servo_dynamixel
Public Member Functions | Protected Member Functions | Protected Attributes | Friends | List of all members
servo_dynamixel::Task Class Reference

The task context provides and requires services. It uses an ExecutionEngine to perform its functions. Essential interfaces are operations, data flow ports and properties. These interfaces have been defined using the oroGen specification. In order to modify the interfaces you should (re)use oroGen and rely on the associated workflow. More...

#include <Task.hpp>

Inheritance diagram for servo_dynamixel::Task:

Public Member Functions

 Task (std::string const &name="servo_dynamixel::Task")
 
 Task (std::string const &name, RTT::ExecutionEngine *engine)
 
 ~Task ()
 
bool configureHook ()
 The following lines are template definitions for the various state machine. More...
 
bool startHook ()
 
void updateHook ()
 
void errorHook ()
 
void stopHook ()
 
void cleanupHook ()
 

Protected Member Functions

void readJointStatus ()
 
void printErrorStatus (ErrorStatus status)
 

Protected Attributes

Dynamixel dynamixel_
 
std::map< std::string, ServoStatusstatus_map
 
base::samples::Joints joint_status
 
std::vector< base::samples::RigidBodyState > rbs
 
base::Time stamp_
 

Friends

class TaskBase
 

Detailed Description

The task context provides and requires services. It uses an ExecutionEngine to perform its functions. Essential interfaces are operations, data flow ports and properties. These interfaces have been defined using the oroGen specification. In order to modify the interfaces you should (re)use oroGen and rely on the associated workflow.

The name of a TaskContext is primarily defined via:

deployment 'deployment_name'
    task('custom_task_name','servo_dynamixel::Task')
end

It can be dynamically adapted when the deployment is called with a prefix argument.

Constructor & Destructor Documentation

◆ Task() [1/2]

Task::Task ( std::string const &  name = "servo_dynamixel::Task")

TaskContext constructor for Task

Parameters
nameName of the task. This name needs to be unique to make it identifiable via nameservices.
initial_stateThe initial TaskState of the TaskContext. Default is Stopped state.

◆ Task() [2/2]

Task::Task ( std::string const &  name,
RTT::ExecutionEngine *  engine 
)

TaskContext constructor for Task

Parameters
nameName of the task. This name needs to be unique to make it identifiable for nameservices.
engineThe RTT Execution engine to be used for this task, which serialises the execution of all commands, programs, state machines and incoming events for a task.

◆ ~Task()

Task::~Task ( )

Default deconstructor of Task

Member Function Documentation

◆ cleanupHook()

void Task::cleanupHook ( )

This hook is called by Orocos when the state machine transitions from Stopped to PreOperational, requiring the call to configureHook() before calling start() again.

◆ configureHook()

bool Task::configureHook ( )

The following lines are template definitions for the various state machine.

This hook is called by Orocos when the state machine transitions from PreOperational to Stopped. If it returns false, then the component will stay in PreOperational. Otherwise, it goes into Stopped.

It is meaningful only if the #needs_configuration has been specified in the task context definition with (for example):

task_context "TaskName" do
  needs_configuration
  ...
end

◆ errorHook()

void Task::errorHook ( )

This hook is called by Orocos when the component is in the RunTimeError state, at each activity step. See the discussion in updateHook() about triggering options.

Call recover() to go back in the Runtime state.

◆ printErrorStatus()

void Task::printErrorStatus ( ErrorStatus  status)
protected

Output error status

◆ readJointStatus()

void Task::readJointStatus ( )
protected

reads out the status for all joints

◆ startHook()

bool Task::startHook ( )

This hook is called by Orocos when the state machine transitions from Stopped to Running. If it returns false, then the component will stay in Stopped. Otherwise, it goes into Running and updateHook() will be called.

◆ stopHook()

void Task::stopHook ( )

This hook is called by Orocos when the state machine transitions from Running to Stopped after stop() has been called.

◆ updateHook()

void Task::updateHook ( )

This hook is called by Orocos when the component is in the Running state, at each activity step. Here, the activity gives the "ticks" when the hook should be called.

The error(), exception() and fatal() calls, when called in this hook, allow to get into the associated RunTimeError, Exception and FatalError states.

In the first case, updateHook() is still called, and recover() allows you to go back into the Running state. In the second case, the errorHook() will be called instead of updateHook(). In Exception, the component is stopped and recover() needs to be called before starting it again. Finally, FatalError cannot be recovered.

Friends And Related Function Documentation

◆ TaskBase

friend class TaskBase
friend

Member Data Documentation

◆ dynamixel_

Dynamixel servo_dynamixel::Task::dynamixel_
protected

driver instance

◆ joint_status

base::samples::Joints servo_dynamixel::Task::joint_status
protected

holds the status of the joints

◆ rbs

std::vector<base::samples::RigidBodyState> servo_dynamixel::Task::rbs
protected

optional vector of RigidBodyStates if the joint config is set

◆ stamp_

base::Time servo_dynamixel::Task::stamp_
protected

◆ status_map

std::map<std::string, ServoStatus> servo_dynamixel::Task::status_map
protected

a mapping of name to ServoConfiguration


The documentation for this class was generated from the following files: