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# -*- coding: utf-8 -*-
"""
/***************************************************************************
HUB TimeSeriesViewer
-------------------
begin : 2017-08-04
git sha : $Format:%H$
copyright : (C) 2017 by HU-Berlin
email : benjamin.jakimow@geo.hu-berlin.de
***************************************************************************/
/***************************************************************************
* *
* This program is free software; you can redistribute it and/or modify *
* it under the terms of the GNU General Public License as published by *
* the Free Software Foundation; either version 2 of the License, or *
* (at your option) any later version. *
* *
***************************************************************************/
"""
# noinspection PyPep8Naming
from __future__ import absolute_import
import os, sys, pickle, datetime
from qgis.gui import *
from qgis.core import *
from qgis.core import QgsExpression
from PyQt4.QtCore import *
from PyQt4.QtXml import *
from PyQt4.QtGui import *
from timeseriesviewer import jp, SETTINGS
from timeseriesviewer.timeseries import *
from timeseriesviewer.utils import SpatialExtent, SpatialPoint, px2geo
from timeseriesviewer.ui.docks import TsvDockWidgetBase, loadUI
from timeseriesviewer.plotstyling import PlotStyle, PlotStyleButton
from timeseriesviewer.pixelloader import PixelLoader, PixelLoaderTask
from timeseriesviewer.sensorvisualization import SensorListModel
from timeseriesviewer.temporalprofiles import *
import pyqtgraph as pg
from pyqtgraph import functions as fn
from pyqtgraph import AxisItem
import datetime
from osgeo import gdal, gdal_array
import numpy as np
LABEL_DN = 'DN or Index'
LABEL_TIME = 'Date'
OPENGL_AVAILABLE = False
try:
import OpenGL
OPENGL_AVAILABLE = True
from pyqtgraph.opengl import GLViewWidget
class ViewWidget3D(GLViewWidget):
def paintGL(self, *args, **kwds):
GLViewWidget.paintGL(self, *args, **kwds)
self.qglColor(Qt.white)
self.renderAnnotations()
def renderAnnotations(self):
self.renderText(0.8, 0.8, 0.8, 'text 3D')
self.renderText(5, 10, 'text 2D fixed')
"""
class TemporalProfileGLLinePlotItem(gl.GLLinePlotItem):
def __init__(self, plotStyle, *args, **kwds):
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
gl.GLLinePlotItem
"""
if DEBUG:
print('unable to import package OpenGL')
def getTextColorWithContrast(c):
assert isinstance(c, QColor)
if c.lightness() < 0.5:
return QColor('white')
else:
return QColor('black')
def selectedModelIndices(tableView):
assert isinstance(tableView, QTableView)
result = {}
sm = tableView.selectionModel()
m = tableView.model()
if isinstance(sm, QItemSelectionModel) and isinstance(m, QAbstractItemModel):
for idx in sm.selectedIndexes():
assert isinstance(idx, QModelIndex)
if idx.row() not in result.keys():
result[idx.row()] = idx
return result.values()
class DateTimeAxis(pg.AxisItem):
def __init__(self, *args, **kwds):
super(DateTimeAxis, self).__init__(*args, **kwds)
self.setRange(1,3000)
self.enableAutoSIPrefix(False)
self.labelAngle = 0
def logTickStrings(self, values, scale, spacing):
s = ""
def tickStrings(self, values, scale, spacing):
strns = []
if len(values) == 0:
return []
#assert isinstance(values[0],
values = [num2date(v) if v > 0 else num2date(1) for v in values]
rng = max(values)-min(values)
ndays = rng.astype(int)
strns = []
for v in values:
if ndays == 0:
strns.append(v.astype(str))
strns.append(v.astype(str))
return strns
def tickValues(self, minVal, maxVal, size):
d = super(DateTimeAxis, self).tickValues(minVal, maxVal, size)
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def drawPicture(self, p, axisSpec, tickSpecs, textSpecs):
p.setRenderHint(p.Antialiasing, False)
p.setRenderHint(p.TextAntialiasing, True)
## draw long line along axis
pen, p1, p2 = axisSpec
p.setPen(pen)
p.drawLine(p1, p2)
p.translate(0.5, 0) ## resolves some damn pixel ambiguity
## draw ticks
for pen, p1, p2 in tickSpecs:
p.setPen(pen)
p.drawLine(p1, p2)
## Draw all text
if self.tickFont is not None:
p.setFont(self.tickFont)
p.setPen(self.pen())
#for rect, flags, text in textSpecs:
# p.drawText(rect, flags, text)
# # p.drawRect(rect)
#see https://github.com/pyqtgraph/pyqtgraph/issues/322
for rect, flags, text in textSpecs:
p.save() # save the painter state
p.translate(rect.center()) # move coordinate system to center of text rect
p.rotate(self.labelAngle) # rotate text
p.translate(-rect.center()) # revert coordinate system
p.drawText(rect, flags, text)
p.restore() # restore the painter state
def __init__(self, *args, **kwds):
# menu creation is deferred because it is expensive and often
# the user will never see the menu anyway.
self.menu = None
def boundingRect(self):
return super(_SensorPoints,self).boundingRect()
def paint(self, p, *args):
super(_SensorPoints, self).paint(p, *args)
# On right-click, raise the context menu
def mouseClickEvent(self, ev):
if ev.button() == QtCore.Qt.RightButton:
if self.raiseContextMenu(ev):
ev.accept()
def raiseContextMenu(self, ev):
menu = self.getContextMenus()
# Let the scene add on to the end of our context menu
# (this is optional)
menu = self.scene().addParentContextMenus(self, menu, ev)
pos = ev.screenPos()
menu.popup(QtCore.QPoint(pos.x(), pos.y()))
return True
# This method will be called when this item's _children_ want to raise
# a context menu that includes their parents' menus.
def getContextMenus(self, event=None):
if self.menu is None:
self.menu = QMenu()
self.menu.setTitle(self.name + " options..")
green = QAction("Turn green", self.menu)
green.triggered.connect(self.setGreen)
self.menu.addAction(green)
self.menu.green = green
blue = QAction("Turn blue", self.menu)
blue.triggered.connect(self.setBlue)
self.menu.addAction(blue)
self.menu.green = blue
alpha = QWidgetAction(self.menu)
alphaSlider = QSlider()
alphaSlider.setOrientation(QtCore.Qt.Horizontal)
alphaSlider.setMaximum(255)
alphaSlider.setValue(255)
alphaSlider.valueChanged.connect(self.setAlpha)
alpha.setDefaultWidget(alphaSlider)
self.menu.addAction(alpha)
self.menu.alpha = alpha
self.menu.alphaSlider = alphaSlider
return self.menu
class PlotSettingsModel2DWidgetDelegate(QStyledItemDelegate):
"""
def __init__(self, tableView, timeSeries, temporalProfileListModel, parent=None):
super(PlotSettingsModel2DWidgetDelegate, self).__init__(parent=parent)
self._preferedSize = QgsFieldExpressionWidget().sizeHint()
self.mTableView = tableView
self.mTimeSeries = timeSeries
self.mTemporalProfileListModel = temporalProfileListModel
self.mSensorLayers = {}
def setItemDelegates(self, tableView):
assert isinstance(tableView, QTableView)
model = tableView.model()
assert isinstance(model, PlotSettingsModel2D)
for c in [model.cnSensor, model.cnExpression, model.cnStyle, model.cnTemporalProfile]:
i = model.columNames.index(c)
tableView.setItemDelegateForColumn(i, self)
def getColumnName(self, index):
assert index.isValid()
assert isinstance(model, PlotSettingsModel2D)
"""
def sizeHint(self, options, index):
s = super(ExpressionDelegate, self).sizeHint(options, index)
exprString = self.tableView.model().data(index)
l = QLabel()
l.setText(exprString)
x = l.sizeHint().width() + 100
s = QSize(x, s.height())
return self._preferedSize
"""
def exampleLyr(self, sensor):
assert isinstance(sensor, SensorInstrument)
if sensor not in self.mSensorLayers.keys():
crs = QgsCoordinateReferenceSystem('EPSG:4862')
uri = 'Point?crs={}'.format(crs.authid())
lyr = QgsVectorLayer(uri, 'LOCATIONS', 'memory', False)
f = sensorExampleQgsFeature(sensor)
assert isinstance(f, QgsFeature)
assert lyr.startEditing()
for field in f.fields():
lyr.addAttribute(field)
lyr.addFeature(f)
lyr.commitChanges()
self.mSensorLayers[sensor] = lyr
return self.mSensorLayers[sensor]
def createEditor(self, parent, option, index):
cname = self.getColumnName(index)
if index.isValid() and isinstance(model, PlotSettingsModel2D):
if isinstance(plotStyle, TemporalProfile2DPlotStyle):
if cname == model.cnExpression:
w = QgsFieldExpressionWidget(parent=parent)
w.setExpression(plotStyle.expression())
w.setLayer(self.exampleLyr(plotStyle.sensor()))
plotStyle.sigSensorChanged.connect(lambda s : w.setLayer(self.exampleLyr(s)))
w.setToolTip('Set an expression to specify the image band or calculate a spectral index.')
w.fieldChanged[str,bool].connect(lambda n, b : self.checkData(index, w, w.expression()))
elif cname == model.cnStyle:
w = PlotStyleButton(parent=parent)
w.setPlotStyle(plotStyle)
w.setToolTip('Set style.')
w.sigPlotStyleChanged.connect(lambda: self.checkData(index, w, w.plotStyle()))
elif cname == model.cnSensor:
w = QComboBox(parent=parent)
w.setModel(m)
elif cname == model.cnTemporalProfile:
w = QComboBox(parent=parent)
w.setModel(self.mTemporalProfileListModel)
return w
def checkData(self, index, w, expression):
assert isinstance(index, QModelIndex)
model = self.mTableView.model()
if index.isValid() and isinstance(model, PlotSettingsModel2D):
plotStyle = model.idx2plotStyle(index)
