FIGURE 8-4

FRU Tests Available for the T1 or T2 Data Path FRU

Running the tests from the Storage Automated Diagnostic Environment GUI guides you in discovering the failed FRU. Refer to Chapter 5 of the Storage Automated Diagnostic Environment User’s Guide for instructions on how to run tests.

Run the switchtest to test the switches.

Run the linktest to test the T1 or T2 connections.

After a test has completed its run, an email message similar to the message in is sent to the specified email recipient.

running on diag.xxxxx.xxx.com

linktest started on FC interconnect: switch to switch switchtest started on switch 100000c0dd00b682 port 8 Estimated test time 14 minute(s)

01/30/02 11:21:26 diag209 Storage Automated Diagnostic Environment: MSGID 6013 switchtest.FATAL

switch0: "Device: Switch Port: 8 is Offline"

switchtest failed

Remove FC Cable from switch: 100000c0dd00b682, port: 8

Insert FC loopback cable into switch: 100000c0dd00b682, port: 8 Continue Isolation ?

switchtest started on switch 100000c0dd00b682 port 8 Estimated test time 14 minute(s)

01/30/02 11:22:11 diag209 Storage Automated Diagnostic Environment: MSGID 6013 switchtest.FATAL

switch0: "Device: Switch Port: 8 is Offline"

switchtest failed

Remove FC loopback cable from switch: 100000c0dd00b682, port: 8

Insert a NEW FC GBIC into switch: 100000c0dd00b682, port: 8

Insert FC loopback cable into switch: 100000c0dd00b682, port: 8 Continue Isolation ?

switchtest started on switch 100000c0dd00b682 port 8 Estimated test time 14 minute(s)

01/30/02 11:25:12 diag209 Storage Automated Diagnostic Environment: MSGID 4001 switchtest.WARNING

switch0: "Maximum transfer size for a FABRIC port is 200. Changing transfer size 2000 to 200"

switchtest completed successfully

Remove FC loopback cable from switch: 100000c0dd00b682, port: 8

Restore ORIGINAL FC Cable into switch: 100000c0dd00b682, port: 8

Suspect ORIGINAL FC GBIC in switch: 100000c0dd00b682, port: 8

Retest to verify FRU replacement.

linktest completed on FC interconnect: switch to switch

FIGURE 8-4Example Link Test Text Output from the Storage Automated Diagnostic Environment

Chapter 8 Troubleshooting the Sun StorEdge T3+ Array Devices 93

Sun Proprietary/Confidential: Internal Use Only

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Sun Microsystems 6900, 3900 manual FRU Tests Available for the T1 or T2 Data Path FRU

6900, 3900 specifications

Sun Microsystems was a pioneering force in the computer industry, especially known for its innovative workstations and servers during the late 20th century. Among its notable product lines were the Sun 6900 and 3900 series, which played a critical role in enterprise computing, offering substantial advancements in performance and reliability.

The Sun 6900, also known as the Starfire, was an advanced multiprocessor server introduced in the mid-1990s. One of its standout features was its ability to support up to 64 processors, making it one of the most powerful systems of its time. This scalability was made possible by Sun’s innovative design, which utilized a high-bandwidth crossbar switch architecture that facilitated fast communication between processors, ensuring minimal latency and optimal performance for demanding applications.

The 6900 was built on the UltraSPARC architecture, which provided support for 64-bit processing. This was a significant advancement over 32-bit systems, allowing for improved memory addressing and overall application performance. The server supported large amounts of RAM, up to 512 GB, which was critical for memory-intensive tasks such as database management and scientific computation.

On the other hand, the Sun 3900 series catered to a different segment of the market, targeting businesses requiring robust, yet cost-effective server solutions. The 3900 was designed primarily as a mid-range server and offered impressive reliability features such as hot-swappable components and redundant power supplies. It came equipped with the SPARC architecture, ensuring compatibility with a wide array of software applications.

Both the 6900 and 3900 series made extensive use of Sun’s Solaris operating system, which was known for its stability and security. This operating system allowed for seamless multitasking and efficient resource management, a necessity for enterprise environments where uptime was critical.

In terms of connectivity, both systems supported advanced networking capabilities, including Fast Ethernet and Gigabit Ethernet options, facilitating improved data throughput. Their modular designs allowed for easy upgrades, ensuring that organizations could adapt to changing technological demands without major overhauls.

Overall, the Sun 6900 and 3900 series represented a significant leap forward in server technology, combining powerful processing capabilities, advanced scalability, and reliable performance. These systems played a crucial role in establishing Sun Microsystems as a leader in the enterprise computing arena during their era.