.21     0.16
    direct path write temp     4,842     0     3     1     3.33     0.15
    library cache load lock     39     0     3     72     0.03     0.14
    gc cr multi block request     37,008     0     3     0     25.45     0.14
    IPC send completion sync     5,451     0     2     0     3.75     0.10
    gc cr block 2-way     4,669     0     2     0     3.21     0.09
    enq: PS - contention     3,183     33     1     0     2.19     0.06
    gc cr grant 2-way     5,151     0     1     0     3.54     0.06
    direct path read temp     1,722     0     1     1     1.18     0.05
    gc current block 2-way     1,807     0     1     0     1.24     0.03
    os thread startup     6     0     1     108     0.00     0.03
    name-service call wait     12     0     1     47     0.01     0.03
    PX Deq: Signal ACK RSG     2,046     50     0     0     1.41     0.02
    log file switch completion     3     0     0     149     0.00     0.02
    rdbms ipc reply     3,610     0     0     0     2.48     0.02
    gc current grant 2-way     1,432     0     0     0     0.98     0.02
    library cache pin     903     32     0     0     0.62     0.02
    PX Deq: reap credit     35,815     100     0     0     24.63     0.01
    log file sync     383     0     0     1     0.26     0.01
    Disk file operations I/O     405     0     0     0     0.28     0.01
    library cache lock     418     3     0     0     0.29     0.01
    kfk: async disk IO     23,159     0     0     0     15.93     0.01
    gc current block busy     4     0     0     35     0.00     0.01
    gc current multi block request     1,206     0     0     0     0.83     0.01
    ges message buffer allocation     38,526     0     0     0     26.50     0.00
    enq: FB - contention     131     0     0     0     0.09     0.00
    undo segment extension     8     100     0     6     0.01     0.00
    CSS initialization     8     0     0     6     0.01     0.00
    SQL*Net message to client     14,600     0     0     0     10.04     0.00
    enq: HW - contention     96     0     0     0     0.07     0.00
    CSS operation: action     8     0     0     4     0.01     0.00
    gc cr block busy     33     0     0     1     0.02     0.00
    latch free     30     0     0     1     0.02     0.00
    enq: TM - contention     49     6     0     0     0.03     0.00
    enq: JQ - contention     19     100     0     1     0.01     0.00
    SQL*Net more data to client     666     0     0     0     0.46     0.00
    asynch descriptor resize     3,179     100     0     0     2.19     0.00
    latch: shared pool     3     0     0     3     0.00     0.00
    CSS operation: query     24     0     0     0     0.02     0.00
    PX Deq: Signal ACK EXT     72     0     0     0     0.05     0.00
    KJC: Wait for msg sends to complete     269     0     0     0     0.19     0.00
    latch: object queue header operation     4     0     0     1     0.00     0.00
    gc cr block congested     5     0     0     0     0.00     0.00
    utl_file I/O     11     0     0     0     0.01     0.00
    enq: TO - contention     3     33     0     0     0.00     0.00
    SQL*Net message from client     14,600     0     219,478     15033     10.04     
    jobq slave wait     7,726     100     3,856     499     5.31     
    PX Deq: Execution Msg     10,556     19     50     5     7.26     
    PX Deq: Execute Reply     2,946     31     27     9     2.03     
    PX Deq: Parse Reply     3,157     35     3     1     2.17     
    PX Deq: Join ACK     2,976     28     2     1     2.05     
    PX Deq Credit: send blkd     7     14     0     4     0.00     
    Back to Wait Events Statistics
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    Background Wait Events
    * ordered by wait time desc, waits desc (idle events last)
    * Only events with Total Wait Time (s) >= .001 are shown
    * %Timeouts: value of 0 indicates value was < .5%. Value of null is truly 0
    Event     Waits     %Time -outs     Total Wait Time (s)     Avg wait (ms)     Waits /txn     % bg time
    os thread startup     140     0     13     90     0.10     10.35
    db file parallel write     8,233     0     6     1     5.66     5.08
    log file parallel write     3,906     0     6     1     2.69     4.62
    log file sequential read     350     0     5     16     0.24     4.49
    control file sequential read     13,737     0     5     0     9.45     3.72
    DFS lock handle     2,990     27     2     1     2.06     1.43
    db file sequential read     921     0     2     2     0.63     1.39
    SQL*Net break/reset to client     18     0     1     81     0.01     1.19
    control file parallel write     2,455     0     1     1     1.69     1.12
    ges lms sync during dynamic remastering and reconfig     24     100     1     50     0.02     0.98
    library cache load lock     35     0     1     24     0.02     0.68
    ASM file metadata operation     3,483     0     1     0     2.40     0.65
    enq: CO - master slave det     1,203     100     1     0     0.83     0.46
    kjbdrmcvtq lmon drm quiesce: ping completion     9     0     1     62     0.01     0.46
    enq: WF - contention     11     0     0     35     0.01     0.31
    CGS wait for IPC msg     32,702     100     0     0     22.49     0.19
    gc object scan     28,788     100     0     0     19.80     0.15
    row cache lock     535     0     0     0     0.37     0.14
    library cache pin     370     55     0     0     0.25     0.12
    ksxr poll remote instances     19,119     100     0     0     13.15     0.11
    name-service call wait     6     0     0     19     0.00     0.10
    gc current block 2-way     304     0     0     0     0.21     0.09
    gc cr block 2-way     267     0     0     0     0.18     0.08
    gc cr grant 2-way     355     0     0     0     0.24     0.08
    ges LMON to get to FTDONE     3     100     0     24     0.00     0.06
    enq: CF - contention     145     76     0     0     0.10     0.05
    PX Deq: reap credit     8,842     100     0     0     6.08     0.05
    reliable message     126     0     0     0     0.09     0.05
    db file scattered read     19     0     0     3     0.01     0.05
    library cache lock     162     1     0     0     0.11     0.04
    latch: shared pool     2     0     0     27     0.00     0.04
    Disk file operations I/O     504     0     0     0     0.35     0.04
    gc current grant busy     148     0     0     0     0.10     0.04
    gcs log flush sync     84     0     0     1     0.06     0.04
    ges message buffer allocation     24,934     0     0     0     17.15     0.02
    enq: CR - block range reuse ckpt     83     0     0     0     0.06     0.02
