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@ -70,6 +70,24 @@ extern "C" {
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// Compile-time configuration
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#include "config.h"
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// Profiling stuff
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//#define CPUPROFILING
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//#define STATELESSPROFILING
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#include <time.h>
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timespec diff(timespec start, timespec end)
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{
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timespec temp;
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if ((end.tv_nsec-start.tv_nsec)<0) {
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temp.tv_sec = end.tv_sec-start.tv_sec-1;
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temp.tv_nsec = 1000000000+end.tv_nsec-start.tv_nsec;
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} else {
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temp.tv_sec = end.tv_sec-start.tv_sec;
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temp.tv_nsec = end.tv_nsec-start.tv_nsec;
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}
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return temp;
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}
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// BEGIN BLOCK
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// Copied from include/linux/genhd.h
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#define GENHD_FL_REMOVABLE 1
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@ -199,6 +217,10 @@ TDEHardwareDevices::TDEHardwareDevices() {
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m_deviceWatchTimer = new TQTimer(this);
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connect( m_deviceWatchTimer, SIGNAL(timeout()), this, SLOT(processStatelessDevices()) );
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// Special case for battery polling (longer delay, 5 seconds)
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m_batteryWatchTimer = new TQTimer(this);
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connect( m_batteryWatchTimer, SIGNAL(timeout()), this, SLOT(processBatteryDevices()) );
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// Update internal device information
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queryHardwareInformation();
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}
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@ -207,6 +229,7 @@ TDEHardwareDevices::TDEHardwareDevices() {
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TDEHardwareDevices::~TDEHardwareDevices() {
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// Stop device scanning
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m_deviceWatchTimer->stop();
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m_batteryWatchTimer->stop();
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// [FIXME 0.01]
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#if 0
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@ -243,6 +266,7 @@ void TDEHardwareDevices::setTriggerlessHardwareUpdatesEnabled(bool enable) {
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if (nodezerocpufreq.exists()) {
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m_cpuWatchTimer->start( 500, FALSE ); // 0.5 second repeating timer
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}
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m_batteryWatchTimer->stop(); // Battery devices are included in stateless devices
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m_deviceWatchTimer->start( 1000, FALSE ); // 1 second repeating timer
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}
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else {
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@ -251,6 +275,20 @@ void TDEHardwareDevices::setTriggerlessHardwareUpdatesEnabled(bool enable) {
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}
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}
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void TDEHardwareDevices::setBatteryUpdatesEnabled(bool enable) {
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if (enable) {
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TQDir nodezerocpufreq("/sys/devices/system/cpu/cpu0/cpufreq");
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if (nodezerocpufreq.exists()) {
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m_cpuWatchTimer->start( 500, FALSE ); // 0.5 second repeating timer
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}
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m_batteryWatchTimer->start( 5000, FALSE ); // 5 second repeating timer
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}
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else {
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m_cpuWatchTimer->stop();
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m_batteryWatchTimer->stop();
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}
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}
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void TDEHardwareDevices::rescanDeviceInformation(TDEGenericDevice* hwdevice) {
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rescanDeviceInformation(hwdevice, true);
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}
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@ -270,6 +308,7 @@ TDEGenericDevice* TDEHardwareDevices::findBySystemPath(TQString syspath) {
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syspath += "/";
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}
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TDEGenericDevice *hwdevice;
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// We can't use m_deviceList directly as m_deviceList can only have one iterator active against it at any given time
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TDEGenericHardwareList devList = listAllPhysicalDevices();
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for ( hwdevice = devList.first(); hwdevice; hwdevice = devList.next() ) {
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@ -281,6 +320,30 @@ TDEGenericDevice* TDEHardwareDevices::findBySystemPath(TQString syspath) {
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return 0;
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}
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TDECPUDevice* TDEHardwareDevices::findCPUBySystemPath(TQString syspath, bool inCache=true) {
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TDECPUDevice* cdevice;
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// Look for the device in the cache first
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if(inCache && !m_cpuByPathCache.isEmpty()) {
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cdevice = m_cpuByPathCache.find(syspath);
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if(cdevice) {
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return cdevice;
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}
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}
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// If the CPU was not found in cache, we need to parse the entire device list to get it.
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cdevice = dynamic_cast<TDECPUDevice*>(findBySystemPath(syspath));
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if(cdevice) {
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if(inCache) {
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m_cpuByPathCache.insert(syspath, cdevice); // Add the device to the cache
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}
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return cdevice;
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}
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return 0;
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}
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TDEGenericDevice* TDEHardwareDevices::findByUniqueID(TQString uid) {
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TDEGenericDevice *hwdevice;
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// We can't use m_deviceList directly as m_deviceList can only have one iterator active against it at any given time
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@ -410,17 +473,29 @@ void TDEHardwareDevices::processModifiedCPUs() {
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// Detect what changed between the old cpu information and the new information,
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// and emit appropriate events
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#ifdef CPUPROFILING
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timespec time1, time2, time3;
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time1);
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time3 = time1;
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printf("TDEHardwareDevices::processModifiedCPUs() : begin at '%u'\n", time1.tv_nsec);
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#endif
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// Read new CPU information table
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m_cpuInfo.clear();
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TQFile cpufile( "/proc/cpuinfo" );
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if ( cpufile.open( IO_ReadOnly ) ) {
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TQTextStream stream( &cpufile );
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while ( !stream.atEnd() ) {
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m_cpuInfo.append(stream.readLine());
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}
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// Using read() instead of readLine() inside a loop is 4 times faster !
