/**************************************************************** Generated by Eclipse Cyclone DDS IDL to CXX Translator File name: LowState_.idl Source: LowState_.hpp Cyclone DDS: v0.10.2 *****************************************************************/ #ifndef DDSCXX_LOWSTATE__HPP #define DDSCXX_LOWSTATE__HPP #include "BmsState_.hpp" #include "IMUState_.hpp" #include "MotorState_.hpp" #include #include namespace unitree_go { namespace msg { namespace dds_ { class LowState_ { private: std::array head_ = { }; uint8_t level_flag_ = 0; uint8_t frame_reserve_ = 0; std::array sn_ = { }; std::array version_ = { }; uint16_t bandwidth_ = 0; ::unitree_go::msg::dds_::IMUState_ imu_state_; std::array<::unitree_go::msg::dds_::MotorState_, 20> motor_state_ = { }; ::unitree_go::msg::dds_::BmsState_ bms_state_; std::array foot_force_ = { }; std::array foot_force_est_ = { }; uint32_t tick_ = 0; std::array wireless_remote_ = { }; uint8_t bit_flag_ = 0; float adc_reel_ = 0.0f; uint8_t temperature_ntc1_ = 0; uint8_t temperature_ntc2_ = 0; float power_v_ = 0.0f; float power_a_ = 0.0f; std::array fan_frequency_ = { }; uint32_t reserve_ = 0; uint32_t crc_ = 0; public: LowState_() = default; explicit LowState_( const std::array& head, uint8_t level_flag, uint8_t frame_reserve, const std::array& sn, const std::array& version, uint16_t bandwidth, const ::unitree_go::msg::dds_::IMUState_& imu_state, const std::array<::unitree_go::msg::dds_::MotorState_, 20>& motor_state, const ::unitree_go::msg::dds_::BmsState_& bms_state, const std::array& foot_force, const std::array& foot_force_est, uint32_t tick, const std::array& wireless_remote, uint8_t bit_flag, float adc_reel, uint8_t temperature_ntc1, uint8_t temperature_ntc2, float power_v, float power_a, const std::array& fan_frequency, uint32_t reserve, uint32_t crc) : head_(head), level_flag_(level_flag), frame_reserve_(frame_reserve), sn_(sn), version_(version), bandwidth_(bandwidth), imu_state_(imu_state), motor_state_(motor_state), bms_state_(bms_state), foot_force_(foot_force), foot_force_est_(foot_force_est), tick_(tick), wireless_remote_(wireless_remote), bit_flag_(bit_flag), adc_reel_(adc_reel), temperature_ntc1_(temperature_ntc1), temperature_ntc2_(temperature_ntc2), power_v_(power_v), power_a_(power_a), fan_frequency_(fan_frequency), reserve_(reserve), crc_(crc) { } const std::array& head() const { return this->head_; } std::array& head() { return this->head_; } void head(const std::array& _val_) { this->head_ = _val_; } void head(std::array&& _val_) { this->head_ = _val_; } uint8_t level_flag() const { return this->level_flag_; } uint8_t& level_flag() { return this->level_flag_; } void level_flag(uint8_t _val_) { this->level_flag_ = _val_; } uint8_t frame_reserve() const { return this->frame_reserve_; } uint8_t& frame_reserve() { return this->frame_reserve_; } void frame_reserve(uint8_t _val_) { this->frame_reserve_ = _val_; } const std::array& sn() const { return this->sn_; } std::array& sn() { return this->sn_; } void sn(const std::array& _val_) { this->sn_ = _val_; } void sn(std::array&& _val_) { this->sn_ = _val_; } const std::array& version() const { return this->version_; } std::array& version() { return this->version_; } void version(const std::array& _val_) { this->version_ = _val_; } void version(std::array&& _val_) { this->version_ = _val_; } uint16_t bandwidth() const { return this->bandwidth_; } uint16_t& bandwidth() { return this->bandwidth_; } void bandwidth(uint16_t _val_) { this->bandwidth_ = _val_; } const ::unitree_go::msg::dds_::IMUState_& imu_state() const { return this->imu_state_; } ::unitree_go::msg::dds_::IMUState_& imu_state() { return this->imu_state_; } void imu_state(const ::unitree_go::msg::dds_::IMUState_& _val_) { this->imu_state_ = _val_; } void imu_state(::unitree_go::msg::dds_::IMUState_&& _val_) { this->imu_state_ = _val_; } const std::array<::unitree_go::msg::dds_::MotorState_, 20>& motor_state() const { return this->motor_state_; } std::array<::unitree_go::msg::dds_::MotorState_, 20>& motor_state() { return this->motor_state_; } void motor_state(const std::array<::unitree_go::msg::dds_::MotorState_, 20>& _val_) { this->motor_state_ = _val_; } void motor_state(std::array<::unitree_go::msg::dds_::MotorState_, 20>&& _val_) { this->motor_state_ = _val_; } const ::unitree_go::msg::dds_::BmsState_& bms_state() const { return this->bms_state_; } ::unitree_go::msg::dds_::BmsState_& bms_state() { return this->bms_state_; } void bms_state(const ::unitree_go::msg::dds_::BmsState_& _val_) { this->bms_state_ = _val_; } void bms_state(::unitree_go::msg::dds_::BmsState_&& _val_) { this->bms_state_ = _val_; } const std::array& foot_force() const { return this->foot_force_; } std::array& foot_force() { return this->foot_force_; } void foot_force(const std::array& _val_) { this->foot_force_ = _val_; } void foot_force(std::array&& _val_) { this->foot_force_ = _val_; } const std::array& foot_force_est() const { return this->foot_force_est_; } std::array& foot_force_est() { return this->foot_force_est_; } void foot_force_est(const std::array& _val_) { this->foot_force_est_ = _val_; } void foot_force_est(std::array&& _val_) { this->foot_force_est_ = _val_; } uint32_t tick() const { return this->tick_; } uint32_t& tick() { return this->tick_; } void tick(uint32_t _val_) { this->tick_ = _val_; } const std::array& wireless_remote() const { return this->wireless_remote_; } std::array& wireless_remote() { return this->wireless_remote_; } void wireless_remote(const std::array& _val_) { this->wireless_remote_ = _val_; } void wireless_remote(std::array&& _val_) { this->wireless_remote_ = _val_; } uint8_t bit_flag() const { return this->bit_flag_; } uint8_t& bit_flag() { return this->bit_flag_; } void bit_flag(uint8_t _val_) { this->bit_flag_ = _val_; } float adc_reel() const { return this->adc_reel_; } float& adc_reel() { return this->adc_reel_; } void adc_reel(float _val_) { this->adc_reel_ = _val_; } uint8_t temperature_ntc1() const { return this->temperature_ntc1_; } uint8_t& temperature_ntc1() { return this->temperature_ntc1_; } void temperature_ntc1(uint8_t _val_) { this->temperature_ntc1_ = _val_; } uint8_t temperature_ntc2() const { return this->temperature_ntc2_; } uint8_t& temperature_ntc2() { return this->temperature_ntc2_; } void temperature_ntc2(uint8_t _val_) { this->temperature_ntc2_ = _val_; } float power_v() const { return this->power_v_; } float& power_v() { return this->power_v_; } void power_v(float _val_) { this->power_v_ = _val_; } float power_a() const { return this->power_a_; } float& power_a() { return this->power_a_; } void power_a(float _val_) { this->power_a_ = _val_; } const std::array& fan_frequency() const { return this->fan_frequency_; } std::array& fan_frequency() { return this->fan_frequency_; } void fan_frequency(const std::array& _val_) { this->fan_frequency_ = _val_; } void fan_frequency(std::array&& _val_) { this->fan_frequency_ = _val_; } uint32_t reserve() const { return this->reserve_; } uint32_t& reserve() { return this->reserve_; } void reserve(uint32_t _val_) { this->reserve_ = _val_; } uint32_t crc() const { return this->crc_; } uint32_t& crc() { return this->crc_; } void crc(uint32_t _val_) { this->crc_ = _val_; } bool operator==(const LowState_& _other) const { (void) _other; return head_ == _other.head_ && level_flag_ == _other.level_flag_ && frame_reserve_ == _other.frame_reserve_ && sn_ == _other.sn_ && version_ == _other.version_ && bandwidth_ == _other.bandwidth_ && imu_state_ == _other.imu_state_ && motor_state_ == _other.motor_state_ && bms_state_ == _other.bms_state_ && foot_force_ == _other.foot_force_ && foot_force_est_ == _other.foot_force_est_ && tick_ == _other.tick_ && wireless_remote_ == _other.wireless_remote_ && bit_flag_ == _other.bit_flag_ && adc_reel_ == _other.adc_reel_ && temperature_ntc1_ == _other.temperature_ntc1_ && temperature_ntc2_ == _other.temperature_ntc2_ && power_v_ == _other.power_v_ && power_a_ == _other.power_a_ && fan_frequency_ == _other.fan_frequency_ && reserve_ == _other.reserve_ && crc_ == _other.crc_; } bool operator!=(const LowState_& _other) const { return !(*this == _other); } }; } } } #include "dds/topic/TopicTraits.hpp" #include "org/eclipse/cyclonedds/topic/datatopic.hpp" namespace org { namespace eclipse { namespace cyclonedds { namespace topic { template <> constexpr const char* TopicTraits<::unitree_go::msg::dds_::LowState_>::getTypeName() { return "unitree_go::msg::dds_::LowState_"; } template <> constexpr bool TopicTraits<::unitree_go::msg::dds_::LowState_>::isKeyless() { return true; } #ifdef DDSCXX_HAS_TYPE_DISCOVERY template<> constexpr unsigned int TopicTraits<::unitree_go::msg::dds_::LowState_>::type_map_blob_sz() { return 3184; } template<> constexpr unsigned int TopicTraits<::unitree_go::msg::dds_::LowState_>::type_info_blob_sz() { return 244; } template<> inline const uint8_t * 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0xc9, 0xf1, 0x42, 0xa2, 0x28, 0x8b, 0x79, 0x8a, 0xf8, 0xdb, 0x05, 0xe1, 0x27, 0x36, 0xb1, 0xbe, 0xf2, 0x2e, 0xd8, 0x57, 0xec, 0xb6, 0xb3, 0x05, 0x79, 0x80, 0x8c, 0x15, 0xfd, 0x14, 0x3d, 0xf1, 0xe1, 0x18, 0xaf, 0x07, 0x0b, 0xa2, 0x0b, 0xc2, 0xe0, 0x37, 0x0c, 0xec, 0x4c, 0xbb, }; return blob; } template<> inline const uint8_t * TopicTraits<::unitree_go::msg::dds_::LowState_>::type_info_blob() { static const uint8_t blob[] = { 0xf0, 0x00, 0x00, 0x00, 0x01, 0x10, 0x00, 0x40, 0x70, 0x00, 0x00, 0x00, 0x6c, 0x00, 0x00, 0x00, 0x14, 0x00, 0x00, 0x00, 0xf1, 0x85, 0x3a, 0x99, 0xe2, 0x3d, 0x0d, 0xaa, 0x16, 0x10, 0xb6, 0x5c, 0x52, 0x6b, 0x40, 0x00, 0x03, 0x02, 0x00, 0x00, 0x03, 0x00, 0x00, 0x00, 0x4c, 0x00, 0x00, 0x00, 0x03, 0x00, 0x00, 0x00, 0x14, 0x00, 0x00, 0x00, 0xf1, 0x4b, 0x1b, 0xf4, 0xaf, 0x32, 0xe5, 0xbc, 0x67, 0x10, 0xef, 0xc8, 0x29, 0x31, 0x15, 0x00, 0x97, 0x00, 0x00, 0x00, 0x14, 0x00, 0x00, 0x00, 0xf1, 0x42, 0xa2, 0x28, 0x8b, 0x79, 0x8a, 0xf8, 0xdb, 0x05, 0xe1, 0x27, 0x36, 0xb1, 0xbe, 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//namespace eclipse } //namespace org namespace dds { namespace topic { template <> struct topic_type_name<::unitree_go::msg::dds_::LowState_> { static std::string value() { return org::eclipse::cyclonedds::topic::TopicTraits<::unitree_go::msg::dds_::LowState_>::getTypeName(); } }; } } REGISTER_TOPIC_TYPE(::unitree_go::msg::dds_::LowState_) namespace org{ namespace eclipse{ namespace cyclonedds{ namespace core{ namespace cdr{ template<> propvec &get_type_props<::unitree_go::msg::dds_::LowState_>(); template::value, bool> = true > bool write(T& streamer, const ::unitree_go::msg::dds_::LowState_& instance, entity_properties_t *props) { (void)instance; if (!streamer.start_struct(*props)) return false; auto prop = streamer.first_entity(props); while (prop) { switch (prop->m_id) { case 0: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.head()[0], instance.head().