source: sasview/src/sas/sascalc/dataloader/readers/sesans_reader.py @ a81af92

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Last change on this file since a81af92 was a81af92, checked in by Adam Washington <adam.washington@…>, 7 years ago

Reject time travelling SESANS files

  • Property mode set to 100644
File size: 6.0 KB
RevLine 
[5e326a6]1"""
[edfc8ac]2    SESANS reader (based on ASCII reader)
[ecc8d1a8]3
[edfc8ac]4    Reader for .ses or .sesans file format
[ecc8d1a8]5
6    Jurrian Bakker
[5e326a6]7"""
[0ac6e11]8import logging
[e935ddb1]9import numpy as np
[5e326a6]10import os
[b5db35d]11from sas.sascalc.dataloader.data_info import Data1D
[5e326a6]12
13# Check whether we have a converter available
14has_converter = True
15try:
[b699768]16    from sas.sascalc.data_util.nxsunit import Converter
[5e326a6]17except:
18    has_converter = False
19_ZERO = 1e-16
20
[def97a0]21
[5e326a6]22class Reader:
23    """
24    Class to load sesans files (6 columns).
25    """
[def97a0]26    # File type
[5e326a6]27    type_name = "SESANS"
[ecc8d1a8]28
[def97a0]29    # Wildcards
[5e326a6]30    type = ["SESANS files (*.ses)|*.ses",
31            "SESANS files (*..sesans)|*.sesans"]
[def97a0]32    # List of allowed extensions
[5e326a6]33    ext = ['.ses', '.SES', '.sesans', '.SESANS']
[ecc8d1a8]34
[def97a0]35    # Flag to bypass extension check
[5e326a6]36    allow_all = True
[ecc8d1a8]37
[5e326a6]38    def read(self, path):
39        """
40        Load data file
[ecc8d1a8]41
[5e326a6]42        :param path: file path
[ecc8d1a8]43
[5e326a6]44        :return: SESANSData1D object, or None
[ecc8d1a8]45
[5e326a6]46        :raise RuntimeError: when the file can't be opened
47        :raise ValueError: when the length of the data vectors are inconsistent
48        """
49        if os.path.isfile(path):
50            basename = os.path.basename(path)
51            _, extension = os.path.splitext(basename)
[cb9feea8]52            if not (self.allow_all or extension.lower() in self.ext):
[5ae40e7]53                raise RuntimeError(
54                    "{} has an unrecognized file extension".format(path))
[5e326a6]55        else:
[5ae40e7]56            raise RuntimeError("{} is not a file".format(path))
[cb9feea8]57        with open(path, 'r') as input_f:
58            # Read in binary mode since GRASP frequently has no-ascii
59            # characters that brakes the open operation
60            line = input_f.readline()
61            params = {}
[2b310602]62            while not line.startswith("BEGIN_DATA"):
63                terms = line.split()
64                if len(terms) >= 2:
65                    params[terms[0]] = " ".join(terms[1:])
[cb9feea8]66                line = input_f.readline()
[2b310602]67            self.params = params
[10ab40e]68
[f344f6c]69            if "FileFormatVersion" not in self.params:
70                raise RuntimeError("SES file missing FileFormatVersion")
[a81af92]71            if float(self.params["FileFormatVersion"]) >= 2.0:
72                raise RuntimeError("SASView only supports SES version 1")
[f344f6c]73
[10ab40e]74            if "SpinEchoLength_unit" not in self.params:
75                raise RuntimeError("SpinEchoLength has no units")
76            if "Wavelength_unit" not in self.params:
77                raise RuntimeError("Wavelength has no units")
[5ae40e7]78            if params["SpinEchoLength_unit"] != params["Wavelength_unit"]:
79                raise RuntimeError("The spin echo data has rudely used "
80                                   "different units for the spin echo length "
81                                   "and the wavelength.  While sasview could "
82                                   "handle this instance, it is a violation "
83                                   "of the file format and will not be "
84                                   "handled by other software.")
[10ab40e]85
[2b310602]86            headers = input_f.readline().split()
87
[cb9feea8]88            data = np.loadtxt(input_f)
89            if data.size < 1:
90                raise RuntimeError("{} is empty".format(path))
[2b310602]91            x = data[:, headers.index("SpinEchoLength")]
[8e0dcac]92            if "SpinEchoLength_error" in headers:
93                dx = data[:, headers.index("SpinEchoLength_error")]
94            else:
95                dx = x*0.05
[2b310602]96            lam = data[:, headers.index("Wavelength")]
[8e0dcac]97            if "Wavelength_error" in headers:
98                dlam = data[:, headers.index("Wavelength_error")]
99            else:
100                dlam = lam*0.05
[2b310602]101            y = data[:, headers.index("Depolarisation")]
102            dy = data[:, headers.index("Depolarisation_error")]
103
104            lam_unit = self._unit_fetch("Wavelength")
105            x, x_unit = self._unit_conversion(x, "A", self._unit_fetch("SpinEchoLength"))
[cb9feea8]106            dx, dx_unit = self._unit_conversion(
107                dx, lam_unit,
[2b310602]108                self._unit_fetch("SpinEchoLength"))
[cb9feea8]109            dlam, dlam_unit = self._unit_conversion(
110                dlam, lam_unit,
[2b310602]111                self._unit_fetch("Wavelength"))
112            y_unit = self._unit_fetch("Depolarisation")
[cb9feea8]113
114            output = Data1D(x=x, y=y, lam=lam, dy=dy, dx=dx, dlam=dlam,
115                            isSesans=True)
[2b310602]116
117            output.y_unit = y_unit
118            output.x_unit = x_unit
[0ac6e11]119            output.source.wavelength_unit = lam_unit
120            output.source.wavelength = lam
[cb9feea8]121            self.filename = output.filename = basename
122            output.xaxis(r"\rm{z}", x_unit)
123            # Adjust label to ln P/(lam^2 t), remove lam column refs
124            output.yaxis(r"\rm{ln(P)/(t \lambda^2)}", y_unit)
125            # Store loading process information
126            output.meta_data['loader'] = self.type_name
127            output.sample.name = params["Sample"]
128            output.sample.ID = params["DataFileTitle"]
[857cc58]129            output.sample.thickness = self._unit_conversion(
130                float(params["Thickness"]), "cm",
131                self._unit_fetch("Thickness"))[0]
[cb9feea8]132
133            output.sample.zacceptance = (
[2b310602]134                float(params["Theta_zmax"]),
135                self._unit_fetch("Theta_zmax"))
[cb9feea8]136
137            output.sample.yacceptance = (
[2b310602]138                float(params["Theta_ymax"]),
139                self._unit_fetch("Theta_ymax"))
[cb9feea8]140            return output
[26d4864]141
[2d866370]142    @staticmethod
143    def _unit_conversion(value, value_unit, default_unit):
[09a0be5]144        """
145        Performs unit conversion on a measurement.
146
147        :param value: The magnitude of the measurement
148        :param value_unit: a string containing the final desired unit
149        :param default_unit: a string containing the units of the original measurement
150        :return: The magnitude of the measurement in the new units
151        """
[bc6532e]152        # (float, string, string) -> float
[def97a0]153        if has_converter and value_unit != default_unit:
[857cc58]154            data_conv_q = Converter(default_unit)
155            value = data_conv_q(value, units=value_unit)
[26d4864]156            new_unit = default_unit
157        else:
158            new_unit = value_unit
[e935ddb1]159        return value, new_unit
160
[2b310602]161    def _unit_fetch(self, unit):
162        return self.params[unit+"_unit"]
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