    latch free     22     0     0     1     0.02     0.02
    CSS operation: action     13     0     0     2     0.01     0.02
    CSS initialization     4     0     0     6     0.00     0.02
    direct path read     1     0     0     21     0.00     0.02
    rdbms ipc reply     153     0     0     0     0.11     0.01
    db file parallel read     2     0     0     8     0.00     0.01
    direct path write     5     0     0     3     0.00     0.01
    gc current multi block request     49     0     0     0     0.03     0.01
    gc current block busy     5     0     0     2     0.00     0.01
    enq: PS - contention     24     50     0     0     0.02     0.01
    gc cr multi block request     54     0     0     0     0.04     0.01
    ges generic event     1     100     0     10     0.00     0.01
    gc current grant 2-way     35     0     0     0     0.02     0.01
    kfk: async disk IO     183     0     0     0     0.13     0.01
    Log archive I/O     3     0     0     2     0.00     0.01
    gc buffer busy acquire     2     0     0     3     0.00     0.00
    LGWR wait for redo copy     123     0     0     0     0.08     0.00
    IPC send completion sync     18     0     0     0     0.01     0.00
    enq: TA - contention     11     0     0     0     0.01     0.00
    read by other session     2     0     0     2     0.00     0.00
    enq: TM - contention     9     89     0     0     0.01     0.00
    latch: ges resource hash list     135     0     0     0     0.09     0.00
    PX Deq: Slave Session Stats     12     0     0     0     0.01     0.00
    KJC: Wait for msg sends to complete     89     0     0     0     0.06     0.00
    enq: TD - KTF dump entries     8     0     0     0     0.01     0.00
    enq: US - contention     7     0     0     0     0.00     0.00
    CSS operation: query     12     0     0     0     0.01     0.00
    enq: TK - Auto Task Serialization     6     100     0     0     0.00     0.00
    PX Deq: Signal ACK RSG     24     50     0     0     0.02     0.00
    log file single write     6     0     0     0     0.00     0.00
    enq: WL - contention     2     100     0     1     0.00     0.00
    ADR block file read     13     0     0     0     0.01     0.00
    ADR block file write     5     0     0     0     0.00     0.00
    latch: object queue header operation     1     0     0     1     0.00     0.00
    gc cr block busy     1     0     0     1     0.00     0.00
    rdbms ipc message     103,276     67     126,259     1223     71.03     
    PX Idle Wait     6,467     67     12,719     1967     4.45     
    wait for unread message on broadcast channel     7,240     100     7,221     997     4.98     
    gcs remote message     218,809     84     7,213     33     150.49     
    DIAG idle wait     203,228     95     7,185     35     139.77     
    shared server idle wait     121     100     3,630     30000     0.08     
    ASM background timer     3,343     0     3,611     1080     2.30     
    Space Manager: slave idle wait     723     100     3,610     4993     0.50     
    heartbeat monitor sleep     722     100     3,610     5000     0.50     
    ges remote message     73,089     52     3,609     49     50.27     
    dispatcher timer     66     88     3,608     54660     0.05     
    pmon timer     1,474     82     3,607     2447     1.01     
    PING     1,487     19     3,607     2426     1.02     
    Streams AQ: qmn slave idle wait     125     0     3,594     28754     0.09     
    Streams AQ: qmn coordinator idle wait     250     50     3,594     14377     0.17     
    smon timer     18     50     3,505     194740     0.01     
    JOX Jit Process Sleep     73     100     976     13370     0.05     
    class slave wait     56     0     605     10806     0.04     
    KSV master wait     2,215     98     1     0     1.52     
    SQL*Net message from client     109     0     0     2     0.07     
    PX Deq: Parse Reply     27     44     0     1     0.02     
    PX Deq: Join ACK     30     40     0     1     0.02     
    PX Deq: Execute Reply     20     30     0     0     0.01     
    Streams AQ: RAC qmn coordinator idle wait     259     100     0     0     0.18     
    Back to Wait Events Statistics
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    Wait Event Histogram
    * Units for Total Waits column: K is 1000, M is 1000000, G is 1000000000
    * % of Waits: value of .0 indicates value was <.05%; value of null is truly 0
    * % of Waits: column heading of <=1s is truly <1024ms, >1s is truly >=1024ms
    * Ordered by Event (idle events last)
              % of Waits
    Event     Total Waits     <1ms     <2ms     <4ms     <8ms     <16ms     <32ms     <=1s     >1s
    ADR block file read     13     100.0                                   
    ADR block file write     5     100.0                                   
    ADR file lock     6     100.0                                   
    ARCH wait for archivelog lock     3     100.0                                   
    ASM file metadata operation     3483     99.6     .1     .1                    .2     
    CGS wait for IPC msg     32.7K     100.0                                   
    CSS initialization     12     50.0                    50.0               
    CSS operation: action     21     28.6     9.5          61.9                    
    CSS operation: query     36     86.1     5.6     8.3                         
    DFS lock handle     6198     98.6     1.2     .1                    .1     
    Disk file operations I/O     909     95.7     3.6     .7                         
    IPC send completion sync     5469     99.9     .1     .0     .0                    
    KJC: Wait for msg sends to complete     313     100.0                                   
    LGWR wait for redo copy     122     100.0                                   
    Log archive I/O     3     66.7               33.3                    
    OJVM: Generic     36     55.6                              44.4     
    PX Deq: Signal ACK EXT     72     98.6     1.4                              
    PX Deq: Signal ACK RSG     2070     99.7               .0     .1     .0     .1     
    PX Deq: Slave Session Stats     2673     99.7     .2                         .1     .0
    PX Deq: reap credit     44.7K     100.0                                   
    SQL*Net break/reset to client     20     95.0                                   5.0
    SQL*Net message to client     14.7K     100.0                                   
    SQL*Net more data from client     32     100.0                                   
    SQL*Net more data to client     689     100.0                                   
    asynch descriptor resize     3387     100.0                                   
    buffer busy waits     2     100.0                                   
    control file parallel write     2455     96.6     2.2     .6     .6          .1          
    control file sequential read     36K     99.4     .3     .1     .1     .1     .1     .0     
    db file parallel read     397     8.8     .8     5.5     12.6     17.4     46.3     8.6     
    db file parallel write     8233     85.4     10.3     2.3     1.4     .4     .1          
    db file scattered read     26.3K     79.2     1.5     8.2     10.5     .6     .1     .0     
    db file sequential read     28.4K     60.2     3.3     18.0     18.1     .3     .1     .0     
    db file single write     2     100.0                                   
    direct path read     2     50.0                         50.0          
    direct path read temp     1722     95.8     2.8     .1     .5     .8     .1          
    direct path write     6     83.3                    16.7               
    direct path write temp     4842     96.3     2.7     .5     .2     .0     .0     .2     
    enq: AF - task serialization     1     100.0                                   
    enq: CF - contention     145     99.3     .7                              
    enq: CO - master slave det     1203     98.9     .8     .2                         
    enq: CR - block range reuse ckpt     83     100.0                                   
    enq: DR - contention     2     100.0                                   
    enq: FB - contention     131     100.0                                   
    enq: HW - contention     97     100.0                                   
    enq: JQ - contention     19     89.5     10.5                              
    enq: JS - job run lock - synchronize     3     100.0                                   
    enq: MD - contention     1     100.0                                   
    enq: MW - contention     2     100.0                                   
    enq: PS - contention     3207     99.5     .4     .1                         
    enq: TA - contention     11     100.0                                   
    enq: TD - KTF dump entries     8     100.0                                   
    enq: TK - Auto Task Serialization     6     100.0                                   
    enq: TM - contention     58     100.0                                   
    enq: TO - contention     3     100.0                                   
    enq: TQ - DDL contention     1     100.0                                   
    enq: TS - contention     1     100.0                                   
    enq: UL - contention     1     100.0                                   
    enq: US - contention     7     100.0                                   
    enq: WF - contention     11     81.8                              18.2     
    enq: WL - contention     2     50.0     50.0                              
    gc buffer busy acquire     2     50.0               50.0                    
    gc cr block 2-way     4934     99.9     .1                    .0     .0     
    gc cr block busy     35     68.6     31.4                              
    gc cr block congested     6     100.0                                   
    gc cr disk read     2     100.0                                   
    gc cr grant 2-way     4824     100.0     .0                              
    gc cr grant congested     2     100.0                                   
    gc cr multi block request     37.1K     99.8     .2     .0     .0     .0     .0     .0     
    gc current block 2-way     2134     99.9     .0                         .0     
    gc current block busy     7     14.3     14.3          14.3          28.6     28.6     
    gc current block congested     2     100.0                                   
    gc current grant 2-way     1337     99.9     .1                              
    gc current grant busy     7123     99.2     .2     .2     .0     .0     .3     .1     
    gc current grant congested     2     100.0                                   
    gc current multi block request     1260     99.8     .2                              
    gc object scan     28.8K     100.0                                   
    gcs log flush sync     65     95.4          3.1     1.5                    
    ges LMON to get to FTDONE     3                              100.0          
    ges generic event     1                         100.0               
    ges inquiry response     2     100.0                                   
    ges lms sync during dynamic remastering and reconfig     24                         16.7     29.2     54.2     
    ges message buffer allocation     63.1K     100.0                                   
    kfk: async disk IO     23.3K     100.0     .0     .0                         
    kjbdrmcvtq lmon drm quiesce: ping completion     9     11.1                              88.9     
    ksxr poll remote instances     19.1K     100.0                                   
    latch free     52     59.6     40.4                              
    latch: call allocation     2     100.0                                   
    latch: gc element     1     100.0                                   
    latch: gcs resource hash     1     100.0                                   
    latch: ges resource hash list     135     100.0                                   
    latch: object queue header operation     5     40.0     40.0     20.0                         
    latch: shared pool     5     40.0                    20.0     20.0     20.0     
    library cache load lock     74     9.5     5.4     8.1     17.6     10.8     13.5     35.1     
    library cache lock     493     99.2     .4     .4                         
    library cache pin     1186     98.4     .3     1.2     .1                    
    library cache: mutex X     6     100.0                                   
    log file parallel write     3897     72.9     1.5     17.1     7.5     .6     .3     .1     
    log file sequential read     350     4.6               3.1     59.4     30.0     2.9     
    log file single write     6     100.0                                   
    log file switch completion     3                         33.3          66.7     
    log file sync     385     90.4     3.6     4.7     .8     .5               
    name-service call wait     18          5.6     5.6     5.6     16.7     44.4     22.2     
    os thread startup     146                                   100.0     
    rdbms ipc reply     3763     99.7     .3                              
