source: sasview/src/sas/qtgui/Plotting/Plotter2D.py @ 1431dab

ESS_GUIESS_GUI_batch_fittingESS_GUI_bumps_abstractionESS_GUI_iss1116ESS_GUI_iss879ESS_GUI_iss959ESS_GUI_openclESS_GUI_orderingESS_GUI_sync_sascalc
Last change on this file since 1431dab was e20870bc, checked in by Piotr Rozyczko <rozyczko@…>, 6 years ago

Masking dialog for fitting

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[49e124c]1import copy
2import numpy
3import pylab
[092a3d9]4import functools
[d6b8a1d]5import logging
[49e124c]6
[4992ff2]7from PyQt5 import QtCore
8from PyQt5 import QtGui
9from PyQt5 import QtWidgets
[49e124c]10
[31c5b58]11DEFAULT_CMAP = pylab.cm.jet
[4992ff2]12
13#import sys
14#print("SYS.PATH = ", sys.path)
15import matplotlib as mpl
16mpl.use("Qt5Agg")
17
[9290b1a]18from mpl_toolkits.mplot3d import Axes3D
[31c5b58]19
[dc5ef15]20from sas.sascalc.dataloader.manipulations import CircularAverage
21
22from sas.qtgui.Plotting.PlotterData import Data1D
23from sas.qtgui.Plotting.PlotterData import Data2D
24
[83eb5208]25import sas.qtgui.Plotting.PlotUtilities as PlotUtilities
26import sas.qtgui.Utilities.GuiUtils as GuiUtils
27from sas.qtgui.Plotting.PlotterBase import PlotterBase
28from sas.qtgui.Plotting.ColorMap import ColorMap
29from sas.qtgui.Plotting.BoxSum import BoxSum
30from sas.qtgui.Plotting.SlicerParameters import SlicerParameters
[dc5ef15]31from sas.qtgui.Plotting.Binder import BindArtist
32
33# TODO: move to sas.qtgui namespace
34from sas.qtgui.Plotting.Slicers.BoxSlicer import BoxInteractorX
35from sas.qtgui.Plotting.Slicers.BoxSlicer import BoxInteractorY
36from sas.qtgui.Plotting.Slicers.AnnulusSlicer import AnnulusInteractor
37from sas.qtgui.Plotting.Slicers.SectorSlicer import SectorInteractor
38from sas.qtgui.Plotting.Slicers.BoxSum import BoxSumCalculator
[49e124c]39
[fecfe28]40# Minimum value of Z for which we will present data.
[3bdbfcc]41MIN_Z = -32
[fecfe28]42
[416fa8f]43class Plotter2DWidget(PlotterBase):
[c4e5400]44    """
45    2D Plot widget for use with a QDialog
[fecfe28]46    """
[416fa8f]47    def __init__(self, parent=None, manager=None, quickplot=False, dimension=2):
[55d89f8]48        self.dimension = dimension
[416fa8f]49        super(Plotter2DWidget, self).__init__(parent, manager=manager, quickplot=quickplot)
[49e124c]50
[092a3d9]51        self.cmap = DEFAULT_CMAP.name
52        # Default scale
53        self.scale = 'log_{10}'
[3bdbfcc]54        # to set the order of lines drawn first.