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m_cpuInfo = TQStringList::split('\n', stream.read(), true);
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cpufile.close();
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}
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#ifdef CPUPROFILING
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
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printf("TDEHardwareDevices::processModifiedCPUs() : checkpoint1 at %u [%u]\n", time2.tv_nsec, diff(time1,time2).tv_nsec);
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time1 = time2;
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#endif
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// Ensure "processor" is the first entry in each block and determine which cpuinfo type is in use
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bool cpuinfo_format_x86 = true;
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bool cpuinfo_format_arm = false;
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@ -431,39 +506,43 @@ void TDEHardwareDevices::processModifiedCPUs() {
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TQStringList::Iterator blockBegin = m_cpuInfo.begin();
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for (TQStringList::Iterator cpuit1 = m_cpuInfo.begin(); cpuit1 != m_cpuInfo.end(); ++cpuit1) {
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curline1 = *cpuit1;
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curline1 = curline1.stripWhiteSpace();
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if (!(*blockBegin).startsWith("processor")) {
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bool found = false;
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TQStringList::Iterator cpuit2;
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for (cpuit2 = blockBegin; cpuit2 != m_cpuInfo.end(); ++cpuit2) {
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curline2 = *cpuit2;
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curline2 = curline2.stripWhiteSpace();
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if (curline2.startsWith("processor")) {
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found = true;
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break;
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}
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else if (curline2 == "") {
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else if (curline2 == NULL || curline2 == "") {
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break;
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}
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}
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if (found) {
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m_cpuInfo.insert(blockBegin, (*cpuit2));
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}
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else {
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else if(blockNumber == 0) {
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m_cpuInfo.insert(blockBegin, "processor : 0");
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}
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}
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if (curline1 == "") {
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if (curline1 == NULL || curline1 == "") {
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blockNumber++;
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blockBegin = cpuit1;
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blockBegin++;
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}
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if (curline1.startsWith("Processor")) {
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else if (curline1.startsWith("Processor")) {
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cpuinfo_format_x86 = false;
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cpuinfo_format_arm = true;
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}
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}
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#ifdef CPUPROFILING
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
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printf("TDEHardwareDevices::processModifiedCPUs() : checkpoint2 at %u [%u]\n", time2.tv_nsec, diff(time1,time2).tv_nsec);
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time1 = time2;
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#endif
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// Parse CPU information table
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TDECPUDevice *cdevice;
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cdevice = 0;
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@ -482,44 +561,45 @@ void TDEHardwareDevices::processModifiedCPUs() {
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for (cpuit = m_cpuInfo.begin(); cpuit != m_cpuInfo.end(); ++cpuit) {
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curline = *cpuit;
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if (curline.startsWith("processor")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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curline.remove(0, curline.find(":")+2);
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processorNumber = curline.toInt();
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if (!cdevice) cdevice = dynamic_cast<TDECPUDevice*>(findBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber)));
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if (!cdevice) {
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cdevice = dynamic_cast<TDECPUDevice*>(findCPUBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber)));
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}
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if (cdevice) {
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if (cdevice->coreNumber() != processorNumber) modified = true;
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cdevice->internalSetCoreNumber(processorNumber);
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if (cdevice->coreNumber() != processorNumber) {
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modified = true;
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cdevice->internalSetCoreNumber(processorNumber);
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}
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}
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}
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if (curline.startsWith("model name")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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if (cdevice) {
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if (cdevice->name() != curline) modified = true;
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else if (cdevice && curline.startsWith("model name")) {
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curline.remove(0, curline.find(":")+2);
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if (cdevice->name() != curline) {
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modified = true;
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cdevice->internalSetName(curline);
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}
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}
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if (curline.startsWith("cpu MHz")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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if (cdevice) {
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if (cdevice->frequency() != curline.toDouble()) modified = true;
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else if (cdevice && curline.startsWith("cpu MHz")) {
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curline.remove(0, curline.find(":")+2);
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if (cdevice->frequency() != curline.toDouble()) {
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modified = true;
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cdevice->internalSetFrequency(curline.toDouble());
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have_frequency = true;
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}
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have_frequency = true;
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}
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if (curline.startsWith("vendor_id")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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if (cdevice) {
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if (cdevice->vendorName() != curline) modified = true;
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else if (cdevice && curline.startsWith("vendor_id")) {
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curline.remove(0, curline.find(":")+2);
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if (cdevice->vendorName() != curline) {
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modified = true;
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cdevice->internalSetVendorName(curline);