    read by other session     2     50.0          50.0                         
    reliable message     4565     99.7     .2     .0               .0     .1     
    row cache lock     2334     99.3     .2     .1                    .1     .3
    undo segment extension     8     50.0                    37.5     12.5          
    utl_file I/O     11     100.0                                   
    ASM background timer     3343     57.0     .3     .1     .1     .1          21.1     21.4
    DIAG idle wait     203.2K     3.4     .2     .4     18.0     41.4     14.8     21.8     
    JOX Jit Process Sleep     73                                   2.7     97.3
    KSV master wait     2213     99.4     .1     .2                    .3     
    PING     1487     81.0                                   19.0
    PX Deq Credit: send blkd     7     57.1          14.3     14.3          14.3          
    PX Deq: Execute Reply     2966     59.8     .8     9.5     5.6     10.2     2.6     11.4     
    PX Deq: Execution Msg     10.6K     72.4     12.1     2.6     2.5     .1     5.6     4.6     .0
    PX Deq: Join ACK     3006     77.9     22.1     .1                         
    PX Deq: Parse Reply     3184     67.1     31.1     1.6     .2                    
    PX Idle Wait     6466     .2     8.7     4.3     4.8     .3     .1     5.0     76.6
    SQL*Net message from client     14.7K     72.4     2.8     .8     .5     .9     .4     2.8     19.3
    Space Manager: slave idle wait     722                                        100.0
    Streams AQ: RAC qmn coordinator idle wait     259     100.0                                   
    Streams AQ: qmn coordinator idle wait     250     50.0                                   50.0
    Streams AQ: qmn slave idle wait     125                                        100.0
    class slave wait     55     67.3          7.3     1.8     5.5     1.8     7.3     9.1
    dispatcher timer     66     6.1                                   93.9
    gcs remote message     218.6K     7.7     1.8     1.2     1.6     1.7     15.7     70.3     
    ges remote message     72.9K     29.7     5.1     2.7     2.2     1.5     4.0     54.7     
    heartbeat monitor sleep     722                                        100.0
    jobq slave wait     7725                    .1          .0     99.9     
    pmon timer     1474     18.4                                   81.6
    rdbms ipc message     103.3K     20.7     2.7     1.5     1.3     .9     .7     40.7     31.6
    shared server idle wait     121                                        100.0
    smon timer     18                                        100.0
    wait for unread message on broadcast channel     7238                         .3          99.7     
    Back to Wait Events Statistics
    Back to Top
    Wait Event Histogram Detail (64 msec to 2 sec)
    * Units for Total Waits column: K is 1000, M is 1000000, G is 1000000000
    * Units for % of Total Waits: ms is milliseconds s is 1024 milliseconds (approximately 1 second)
    * % of Total Waits: total waits for all wait classes, including Idle
    * % of Total Waits: value of .0 indicates value was <.05%; value of null is truly 0
    * Ordered by Event (only non-idle events are displayed)
              % of Total Waits
    Event     Waits 64ms to 2s     <32ms     <64ms     <1/8s     <1/4s     <1/2s     <1s     <2s     >=2s
    ASM file metadata operation     6     99.8          .1     .1                    
    DFS lock handle     6     99.9               .1     .0               
    OJVM: Generic     16     55.6               2.8          41.7          
    PX Deq: Signal ACK RSG     3     99.9     .0     .1                         
    PX Deq: Slave Session Stats     3     99.9          .0               .0     .0     
    SQL*Net break/reset to client     1     95.0                              5.0     
    control file sequential read     1     100.0          .0                         
    db file parallel read     34     91.4     8.6                              
    db file scattered read     4     100.0     .0          .0                    
    db file sequential read     6     100.0     .0     .0     .0                    
    direct path write temp     11     99.8     .1     .1     .0                    
    enq: WF - contention     2     81.8               18.2                    
    gc cr block 2-way     1     100.0          .0                         
    gc cr multi block request     1     100.0          .0                         
    gc current block 2-way     1     100.0     .0                              
    gc current block busy     2     71.4     28.6                              
    gc current grant busy     8     99.9     .0     .1                         
    ges lms sync during dynamic remastering and reconfig     13     45.8     20.8     33.3                         
    kjbdrmcvtq lmon drm quiesce: ping completion     8     11.1     11.1     77.8                         
    latch: shared pool     1     80.0     20.0                              
    library cache load lock     26     64.9     14.9     12.2     4.1     4.1               
    log file parallel write     2     99.9     .0               .0               
    log file sequential read     10     97.1     2.0     .6     .3                    
    log file switch completion     2     33.3               66.7                    
    name-service call wait     4     77.8          22.2                         
    os thread startup     146               100.0                         
    reliable message     4     99.9          .0               .1          
    row cache lock     2     99.7                    .0     .0          .3
    Back to Wait Events Statistics
    Back to Top
    Wait Event Histogram Detail (4 sec to 2 min)
    * Units for Total Waits column: K is 1000, M is 1000000, G is 1000000000
    * Units for % of Total Waits: s is 1024 milliseconds (approximately 1 second) m is 64*1024 milliseconds (approximately 67 seconds or 1.1 minutes)
    * % of Total Waits: total waits for all wait classes, including Idle
    * % of Total Waits: value of .0 indicates value was <.05%; value of null is truly 0
    * Ordered by Event (only non-idle events are displayed)
              % of Total Waits
    Event     Waits 4s to 2m     <2s     <4s     <8s     <16s     <32s     < 1m     < 2m     >=2m
    row cache lock     6     99.7     .3                              
    Back to Wait Events Statistics
    Back to Top
    Wait Event Histogram Detail (4 min to 1 hr)
    No data exists for this section of the report.