assert isinstance(plotStyle, TemporalProfile2DPlotStyle)
if isinstance(w, QgsFieldExpressionWidget):
assert expression == w.expression()
assert w.isExpressionValid(expression) == w.isValidExpression()
if w.isValidExpression():
self.commitData.emit(w)
else:
s = ""
#print(('Delegate commit failed',w.asExpression()))
if isinstance(w, PlotStyleButton):
def setEditorData(self, editor, index):
cname = self.getColumnName(index)
if index.isValid() and isinstance(model, PlotSettingsModel2D):
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cname = self.getColumnName(index)
if cname == model.cnExpression:
lastExpr = index.model().data(index, Qt.DisplayRole)
assert isinstance(editor, QgsFieldExpressionWidget)
editor.setProperty('lastexpr', lastExpr)
editor.setField(lastExpr)
elif cname == model.cnStyle:
style = index.data()
assert isinstance(editor, PlotStyleButton)
editor.setPlotStyle(style)
elif cname == model.cnSensor:
assert isinstance(editor, QComboBox)
m = editor.model()
assert isinstance(m, SensorListModel)
sensor = index.data(role=Qt.UserRole)
if isinstance(sensor, SensorInstrument):
idx = m.sensor2idx(sensor)
editor.setCurrentIndex(idx.row())
elif cname == model.cnTemporalProfile:
assert isinstance(editor, QComboBox)
m = editor.model()
assert isinstance(m, TemporalProfileCollectionListModel)
TP = index.data(role=Qt.UserRole)
if isinstance(TP, TemporalProfile):
idx = m.tp2idx(TP)
editor.setCurrentIndex(idx)
else:
raise NotImplementedError()
def setModelData(self, w, model, index):
cname = self.getColumnName(index)
if index.isValid() and isinstance(model, PlotSettingsModel2D):
if cname == model.cnExpression:
assert isinstance(w, QgsFieldExpressionWidget)
expr = w.asExpression()
exprLast = model.data(index, Qt.DisplayRole)
if w.isValidExpression() and expr != exprLast:
model.setData(index, w.asExpression(), Qt.EditRole)
elif cname == model.cnStyle:
assert isinstance(w, PlotStyleButton)
model.setData(index, w.plotStyle(), Qt.EditRole)
elif cname == model.cnSensor:
assert isinstance(w, QComboBox)
sensor = w.itemData(w.currentIndex(), role=Qt.UserRole)
assert isinstance(sensor, SensorInstrument)
model.setData(index, sensor, Qt.EditRole)
elif cname == model.cnTemporalProfile:
assert isinstance(w, QComboBox)
TP = w.itemData(w.currentIndex(), role=Qt.UserRole)
assert isinstance(TP, TemporalProfile)
model.setData(index, TP, Qt.EditRole)
else:
raise NotImplementedError()
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class PlotSettingsModel3DWidgetDelegate(QStyledItemDelegate):
"""
"""
def __init__(self, tableView, parent=None):
super(PlotSettingsModel3DWidgetDelegate, self).__init__(parent=parent)
self._preferedSize = QgsFieldExpressionWidget().sizeHint()
self.mTableView = tableView
def setItemDelegates(self, tableView):
assert isinstance(tableView, QTableView)
model = tableView.model()
assert isinstance(model, PlotSettingsModel3D)
for c in [model.cnStyle]:
i = model.columNames.index(c)
tableView.setItemDelegateForColumn(i, self)
def getColumnName(self, index):
assert index.isValid()
model = index.model()
assert isinstance(model, PlotSettingsModel3D)
return model.columNames[index.column()]
"""
def sizeHint(self, options, index):
s = super(ExpressionDelegate, self).sizeHint(options, index)
exprString = self.tableView.model().data(index)
l = QLabel()
l.setText(exprString)
x = l.sizeHint().width() + 100
s = QSize(x, s.height())
return self._preferedSize
"""
def createEditor(self, parent, option, index):
cname = self.getColumnName(index)
model = self.mTableView.model()
w = None
if index.isValid() and isinstance(model, PlotSettingsModel3D):
plotStyle = model.idx2plotStyle(index)
if isinstance(plotStyle, TemporalProfile3DPlotStyle):
if cname == model.cnStyle:
w = QgsColorButton(parent=parent)
w.setColor(plotStyle.color())
w.setToolTip('Set line color')
w.colorChanged.connect(lambda: self.checkData(index, w))
return w
def checkData(self, index, w):
assert isinstance(index, QModelIndex)
model = self.mTableView.model()
if index.isValid() and isinstance(model, PlotSettingsModel3D):
plotStyle = model.idx2plotStyle(index)
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
if isinstance(w, QgsColorButton):
self.commitData.emit(w)
def setEditorData(self, editor, index):
cname = self.getColumnName(index)
model = self.mTableView.model()
w = None
if index.isValid() and isinstance(model, PlotSettingsModel3D):
style = model.idx2plotStyle(index)
assert isinstance(style, TemporalProfile3DPlotStyle)
cname = self.getColumnName(index)
if cname == model.cnStyle:
assert isinstance(editor, QgsColorButton)
editor.setColor(style.color())
else:
raise NotImplementedError()
def setModelData(self, w, model, index):
cname = self.getColumnName(index)
model = self.mTableView.model()
if index.isValid() and isinstance(model, PlotSettingsModel3D):
if cname == model.cnStyle:
assert isinstance(w, QgsColorButton)
model.setData(index, w.color(), Qt.EditRole)
else:
raise NotImplementedError()
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class SensorPixelDataMemoryLayer(QgsVectorLayer):
def __init__(self, sensor, crs=None):
assert isinstance(sensor, SensorInstrument)
if crs is None:
crs = QgsCoordinateReferenceSystem('EPSG:4862')
uri = 'Point?crs={}'.format(crs.authid())
super(SensorPixelDataMemoryLayer, self).__init__(uri, 'Pixels_sensor_' + sensor.name(), 'memory', False)
self.mSensor = sensor
#initialize fields
assert self.startEditing()
# standard field names, types, etc.
fieldDefs = [('pxid', QVariant.String, 'integer'),
('date', QVariant.String, 'char'),
('doy', QVariant.Int, 'integer'),
('geo_x', QVariant.Double, 'decimal'),
('geo_y', QVariant.Double, 'decimal'),
('px_x', QVariant.Int, 'integer'),
('px_y', QVariant.Int, 'integer'),
]
# one field for each band
for b in range(sensor.nb):
fName = 'b{}'.format(b + 1)
fieldDefs.append((fName, QVariant.Double, 'decimal'))
# initialize fields
for fieldDef in fieldDefs:
field = QgsField(fieldDef[0], fieldDef[1], fieldDef[2])
self.addAttribute(field)
self.commitChanges()
def sensor(self):
return self.mSensor
def nPixels(self):
raise NotImplementedError()
def dates(self):
raise NotImplementedError()
class DateTimeViewBox(pg.ViewBox):
"""
Subclass of ViewBox
"""
sigMoveToDate = pyqtSignal(np.datetime64)
def __init__(self, parent=None):
"""
Constructor of the CustomViewBox
"""
super(DateTimeViewBox, self).__init__(parent)
#self.menu = None # Override pyqtgraph ViewBoxMenu
#self.menu = self.getMenu() # Create the menu
#self.menu = None
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self.mCurrentDate = np.datetime64('today')
xAction = [a for a in self.menu.actions() if a.text() == 'X Axis'][0]
yAction = [a for a in self.menu.actions() if a.text() == 'Y Axis'][0]
menuXAxis = self.menu.addMenu('X Axis')
def addQDateEdit(name):
frame = QFrame()
frame.setLayout(QHBoxLayout())
label = QLabel(name)
dateEdit = QDateEdit()
dateEdit.setDisplayFormat('yyyy-MM-dd')
dateEdit.setCalendarPopup(True)
dateEdit.dateChanged.connect(self.updateXRange)
frame.layout().addWidget(label)
frame.layout().addWidget(dateEdit)
frame.layout().setMargin(1)
wa = QWidgetAction(menuXAxis)
wa.setText(name)
wa.setDefaultWidget(frame)
menuXAxis.addAction(wa)
return wa, dateEdit
self.mWActionDateT0, self.mDateEditT0 = addQDateEdit('Begin')
self.mWActionDateT1, self.mDateEditT1 = addQDateEdit('End ')
newXAction = self.menu.insertMenu(xAction, menuXAxis)
#self.menu.removeAction(xAction)
self.mActionMoveToDate = self.menu.addAction('Move to {}'.format(self.mCurrentDate))
self.mActionMoveToDate.triggered.connect(lambda : self.sigMoveToDate.emit(self.mCurrentDate))
def updateXRange(self, *args):
self.setXRange(date2num(self.mDateEditT0.date()),
date2num(self.mDateEditT1.date())
)
def updateCurrentDate(self, date):
if isinstance(date, np.datetime64):
self.mCurrentDate = date
self.mActionMoveToDate.setData(date)
xRange, yRange = self.viewRange()
t0 = num2date(xRange[0], qDate=True)
t1 = num2date(xRange[1], qDate=True)
self.mDateEditT0.setDate(t0)
self.mDateEditT1.setDate(t1)
def raiseContextMenu(self, ev):
pt = self.mapDeviceToView(ev.pos())
self.updateCurrentDate(num2date(pt.x(), dt64=True))
menu = self.getMenu(ev)
self.scene().addParentContextMenus(self, menu, ev)
menu.exec_(ev.screenPos().toPoint())
class DateTimePlotWidget(pg.PlotWidget):
"""
Subclass of PlotWidget
"""
def __init__(self, parent=None):
"""
Constructor of the widget
"""
super(DateTimePlotWidget, self).__init__(parent, viewBox=DateTimeViewBox())
axisItems={'bottom':DateTimeAxis(orientation='bottom')},
self.setCentralItem(self.plotItem)
#self.xAxisInitialized = False
class PlotSettingsModel3D(QAbstractTableModel):
#sigSensorAdded = pyqtSignal(SensorPlotSettings)
sigVisibilityChanged = pyqtSignal(TemporalProfile2DPlotStyle)
sigPlotStylesAdded = pyqtSignal(list)
sigPlotStylesRemoved = pyqtSignal(list)
def __init__(self, parent=None, *args):
#assert isinstance(tableView, QTableView)
super(PlotSettingsModel3D, self).__init__(parent=parent)
self.mTimeSeries = None

