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Solaris::MapDev 0.05a
Solaris::MapDev Perl module contains a map between instance numbers and device names. more>>
Solaris::MapDev Perl module contains a map between instance numbers and device names.
SYNOPSIS
use Solaris::MapDev qw(inst_to_dev dev_to_inst);
my $disk = inst_to_dev("sd0");
my $nfs = inst_to_dev("nfs123");
my $inst = dev_to_inst("c0t0d0s0");
mapdev_data_files(path_to_inst => "/copy/of/a/path_to_inst",
mnttab => "/copy/of/a/mnttab",
dev_ls => { "/dev/rdsk" => "ls-lR/of/dev_dsk",
"/dev/rmt" => "ls-lR/of/dev_rmt" });
my $tape = inst_to_dev("st1");
This module maps both ways between device instance names (e.g. sd0) and /dev entries (e.g. c0t0d0). Vanilla SCSI disks, SSA disks, A1000, A3000, A3500 and A5000 disks are all catered for, as are tape devices and NFS mounts.
FUNCTIONS
inst_to_dev($inst)
Return the device name name given the instance name
dev_to_inst($dev)
Return the instance name given the device name
get_inst_names
Return a sorted list of all the instance names
get_dev_names
Return a sorted list of all the device names
mapdev_data_files
This tells mapdev to use data held in copies of the real datafiles, rather than the current "live" files on the system. This is useful for example when examining explorer output. A list of key-value pairs is expected as the arguments. Valid keys-value pairs are:
path_to_inst => "/copy/of/a/path_to_inst",
A valid path_to_inst file. This is mandatory.
mnttab => "/copy/of/a/mnttab",
A valid /etc/mnttab file. This is optional - if not
specified, no information on NFS devices will be displayed.
dev_ls => { "/dir/path" => "/ls-lR/of/dir/path",
... });
A hash containing path/datafile pairs. The paths should
be one of /dev/rdsk, /dev/osa/rdsk, /dev/osa/dev/rdsk or
/dev/rmt. The datafiles should be the output of a "ls -l"
of the specified directory. A single file containing a
recursive "ls -Rl" of /dev is also acceptable.
mapdev_system_files
This tells mapdev to revert to using the current "live" datafiles on the system - see "mapdev_data_files()"
<<lessSYNOPSIS
use Solaris::MapDev qw(inst_to_dev dev_to_inst);
my $disk = inst_to_dev("sd0");
my $nfs = inst_to_dev("nfs123");
my $inst = dev_to_inst("c0t0d0s0");
mapdev_data_files(path_to_inst => "/copy/of/a/path_to_inst",
mnttab => "/copy/of/a/mnttab",
dev_ls => { "/dev/rdsk" => "ls-lR/of/dev_dsk",
"/dev/rmt" => "ls-lR/of/dev_rmt" });
my $tape = inst_to_dev("st1");
This module maps both ways between device instance names (e.g. sd0) and /dev entries (e.g. c0t0d0). Vanilla SCSI disks, SSA disks, A1000, A3000, A3500 and A5000 disks are all catered for, as are tape devices and NFS mounts.
FUNCTIONS
inst_to_dev($inst)
Return the device name name given the instance name
dev_to_inst($dev)
Return the instance name given the device name
get_inst_names
Return a sorted list of all the instance names
get_dev_names
Return a sorted list of all the device names
mapdev_data_files
This tells mapdev to use data held in copies of the real datafiles, rather than the current "live" files on the system. This is useful for example when examining explorer output. A list of key-value pairs is expected as the arguments. Valid keys-value pairs are:
path_to_inst => "/copy/of/a/path_to_inst",
A valid path_to_inst file. This is mandatory.
mnttab => "/copy/of/a/mnttab",
A valid /etc/mnttab file. This is optional - if not
specified, no information on NFS devices will be displayed.
dev_ls => { "/dir/path" => "/ls-lR/of/dir/path",
... });
A hash containing path/datafile pairs. The paths should
be one of /dev/rdsk, /dev/osa/rdsk, /dev/osa/dev/rdsk or
/dev/rmt. The datafiles should be the output of a "ls -l"
of the specified directory. A single file containing a
recursive "ls -Rl" of /dev is also acceptable.
mapdev_system_files
This tells mapdev to revert to using the current "live" datafiles on the system - see "mapdev_data_files()"
Download (0.024MB)
Added: 2007-06-13 License: GPL (GNU General Public License) Price:
865 downloads
Solaris packaging tools 1.2.1
PkgTools are a set of utilities which are used to aid in the building of native Solaris packages. more>>
PkgTools are a set of utilities which are used to aid in the building of native Solaris packages. There are five separate utilities which are used to build packages, prepare a chroot() environment to install software into prior to building a package, copy package control scripts into place, a tool to aid in the starting of new projects, and a tool to check that packages are installed correctly.