    Back to Wait Events Statistics
    Back to Top
    Service Statistics
    * ordered by DB Time
    Service Name     DB Time (s)     DB CPU (s)     Physical Reads (K)     Logical Reads (K)
    ubshost     1,934     1,744     445     73,633
    SYS$USERS     105     45     1     404
    SYS$BACKGROUND     0     0     1     128
    ubshostXDB     0     0     0     0
    Back to Wait Events Statistics
    Back to Top
    Service Wait Class Stats
    * Wait Class info for services in the Service Statistics section.
    * Total Waits and Time Waited displayed for the following wait classes: User I/O, Concurrency, Administrative, Network
    * Time Waited (Wt Time) in seconds
    Service Name     User I/O Total Wts     User I/O Wt Time     Concurcy Total Wts     Concurcy Wt Time     Admin Total Wts     Admin Wt Time     Network Total Wts     Network Wt Time
    ubshost      60232     90     2644     4     0     0     13302     0
    SYS$USERS      997     2     525     19     0     0     1973     0
    SYS$BACKGROUND      1456     2     1258     14     0     0     0     0
    I am not able to paste the whole awr report. I have paste some of the sections of awr report.
    Please help.
    Thanks and Regards,

  • Set different authentication mode for OWA (without 2 ip address)

    hi
    http://social.technet.microsoft.com/Forums/office/en-US/fda18a29-a484-4ed5-903b-aa06e8f7a032/set-different-authentication-mode-for-owa?forum=exchangesvrclients
    Step 1: IP Address
    Obtain a second IP address and add it to the NIC of your server.
    Step 2: DNS
    Add a DNS entry for That secondary IP address for the name we will want to use in the new FBA OWA Web site. I have chosen "testwebmail." Be sure there is a valid SSL certificate (recommended to have UC or SAN SSL certs) on the server Which has the
    new name "testwebmail" that will be used in the certificate.
    Step 3: New Web Site
    Create a new web site in IIS on the Client Access Server and bind it to the new IP address used in step 1.
    Step 4: Adding Exchange Virtual Directories
    The web site has been created and bound to the secondary IP address of our server. Also the DNS record That will be used to access the OWA FBA new page was added to DNS. The next step is to go into EMS and begin adding our virtual directories for OWA and ECP.
    Login to the Exchange server and open the Exchange Management Shell. Then run Get-Get-OWAVirtualDirectory and ECPVirtualDirectory to see the default OWA and ECP directories.
    New-OWAVirtualDirectory -WebSiteName FBA -InternalUrl https://url/owa
    New-ECPVirtualDirectory -WebSiteName FBA -InternalUrl https://url/ecp
    Step 5: Configure the Virtual Directories
    To configure the virtual directories we will disable FBA on the Default Web Site OWA and ECP virtual directories
    New-OWAVirtualDirectory -WebSiteName "FBA"
    Enable the Basic authentication via running the following command:
    Set-OWAVirtualDirectory -Identity "yourservername\owa (FBA)" -BasicAuthentication $true
    Set-OWAVirtualDirectory -Identity "OWA (Default Web Site)" -WindowsAuthentication $true -BasicAuthentication $false  -FormsBasedAuthentication $true
    Step 6: iisreset
    I want to set this settings; but I don't have 2 ip address and I want to set whit one ip address.
    can please tell me how can set this settings with one ip address?
    and please tell me about publishing whit tmg.
    thanks

    Hi,
    Based on my research on Host Header, it seems using Host Header can achive your goal.
    More details on Host Headers:
    1. Host headers let you assign more than one site to a
    single IP address on a Web server.
    2. To host more than one Web site on a Web server, you can assign a unique IP address to each Web site, designate a non-standard TCP port number for a Web site,
    or use host headers. Of the three methods, it is more common to use host headers than to assign unique IP addresses to Web sites or to use non-standard TCP port numbers.
    Configure a Host Header for a Web Site (IIS 7)
    http://technet.microsoft.com/en-us/library/cc753195(v=ws.10).aspx
    Please correct me if there is anything misunderstand.
    However, Microsoft recommends creating the second OWA/ECP virtual directories in a new IIS web site with a different IP address, and using it for internal client access.
    Thanks
    Mavis Huang
    TechNet Community Support

  • Exchange 2013 / 2010 coexistence with different public domains

    Currently in my organization
    1x Exchange 2010 Standard w/SP3 - Client Access / Hub Transport
    1x Exchange 2010 Standard w/SP3 - Unified Messaging Server (we also have Lync 2013 in the environment)
    1x Exchange 2010 Standard w/SP3 - Mailbox
    In my organization, we have approximately 600 mailboxes - 100 office staff, and 500 field employees using a mixture of Outlook 2007/2010/2013 and various mobile devices. Most of our field employees are in remote locations, several hundred
    miles away. We have no IT staff in any of our field locations.
    We also have two public domains that we use, though we are trying to phase out the old one to unify everything.
    domain-old.com - Used when the company had a different name. All Exchange services are published with this one.
    domain-new.com - Used after the company changed names. The goal is to publish all Exchange services with this one.
    domain.local - Our internal Active Directory domain.
    We use Microsoft Exchange Online Protection for all inbound/outbound email. We publish OWA, ActiveSync, etc. through our Sophos firewall. Also, we have two KEMP LoadMaster appliances that for high availability that we currently use for Lync 2013; they are
    severely underutilized.