benjamin.jakimow@geo.hu-berlin.de
committed
self.cnSensor = 'Sensor'
self.cnScale = 'Scale'
self.cnOffset = 'Offset'

benjamin.jakimow@geo.hu-berlin.de
committed
self.cnStyle = 'Style'
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self.columNames = [self.cnSensor, self.cnScale, self.cnOffset, self.cnStyle]
self.mPlotSettings = []
#assert isinstance(plotWidget, DateTimePlotWidget)
self.sortColumnIndex = 0
self.sortOrder = Qt.AscendingOrder
self.sort(0, Qt.AscendingOrder)
def connectTimeSeries(self, timeSeries):
if isinstance(timeSeries, TimeSeries):
self.mTimeSeries = timeSeries
self.mTimeSeries.sigSensorAdded.connect(self.createStyle)
self.mTimeSeries.sigSensorRemoved.connect(self.onSensorRemoved)
for sensor in self.mTimeSeries.sensors():
self.onSensorAdded(sensor)
def hasStyleForSensor(self, sensor):
assert isinstance(sensor, SensorInstrument)
for plotStyle in self.mPlotSettings:
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
if plotStyle.sensor() == sensor:
return True
return False
def createStyle(self, sensor):
if not self.hasStyleForSensor(sensor):
#use another color for the new sensor
if len(self) > 0:
color = self[-1].color()
s.setColor(nextColor(color))
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self.insertPlotStyles([s])
def onSensorRemoved(self, sensor):
assert isinstance(sensor, SensorInstrument)
self.removePlotStyles([s for s in self.mPlotSettings if s.sensor() == sensor])
def __len__(self):
return len(self.mPlotSettings)
def __iter__(self):
return iter(self.mPlotSettings)
def __getitem__(self, slice):
return self.mPlotSettings[slice]
def __contains__(self, item):
return item in self.mPlotSettings
def columnIndex(self, name):
return self.columNames.index(name)
def insertPlotStyles(self, plotStyles, i=None):
"""
Inserts PlotStyle
:param plotStyles: TemporalProfilePlotStyle | [list-of-TemporalProfilePlotStyle]
:param i: index to insert, defaults to the last list position
"""
if isinstance(plotStyles, TemporalProfile3DPlotStyle):
plotStyles = [plotStyles]
assert isinstance(plotStyles, list)
for plotStyle in plotStyles:
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
if i is None:
i = len(self.mPlotSettings)
if len(plotStyles) > 0:
self.beginInsertRows(QModelIndex(), i, i + len(plotStyles)-1)
for j, plotStyle in enumerate(plotStyles):
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
self.mPlotSettings.insert(i+j, plotStyle)
self.endInsertRows()
self.sigPlotStylesAdded.emit(plotStyles)
def removePlotStyles(self, plotStyles):
"""
Removes PlotStyle instances
:param plotStyles: TemporalProfilePlotStyle | [list-of-TemporalProfilePlotStyle]
"""
if isinstance(plotStyles, TemporalProfile3DPlotStyle):
plotStyles = [plotStyles]
assert isinstance(plotStyles, list)
if len(plotStyles) > 0:
for plotStyle in plotStyles:
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
if plotStyle in self.mPlotSettings:
idx = self.plotStyle2idx(plotStyle)
self.beginRemoveRows(QModelIndex(), idx.row(),idx.row())
self.mPlotSettings.remove(plotStyle)
self.endRemoveRows()
self.sigPlotStylesRemoved.emit(plotStyles)
def sort(self, col, order):
if self.rowCount() == 0:
return
colName = self.columnames[col]
r = order != Qt.AscendingOrder
#self.beginMoveRows(idxSrc,
if colName == self.cnSensor:
self.mPlotSettings.sort(key = lambda sv:sv.sensor().name(), reverse=r)
def rowCount(self, parent = QModelIndex()):
return len(self.mPlotSettings)
def removeRows(self, row, count , parent = QModelIndex()):
self.beginRemoveRows(parent, row, row + count-1)
toRemove = self.mPlotSettings[row:row + count]
for tsd in toRemove:
self.mPlotSettings.remove(tsd)
self.endRemoveRows()
def plotStyle2idx(self, plotStyle):
assert isinstance(plotStyle, TemporalProfile3DPlotStyle)
if plotStyle in self.mPlotSettings:
i = self.mPlotSettings.index(plotStyle)
return self.createIndex(i, 0)
else:
return QModelIndex()
def idx2plotStyle(self, index):
if index.isValid() and index.row() < self.rowCount():
return self.mPlotSettings[index.row()]
return None
def columnCount(self, parent = QModelIndex()):
return len(self.columNames)
def data(self, index, role = Qt.DisplayRole):
if role is None or not index.isValid():
return None
value = None
columnName = self.columNames[index.column()]
plotStyle = self.idx2plotStyle(index)
if isinstance(plotStyle, TemporalProfile3DPlotStyle):
sensor = plotStyle.sensor()
#print(('data', columnName, role))
if role == Qt.DisplayRole:
if columnName == self.cnSensor:
if isinstance(sensor, SensorInstrument):
value = sensor.name()
else:
value = '<Select Sensor>'
elif columnName == self.cnScale:
value = plotStyle.mScale
elif columnName == self.cnOffset:
value = plotStyle.mOffset
if role == Qt.EditRole:
if columnName == self.cnScale:
value = plotStyle.mScale
elif columnName == self.cnOffset:
value = plotStyle.mOffset
elif role == Qt.CheckStateRole:
if columnName == self.cnSensor:
value = Qt.Checked if plotStyle.isVisible() else Qt.Unchecked
elif role == Qt.UserRole:
value = plotStyle
if columnName == self.cnSensor:
value = plotStyle.sensor()
elif columnName == self.cnStyle:
value = plotStyle
else:
value = plotStyle
#print(('get data',value))
return value
def setData(self, index, value, role=None):
if role is None or not index.isValid():
return False
#print(('Set data', index.row(), index.column(), value, role))
columnName = self.columNames[index.column()]
if value is None:
return False
result = False
plotStyle = self.idx2plotStyle(index)
if isinstance(plotStyle, TemporalProfile3DPlotStyle):
if role in [Qt.DisplayRole]:
if columnName == self.cnScale and isinstance(value, float):
plotStyle.setScaling(value, plotStyle.mOffset)
result = True
elif columnName == self.cnOffset and isinstance(value, float):
plotStyle.setScaling(plotStyle.mScale, value)
result = True
elif columnName == self.cnStyle:
if isinstance(value, PlotStyle):
plotStyle.copyFrom(value)
result = True
elif isinstance(value, QColor):
plotStyle.setColor(value)
result = True
if role == Qt.CheckStateRole:
if columnName == self.cnSensor:
plotStyle.setVisibility(value == Qt.Checked)
result = True
if role == Qt.EditRole:
if columnName == self.cnScale:
plotStyle.setScaling(value, plotStyle.mOffset)
result = True
elif columnName == self.cnOffset:
plotStyle.setScaling(plotStyle.mScale, value)
result = True
elif columnName == self.cnStyle:
if isinstance(value, QColor):
plotStyle.setColor(value)
result = True
if isinstance(value, TemporalProfile3DPlotStyle):
plotStyle.copyFrom(value)
result = True
return result
def flags(self, index):
if index.isValid():
columnName = self.columNames[index.column()]
flags = Qt.ItemIsEnabled | Qt.ItemIsSelectable
if columnName in [self.cnSensor]:
flags = flags | Qt.ItemIsUserCheckable
if columnName in [self.cnScale, self.cnOffset, self.cnStyle]: #allow check state
flags = flags | Qt.ItemIsEditable
return flags
#return item.qt_flags(index.column())
return Qt.NoItemFlags
def headerData(self, col, orientation, role):
if Qt is None:
return None
if orientation == Qt.Horizontal and role == Qt.DisplayRole:
return self.columNames[col]
elif orientation == Qt.Vertical and role == Qt.DisplayRole:
return col
return None
class PlotSettingsModel2D(QAbstractTableModel):
#sigSensorAdded = pyqtSignal(SensorPlotSettings)
sigVisibilityChanged = pyqtSignal(TemporalProfile2DPlotStyle)
sigDataChanged = pyqtSignal(TemporalProfile2DPlotStyle)
sigPlotStylesAdded = pyqtSignal(list)
sigPlotStylesRemoved = pyqtSignal(list)
def __init__(self, temporalProfileCollection, plotWidget, parent=None, *args):
#assert isinstance(tableView, QTableView)
super(PlotSettingsModel2D, self).__init__(parent=parent)
assert isinstance(temporalProfileCollection, TemporalProfileCollection)
self.cnID = 'ID'