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if (cdevice->vendorEncoded() != curline) modified = true;
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}
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if (cdevice->vendorEncoded() != curline) {
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modified = true;
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cdevice->internalSetVendorEncoded(curline);
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}
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}
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curline = curline.stripWhiteSpace();
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if (curline == "") {
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else if (curline == NULL || curline == "") {
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cdevice = 0;
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}
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}
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@ -535,29 +615,25 @@ void TDEHardwareDevices::processModifiedCPUs() {
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for (cpuit = m_cpuInfo.begin(); cpuit != m_cpuInfo.end(); ++cpuit) {
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curline = *cpuit;
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if (curline.startsWith("Processor")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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curline.remove(0, curline.find(":")+2);
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modelName = curline;
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}
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if (curline.startsWith("Hardware")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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else if (curline.startsWith("Hardware")) {
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curline.remove(0, curline.find(":")+2);
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vendorName = curline;
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}
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if (curline.startsWith("Serial")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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else if (curline.startsWith("Serial")) {
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curline.remove(0, curline.find(":")+2);
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serialNumber = curline;
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}
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}
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for (TQStringList::Iterator cpuit = m_cpuInfo.begin(); cpuit != m_cpuInfo.end(); ++cpuit) {
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curline = *cpuit;
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if (curline.startsWith("processor")) {
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curline.remove(0, curline.find(":")+1);
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curline = curline.stripWhiteSpace();
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curline.remove(0, curline.find(":")+2);
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processorNumber = curline.toInt();
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if (!cdevice) {
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cdevice = dynamic_cast<TDECPUDevice*>(findBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber)));
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cdevice = dynamic_cast<TDECPUDevice*>(findCPUBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber)));
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if (cdevice) {
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// Set up CPU information structures
|
|
|
|
|
if (cdevice->coreNumber() != processorNumber) modified = true;
|
|
|
|
@ -573,8 +649,7 @@ void TDEHardwareDevices::processModifiedCPUs() {
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|
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|
}
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|
|
|
|
}
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|
|
|
|
}
|
|
|
|
|
curline = curline.stripWhiteSpace();
|
|
|
|
|
if (curline == "") {
|
|
|
|
|
if (curline == NULL || curline == "") {
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|
|
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|
cdevice = 0;
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|
|
|
|
}
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|
|
|
|
}
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|
@ -582,9 +657,17 @@ void TDEHardwareDevices::processModifiedCPUs() {
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processorCount = processorNumber+1;
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|
#ifdef CPUPROFILING
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|
clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
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|
printf("TDEHardwareDevices::processModifiedCPUs() : checkpoint3 at %u [%u]\n", time2.tv_nsec, diff(time1,time2).tv_nsec);
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|
time1 = time2;
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#endif
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TDECPUDevice* firstCPU;
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// Read in other information from cpufreq, if available
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|
for (processorNumber=0; processorNumber<processorCount; processorNumber++) {
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cdevice = dynamic_cast<TDECPUDevice*>(findBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber)));
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cdevice = dynamic_cast<TDECPUDevice*>(findCPUBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber)));
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TQDir cpufreq_dir(TQString("/sys/devices/system/cpu/cpu%1/cpufreq").arg(processorNumber));
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TQString scalinggovernor;
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|
TQString scalingdriver;
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|
@ -595,107 +678,131 @@ void TDEHardwareDevices::processModifiedCPUs() {
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TQStringList frequencylist;
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|
TQStringList governorlist;
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|
if (cpufreq_dir.exists()) {
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TQString nodename = cpufreq_dir.path();
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|
nodename.append("/scaling_governor");
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TQFile scalinggovernorfile(nodename);
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if (scalinggovernorfile.open(IO_ReadOnly)) {
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TQTextStream stream( &scalinggovernorfile );
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|
scalinggovernor = stream.readLine();
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|
scalinggovernorfile.close();
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|
}
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|
nodename = cpufreq_dir.path();
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|
nodename.append("/scaling_driver");
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|
TQFile scalingdriverfile(nodename);
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|
if (scalingdriverfile.open(IO_ReadOnly)) {
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|
TQTextStream stream( &scalingdriverfile );
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|
scalingdriver = stream.readLine();
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|
scalingdriverfile.close();
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|
}
|
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|
|
nodename = cpufreq_dir.path();
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|
|
nodename.append("/cpuinfo_min_freq");
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|
|
TQFile minfrequencyfile(nodename);
|
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|
|
if (minfrequencyfile.open(IO_ReadOnly)) {
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|
TQTextStream stream( &minfrequencyfile );
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|
|
minfrequency = stream.readLine().toDouble()/1000.0;
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|
|
minfrequencyfile.close();
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|
|
}
|
|
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|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/cpuinfo_max_freq");
|
|
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|
|
TQFile maxfrequencyfile(nodename);
|
|
|
|
|
if (maxfrequencyfile.open(IO_ReadOnly)) {
|
|
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|
|
TQTextStream stream( &maxfrequencyfile );
|
|
|
|
|
maxfrequency = stream.readLine().toDouble()/1000.0;
|
|
|
|
|
maxfrequencyfile.close();
|
|
|
|
|
TQString nodename;
|
|
|
|
|
if(processorNumber == 0) {
|
|
|
|
|
// Remember the first CPU options so that we can reuse it later.
