2019-04-14 21:07:42 +02:00
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// Generated by gencpp from file sensor_msgs/JoyFeedbackArray.msg
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// DO NOT EDIT!
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#ifndef SENSOR_MSGS_MESSAGE_JOYFEEDBACKARRAY_H
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#define SENSOR_MSGS_MESSAGE_JOYFEEDBACKARRAY_H
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#include <string>
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#include <vector>
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2021-11-05 03:09:45 +01:00
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#include <memory>
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2019-04-14 21:07:42 +02:00
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#include <ros/types.h>
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#include <ros/serialization.h>
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#include <ros/builtin_message_traits.h>
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#include <ros/message_operations.h>
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#include <sensor_msgs/JoyFeedback.h>
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namespace sensor_msgs
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{
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template <class ContainerAllocator>
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struct JoyFeedbackArray_
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{
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typedef JoyFeedbackArray_<ContainerAllocator> Type;
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JoyFeedbackArray_()
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: array() {
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}
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JoyFeedbackArray_(const ContainerAllocator& _alloc)
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: array(_alloc) {
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(void)_alloc;
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}
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2021-11-05 03:09:45 +01:00
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typedef std::vector< ::sensor_msgs::JoyFeedback_<ContainerAllocator> , typename std::allocator_traits<ContainerAllocator>::template rebind_alloc< ::sensor_msgs::JoyFeedback_<ContainerAllocator> >> _array_type;
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2019-04-14 21:07:42 +02:00
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_array_type array;
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typedef boost::shared_ptr< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> > Ptr;
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typedef boost::shared_ptr< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> const> ConstPtr;
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}; // struct JoyFeedbackArray_
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typedef ::sensor_msgs::JoyFeedbackArray_<std::allocator<void> > JoyFeedbackArray;
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typedef boost::shared_ptr< ::sensor_msgs::JoyFeedbackArray > JoyFeedbackArrayPtr;
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typedef boost::shared_ptr< ::sensor_msgs::JoyFeedbackArray const> JoyFeedbackArrayConstPtr;
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// constants requiring out of line definition
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template<typename ContainerAllocator>
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std::ostream& operator<<(std::ostream& s, const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> & v)
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{
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ros::message_operations::Printer< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >::stream(s, "", v);
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return s;
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}
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2021-11-05 02:33:08 +01:00
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template<typename ContainerAllocator1, typename ContainerAllocator2>
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bool operator==(const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator1> & lhs, const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator2> & rhs)
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{
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return lhs.array == rhs.array;
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}
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template<typename ContainerAllocator1, typename ContainerAllocator2>
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bool operator!=(const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator1> & lhs, const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator2> & rhs)
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{
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return !(lhs == rhs);
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}
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2019-04-14 21:07:42 +02:00
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2021-11-05 02:33:08 +01:00
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} // namespace sensor_msgs
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2021-11-05 02:33:08 +01:00
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namespace ros
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{
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namespace message_traits
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{
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2019-04-14 21:07:42 +02:00
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template <class ContainerAllocator>
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struct IsMessage< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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: TrueType
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{ };
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template <class ContainerAllocator>
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struct IsMessage< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> const>
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: TrueType
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{ };
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template <class ContainerAllocator>
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struct IsFixedSize< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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: FalseType
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{ };
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template <class ContainerAllocator>
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struct IsFixedSize< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> const>
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: FalseType
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{ };
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template <class ContainerAllocator>
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struct HasHeader< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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: FalseType
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{ };
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template <class ContainerAllocator>
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struct HasHeader< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> const>
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: FalseType
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{ };
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template<class ContainerAllocator>
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struct MD5Sum< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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{
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static const char* value()
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{
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return "cde5730a895b1fc4dee6f91b754b213d";
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}
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static const char* value(const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator>&) { return value(); }
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static const uint64_t static_value1 = 0xcde5730a895b1fc4ULL;
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static const uint64_t static_value2 = 0xdee6f91b754b213dULL;
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};
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template<class ContainerAllocator>
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struct DataType< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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{
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static const char* value()
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{
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return "sensor_msgs/JoyFeedbackArray";
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}
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static const char* value(const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator>&) { return value(); }
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};
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template<class ContainerAllocator>
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struct Definition< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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{
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static const char* value()
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{
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return "# This message publishes values for multiple feedback at once. \n"
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"JoyFeedback[] array\n"
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"================================================================================\n"
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"MSG: sensor_msgs/JoyFeedback\n"
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"# Declare of the type of feedback\n"
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"uint8 TYPE_LED = 0\n"
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"uint8 TYPE_RUMBLE = 1\n"
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"uint8 TYPE_BUZZER = 2\n"
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"\n"
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"uint8 type\n"
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"\n"
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"# This will hold an id number for each type of each feedback.\n"
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"# Example, the first led would be id=0, the second would be id=1\n"
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"uint8 id\n"
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"\n"
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"# Intensity of the feedback, from 0.0 to 1.0, inclusive. If device is\n"
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"# actually binary, driver should treat 0<=x<0.5 as off, 0.5<=x<=1 as on.\n"
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"float32 intensity\n"
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"\n"
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;
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}
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static const char* value(const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator>&) { return value(); }
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};
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} // namespace message_traits
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} // namespace ros
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namespace ros
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{
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namespace serialization
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{
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template<class ContainerAllocator> struct Serializer< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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{
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template<typename Stream, typename T> inline static void allInOne(Stream& stream, T m)
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{
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stream.next(m.array);
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}
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ROS_DECLARE_ALLINONE_SERIALIZER
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}; // struct JoyFeedbackArray_
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} // namespace serialization
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} // namespace ros
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namespace ros
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{
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namespace message_operations
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{
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template<class ContainerAllocator>
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struct Printer< ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator> >
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{
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template<typename Stream> static void stream(Stream& s, const std::string& indent, const ::sensor_msgs::JoyFeedbackArray_<ContainerAllocator>& v)
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{
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s << indent << "array[]" << std::endl;
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for (size_t i = 0; i < v.array.size(); ++i)
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{
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s << indent << " array[" << i << "]: ";
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s << std::endl;
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s << indent;
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Printer< ::sensor_msgs::JoyFeedback_<ContainerAllocator> >::stream(s, indent + " ", v.array[i]);
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}
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}
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};
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} // namespace message_operations
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} // namespace ros
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#endif // SENSOR_MSGS_MESSAGE_JOYFEEDBACKARRAY_H
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