source: sasview/src/sans/models/Lorentzian.py @ 5d63ea0

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Last change on this file since 5d63ea0 was 400155b, checked in by gonzalezm, 10 years ago

Implementing request from ticket 261 - default number of bins in Annulus [Phi View] is now 36 and the first bin is now centered at 0 degrees

  • Property mode set to 100644
File size: 4.8 KB
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1##############################################################################
2# This software was developed by the University of Tennessee as part of the
3# Distributed Data Analysis of Neutron Scattering Experiments (DANSE)
4# project funded by the US National Science Foundation.
5#
6# If you use DANSE applications to do scientific research that leads to
7# publication, we ask that you acknowledge the use of the software with the
8# following sentence:
9#
10# This work benefited from DANSE software developed under NSF award DMR-0520547
11#
12# Copyright 2008-2011, University of Tennessee
13##############################################################################
14
15"""
16Provide functionality for a C extension model
17
18.. WARNING::
19
20   THIS FILE WAS GENERATED BY WRAPPERGENERATOR.PY
21   DO NOT MODIFY THIS FILE, MODIFY
22   src\sans\models\include\lorentzian.h
23   AND RE-RUN THE GENERATOR SCRIPT
24"""
25
26from sans.models.BaseComponent import BaseComponent
27from sans.models.sans_extension.c_models import CLorentzian
28
29def create_Lorentzian():
30    """
31       Create a model instance
32    """
33    obj = Lorentzian()
34    # CLorentzian.__init__(obj) is called by
35    # the Lorentzian constructor
36    return obj
37
38class Lorentzian(CLorentzian, BaseComponent):
39    """
40    Class that evaluates a Lorentzian model.
41    This file was auto-generated from src\sans\models\include\lorentzian.h.
42    Refer to that file and the structure it contains
43    for details of the model.
44   
45    List of default parameters:
46
47    * scale           = 1.0
48    * gamma           = 1.0
49    * center          = 0.0
50
51    """
52       
53    def __init__(self, multfactor=1):
54        """ Initialization """
55        self.__dict__ = {}
56       
57        # Initialize BaseComponent first, then sphere
58        BaseComponent.__init__(self)
59        #apply(CLorentzian.__init__, (self,))
60
61        CLorentzian.__init__(self)
62        self.is_multifunc = False
63                       
64        ## Name of the model
65        self.name = "Lorentzian"
66        ## Model description
67        self.description = """
68        f(x)=scale * 1/pi 0.5gamma / [ (x-x_0)^2 + (0.5gamma)^2 ]
69        """
70       
71        ## Parameter details [units, min, max]
72        self.details = {}
73        self.details['scale'] = ['', None, None]
74        self.details['gamma'] = ['', None, None]
75        self.details['center'] = ['', None, None]
76
77        ## fittable parameters
78        self.fixed = []
79       
80        ## non-fittable parameters
81        self.non_fittable = []
82       
83        ## parameters with orientation
84        self.orientation_params = []
85
86        ## parameters with magnetism
87        self.magnetic_params = []
88
89        self.category = None
90        self.multiplicity_info = None
91       
92    def __setstate__(self, state):
93        """
94        restore the state of a model from pickle
95        """
96        self.__dict__, self.params, self.dispersion = state
97       
98    def __reduce_ex__(self, proto):
99        """
100        Overwrite the __reduce_ex__ of PyTypeObject *type call in the init of
101        c model.
102        """
103        state = (self.__dict__, self.params, self.dispersion)
104        return (create_Lorentzian, tuple(), state, None, None)
105       
106    def clone(self):
107        """ Return a identical copy of self """
108        return self._clone(Lorentzian())   
109       
110    def run(self, x=0.0):
111        """
112        Evaluate the model
113       
114        :param x: input q, or [q,phi]
115       
116        :return: scattering function P(q)
117       
118        """
119        return CLorentzian.run(self, x)
120   
121    def runXY(self, x=0.0):
122        """
123        Evaluate the model in cartesian coordinates
124       
125        :param x: input q, or [qx, qy]
126       
127        :return: scattering function P(q)
128       
129        """
130        return CLorentzian.runXY(self, x)
131       
132    def evalDistribution(self, x):
133        """
134        Evaluate the model in cartesian coordinates
135       
136        :param x: input q[], or [qx[], qy[]]
137       
138        :return: scattering function P(q[])
139       
140        """
141        return CLorentzian.evalDistribution(self, x)
142       
143    def calculate_ER(self):
144        """
145        Calculate the effective radius for P(q)*S(q)
146       
147        :return: the value of the effective radius
148       
149        """       
150        return CLorentzian.calculate_ER(self)
151       
152    def calculate_VR(self):
153        """
154        Calculate the volf ratio for P(q)*S(q)
155       
156        :return: the value of the volf ratio
157       
158        """       
159        return CLorentzian.calculate_VR(self)
160             
161    def set_dispersion(self, parameter, dispersion):
162        """
163        Set the dispersion object for a model parameter
164       
165        :param parameter: name of the parameter [string]
166        :param dispersion: dispersion object of type DispersionModel
167       
168        """
169        return CLorentzian.set_dispersion(self,
170               parameter, dispersion.cdisp)
171       
172   
173# End of file
174
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