|
|
|
|
|
firstCPU = cdevice;
|
|
|
|
|
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/scaling_governor");
|
|
|
|
|
TQFile scalinggovernorfile(nodename);
|
|
|
|
|
if (scalinggovernorfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &scalinggovernorfile );
|
|
|
|
|
scalinggovernor = stream.read();
|
|
|
|
|
scalinggovernorfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/scaling_driver");
|
|
|
|
|
TQFile scalingdriverfile(nodename);
|
|
|
|
|
if (scalingdriverfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &scalingdriverfile );
|
|
|
|
|
scalingdriver = stream.read();
|
|
|
|
|
scalingdriverfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/cpuinfo_min_freq");
|
|
|
|
|
TQFile minfrequencyfile(nodename);
|
|
|
|
|
if (minfrequencyfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &minfrequencyfile );
|
|
|
|
|
minfrequency = stream.read().toDouble()/1000.0;
|
|
|
|
|
minfrequencyfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/cpuinfo_max_freq");
|
|
|
|
|
TQFile maxfrequencyfile(nodename);
|
|
|
|
|
if (maxfrequencyfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &maxfrequencyfile );
|
|
|
|
|
maxfrequency = stream.read().toDouble()/1000.0;
|
|
|
|
|
maxfrequencyfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/cpuinfo_transition_latency");
|
|
|
|
|
TQFile trlatencyfile(nodename);
|
|
|
|
|
if (trlatencyfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &trlatencyfile );
|
|
|
|
|
trlatency = stream.read().toDouble()/1000.0;
|
|
|
|
|
trlatencyfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/scaling_available_frequencies");
|
|
|
|
|
TQFile availfreqsfile(nodename);
|
|
|
|
|
if (availfreqsfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &availfreqsfile );
|
|
|
|
|
frequencylist = TQStringList::split(" ", stream.read());
|
|
|
|
|
availfreqsfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/scaling_available_governors");
|
|
|
|
|
TQFile availgvrnsfile(nodename);
|
|
|
|
|
if (availgvrnsfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &availgvrnsfile );
|
|
|
|
|
governorlist = TQStringList::split(" ", stream.read());
|
|
|
|
|
availgvrnsfile.close();
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/cpuinfo_transition_latency");
|
|
|
|
|
TQFile trlatencyfile(nodename);
|
|
|
|
|
if (trlatencyfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &trlatencyfile );
|
|
|
|
|
trlatency = stream.readLine().toDouble()/1000.0;
|
|
|
|
|
trlatencyfile.close();
|
|
|
|
|
// Other CPU should have the same values as the first one. Simply copy them.
|
|
|
|
|
else {
|
|
|
|
|
scalinggovernor = firstCPU->governor();
|
|
|
|
|
scalingdriver = firstCPU->scalingDriver();
|
|
|
|
|
minfrequency = firstCPU->minFrequency();
|
|
|
|
|
maxfrequency = firstCPU->maxFrequency();
|
|
|
|
|
trlatency = firstCPU->transitionLatency();
|
|
|
|
|
frequencylist = firstCPU->availableFrequencies();
|
|
|
|
|
governorlist = firstCPU->availableGovernors();
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
// The following data are different on each CPU
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/affected_cpus");
|
|
|
|
|
TQFile tiedcpusfile(nodename);
|
|
|
|
|
if (tiedcpusfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &tiedcpusfile );
|
|
|
|
|
affectedcpulist = TQStringList::split(" ", stream.readLine());
|
|
|
|
|
affectedcpulist = TQStringList::split(" ", stream.read());
|
|
|
|
|
tiedcpusfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/scaling_available_frequencies");
|
|
|
|
|
TQFile availfreqsfile(nodename);
|
|
|
|
|
if (availfreqsfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &availfreqsfile );
|
|
|
|
|
frequencylist = TQStringList::split(" ", stream.readLine());
|
|
|
|
|
availfreqsfile.close();
|
|
|
|
|
}
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/scaling_available_governors");
|
|
|
|
|
TQFile availgvrnsfile(nodename);
|
|
|
|
|
if (availgvrnsfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &availgvrnsfile );
|
|
|
|
|
governorlist = TQStringList::split(" ", stream.readLine());
|
|
|
|
|
availgvrnsfile.close();
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
// We may already have the CPU Mhz information in '/proc/cpuinfo'
|
|
|
|
|
if (!have_frequency) {
|
|
|
|
|
nodename = cpufreq_dir.path();
|
|
|
|
|
nodename.append("/cpuinfo_cur_freq");
|
|
|
|
|
TQFile cpufreqfile(nodename);
|
|
|
|
|
if (cpufreqfile.open(IO_ReadOnly)) {
|
|
|
|
|
TQTextStream stream( &cpufreqfile );
|
|
|
|
|
if (cdevice) cdevice->internalSetFrequency(stream.readLine().toDouble()/1000.0);
|
|
|
|
|
if (cdevice) {
|
|
|
|
|
cdevice->internalSetFrequency(stream.read().toDouble()/1000.0);
|
|
|
|
|
}
|
|
|
|
|
cpufreqfile.close();
|
|
|
|
|
have_frequency = true;
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
bool frequencyFound;
|
|
|
|
|
bool minfrequencyFound = false;
|
|
|
|
|
bool maxfrequencyFound = false;
|
|
|
|
|
TQStringList::Iterator freqit;
|
|
|
|
|
frequencyFound = false;
|
|
|
|
|
for ( freqit = frequencylist.begin(); freqit != frequencylist.end(); ++freqit ) {
|
|
|
|
|
double thisfrequency = (*freqit).toDouble()/1000.0;
|
|
|
|
|
if (thisfrequency == minfrequency) {
|
|
|
|
|
frequencyFound = true;
|
|
|
|
|
minfrequencyFound = true;
|
|
|
|
|
}
|
|
|
|
|
if (thisfrequency == maxfrequency) {
|
|
|
|
|
maxfrequencyFound = true;