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self.cnSensor = 'Sensor'
self.cnExpression = LABEL_DN

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self.cnStyle = 'Style'
self.columNames = [self.cnTemporalProfile, self.cnSensor, self.cnStyle, self.cnExpression]
self.mPlotSettings = []
#assert isinstance(plotWidget, DateTimePlotWidget)
self.mPlotWidget = plotWidget
self.sortColumnIndex = 0
self.sortOrder = Qt.AscendingOrder
#self.tpCollection.sigTemporalProfilesRemoved.connect(lambda removedTPs : self.removePlotStyles([p for p in self.mPlotSettings if p.temporalProfile() in removedTPs]))
assert isinstance(self.tpCollection.TS, TimeSeries)
#self.tpCollection.TS.sigSensorAdded.connect(self.addPlotItem)
#self.tpCollection.TS.sigSensorRemoved.connect(self.removeSensor)
self.sort(0, Qt.AscendingOrder)
self.dataChanged.connect(self.signaler)

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def __getitem__(self, slice):
return self.mPlotSettings[slice]
def __contains__(self, item):
return item in self.mPlotSettings
def testSlot(self, *args):
print(('TESTSLOT', args))
def columnIndex(self, name):
return self.columNames.index(name)
def signaler(self, idxUL, idxLR):
if idxUL.isValid():
plotStyle = self.idx2plotStyle(idxUL)
cname = self.columNames[idxUL.column()]
if cname in [self.cnSensor,self.cnStyle]:
self.sigVisibilityChanged.emit(plotStyle)
if cname in [self.cnExpression]:
self.sigDataChanged.emit(plotStyle)
def requiredBandsIndices(self, sensor):
"""
Returns the band indices required to calculate the values for
the different PlotStyle expressions making use of sensor
:param sensor: SensorInstrument for which the band indices are to be returned.
:return: [list-of-band-indices]
"""
bandIndices = set()
assert isinstance(sensor, SensorInstrument)
for p in [p for p in self.mPlotSettings if p.sensor() == sensor]:
assert isinstance(p, TemporalProfile2DPlotStyle)
expression = p.expression()
#remove leading & tailing "
bandKeys = regBandKey.findall(expression)
for bandIndex in [bandKey2bandIndex(key) for key in bandKeys]:

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def insertPlotStyles(self, plotStyles, i=None):
"""
Inserts PlotStyle
:param plotStyles: TemporalProfilePlotStyle | [list-of-TemporalProfilePlotStyle]
:param i: index to insert, defaults to the last list position
"""
if isinstance(plotStyles, TemporalProfile2DPlotStyle):
plotStyles = [plotStyles]
assert isinstance(plotStyles, list)
for plotStyle in plotStyles:
assert isinstance(plotStyle, TemporalProfile2DPlotStyle)

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if len(plotStyles) > 0:
self.beginInsertRows(QModelIndex(), i, i + len(plotStyles)-1)
for j, plotStyle in enumerate(plotStyles):
assert isinstance(plotStyle, TemporalProfile2DPlotStyle)
self.mPlotSettings.insert(i+j, plotStyle)
self.endInsertRows()
self.sigPlotStylesAdded.emit(plotStyles)
def removePlotStyles(self, plotStyles):
"""
Removes PlotStyle instances
:param plotStyles: TemporalProfilePlotStyle | [list-of-TemporalProfilePlotStyle]
"""
if isinstance(plotStyles, PlotStyle):
plotStyles = [plotStyles]
assert isinstance(plotStyles, list)
if len(plotStyles) > 0:
for plotStyle in plotStyles:
assert isinstance(plotStyle, PlotStyle)
if plotStyle in self.mPlotSettings:
idx = self.plotStyle2idx(plotStyle)
self.beginRemoveRows(QModelIndex(), idx.row(),idx.row())
self.mPlotSettings.remove(plotStyle)
self.endRemoveRows()
if isinstance(plotStyle, TemporalProfile2DPlotStyle):
for pi in plotStyle.mPlotItems:
self.mPlotWidget.getPlotItem().removeItem(pi)
self.sigPlotStylesRemoved.emit(plotStyles)
def sort(self, col, order):
if self.rowCount() == 0:
return
colName = self.columnames[col]
r = order != Qt.AscendingOrder
#self.beginMoveRows(idxSrc,
if colName == self.cnSensor:
self.mPlotSettings.sort(key = lambda sv:sv.sensor().name(), reverse=r)
elif colName == self.cnExpression:
self.mPlotSettings.sort(key=lambda sv: sv.expression(), reverse=r)
elif colName == self.cnStyle:
self.mPlotSettings.sort(key=lambda sv: sv.color, reverse=r)
def rowCount(self, parent = QModelIndex()):
return len(self.mPlotSettings)
def removeRows(self, row, count , parent = QModelIndex()):
for tsd in toRemove:
self.endRemoveRows()
assert isinstance(plotStyle, TemporalProfile2DPlotStyle)
if plotStyle in self.mPlotSettings:
i = self.mPlotSettings.index(plotStyle)
return self.createIndex(i, 0)
else:
return QModelIndex()
def idx2plotStyle(self, index):
if index.isValid() and index.row() < self.rowCount():
return self.mPlotSettings[index.row()]
return None
def columnCount(self, parent = QModelIndex()):
def data(self, index, role = Qt.DisplayRole):
if role is None or not index.isValid():
return None
value = None
columnName = self.columNames[index.column()]
plotStyle = self.idx2plotStyle(index)
if isinstance(plotStyle, TemporalProfile2DPlotStyle):
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sensor = plotStyle.sensor()
#print(('data', columnName, role))
if role == Qt.DisplayRole:
if columnName == self.cnSensor:
if isinstance(sensor, SensorInstrument):
value = sensor.name()
else:
value = '<Select Sensor>'
elif columnName == self.cnExpression:
value = plotStyle.expression()
elif columnName == self.cnTemporalProfile:
value = plotStyle.temporalProfile().name()
#elif role == Qt.DecorationRole:
# if columnName == self.cnStyle:
# value = plotStyle.createIcon(QSize(96,96))
elif role == Qt.CheckStateRole:
if columnName == self.cnTemporalProfile:
value = Qt.Checked if plotStyle.isVisible() else Qt.Unchecked
elif role == Qt.UserRole:
value = plotStyle
if columnName == self.cnSensor:
value = plotStyle.sensor()
elif columnName == self.cnExpression:
value = plotStyle.expression()
elif columnName == self.cnStyle:
value = plotStyle
elif columnName == self.cnTemporalProfile:
value == plotStyle.temporalProfile()
else:
value = plotStyle
#print(('get data',value))
return value
def setData(self, index, value, role=None):
if role is None or not index.isValid():
return False
#print(('Set data', index.row(), index.column(), value, role))

