// Generated by gencpp from file geometry_msgs/TwistStamped.msg // DO NOT EDIT! #ifndef GEOMETRY_MSGS_MESSAGE_TWISTSTAMPED_H #define GEOMETRY_MSGS_MESSAGE_TWISTSTAMPED_H #include #include #include #include #include #include #include #include namespace geometry_msgs { template struct TwistStamped_ { typedef TwistStamped_ Type; TwistStamped_() : header() , twist() { } TwistStamped_(const ContainerAllocator& _alloc) : header(_alloc) , twist(_alloc) { (void)_alloc; } typedef ::std_msgs::Header_ _header_type; _header_type header; typedef ::geometry_msgs::Twist_ _twist_type; _twist_type twist; typedef boost::shared_ptr< ::geometry_msgs::TwistStamped_ > Ptr; typedef boost::shared_ptr< ::geometry_msgs::TwistStamped_ const> ConstPtr; }; // struct TwistStamped_ typedef ::geometry_msgs::TwistStamped_ > TwistStamped; typedef boost::shared_ptr< ::geometry_msgs::TwistStamped > TwistStampedPtr; typedef boost::shared_ptr< ::geometry_msgs::TwistStamped const> TwistStampedConstPtr; // constants requiring out of line definition template std::ostream& operator<<(std::ostream& s, const ::geometry_msgs::TwistStamped_ & v) { ros::message_operations::Printer< ::geometry_msgs::TwistStamped_ >::stream(s, "", v); return s; } template bool operator==(const ::geometry_msgs::TwistStamped_ & lhs, const ::geometry_msgs::TwistStamped_ & rhs) { return lhs.header == rhs.header && lhs.twist == rhs.twist; } template bool operator!=(const ::geometry_msgs::TwistStamped_ & lhs, const ::geometry_msgs::TwistStamped_ & rhs) { return !(lhs == rhs); } } // namespace geometry_msgs namespace ros { namespace message_traits { template struct IsMessage< ::geometry_msgs::TwistStamped_ > : TrueType { }; template struct IsMessage< ::geometry_msgs::TwistStamped_ const> : TrueType { }; template struct IsFixedSize< ::geometry_msgs::TwistStamped_ > : FalseType { }; template struct IsFixedSize< ::geometry_msgs::TwistStamped_ const> : FalseType { }; template struct HasHeader< ::geometry_msgs::TwistStamped_ > : TrueType { }; template struct HasHeader< ::geometry_msgs::TwistStamped_ const> : TrueType { }; template struct MD5Sum< ::geometry_msgs::TwistStamped_ > { static const char* value() { return "98d34b0043a2093cf9d9345ab6eef12e"; } static const char* value(const ::geometry_msgs::TwistStamped_&) { return value(); } static const uint64_t static_value1 = 0x98d34b0043a2093cULL; static const uint64_t static_value2 = 0xf9d9345ab6eef12eULL; }; template struct DataType< ::geometry_msgs::TwistStamped_ > { static const char* value() { return "geometry_msgs/TwistStamped"; } static const char* value(const ::geometry_msgs::TwistStamped_&) { return value(); } }; template struct Definition< ::geometry_msgs::TwistStamped_ > { static const char* value() { return "# A twist with reference coordinate frame and timestamp\n" "Header header\n" "Twist twist\n" "\n" "================================================================================\n" "MSG: std_msgs/Header\n" "# Standard metadata for higher-level stamped data types.\n" "# This is generally used to communicate timestamped data \n" "# in a particular coordinate frame.\n" "# \n" "# sequence ID: consecutively increasing ID \n" "uint32 seq\n" "#Two-integer timestamp that is expressed as:\n" "# * stamp.sec: seconds (stamp_secs) since epoch (in Python the variable is called 'secs')\n" "# * stamp.nsec: nanoseconds since stamp_secs (in Python the variable is called 'nsecs')\n" "# time-handling sugar is provided by the client library\n" "time stamp\n" "#Frame this data is associated with\n" "string frame_id\n" "\n" "================================================================================\n" "MSG: geometry_msgs/Twist\n" "# This expresses velocity in free space broken into its linear and angular parts.\n" "Vector3 linear\n" "Vector3 angular\n" "\n" "================================================================================\n" "MSG: geometry_msgs/Vector3\n" "# This represents a vector in free space. \n" "# It is only meant to represent a direction. Therefore, it does not\n" "# make sense to apply a translation to it (e.g., when applying a \n" "# generic rigid transformation to a Vector3, tf2 will only apply the\n" "# rotation). If you want your data to be translatable too, use the\n" "# geometry_msgs/Point message instead.\n" "\n" "float64 x\n" "float64 y\n" "float64 z\n" ; } static const char* value(const ::geometry_msgs::TwistStamped_&) { return value(); } }; } // namespace message_traits } // namespace ros namespace ros { namespace serialization { template struct Serializer< ::geometry_msgs::TwistStamped_ > { template inline static void allInOne(Stream& stream, T m) { stream.next(m.header); stream.next(m.twist); } ROS_DECLARE_ALLINONE_SERIALIZER }; // struct TwistStamped_ } // namespace serialization } // namespace ros namespace ros { namespace message_operations { template struct Printer< ::geometry_msgs::TwistStamped_ > { template static void stream(Stream& s, const std::string& indent, const ::geometry_msgs::TwistStamped_& v) { s << indent << "header: "; s << std::endl; Printer< ::std_msgs::Header_ >::stream(s, indent + " ", v.header); s << indent << "twist: "; s << std::endl; Printer< ::geometry_msgs::Twist_ >::stream(s, indent + " ", v.twist); } }; } // namespace message_operations } // namespace ros #endif // GEOMETRY_MSGS_MESSAGE_TWISTSTAMPED_H