Currently there are four tools in this set:
build-pkg
This is used to actually build the Solaris package, calling chroot-install if required.
chroot-install
A utility which creates an environment suitable for calling chroot() on and allowing the user to install software into it.
proj-template
A utility which asks the user questions and then copies files and directories from a specified template directory and performs macro expansion on them. This is designed to aid in the initial setup of the home directory of a new project.
simple-proj
A very similar utility to proj-template. However it does not ask questions and only deals with the setting up of a simple InstallPackage. This is useful when dealing with 3rd party software which just needs to have a number of package control scripts put into the package.
check-pkg
A utility which can be used to check to see if packages are installed correctly. It can also be given a pathname to check on which packages said pathname is a part of.
It should be noted that simple-proj is really proj-template wearing a different hat.
<<lessCurrently there are four tools in this set:
build-pkg
This is used to actually build the Solaris package, calling chroot-install if required.
chroot-install
A utility which creates an environment suitable for calling chroot() on and allowing the user to install software into it.
proj-template
A utility which asks the user questions and then copies files and directories from a specified template directory and performs macro expansion on them. This is designed to aid in the initial setup of the home directory of a new project.
simple-proj
A very similar utility to proj-template. However it does not ask questions and only deals with the setting up of a simple InstallPackage. This is useful when dealing with 3rd party software which just needs to have a number of package control scripts put into the package.
check-pkg
A utility which can be used to check to see if packages are installed correctly. It can also be given a pathname to check on which packages said pathname is a part of.
It should be noted that simple-proj is really proj-template wearing a different hat.
Download (0.14MB)
Added: 2005-11-18 License: BSD License Price:
1435 downloads
Sun::Solaris::Task 1.2
Sun::Solaris::Task is a Perl interface to Tasks. more>>
Sun::Solaris::Task is a Perl interface to Tasks.
SYNOPSIS
use Sun::Solaris::Task qw(:ALL);
my $taskid = gettaskid();
This module provides wrappers for the gettaskid(2) and settaskid(2) system calls.
Constants
TASK_NORMAL, TASK_FINAL.
Functions
settaskid($project, $flags)
The $project parameter must be a valid project ID and the $flags parameter must be TASK_NORMAL or TASK_FINAL. The parameters are passed through directly to the underlying settaskid() system call. The new task ID is returned if the call succeeds. On failure -1 is returned.
gettaskid()
This function returns the numeric task ID of the calling process, or undef if the underlying gettaskid() system call is unsuccessful.
Exports
By default nothing is exported from this module. The following tags can be used to selectively import constants and functions defined in this module:
:SYSCALLS settaskid() and gettaskid()
:CONSTANTS TASK_NORMAL and TASK_FINAL
:ALL :SYSCALLS and :CONSTANTS
<<lessSYNOPSIS
use Sun::Solaris::Task qw(:ALL);
my $taskid = gettaskid();
This module provides wrappers for the gettaskid(2) and settaskid(2) system calls.
Constants
TASK_NORMAL, TASK_FINAL.
Functions
settaskid($project, $flags)
The $project parameter must be a valid project ID and the $flags parameter must be TASK_NORMAL or TASK_FINAL. The parameters are passed through directly to the underlying settaskid() system call. The new task ID is returned if the call succeeds. On failure -1 is returned.
gettaskid()
This function returns the numeric task ID of the calling process, or undef if the underlying gettaskid() system call is unsuccessful.
Exports
By default nothing is exported from this module. The following tags can be used to selectively import constants and functions defined in this module:
:SYSCALLS settaskid() and gettaskid()
:CONSTANTS TASK_NORMAL and TASK_FINAL
:ALL :SYSCALLS and :CONSTANTS
Download (0.003MB)
Added: 2007-04-13 License: Perl Artistic License Price:
930 downloads
Sun::Solaris::Ucred 1.1
Sun::Solaris::Ucred is a Perl interface to User Credentials. more>>
Sun::Solaris::Ucred is a Perl interface to User Credentials.
SYNOPSIS
use Sun::Solaris::Ucred qw(:ALL);
This module provides wrappers for the Ucred-related system and library calls.
