This is a fork from the original, including a small change in the buffer size of the hardware interface (increased to 2048) and decreasing the number of publishers and subscribers to 5. Besides, the library about the message Adc.h was modified so as to increase the number of available Adc channels to be read ( from 6 to 7 ) For this modification, a change in checksum was required

Dependencies:   BufferedSerial

Fork of ros_lib_kinetic by Gary Servin

sensor_msgs/RelativeHumidity.h

Committer:
jacobepfl1692
Date:
2017-10-17
Revision:
2:9114cc24ddcf
Parent:
0:9e9b7db60fd5

File content as of revision 2:9114cc24ddcf:

#ifndef _ROS_sensor_msgs_RelativeHumidity_h
#define _ROS_sensor_msgs_RelativeHumidity_h

#include <stdint.h>
#include <string.h>
#include <stdlib.h>
#include "ros/msg.h"
#include "std_msgs/Header.h"

namespace sensor_msgs
{

  class RelativeHumidity : public ros::Msg
  {
    public:
      typedef std_msgs::Header _header_type;
      _header_type header;
      typedef double _relative_humidity_type;
      _relative_humidity_type relative_humidity;
      typedef double _variance_type;
      _variance_type variance;

    RelativeHumidity():
      header(),
      relative_humidity(0),
      variance(0)
    {
    }

    virtual int serialize(unsigned char *outbuffer) const
    {
      int offset = 0;
      offset += this->header.serialize(outbuffer + offset);
      union {
        double real;
        uint64_t base;
      } u_relative_humidity;
      u_relative_humidity.real = this->relative_humidity;
      *(outbuffer + offset + 0) = (u_relative_humidity.base >> (8 * 0)) & 0xFF;
      *(outbuffer + offset + 1) = (u_relative_humidity.base >> (8 * 1)) & 0xFF;
      *(outbuffer + offset + 2) = (u_relative_humidity.base >> (8 * 2)) & 0xFF;
      *(outbuffer + offset + 3) = (u_relative_humidity.base >> (8 * 3)) & 0xFF;
      *(outbuffer + offset + 4) = (u_relative_humidity.base >> (8 * 4)) & 0xFF;
      *(outbuffer + offset + 5) = (u_relative_humidity.base >> (8 * 5)) & 0xFF;
      *(outbuffer + offset + 6) = (u_relative_humidity.base >> (8 * 6)) & 0xFF;
      *(outbuffer + offset + 7) = (u_relative_humidity.base >> (8 * 7)) & 0xFF;
      offset += sizeof(this->relative_humidity);
      union {
        double real;
        uint64_t base;
      } u_variance;
      u_variance.real = this->variance;
      *(outbuffer + offset + 0) = (u_variance.base >> (8 * 0)) & 0xFF;
      *(outbuffer + offset + 1) = (u_variance.base >> (8 * 1)) & 0xFF;
      *(outbuffer + offset + 2) = (u_variance.base >> (8 * 2)) & 0xFF;
      *(outbuffer + offset + 3) = (u_variance.base >> (8 * 3)) & 0xFF;
      *(outbuffer + offset + 4) = (u_variance.base >> (8 * 4)) & 0xFF;
      *(outbuffer + offset + 5) = (u_variance.base >> (8 * 5)) & 0xFF;
      *(outbuffer + offset + 6) = (u_variance.base >> (8 * 6)) & 0xFF;
      *(outbuffer + offset + 7) = (u_variance.base >> (8 * 7)) & 0xFF;
      offset += sizeof(this->variance);
      return offset;
    }

    virtual int deserialize(unsigned char *inbuffer)
    {
      int offset = 0;
      offset += this->header.deserialize(inbuffer + offset);
      union {
        double real;
        uint64_t base;
      } u_relative_humidity;
      u_relative_humidity.base = 0;
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 0))) << (8 * 0);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 1))) << (8 * 1);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 2))) << (8 * 2);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 3))) << (8 * 3);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 4))) << (8 * 4);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 5))) << (8 * 5);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 6))) << (8 * 6);
      u_relative_humidity.base |= ((uint64_t) (*(inbuffer + offset + 7))) << (8 * 7);
      this->relative_humidity = u_relative_humidity.real;
      offset += sizeof(this->relative_humidity);
      union {
        double real;
        uint64_t base;
      } u_variance;
      u_variance.base = 0;
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 0))) << (8 * 0);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 1))) << (8 * 1);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 2))) << (8 * 2);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 3))) << (8 * 3);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 4))) << (8 * 4);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 5))) << (8 * 5);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 6))) << (8 * 6);
      u_variance.base |= ((uint64_t) (*(inbuffer + offset + 7))) << (8 * 7);
      this->variance = u_variance.real;
      offset += sizeof(this->variance);
     return offset;
    }

    const char * getType(){ return "sensor_msgs/RelativeHumidity"; };
    const char * getMD5(){ return "8730015b05955b7e992ce29a2678d90f"; };

  };

}
#endif