source: sasview/src/sans/models/RaspBerryModel.py @ 81b524f

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Last change on this file since 81b524f was 81b524f, checked in by Jeff Krzywon <jeffery.krzywon@…>, 11 years ago

This branch is now merged with the latest trunk release. I will merge them next.

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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: THIS FILE WAS GENERATED BY WRAPPERGENERATOR.PY
19         DO NOT MODIFY THIS FILE, MODIFY
20            src\sans\models\include\raspberry.h
21         AND RE-RUN THE GENERATOR SCRIPT
22"""
23
24from sans.models.BaseComponent import BaseComponent
25from sans.models.sans_extension.c_models import CRaspBerryModel
26
27def create_RaspBerryModel():
28    """
29       Create a model instance
30    """
31    obj = RaspBerryModel()
32    # CRaspBerryModel.__init__(obj) is called by
33    # the RaspBerryModel constructor
34    return obj
35
36class RaspBerryModel(CRaspBerryModel, BaseComponent):
37    """
38    Class that evaluates a RaspBerryModel model.
39    This file was auto-generated from src\sans\models\include\raspberry.h.
40    Refer to that file and the structure it contains
41    for details of the model.
42    List of default parameters:
43         volf_Lsph       = 0.05
44         radius_Lsph     = 5000.0 [A]
45         sld_Lsph        = -4e-07 [1/A^(2)]
46         volf_Ssph       = 0.005
47         radius_Ssph     = 100.0 [A]
48         surfrac_Ssph    = 0.4
49         sld_Ssph        = 3.5e-06 [1/A^(2)]
50         delta_Ssph      = 0.0
51         sld_solv        = 6.3e-06 [1/A^(2)]
52         background      = 0.0 [1/cm]
53
54    """
55       
56    def __init__(self, multfactor=1):
57        """ Initialization """
58        self.__dict__ = {}
59       
60        # Initialize BaseComponent first, then sphere
61        BaseComponent.__init__(self)
62        #apply(CRaspBerryModel.__init__, (self,))
63
64        CRaspBerryModel.__init__(self)
65        self.is_multifunc = False
66                       
67        ## Name of the model
68        self.name = "RaspBerryModel"
69        ## Model description
70        self.description = """
71         RaspBerryModel:
72                volf_Lsph = volume fraction large spheres
73                radius_Lsph = radius large sphere (A)
74                sld_Lsph = sld large sphere (A-2)
75                volf_Ssph = volume fraction small spheres
76                radius_Ssph = radius small sphere (A)
77                surfrac_Ssph = fraction of small spheres at surface
78                sld_Ssph = sld small sphere
79                delta_Ssph = small sphere penetration (A)
80                sld_solv   = sld solvent
81                background = background (cm-1)
82                Ref: J. coll. inter. sci. (2010) vol. 343 (1) pp. 36-41.
83        """
84       
85        ## Parameter details [units, min, max]
86        self.details = {}
87        self.details['volf_Lsph'] = ['', None, None]
88        self.details['radius_Lsph'] = ['[A]', None, None]
89        self.details['sld_Lsph'] = ['[1/A^(2)]', None, None]
90        self.details['volf_Ssph'] = ['', None, None]
91        self.details['radius_Ssph'] = ['[A]', None, None]
92        self.details['surfrac_Ssph'] = ['', None, None]
93        self.details['sld_Ssph'] = ['[1/A^(2)]', None, None]
94        self.details['delta_Ssph'] = ['', None, None]
95        self.details['sld_solv'] = ['[1/A^(2)]', None, None]
96        self.details['background'] = ['[1/cm]', None, None]
97
98        ## fittable parameters
99        self.fixed = ['radius_Lsph.width']
100       
101        ## non-fittable parameters
102        self.non_fittable = []
103       
104        ## parameters with orientation
105        self.orientation_params = []
106
107        ## parameters with magnetism
108        self.magnetic_params = []
109
110        self.category = None
111        self.multiplicity_info = None
112       
113    def __setstate__(self, state):
114        """
115        restore the state of a model from pickle
116        """
117        self.__dict__, self.params, self.dispersion = state
118       
119    def __reduce_ex__(self, proto):
120        """
121        Overwrite the __reduce_ex__ of PyTypeObject *type call in the init of
122        c model.
123        """
124        state = (self.__dict__, self.params, self.dispersion)
125        return (create_RaspBerryModel, tuple(), state, None, None)
126       
127    def clone(self):
128        """ Return a identical copy of self """
129        return self._clone(RaspBerryModel())   
130       
131    def run(self, x=0.0):
132        """
133        Evaluate the model
134       
135        :param x: input q, or [q,phi]
136       
137        :return: scattering function P(q)
138       
139        """
140        return CRaspBerryModel.run(self, x)
141   
142    def runXY(self, x=0.0):
143        """
144        Evaluate the model in cartesian coordinates
145       
146        :param x: input q, or [qx, qy]
147       
148        :return: scattering function P(q)
149       
150        """
151        return CRaspBerryModel.runXY(self, x)
152       
153    def evalDistribution(self, x):
154        """
155        Evaluate the model in cartesian coordinates
156       
157        :param x: input q[], or [qx[], qy[]]
158       
159        :return: scattering function P(q[])
160       
161        """
162        return CRaspBerryModel.evalDistribution(self, x)
163       
164    def calculate_ER(self):
165        """
166        Calculate the effective radius for P(q)*S(q)
167       
168        :return: the value of the effective radius
169       
170        """       
171        return CRaspBerryModel.calculate_ER(self)
172       
173    def calculate_VR(self):
174        """
175        Calculate the volf ratio for P(q)*S(q)
176       
177        :return: the value of the volf ratio
178       
179        """       
180        return CRaspBerryModel.calculate_VR(self)
181             
182    def set_dispersion(self, parameter, dispersion):
183        """
184        Set the dispersion object for a model parameter
185       
186        :param parameter: name of the parameter [string]
187        :param dispersion: dispersion object of type DispersionModel
188       
189        """
190        return CRaspBerryModel.set_dispersion(self,
191               parameter, dispersion.cdisp)
192       
193   
194# End of file
195
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