Source code for pyleecan.Classes.Arc

# -*- coding: utf-8 -*-
# File generated according to Generator/ClassesRef/Geometry/Arc.csv
# WARNING! All changes made in this file will be lost!
"""Method code available at https://github.com/Eomys/pyleecan/tree/master/pyleecan/Methods/Geometry/Arc
"""

from os import linesep
from sys import getsizeof
from logging import getLogger
from ._check import check_var, raise_
from ..Functions.get_logger import get_logger
from ..Functions.save import save
from ..Functions.load import load_init_dict
from ..Functions.Load.import_class import import_class
from copy import deepcopy
from .Line import Line

# Import all class method
# Try/catch to remove unnecessary dependencies in unused method
try:
    from ..Methods.Geometry.Arc.draw_FEMM import draw_FEMM
except ImportError as error:
    draw_FEMM = error

try:
    from ..Methods.Geometry.Arc.intersect_line import intersect_line
except ImportError as error:
    intersect_line = error

try:
    from ..Methods.Geometry.Arc.is_on_line import is_on_line
except ImportError as error:
    is_on_line = error

try:
    from ..Methods.Geometry.Arc.split_line import split_line
except ImportError as error:
    split_line = error

try:
    from ..Methods.Geometry.Arc.comp_distance import comp_distance
except ImportError as error:
    comp_distance = error

try:
    from ..Methods.Geometry.Arc.plot import plot
except ImportError as error:
    plot = error

try:
    from ..Methods.Geometry.Arc.comp_maxseg import comp_maxseg
except ImportError as error:
    comp_maxseg = error

try:
    from ..Methods.Geometry.Arc.intersect_obj import intersect_obj
except ImportError as error:
    intersect_obj = error

try:
    from ..Methods.Geometry.Arc.is_arc import is_arc
except ImportError as error:
    is_arc = error


from numpy import isnan
from ._check import InitUnKnowClassError


[docs]class Arc(Line): """Abstract class for arc""" VERSION = 1 # Check ImportError to remove unnecessary dependencies in unused method # cf Methods.Geometry.Arc.draw_FEMM if isinstance(draw_FEMM, ImportError): draw_FEMM = property( fget=lambda x: raise_( ImportError("Can't use Arc method draw_FEMM: " + str(draw_FEMM)) ) ) else: draw_FEMM = draw_FEMM # cf Methods.Geometry.Arc.intersect_line if isinstance(intersect_line, ImportError): intersect_line = property( fget=lambda x: raise_( ImportError( "Can't use Arc method intersect_line: " + str(intersect_line) ) ) ) else: intersect_line = intersect_line # cf Methods.Geometry.Arc.is_on_line if isinstance(is_on_line, ImportError): is_on_line = property( fget=lambda x: raise_( ImportError("Can't use Arc method is_on_line: " + str(is_on_line)) ) ) else: is_on_line = is_on_line # cf Methods.Geometry.Arc.split_line if isinstance(split_line, ImportError): split_line = property( fget=lambda x: raise_( ImportError("Can't use Arc method split_line: " + str(split_line)) ) ) else: split_line = split_line # cf Methods.Geometry.Arc.comp_distance if isinstance(comp_distance, ImportError): comp_distance = property( fget=lambda x: raise_( ImportError("Can't use Arc method comp_distance: " + str(comp_distance)) ) ) else: comp_distance = comp_distance # cf Methods.Geometry.Arc.plot if isinstance(plot, ImportError): plot = property( fget=lambda x: raise_( ImportError("Can't use Arc method plot: " + str(plot)) ) ) else: plot = plot # cf Methods.Geometry.Arc.comp_maxseg if isinstance(comp_maxseg, ImportError): comp_maxseg = property( fget=lambda x: raise_( ImportError("Can't use Arc method comp_maxseg: " + str(comp_maxseg)) ) ) else: comp_maxseg = comp_maxseg # cf Methods.Geometry.Arc.intersect_obj if isinstance(intersect_obj, ImportError): intersect_obj = property( fget=lambda x: raise_( ImportError("Can't use Arc method intersect_obj: " + str(intersect_obj)) ) ) else: intersect_obj = intersect_obj # cf Methods.Geometry.Arc.is_arc if isinstance(is_arc, ImportError): is_arc = property( fget=lambda x: raise_( ImportError("Can't use Arc method is_arc: " + str(is_arc)) ) ) else: is_arc = is_arc # generic save method is available in all object save = save # get_logger method is available in all object get_logger = get_logger def __init__(self, prop_dict=None, init_dict=None, init_str=None): """Constructor of the class. Can be use in three ways : - __init__ (arg1 = 1, arg3 = 5) every parameters have name and default values for pyleecan type, -1 will call the default constructor - __init__ (init_dict = d) d must be a dictionary with property names as keys - __init__ (init_str = s) s must be a string s is the file path to load ndarray or list can be given for Vector and Matrix object or dict can be given for pyleecan Object""" if init_str is not None: # Load from a file init_dict = load_init_dict(init_str)[1] if init_dict is not None: # Initialisation by dict assert type(init_dict) is dict # Overwrite default value with init_dict content if "prop_dict" in list(init_dict.keys()): prop_dict = init_dict["prop_dict"] # Set the properties (value check and convertion are done in setter) # Call Line init super(Arc, self).__init__(prop_dict=prop_dict) # The class is frozen (in Line init), for now it's impossible to # add new properties def __str__(self): """Convert this object in a readeable string (for print)""" Arc_str = "" # Get the properties inherited from Line Arc_str += super(Arc, self).__str__() return Arc_str def __eq__(self, other): """Compare two objects (skip parent)""" if type(other) != type(self): return False # Check the properties inherited from Line if not super(Arc, self).__eq__(other): return False return True
[docs] def compare(self, other, name="self", ignore_list=None, is_add_value=False): """Compare two objects and return list of differences""" if ignore_list is None: ignore_list = list() if type(other) != type(self): return ["type(" + name + ")"] diff_list = list() # Check the properties inherited from Line diff_list.extend( super(Arc, self).compare( other, name=name, ignore_list=ignore_list, is_add_value=is_add_value ) ) # Filter ignore differences diff_list = list(filter(lambda x: x not in ignore_list, diff_list)) return diff_list
def __sizeof__(self): """Return the size in memory of the object (including all subobject)""" S = 0 # Full size of the object # Get size of the properties inherited from Line S += super(Arc, self).__sizeof__() return S
[docs] def as_dict(self, type_handle_ndarray=0, keep_function=False, **kwargs): """ Convert this object in a json serializable dict (can be use in __init__). type_handle_ndarray: int How to handle ndarray (0: tolist, 1: copy, 2: nothing) keep_function : bool True to keep the function object, else return str Optional keyword input parameter is for internal use only and may prevent json serializability. """ # Get the properties inherited from Line Arc_dict = super(Arc, self).as_dict( type_handle_ndarray=type_handle_ndarray, keep_function=keep_function, **kwargs ) # The class name is added to the dict for deserialisation purpose # Overwrite the mother class name Arc_dict["__class__"] = "Arc" return Arc_dict
[docs] def copy(self): """Creates a deepcopy of the object""" # Handle deepcopy of all the properties if self.prop_dict is None: prop_dict_val = None else: prop_dict_val = self.prop_dict.copy() # Creates new object of the same type with the copied properties obj_copy = type(self)(prop_dict=prop_dict_val) return obj_copy
def _set_None(self): """Set all the properties to None (except pyleecan object)""" # Set to None the properties inherited from Line super(Arc, self)._set_None()