Functions
ucred_get($pid)
This function returns the credential of the process specified by $pid, if the process exists and the calling process is permitted to obtain the credentials of that process.
getpeerucred($fd)
If $fd is a connected connection oriented TLI endpoint, a connected SOCK_STREAM or SOCK_SEQPKT socket, getpeerucred will return the user credential of the peer at the time the connection was established, if availble.
ucred_geteuid($ucred)
This function returns the effective uid of a user credential, if available.
ucred_getruid($ucred)
This function returns the real uid of a user credential, if available.
ucred_getsuid($ucred)
This function returns the saved uid of a user credential, if available.
ucred_getegid($ucred)
This function returns the effective group of a user credential, if available.
ucred_getrgid($ucred)
This function returns the real group of a user credential, if available.
ucred_getsgid($ucred)
This function returns the saved group of a user credential, if available.
ucred_getgroups($ucred)
This function returns the list of supplemental groups of a user credential, if available. An array of groups is returned in ARRAY context; the number of groups is returned in SCALAR context.
ucred_getprivset($ucred, $which)
This function returns the privilege set specified by $which of a user credential, if available.
ucred_getpflags($ucred, $flags)
This function returns the value of a specific process flag of a user credential, if available.
ucred_getpid($ucred)
This function returns the process id of a user credential, if available.
ucred_getzoneid($ucred)
This function returns the zone id of a user credential, if available.
Exports
By default nothing is exported from this module. The following tags can be used to selectively import constants and functions defined in this module:
:SYSCALLS ucred_get(), getpeerucred()
:LIBCALLS ucred_geteuid(), ucred_getruid(), ucred_getsuid(),
ucred_getegid(), ucred_getrgid(), ucred_getsgid(),
ucred_getgroups(), ucred_getprivset(), ucred_getpflags(),
ucred_getpid(), ucred_getzone()
:CONSTANTS
:VARIABLES %PRIVILEGES, %PRIVSETS
:ALL :SYSCALLS, :LIBCALLS, and :CONSTANTS
<<lessSYNOPSIS
use Sun::Solaris::Ucred qw(:ALL);
This module provides wrappers for the Ucred-related system and library calls.
Functions
ucred_get($pid)
This function returns the credential of the process specified by $pid, if the process exists and the calling process is permitted to obtain the credentials of that process.
getpeerucred($fd)
If $fd is a connected connection oriented TLI endpoint, a connected SOCK_STREAM or SOCK_SEQPKT socket, getpeerucred will return the user credential of the peer at the time the connection was established, if availble.
ucred_geteuid($ucred)
This function returns the effective uid of a user credential, if available.
ucred_getruid($ucred)
This function returns the real uid of a user credential, if available.
ucred_getsuid($ucred)
This function returns the saved uid of a user credential, if available.
ucred_getegid($ucred)
This function returns the effective group of a user credential, if available.
ucred_getrgid($ucred)
This function returns the real group of a user credential, if available.
ucred_getsgid($ucred)
This function returns the saved group of a user credential, if available.
ucred_getgroups($ucred)
This function returns the list of supplemental groups of a user credential, if available. An array of groups is returned in ARRAY context; the number of groups is returned in SCALAR context.
ucred_getprivset($ucred, $which)
This function returns the privilege set specified by $which of a user credential, if available.
ucred_getpflags($ucred, $flags)
This function returns the value of a specific process flag of a user credential, if available.
ucred_getpid($ucred)
This function returns the process id of a user credential, if available.
ucred_getzoneid($ucred)
This function returns the zone id of a user credential, if available.
Exports
By default nothing is exported from this module. The following tags can be used to selectively import constants and functions defined in this module:
:SYSCALLS ucred_get(), getpeerucred()
:LIBCALLS ucred_geteuid(), ucred_getruid(), ucred_getsuid(),
ucred_getegid(), ucred_getrgid(), ucred_getsgid(),
ucred_getgroups(), ucred_getprivset(), ucred_getpflags(),
ucred_getpid(), ucred_getzone()
:CONSTANTS
:VARIABLES %PRIVILEGES, %PRIVSETS
:ALL :SYSCALLS, :LIBCALLS, and :CONSTANTS
Download (0.005MB)
Added: 2007-04-13 License: Perl Artistic License Price:
924 downloads
Remote Secure Command System 1.0
Remote Secure Command System is a remote asynchronous and secure command system based on a file configuration. more>>
Remote Secure Command System project is a remote asynchronous and secure command system based on a file configuration.
A standalone server sends and receives commands through files, and a batch system launch ssh and scp commands.
<<lessA standalone server sends and receives commands through files, and a batch system launch ssh and scp commands.
Download (0.040MB)
Added: 2006-09-04 License: GPL (GNU General Public License) Price:
1146 downloads
Solaris::Kstat 0.05a
Solaris::Kstat is a Perl module to access Solaris Kstats from Perl. more>>
Solaris::Kstat is a Perl module to access Solaris Kstats from Perl.