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if value is None:
return False
result = False
plotStyle = self.idx2plotStyle(index)
if isinstance(plotStyle, TemporalProfile2DPlotStyle):
if role in [Qt.DisplayRole]:
if columnName == self.cnExpression:
plotStyle.setExpression(value)
result = True
elif columnName == self.cnStyle:
if isinstance(value, PlotStyle):
result = True
if role == Qt.CheckStateRole:
if columnName == self.cnTemporalProfile:
plotStyle.setVisibility(value == Qt.Checked)
result = True
if role == Qt.EditRole:
if columnName == self.cnExpression:
plotStyle.setExpression(value)
result = True
elif columnName == self.cnStyle:
plotStyle.copyFrom(value)
result = True
elif columnName == self.cnSensor:
plotStyle.setSensor(value)
result = True
elif columnName == self.cnTemporalProfile:
plotStyle.setTemporalProfile(value)
result = True
if result:
#save plot-style
self.dataChanged.emit(index, index)
return result
def savePlotSettings(self, sensorPlotSettings, index='DEFAULT'):
assert isinstance(sensorPlotSettings, TemporalProfile2DPlotStyle)
id = 'SPS.{}.{}'.format(index, sensorPlotSettings.sensor().id())
d = pickle.dumps(sensorPlotSettings)
SETTINGS.setValue(id, d)
def restorePlotSettings(self, sensor, index='DEFAULT'):
assert isinstance(sensor, SensorInstrument)
id = 'SPS.{}.{}'.format(index, sensor.id())
sensorPlotSettings = SETTINGS.value(id)
if sensorPlotSettings is not None:
try:
sensorPlotSettings = pickle.loads(sensorPlotSettings)
s = ""
except:
sensorPlotSettings = None
pass
if isinstance(sensorPlotSettings, TemporalProfile2DPlotStyle):
return sensorPlotSettings
else:
def flags(self, index):
if index.isValid():
flags = Qt.ItemIsEnabled | Qt.ItemIsSelectable
flags = flags | Qt.ItemIsUserCheckable
if columnName in [self.cnTemporalProfile, self.cnSensor, self.cnExpression, self.cnStyle]: #allow check state
flags = flags | Qt.ItemIsEditable
return flags
#return item.qt_flags(index.column())
return Qt.NoItemFlags
def headerData(self, col, orientation, role):
if Qt is None:
return None
if orientation == Qt.Horizontal and role == Qt.DisplayRole:
elif orientation == Qt.Vertical and role == Qt.DisplayRole:
return col
return None
class ProfileViewDockUI(QgsDockWidget, loadUI('profileviewdock.ui')):
def __init__(self, parent=None):
super(ProfileViewDockUI, self).__init__(parent)
self.setupUi(self)
#self.line.setVisible(False)
#self.listWidget.setVisible(False)

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self.baseTitle = self.windowTitle()
self.stackedWidget.currentChanged.connect(self.onStackPageChanged)
self.stackedWidget.setCurrentWidget(self.page2D)

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if OPENGL_AVAILABLE:
#from pyqtgraph.opengl import GLViewWidget
#self.plotWidget3D = GLViewWidget(parent=self.page3D)
self.plotWidget3D = ViewWidget3D(parent=self.frame3DPlot)
self.plotWidget3D.setObjectName('plotWidget3D')
size = self.labelDummy3D.size()
l.addWidget(self.plotWidget3D)
self.plotWidget3D.setSizePolicy(self.labelDummy3D.sizePolicy())
self.labelDummy3D.setVisible(False)
l.removeWidget(self.labelDummy3D)
self.plotWidget3D.setBaseSize(size)
self.splitter3D.setSizes([100, 100])
#pi = self.plotWidget2D.plotItem
#ax = DateAxis(orientation='bottom', showValues=True)
#pi.layout.addItem(ax, 3,2)

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self.TS = None
self.progressBar.setMinimum(0)
self.progressBar.setMaximum(100)
self.progressBar.setValue(0)
self.progressInfo.setText('')
self.pxViewModel2D = None
self.pxViewModel3D = None
self.tableView2DProfiles.horizontalHeader().setResizeMode(QHeaderView.ResizeToContents)
self.tableView2DProfiles.setSortingEnabled(True)
self.tableViewTemporalProfiles.horizontalHeader().setResizeMode(QHeaderView.ResizeToContents)
self.tableViewTemporalProfiles.setSortingEnabled(True)

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self.menuTPSaveOptions = QMenu()
self.menuTPSaveOptions.addAction(self.actionSaveTPCoordinates)
self.menuTPSaveOptions.addAction(self.actionSaveTPCSV)
self.menuTPSaveOptions.addAction(self.actionSaveTPVector)
self.btnSaveTemporalProfiles.setMenu(self.menuTPSaveOptions)
def onStackPageChanged(self, i):
w = self.stackedWidget.currentWidget()
title = self.baseTitle
if w == self.page2D:
title = '{} | 2D'.format(title)

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elif w == self.page3D:
title = '{} | 3D'.format(title)

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elif w == self.pagePixel:
title = '{} | Coordinates'.format(title)

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self.setWindowTitle(title)
NEXT_COLOR_HUE_DELTA_CON = 10
NEXT_COLOR_HUE_DELTA_CAT = 100
def nextColor(color, mode='cat'):
"""
Reuturns another color
:param color:
:param mode:
:return:
"""
assert mode in ['cat','con']
assert isinstance(color, QColor)
hue, sat, value, alpha = color.getHsl()
if mode == 'cat':
hue += NEXT_COLOR_HUE_DELTA_CAT
elif mode == 'con':
hue += NEXT_COLOR_HUE_DELTA_CON
if sat == 0:
sat = 255
value = 128
alpha = 255
s = ""
while hue > 360:
hue -= 360
return QColor.fromHsl(hue, sat, value, alpha)
class SpectralTemporalVisualization(QObject):
sigShowPixel = pyqtSignal(TimeSeriesDatum, QgsPoint, QgsCoordinateReferenceSystem)
"""
Signalizes to move to specific date of interest
"""
sigMoveToDate = pyqtSignal(np.datetime64)
def __init__(self, ui):
super(SpectralTemporalVisualization, self).__init__()
assert isinstance(ui, ProfileViewDockUI), 'arg ui of type: {} {}'.format(type(ui), str(ui))
self.ui = ui
if DEBUG:
import timeseriesviewer.pixelloader
timeseriesviewer.pixelloader.DEBUG = True
self.pixelLoader = PixelLoader()
self.pixelLoader.sigPixelLoaded.connect(self.onPixelLoaded)
self.pixelLoader.sigLoadingStarted.connect(lambda: self.ui.progressInfo.setText('Start loading...'))
self.plot_initialized = False
self.tableView2DProfiles = ui.tableView2DProfiles
self.tableView2DProfiles.setSortingEnabled(False)
self.tableView2DProfiles.horizontalHeader().setResizeMode(QHeaderView.ResizeToContents)
self.plotSettingsModel3D = PlotSettingsModel3D()
#self.plotSettingsModel3D.sigPlotStylesRemoved.connect(self.updatePlot3D)
#self.plotSettingsModel3D.sigPlotStylesAdded.connect(self.updatePlot3D)
#self.plotSettingsModel3D.sigPlotStylesAdded.connect(self.updatePlot3D)
self.plotSettingsModel3D.rowsInserted.connect(self.onRowsInserted3D)
self.ui.tableView3DProfiles.setModel(self.plotSettingsModel3D)
self.ui.tableView3DProfiles.horizontalHeader().setResizeMode(QHeaderView.ResizeToContents)
self.delegateTableView3D = PlotSettingsModel3DWidgetDelegate(self.ui.tableView3DProfiles)
self.delegateTableView3D.setItemDelegates(self.ui.tableView3DProfiles)

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# self.mSelectionModel.currentChanged.connect(self.onCurrentSelectionChanged)
self.plot2D = ui.plotWidget2D