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
}
|
|
|
|
|
if (!frequencyFound) {
|
|
|
|
|
if (!minfrequencyFound) {
|
|
|
|
|
int minFrequencyInt = (minfrequency*1000.0);
|
|
|
|
|
frequencylist.prepend(TQString("%1").arg(minFrequencyInt));
|
|
|
|
|
}
|
|
|
|
|
frequencyFound = false;
|
|
|
|
|
for ( freqit = frequencylist.begin(); freqit != frequencylist.end(); ++freqit ) {
|
|
|
|
|
double thisfrequency = (*freqit).toDouble()/1000.0;
|
|
|
|
|
if (thisfrequency == maxfrequency) {
|
|
|
|
|
frequencyFound = true;
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
if (!frequencyFound) {
|
|
|
|
|
if (!maxfrequencyFound) {
|
|
|
|
|
int maxfrequencyInt = (maxfrequency*1000.0);
|
|
|
|
|
frequencylist.append(TQString("%1").arg(maxfrequencyInt));
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#ifdef CPUPROFILING
|
|
|
|
|
clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
|
|
|
|
|
printf("TDEHardwareDevices::processModifiedCPUs() : checkpoint3.%u at %u [%u]\n", processorNumber, time2.tv_nsec, diff(time1,time2).tv_nsec);
|
|
|
|
|
time1 = time2;
|
|
|
|
|
#endif
|
|
|
|
|
}
|
|
|
|
|
else {
|
|
|
|
|
if (have_frequency) {
|
|
|
|
@ -708,33 +815,61 @@ void TDEHardwareDevices::processModifiedCPUs() {
|
|
|
|
|
|
|
|
|
|
// Update CPU information structure
|
|
|
|
|
if (cdevice) {
|
|
|
|
|
if (cdevice->governor() != scalinggovernor) modified = true;
|
|
|
|
|
cdevice->internalSetGovernor(scalinggovernor);
|
|
|
|
|
if (cdevice->scalingDriver() != scalingdriver) modified = true;
|
|
|
|
|
cdevice->internalSetScalingDriver(scalingdriver);
|
|
|
|
|
if (cdevice->minFrequency() != minfrequency) modified = true;
|
|
|
|
|
cdevice->internalSetMinFrequency(minfrequency);
|
|
|
|
|
if (cdevice->maxFrequency() != maxfrequency) modified = true;
|
|
|
|
|
cdevice->internalSetMaxFrequency(maxfrequency);
|
|
|
|
|
if (cdevice->transitionLatency() != trlatency) modified = true;
|
|
|
|
|
cdevice->internalSetTransitionLatency(trlatency);
|
|
|
|
|
if (cdevice->dependentProcessors().join(" ") != affectedcpulist.join(" ")) modified = true;
|
|
|
|
|
cdevice->internalSetDependentProcessors(affectedcpulist);
|
|
|
|
|
if (cdevice->availableFrequencies().join(" ") != frequencylist.join(" ")) modified = true;
|
|
|
|
|
cdevice->internalSetAvailableFrequencies(frequencylist);
|
|
|
|
|
if (cdevice->availableGovernors().join(" ") != governorlist.join(" ")) modified = true;
|
|
|
|
|
cdevice->internalSetAvailableGovernors(governorlist);
|
|
|
|
|
if (cdevice->governor() != scalinggovernor) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetGovernor(scalinggovernor);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->scalingDriver() != scalingdriver) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetScalingDriver(scalingdriver);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->minFrequency() != minfrequency) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetMinFrequency(minfrequency);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->maxFrequency() != maxfrequency) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetMaxFrequency(maxfrequency);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->transitionLatency() != trlatency) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetTransitionLatency(trlatency);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->dependentProcessors().join(" ") != affectedcpulist.join(" ")) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetDependentProcessors(affectedcpulist);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->availableFrequencies().join(" ") != frequencylist.join(" ")) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetAvailableFrequencies(frequencylist);
|
|
|
|
|
}
|
|
|
|
|
if (cdevice->availableGovernors().join(" ") != governorlist.join(" ")) {
|
|
|
|
|
modified = true;
|
|
|
|
|
cdevice->internalSetAvailableGovernors(governorlist);
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#ifdef CPUPROFILING
|
|
|
|
|
clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
|
|
|
|
|
printf("TDEHardwareDevices::processModifiedCPUs() : checkpoint4 at %u [%u]\n", time2.tv_nsec, diff(time1,time2).tv_nsec);
|
|
|
|
|
time1 = time2;
|
|
|
|
|
#endif
|
|
|
|
|
|
|
|
|
|
if (modified) {
|
|
|
|
|
for (processorNumber=0; processorNumber<processorCount; processorNumber++) {
|
|
|
|
|
TDEGenericDevice* hwdevice = findBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber));
|
|
|
|
|
TDEGenericDevice* hwdevice = findCPUBySystemPath(TQString("/sys/devices/system/cpu/cpu%1").arg(processorNumber));
|
|
|
|
|
// Signal new information available
|
|
|
|
|
emit hardwareUpdated(hwdevice);
|
|
|
|
|
emit hardwareEvent(TDEHardwareEvent::HardwareUpdated, hwdevice->uniqueID());
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
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#ifdef CPUPROFILING
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
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printf("TDEHardwareDevices::processModifiedCPUs() : end at %u [%u]\n", time2.tv_nsec, diff(time1,time2).tv_nsec);
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printf("TDEHardwareDevices::processModifiedCPUs() : total time: %u\n", diff(time3,time2).tv_nsec);
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#endif
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}