    Goals for the Exchange migration
    My primary goal is to introduce high availability into our environment by introducing redundancy on multiple levels. I would like to accomplish this by utilizing Exchange 2013 since we will need to purchase additional licensing anyway. My idea of the
    final topology is:
    2x KEMP LoadMaster appliances providing reverse proxy and load balancing to the CAS servers
    2x Physical servers running Hyper-V, separated physically but in the same AD site. Each one would run:
    1x VM with Exchange 2013 Standard w/SP1 - Client Access
    1x VM with Exchange 2013 Enterprise w/SP1 - Mailbox - Utilizing DAGs for high-availability
    I'd like all the new Exchange services to be published under the domain-new.com domain - such as mail.domain-new.com, mail.domain-new.com/owa, smtp.domain-new.com, etc.
    We have purchased two new physical servers that will be Hyper-V hosts running Server 2012R2. My timeframe to start this project is within the next two weeks, so I'll be running the new Exchange 2013 VMs under Server 2012, not R2 as it won't be supported
    until Exchange 2013 SP3 is released.
    Deployment Plan
    Install Exchange 2013 on new VMs.
    Create CAS Array object.
    Configure Exchange 2013 to publish under the new namespace.
    Perform mailbox moves to 2013 for a small group (1-5 users) at a time. Recreate Outlook profiles and mobile device profiles for that group. Test and move to the next group.
    Once all users are moved to the new namespace, decommission the Exchange 2010 servers.
    Unknowns
    My primary unknown is about the namespaces. All of the guides I have read strictly deal with keeping the existing namespace and having the Exchange 2013 CAS proxy requests to Exchange 2010 for mailboxes still on 2010. This should never be an issue for us
    since we'll be using the new domain for each mailbox we move.
    My question boils down to, is this a supported way to migrate to Exchange 2013? And if so, are there some materials or information to help me perform it this way?

    Hi,
    From the description, you want to install Exchange 2013 in another domain and then migrate from Exchange 2010 to Exchange 2013. 
    About DAG, all servers in a DAG must be running the same operating system. If there is only one mailbox server, there is no need to deploy DAG.
    About CAS array, we should know that the CAS Array no longer exists in Exchange 2013.
    About the namespace, based on my knowledge, we can introduce a new namespace. Just as what you said "This should never be an issue for us since we'll be using the new domain for each mailbox we move".
    Here are some articles about how to upgrade from Exchange 2010 to Exchange 2013 in the same organization.
    Checklist: Upgrade from Exchange 2010
    Install Exchange 2013 in an Existing Exchange 2010 Organization
    Upgrade from Exchange 2010 to Exchange 2013
    Hope this helps.
    Best regards,
    Belinda
    Belinda Ma
    TechNet Community Support

  • How we set up multiple websites on OSX Server

    BACKGROUND
    After fiddling and futzing around for weeks (actually since last year) I've finally figured out how to set up multiple websites (virtual sites) using one port and one IP address. While there seems to be lots of discussion on this topic, it seems that the basic assumption is that one knows everything about websites, DNS and all that stuff, which I do not.
    When our network was originally established the engineer set up a wiki and also configured webmail, so we had two sites, one secured for mail and the other open for Calendar and the wiki. We were not hosting any websites locally because our school website is hosted by a company in New England.
    This year I wanted to set up websites for teachers and students. As great as the wiki is, there are some things it just can't do as well as a website. So I figured if I set up the sites teachers could link back and forth from one to the other. In addition kids could now start to use a real website instead of the cobbled together file mess I had when we ran a Windows network. Also iWeb is a much more accessible tool than FrontPage.
    SERVER SIDE:
    Snow Leopard Server - 10.6.4
    There are two - actually three pieces if you want your iWeb clients to connect to the server: Server Side Web Services, DNS and, in my case, FTP.
    ================================================ SERVER SIDE - WEB SERVICES
    If you haven't turned on Web services, you'll need to open Server Admin and do that. If you don't know how to set up web services - just reply and I'll step you through that as well.
    Once web services are set up and turned on, you'll see it listed under your server’s name in the Server Admin sidebar. Click on "Web" and then click on the "Sites" tab at the top of page. This is where you list all your sites.
    Click the plus button and enter the fully qualified name of your site, for example: "students.myschool.org". Don't use the defaults here (no name) - that's what got me in trouble before. BE SPECIFIC!
    You'll be looking at the "General" tab (the other tabs, "Options", "Realms", etc. we'll deal with in a second).
    On the "General Tab", the default IP address ("any") and port (80) is just fine. We'll run everything over port 80. (Apache figures all the virtual site stuff out - you don't need your rocket science degree for that.)
    "Web Folder:" is important because this is how you'll "segment" your websites. While I would NEVER do this again, we have a solid state hard drive for the OS and a RAID array for our data files. IF you have that, make sure you do NOT use the default "Web Folder" because it will store all your files on your solid state drive. There may not be enough room, over time, on that drive. I've not experienced it yet, but it's my understanding that if the drive fills up, the server shuts down.
    I store my web sites on a folder on the RAID array.
    Everything else on that tab can be left as the default. (Just make sure that you have an "index.html" or "index.php" file in your web folder root, but iWeb will take care of that for you.)
    I would put in your email address in the "Administrator Email:" field.
    Under "Options" you really don't have to put anything. I've tested making websites with iWeb and it doesn't appear that anything needs to be checked.
    Nothing needs to be entered in "Realms" as well from what I see working w/ iWeb.
    The defaults in "Logging" are fine.
    You can leave "Security" alone, but we do have a (self-issued) certificate listed for our webmail site.
    "Aliases" is important. Under "Web Server Aliases" you enter how you want the site to respond to when users type in a URL in their web browsers.
