pcdsdevices.inout.Reflaser
- class pcdsdevices.inout.Reflaser(prefix, *, name, **kwargs)
Simple ReferenceLaser with In/Out States.
- Parameters:
prefix (str) – The EPICS PV prefix for this motor.
name (str) – An identifying name for this motor.
settle_time (float, optional) – The amount of extra time to wait before interpreting a move as done.
timeout (float, optional) – The amount of time to wait before automatically marking a long in-progress move as failed.
Attribute
Class
Suffix
Docs
Kind
Notes
state
EpicsSignal
hinted
Inherited from
InOutRecordPositioner
motor
:MOTOR
normal
Inherited from
InOutRecordPositioner
Methods
- camonitor()
Shows a live-updating motor position in the terminal.
This will be the value that is returned by the
position
attribute.This method ends cleanly at a ctrl+c or after a call to
end_monitor_thread()
, which may be useful when this is called in a background thread.
- check_inserted(state=None)
Query if a particular state counts as inserted.
- check_removed(state=None)
Query if a particular state counts as removed.
- check_transmission(state=None)
Query the transition at a particular state.
- configure(d: Dict[str, Any]) Tuple[Dict[str, Any], Dict[str, Any]]
Configure the device for something during a run
This default implementation allows the user to change any of the
configuration_attrs
. Subclasses might override this to perform additional input validation, cleanup, etc.- Parameters:
d (dict) – The configuration dictionary. To specify the order that the changes should be made, use an OrderedDict.
- Returns:
(old, new) tuple of dictionaries
Where old and new are pre- and post-configure configuration states.
- describe() OrderedDictType[str, Dict[str, Any]]
Provide schema and meta-data for
read()
.This keys in the
OrderedDict
this method returns must match the keys in theOrderedDict
return byread()
.This provides schema related information, (ex shape, dtype), the source (ex PV name), and if available, units, limits, precision etc.
- Returns:
data_keys (OrderedDict) – The keys must be strings and the values must be dict-like with the
event_model.event_descriptor.data_key
schema.
- end_monitor_thread()
Stop a
camonitor()
orwm_update()
that is running in another thread.
- get(**kwargs)
Get the value of all components in the device
Keyword arguments are passed onto each signal.get(). Components beginning with an underscore will not be included.
- get_state(value)
Given an integer or string value, return the proper state entry.
- Returns:
state (~enum.Enum) – The corresponding Enum entry for this value. It has two meaningful fields,
name
andvalue
.
- insert(moved_cb=None, timeout=None, wait=False)
Moves this device to the first state on the
in_states
list. If we’re already at some other in state, do nothing instead.- Parameters:
moved_cb (callable, optional) – Call this callback when movement is finished. This callback must accept one keyword argument,
obj
, which will be set to this instance.timeout (float, optional) – Maximum time to wait for the motion.
wait (bool, optional) – If
True
, do not continue until the move is complete.
- Returns:
moved_status (
Status
) – Status that will be marked as done when the motion is complete.
- move(position, moved_cb=None, timeout=None, wait=False)
Move to the desired state and return completion information.
- Parameters:
- Returns:
status (StateStatus) –
Status
object that represents the move’s progress.
- mv(position, timeout=None, wait=False, log=True)
Absolute move to a position.
- Parameters:
position – Desired end position.
timeout (float, optional) – If provided, the mover will throw an error if motion takes longer than timeout to complete. If omitted, the mover’s default timeout will be use.
wait (bool, optional) – If
True
, wait for motion completion before returning. Defaults toFalse
.log (bool, optional) – If
True
, logs the move at INFO level.
- post_elog_status()
Post device status to the primary elog, if possible.
- read() OrderedDictType[str, Dict[str, Any]]
Read data from the device.