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void TDEHardwareDevices::processStatelessDevices() {
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@ -742,6 +877,13 @@ void TDEHardwareDevices::processStatelessDevices() {
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// So far, network cards and sensors need to be polled
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TDEGenericDevice *hwdevice;
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#ifdef STATELESSPROFILING
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timespec time1, time2, time3;
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time1);
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printf("TDEHardwareDevices::processStatelessDevices() : begin at '%u'\n", time1.tv_nsec);
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time3 = time1;
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#endif
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// We can't use m_deviceList directly as m_deviceList can only have one iterator active against it at any given time
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TDEGenericHardwareList devList = listAllPhysicalDevices();
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for ( hwdevice = devList.first(); hwdevice; hwdevice = devList.next() ) {
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@ -749,10 +891,36 @@ void TDEHardwareDevices::processStatelessDevices() {
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rescanDeviceInformation(hwdevice, false);
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emit hardwareUpdated(hwdevice);
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emit hardwareEvent(TDEHardwareEvent::HardwareUpdated, hwdevice->uniqueID());
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#ifdef STATELESSPROFILING
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
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printf("TDEHardwareDevices::processStatelessDevices() : '%s' finished at %u [%u]\n", (hwdevice->name()).ascii(), time2.tv_nsec, diff(time1,time2).tv_nsec);
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time1 = time2;
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#endif
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}
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}
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#ifdef STATELESSPROFILING
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &time2);
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printf("TDEHardwareDevices::processStatelessDevices() : end at '%u'\n", time2.tv_nsec);
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printf("TDEHardwareDevices::processStatelessDevices() : took '%u'\n", diff(time3,time2).tv_nsec);
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#endif
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}
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void TDEHardwareDevices::processBatteryDevices() {
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TDEGenericDevice *hwdevice;
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// We can't use m_deviceList directly as m_deviceList can only have one iterator active against it at any given time
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TDEGenericHardwareList devList = listAllPhysicalDevices();
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for ( hwdevice = devList.first(); hwdevice; hwdevice = devList.next() ) {
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if (hwdevice->type() == TDEGenericDeviceType::Battery) {
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rescanDeviceInformation(hwdevice, false);
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emit hardwareUpdated(hwdevice);
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emit hardwareEvent(TDEHardwareEvent::HardwareUpdated, hwdevice->uniqueID());
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}
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}
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}
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void TDEHardwareDevices::processEventDeviceKeyPressed(unsigned int keycode, TDEEventDevice* edevice) {
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emit eventDeviceKeyPressed(keycode, edevice);
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}
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@ -2556,13 +2724,13 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
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if (nodename == "address") {
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ndevice->internalSetMacAddress(line);
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}
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if (nodename == "carrier") {
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else if (nodename == "carrier") {
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ndevice->internalSetCarrierPresent(line.toInt());
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}
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if (nodename == "dormant") {
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else if (nodename == "dormant") {
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ndevice->internalSetDormant(line.toInt());
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}
