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310 lines
8.3 KiB
310 lines
8.3 KiB
15 years ago
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/*
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KSysGuard, the KDE System Guard
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Copyright (c) 1999 - 2001 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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*/
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#include <config.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "Command.h"
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#include "ccont.h"
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#include "ksysguardd.h"
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#include "lmsensors.h"
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#ifdef HAVE_SENSORS_SENSORS_H
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#include <sensors/sensors.h>
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#ifndef SENSORS_API_VERSION
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#define SENSORS_API_VERSION 0x000
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#endif
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#ifndef SENSORS_CHIP_NAME_BUS_PCI
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#define SENSORS_CHIP_NAME_BUS_PCI -5
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#endif
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#ifndef SENSORS_CHIP_NAME_BUS_ISA
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#define SENSORS_CHIP_NAME_BUS_ISA -1
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#endif
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#define BUFFER_SIZE_LMSEN 300
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typedef struct
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{
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char* fullName;
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const sensors_chip_name* scn;
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#if SENSORS_API_VERSION & 0x400
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const sensors_feature *sf;
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const sensors_subfeature *sfd;
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#else
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const sensors_feature_data* sfd;
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#endif
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} LMSENSOR;
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static CONTAINER LmSensors;
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static int LmSensorsOk = -1;
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static int sensorCmp( void* s1, void* s2 )
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{
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return strcmp( ((LMSENSOR*)s1)->fullName, ((LMSENSOR*)s2)->fullName );
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}
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static LMSENSOR* findMatchingSensor( const char* name )
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{
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INDEX idx;
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LMSENSOR key;
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LMSENSOR* s;
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if(name == NULL || name[0] == '\0') return 0;
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key.fullName = strdup( name );
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int end = strlen(key.fullName)-1;
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if(key.fullName[end] == '?')
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key.fullName[end] = '\0';
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if ( ( idx = search_ctnr( LmSensors, sensorCmp, &key ) ) < 0 ) {
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free( key.fullName );
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return 0;
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}
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free( key.fullName );
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s = get_ctnr( LmSensors, idx );
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return s;
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}
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static const char *chipName(const sensors_chip_name *chip) {
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static char buffer[256];
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#if SENSORS_API_VERSION & 0x400
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sensors_snprintf_chip_name(buffer, sizeof(buffer), chip);
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#else /* SENSORS_API_VERSION & 0x400 */
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if (chip->bus == SENSORS_CHIP_NAME_BUS_ISA)
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snprintf (buffer, sizeof(buffer), "%s-isa-%04x", chip->prefix, chip->addr);
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else if (chip->bus == SENSORS_CHIP_NAME_BUS_PCI)
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snprintf (buffer, sizeof(buffer), "%s-pci-%04x", chip->prefix, chip->addr);
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else
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snprintf (buffer, sizeof(buffer), "%s-i2c-%d-%02x", chip->prefix, chip->bus, chip->addr);
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#endif /* SENSORS_API_VERSION & 0x400 */
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return buffer;
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}
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#if SENSORS_API_VERSION & 0x400
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void initLmSensors( struct SensorModul* sm )
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{
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const sensors_chip_name* scn;
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int nr = 0;
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if ( sensors_init( NULL ) ) {
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LmSensorsOk = -1;
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return;
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}
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LmSensors = new_ctnr();
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while ( ( scn = sensors_get_detected_chips( NULL, &nr ) ) != NULL ) {
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int nr1 = 0;
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const sensors_feature* sf;
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while ( ( sf = sensors_get_features( scn, &nr1 ) ) != 0 ) {
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const sensors_subfeature *ssubf;
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LMSENSOR *p;
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char *s, *label;
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switch( sf->type )
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{
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case SENSORS_FEATURE_IN:
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ssubf = sensors_get_subfeature( scn, sf,
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SENSORS_SUBFEATURE_IN_INPUT );
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break;
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case SENSORS_FEATURE_FAN:
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ssubf = sensors_get_subfeature( scn, sf,
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SENSORS_SUBFEATURE_FAN_INPUT );
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break;
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case SENSORS_FEATURE_TEMP:
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ssubf = sensors_get_subfeature( scn, sf,
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SENSORS_SUBFEATURE_TEMP_INPUT );
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break;
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default:
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ssubf = NULL;
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}
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if ( !ssubf )
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continue;
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label = sensors_get_label( scn, sf );
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p = (LMSENSOR*)malloc( sizeof( LMSENSOR ) );
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p->fullName = (char*)malloc( strlen( "lmsensors/" ) +
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strlen( scn->prefix ) + 1 +
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strlen( label ) + 1 );
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snprintf( p->fullName, BUFFER_SIZE_LMSEN, "lmsensors/%s/%s", scn->prefix, label );
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/* Make sure that name contains only proper characters. */
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for ( s = p->fullName; *s; s++ )
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if ( *s == ' ' )
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*s = '_';
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p->scn = scn;
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p->sf = sf;
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p->sfd = ssubf;
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/* Note a name collision should never happen with the lm_sensors-3x code,
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but it does in the case of k8temp, when there are 2 identical labeled
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sensors per CPU. This are really 2 distinct sensors measuring the