55        self.slicer_z = 5
56        # Reference to the current slicer
57        self.slicer = None
[57b7ee2]58        self.slicer_widget = None
[3bdbfcc]59        # Create Artist and bind it
60        self.connect = BindArtist(self.figure)
[5d89f43]61        self.vmin = None
62        self.vmax = None
[e20870bc]63        self.im = None
[092a3d9]64
[116260a]65        self.manager = manager
66
[31c5b58]67    @property
68    def data(self):
69        return self._data
70
71    @data.setter
[49e124c]72    def data(self, data=None):
73        """ data setter """
[14d9c7b]74        self._data = data
[fecfe28]75        self.qx_data = data.qx_data
76        self.qy_data = data.qy_data
77        self.xmin = data.xmin
78        self.xmax = data.xmax
79        self.ymin = data.ymin
80        self.ymax = data.ymax
81        self.zmin = data.zmin
82        self.zmax = data.zmax
83        self.label = data.name
84        self.xLabel = "%s(%s)"%(data._xaxis, data._xunit)
85        self.yLabel = "%s(%s)"%(data._yaxis, data._yunit)
[49e124c]86        self.title(title=data.title)
87
[3bdbfcc]88    @property
89    def item(self):
90        ''' getter for this plot's QStandardItem '''
91        return self._item
92
93    @item.setter
94    def item(self, item=None):
95        ''' setter for this plot's QStandardItem '''
96        self._item = item
97
[d5c5d3d]98    def plot(self, data=None, marker=None, show_colorbar=True):
[49e124c]99        """
100        Plot 2D self._data
[5236449]101        marker - unused
[49e124c]102        """
[9290b1a]103        # Assing data
104        if isinstance(data, Data2D):
105            self.data = data
106
[3bdbfcc]107        assert self._data
[9290b1a]108
[64f1e93]109        # Toggle the scale
[092a3d9]110        zmin_2D_temp, zmax_2D_temp = self.calculateDepth()
[31c5b58]111
[64f1e93]112        # Prepare and show the plot
113        self.showPlot(data=self.data.data,
114                      qx_data=self.qx_data,
115                      qy_data=self.qy_data,
116                      xmin=self.xmin,
117                      xmax=self.xmax,
118                      ymin=self.ymin, ymax=self.ymax,
119                      cmap=self.cmap, zmin=zmin_2D_temp,
[d5c5d3d]120                      zmax=zmax_2D_temp, show_colorbar=show_colorbar)
[6d05e1d]121
[092a3d9]122    def calculateDepth(self):
123        """
124        Re-calculate the plot depth parameters depending on the scale
125        """
126        # Toggle the scale
[fbfc488]127        zmin_temp = self.zmin if self.zmin else MIN_Z
[092a3d9]128        zmax_temp = self.zmax
129        # self.scale predefined in the baseclass
[d6b8a1d]130        # in numpy > 1.12 power(int, -int) raises ValueException
131        # "Integers to negative integer powers are not allowed."
[092a3d9]132        if self.scale == 'log_{10}':
133            if self.zmin is not None:
[d6b8a1d]134                zmin_temp = numpy.power(10.0, self.zmin)
[092a3d9]135            if self.zmax is not None:
[d6b8a1d]136                zmax_temp = numpy.power(10.0, self.zmax)
[092a3d9]137        else:
138            if self.zmin is not None:
139                # min log value: no log(negative)
140                zmin_temp = MIN_Z if self.zmin <= 0 else numpy.log10(self.zmin)
141            if self.zmax is not None:
142                zmax_temp = numpy.log10(self.zmax)
143
144        return (zmin_temp, zmax_temp)
145
146
[b46f285]147    def createContextMenu(self):
[c4e5400]148        """
149        Define common context menu and associated actions for the MPL widget
150        """
151        self.defaultContextMenu()
152
[092a3d9]153        self.contextMenu.addSeparator()
154        self.actionDataInfo = self.contextMenu.addAction("&DataInfo")
155        self.actionDataInfo.triggered.connect(
[161713c]156             functools.partial(self.onDataInfo, self.data))
[092a3d9]157
