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29e78a7ae3
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@ -683,8 +683,8 @@ void ObjectFactory::createReactionWheelComponents(LinuxLibgpioIF* gpioComIF,
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RwDefinitions::MAX_REPLY_SIZE, spi::RW_MODE, spi::RW_SPEED,
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&rwSpiCallback::spiCallback, nullptr);
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auto* rwHandler = new RwHandler(rwIds[idx], objects::SPI_RW_COM_IF, rwCookies[idx], gpioComIF,
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rwGpioIds[idx]);
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rwCookies[idx]->setCallbackArgs(rws[idx]);
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rwGpioIds[idx], idx);
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rwCookies[idx]->setCallbackArgs(rwHandler);
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#if OBSW_TEST_RW == 1
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rws[idx]->setStartUpImmediately();
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#endif
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@ -633,80 +633,80 @@ ReturnValue_t pst::pstTcsAndAcs(FixedTimeslotTaskIF *thisSequence, AcsPstCfg cfg
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}
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if (cfg.scheduleRws) {
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_WRITE);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_WRITE);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_READ);
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thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_READ);
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thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_WRITE);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_WRITE);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_READ);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_READ);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_WRITE);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_WRITE);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_READ);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_READ);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::PERFORM_OPERATION);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_WRITE);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_WRITE);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_WRITE);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_WRITE);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::SEND_READ);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::SEND_READ);
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//
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// thisSequence->addSlot(objects::RW1, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW2, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW3, length * 0, DeviceHandlerIF::GET_READ);
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// thisSequence->addSlot(objects::RW4, length * 0, DeviceHandlerIF::GET_READ);
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}
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if (cfg.scheduleRws) {
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@ -183,22 +183,20 @@ ReturnValue_t ImtqHandler::buildCommandFromCommand(DeviceCommandId_t deviceComma
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return DeviceHandlerIF::INVALID_COMMAND_PARAMETER;
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}
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ReturnValue_t result;
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// Commands override anything which was set in the software
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if (commandData != nullptr) {
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dipoleSet.setValidityBufferGeneration(false);
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result =
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dipoleSet.deSerialize(&commandData, &commandDataLen, SerializeIF::Endianness::NETWORK);
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dipoleSet.setValidityBufferGeneration(true);
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if (result != returnvalue::OK) {
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return result;
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}
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result = dipoleSet.commit();
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if (result != returnvalue::OK) {
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sif::error << "ImtqHandler::buildCommandFromCommand: commit failed" << std::endl;
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}
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} else {
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{
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// Read set dipole values from local pool
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PoolReadGuard pg(&dipoleSet);
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// Commands override anything which was set in the software
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if (commandData != nullptr) {
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dipoleSet.setValidityBufferGeneration(false);
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result = dipoleSet.deSerialize(&commandData, &commandDataLen,
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SerializeIF::Endianness::NETWORK);
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dipoleSet.setValidityBufferGeneration(true);
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if (result != returnvalue::OK) {
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return result;
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}
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}
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}
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if (ACTUATION_WIRETAPPING) {
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sif::debug << "Actuating IMTQ with parameters x = " << dipoleSet.xDipole.value
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@ -7,14 +7,15 @@
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#include "OBSWConfig.h"
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RwHandler::RwHandler(object_id_t objectId, object_id_t comIF, CookieIF* comCookie,
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GpioIF* gpioComIF, gpioId_t enableGpio)
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GpioIF* gpioComIF, gpioId_t enableGpio, uint8_t rwIdx)
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: DeviceHandlerBase(objectId, comIF, comCookie),
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gpioComIF(gpioComIF),
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enableGpio(enableGpio),
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statusSet(this),
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lastResetStatusSet(this),
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tmDataset(this),
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rwSpeedActuationSet(*this) {
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rwSpeedActuationSet(*this),
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rwIdx(rwIdx) {
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if (comCookie == nullptr) {
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sif::error << "RwHandler: Invalid com cookie" << std::endl;
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}
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@ -43,6 +44,10 @@ void RwHandler::doShutDown() {
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ReturnValue_t RwHandler::buildNormalDeviceCommand(DeviceCommandId_t* id) {