SYNOPSIS
use Solaris::Kstat;
my $kstat = Solaris::Kstat->new();
my ($usr1, $sys1, $wio1, $idle1) =
@{$kstat->{cpu_stat}{0}{cpu_stat0}}{qw(user kernel wait idle)};
print("usr sys wio idlen");
while (1)
{
sleep 5;
if ($kstat->update()) { print("Configuration changedn"); }
my ($usr2, $sys2, $wio2, $idle2) =
@{$kstat->{cpu_stat}{0}{cpu_stat0}}{qw(user kernel wait idle)};
printf(" %.2d %.2d %.2d %.2dn",
($usr2 - $usr1) / 5, ($sys2 - $sys1) / 5,
($wio2 - $wio1) / 5, ($idle2 - $idle1) / 5);
$usr1 = $usr2; $sys1 = $sys2; $wio1 = $wio2; $idle1 = $idle2;
}
This module provides a tied hash interface to the Solaris kstats library. The kstats library allows you to get access to all the stats used by sar, iostat, vmstat etc, plus a lot of others that arent accessible through the usual utilities.
Solaris categorises statistics using a 3-part key - module, instance and name. For example, the root disk stats can be found under sd.0.sd0, and the cpu statistics can be found under cpu_stat.0.cpu_stat0, as in the above example. The method Solaris::Kstats-new()> creates a new 3-layer tree of perl hashes with exactly the same structure - i.e. the stats for disk 0 can be accessed as $ks-{sd}{0}{sd0}>. The bottom (4th) layer is a tied hash used to hold the individual statistics values for a particular system resource.
Creating a Solaris::Kstat object doesnt actually read all the possible statistics in, as this would be horribly slow and inefficient. Instead it creates a 3-layer structure as described above, and only reads in the individual statistics as you reference them. For example, accessing $ks-{sd}{0}{sd0}{reads} will read in all the statistics for sd0, including writes, bytes read/written, service times etc. Once you have accessed a bottom level statitics value, calling $ks->update() will automatically update all the individual values of any statistics that you have accessed.
Note that there are two values per bottom-level hash that can be read without causing the full set of statistics to be read from the kernel. These are "class" which is the kstat class of the statistics and "crtime" which is the time that the kstat was created. See kstat(3K) for full details of these fields.
<<lessSYNOPSIS
use Solaris::Kstat;
my $kstat = Solaris::Kstat->new();
my ($usr1, $sys1, $wio1, $idle1) =
@{$kstat->{cpu_stat}{0}{cpu_stat0}}{qw(user kernel wait idle)};
print("usr sys wio idlen");
while (1)
{
sleep 5;
if ($kstat->update()) { print("Configuration changedn"); }
my ($usr2, $sys2, $wio2, $idle2) =
@{$kstat->{cpu_stat}{0}{cpu_stat0}}{qw(user kernel wait idle)};
printf(" %.2d %.2d %.2d %.2dn",
($usr2 - $usr1) / 5, ($sys2 - $sys1) / 5,
($wio2 - $wio1) / 5, ($idle2 - $idle1) / 5);
$usr1 = $usr2; $sys1 = $sys2; $wio1 = $wio2; $idle1 = $idle2;
}
This module provides a tied hash interface to the Solaris kstats library. The kstats library allows you to get access to all the stats used by sar, iostat, vmstat etc, plus a lot of others that arent accessible through the usual utilities.
Solaris categorises statistics using a 3-part key - module, instance and name. For example, the root disk stats can be found under sd.0.sd0, and the cpu statistics can be found under cpu_stat.0.cpu_stat0, as in the above example. The method Solaris::Kstats-new()> creates a new 3-layer tree of perl hashes with exactly the same structure - i.e. the stats for disk 0 can be accessed as $ks-{sd}{0}{sd0}>. The bottom (4th) layer is a tied hash used to hold the individual statistics values for a particular system resource.
Creating a Solaris::Kstat object doesnt actually read all the possible statistics in, as this would be horribly slow and inefficient. Instead it creates a 3-layer structure as described above, and only reads in the individual statistics as you reference them. For example, accessing $ks-{sd}{0}{sd0}{reads} will read in all the statistics for sd0, including writes, bytes read/written, service times etc. Once you have accessed a bottom level statitics value, calling $ks->update() will automatically update all the individual values of any statistics that you have accessed.