158        self.actionSavePointsAsFile = self.contextMenu.addAction("&Save Points as a File")
159        self.actionSavePointsAsFile.triggered.connect(
[161713c]160             functools.partial(self.onSavePoints, self.data))
[092a3d9]161        self.contextMenu.addSeparator()
162
163        self.actionCircularAverage = self.contextMenu.addAction("&Perform Circular Average")
164        self.actionCircularAverage.triggered.connect(self.onCircularAverage)
165
166        self.actionSectorView = self.contextMenu.addAction("&Sector [Q View]")
167        self.actionSectorView.triggered.connect(self.onSectorView)
168        self.actionAnnulusView = self.contextMenu.addAction("&Annulus [Phi View]")
169        self.actionAnnulusView.triggered.connect(self.onAnnulusView)
170        self.actionBoxSum = self.contextMenu.addAction("&Box Sum")
171        self.actionBoxSum.triggered.connect(self.onBoxSum)
172        self.actionBoxAveragingX = self.contextMenu.addAction("&Box Averaging in Qx")
173        self.actionBoxAveragingX.triggered.connect(self.onBoxAveragingX)
174        self.actionBoxAveragingY = self.contextMenu.addAction("&Box Averaging in Qy")
175        self.actionBoxAveragingY.triggered.connect(self.onBoxAveragingY)
[3bdbfcc]176        # Additional items for slicer interaction
177        if self.slicer:
178            self.actionClearSlicer = self.contextMenu.addAction("&Clear Slicer")
179            self.actionClearSlicer.triggered.connect(self.onClearSlicer)
[57b7ee2]180            if self.slicer.__class__.__name__ != "BoxSumCalculator":
181                self.actionEditSlicer = self.contextMenu.addAction("&Edit Slicer Parameters")
182                self.actionEditSlicer.triggered.connect(self.onEditSlicer)
[092a3d9]183        self.contextMenu.addSeparator()
184        self.actionColorMap = self.contextMenu.addAction("&2D Color Map")
185        self.actionColorMap.triggered.connect(self.onColorMap)
186        self.contextMenu.addSeparator()
187        self.actionChangeScale = self.contextMenu.addAction("Toggle Linear/Log Scale")
188        self.actionChangeScale.triggered.connect(self.onToggleScale)
189
[b46f285]190    def createContextMenuQuick(self):
[6d05e1d]191        """
192        Define context menu and associated actions for the quickplot MPL widget
193        """
[c4e5400]194        self.defaultContextMenu()
195
[55d89f8]196        if self.dimension == 2:
197            self.actionToggleGrid = self.contextMenu.addAction("Toggle Grid On/Off")
198            self.contextMenu.addSeparator()
[6d05e1d]199        self.actionChangeScale = self.contextMenu.addAction("Toggle Linear/Log Scale")
200
201        # Define the callbacks
[c4e5400]202        self.actionChangeScale.triggered.connect(self.onToggleScale)
[55d89f8]203        if self.dimension == 2:
204            self.actionToggleGrid.triggered.connect(self.onGridToggle)
[6d05e1d]205
206    def onToggleScale(self, event):
207        """
208        Toggle axis and replot image
209        """
[092a3d9]210        # self.scale predefined in the baseclass
211        if self.scale == 'log_{10}':
212            self.scale = 'linear'
213        else:
214            self.scale = 'log_{10}'
215
[55d89f8]216        self.plot()
[6d05e1d]217
[3bdbfcc]218    def onClearSlicer(self):
219        """
220        Remove all sclicers from the chart
221        """
[b789967]222        if self.slicer is None:
223            return
224
225        self.slicer.clear()
226        self.canvas.draw()
227        self.slicer = None
[3bdbfcc]228
229    def onEditSlicer(self):
230        """
231        Present a small dialog for manipulating the current slicer
232        """
233        assert self.slicer
[57b7ee2]234        # Only show the dialog if not currently shown
235        if self.slicer_widget:
236            return
237        def slicer_closed():
238            # Need to disconnect the signal!!