This method is expected to be as instantaneous as possible, with any substantial acquisition time taken care of in
trigger()
.The
OrderedDict
returned by this method must have identical keys (in the same order) as theOrderedDict
returned bydescribe()
.By convention, the first key in the return is the ‘primary’ key and maybe used by heuristics in
bluesky
.The values in the ordered dictionary must be dict (-likes) with the keys
{'value', 'timestamp'}
. The'value'
may have any type, the timestamp must be a float UNIX epoch timestamp in UTC.- Returns:
data (OrderedDict) – The keys must be strings and the values must be dict-like with the keys
{'value', 'timestamp'}
- read_configuration() OrderedDictType[str, Dict[str, Any]]
Dictionary mapping names to value dicts with keys: value, timestamp
To control which fields are included, change the Component kinds on the device, or modify the
configuration_attrs
list.
- remove(moved_cb=None, timeout=None, wait=False)
Macro to move this device to the first state on the
out_states
list. If we’re already at some other out state, do nothing instead.- Parameters:
moved_cb (callable, optional) – Call this callback when movement is finished. This callback must accept one keyword argument,
obj
, which will be set to this instance.timeout (float, optional) – Maximum time to wait for the motion.
wait (bool, optional) – If
True
, do not continue until the move is complete.
- Returns:
moved_status (
Status
) – Status that will be marked as done when the motion is complete.
- screen()
Open a screen for controlling the device.
Default behavior is the typhos screen, but this method can be overridden for more specialized screens.
- set(position, moved_cb=None, timeout=None)
Move to the desired state and return completion information.
This is the bare-bones implementation of the move with only motion, callbacks, and timeouts defined. Additional functional options are relegated to the
move
command and bells and whistles are relegated to a different interface.- Parameters:
- Returns:
status (StateStatus) –
Status
object that represents the move’s progress.
- stage_group_instances() Iterator[OphydObject]
Yields an iterator of subdevices that should be staged.
- stop(*, success: bool = False)
Hide the stop method behind an AttributeError.
This makes it so that other interfaces know that the stop method can’t be run without needing to run it to find out.
- summary()
- trigger() StatusBase
Trigger the device and return status object.
This method is responsible for implementing ‘trigger’ or ‘acquire’ functionality of this device.
If there is an appreciable time between triggering the device and it being able to be read (via the
read()
method) then this method is also responsible for arranging that theStatusBase
object returned by this method is notified when the device is ready to be read.If there is no delay between triggering and being readable, then this method must return a
StatusBase
object which is already completed.- Returns:
status (StatusBase) –
StatusBase
object which will be marked as complete when the device is ready to be read.
- wait(timeout=None)
- wm()
Get the mover’s current positon (where motor).
- wm_update()
Shows a live-updating motor position in the terminal.
This will be the value that is returned by the
position
attribute.This method ends cleanly at a ctrl+c or after a call to
end_monitor_thread()
, which may be useful when this is called in a background thread.
Attributes
- configuration_attrs
- connected
- egu = 'state'
- high_limit
- hints
- in_states = ['IN']
- kind
- limits
- low_limit
- moving
Whether or not the motor is moving
- Returns:
moving (bool)
- needs_parent: list[type[OphydObject]] = [<class 'ophyd.signal.AttributeSignal'>, <class 'ophyd.signal.DerivedSignal'>, <class 'ophyd.areadetector.plugins.PluginBase'>, <class 'ophyd.pseudopos.PseudoSingle'>, <class 'pcdsdevices.signal.PVStateSignal'>, <class 'pcdsdevices.signal.AggregateSignal'>]
- out_states = ['OUT']
- position
Name of the positioner’s current state. If aliases were provided, the first alias will be used instead of the base name.
- settle_time
Amount of time to wait after moves to report status completion
- states_list = ['IN', 'OUT']
- subscriptions: ClassVar[FrozenSet[str]] = frozenset({'_req_done', 'acq_done', 'done_moving', 'readback', 'start_moving', 'state'})
- timeout
Amount of time to wait before to considering a motion as failed
- transmission
The proportion of incoming beam that makes it through the device.
This will be a float between 0 and 1, where 0 is no beam and 1 is full transmission.