Note that there are two values per bottom-level hash that can be read without causing the full set of statistics to be read from the kernel. These are "class" which is the kstat class of the statistics and "crtime" which is the time that the kstat was created. See kstat(3K) for full details of these fields.
Download (0.024MB)
Added: 2007-06-13 License: Perl Artistic License Price:
867 downloads
Commands::Guarded 0.01
Commands::Guarded Perl package provides better scripts through guarded commands. more>>
Commands::Guarded Perl package provides better scripts through guarded commands.
SYNOPSIS
use Commands::Guarded;
my $var = 0;
step something =>
ensure { $var == 1 }
using { $var = 1 }
; # $var is now 1
step nothing =>
ensure { $var == 1 }
using { $var = 2 } # bug!
; # $var is still 1 (good thing too)
my $brokeUnless5 =
step brokenUnless5 =>
ensure { $var == 5 }
using { $var = shift }
; # nothing happens yet
print "var: $varn"; # prints 1
$brokeUnless5->do(5);
print "now var: $varn"; # prints 5
step fail =>
ensure { $var == 3 }
using { $var = 2 }
; # Exception thrown here
This module implements a deterministic, rectifying variant on Dijkstras guarded commands. Each named step is passed two blocks: an ensure block that defines a test for a necessary and sufficient condition of the step, and a using block that will cause that condition to obtain.
If step is called in void context (i.e., is not assigned to anything or used as a value), the step is run immediately, as in this pseudocode:
unless (ENSURE) {
USING;
die unless ENSURE;
}
If step is called in scalar or array context, execution is deferred and instead a Commands::Guarded object is returned, which can be executed as above using the do method. If do is given arguments, they will be passed to the ensure block and (if necessary) the using block.
The interface to Commands::Guarded is thus a hybrid of exported subroutines (see SUBROUTINES below) and non-exported methods (see METHODS).
For a detailed discussion of the reason for this modules existence, see RATIONALE below.
<<lessSYNOPSIS
use Commands::Guarded;
my $var = 0;
step something =>
ensure { $var == 1 }
using { $var = 1 }
; # $var is now 1
step nothing =>
ensure { $var == 1 }
using { $var = 2 } # bug!
; # $var is still 1 (good thing too)
my $brokeUnless5 =
step brokenUnless5 =>
ensure { $var == 5 }
using { $var = shift }
; # nothing happens yet
print "var: $varn"; # prints 1
$brokeUnless5->do(5);
print "now var: $varn"; # prints 5
step fail =>
ensure { $var == 3 }
using { $var = 2 }
; # Exception thrown here
This module implements a deterministic, rectifying variant on Dijkstras guarded commands. Each named step is passed two blocks: an ensure block that defines a test for a necessary and sufficient condition of the step, and a using block that will cause that condition to obtain.
If step is called in void context (i.e., is not assigned to anything or used as a value), the step is run immediately, as in this pseudocode:
unless (ENSURE) {
USING;
die unless ENSURE;
}
If step is called in scalar or array context, execution is deferred and instead a Commands::Guarded object is returned, which can be executed as above using the do method. If do is given arguments, they will be passed to the ensure block and (if necessary) the using block.
The interface to Commands::Guarded is thus a hybrid of exported subroutines (see SUBROUTINES below) and non-exported methods (see METHODS).
For a detailed discussion of the reason for this modules existence, see RATIONALE below.
Download (0.012MB)
Added: 2007-05-23 License: Perl Artistic License Price:
885 downloads

Blender For Solaris 2.44
High quality 3D sofeware For Solaris more>> Aimed world-wide at media professionals and artists, Blender can be used to create 3D visualizations, stills as well as broadcast and cinema quality video, while the incorporation of a real-time 3D engine allows for the creation of 3D interactive content for stand-alone playback.
Originally developed by the company Not a Number (NaN), Blender now is continued as Free Software, with the source code available under the GNU GPL license. It now continues development by the Blender Foundation in the Netherlands.
Key Features:
For Linux; Solaris 2.8/Python 2.5
Fully integrated creation suite, offering a broad range of essential tools for the creation of 3D content, including modeling, uv-mapping, texturing, rigging, weighting, animation, particle and other simulation, scripting, rendering, compositing, post-production, and game creation;
Cross platform, with OpenGL uniform GUI on all platforms, ready to use for all versions of Windows (98, NT, 2000, XP), Linux, OS X, FreeBSD, Irix, Sun and numerous other operating systems;
High quality 3D architecture enabling fast and efficient creation work-flow;<<less
Download (16.7MB)
Added: 2009-04-12 License: Freeware Price: Free
194 downloads
Solaris::Disk::SVM::Graph 0.03
Solaris::Disk::SVM::Graph is a Perl module for graph your Solaris Volume Manager configurations. more>>
Solaris::Disk::SVM::Graph is a Perl module for graph your Solaris Volume Manager configurations.