239            self.slicer_widget.close_signal.disconnect()
240            # reset slicer_widget on "Edit Slicer Parameters" window close
241            self.slicer_widget = None
[3bdbfcc]242
243        self.param_model = self.slicer.model()
[57b7ee2]244        # Pass the model to the Slicer Parameters widget
[161713c]245        self.slicer_widget = SlicerParameters(model=self.param_model,
246                                              validate_method=self.slicer.validate)
[57b7ee2]247        self.slicer_widget.close_signal.connect(slicer_closed)
[9a05a8d5]248        # Add the plot to the workspace
[7969b9c]249        self.manager.parent.workspace().addSubWindow(self.slicer_widget)
[b789967]250
[3bdbfcc]251        self.slicer_widget.show()
252
[092a3d9]253    def onCircularAverage(self):
254        """
[3bdbfcc]255        Perform circular averaging on Data2D
[092a3d9]256        """
[3bdbfcc]257        # Find the best number of bins
258        npt = numpy.sqrt(len(self.data.data[numpy.isfinite(self.data.data)]))
259        npt = numpy.floor(npt)
260        # compute the maximum radius of data2D
261        self.qmax = max(numpy.fabs(self.data.xmax),
262                        numpy.fabs(self.data.xmin))
263        self.ymax = max(numpy.fabs(self.data.ymax),
264                        numpy.fabs(self.data.ymin))
265        self.radius = numpy.sqrt(numpy.power(self.qmax, 2) + numpy.power(self.ymax, 2))
266        #Compute beam width
267        bin_width = (self.qmax + self.qmax) / npt
268        # Create data1D circular average of data2D
269        circle = CircularAverage(r_min=0, r_max=self.radius, bin_width=bin_width)
270        circ = circle(self.data)
271        dxl = circ.dxl if hasattr(circ, "dxl") else None
272        dxw = circ.dxw if hasattr(circ, "dxw") else None
273
274        new_plot = Data1D(x=circ.x, y=circ.y, dy=circ.dy, dx=circ.dx)
275        new_plot.dxl = dxl
276        new_plot.dxw = dxw
277        new_plot.name = new_plot.title = "Circ avg " + self.data.name
278        new_plot.source = self.data.source
279        new_plot.interactive = True
280        new_plot.detector = self.data.detector
281
282        # Define axes if not done yet.
283        new_plot.xaxis("\\rm{Q}", "A^{-1}")
284        if hasattr(self.data, "scale") and \
285                    self.data.scale == 'linear':
286            new_plot.ytransform = 'y'
287            new_plot.yaxis("\\rm{Residuals} ", "normalized")
288        else:
289            new_plot.yaxis("\\rm{Intensity} ", "cm^{-1}")
290
291        new_plot.group_id = "2daverage" + self.data.name
292        new_plot.id = "Circ avg " + self.data.name
293        new_plot.is_data = True
[cee5c78]294        GuiUtils.updateModelItemWithPlot(self._item, new_plot, new_plot.id)
[d6b8a1d]295
[116260a]296        self.manager.communicator.plotUpdateSignal.emit([new_plot])
[3bdbfcc]297
298    def setSlicer(self, slicer):
299        """
300        Clear the previous slicer and create a new one.
301        slicer: slicer class to create
302        """
303        # Clear current slicer
304        if self.slicer is not None:
305            self.slicer.clear()
306        # Create a new slicer
307        self.slicer_z += 1
308        self.slicer = slicer(self, self.ax, item=self._item, zorder=self.slicer_z)
309        self.ax.set_ylim(self.data.ymin, self.data.ymax)
310        self.ax.set_xlim(self.data.xmin, self.data.xmax)
311        # Draw slicer
312        self.figure.canvas.draw()
313        self.slicer.update()
[092a3d9]314
[57b7ee2]315        # Reset the model on the Edit slicer parameters widget
316        self.param_model = self.slicer.model()
317        if self.slicer_widget:
318            self.slicer_widget.setModel(self.param_model)
319
[092a3d9]320    def onSectorView(self):
321        """
[3bdbfcc]322        Perform sector averaging on Q and draw sector slicer
[092a3d9]323        """
[3bdbfcc]324        self.setSlicer(slicer=SectorInteractor)
[092a3d9]325
326    def onAnnulusView(self):
327        """
[3bdbfcc]328        Perform sector averaging on Phi and draw annulus slicer
[092a3d9]329        """
[3bdbfcc]330        self.setSlicer(slicer=AnnulusInteractor)
[092a3d9]331
332    def onBoxSum(self):
333        """
[3bdbfcc]334        Perform 2D Data averaging Qx and Qy.
