#ifndef __RADSUPERMOON_H_ #define __RADSUPERMOON_H_ #ifdef __cplusplus #include "icsneo/device/device.h" #include "icsneo/device/devicetype.h" #include "icsneo/device/tree/radsupermoon/radsupermoonsettings.h" #include "icsneo/platform/ftdi3.h" namespace icsneo { class RADSupermoon : public Device { public: static constexpr DeviceType::Enum DEVICE_TYPE = DeviceType::RADSupermoon; static constexpr const uint16_t PRODUCT_ID = 0x1201; static constexpr const char* SERIAL_START = "SM"; static std::vector> Find() { std::vector> found; for(auto neodevice : FTDI3::FindByProduct(PRODUCT_ID)) found.emplace_back(new RADSupermoon(neodevice)); return found; } static const std::vector& GetSupportedNetworks() { static std::vector supportedNetworks = { Network::NetID::Ethernet, Network::NetID::OP_Ethernet1, Network::NetID::OP_Ethernet2 }; return supportedNetworks; } protected: RADSupermoon(neodevice_t neodevice) : Device(neodevice) { initialize(); productId = PRODUCT_ID; getWritableNeoDevice().type = DEVICE_TYPE; } void setupPacketizer(Packetizer& packetizer) override { Device::setupPacketizer(packetizer); packetizer.disableChecksum = true; packetizer.align16bit = false; } void setupDecoder(Decoder& decoder) override { Device::setupDecoder(decoder); decoder.timestampResolution = 10; // Timestamps are in 10ns increments instead of the usual 25ns } void setupSupportedRXNetworks(std::vector& rxNetworks) override { for(auto& netid : GetSupportedNetworks()) rxNetworks.emplace_back(netid); } // The supported TX networks are the same as the supported RX networks for this device void setupSupportedTXNetworks(std::vector& txNetworks) override { setupSupportedRXNetworks(txNetworks); } }; } #endif // __cplusplus #endif