Source code for RsFsw.Implementations.Calculate

from ...Internal.Core import Core
from ...Internal.CommandsGroup import CommandsGroup
from ...Internal.RepeatedCapability import RepeatedCapability
from ... import repcap


# noinspection PyPep8Naming,PyAttributeOutsideInit,SpellCheckingInspection
[docs]class CalculateCls: """Calculate commands group definition. 360 total commands, 22 Subgroups, 0 group commands Repeated Capability: Window, default value after init: Window.Nr1""" def __init__(self, core: Core, parent): self._core = core self._cmd_group = CommandsGroup("calculate", core, parent) self._cmd_group.rep_cap = RepeatedCapability(self._cmd_group.group_name, 'repcap_window_get', 'repcap_window_set', repcap.Window.Nr1) def repcap_window_set(self, window: repcap.Window) -> None: """Repeated Capability default value numeric suffix. This value is used, if you do not explicitely set it in the child set/get methods, or if you leave it to Window.Default Default value after init: Window.Nr1""" self._cmd_group.set_repcap_enum_value(window) def repcap_window_get(self) -> repcap.Window: """Returns the current default repeated capability for the child set/get methods""" # noinspection PyTypeChecker return self._cmd_group.get_repcap_enum_value() @property def deltaMarker(self): """deltaMarker commands group. 14 Sub-classes, 0 commands.""" if not hasattr(self, '_deltaMarker'): from .DeltaMarker import DeltaMarkerCls self._deltaMarker = DeltaMarkerCls(self._core, self._cmd_group) return self._deltaMarker @property def marker(self): """marker commands group. 16 Sub-classes, 0 commands.""" if not hasattr(self, '_marker'): from .Marker import MarkerCls self._marker = MarkerCls(self._core, self._cmd_group) return self._marker @property def limit(self): """limit commands group. 14 Sub-classes, 1 commands.""" if not hasattr(self, '_limit'): from .Limit import LimitCls self._limit = LimitCls(self._core, self._cmd_group) return self._limit @property def msra(self): """msra commands group. 2 Sub-classes, 0 commands.""" if not hasattr(self, '_msra'): from .Msra import MsraCls self._msra = MsraCls(self._core, self._cmd_group) return self._msra @property def rtms(self): """rtms commands group. 2 Sub-classes, 0 commands.""" if not hasattr(self, '_rtms'): from .Rtms import RtmsCls self._rtms = RtmsCls(self._core, self._cmd_group) return self._rtms @property def unit(self): """unit commands group. 2 Sub-classes, 0 commands.""" if not hasattr(self, '_unit'): from .Unit import UnitCls self._unit = UnitCls(self._core, self._cmd_group) return self._unit @property def espectrum(self): """espectrum commands group. 1 Sub-classes, 0 commands.""" if not hasattr(self, '_espectrum'): from .Espectrum import EspectrumCls self._espectrum = EspectrumCls(self._core, self._cmd_group) return self._espectrum @property def feed(self): """feed commands group. 0 Sub-classes, 1 commands.""" if not hasattr(self, '_feed'): from .Feed import FeedCls self._feed = FeedCls(self._core, self._cmd_group) return self._feed @property def formatPy(self): """formatPy commands group. 0 Sub-classes, 1 commands.""" if not hasattr(self, '_formatPy'): from .FormatPy import FormatPyCls self._formatPy = FormatPyCls(self._core, self._cmd_group) return self._formatPy @property def iq(self): """iq commands group. 1 Sub-classes, 0 commands.""" if not hasattr(self, '_iq'): from .Iq import IqCls self._iq = IqCls(self._core, self._cmd_group) return self._iq @property def mask(self): """mask commands group. 7 Sub-classes, 1 commands.""" if not hasattr(self, '_mask'): from .Mask import MaskCls self._mask = MaskCls(self._core, self._cmd_group) return self._mask @property def math(self): """math commands group. 4 Sub-classes, 0 commands.""" if not hasattr(self, '_math'): from .Math import MathCls self._math = MathCls(self._core, self._cmd_group) return self._math @property def npratio(self): """npratio commands group. 1 Sub-classes, 0 commands.""" if not hasattr(self, '_npratio'): from .Npratio import NpratioCls self._npratio = NpratioCls(self._core, self._cmd_group) return self._npratio @property def peakSearch(self): """peakSearch commands group. 4 Sub-classes, 0 commands.""" if not hasattr(self, '_peakSearch'): from .PeakSearch import PeakSearchCls self._peakSearch = PeakSearchCls(self._core, self._cmd_group) return self._peakSearch @property def pmeter(self): """pmeter commands group. 1 Sub-classes, 0 commands.""" if not hasattr(self, '_pmeter'): from .Pmeter import PmeterCls self._pmeter = PmeterCls(self._core, self._cmd_group) return self._pmeter @property def spectrogram(self): """spectrogram commands group. 8 Sub-classes, 0 commands.""" if not hasattr(self, '_spectrogram'): from .Spectrogram import SpectrogramCls self._spectrogram = SpectrogramCls(self._core, self._cmd_group) return self._spectrogram @property def statistics(self): """statistics commands group. 5 Sub-classes, 1 commands.""" if not hasattr(self, '_statistics'): from .Statistics import StatisticsCls self._statistics = StatisticsCls(self._core, self._cmd_group) return self._statistics @property def dline(self): """dline commands group. 1 Sub-classes, 1 commands.""" if not hasattr(self, '_dline'): from .Dline import DlineCls self._dline = DlineCls(self._core, self._cmd_group) return self._dline @property def fline(self): """fline commands group. 1 Sub-classes, 1 commands.""" if not hasattr(self, '_fline'): from .Fline import FlineCls self._fline = FlineCls(self._core, self._cmd_group) return self._fline @property def pline(self): """pline commands group. 1 Sub-classes, 1 commands.""" if not hasattr(self, '_pline'): from .Pline import PlineCls self._pline = PlineCls(self._core, self._cmd_group) return self._pline @property def tline(self): """tline commands group. 1 Sub-classes, 1 commands.""" if not hasattr(self, '_tline'): from .Tline import TlineCls self._tline = TlineCls(self._core, self._cmd_group) return self._tline @property def threshold(self): """threshold commands group. 1 Sub-classes, 1 commands.""" if not hasattr(self, '_threshold'): from .Threshold import ThresholdCls self._threshold = ThresholdCls(self._core, self._cmd_group) return self._threshold def clone(self) -> 'CalculateCls': """Clones the group by creating new object from it and its whole existing subgroups Also copies all the existing default Repeated Capabilities setting, which you can change independently without affecting the original group""" new_group = CalculateCls(self._core, self._cmd_group.parent) self._cmd_group.synchronize_repcaps(new_group) return new_group