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if (nodename == "operstate") {
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else if (nodename == "operstate") {
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TQString friendlyState = line.lower();
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friendlyState[0] = friendlyState[0].upper();
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ndevice->internalSetState(friendlyState);
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@ -2594,7 +2762,7 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
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if (family == AF_INET) {
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ndevice->internalSetIpV4Address(address);
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}
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if (family == AF_INET6) {
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else if (family == AF_INET6) {
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address.truncate(address.findRev("%"));
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|
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ndevice->internalSetIpV6Address(address);
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}
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@ -2605,7 +2773,7 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
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|
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if (family == AF_INET) {
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|
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ndevice->internalSetIpV4Netmask(address);
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}
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if (family == AF_INET6) {
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else if (family == AF_INET6) {
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address.truncate(address.findRev("%"));
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|
|
ndevice->internalSetIpV6Netmask(address);
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}
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@ -2616,7 +2784,7 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
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|
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if (family == AF_INET) {
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|
|
ndevice->internalSetIpV4Broadcast(address);
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|
}
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|
if (family == AF_INET6) {
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else if (family == AF_INET6) {
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|
|
address.truncate(address.findRev("%"));
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|
|
ndevice->internalSetIpV6Broadcast(address);
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}
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|
@ -2627,7 +2795,7 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
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|
|
if (family == AF_INET) {
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|
|
ndevice->internalSetIpV4Destination(address);
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|
}
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|
|
if (family == AF_INET6) {
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|
else if (family == AF_INET6) {
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|
|
address.truncate(address.findRev("%"));
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|
|
|
ndevice->internalSetIpV6Destination(address);
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|
|
|
}
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|
|
@ -2658,13 +2826,13 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
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|
|
if (nodename == "rx_bytes") {
|
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|
|
|
ndevice->internalSetRxBytes(line.toDouble());
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|
|
|
}
|
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|
|
|
if (nodename == "tx_bytes") {
|
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|
|
|
else if (nodename == "tx_bytes") {
|
|
|
|
|
ndevice->internalSetTxBytes(line.toDouble());
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|
|
|
}
|
|
|
|
|
if (nodename == "rx_packets") {
|
|
|
|
|
else if (nodename == "rx_packets") {
|
|
|
|
|
ndevice->internalSetRxPackets(line.toDouble());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "tx_packets") {
|
|
|
|
|
else if (nodename == "tx_packets") {
|
|
|
|
|
ndevice->internalSetTxPackets(line.toDouble());
|
|
|
|
|
}
|
|
|
|
|
file.close();
|
|
|
|
@ -2705,19 +2873,19 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
|
|
|
|
|
if (sensornodetype == "label") {
|
|
|
|
|
sensors[sensornodename].label = line;
|
|
|
|
|
}
|
|
|
|
|
if (sensornodetype == "input") {
|
|
|
|
|
else if (sensornodetype == "input") {
|
|
|
|
|
sensors[sensornodename].current = lineValue;
|
|
|
|
|
}
|
|
|
|
|
if (sensornodetype == "min") {
|
|
|
|
|
else if (sensornodetype == "min") {
|
|
|
|
|
sensors[sensornodename].minimum = lineValue;
|
|
|
|
|
}
|
|
|
|