SYNOPSIS
my $graph = Solaris::Disk::SVM::Graph->new(
sourcedir => path/to/dir, # path to SVM config files,
# see Solaris::Disk::SVM for details
fontname => fontname,
fontsize => fontsize,
);
$graph->output(); # output the whole SVM config to svm.png
# output whole configuration
$graph->output(
output => /path/to/image.svg,
# format deduced from file name, if format
# is not present
format => png, # or anything accepted by GraphViz,
# extension will be appended to output filename
);
# output one device
$graph->output( objects => d10 ); # d10 object with sub-devices to d10.png
# output many devices on same graph
$graph->output( objects => [ d10, d11 ] );
# output one device specifying output file name & format
$graph->output(
objects => d10
output => /path/to/image.svg,
format => png,
);
<<lessSYNOPSIS
my $graph = Solaris::Disk::SVM::Graph->new(
sourcedir => path/to/dir, # path to SVM config files,
# see Solaris::Disk::SVM for details
fontname => fontname,
fontsize => fontsize,
);
$graph->output(); # output the whole SVM config to svm.png
# output whole configuration
$graph->output(
output => /path/to/image.svg,
# format deduced from file name, if format
# is not present
format => png, # or anything accepted by GraphViz,
# extension will be appended to output filename
);
# output one device
$graph->output( objects => d10 ); # d10 object with sub-devices to d10.png
# output many devices on same graph
$graph->output( objects => [ d10, d11 ] );
# output one device specifying output file name & format
$graph->output(
objects => d10
output => /path/to/image.svg,
format => png,
);
Download (0.011MB)
Added: 2006-08-25 License: Perl Artistic License Price:
1156 downloads
Command Executor 0.2
Command Executor is an amaroK script which execute an internal command (e.g. stop playing) when reaches that entry. more>>
Command Executor is an amaroK script which execute an internal command (e.g. stop playing) when reaches that entry. Sometimes it is useful to execute some external commands (e.g. shutdown) when playing reached a certain place (e.g. end of album).
This script does the job. If amaroK starts playing a track from the "Shell Command" album, this script executes the comment tag of the track as a shell command.
You need some prepared audio files, with correctly filled tags. There are three .ogg files enclosed for stop playing, shutdown and hibernate the computer.
<<lessThis script does the job. If amaroK starts playing a track from the "Shell Command" album, this script executes the comment tag of the track as a shell command.
You need some prepared audio files, with correctly filled tags. There are three .ogg files enclosed for stop playing, shutdown and hibernate the computer.
Download (0.005MB)
Added: 2006-03-06 License: GPL (GNU General Public License) Price:
1330 downloads
SimMon 2.4
SimMon is a cross platform Java and Web based system monitoring tool. more>>
SimMon is a cross platform monitoring tool which runs on Solaris,Linux,Mac OS X and Windows based systems. In fact, it runs on all systems which are compatible with Java 1.4.x or higher.
Monitoring is done through the execution of existing monitoring scripts or even existing command line utilities and analysing their result (regex/returncode). The default monitoring scripts are Visual Basic Scripting based for Windows and Perl based for Solaris/Linux.
You can even add/develop your own monitoring scripts to the SimMon Agent System. Even SNMP (v1) devices can be monitored by the integrated SimMon SNMP Scheduler.
The agents run autonomous on the monitored systems which mean that there is no need of a permanent connection between the SimMon agent and the GUI or other components of the SimMon architecture.
Actions can be taken if defined in a monitoring task. This can range from communicating problems via mail or even by taking administrative actions like restarting a service or process.
Wizard dialogs are included to ease up the configuration of your SimMon environment. Almost the complete configuration of the SimMon takes place in XML so you can easily copy,alter configurations directly in the configuration files.
The free version of SimMon is not a demo version, but a fully functional version. The Pro version delivers more functionalities to the subscribed users and uses the same technology as the freeware version.
<<lessMonitoring is done through the execution of existing monitoring scripts or even existing command line utilities and analysing their result (regex/returncode). The default monitoring scripts are Visual Basic Scripting based for Windows and Perl based for Solaris/Linux.
You can even add/develop your own monitoring scripts to the SimMon Agent System. Even SNMP (v1) devices can be monitored by the integrated SimMon SNMP Scheduler.
The agents run autonomous on the monitored systems which mean that there is no need of a permanent connection between the SimMon agent and the GUI or other components of the SimMon architecture.