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same thing, but fullName must be unique so we just drop the second
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sensor */
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if ( search_ctnr( LmSensors, sensorCmp, p ) < 0 ) {
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push_ctnr( LmSensors, p );
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registerMonitor( p->fullName, "float", printLmSensor, printLmSensorInfo, sm );
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} else {
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free( p->fullName );
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free( p );
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}
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free( label );
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}
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}
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bsort_ctnr( LmSensors, sensorCmp );
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}
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#else /* SENSORS_API_VERSION & 0x400 */
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void initLmSensors( struct SensorModul* sm )
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{
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const sensors_chip_name* scn;
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char buffer[BUFFER_SIZE_LMSEN];
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int nr = 0;
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FILE* input;
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if ( ( input = fopen( "/etc/sensors.conf", "r" ) ) == NULL ) {
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LmSensorsOk = -1;
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return;
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}
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if ( sensors_init( input ) ) {
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LmSensorsOk = -1;
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fclose( input );
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return;
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}
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fclose( input );
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LmSensors = new_ctnr();
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while ( ( scn = sensors_get_detected_chips( &nr ) ) != NULL ) {
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int nr1, nr2;
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const sensors_feature_data* sfd;
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nr1 = nr2 = 0;
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while ( ( sfd = sensors_get_all_features( *scn, &nr1, &nr2 ) ) != 0 ) {
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if ( sfd->mapping == SENSORS_NO_MAPPING && sfd->mode & SENSORS_MODE_R /* readable feature */) {
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LMSENSOR* p;
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char* label=NULL;
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if(sensors_get_label( *scn, sfd->number, &label ) != 0)
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continue; /*error*/
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else
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free( label );
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if(sensors_get_ignored( *scn, sfd->number) != 1 )
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continue; /* 1 for not ignored, 0 for ignore, <0 for error */
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double result;
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if(sensors_get_feature( *scn, sfd->number, &result) != 0 )
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continue; /* Make sure this feature actually works. 0 for success, <0 for fail */
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p = (LMSENSOR*)malloc( sizeof( LMSENSOR ) );
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snprintf( buffer, BUFFER_SIZE_LMSEN, "lmsensors/%s/%s", chipName(scn), sfd->name );
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p->fullName = strndup(buffer, BUFFER_SIZE_LMSEN);
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p->scn = scn;
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p->sfd = sfd;
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if ( search_ctnr( LmSensors, sensorCmp, p ) < 0 ) {
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push_ctnr( LmSensors, p );
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registerMonitor( p->fullName, "float", printLmSensor, printLmSensorInfo, sm );
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} else {
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free( p->fullName );
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free( p );
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}
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}
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}
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}
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bsort_ctnr( LmSensors, sensorCmp );
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}
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#endif /* SENSORS_API_VERSION & 0x400 */
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void exitLmSensors( void )
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{
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destr_ctnr( LmSensors, free );
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}
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void printLmSensor( const char* cmd )
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{
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double value;
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LMSENSOR* s;
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if ( ( s = findMatchingSensor( cmd ) ) == 0 ) { /* should never happen */
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fprintf( CurrentClient, "0\n" );
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return;
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}
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#if SENSORS_API_VERSION & 0x400
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sensors_get_value( s->scn, s->sfd->number, &value );
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#else
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sensors_get_feature( *(s->scn), s->sfd->number, &value );
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#endif
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fprintf( CurrentClient, "%f\n", value );
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}
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void printLmSensorInfo( const char* cmd )
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{
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LMSENSOR* s;
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if ( ( s = findMatchingSensor( cmd ) ) == 0 ) { /* should never happen */
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fprintf( CurrentClient, "0\n" );
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return;
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}
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/* TODO: print real name here */
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char *label;
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#if SENSORS_API_VERSION & 0x400
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label = sensors_get_label( s->scn, s->sf );
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if (label == NULL) {
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#else
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if(sensors_get_label( *s->scn, s->sfd->number, &label ) != 0) { /*error*/
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#endif
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fprintf( CurrentClient, "0\n" );
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return;
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}
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if( strncmp(s->sfd->name, "temp", sizeof("temp")-1) == 0)
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fprintf( CurrentClient, "%s\t0\t0\t°C\n", label );
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else if( strncmp(s->sfd->name, "fan", sizeof("fan")-1) == 0)
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fprintf( CurrentClient, "%s\t0\t0\trpm\n", label );
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else
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fprintf( CurrentClient, "%s\t0\t0\tV\n", label ); /* For everything else, say it's in volts. */
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#if SENSORS_API_VERSION & 0x400
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free(label);
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#endif
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}
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#else /* HAVE_SENSORS_SENSORS_H */
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/* dummy version for systems that have no lmsensors support */
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void initLmSensors( struct SensorModul* sm )
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{
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(void)sm;
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}
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void exitLmSensors( void )
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{
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}
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#endif
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