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210 lines
4.6 KiB
210 lines
4.6 KiB
/*
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KSysGuard, the KDE System Guard
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Copyright (c) 1999, 2000 Chris Schlaeger <cs@kde.org>
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This program is free software; you can redistribute it and/or
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modify it under the terms of version 2 of the GNU General Public
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License as published by the Free Software Foundation.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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KSysGuard is currently maintained by Chris Schlaeger <cs@kde.org>.
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Please do not commit any changes without consulting me first. Thanks!
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*/
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#ifndef KSG_SENSORCLIENT_H
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#define KSG_SENSORCLIENT_H
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#include <tqptrlist.h>
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#include <tqstring.h>
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namespace KSGRD {
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/**
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Every object that should act as a client to a sensor must inherit from
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this class. A pointer to the client object is passed as SensorClient*
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to the SensorAgent. When the requested information is available or a
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problem occurred one of the member functions is called.
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*/
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class SensorClient
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{
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public:
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SensorClient() { }
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virtual ~SensorClient() { }
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/**
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This function is called whenever the information form the sensor has
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been received by the sensor agent. This function must be reimplemented
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by the sensor client to receive and process this information.
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*/
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virtual void answerReceived( int, const TQString& ) { }
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/**
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In case of an unexpected fatal problem with the sensor the sensor
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agent will call this function to notify the client about it.
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*/
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virtual void sensorLost( int ) { }
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};
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/**
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Every object that has a SensorClient as a child must inherit from
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this class to support the advanced update interval settings.
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*/
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class SensorBoard
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{
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public:
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SensorBoard() { }
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virtual ~SensorBoard() { }
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void updateInterval( int interval ) { mUpdateInterval = interval; }
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int updateInterval() { return mUpdateInterval; }
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private:
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int mUpdateInterval;
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};
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/**
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The following classes are utility classes that provide a
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convenient way to retrieve pieces of information from the sensor
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answers. For each type of answer there is a separate class.
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*/
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class SensorTokenizer
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{
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public:
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SensorTokenizer( const TQString &info, TQChar separator )
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{
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mTokens = TQStringList::split( separator, info );
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}
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~SensorTokenizer() { }
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const TQString& operator[]( unsigned idx )
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{
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return mTokens[ idx ];
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}
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uint count()
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{
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return mTokens.count();
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}
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private:
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TQStringList mTokens;
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};
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/**
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An integer info contains 4 fields seperated by TABS, a description
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(name), the minimum and the maximum values and the unit.
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e.g. Swap Memory 0 133885952 KB
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*/
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class SensorIntegerInfo : public SensorTokenizer
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{
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public:
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SensorIntegerInfo( const TQString &info )
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: SensorTokenizer( info, '\t' ) { }
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~SensorIntegerInfo() { }
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const TQString &name()
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{
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return (*this)[ 0 ];
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}
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long min()
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{
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return (*this)[ 1 ].toLong();
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}
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long max()
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{
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return (*this)[ 2 ].toLong();
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}
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const TQString &unit()
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{
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return (*this)[ 3 ];
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}
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};
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/**
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An float info contains 4 fields seperated by TABS, a description
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(name), the minimum and the maximum values and the unit.
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e.g. CPU Voltage 0.0 5.0 V
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*/
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class SensorFloatInfo : public SensorTokenizer
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{
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public:
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SensorFloatInfo( const TQString &info )
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: SensorTokenizer( info, '\t' ) { }
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~SensorFloatInfo() { }
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const TQString &name()
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{
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return (*this)[ 0 ];
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}
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double min()
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{
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return (*this)[ 1 ].toDouble();
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}
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double max()
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{
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return (*this)[ 2 ].toDouble();
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}
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const TQString &unit()
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{
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return (*this)[ 3 ];
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}
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};
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/**
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A PS line consists of information about a process. Each piece of
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information is seperated by a TAB. The first 4 fields are process name,
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PID, PPID and real user ID. Those fields are mandatory.
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*/
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class SensorPSLine : public SensorTokenizer
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{
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public:
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SensorPSLine( const TQString &line )
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: SensorTokenizer( line, '\t' ) { }
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~SensorPSLine() { }
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const TQString& name()
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{
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return (*this)[ 0 ];
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}
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long pid()
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{
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return (*this)[ 1 ].toLong();
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}
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long ppid()
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{
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return (*this)[ 2 ].toLong();
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}
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long uid()
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{
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return (*this)[ 3 ].toLong();
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}
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};
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}
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#endif
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