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 1: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.level_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 2: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.frame_reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 3: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.sn()[0], instance.sn().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 4: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.version()[0], instance.version().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 5: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.bandwidth())) return false; if (!streamer.finish_member(*prop)) return false; break; case 6: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.imu_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 7: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, false)) return false; for (const auto & a_1:instance.motor_state()) { //array depth 1 if (!write(streamer, a_1, prop)) return false; } //array depth 1 if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 8: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.bms_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 9: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.foot_force()[0], instance.foot_force().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 10: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.foot_force_est()[0], instance.foot_force_est().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 11: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.tick())) return false; if (!streamer.finish_member(*prop)) return false; break; case 12: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.wireless_remote()[0], instance.wireless_remote().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 13: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.bit_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 14: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.adc_reel())) return false; if (!streamer.finish_member(*prop)) return false; break; case 15: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.temperature_ntc1())) return false; if (!streamer.finish_member(*prop)) return false; break; case 16: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.temperature_ntc2())) return false; if (!streamer.finish_member(*prop)) return false; break; case 17: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.power_v())) return false; if (!streamer.finish_member(*prop)) return false; break; case 18: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.power_a())) return false; if (!streamer.finish_member(*prop)) return false; break; case 19: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!write(streamer, instance.fan_frequency()[0], instance.fan_frequency().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 20: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 21: if (!streamer.start_member(*prop)) return false; if (!write(streamer, instance.crc())) return false; if (!streamer.finish_member(*prop)) return false; break; } prop = streamer.next_entity(prop); } return streamer.finish_struct(*props); } template::value, bool> = true > bool write(S& str, const ::unitree_go::msg::dds_::LowState_& instance, bool as_key) { auto &props = get_type_props<::unitree_go::msg::dds_::LowState_>(); str.set_mode(cdr_stream::stream_mode::write, as_key); return write(str, instance, props.data()); } template::value, bool> = true > bool read(T& streamer, ::unitree_go::msg::dds_::LowState_& instance, entity_properties_t *props) { (void)instance; if (!streamer.start_struct(*props)) return false; auto prop = streamer.first_entity(props); while (prop) { switch (prop->m_id) { case 0: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.head()[0], instance.head().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 1: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.level_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 2: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.frame_reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 3: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.sn()[0], instance.sn().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 4: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.version()[0], instance.version().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 5: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.bandwidth())) return false; if (!streamer.finish_member(*prop)) return false; break; case 6: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.imu_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 7: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, false)) return false; for (auto & a_1:instance.motor_state()) { //array depth 1 if (!read(streamer, a_1, prop)) return false; } //array depth 1 if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 8: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.bms_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 9: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.foot_force()[0], instance.foot_force().