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pi = self.plot2D.getPlotItem()
pi.getViewBox().sigMoveToDate.connect(self.sigMoveToDate)
pi.getAxis('bottom').setLabel(LABEL_TIME)
pi.getAxis('left').setLabel(LABEL_DN)
self.plot2Dvline = pg.InfiniteLine(angle=90, movable=False)
self.plot2Dhline = pg.InfiniteLine(angle=0, movable=False)
#self.plot2DLabel = pg.TextItem(text='LABEL')
self.plot2DLabel = pg.LabelItem(justify='right')
#pi.setContentsMargins(0.1, 0.1, 0.1, 0.1)
pi.addItem(self.plot2Dvline, ignoreBounds=True)
pi.addItem(self.plot2Dhline, ignoreBounds=True)
self.plot2D.addItem(self.plot2DLabel, ignoreBounds=True)
self.proxy2D = pg.SignalProxy(self.plot2D.scene().sigMouseMoved, rateLimit=60, slot=self.onMouseMoved2D)
self.plot3D = ui.plotWidget3D
## Add a grid to the view
if OPENGL_AVAILABLE:
import pyqtgraph.opengl as gl
self.glGridItem = gl.GLGridItem()
self.glGridItem.setDepthValue(10) # draw grid after surfaces since they may be translucent
self.glPlotDataItems = [self.glGridItem]
self.plot3D.addItem(self.glGridItem)
self.tpCollection = TemporalProfileCollection()
self.tpCollectionListModel = TemporalProfileCollectionListModel(self.tpCollection)
self.ui.tableViewTemporalProfiles.setModel(self.tpCollection)
self.ui.tableViewTemporalProfiles.selectionModel().selectionChanged.connect(self.onTemporalProfileSelectionChanged)
self.ui.tableViewTemporalProfiles.horizontalHeader().setResizeMode(QHeaderView.ResizeToContents)
self.ui.cbTemporalProfile3D.setModel(self.tpCollectionListModel)
#self.pxCollection.sigPixelAdded.connect(self.requestUpdate)
#self.pxCollection.sigPixelRemoved.connect(self.clear)
self.pixelLoader.sigLoadingStarted.connect(self.clear)
self.pixelLoader.sigLoadingFinished.connect(lambda : self.plot2D.enableAutoRange('x', False))
# self.VIEW.setItemDelegateForColumn(3, PointStyleDelegate(self.VIEW))
self.plotData2D = dict()
self.plotData3D = dict()
self.updateRequested = True
self.updateTimer = QTimer(self)
self.updateTimer.timeout.connect(self.onDataUpdate)
self.sigMoveToDate.connect(self.onMoveToDate)

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def onMouseMoved2D(self, evt):
pos = evt[0] ## using signal proxy turns original arguments into a tuple
plotItem = self.plot2D.getPlotItem()
if plotItem.sceneBoundingRect().contains(pos):
mousePoint = plotItem.vb.mapSceneToView(pos)
x = mousePoint.x()
y = mousePoint.y()
index = int(mousePoint.x())
self.plot2DLabel.setText('Refreshed {}'.format(mousePoint.x(), mousePoint.y()))
#if index > 0 and index < len(data1):
# label.setText(
# "<span style='font-size: 12pt'>x=%0.1f, <span style='color: red'>y1=%0.1f</span>, <span style='color: green'>y2=%0.1f</span>" % (
# mousePoint.x(), data1[index], data2[index]))
self.plot2Dvline.setPos(mousePoint.x())
self.plot2Dhline.setPos(mousePoint.y())
return
vb = plotItem.vb
if plotItem.sceneBoundingRect().contains(pos):
mousePoint = vb.mapSceneToView(pos)
self.vLine.setPos(mousePoint.x())
self.hLine.setPos(mousePoint.y())
info = '{:0.2f}, {:0.2f}'.format(mousePoint.x(), mousePoint.y())
self.tbCursorLocationValue.setText(info)
"""
self.mlabel.setText(
"<span style='font-size: 12pt'>{}</span>".format(info)
"""
else:
self.tbCursorLocationValue.setText('')
self.mlabel.setText('')
def selected2DPlotStyles(self):
result = []
m = self.ui.tableView2DProfiles.model()
for idx in selectedModelIndices(self.ui.tableView2DProfiles):
result.append(m.idx2plotStyle(idx))
return result
def selectedTemporalProfiles(self):
result = []
m = self.ui.tableViewTemporalProfiles.model()
for idx in selectedModelIndices(self.ui.tableViewTemporalProfiles):
result.append(m.idx2tp(idx))
return result
def removePlotStyles(self, plotStyles):
m = self.ui.tableView2DProfiles.model()
m.removePlotStyles(plotStyles)
def removeTemporalProfiles(self, temporalProfiles):
m = self.ui.tableViewTemporalProfiles.model()
if isinstance(m, TemporalProfileCollection):
m.removeTemporalProfiles(temporalProfiles)
def createNewPlotStyle(self):
l = len(self.tpCollection)
if l > 0:
temporalProfile = self.tpCollection[0]
plotStyle = TemporalProfile2DPlotStyle(temporalProfile)
plotStyle.sigExpressionUpdated.connect(self.updatePlot2D)
sensors = self.TS.Sensors.keys()
if len(sensors) > 0:
plotStyle.setSensor(sensors[0])
if len(self.plotSettingsModel2D) > 0:
lastStyle = self.plotSettingsModel2D[-1]
assert isinstance(lastStyle, TemporalProfile2DPlotStyle)
markerColor = nextColor(lastStyle.markerBrush.color())
plotStyle.markerBrush.setColor(markerColor)
self.plotSettingsModel2D.insertPlotStyles([plotStyle])
pdi = plotStyle.createPlotItem(self.plot2D)
assert isinstance(pdi, TemporalProfilePlotDataItem)

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pdi.sigClicked.connect(self.onProfileClicked2D)
pdi.sigPointsClicked.connect(self.onPointsClicked2D)
self.plot2D.getPlotItem().addItem(pdi)
#self.plot2D.getPlotItem().addItem(pg.PlotDataItem(x=[1, 2, 3], y=[1, 2, 3]))
#plotItem.plot().sigPlotChanged.emit(plotItem)
self.updatePlot2D()

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def onProfileClicked2D(self, pdi):
if isinstance(pdi, TemporalProfilePlotDataItem):
sensor = pdi.mPlotStyle.sensor()
tp = pdi.mPlotStyle.temporalProfile()
if isinstance(tp, TemporalProfile) and isinstance(sensor, SensorInstrument):
info = ['Sensor:{}'.format(sensor.name()),
'Coordinate:{}, {}'.format(tp.mCoordinate.x(), tp.mCoordinate.y())]
self.ui.tbInfo2D.setPlainText('\n'.join(info))
def onPointsClicked2D(self, pdi, spottedItems):
if isinstance(pdi, TemporalProfilePlotDataItem) and isinstance(spottedItems, list):
sensor = pdi.mPlotStyle.sensor()
tp = pdi.mPlotStyle.temporalProfile()
if isinstance(tp, TemporalProfile) and isinstance(sensor, SensorInstrument):
info = ['Sensor: {}'.format(sensor.name()),
'Coordinate: {}, {}'.format(tp.mCoordinate.x(), tp.mCoordinate.y())]
for item in spottedItems:
pos = item.pos()
x = pos.x()
y = pos.y()
date = num2date(x)
info.append('Date: {}\nValue: {}'.format(date, y))
self.ui.tbInfo2D.setPlainText('\n'.join(info))
def onTemporalProfileSelectionChanged(self, selected, deselected):

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nSelected = len(selected)
self.ui.actionRemoveTemporalProfile.setEnabled(nSelected > 0)
self.ui.btnSaveTemporalProfiles.setEnabled(nSelected > 0)
def onPlot2DSelectionChanged(self, selected, deselected):
self.ui.actionRemoveView.setEnabled(len(selected) > 0)
self.ui.actionRemoveView.setEnabled(False)
self.ui.actionRemoveTemporalProfile.setEnabled(False)
self.ui.btnAddView.setDefaultAction(self.ui.actionAddView)
self.ui.btnRemoveView.setDefaultAction(self.ui.actionRemoveView)
self.ui.btnRefresh2D.setDefaultAction(self.ui.actionRefresh2D)
self.ui.btnRefresh3D.setDefaultAction(self.ui.actionRefresh3D)
self.ui.btnRemoveTemporalProfile.setDefaultAction(self.ui.actionRemoveTemporalProfile)
self.ui.btnReset3DCamera.setDefaultAction(self.ui.actionReset3DCamera)
self.ui.actionRefresh2D.triggered.connect(self.updatePlot2D)
self.ui.actionRefresh3D.triggered.connect(self.updatePlot3D)

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self.ui.btnLoadProfile1.setDefaultAction(self.ui.actionLoadProfileRequest)
self.ui.btnLoadProfile2.setDefaultAction(self.ui.actionLoadProfileRequest)
self.ui.btnLoadProfile3.setDefaultAction(self.ui.actionLoadProfileRequest)
self.ui.actionAddView.triggered.connect(self.createNewPlotStyle)
self.ui.actionRemoveView.triggered.connect(lambda:self.removePlotStyles(self.selected2DPlotStyles()))
self.ui.actionRemoveTemporalProfile.triggered.connect(lambda :self.removeTemporalProfiles(self.selectedTemporalProfiles()))
self.ui.actionReset3DCamera.triggered.connect(self.reset3DCamera)
self.tpCollection.sigMaxProfilesChanged.connect(self.ui.sbMaxTP.setValue)
self.ui.sbMaxTP.valueChanged.connect(self.tpCollection.setMaxProfiles)

