zoneminder/src/zm_analysis_thread.cpp

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#include "zm_analysis_thread.h"
AnalysisThread::AnalysisThread(Monitor *p_monitor) {
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monitor = p_monitor;
terminate = false;
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//sigemptyset(&block_set);
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}
AnalysisThread::~AnalysisThread() {
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Debug(2, "THREAD: deleteing");
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}
int AnalysisThread::run() {
useconds_t analysis_rate = monitor->GetAnalysisRate();
Debug(2, "after getanalysisrate rate is %u", analysis_rate);
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unsigned int analysis_update_delay = monitor->GetAnalysisUpdateDelay();
Debug(2, "after getanalysisUpdateDelay delay is %u", analysis_update_delay);
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time_t last_analysis_update_time, cur_time;
monitor->UpdateAdaptiveSkip();
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Debug(2, "after UpdateAdaptiveSkip");
last_analysis_update_time = time(0);
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Debug(2, "THREAD: Getting ref image");
monitor->get_ref_image();
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Debug(2, "THREAD: after Getting ref image");
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while ( !terminate ) {
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// Process the next image
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//sigprocmask(SIG_BLOCK, &block_set, 0);
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// Some periodic updates are required for variable capturing framerate
if ( analysis_update_delay ) {
cur_time = time( 0 );
if ( (unsigned int)( cur_time - last_analysis_update_time ) > analysis_update_delay ) {
analysis_rate = monitor->GetAnalysisRate();
monitor->UpdateAdaptiveSkip();
last_analysis_update_time = cur_time;
}
}
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Debug(2, "Analyzing");
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if ( !monitor->Analyse() ) {
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Debug(2, "Sleeping for %d", monitor->Active()?ZM_SAMPLE_RATE:ZM_SUSPENDED_RATE);
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usleep(10*(monitor->Active()?ZM_SAMPLE_RATE:ZM_SUSPENDED_RATE));
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} else if ( analysis_rate ) {
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Debug(2, "Sleeping for %d", analysis_rate);
usleep(analysis_rate);
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} else {
Debug(2, "Not Sleeping");
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}
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//sigprocmask(SIG_UNBLOCK, &block_set, 0);
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} // end while ! terminate
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return 0;
} // end in AnalysisThread::run()