335        Display box slicer details.
[092a3d9]336        """
[3bdbfcc]337        self.onClearSlicer()
338        self.slicer_z += 1
339        self.slicer = BoxSumCalculator(self, self.ax, zorder=self.slicer_z)
340
341        self.ax.set_ylim(self.data.ymin, self.data.ymax)
342        self.ax.set_xlim(self.data.xmin, self.data.xmax)
343        self.figure.canvas.draw()
344        self.slicer.update()
345
346        # Get the BoxSumCalculator model.
347        self.box_sum_model = self.slicer.model()
348        # Pass the BoxSumCalculator model to the BoxSum widget
349        self.boxwidget = BoxSum(self, model=self.box_sum_model)
350        # Add the plot to the workspace
[7969b9c]351        self.manager.parent.workspace().addSubWindow(self.boxwidget)
[3bdbfcc]352        self.boxwidget.show()
[092a3d9]353
354    def onBoxAveragingX(self):
355        """
[3bdbfcc]356        Perform 2D data averaging on Qx
357        Create a new slicer.
[092a3d9]358        """
[3bdbfcc]359        self.setSlicer(slicer=BoxInteractorX)
[092a3d9]360
361    def onBoxAveragingY(self):
362        """
[3bdbfcc]363        Perform 2D data averaging on Qy
364        Create a new slicer .
[092a3d9]365        """
[3bdbfcc]366        self.setSlicer(slicer=BoxInteractorY)
[092a3d9]367
368    def onColorMap(self):
369        """
370        Display the color map dialog and modify the plot's map accordingly
371        """
372        color_map_dialog = ColorMap(self, cmap=self.cmap,
[03c372d]373                                    vmin=self.vmin,
374                                    vmax=self.vmax,
[092a3d9]375                                    data=self.data)
376
[5d89f43]377        color_map_dialog.apply_signal.connect(self.onApplyMap)
378
[4992ff2]379        if color_map_dialog.exec_() == QtWidgets.QDialog.Accepted:
[5d89f43]380            self.onApplyMap(color_map_dialog.norm(), color_map_dialog.cmap())
381
382    def onApplyMap(self, v_values, cmap):
383        """
384        Update the chart color map based on data passed from the widget
385        """
386        self.cmap = str(cmap)
387        self.vmin, self.vmax = v_values
388        # Redraw the chart with new cmap
389        self.plot()
[092a3d9]390
[64f1e93]391    def showPlot(self, data, qx_data, qy_data, xmin, xmax, ymin, ymax,
[d5c5d3d]392                 zmin, zmax, label='data2D', cmap=DEFAULT_CMAP, show_colorbar=True):
[6d05e1d]393        """
[64f1e93]394        Render and show the current data
[6d05e1d]395        """
396        self.qx_data = qx_data
397        self.qy_data = qy_data
398        self.xmin = xmin
399        self.xmax = xmax
400        self.ymin = ymin
401        self.ymax = ymax
402        self.zmin = zmin
403        self.zmax = zmax
404        # If we don't have any data, skip.
[fecfe28]405        if data is None:
[6d05e1d]406            return
[f4a1433]407        if data.ndim == 0:
408            return
409        elif data.ndim == 1:
[6d05e1d]410            output = PlotUtilities.build_matrix(data, self.qx_data, self.qy_data)
411        else:
412            output = copy.deepcopy(data)
413
414        zmin_temp = self.zmin
415        # check scale
416        if self.scale == 'log_{10}':
417            try:
418                if  self.zmin <= 0  and len(output[output > 0]) > 0:
[092a3d9]419                    zmin_temp = self.zmin
[6d05e1d]420                    output[output > 0] = numpy.log10(output[output > 0])
421                elif self.zmin <= 0:
422                    zmin_temp = self.zmin
423                    output[output > 0] = numpy.zeros(len(output))
[fecfe28]424                    output[output <= 0] = MIN_Z
[6d05e1d]425                else:
426                    zmin_temp = self.zmin
427                    output[output > 0] = numpy.log10(output[output > 0])
428            except:
429                #Too many problems in 2D plot with scale
430                output[output > 0] = numpy.log10(output[output > 0])
431                pass
432