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from timeseriesviewer.temporalprofiles import saveTemporalProfiles
DEF_PATH = None
self.ui.actionSaveTPCoordinates.triggered.connect(
lambda: saveTemporalProfiles(self.tpCollection[:],
QFileDialog.getSaveFileName(
self.ui, 'Save Temporal Profile Coordinates',
DEF_PATH, 'ESRI Shapefile (*.shp);;Geopackage (*.gpkg);;Textfile (*.csv *.txt)'
), mode='coordinate'
)
)
self.ui.actionSaveTPCSV.triggered.connect(
lambda: saveTemporalProfiles(self.tpCollection[:],
QFileDialog.getSaveFileName(
self.ui, 'Save Temporal Profiles to Text File.',
DEF_PATH,
'Textfile (*.csv *.txt)'
), mode ='all'
)
)
self.ui.actionSaveTPVector.triggered.connect(
lambda: saveTemporalProfiles(self.tpCollection[:],
QFileDialog.getSaveFileName(
self.ui, 'Save Temporal Profiles to Vector File.',
DEF_PATH,
'ESRI Shapefile (*.shp);;Geopackage (*.gpkg)'
), mode = 'all'
)
)
#todo: self.ui.actionRemoveView.triggered.connect(self.plotSettingsModel.createPlotStyle)
def reset3DCamera(self, *args):
if OPENGL_AVAILABLE:
self.plot3D.setCameraPosition((0,0,0), distance=10, elevation=10)
assert isinstance(TS, TimeSeries)
self.TS = TS
self.plotSettingsModel2D = PlotSettingsModel2D(self.tpCollection, self.plot2D, parent=self)
self.plotSettingsModel2D.sigVisibilityChanged.connect(self.setVisibility)
self.plotSettingsModel2D.sigDataChanged.connect(self.requestUpdate)
self.plotSettingsModel2D.rowsInserted.connect(self.onRowsInserted2D)
self.plotSettingsModel3D.connectTimeSeries(self.TS)
# self.plotSettingsModel.modelReset.connect(self.updatePersistantWidgets)
self.tableView2DProfiles.setModel(self.plotSettingsModel2D)
#self.tableView2DProfilesSelectionModel = QItemSelectionModel(self.mModel)
self.tableView2DProfiles.selectionModel().selectionChanged.connect(self.onPlot2DSelectionChanged)
#self.tableView2DProfilesSelectionModel.selectionChanged.connect(self.onPlot2DSelectionChanged)
#self.tableView2DProfilesSelectionModel.setSelectionModel(self.mSelectionModel)
self.delegateTableView2D = PlotSettingsModel2DWidgetDelegate(self.tableView2DProfiles, self.TS, self.tpCollectionListModel)
self.delegateTableView2D.setItemDelegates(self.tableView2DProfiles)
def onMoveToDate(self, date):
dt = np.asarray([np.abs(tsd.date - date) for tsd in self.TS])
i = np.argmin(dt)
self.sigMoveToTSD.emit(self.TS[i])
def onPixelLoaded(self, nDone, nMax, d):
self.ui.progressBar.setValue(nDone)
self.ui.progressBar.setMaximum(nMax)
if d.success():
t = 'Last loaded from {}.'.format(bn)
else:
t = 'Failed loading from {}.'.format(bn)
if d.info and d.info != '':
t += '({})'.format(d.info)
def requestUpdate(self, *args):
self.updateRequested = True
#next time
def onRowsInserted2D(self, parent, start, end):
model = self.tableView2DProfiles.model()
if isinstance(model, PlotSettingsModel2D):
colExpression = model.columnIndex(model.cnExpression)
colStyle = model.columnIndex(model.cnStyle)
while start <= end:
idxExpr = model.createIndex(start, colExpression)
idxStyle = model.createIndex(start, colStyle)
self.tableView2DProfiles.openPersistentEditor(idxExpr)
self.tableView2DProfiles.openPersistentEditor(idxStyle)
start += 1
#self.TV.openPersistentEditor(model.createIndex(start, colStyle))
s = ""
def onRowsInserted3D(self, parent, start, end):
model = self.ui.tableView3DProfiles.model()
if isinstance(model, PlotSettingsModel3D):
colStyle = model.columnIndex(model.cnStyle)
while start <= end:
idxStyle = model.createIndex(start, colStyle)
self.ui.tableView3DProfiles.openPersistentEditor(idxStyle)
start += 1
def onObservationClicked(self, plotDataItem, points):
for p in points:
tsd = p.data()
def clear(self):
#first remove from pixelCollection
self.plotData2D.clear()
self.plotData3D.clear()
pi = self.plot2D.getPlotItem()
plotItems = pi.listDataItems()
for p in plotItems:
p.clear()
p.update()
if len(self.TS) > 0:
rng = [self.TS[0].date, self.TS[-1].date]
rng = [date2num(d) for d in rng]
self.plot2D.getPlotItem().setRange(xRange=rng)
if self.plot3D:
pass
def loadCoordinate(self, spatialPoints=None, LUT_bandIndices=None):
"""
Loads a temporal profile for a single or multiple geometries.
:param spatialPoints: SpatialPoint | [list-of-SpatialPoints]
"""
if not isinstance(self.plotSettingsModel2D, PlotSettingsModel2D):
return False
if not self.pixelLoader.isReadyToLoad():
return False
assert isinstance(self.TS, TimeSeries)
#Get or create the TimeSeriesProfiles which will store the loaded values
tasks = []
TPs = []
theGeometries = []
# Define a which (new) bands need to be loaded for each sensor
if LUT_bandIndices is None:
LUT_bandIndices = dict()
for sensor in self.TS.Sensors:
LUT_bandIndices[sensor] = self.plotSettingsModel2D.requiredBandsIndices(sensor)
assert isinstance(LUT_bandIndices, dict)
for sensor in self.TS.Sensors:
assert sensor in LUT_bandIndices.keys()
#update new / existing points
if isinstance(spatialPoints, SpatialPoint):
spatialPoints = [spatialPoints]
for spatialPoint in spatialPoints:
assert isinstance(spatialPoint, SpatialPoint)
TP = self.tpCollection.fromSpatialPoint(spatialPoint)
if not isinstance(TP, TemporalProfile):
TP = TemporalProfile(self.TS, spatialPoint)
self.tpCollection.insertTemporalProfiles(TP, i=0)
if len(self.tpCollection) == 1:
if len(self.plotSettingsModel2D) == 0:
self.createNewPlotStyle()
if len(self.plotSettingsModel3D) == 0:
#todo: individual 3D style
pass
TPs.append(TP)
theGeometries.append(TP.mCoordinate)
TP_ids = [TP.mID for TP in TPs]
#each TSD is a Task
#a Task defines which bands are to be loaded
for tsd in self.TS:
#do not load from invisible TSDs
if not tsd.isVisible():
continue
#which bands do we need to load?
requiredIndices = set(LUT_bandIndices[tsd.sensor])
if len(requiredIndices) == 0:
continue
else:
s = ""
missingIndices = set()
for TP in TPs:
assert isinstance(TP, TemporalProfile)

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need2load = TP.missingBandIndices(tsd, requiredIndices=requiredIndices)
if len(missingIndices) > 0:
task = PixelLoaderTask(tsd.pathImg, theGeometries,
bandIndices=missingIndices,
temporalProfileIDs=TP_ids)
tasks.append(task)
if len(tasks) > 0:
aGoodDefault = 2 if len(self.TS) > 25 else 1
self.pixelLoader.setNumberOfProcesses(SETTINGS.value('profileloader_threads', aGoodDefault))
if DEBUG:
print('Start loading for {} geometries from {} sources...'.format(
len(theGeometries), len(tasks)
))
self.pixelLoader.startLoading(tasks)
else:
if DEBUG:
print('Data for geometries already loaded')
def setVisibility(self, sensorPlotStyle):
assert isinstance(sensorPlotStyle, TemporalProfile2DPlotStyle)
self.setVisibility2D(sensorPlotStyle)
def setVisibility2D(self, sensorPlotStyle):
self.plot2D.update()
if sensorView is None:
for sv in self.plotSettingsModel2D.items:
self.setData(sv)
else:
assert isinstance(sensorView, TemporalProfile2DPlotStyle)
self.setData2D(sensorView)
def onDataUpdate(self):
for plotSetting in self.plotSettingsModel2D:
assert isinstance(plotSetting, TemporalProfile2DPlotStyle)
if plotSetting.temporalProfile().updated():
for pdi in plotSetting.mPlotItems:
assert isinstance(pdi, TemporalProfilePlotDataItem)
pdi.updateDataAndStyle()