|
if (sensornodetype == "max") {
|
|
|
|
|
else if (sensornodetype == "max") {
|
|
|
|
|
sensors[sensornodename].maximum = lineValue;
|
|
|
|
|
}
|
|
|
|
|
if (sensornodetype == "warn") {
|
|
|
|
|
else if (sensornodetype == "warn") {
|
|
|
|
|
sensors[sensornodename].warning = lineValue;
|
|
|
|
|
}
|
|
|
|
|
if (sensornodetype == "crit") {
|
|
|
|
|
else if (sensornodetype == "crit") {
|
|
|
|
|
sensors[sensornodename].critical = lineValue;
|
|
|
|
|
}
|
|
|
|
|
file.close();
|
|
|
|
@ -2752,40 +2920,40 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
|
|
|
|
|
if (nodename == "alarm") {
|
|
|
|
|
bdevice->internalSetAlarmEnergy(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "charge_full" || nodename == "energy_full") {
|
|
|
|
|
else if (nodename == "charge_full" || nodename == "energy_full") {
|
|
|
|
|
bdevice->internalSetMaximumEnergy(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "charge_full_design" || nodename == "energy_full_design") {
|
|
|
|
|
else if (nodename == "charge_full_design" || nodename == "energy_full_design") {
|
|
|
|
|
bdevice->internalSetMaximumDesignEnergy(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "charge_now" || nodename == "energy_now") {
|
|
|
|
|
else if (nodename == "charge_now" || nodename == "energy_now") {
|
|
|
|
|
bdevice->internalSetEnergy(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "manufacturer") {
|
|
|
|
|
else if (nodename == "manufacturer") {
|
|
|
|
|
bdevice->internalSetVendorName(line.stripWhiteSpace());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "model_name") {
|
|
|
|
|
else if (nodename == "model_name") {
|
|
|
|
|
bdevice->internalSetVendorModel(line.stripWhiteSpace());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "power_now" || nodename == "current_now") {
|
|
|
|
|
else if (nodename == "power_now" || nodename == "current_now") {
|
|
|
|
|
bdevice->internalSetDischargeRate(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "present") {
|
|
|
|
|
else if (nodename == "present") {
|
|
|
|
|
bdevice->internalSetInstalled(line.toInt());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "serial_number") {
|
|
|
|
|
else if (nodename == "serial_number") {
|
|
|
|
|
bdevice->internalSetSerialNumber(line.stripWhiteSpace());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "status") {
|
|
|
|
|
else if (nodename == "status") {
|
|
|
|
|
bdevice->internalSetStatus(line);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "technology") {
|
|
|
|
|
else if (nodename == "technology") {
|
|
|
|
|
bdevice->internalSetTechnology(line);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "voltage_min_design") {
|
|
|
|
|
else if (nodename == "voltage_min_design") {
|
|
|
|
|
bdevice->internalSetMinimumVoltage(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "voltage_now") {
|
|
|
|
|
else if (nodename == "voltage_now") {
|
|
|
|
|
bdevice->internalSetVoltage(line.toDouble()/1000000.0);
|
|
|
|
|
}
|
|
|
|
|
file.close();
|
|
|
|
@ -2823,13 +2991,13 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
|
|
|
|
|
if (nodename == "manufacturer") {
|
|
|
|
|
pdevice->internalSetVendorName(line.stripWhiteSpace());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "model_name") {
|
|
|
|
|
else if (nodename == "model_name") {
|
|
|
|
|
pdevice->internalSetVendorModel(line.stripWhiteSpace());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "online") {
|
|
|
|
|
else if (nodename == "online") {
|
|
|
|
|
pdevice->internalSetOnline(line.toInt());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "serial_number") {
|
|
|
|
|
else if (nodename == "serial_number") {
|
|
|
|
|
pdevice->internalSetSerialNumber(line.stripWhiteSpace());
|
|
|
|
|
}
|
|
|
|
|
file.close();
|
|
|
|
@ -2868,10 +3036,10 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
|
|
|
|
|
}
|
|
|
|
|
bdevice->internalSetPowerLevel(pl);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "max_brightness") {
|
|
|
|
|
else if (nodename == "max_brightness") {
|
|
|
|
|
bdevice->internalSetMaximumRawBrightness(line.toInt());
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "actual_brightness") {
|
|
|
|
|
else if (nodename == "actual_brightness") {
|
|
|
|
|
bdevice->internalSetCurrentRawBrightness(line.toInt());
|
|
|
|
|
}
|
|
|
|
|
file.close();
|
|
|
|
@ -2901,10 +3069,10 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
|
|
|
|
|
if (nodename == "status") {
|
|
|
|
|
mdevice->internalSetConnected(line.lower() == "connected");
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "enabled") {
|
|
|
|
|
else if (nodename == "enabled") {
|
|
|
|
|
mdevice->internalSetEnabled(line.lower() == "enabled");
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "modes") {
|
|
|
|
|
else if (nodename == "modes") {
|
|
|
|
|
TQStringList resinfo;
|
|
|
|
|
TQStringList resolutionsStringList = line.upper();
|
|
|
|
|
while ((!stream.atEnd()) && (!line.isNull())) {
|
|
|
|
@ -2921,7 +3089,7 @@ void TDEHardwareDevices::updateExistingDeviceInformation(TDEGenericDevice* exist
|
|
|
|
|
}
|
|
|
|
|
mdevice->internalSetResolutions(resolutions);
|
|
|
|
|
}
|
|
|
|
|
if (nodename == "dpms") {
|
|
|
|
|
else if (nodename == "dpms") {
|
|
|
|
|
TDEDisplayPowerLevel::TDEDisplayPowerLevel pl = TDEDisplayPowerLevel::On;
|
|
|
|
|
if (line == "On") {
|
|
|
|
|
pl = TDEDisplayPowerLevel::On;
|
|
|
|
|