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switch (internalState) {
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case InternalState::SET_SPEED:
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*id = RwDefinitions::SET_SPEED;
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internalState = InternalState::GET_RESET_STATUS;
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break;
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case InternalState::GET_RESET_STATUS:
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*id = RwDefinitions::GET_LAST_RESET_STATUS;
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internalState = InternalState::READ_TEMPERATURE;
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@ -53,10 +58,6 @@ ReturnValue_t RwHandler::buildNormalDeviceCommand(DeviceCommandId_t* id) {
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break;
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case InternalState::GET_RW_SATUS:
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*id = RwDefinitions::GET_RW_STATUS;
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internalState = InternalState::SET_SPEED;
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break;
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case InternalState::SET_SPEED:
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*id = RwDefinitions::SET_SPEED;
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internalState = InternalState::CLEAR_RESET_STATUS;
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break;
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case InternalState::CLEAR_RESET_STATUS:
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@ -107,29 +108,26 @@ ReturnValue_t RwHandler::buildCommandFromCommand(DeviceCommandId_t deviceCommand
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<< " invalid length" << std::endl;
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return SET_SPEED_COMMAND_INVALID_LENGTH;
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}
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// Commands override anything which was set in the software
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if (commandData != nullptr) {
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rwSpeedActuationSet.setValidityBufferGeneration(false);
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result = rwSpeedActuationSet.deSerialize(&commandData, &commandDataLen,
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SerializeIF::Endianness::NETWORK);
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rwSpeedActuationSet.setValidityBufferGeneration(true);
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if (result != returnvalue::OK) {
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return result;
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}
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result = rwSpeedActuationSet.commit();
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if (result != returnvalue::OK) {
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sif::error << "RwHandler::buildCommandFromCommand: commit failed" << std::endl;
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}
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} else {
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// Read set rw speed value from local pool
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{
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PoolReadGuard pg(&rwSpeedActuationSet);
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// Commands override anything which was set in the software
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if (commandData != nullptr) {
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rwSpeedActuationSet.setValidityBufferGeneration(false);
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result = rwSpeedActuationSet.deSerialize(&commandData, &commandDataLen,
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SerializeIF::Endianness::NETWORK);
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rwSpeedActuationSet.setValidityBufferGeneration(true);
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if (result != returnvalue::OK) {
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return result;
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}
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}
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}
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if (ACTUATION_WIRETAPPING) {
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int32_t speed;
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uint16_t rampTime;
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int32_t speed = 0;
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uint16_t rampTime = 0;
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rwSpeedActuationSet.getRwSpeed(speed, rampTime);
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sif::debug << "Actuating RW with speed = " << speed << " and rampTime = " << rampTime
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<< std::endl;
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sif::debug << "Actuating RW " << static_cast<int>(rwIdx) << " with speed = " << speed
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<< " and rampTime = " << rampTime << std::endl;
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}
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result = checkSpeedAndRampTime();
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if (result != returnvalue::OK) {
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@ -9,7 +9,7 @@
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#include "events/subsystemIdRanges.h"
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#include "returnvalues/classIds.h"
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static constexpr bool ACTUATION_WIRETAPPING = true;
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static constexpr bool ACTUATION_WIRETAPPING = false;
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class GpioIF;
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@ -36,7 +36,7 @@ class RwHandler : public DeviceHandlerBase {
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* to high to enable the device.
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*/
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RwHandler(object_id_t objectId, object_id_t comIF, CookieIF* comCookie, GpioIF* gpioComIF,
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gpioId_t enableGpio);
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gpioId_t enableGpio, uint8_t rwIdx);
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void setDebugMode(bool enable);
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@ -98,9 +98,10 @@ class RwHandler : public DeviceHandlerBase {
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RwDefinitions::RwSpeedActuationSet rwSpeedActuationSet;
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uint8_t commandBuffer[RwDefinitions::MAX_CMD_SIZE];
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uint8_t rwIdx;
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PoolEntry<int32_t> rwSpeed = PoolEntry<int32_t>(0, false);
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PoolEntry<uint16_t> rampTime = PoolEntry<uint16_t>(10, false);
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PoolEntry<int32_t> rwSpeed = PoolEntry<int32_t>({0});
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PoolEntry<uint16_t> rampTime = PoolEntry<uint16_t>({10});
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enum class InternalState {
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GET_RESET_STATUS,
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