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plotSetting.temporalProfile().resetUpdatedFlag()
for i in self.plot2D.getPlotItem().dataItems:
i.updateItems()
notInit = [0, 1] == self.plot2D.getPlotItem().getAxis('bottom').range
if notInit:
for plotSetting in self.plotSettingsModel2D:
assert isinstance(plotSetting, TemporalProfile2DPlotStyle)
for pdi in plotSetting.mPlotItems:
assert isinstance(pdi, TemporalProfilePlotDataItem)
if pdi.xData.ndim == 0 or pdi.xData.shape[0] == 0:
continue
if x0 is None:
x0 = pdi.xData.min()
x1 = pdi.xData.max()
else:
x0 = min(pdi.xData.min(), x0)
x1 = max(pdi.xData.max(), x1)
if x0 is not None:
self.plot2D.getPlotItem().setXRange(x0, x1)
#self.plot2D.xAxisInitialized = True
@QtCore.pyqtSlot()
def updatePlot3D(self):
if OPENGL_AVAILABLE:
from pyqtgraph.opengl import GLViewWidget
import pyqtgraph.opengl as gl
assert isinstance(self.plot3D, GLViewWidget)
w = self.plot3D
#we need the data from all bands
del self.glPlotDataItems[:]
for i in w.items:
w.removeItem(i)
idx = self.ui.cbTemporalProfile3D.currentIndex()
if idx >= 0:
tp = self.ui.cbTemporalProfile3D.itemData(idx, role=Qt.UserRole)
assert isinstance(tp, TemporalProfile)
#1. ensure that data from all bands will be loaded
LUT_bandIndices = dict()
for sensor in self.TS.sensors():
assert isinstance(sensor, SensorInstrument)
LUT_bandIndices[sensor] = list(range(sensor.nb))
self.loadCoordinate(tp.mCoordinate, LUT_bandIndices=LUT_bandIndices)
#2. visualize already loaded data
LUTStyle = {}
for style in self.plotSettingsModel3D:
assert isinstance(style, TemporalProfile3DPlotStyle)
LUTStyle[style.sensor()] = style
dataPos = []
x0 = x1 = y0 = y1 = z0 = z1 = 0
for iDate, tsd in enumerate(tp.mTimeSeries):
bandKeys = sorted([k for k in data.keys() if k.startswith('b') and data[k] != None], key=lambda k: bandKey2bandIndex(k))
if len(bandKeys) < 2:
continue
t = date2num(tsd.date)
x = []
y = []
z = []
for i, k in enumerate(bandKeys):
x.append(i)
y.append(t)
z.append(data[k])
x = np.asarray(x)
y = np.asarray(y)
z = np.asarray(z)
if iDate == 0:
x0, x1 = (x.min(), x.max())
y0, y1 = (y.min(), y.max())
z0, z1 = (z.min(), z.max())
else:
x0, x1 = (min(x.min(), x0), max(x.max(), x1))
y0, y1 = (min(y.min(), y0), max(y.max(), y1))
z0, z1 = (min(z.min(), z0), max(z.max(), z1))
if tsd.sensor in LUTStyle.keys():
style = LUTStyle[tsd.sensor]
else:
style = TemporalProfile3DPlotStyle(tsd.sensor)
dataPos.append((x,y,z, style))
xyz = [(x0,x1),(y0,y1),(z0,z1)]
l = len(dataPos)
for iPos, pos in enumerate(dataPos):
x,y,z, style = pos
assert isinstance(style, TemporalProfile3DPlotStyle)
if not style.isVisible():
continue
arr = np.asarray((x,y,z), dtype=np.float64).transpose()
for i, m in enumerate(xyz):
arr[:, i] = (arr[:,i] - m0)/(m1-m0)
plt = gl.GLLinePlotItem(pos=arr,
#color=pg.glColor((i, n * 1.3)),
#color=pg.glColor(255,123,123,125),
#color=pg.glColor((iPos, l * 1.3)),
color=pg.glColor(style.color()),
self.glPlotDataItems.append(plt)
for i, item in enumerate(self.glPlotDataItems):
w.addItem(item)
#self.glGridItem.scale(0.1,0.1,0.1, local=False)
#w.setBackgroundColor(QColor('black'))
#w.setCameraPosition(pos=(0.0, 0.0, 0.0), distance=1.)
w.addItem(self.glGridItem)
w.update()
"""
for sensor, values in data.items():
if len(values['z']) > 0:
x = values['x']
y = values['y']
z = values['z']
p2 = gl.GLSurfacePlotItem(x=x, y=y, z=z, shader='normalColor')
p2.translate(-10, -10, 0)
w.addItem(p2)
"""
@QtCore.pyqtSlot()
def updatePlot2D(self):
if isinstance(self.plotSettingsModel2D, PlotSettingsModel2D):
pi = self.plot2D.getPlotItem()
piDataItems = pi.listDataItems()
for plotSetting in self.plotSettingsModel2D:
assert isinstance(plotSetting, TemporalProfile2DPlotStyle)
locations.add(plotSetting.temporalProfile().mCoordinate)
for pdi in plotSetting.mPlotItems:
assert isinstance(pdi, TemporalProfilePlotDataItem)
#for i in pi.dataItems:
# i.updateItems()
#self.plot2D.update()
#2. load pixel data
self.loadCoordinate(list(locations))
# https://github.com/pyqtgraph/pyqtgraph/blob/5195d9dd6308caee87e043e859e7e553b9887453/examples/customPlot.py
return
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# prepare QGIS environment
if sys.platform == 'darwin':
PATH_QGS = r'/Applications/QGIS.app/Contents/MacOS'
os.environ['GDAL_DATA'] = r'/usr/local/Cellar/gdal/1.11.3_1/share'
else:
# assume OSGeo4W startup
PATH_QGS = os.environ['QGIS_PREFIX_PATH']
assert os.path.exists(PATH_QGS)
qgsApp = QgsApplication([], True)
QApplication.addLibraryPath(r'/Applications/QGIS.app/Contents/PlugIns')
QApplication.addLibraryPath(r'/Applications/QGIS.app/Contents/PlugIns/qgis')
qgsApp.setPrefixPath(PATH_QGS, True)
qgsApp.initQgis()
gb = QGroupBox()
gb.setTitle('Sandbox')
PL = PixelLoader()
if False:
files = ['observationcloud/testdata/2014-07-26_LC82270652014207LGN00_BOA.bsq',
'observationcloud/testdata/2014-08-03_LE72270652014215CUB00_BOA.bsq'
]
else:
from timeseriesviewer.utils import file_search
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searchDir = r'H:\LandsatData\Landsat_NovoProgresso'
files = file_search(searchDir, '*227065*band4.img', recursive=True)
#files = files[0:3]
lyr = QgsRasterLayer(files[0])
coord = lyr.extent().center()
crs = lyr.crs()
l = QVBoxLayout()
btnStart = QPushButton()
btnStop = QPushButton()
prog = QProgressBar()
tboxResults = QPlainTextEdit()
tboxResults.setMaximumHeight(300)
tboxThreads = QPlainTextEdit()
tboxThreads.setMaximumHeight(200)
label = QLabel()
label.setText('Progress')
def showProgress(n,m,md):
prog.setMinimum(0)
prog.setMaximum(m)
prog.setValue(n)
info = []
for k, v in md.items():
info.append('{} = {}'.format(k,str(v)))
tboxResults.setPlainText('\n'.join(info))
#tboxThreads.setPlainText(PL.threadInfo())
qgsApp.processEvents()
PL.sigPixelLoaded.connect(showProgress)
btnStart.setText('Start loading')
btnStart.clicked.connect(lambda : PL.startLoading(files, coord, crs))
btnStop.setText('Cancel')
btnStop.clicked.connect(lambda: PL.cancelLoading())
lh = QHBoxLayout()
lh.addWidget(btnStart)
lh.addWidget(btnStop)
l.addLayout(lh)
l.addWidget(prog)
l.addWidget(tboxThreads)
l.addWidget(tboxResults)
gb.setLayout(l)
gb.show()
#rs.setBackgroundStyle('background: qlineargradient(x1:0, y1:0, x2:0, y2:1, stop:0 #222, stop:1 #333);')
#rs.handle.setStyleSheet('background: qlineargradient(x1:0, y1:0, x2:0, y2:1, stop:0 #282, stop:1 #393);')
qgsApp.exec_()
qgsApp.exitQgis()
if __name__ == '__main__':
import site, sys
from timeseriesviewer import utils
qgsApp = utils.initQgisApplication()
if False: #the ultimative test for floating point division correctness, at least on a DOY-level
date1 = np.datetime64('1960-12-31','D')
assert date1 == num2date(date2num(date1))
#1960 - 12 - 31
for year in range(1960, 2057):
for doy in range(1, daysPerYear(year)+1):
dt = datetime.timedelta(days=doy - 1)
date1 = np.datetime64('{}-01-01'.format(year)) + np.timedelta64(doy-1,'D')
date2 = datetime.date(year=year, month=1, day=1) + datetime.timedelta(days=doy-1)
assert date1 == num2date(date2num(date1), dt64=True), 'date1: {}'.format(date1)
assert date2 == num2date(date2num(date2), dt64=False), 'date2: {}'.format(date1)
STVis = SpectralTemporalVisualization(ui)
STVis.setTimeSeries(TS)
import example.Images
from timeseriesviewer import file_search
files = file_search(os.path.dirname(example.Images.__file__), '*.tif')
TS.addFiles(files)
cpND = SpatialPoint(ext.crs(), 681151.214,-752388.476)
cp2 = SpatialPoint(ext.crs(), ext.center())
cp3 = SpatialPoint(ext.crs(), ext.center().x()+500, ext.center().y()+250)
STVis.loadCoordinate(cpND)
STVis.loadCoordinate(cp2)
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