[ec658c85] | 1 | #!/usr/bin/env python |
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| 2 | |
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[79ac6f8] | 3 | ############################################################################## |
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| 4 | # This software was developed by the University of Tennessee as part of the |
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| 5 | # Distributed Data Analysis of Neutron Scattering Experiments (DANSE) |
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| 6 | # project funded by the US National Science Foundation. |
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| 7 | # |
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| 8 | # If you use DANSE applications to do scientific research that leads to |
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| 9 | # publication, we ask that you acknowledge the use of the software with the |
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| 10 | # following sentence: |
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| 11 | # |
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| 12 | # "This work benefited from DANSE software developed under NSF award DMR-0520547." |
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| 13 | # |
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| 14 | # copyright 2008, University of Tennessee |
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| 15 | ############################################################################## |
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[ec658c85] | 16 | |
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| 17 | |
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[79ac6f8] | 18 | """ |
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| 19 | Provide functionality for a C extension model |
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[ec658c85] | 20 | |
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[79ac6f8] | 21 | :WARNING: THIS FILE WAS GENERATED BY WRAPPERGENERATOR.PY |
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| 22 | DO NOT MODIFY THIS FILE, MODIFY ..\c_extensions\polygausscoil.h |
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| 23 | AND RE-RUN THE GENERATOR SCRIPT |
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[ec658c85] | 24 | |
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| 25 | """ |
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| 26 | |
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| 27 | from sans.models.BaseComponent import BaseComponent |
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[92df66f8] | 28 | from sans.models.sans_extension.c_models import CPoly_GaussCoil |
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[ec658c85] | 29 | import copy |
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[96656e3] | 30 | |
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| 31 | def create_Poly_GaussCoil(): |
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| 32 | obj = Poly_GaussCoil() |
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| 33 | #CPoly_GaussCoil.__init__(obj) is called by Poly_GaussCoil constructor |
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| 34 | return obj |
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| 35 | |
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[ec658c85] | 36 | class Poly_GaussCoil(CPoly_GaussCoil, BaseComponent): |
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[79ac6f8] | 37 | """ |
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| 38 | Class that evaluates a Poly_GaussCoil model. |
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| 39 | This file was auto-generated from ..\c_extensions\polygausscoil.h. |
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| 40 | Refer to that file and the structure it contains |
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| 41 | for details of the model. |
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| 42 | List of default parameters: |
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[ec658c85] | 43 | scale = 1.0 |
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| 44 | rg = 60.0 [A] |
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| 45 | poly_m = 2.0 [Mw/Mn] |
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| 46 | background = 0.001 [1/cm] |
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| 47 | |
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| 48 | """ |
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| 49 | |
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| 50 | def __init__(self): |
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| 51 | """ Initialization """ |
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| 52 | |
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| 53 | # Initialize BaseComponent first, then sphere |
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| 54 | BaseComponent.__init__(self) |
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[96656e3] | 55 | #apply(CPoly_GaussCoil.__init__, (self,)) |
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[ec658c85] | 56 | CPoly_GaussCoil.__init__(self) |
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| 57 | |
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| 58 | ## Name of the model |
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| 59 | self.name = "Poly_GaussCoil" |
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| 60 | ## Model description |
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[8426622] | 61 | self.description ="""I(q)=(scale)*2*[(1+U*x)^(-1/U)+x-1]/[(1+U)*x^2] + background |
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| 62 | where x = [rg^2*q^2] |
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| 63 | and the polydispersity is |
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[ec658c85] | 64 | U = [M_w/M_n]-1. |
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| 65 | scale = scale factor * volume fraction |
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[8426622] | 66 | rg = radius of gyration |
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[ec658c85] | 67 | poly_m = polydispersity of molecular weight |
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[8426622] | 68 | background = incoherent background""" |
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[ec658c85] | 69 | |
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| 70 | ## Parameter details [units, min, max] |
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| 71 | self.details = {} |
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| 72 | self.details['scale'] = ['', None, None] |
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| 73 | self.details['rg'] = ['[A]', None, None] |
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| 74 | self.details['poly_m'] = ['[Mw/Mn]', None, None] |
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| 75 | self.details['background'] = ['[1/cm]', None, None] |
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| 76 | |
