source: sasview/sansmodels/src/sans/models/FractalModel.py @ ca4c150

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Last change on this file since ca4c150 was 96656e3, checked in by Jae Cho <jhjcho@…>, 14 years ago

update models due to changes of template

  • Property mode set to 100644
File size: 5.0 KB
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1#!/usr/bin/env python
2
3##############################################################################
4#       This software was developed by the University of Tennessee as part of the
5#       Distributed Data Analysis of Neutron Scattering Experiments (DANSE)
6#       project funded by the US National Science Foundation.
7#
8#       If you use DANSE applications to do scientific research that leads to
9#       publication, we ask that you acknowledge the use of the software with the
10#       following sentence:
11#
12#       "This work benefited from DANSE software developed under NSF award DMR-0520547."
13#
14#       copyright 2008, University of Tennessee
15##############################################################################
16
17
18"""
19Provide functionality for a C extension model
20
21:WARNING: THIS FILE WAS GENERATED BY WRAPPERGENERATOR.PY
22         DO NOT MODIFY THIS FILE, MODIFY ..\c_extensions\fractal.h
23         AND RE-RUN THE GENERATOR SCRIPT
24
25"""
26
27from sans.models.BaseComponent import BaseComponent
28from sans_extension.c_models import CFractalModel
29import copy   
30
31def create_FractalModel():
32    obj = FractalModel()
33    #CFractalModel.__init__(obj) is called by FractalModel constructor
34    return obj
35
36class FractalModel(CFractalModel, BaseComponent):
37    """
38    Class that evaluates a FractalModel model.
39    This file was auto-generated from ..\c_extensions\fractal.h.
40    Refer to that file and the structure it contains
41    for details of the model.
42    List of default parameters:
43         scale           = 0.05
44         radius          = 5.0 [A]
45         fractal_dim     = 2.0
46         cor_length      = 100.0 [A]
47         sldBlock        = 2e-006 [1/A^(2)]
48         sldSolv         = 6.35e-006 [1/A^(2)]
49         background      = 0.0 [1/cm]
50
51    """
52       
53    def __init__(self):
54        """ Initialization """
55       
56        # Initialize BaseComponent first, then sphere
57        BaseComponent.__init__(self)
58        #apply(CFractalModel.__init__, (self,))
59        CFractalModel.__init__(self)
60       
61        ## Name of the model
62        self.name = "FractalModel"
63        ## Model description
64        self.description =""" The scattering intensity  I(x) = P(|x|)*S(|x|) + background, where
65                p(x)= scale * V * delta^(2)* F(x*radius)^(2)
66                F(x) = 3*[sin(x)-x cos(x)]/x**3
67                where delta = sldBlock -sldSolv.
68                scale        =  scale factor * Volume fraction
69                radius       =  Block radius
70                fractal_dim  =  Fractal dimension
71                cor_length  =  Correlation Length
72                sldBlock    =  SDL block
73                sldSolv  =  SDL solvent
74                background   =  background"""
75       
76        ## Parameter details [units, min, max]
77        self.details = {}
78        self.details['scale'] = ['', None, None]
79        self.details['radius'] = ['[A]', None, None]
80        self.details['fractal_dim'] = ['', None, None]
81        self.details['cor_length'] = ['[A]', None, None]
82        self.details['sldBlock'] = ['[1/A^(2)]', None, None]
83        self.details['sldSolv'] = ['[1/A^(2)]', None, None]
84        self.details['background'] = ['[1/cm]', None, None]
85
86        ## fittable parameters
87        self.fixed=[]
88       
89        ## non-fittable parameters
90        self.non_fittable = []
91       
92        ## parameters with orientation
93        self.orientation_params = []
94   
95    def __reduce_ex__(self, proto):
96        """
97        Overwrite the __reduce_ex__ of PyTypeObject *type call in the init of
98        c model.
99        """
100        return (create_FractalModel,tuple())
101       
102    def clone(self):
103        """ Return a identical copy of self """
104        return self._clone(FractalModel())   
105       
106   
107    def run(self, x=0.0):
108        """
109        Evaluate the model
110       
111        :param x: input q, or [q,phi]
112       
113        :return: scattering function P(q)
114       
115        """
116       
117        return CFractalModel.run(self, x)
118   
119    def runXY(self, x=0.0):
120        """
121        Evaluate the model in cartesian coordinates
122       
123        :param x: input q, or [qx, qy]
124       
125        :return: scattering function P(q)
126       
127        """
128       
129        return CFractalModel.runXY(self, x)
130       
131    def evalDistribution(self, x=[]):
132        """
133        Evaluate the model in cartesian coordinates
134       
135        :param x: input q[], or [qx[], qy[]]
136       
137        :return: scattering function P(q[])
138       
139        """
140        return CFractalModel.evalDistribution(self, x)
141       
142    def calculate_ER(self):
143        """
144        Calculate the effective radius for P(q)*S(q)
145       
146        :return: the value of the effective radius
147       
148        """       
149        return CFractalModel.calculate_ER(self)
150       
151    def set_dispersion(self, parameter, dispersion):
152        """
153        Set the dispersion object for a model parameter
154       
155        :param parameter: name of the parameter [string]
156        :param dispersion: dispersion object of type DispersionModel
157       
158        """
159        return CFractalModel.set_dispersion(self, parameter, dispersion.cdisp)
160       
161   
162# End of file
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