mirror of https://github.com/xzeldon/htop.git
Drop always true condition
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ac2b07eddd
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059810ca65
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@ -17,59 +17,57 @@ void Battery_getData(double* level, ACPresence* isOnAC) {
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return;
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}
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if(power_sources != NULL) {
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CFArrayRef list = IOPSCopyPowerSourcesList(power_sources);
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CFDictionaryRef battery = NULL;
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int len;
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CFArrayRef list = IOPSCopyPowerSourcesList(power_sources);
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CFDictionaryRef battery = NULL;
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int len;
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if(NULL == list) {
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CFRelease(power_sources);
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if(NULL == list) {
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CFRelease(power_sources);
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return;
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}
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return;
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}
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len = CFArrayGetCount(list);
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len = CFArrayGetCount(list);
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/* Get the battery */
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for(int i = 0; i < len && battery == NULL; ++i) {
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CFDictionaryRef candidate = IOPSGetPowerSourceDescription(power_sources,
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CFArrayGetValueAtIndex(list, i)); /* GET rule */
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CFStringRef type;
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/* Get the battery */
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for(int i = 0; i < len && battery == NULL; ++i) {
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CFDictionaryRef candidate = IOPSGetPowerSourceDescription(power_sources,
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CFArrayGetValueAtIndex(list, i)); /* GET rule */
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CFStringRef type;
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if(NULL != candidate) {
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type = (CFStringRef) CFDictionaryGetValue(candidate,
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CFSTR(kIOPSTransportTypeKey)); /* GET rule */
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if(NULL != candidate) {
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type = (CFStringRef) CFDictionaryGetValue(candidate,
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CFSTR(kIOPSTransportTypeKey)); /* GET rule */
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if(kCFCompareEqualTo == CFStringCompare(type, CFSTR(kIOPSInternalType), 0)) {
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CFRetain(candidate);
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battery = candidate;
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}
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if(kCFCompareEqualTo == CFStringCompare(type, CFSTR(kIOPSInternalType), 0)) {
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CFRetain(candidate);
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battery = candidate;
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}
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}
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if(NULL != battery) {
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/* Determine the AC state */
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CFStringRef power_state = CFDictionaryGetValue(battery, CFSTR(kIOPSPowerSourceStateKey));
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*isOnAC = (kCFCompareEqualTo == CFStringCompare(power_state, CFSTR(kIOPSACPowerValue), 0))
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? AC_PRESENT
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: AC_ABSENT;
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/* Get the percentage remaining */
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double current;
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double max;
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CFNumberGetValue(CFDictionaryGetValue(battery, CFSTR(kIOPSCurrentCapacityKey)),
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kCFNumberDoubleType, ¤t);
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CFNumberGetValue(CFDictionaryGetValue(battery, CFSTR(kIOPSMaxCapacityKey)),
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kCFNumberDoubleType, &max);
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*level = (current * 100.0) / max;
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CFRelease(battery);
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}
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CFRelease(list);
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CFRelease(power_sources);
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}
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if(NULL != battery) {
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/* Determine the AC state */
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CFStringRef power_state = CFDictionaryGetValue(battery, CFSTR(kIOPSPowerSourceStateKey));
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*isOnAC = (kCFCompareEqualTo == CFStringCompare(power_state, CFSTR(kIOPSACPowerValue), 0))
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? AC_PRESENT
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: AC_ABSENT;
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/* Get the percentage remaining */
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double current;
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double max;
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CFNumberGetValue(CFDictionaryGetValue(battery, CFSTR(kIOPSCurrentCapacityKey)),
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kCFNumberDoubleType, ¤t);
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CFNumberGetValue(CFDictionaryGetValue(battery, CFSTR(kIOPSMaxCapacityKey)),
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kCFNumberDoubleType, &max);
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*level = (current * 100.0) / max;
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CFRelease(battery);
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}
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CFRelease(list);
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CFRelease(power_sources);
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}
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