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Special Forums UNIX Desktop Questions & Answers What are the 7 layers of OSI model or TCP/IP Post 17977 by Neo on Thursday 21st of March 2002 04:12:20 PM
Old 03-21-2002
The OSI stack was developed for a strict client-server architecture. One new "web centric" architecture is more like"


  1. Presentation Logic
  2. Personalization Logic
  3. Session and Session Security Logic
  4. Application Logic
  5. Information Sharing Logic


    ....lower level transport stacks here ....

The old OSI client-server model does not apply to multi-tier 'web driven' architectures because presentation logic and personalization logic are at the top of the stack and application logic is moved to the middle tier.... this decouples presentation and personalization from application and publish-subscribe peer-to-peer services. OSI applies toward a specific class of client-server that predates n-tier.

Sorry, trick question Smilie
 

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nfsd(8) 						      System Manager's Manual							   nfsd(8)

NAME
nfsd - The remote NFS compatible server SYNOPSIS
/usr/sbin/nfsd [-t num_tcpthreads] [-u num_udpthreads] The following form of the nfsd command is not recommended and is supported only for backward compatibility: /usr/sbin/nfsd [numthreads] FLAGS
Specifies a number of TCP server threads (per RAD) to spawn. A value of 8 is recommended as a start. Specifies a number of UDP server threads (per RAD) to spawn. A value of 8 is recommended as a start. DESCRIPTION
The nfsd daemon runs on a server machine to service NFS requests from client machines. The daemon spawns a number of server threads that process NFS requests from client machines. At least one server thread must be running for a machine to operate as a server. There are two types of server threads: a server thread that processes NFS requests sent using TCP and a server thread that processes NFS requests sent using UDP. This is necessary because the kernel paths for UDP and TCP NFS messages are different. The -t option specifies the number of TCP threads to run and the -u option specifies the number of UDP threads to run. On systems that support Cache Coherent NUMA, the number of threads is per Resource Affinity Domain (RAD). As you add RADs, the NFS server will automatically scale by creating additional threads. NFS requests are processed by a particular RAD based on the file being accessed; this confines cached information about a file to a single RAD for efficiency. See numa_intro(3) for more information on the NUMA architec- ture. If you use the SysMan Menu to configure NFS, it sets the default at 8 UDP and 8 TCP threads. However, a user can have any number of TCP and UDP nfsd threads running up to a maximum of 128 threads. The optimal number of TCP server threads and UDP server threads depends on many factors. See nfsiod(8) for more information. The server threads are implemented as kernel threads; they are part of Process ID 0, not the nfsd process. The ps axml command displays idle server threads under PID 0. Idle threads will be waiting on nfs_udp_wait or nfs_tcp_wait. Therefore, if 16 server threads are config- ured, only one nfsd process is displayed in the output from the ps command, although 16 server threads are available to handle NFS requests. Files that are larger than 2 gigabytes are exported as 2 gigabyte files when accessed by NFS Version 2. NFS Version 2 is a 32-bit proto- col, therefore, the size and offset fields are 32-bit quantities (on Alpha UFS they are 64-bit quantities). Use caution when accessing files larger than 2 gigabytes from NFS clients. EXAMPLES
In the following example, 16 threads are run (8 for TCP and 8 for UDP): nfsd -t 8 -u 8 FILES
Specifies the command path Specifies the file for logging startup errors (before the server threads are started). Specifies the file for logging NFS errors (after the server threads are started). RELATED INFORMATION
Commands: mount(8), mountd(8), nfsconfig(8), nfsstat(8), portmap(8) System calls: nfssvc(2) delim off nfsd(8)
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