}
double fwd=compute_power(transmitter->fwd);
+ double rev=compute_power(transmitter->rev);
-//g_print("transmitter: meter_update: fwd:%f->%f rev:%f ex_fwd=%d alex_fwd=%d alex_rev=%d\n",transmitter->fwd,fwd,transmitter->rev,exciter_power,alex_forward_power,alex_reverse_power);
+//g_print("transmitter: meter_update: fwd:%f->%f rev:%f->%f ex_fwd=%d alex_fwd=%d alex_rev=%d\n",transmitter->fwd,fwd,transmitter->rev,rev,exciter_power,alex_forward_power,alex_reverse_power);
if(!duplex) {
- meter_update(active_receiver,POWER,/*transmitter->*/fwd,transmitter->rev,transmitter->exciter,transmitter->alc);
+ meter_update(active_receiver,POWER,/*transmitter->*/fwd,/*transmitter->*/rev,transmitter->exciter,transmitter->alc);
}
return TRUE; // keep going