    When our web server was initially set up the engineer set up "wiki.myschool.org" on port 80 and "mail.myschool.org" on port 443. In the aliases section was nothing but a "*" (the wildcard character). That means, from what I can figure out, that the webserver will respond to these sites regardless of what is typed in the URL. (Well, something like that - point is, if you create OTHER websites, you'll NEVER get to them because the wildcard character in the "Aliases" section, in effect, grabs those web requests and redirects them to the sites that are already there.
    In my case I deleted both of those wild card characters. For my "wiki.myschool.org" site, I entered "mail.myschool.org". That means if you type EITHER "wiki." or "mail.", go to the site that’s stored in the “Web Folder” we set up when those sites were created.
    For "mail.myschool.org" I just DELETED the wildcard character. I wanted that site (since it was secured) only to respond to "mail." - nothing else. (You're not going to that secured site for any other reason than to get your mail.)
    "Proxy" can be left blank. Have no idea what that does. As time permits I'll do some research and figure out what it's used for.
    "Web Services" is if you want to provide any MORE services to this particular site. Most likely you'll want to uncheck all the boxes. For our "wiki." site, we have checked "Wikis", "Blogs", and "Calendar". For our "mail." site we have those checked PLUS "Mail".
    I would create a separate "Web Folder" for each of your sites. I don't know if that's a requirement but for housekeeping purposes, I would keep the sites separated. And I SUSPECT that it's "best practice" to separate your wiki from your other websites.
    SERVER SIDE - DNS
    OK...now you have to make your site reachable and the only way to do that is to set up DNS so that folks don't need to type in the IP address of your web server. You need to set up DNS inside your network and, if you want folks in the outside world to reach your website, you'll need to set up an external DNS as well. I'm going to cover INTERNAL DNS - if you don't know how to set up EXTERNAL DNS - reply or email me and I'll post those instructions.
    Most likely you have already created Zones for you network...all you really need to do is create "Aliases" so that when you type "students.myschool.org" your web browser will know that site resides on IP address XXX.XXX.XXX.XXX.
    If you've set up Zones then you already have a "Machine" setting that translates your server’s name to an IP address and vice versa.
    All you need to do is create an "Alias" (CNAME) record for, in this case, "students". You’ll see the choices for types of records when you click the "Add Record" button.
    There are only two fields to configure for a record: "Alias Name" - in this case "students" and "Destination" - in this case "servername.myschool.org". (You've already entered a machine record that says "servername" = 192.168.1.x.)
    That's it for Internal DNS.
    SERVER SIDE - FTP
    Now you have to get iWeb to communicate with the webserver.
    There are only three ways iWeb will communicate with webservers: MobileMe, Local Folder and FTP Server.
    Local Folder is really only practical if you want to host a website on a laptop (I was blown away initially when I found out that all Macs had a built-in web server - how neat is that?). I think there are some very cool things teachers could do with configuration, and, of course, you wouldn't need to set up any web services on the web server, but that's for another discussion. You need to set up FTP services on the web server.
    Turn on and enable FTP on your webserver.
    You can leave the defaults for "General", "Messages" and "Logging". "Advanced" is the only thing you want to set. I set "Authenticated Users See:" to "Home Folder Only". I set the "FTP Root" to the same root folder in which I plan to store my web sites (/VOLUMES/RAID Array/WebServer/Documents). This setting sets that folder only to be accessible via FTP.
    I would suggest returning to your DNS settings and adding one more "Alias". Set "ftp." to point to your webserver. Why? So folks can edit their sites from home (see below).
    CAVEAT: If you are running FTP on other servers, make sure that the settings here do not conflict with the settings on the other servers. For example, I'm running FTP on my file server so that my scanners can communicate with it. However, I configure my FTP settings by machine name and NOT "ftp.myschool.org".
    ================================================
    CLIENT SIDE - CONFIGURING iWEB
    Now you have to configure iWeb so that it will communicate with your server.
    Click on the "Site" icon so that "Site Publishing Settings" appears.
    Publishing:
    "Publish to:" = "FTP Server"
    You can set the "Site name:" and "Contact email:" to whatever you want. But see below!
    FTP Server Settings:
    "Server address"=ftp.myschool.org (you could also enter in servername.myschool.org or the IP address. However, if you want folks to be able to work on the site from home, you will need to configure external DNS for that. If you use the IP address, you're out of luck for remote access to the site. (You can do it but it's beyond the scope of this discussion.)
    "Username" & "Password" should be your user's network login credentials.
    "Directory/Path" - this is important. Remember, you set your "FTP Root" to be "/VOLUMES/RAID Array/WebServer/Documents". If you leave this field blank then the website will be dumped into this folder. If you are only setting up one site, that may be OK. However I wanted to set up a "students" site folder, a "faculty" site folder and a separate site for our literary magazine.
    THEREFORE: I have, in my ..../Documents folder (on the server), a "students" folder, a "faculty" folder, and a "litmag" folder.
    SO...in my "Directory/Path:" field, I have "/faculty". That means the full path to this website is "ftp root/faculty" or "/VOLUMES/RAID Array/WebServer/Documents/faculty" (You don't need a trailing "/" character. iWeb will automatically append the folder for you user depending on what you entered in "Site Name:" in the "Publishing" area.
    Website URL:
    This is the root website depending on whether it is "students" or "faculty". Since iWeb will append the site name to this root website, I accomplished what I hoped to accomplish in this post (http://discussions.apple.com/message.jspa?messageID=12288561#12288561).
    Faculty sites will be @ http://faculty.myschool.org/username. Students @ http://students.myschool.org/username. PERFECT!
    iWeb is such a GREAT tool - NOW the kids can start using it!
