#ifndef __RADGIGASTAR_H_ #define __RADGIGASTAR_H_ #ifdef __cplusplus #include "icsneo/device/device.h" #include "icsneo/device/devicetype.h" #include "icsneo/device/tree/radgigastar/radgigastarsettings.h" namespace icsneo { class RADGigastar : public Device { public: // Serial numbers start with GS // USB PID is 0x1204, standard driver is FTDI3 // Ethernet MAC allocation is 0x0F, standard driver is Raw ICSNEO_FINDABLE_DEVICE(RADGigastar, DeviceType::RADGigastar, "GS"); size_t getEthernetActivationLineCount() const override { return 1; } bool getEthPhyRegControlSupported() const override { return true; } protected: RADGigastar(neodevice_t neodevice, const driver_factory_t& makeDriver) : Device(neodevice) { initialize(makeDriver); } 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 setupEncoder(Encoder& encoder) override { Device::setupEncoder(encoder); encoder.supportCANFD = true; encoder.supportEthPhy = true; } void setupSupportedRXNetworks(std::vector& rxNetworks) override { static std::vector supportedRxNetworks = { Network::NetID::HSCAN, Network::NetID::MSCAN, Network::NetID::HSCAN2, Network::NetID::HSCAN3, Network::NetID::HSCAN4, Network::NetID::HSCAN5, Network::NetID::Ethernet, Network::NetID::Ethernet2, Network::NetID::OP_Ethernet1, Network::NetID::OP_Ethernet2, Network::NetID::LIN, Network::NetID::FlexRay1a, Network::NetID::FlexRay1b, Network::NetID::I2C, Network::NetID::I2C2, Network::NetID::I2C3, Network::NetID::MDIO1, Network::NetID::MDIO2, }; rxNetworks.insert(rxNetworks.end(), supportedRxNetworks.begin(), supportedRxNetworks.end()); } void setupSupportedTXNetworks(std::vector& txNetworks) override { static std::vector supportedTxNetworks = { Network::NetID::HSCAN, Network::NetID::MSCAN, Network::NetID::HSCAN2, Network::NetID::HSCAN3, Network::NetID::HSCAN4, Network::NetID::HSCAN5, Network::NetID::Ethernet, Network::NetID::Ethernet2, Network::NetID::OP_Ethernet1, Network::NetID::OP_Ethernet2, Network::NetID::LIN, // FlexRay is Receive Only Network::NetID::I2C, Network::NetID::I2C2, Network::NetID::I2C3, Network::NetID::MDIO1, Network::NetID::MDIO2, }; txNetworks.insert(txNetworks.end(), supportedTxNetworks.begin(), supportedTxNetworks.end()); } void handleDeviceStatus(const std::shared_ptr& message) override { if(message->data.size() < sizeof(radgigastar_status_t)) return; std::lock_guard lk(ioMutex); const radgigastar_status_t* status = reinterpret_cast(message->data.data()); ethActivationStatus = status->ethernetActivationLineEnabled; } std::optional getCoreminiStartAddressFlash() const override { return 512*4; } std::optional getCoreminiStartAddressSD() const override { return 0; } }; } #endif // __cplusplus #endif