The following is an example of the -Koption:

#vcadiag -K vca0 Device: vca0

Key Length: 1024 bits

Key Fingerprint: 5f26-b516-83b4-d254-a75f-c70d-0544-4de6 Modulus:

b7215a99 8bb0dfe9 389363a0 44dac2b0 7c884161 20ee8c8b d751437d 4e6a5cdb 76fdcb2a ad353c0b 248edc1d 3c76591d dbca5997 f6ee8022 e8bb5a6d 465a4f8c 601d46be 573e8681 506e5d8d f240a0db 11d5c095 2d237061 df27b2de c353900f f531092b 7d9a755b c5d79782 95a1180b e17303bb aca939ef 006c73f7 74469031

Public Exponent: 00010001

The following is an example of the -Qoption:

#vcadiag -Q vca0:cb

vca0:cb:keystore_name:83097c2b3e35ef5b:1 vca0:ca vca0:ca:keystore_name:83097c2b3e35ef5b:1 kcl2pseudo

vca0:om

vca0:om:keystore_name:83097c2b3e35ef5b:1 libkcl

The following is an example of the -Roption:

#vcadiag -R vca0

Resetting device vca0, this may take a minute. Please be patient.

Device vca0 reset ok.

The following is an example of the -Zoption:

#vcadiag -Z vca0

Zeroizing device vca0, this may take a few minutes. Please be patient.

Device vca0 zeroized.

Chapter 4 Administering the Sun Crypto Accelerator 4000 Board With the vcaadm and vcadiag Utilities 83

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Sun Microsystems 4000 manual Following is an example of the -Koption, Following is an example of the -Qoption

4000 specifications

Sun Microsystems, a pivotal player in the computing industry during the late 20th and early 21st centuries, was renowned for its innovative hardware and software solutions. Among its notable offerings were the Sun-6000, Sun-5000, and Sun-4000 series, powerful workstations and servers designed for a range of enterprise-level applications.

The Sun-6000 series, introduced in the early 1990s, marked a significant advancement in computing performance. These systems were built on the SPARC architecture, which facilitated high levels of processing power and multitasking capabilities. One of the main features of the 6000 series was its scalability, allowing organizations to increase their processing power by adding more modules. It also offered robust graphics performance, making it ideal for scientific visualization and complex data analysis.

Next in line was the Sun-5000 series. Launched shortly after the 6000 series, the 5000 line was celebrated for its reliability and ease of management. This series emphasized a balanced architecture, which combined processing capabilities with ample memory and storage options. Key characteristics included support for multiple processors, leading to improved performance for demanding applications. Additionally, the 5000 systems featured advanced input/output capabilities, ensuring fast data transfers—crucial for database applications and web servers.

Finally, the Sun-4000 series targeted businesses seeking affordable yet potent computing solutions. These servers boasted a modular design, allowing for easy upgrades and maintenance. The 4000 series was particularly notable for its support for various operating systems, including SunOS and Solaris. These systems were engineered to handle a range of workloads, from enterprise resource planning to web hosting, while still fitting into a value-driven budget.

Across all three series, Sun Microsystems prioritized compatibility and integration, ensuring that each system offered seamless connectivity with Sun's software solutions and third-party applications. Their commitment to open standards and interoperability set them apart in the competitive landscape of enterprise computing. Additionally, the use of high-quality components lent the systems durability, making them a wise investment for organizations looking to future-proof their IT infrastructure.

In summary, the Sun-6000, 5000, and 4000 series exemplified Sun Microsystems' ethos of innovation and reliability. These powerful systems catered to diverse business needs, setting benchmarks in performance and functionality that continue to influence modern computing.