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Special Forums UNIX and Linux Applications High Performance Computing Memory Barriers for (Ubuntu) Linux (i686) Post 302430614 by gorga on Friday 18th of June 2010 06:27:48 AM
Old 06-18-2010
Quote:
Originally Posted by fpmurphy
Huh? NPTL is a 1:1 threading model. NGPT is an M:N threading model. Of course the kernel is involved.
I was referring to the older GNU Portable Threads...

GNU Pth - The GNU Portable Threads

"Pth doesn't require any kernel support, but can NOT benefit from multiprocessor machines."

Hmm...

"In practice, this is no problem, because multiprocessor systems are rare, and portability is almost more important than highest concurrency."

(Written some time ago I presume)

You're referring to Next Generation Posix Threads developed by IBM though. I'm not sure but wasn't this abandoned in favour of simpler 1:1 threading in NPTL? But anyway, I needed something with more control than was on offer with something featuring a standard posix api.
 

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RRDTHREADS(1)							      rrdtool							     RRDTHREADS(1)

NAME
rrdthreads - Provisions for linking the RRD library to use in multi-threaded programs SYNOPSIS
Using librrd in multi-threaded programs requires some extra precautions, as the RRD library in its original form was not thread-safe at all. This document describes requirements and pitfalls on the way to use the multi-threaded version of librrd in your own programs. It also gives hints for future RRD development to keep the library thread-safe. Currently only some RRD operations are implemented in a thread-safe way. They all end in the usual ""_r"" suffix. DESCRIPTION
In order to use librrd in multi-threaded programs you must: o Link with librrd_th instead of librrd (use "-lrrd_th" when linking) o Use the ""_r"" functions instead of the normal API-functions o Do not use any at-style time specifications. Parsing of such time specifications is terribly non-thread-safe. o Never use non *"_r" functions unless it is explicitly documented that the function is tread-safe. o Every thread SHOULD call "rrd_get_context()" before its first call to any "librrd_th" function in order to set up thread specific data. This is not strictly required, but it is the only way to test if memory allocation can be done by this function. Otherwise the program may die with a SIGSEGV in a low-memory situation. o Always call "rrd_error_clear()" before any call to the library. Otherwise the call might fail due to some earlier error. NOTES FOR RRD CONTRIBUTORS Some precautions must be followed when developing RRD from now on: o Only use thread-safe functions in library code. Many often used libc functions aren't thread-safe. Take care in the following situations or when using the following library functions: o Direct calls to "strerror()" must be avoided: use "rrd_strerror()" instead, it provides a per-thread error message. o The "getpw*", "getgr*", "gethost*" function families (and some more "get*" functions) are not thread-safe: use the *"_r" variants o Time functions: "asctime", "ctime", "gmtime", "localtime": use *"_r" variants o "strtok": use "strtok_r" o "tmpnam": use "tmpnam_r" o Many others (lookup documentation) o A header file named rrd_is_thread_safe.h is provided that works with the GNU C-preprocessor to "poison" some of the most common non- thread-safe functions using the "#pragma GCC poison" directive. Just include this header in source files you want to keep thread-safe. o Do not introduce global variables! If you really, really have to use a global variable you may add a new field to the "rrd_context" structure and modify rrd_error.c, rrd_thread_safe.c and rrd_non_thread_safe.c o Do not use "getopt" or "getopt_long" in *"_r" (neither directly nor indirectly). "getopt" uses global variables and behaves badly in a multi-threaded application when called concurrently. Instead provide a *_r function taking all options as function parameters. You may provide argc and **argv arguments for variable length argument lists. See "rrd_update_r" as an example. o Do not use the "rrd_parsetime" function! It uses lots of global variables. You may use it in functions not designed to be thread-safe, like in functions wrapping the "_r" version of some operation (e.g., "rrd_create", but not in "rrd_create_r") CURRENTLY IMPLEMENTED THREAD SAFE FUNCTIONS Currently there exist thread-safe variants of "rrd_update", "rrd_create", "rrd_dump", "rrd_info", "rrd_last", and "rrd_fetch". AUTHOR
Peter Stamfest <peter@stamfest.at> 1.4.8 2013-05-23 RRDTHREADS(1)
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