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 10: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.foot_force_est()[0], instance.foot_force_est().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 11: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.tick())) return false; if (!streamer.finish_member(*prop)) return false; break; case 12: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.wireless_remote()[0], instance.wireless_remote().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 13: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.bit_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 14: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.adc_reel())) return false; if (!streamer.finish_member(*prop)) return false; break; case 15: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.temperature_ntc1())) return false; if (!streamer.finish_member(*prop)) return false; break; case 16: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.temperature_ntc2())) return false; if (!streamer.finish_member(*prop)) return false; break; case 17: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.power_v())) return false; if (!streamer.finish_member(*prop)) return false; break; case 18: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.power_a())) return false; if (!streamer.finish_member(*prop)) return false; break; case 19: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!read(streamer, instance.fan_frequency()[0], instance.fan_frequency().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 20: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 21: if (!streamer.start_member(*prop)) return false; if (!read(streamer, instance.crc())) return false; if (!streamer.finish_member(*prop)) return false; break; } prop = streamer.next_entity(prop); } return streamer.finish_struct(*props); } template::value, bool> = true > bool read(S& str, ::unitree_go::msg::dds_::LowState_& instance, bool as_key) { auto &props = get_type_props<::unitree_go::msg::dds_::LowState_>(); str.set_mode(cdr_stream::stream_mode::read, as_key); return read(str, instance, props.data()); } template::value, bool> = true > bool move(T& streamer, const ::unitree_go::msg::dds_::LowState_& instance, entity_properties_t *props) { (void)instance; if (!streamer.start_struct(*props)) return false; auto prop = streamer.first_entity(props); while (prop) { switch (prop->m_id) { case 0: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.head()[0], instance.head().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 1: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.level_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 2: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.frame_reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 3: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.sn()[0], instance.sn().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 4: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.version()[0], instance.version().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 5: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.bandwidth())) return false; if (!streamer.finish_member(*prop)) return false; break; case 6: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.imu_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 7: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, false)) return false; for (const auto & a_1:instance.motor_state()) { //array depth 1 if (!move(streamer, a_1, prop)) return false; } //array depth 1 if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 8: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.bms_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 9: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.foot_force()[0], instance.foot_force().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 10: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.foot_force_est()[0], instance.foot_force_est().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 11: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.tick())) return false; if (!streamer.finish_member(*prop)) return false; break; case 12: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.wireless_remote()[0], instance.wireless_remote().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 13: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.bit_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 14: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.adc_reel())) return false; if (!streamer.finish_member(*prop)) return false; break; case 15: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.temperature_ntc1())) return false; if (!streamer.finish_member(*prop)) return false; break; case 16: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.temperature_ntc2())) return false; if (!streamer.finish_member(*prop)) return false; break; case 17: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.power_v())) return false; if (!streamer.finish_member(*prop)) return false; break; case 18: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.power_a())) return false; if (!streamer.finish_member(*prop)) return false; break; case 19: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!move(streamer, instance.fan_frequency()[0], instance.fan_frequency().