Actions can be taken if defined in a monitoring task. This can range from communicating problems via mail or even by taking administrative actions like restarting a service or process.
Wizard dialogs are included to ease up the configuration of your SimMon environment. Almost the complete configuration of the SimMon takes place in XML so you can easily copy,alter configurations directly in the configuration files.
The free version of SimMon is not a demo version, but a fully functional version. The Pro version delivers more functionalities to the subscribed users and uses the same technology as the freeware version.
Download (5.87MB)
Added: 2005-04-07 License: Freely Distributable Price:
916 downloads
Sun::Solaris::Privilege 1.2
Sun::Solaris::Privilege is a Perl interface to Privileges. more>>
Sun::Solaris::Privilege is a Perl interface to Privileges.
SYNOPSIS
use Sun::Solaris::Privilege qw(:ALL);
This module provides wrappers for the Privilege-related system and library calls. Also provided are constants from the various Privilege-related headers and dynamically generated constants for all the privileges and privilege sets.
Functions
getppriv($which)
This function returns the process privilege set specified by $which.
setppriv($op, $which, $set)
This function modified the privilege set specified by $which in the as specified by the $op and $set arguments. If $op is PRIV_ON the privileges in $set are added to the set specified; if $op is PRIV_OFF, the privileges in $set are removed from the set specified; if $op is PRIV_SET, the specified set is made equal to $set.
getpflags($flag)
Returns the value associated with process $flag or undef on error. Possible values for $flag are PRIV_AWARE and PRIV_DEBUG.
setppflags($flag, $val)
Sets the process flag $flag to $val.
priv_fillset()
This returns a new privilege set with all privileges set.
priv_emptyset()
This returns a new empty privilege set.
priv_isemptyset($set)
This function returns whether $set is empty or not.
priv_isfullset($set)
This function returns whether $set is full or not.
priv_isequalset($a, $b)
This function returns whether sets $a and $b are equal.
priv_issubset($a, $b)
This function returns whether set $a is a subset of $b.
priv_ismember($set, $priv)
This function returns whether $priv is a member of $set.
priv_ineffect($priv)
This function returned whether $priv is in the process effective set.
priv_intersect($a, $b)
This function returns a new privilege set which is the intersection of $a and $b
priv_union($a, $b)
This function returns a new privilege set which is the union of $a and $b
priv_inverse($a)
This function returns a new privilege set which is the inverse of $a.
priv_addset($set, $priv)
This functon adds the privilege $priv to $set.
priv_copyset($a)
This function returns a copy of the privilege set $a.
priv_delset($set, $priv)
This function remove the privilege $priv from $set.
<<lessSYNOPSIS
use Sun::Solaris::Privilege qw(:ALL);
This module provides wrappers for the Privilege-related system and library calls. Also provided are constants from the various Privilege-related headers and dynamically generated constants for all the privileges and privilege sets.
Functions
getppriv($which)
This function returns the process privilege set specified by $which.
setppriv($op, $which, $set)
This function modified the privilege set specified by $which in the as specified by the $op and $set arguments. If $op is PRIV_ON the privileges in $set are added to the set specified; if $op is PRIV_OFF, the privileges in $set are removed from the set specified; if $op is PRIV_SET, the specified set is made equal to $set.
getpflags($flag)
Returns the value associated with process $flag or undef on error. Possible values for $flag are PRIV_AWARE and PRIV_DEBUG.
setppflags($flag, $val)
Sets the process flag $flag to $val.
priv_fillset()
This returns a new privilege set with all privileges set.
priv_emptyset()
This returns a new empty privilege set.
priv_isemptyset($set)
This function returns whether $set is empty or not.
priv_isfullset($set)
This function returns whether $set is full or not.
priv_isequalset($a, $b)
This function returns whether sets $a and $b are equal.
priv_issubset($a, $b)
This function returns whether set $a is a subset of $b.
priv_ismember($set, $priv)
This function returns whether $priv is a member of $set.
priv_ineffect($priv)
This function returned whether $priv is in the process effective set.
priv_intersect($a, $b)
This function returns a new privilege set which is the intersection of $a and $b
priv_union($a, $b)
This function returns a new privilege set which is the union of $a and $b
priv_inverse($a)
This function returns a new privilege set which is the inverse of $a.
priv_addset($set, $priv)
This functon adds the privilege $priv to $set.
priv_copyset($a)
This function returns a copy of the privilege set $a.
priv_delset($set, $priv)
This function remove the privilege $priv from $set.
