Nostril.h
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00001 /* Auto-generated by genmsg_cpp for file /home/rosbuild/hudson/workspace/doc-fuerte-isr-uc-ros-pkg/doc_stacks/2014-01-06_11-21-59.047934/lse_messages/lse_sensor_msgs/msg/Nostril.msg */
00002 #ifndef LSE_SENSOR_MSGS_MESSAGE_NOSTRIL_H
00003 #define LSE_SENSOR_MSGS_MESSAGE_NOSTRIL_H
00004 #include <string>
00005 #include <vector>
00006 #include <map>
00007 #include <ostream>
00008 #include "ros/serialization.h"
00009 #include "ros/builtin_message_traits.h"
00010 #include "ros/message_operations.h"
00011 #include "ros/time.h"
00012 
00013 #include "ros/macros.h"
00014 
00015 #include "ros/assert.h"
00016 
00017 #include "std_msgs/Header.h"
00018 
00019 namespace lse_sensor_msgs
00020 {
00021 template <class ContainerAllocator>
00022 struct Nostril_ {
00023   typedef Nostril_<ContainerAllocator> Type;
00024 
00025   Nostril_()
00026   : header()
00027   , sensor_model()
00028   , gas_type()
00029   , reading(0.0)
00030   , min_reading(0.0)
00031   , max_reading(0.0)
00032   , clean_air(0.0)
00033   , raw_data(0)
00034   {
00035   }
00036 
00037   Nostril_(const ContainerAllocator& _alloc)
00038   : header(_alloc)
00039   , sensor_model(_alloc)
00040   , gas_type(_alloc)
00041   , reading(0.0)
00042   , min_reading(0.0)
00043   , max_reading(0.0)
00044   , clean_air(0.0)
00045   , raw_data(0)
00046   {
00047   }
00048 
00049   typedef  ::std_msgs::Header_<ContainerAllocator>  _header_type;
00050    ::std_msgs::Header_<ContainerAllocator>  header;
00051 
00052   typedef std::basic_string<char, std::char_traits<char>, typename ContainerAllocator::template rebind<char>::other >  _sensor_model_type;
00053   std::basic_string<char, std::char_traits<char>, typename ContainerAllocator::template rebind<char>::other >  sensor_model;
00054 
00055   typedef std::vector<uint8_t, typename ContainerAllocator::template rebind<uint8_t>::other >  _gas_type_type;
00056   std::vector<uint8_t, typename ContainerAllocator::template rebind<uint8_t>::other >  gas_type;
00057 
00058   typedef float _reading_type;
00059   float reading;
00060 
00061   typedef float _min_reading_type;
00062   float min_reading;
00063 
00064   typedef float _max_reading_type;
00065   float max_reading;
00066 
00067   typedef float _clean_air_type;
00068   float clean_air;
00069 
00070   typedef uint16_t _raw_data_type;
00071   uint16_t raw_data;
00072 
00073   enum { ORGANIC_SOLVENTS = 0 };
00074   enum { AIR_CONTAMINANTS = 1 };
00075   enum { GENERAL_COMBUSTIBLE = 3 };
00076   enum { NATURAL_GAS_METHANE = 4 };
00077 
00078   typedef boost::shared_ptr< ::lse_sensor_msgs::Nostril_<ContainerAllocator> > Ptr;
00079   typedef boost::shared_ptr< ::lse_sensor_msgs::Nostril_<ContainerAllocator>  const> ConstPtr;
00080   boost::shared_ptr<std::map<std::string, std::string> > __connection_header;
00081 }; // struct Nostril
00082 typedef  ::lse_sensor_msgs::Nostril_<std::allocator<void> > Nostril;
00083 
00084 typedef boost::shared_ptr< ::lse_sensor_msgs::Nostril> NostrilPtr;
00085 typedef boost::shared_ptr< ::lse_sensor_msgs::Nostril const> NostrilConstPtr;
00086 
00087 
00088 template<typename ContainerAllocator>
00089 std::ostream& operator<<(std::ostream& s, const  ::lse_sensor_msgs::Nostril_<ContainerAllocator> & v)
00090 {
00091   ros::message_operations::Printer< ::lse_sensor_msgs::Nostril_<ContainerAllocator> >::stream(s, "", v);
00092   return s;}
00093 
00094 } // namespace lse_sensor_msgs
00095 
00096 namespace ros
00097 {
00098 namespace message_traits
00099 {
00100 template<class ContainerAllocator> struct IsMessage< ::lse_sensor_msgs::Nostril_<ContainerAllocator> > : public TrueType {};
00101 template<class ContainerAllocator> struct IsMessage< ::lse_sensor_msgs::Nostril_<ContainerAllocator>  const> : public TrueType {};
00102 template<class ContainerAllocator>
00103 struct MD5Sum< ::lse_sensor_msgs::Nostril_<ContainerAllocator> > {
00104   static const char* value() 
00105   {
00106     return "24385882d831997bf818f9304248e052";
00107   }
00108 
00109   static const char* value(const  ::lse_sensor_msgs::Nostril_<ContainerAllocator> &) { return value(); } 
00110   static const uint64_t static_value1 = 0x24385882d831997bULL;
00111   static const uint64_t static_value2 = 0xf818f9304248e052ULL;
00112 };
00113 
00114 template<class ContainerAllocator>
00115 struct DataType< ::lse_sensor_msgs::Nostril_<ContainerAllocator> > {
00116   static const char* value() 
00117   {
00118     return "lse_sensor_msgs/Nostril";
00119   }
00120 
00121   static const char* value(const  ::lse_sensor_msgs::Nostril_<ContainerAllocator> &) { return value(); } 
00122 };