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 20: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 21: if (!streamer.start_member(*prop)) return false; if (!move(streamer, instance.crc())) return false; if (!streamer.finish_member(*prop)) return false; break; } prop = streamer.next_entity(prop); } return streamer.finish_struct(*props); } template::value, bool> = true > bool move(S& str, const ::unitree_go::msg::dds_::LowState_& instance, bool as_key) { auto &props = get_type_props<::unitree_go::msg::dds_::LowState_>(); str.set_mode(cdr_stream::stream_mode::move, as_key); return move(str, instance, props.data()); } template::value, bool> = true > bool max(T& streamer, const ::unitree_go::msg::dds_::LowState_& instance, entity_properties_t *props) { (void)instance; if (!streamer.start_struct(*props)) return false; auto prop = streamer.first_entity(props); while (prop) { switch (prop->m_id) { case 0: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.head()[0], instance.head().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 1: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.level_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 2: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.frame_reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 3: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.sn()[0], instance.sn().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 4: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.version()[0], instance.version().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 5: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.bandwidth())) return false; if (!streamer.finish_member(*prop)) return false; break; case 6: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.imu_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 7: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, false)) return false; for (const auto & a_1:instance.motor_state()) { //array depth 1 if (!max(streamer, a_1, prop)) return false; } //array depth 1 if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 8: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.bms_state(), prop)) return false; if (!streamer.finish_member(*prop)) return false; break; case 9: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.foot_force()[0], instance.foot_force().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 10: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.foot_force_est()[0], instance.foot_force_est().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 11: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.tick())) return false; if (!streamer.finish_member(*prop)) return false; break; case 12: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.wireless_remote()[0], instance.wireless_remote().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 13: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.bit_flag())) return false; if (!streamer.finish_member(*prop)) return false; break; case 14: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.adc_reel())) return false; if (!streamer.finish_member(*prop)) return false; break; case 15: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.temperature_ntc1())) return false; if (!streamer.finish_member(*prop)) return false; break; case 16: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.temperature_ntc2())) return false; if (!streamer.finish_member(*prop)) return false; break; case 17: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.power_v())) return false; if (!streamer.finish_member(*prop)) return false; break; case 18: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.power_a())) return false; if (!streamer.finish_member(*prop)) return false; break; case 19: if (!streamer.start_member(*prop)) return false; if (!streamer.start_consecutive(true, true)) return false; if (!max(streamer, instance.fan_frequency()[0], instance.fan_frequency().size())) return false; if (!streamer.finish_consecutive()) return false; if (!streamer.finish_member(*prop)) return false; break; case 20: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.reserve())) return false; if (!streamer.finish_member(*prop)) return false; break; case 21: if (!streamer.start_member(*prop)) return false; if (!max(streamer, instance.crc())) return false; if (!streamer.finish_member(*prop)) return false; break; } prop = streamer.next_entity(prop); } return streamer.finish_struct(*props); } template::value, bool> = true > bool max(S& str, const ::unitree_go::msg::dds_::LowState_& instance, bool as_key) { auto &props = get_type_props<::unitree_go::msg::dds_::LowState_>(); str.set_mode(cdr_stream::stream_mode::max, as_key); return max(str, instance, props.data()); } } //namespace cdr } //namespace core } //namespace cyclonedds } //namespace eclipse } //namespace org #endif // DDSCXX_LOWSTATE__HPP