433        self.cmap = cmap
434        if self.dimension != 3:
435            #Re-adjust colorbar
436            self.figure.subplots_adjust(left=0.2, right=.8, bottom=.2)
437
[5d89f43]438            zmax_temp = self.zmax
439            if self.vmin is not None:
440                zmin_temp = self.vmin
441                zmax_temp = self.vmax
[e20870bc]442            if self.im is not None:
443                self.im.set_data(output)
444            else:
445                self.im = self.ax.imshow(output, interpolation='nearest',
[01cda57]446                                # origin='lower',
[5d89f43]447                                vmin=zmin_temp, vmax=zmax_temp,
[6d05e1d]448                                cmap=self.cmap,
449                                extent=(self.xmin, self.xmax,
450                                        self.ymin, self.ymax))
451
452            cbax = self.figure.add_axes([0.84, 0.2, 0.02, 0.7])
[b4b8589]453
454            # Current labels for axes
455            self.ax.set_ylabel(self.y_label)
456            self.ax.set_xlabel(self.x_label)
457
458            # Title only for regular charts
459            if not self.quickplot:
460                self.ax.set_title(label=self._title)
461
[fecfe28]462            if cbax is None:
463                ax.set_frame_on(False)
[e20870bc]464                cb = self.figure.colorbar(self.im, shrink=0.8, aspect=20)
[fecfe28]465            else:
[e20870bc]466                cb = self.figure.colorbar(self.im, cax=cbax)
[fecfe28]467
[e20870bc]468            cb.update_bruteforce(self.im)
[fecfe28]469            cb.set_label('$' + self.scale + '$')
[b4b8589]470
[092a3d9]471            self.vmin = cb.vmin
472            self.vmax = cb.vmax
473
[d5c5d3d]474            if show_colorbar is False:
475                cb.remove()
476
[6d05e1d]477        else:
478            # clear the previous 2D from memory
479            self.figure.clear()
480
481            self.figure.subplots_adjust(left=0.1, right=.8, bottom=.1)
482
[3bdbfcc]483            data_x, data_y = numpy.meshgrid(self._data.x_bins[0:-1],
484                                            self._data.y_bins[0:-1])
[6d05e1d]485
[64f1e93]486            ax = Axes3D(self.figure)
[b4b8589]487
[64f1e93]488            # Disable rotation for large sets.
489            # TODO: Define "large" for a dataset
490            SET_TOO_LARGE = 500
[3bdbfcc]491            if len(data_x) > SET_TOO_LARGE:
[64f1e93]492                ax.disable_mouse_rotation()
493
[6d05e1d]494            self.figure.canvas.resizing = False
[3bdbfcc]495            im = ax.plot_surface(data_x, data_y, output, rstride=1,
496                                 cstride=1, cmap=cmap,
[6d05e1d]497                                 linewidth=0, antialiased=False)
[55d89f8]498            self.ax.set_axis_off()
[6d05e1d]499
500        if self.dimension != 3:
501            self.figure.canvas.draw_idle()
502        else:
503            self.figure.canvas.draw()
[416fa8f]504
[3bdbfcc]505    def update(self):
506        self.figure.canvas.draw()
507
508    def draw(self):
509        self.figure.canvas.draw()
510
[0274aea]511    def replacePlot(self, id, new_plot):
512        """
513        Replace data in current chart.
[01cda57]514        This effectively refreshes the chart with changes to one of its plots
[0274aea]515        """
516        self.plot(data=new_plot)
517
[3bdbfcc]518
[4992ff2]519class Plotter2D(QtWidgets.QDialog, Plotter2DWidget):
[3bdbfcc]520    """
521    Plotter widget implementation
522    """
[416fa8f]523    def __init__(self, parent=None, quickplot=False, dimension=2):
[4992ff2]524        QtWidgets.QDialog.__init__(self)
[cad617b]525        Plotter2DWidget.__init__(self, manager=parent, quickplot=quickplot, dimension=dimension)
[c4e5400]526        icon = QtGui.QIcon()
527        icon.addPixmap(QtGui.QPixmap(":/res/ball.ico"), QtGui.QIcon.Normal, QtGui.QIcon.Off)
528        self.setWindowIcon(icon)
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