ADIC 1.3 manual Type d -fstype cvfs -prune -o, Find $dir -type d -fstype cvfs -prune -o -type f

Page 19

Operating System/

 

Description

Component Affected

 

 

 

 

 

Solaris

On Solaris, by default, the /usr/lib/fs/nfs/nfsfind script is run

 

nightly by the cron daemon. This script contains a find command that

 

traverses any local file system that is exported (shared) via NFS. If the

 

running of this script is interfering with the performance of processes

 

accessing StorNext file systems, it can be modified to skip them. To do so,

 

add the following line to the find command in the script:

 

'(' -type d -fstype cvfs -prune ')' -o

 

The final find command should look like this:

 

find $dir '(' -type d -fstype cvfs -prune ')' -o -type f

 

-name .nfs\* -mtime +7 -mount -exec rm -f {} \;

 

 

Windows

Windows-based SNFS clients do not support symbolic links that point to a

 

file system outside of SNFS. Symbolic links are created either by a UNIX/

 

Linux client or by a Windows client (and are referred to as junctions).

 

 

 

If you are using the StorNext client software with Windows 2000, Windows

 

Server 2003, or Windows XP, turn off the Recycle Bin in the StorNext file

 

systems mapped on the Windows machine, so the file systems will work

 

properly.

 

1

On the Windows client machine, right-click the Recycle Bin icon on your

 

 

desktop and click Properties.

 

2

Click Global.

 

3

Click Configure drives independently.

 

4 Click Local Disk onto which you have mapped StorNext.

 

5

Select the Do not move files to the Recycle Bin. Remove files

 

 

immediately when deleted check box.

 

6

Click Apply and OK.

 

 

Windows

Virus-checking software, such as McAfee Virus Scan, can severely

 

degrade SNFS performance. If you have anti-virus software running on

 

your Windows 2000/Windows Server 2003/Windows XP machines, ADIC

 

recommends you configure the software so that it does NOT check SNFS.

 

 

All

Hot re-zoning of SAN fabrics is not supported.

 

 

 

StorNext is incompatible with CXFS.

 

 

 

StorNext File System is incompatible with third-party portmappers.

 

 

 

April 2006, ADIC

19

Image 19
Contents Release Notes ContentsSpecial Configuration Requirements New FeaturesPurpose of this Release Snfx 1.3 Requirements Operating System Level RequirementsOperating System Operating System Levels Platform System Requirements Certified System ComponentsSAN Windows Memory RequirementsSettings and Parameters Changes to Unix File & Directory Modes Configuring LdapUsing Ldap Ldap Refresh TimeoutResolved Issues Irix Operating Description System Number Operating Description System Number Operating Description Workaround System Number Known IssuesHP-UX GetHostByName failure Readonly Directories GUIFsnameservers tab Etc/hosts file Fsnameservers file toERR NSS Establish Coordinator failed GetHostByName Cvlabel -ls command Xxx, type Cvfsck -t fsnameUse the snfsdefrag Stornext/snfs1Operating System Description Component Affected LimitationsFind $dir -type d -fstype cvfs -prune -o -type f Click Configure drives independentlyImmediately when deleted check box Type d -fstype cvfs -prune -oMaxMBPerClientReserve InodeExpandMax * #-of-data-stripe GroupsDocument Number Document Title DocumentationApril 2006, Adic
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Manual 2 pages 46.7 Kb

1.3 specifications

ADIC 1.3, short for Advanced Digital Interface Controller, is a powerful and innovative technology designed to streamline and enhance digital communications across a range of platforms and devices. The third iteration of this interface controller introduces numerous features and improvements that make it a key player in the evolving landscape of digital connectivity.

One of the standout features of ADIC 1.3 is its enhanced bandwidth capabilities. With support for high-speed data transfer rates, this version allows for efficient and rapid communication between devices, minimizing latency and maximizing throughput. This is particularly beneficial in applications that require real-time data processing, such as telecommunications, video streaming, and online gaming.

In addition to improved bandwidth, ADIC 1.3 incorporates advanced error-correction technologies. These algorithms are designed to identify and rectify data transmission errors, ensuring the integrity and reliability of the digital communication. This makes the technology well-suited for environments where data loss can have significant repercussions, such as in financial transactions or mission-critical operations.

Another hallmark of ADIC 1.3 is its compatibility with a wide range of protocols. By supporting various communication standards, this interface controller can easily integrate into existing systems and applications. This flexibility is particularly useful for businesses and organizations looking to upgrade their infrastructure without overhauling their entire network.

ADIC 1.3 also boasts robust security features to safeguard transmitted data. With the ever-increasing threat landscape of cyberattacks, the implementation of encryption protocols and secure access measures is essential. This ensures that sensitive information remains protected during transmission, instilling confidence in users and organizations alike.

The user-friendly nature of ADIC 1.3 further sets it apart from its predecessors. Its intuitive configuration options and management tools make it simple for network administrators to deploy and maintain. Coupled with comprehensive documentation and support resources, the technology is accessible to both seasoned professionals and those new to digital interface management.

Power efficiency is another critical aspect of ADIC 1.3. By optimizing resource consumption, the technology contributes to lower operational costs and minimizes environmental impact. This focus on sustainability resonates with many organizations seeking to implement greener practices in their operations.

In conclusion, ADIC 1.3 represents a significant advancement in digital interface technology. With its high-speed capabilities, error-correction features, protocol versatility, robust security measures, user-friendly design, and focus on energy efficiency, it is poised to play a vital role in the future of digital communication, catering to a wide array of industries and applications.