Download (0.006MB)
Added: 2007-04-13 License: Perl Artistic License Price:
924 downloads

BottomFeeder for Solaris 4.4
BottomFeeder is a news aggregator client written in VisualWorks Smalltalk more>> BottomFeeder is a news aggregator client (RSS and Atom) written in VisualWorks Smalltalk. BottomFeeder runs on Linux x86, (also FreeBSD), PowerPC Linux, Sparc Linux, Windows (98/ME/NT/2000/XP/CE 4), Mac OS8/9, Mac OS X (PPC, intel), AIX, SGI Irix, HP-UX, and Solaris (SPARC and x86).
What sets BottomFeeder apart?
Full support for CSS, including user defined CSS
View news in 3 pane or 2 pane modes
Subscribe to any RSS or Atom format in use
View items in a summary Newspaper View
Synchronize 2 or more BottomFeeders via HTTP or file import
Subscribe to feeds or feedlists
Supports HTTPS, HTTP Authentication, and HTTP Digest Authentication
Plugins for blogging, IRC, and MSN Messenger contacts
Easy to update or upgrade from within BottomFeeder
Save as many or as few feed items for as long as you want
Import or Export in common OPML format
Binary compatible on every platform. No need to recompile<<less
Download (16.7MB)
Added: 2009-04-28 License: Freeware Price: Free
178 downloads
POE::Component::ControlPort::Command 0.01
POE::Component::ControlPort::Command is a Perl module with register control port commands. more>>
POE::Component::ControlPort::Command is a Perl module with register control port commands.
SYNOPSIS
use POE::Component::ControlPort::Command;
POE::Component::ControlPort::Command->register(
name => test,
topic => sample_commands,
usage => test [ text to echo ]
help_text => test command. will echo back all parameters,
command => sub { my %args = @_; return join(" ", @{$args{args}}); }
);
This module has one command for public consumption. register() is the way that one registers commands for use in the control port. The arguments listed in the synopsis are all the available arguments and are all mandatory.
<<lessSYNOPSIS
use POE::Component::ControlPort::Command;
POE::Component::ControlPort::Command->register(
name => test,
topic => sample_commands,
usage => test [ text to echo ]
help_text => test command. will echo back all parameters,
command => sub { my %args = @_; return join(" ", @{$args{args}}); }
);
This module has one command for public consumption. register() is the way that one registers commands for use in the control port. The arguments listed in the synopsis are all the available arguments and are all mandatory.
Download (0.012MB)
Added: 2007-02-13 License: Perl Artistic License Price:
983 downloads
Bazaar Revision Control System 1.4.2
The Bazaar Revision Control System is a changeset-oriented revision control system. more>>
The Bazaar Revision Control System is a changeset-oriented revision control system based on Arch that makes it possible to retain previous changes to projects and coordinate development with other developers.
Its goal is to speed development of an upwards- compatible version of Arch.
Main features:
- All the transparent and robust storage features of GNU Arch.
- seamless upgrade path to [WWW] bazaar-ng
- direct support for URLs - one command can checkout or merge from remote locations.
- integrated GPG support - zero setup for most signed archive situations
- faster - checkout, most local operations, commits
- svn-like diff, switch, import, export, log commands
- Explicit tracking of conflicts, preventing accidental commits of files with conflicts
- single merge command that allows merging between arbitrary branches.
- Daily builds of the latest code (Downloads).
- fully compatible with tla - drop in and start using
- supports debian version numbers in branch names
- annotate support
- internationalised via gettext and [WWW] Rosetta.
- Python bindings.
Enhancements:
- More Solaris fixes.
- SSL support and ~/.authinfo support.
- Many UI tweaks.
- A number of bugfixes.
<<lessIts goal is to speed development of an upwards- compatible version of Arch.
Main features:
- All the transparent and robust storage features of GNU Arch.
- seamless upgrade path to [WWW] bazaar-ng
- direct support for URLs - one command can checkout or merge from remote locations.
- integrated GPG support - zero setup for most signed archive situations
- faster - checkout, most local operations, commits
- svn-like diff, switch, import, export, log commands
- Explicit tracking of conflicts, preventing accidental commits of files with conflicts
- single merge command that allows merging between arbitrary branches.
- Daily builds of the latest code (Downloads).
- fully compatible with tla - drop in and start using
- supports debian version numbers in branch names
- annotate support
- internationalised via gettext and [WWW] Rosetta.
- Python bindings.
Enhancements:
- More Solaris fixes.
- SSL support and ~/.authinfo support.
- Many UI tweaks.
- A number of bugfixes.
Download (0.40MB)
Added: 2005-07-04 License: GPL (GNU General Public License) Price:
1574 downloads
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