00123 
00124 template<class ContainerAllocator>
00125 struct Definition< ::lse_sensor_msgs::Nostril_<ContainerAllocator> > {
00126   static const char* value() 
00127   {
00128     return "# Single gas sensor msg\n\
00129 \n\
00130 Header header                   # timestamp and frame_id\n\
00131 \n\
00132 string sensor_model\n\
00133 \n\
00134 # Gases enums\n\
00135 uint8 ORGANIC_SOLVENTS=0\n\
00136 uint8 AIR_CONTAMINANTS=1\n\
00137 uint8 GENERAL_COMBUSTIBLE=3\n\
00138 uint8 NATURAL_GAS_METHANE=4\n\
00139 \n\
00140 uint8[] gas_type        # the types of gases detected by the sensor\n\
00141 \n\
00142 float32 reading                 # ppm\n\
00143 \n\
00144 float32 min_reading             # ppm\n\
00145 float32 max_reading             # ppm\n\
00146 \n\
00147 float32 clean_air               # ppm\n\
00148 \n\
00149 uint16 raw_data                 # mV\n\
00150 \n\
00151 ================================================================================\n\
00152 MSG: std_msgs/Header\n\
00153 # Standard metadata for higher-level stamped data types.\n\
00154 # This is generally used to communicate timestamped data \n\
00155 # in a particular coordinate frame.\n\
00156 # \n\
00157 # sequence ID: consecutively increasing ID \n\
00158 uint32 seq\n\
00159 #Two-integer timestamp that is expressed as:\n\
00160 # * stamp.secs: seconds (stamp_secs) since epoch\n\
00161 # * stamp.nsecs: nanoseconds since stamp_secs\n\
00162 # time-handling sugar is provided by the client library\n\
00163 time stamp\n\
00164 #Frame this data is associated with\n\
00165 # 0: no frame\n\
00166 # 1: global frame\n\
00167 string frame_id\n\
00168 \n\
00169 ";
00170   }
00171 
00172   static const char* value(const  ::lse_sensor_msgs::Nostril_<ContainerAllocator> &) { return value(); } 
00173 };
00174 
00175 template<class ContainerAllocator> struct HasHeader< ::lse_sensor_msgs::Nostril_<ContainerAllocator> > : public TrueType {};
00176 template<class ContainerAllocator> struct HasHeader< const ::lse_sensor_msgs::Nostril_<ContainerAllocator> > : public TrueType {};
00177 } // namespace message_traits
00178 } // namespace ros
00179 
00180 namespace ros
00181 {
00182 namespace serialization
00183 {
00184 
00185 template<class ContainerAllocator> struct Serializer< ::lse_sensor_msgs::Nostril_<ContainerAllocator> >
00186 {
00187   template<typename Stream, typename T> inline static void allInOne(Stream& stream, T m)
00188   {
00189     stream.next(m.header);
00190     stream.next(m.sensor_model);
00191     stream.next(m.gas_type);
00192     stream.next(m.reading);
00193     stream.next(m.min_reading);
00194     stream.next(m.max_reading);
00195     stream.next(m.clean_air);
00196     stream.next(m.raw_data);
00197   }
00198 
00199   ROS_DECLARE_ALLINONE_SERIALIZER;
00200 }; // struct Nostril_
00201 } // namespace serialization
00202 } // namespace ros
00203 
00204 namespace ros
00205 {
00206 namespace message_operations
00207 {
00208 
00209 template<class ContainerAllocator>
00210 struct Printer< ::lse_sensor_msgs::Nostril_<ContainerAllocator> >
00211 {
00212   template<typename Stream> static void stream(Stream& s, const std::string& indent, const  ::lse_sensor_msgs::Nostril_<ContainerAllocator> & v) 
00213   {
00214     s << indent << "header: ";
00215 s << std::endl;
00216     Printer< ::std_msgs::Header_<ContainerAllocator> >::stream(s, indent + "  ", v.header);
00217     s << indent << "sensor_model: ";
00218     Printer<std::basic_string<char, std::char_traits<char>, typename ContainerAllocator::template rebind<char>::other > >::stream(s, indent + "  ", v.sensor_model);
00219     s << indent << "gas_type[]" << std::endl;
00220     for (size_t i = 0; i < v.gas_type.size(); ++i)
00221     {
00222       s << indent << "  gas_type[" << i << "]: ";
00223       Printer<uint8_t>::stream(s, indent + "  ", v.gas_type[i]);
00224     }
00225     s << indent << "reading: ";
00226     Printer<float>::stream(s, indent + "  ", v.reading);
00227     s << indent << "min_reading: ";
00228     Printer<float>::stream(s, indent + "  ", v.min_reading);
00229     s << indent << "max_reading: ";
00230     Printer<float>::stream(s, indent + "  ", v.max_reading);
00231     s << indent << "clean_air: ";
00232     Printer<float>::stream(s, indent + "  ", v.clean_air);
00233     s << indent << "raw_data: ";
00234     Printer<uint16_t>::stream(s, indent + "  ", v.raw_data);
00235   }
00236 };
00237 
00238 
00239 } // namespace message_operations
00240 } // namespace ros
00241 
00242 #endif // LSE_SENSOR_MSGS_MESSAGE_NOSTRIL_H
00243 


lse_sensor_msgs
Author(s): Gonçalo Cabrita and Pedro Sousa
autogenerated on Mon Jan 6 2014 11:25:04