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| 77 | ## fittable parameters |
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| 78 | self.fixed=[] |
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| 79 | |
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[35aface] | 80 | ## non-fittable parameters |
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[96656e3] | 81 | self.non_fittable = [] |
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[35aface] | 82 | |
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[ec658c85] | 83 | ## parameters with orientation |
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[96656e3] | 84 | self.orientation_params = [] |
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[c7a7e1b] | 85 | |
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| 86 | def __setstate__(self, state): |
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| 87 | """ |
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| 88 | restore the state of a model from pickle |
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| 89 | """ |
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| 90 | self.__dict__, self.params, self.dispersion = state |
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| 91 | |
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[96656e3] | 92 | def __reduce_ex__(self, proto): |
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[79ac6f8] | 93 | """ |
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[96656e3] | 94 | Overwrite the __reduce_ex__ of PyTypeObject *type call in the init of |
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| 95 | c model. |
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[79ac6f8] | 96 | """ |
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[c7a7e1b] | 97 | state = (self.__dict__, self.params, self.dispersion) |
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| 98 | return (create_Poly_GaussCoil,tuple(), state, None, None) |
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[ec658c85] | 99 | |
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[96656e3] | 100 | def clone(self): |
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| 101 | """ Return a identical copy of self """ |
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| 102 | return self._clone(Poly_GaussCoil()) |
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[ec658c85] | 103 | |
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| 104 | |
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[79ac6f8] | 105 | def run(self, x=0.0): |
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| 106 | """ |
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| 107 | Evaluate the model |
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| 108 | |
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| 109 | :param x: input q, or [q,phi] |
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| 110 | |
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| 111 | :return: scattering function P(q) |
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| 112 | |
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[ec658c85] | 113 | """ |
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| 114 | |
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| 115 | return CPoly_GaussCoil.run(self, x) |
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| 116 | |
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[79ac6f8] | 117 | def runXY(self, x=0.0): |
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| 118 | """ |
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| 119 | Evaluate the model in cartesian coordinates |
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| 120 | |
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| 121 | :param x: input q, or [qx, qy] |
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| 122 | |
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| 123 | :return: scattering function P(q) |
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| 124 | |
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[ec658c85] | 125 | """ |
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| 126 | |
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| 127 | return CPoly_GaussCoil.runXY(self, x) |
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| 128 | |
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[79ac6f8] | 129 | def evalDistribution(self, x=[]): |
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| 130 | """ |
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| 131 | Evaluate the model in cartesian coordinates |
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| 132 | |
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| 133 | :param x: input q[], or [qx[], qy[]] |
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| 134 | |
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| 135 | :return: scattering function P(q[]) |
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| 136 | |
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[ec658c85] | 137 | """ |
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| 138 | return CPoly_GaussCoil.evalDistribution(self, x) |
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| 139 | |
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| 140 | def calculate_ER(self): |
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[79ac6f8] | 141 | """ |
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| 142 | Calculate the effective radius for P(q)*S(q) |
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| 143 | |
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| 144 | :return: the value of the effective radius |
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| 145 | |
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[ec658c85] | 146 | """ |
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| 147 | return CPoly_GaussCoil.calculate_ER(self) |
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| 148 | |
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| 149 | def set_dispersion(self, parameter, dispersion): |
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| 150 | """ |
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[79ac6f8] | 151 | Set the dispersion object for a model parameter |
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| 152 | |
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| 153 | :param parameter: name of the parameter [string] |
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| 154 | :param dispersion: dispersion object of type DispersionModel |
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| 155 | |
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[ec658c85] | 156 | """ |
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| 157 | return CPoly_GaussCoil.set_dispersion(self, parameter, dispersion.cdisp) |
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| 158 | |
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| 159 | |
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| 160 | # End of file |
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