    I want to reiterate that this works for our school but it should work for you as well. There may be better ways to do this but it works for us.
    Hope this has been helpful and you won't have to spend weeks trying to figure this all out by yourself!

    OK...here's how we did it.
    To get access to the website you created from outside your network there are a couple of steps.
    First, you have to have a STATIC IP address from your ISP. If you have a T1 circuit, no problem...you usually get a couple of static IPs you can use. However, if you have a cable modem circuit, most likely you have a dynamic IP address which changes when you connect to the internet. Usually a static IP will cost a bit more because the ISP has to go through a couple of steps to set it up for you. But once you have the address, you now have a way for folks outside your network to connect with you.
    (I’m also assuming that you use a router of some sort through which traffic flows out to the internet and that you aren’t using connection sharing or something like that.)
    The next thing you need to do is have your new static IP address associated with the server on which you are hosting your website. You've probably already done that if your website works inside your network. However, you've associated a private ip (192.168.x.x, etc.) to your web server. That doesn't mean anything to folks on the outside because private IP addresses are just that - private - folks can't access them. (I won't get into VPN because that's a whole other topic.)
    The way you associate your new static IP address to your web server is through some sort of dns application from your ISP. For example, we use TierraNet to manage our external DNS information. They have a web interface control panel that is very similar to the DNS interface for XServer. You can create CNAME records (aliases - other ways that folks can access your servers).
    Basically you create an "A" (CNAME) record with a fully qualified domain name (e.g. webserver.myschool.org) and point it to your public IP address (XXX.XXX.XXX.XXX) which you just got from your ISP. It's going to take a while (24-48 hours) for this change to take effect. BTW, you can create as many “A” records as you want. For example mail.myschool.com and wiki.myschool.com could point to the same place.
    You want to make sure that the fully qualified domain name you enter in the external dns utility matches the name you used when you created your internal dns records on your XServer.
    OK...so now folks can get to your domain - but, remember, you have a private network IP scheme between them and you. You now have to tell your router that when web traffic arrives, allow it inside the network and direct it to your web server.
    Let's say your public IP address is 205.100.112.50 and your web server is 192.168.0.5.
    You have to create, in your router’s "Security Zone" (router companies call them different things) a couple of rules. Usually the first rule is: "Let everything inside the network get out to the web." You've probably already done that if folks inside the network can reach the internet.
    You then have to tell the router to allow web traffic (port 80) into your network AND redirect that traffic to 192.168.0.5.
    We use AdTran routers and they have a web interface which allows you to write "rules" affecting public and private traffic. Public is folks outside the network, private is folks inside.
    AdTran calls them "Security Zones" and you modify those zones with policies.
    So my "Policy" would say, in the above example, redirect traffic from my public IP (205.100.112.50) -> to my web server -> (192.168.0.5).
    THEN you have to modify this policy with what AdTran calls "Traffic Selectors". You've said, OK, you can get in, but WHAT can get in?
    The "Traffic Selector" is written to say: "Permit" "TCP" traffic from 205.100.112.50 only through Port 80. (That's the port that web traffic goes over. If you wanted a secure website, you'd add another traffic selector that opens port 443, for example.)
    I'll tell you I'm no genius when it comes to this. I called AdTran and had them configure my router for me. I told them what I wanted done, they remoted into the router and configured it. But then I could go to the web interface and see what they did and then added rules later on when I wanted, for example, to get access to the network via Apple Remote Desktop or VPN into the network on my iPad.
    I'd bet that your router has a maintenance agreement that includes this service and if it doesn't it should have.
    I did find that I still had issues when I tried to set this up originally and it had to do with the ORDER of the policies. I can’t remember exactly what the issue was, but, effectively one of the policies highjacked traffic before the policy that I wanted got triggered. Simply moving them around in the list fixed that issue. So if you have this set up but still can’t access the site, check the order of your rules.
    I don’t know if that helps or not, but I try to think about this stuff conceptually and then get someone to help me with the details. I work with this stuff so infrequently that I forgot how I did something 6 months or a year ago. I’m in the process of creating a wiki for the school which documents all this stuff, but that’s a major undertaking.
    Cheers,
    John

  • How do I host multiple domains on a single Messaging Server?

    How do I host multiple domains on a single Messaging Server?
    <p>
    To host multiple domains on one Messaging Server, use the
    mailAlternateAddress attribute. If you want to host two domains
    (customer1.com and customer2.com) on your server mail1.domain.com,
    make sure that:
    The various domains (in DNS) point to the installed mail server
    (you must have the MX records that
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    With Messaging Server 3.5, mailAlternateAddress can take the
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    jaygatsby1123 wrote:
    So what exactly am I doing with virtual hosts?  There is a place for Aliases...  What would I put in the "Aliases" box?
    Any other host name that you want to resolve to the specified virtual host.  It's quite literally an alias.
    if you want www.example.com and www.example.org to end up at the same web site and you already have a virtual host — Apple refers to virtual hosts as sites — configured for www.example.com in Server.app, then you'd add www.example.org as an alias for the www.example.com virtual host (site).
    Virtual hosts are implemented in a web server using some details of the HTTP or HTTPS protocol, and what the web browser (client) specified.  The client gets handed an IP address or a domain name by the user, and the client then fetches the associated IP address for the target web server from the client's DNS services or local host database, and the client then connects to the IP address and passes over the text string that the user had requested — the IP address or domain name or even some local shortcut set up in the client system — via the HTTP or HTTPS protocol.  The web server receives and processes this arriving text string from the client, and uses it to select which web site to render back to the web client.   One subtle detail lurks here, too: the server's own DNS configuration really isn't involved in the selection of the virtual host.

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