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# -*- coding: utf-8 -*-
"""
/***************************************************************************

Benjamin Jakimow
committed
EO Time Series Viewer
-------------------
begin : 2015-08-20
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
import os
from qgis.core import *
from qgis.gui import *
from PyQt5.Qt import *
from PyQt5.QtCore import *
from PyQt5.QtGui import *
from PyQt5.QtWidgets import *
from PyQt5.QtXml import QDomDocument
from timeseriesviewer import SETTINGS
from timeseriesviewer.utils import *
from timeseriesviewer.timeseries import TimeSeriesDatum
from timeseriesviewer.crosshair import CrosshairDialog

benjamin.jakimow@geo.hu-berlin.de
committed
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class MapTools(object):
"""
Static class to support handling of nQgsMapTools.
"""
def __init__(self):
raise Exception('This class is not for any instantiation')
ZoomIn = 'ZOOM_IN'
ZoomOut = 'ZOOM_OUT'
ZoomFull = 'ZOOM_FULL'
Pan = 'PAN'
ZoomPixelScale = 'ZOOM_PIXEL_SCALE'
CursorLocation = 'CURSOR_LOCATION'
SpectralProfile = 'SPECTRAL_PROFILE'
TemporalProfile = 'TEMPORAL_PROFILE'
MoveToCenter = 'MOVE_CENTER'
@staticmethod
def copy(mapTool):
assert isinstance(mapTool, QgsMapTool)
s = ""
@staticmethod
def create(mapToolKey, canvas, *args, **kwds):
assert mapToolKey in MapTools.mapToolKeys()
assert isinstance(canvas, QgsMapCanvas)
if mapToolKey == MapTools.ZoomIn:
return QgsMapToolZoom(canvas, False)
if mapToolKey == MapTools.ZoomOut:
return QgsMapToolZoom(canvas, True)
if mapToolKey == MapTools.Pan:
return QgsMapToolPan(canvas)
if mapToolKey == MapTools.ZoomPixelScale:
return PixelScaleExtentMapTool(canvas)
if mapToolKey == MapTools.ZoomFull:
return FullExtentMapTool(canvas)
if mapToolKey == MapTools.CursorLocation:
return CursorLocationMapTool(canvas, *args, **kwds)
if mapToolKey == MapTools.MoveToCenter:
tool = CursorLocationMapTool(canvas, *args, **kwds)
tool.sigLocationRequest.connect(canvas.setCenter)
return tool
if mapToolKey == MapTools.SpectralProfile:
return SpectralProfileMapTool(canvas, *args, **kwds)
if mapToolKey == MapTools.TemporalProfile:
return TemporalProfileMapTool(canvas, *args, **kwds)
raise Exception('Unknown mapToolKey {}'.format(mapToolKey))
@staticmethod
def mapToolKeys():
return [MapTools.__dict__[k] for k in MapTools.__dict__.keys() if not k.startswith('_')]
class CursorLocationMapTool(QgsMapToolEmitPoint):
sigLocationRequest = pyqtSignal([SpatialPoint],[SpatialPoint, QgsMapCanvas])
def __init__(self, canvas, showCrosshair=True, purpose=None):
self.mShowCrosshair = showCrosshair
self.mCanvas = canvas
self.mPurpose = purpose
QgsMapToolEmitPoint.__init__(self, self.mCanvas)
self.mMarker = QgsVertexMarker(self.mCanvas)
self.mRubberband = QgsRubberBand(self.mCanvas, QgsWkbTypes.PolygonGeometry)
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color = QColor('red')
self.mRubberband.setLineStyle(Qt.SolidLine)
self.mRubberband.setColor(color)
self.mRubberband.setWidth(2)
self.mMarker.setColor(color)
self.mMarker.setPenWidth(3)
self.mMarker.setIconSize(5)
self.mMarker.setIconType(QgsVertexMarker.ICON_CROSS) # or ICON_CROSS, ICON_X
def canvasPressEvent(self, e):
geoPoint = self.toMapCoordinates(e.pos())
self.mMarker.setCenter(geoPoint)
def setStyle(self, color=None, brushStyle=None, fillColor=None, lineStyle=None):
if color:
self.mRubberband.setColor(color)
if brushStyle:
self.mRubberband.setBrushStyle(brushStyle)
if fillColor:
self.mRubberband.setFillColor(fillColor)
if lineStyle:
self.mRubberband.setLineStyle(lineStyle)
def canvasReleaseEvent(self, e):
pixelPoint = e.pixelPoint()
crs = self.mCanvas.mapSettings().destinationCrs()
self.mMarker.hide()
geoPoint = self.toMapCoordinates(pixelPoint)
if self.mShowCrosshair:
#show a temporary crosshair
ext = SpatialExtent.fromMapCanvas(self.mCanvas)
cen = geoPoint
geom = QgsGeometry()
lineV = QgsLineString([QgsPoint(ext.upperLeftPt().x(),cen.y()), QgsPoint(ext.lowerRightPt().x(), cen.y())])
lineH = QgsLineString([QgsPoint(cen.x(), ext.upperLeftPt().y()), QgsPoint(cen.x(), ext.lowerRightPt().y())])
geom.addPart(lineV, QgsWkbTypes.LineGeometry)
geom.addPart(lineH, QgsWkbTypes.LineGeometry)
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self.mRubberband.addGeometry(geom, None)
self.mRubberband.show()
#remove crosshair after 0.25 sec
QTimer.singleShot(250, self.hideRubberband)
pt = SpatialPoint(crs, geoPoint)
self.sigLocationRequest[SpatialPoint].emit(pt)
self.sigLocationRequest[SpatialPoint, QgsMapCanvas].emit(pt, self.canvas())
def hideRubberband(self):
self.mRubberband.reset()
class SpectralProfileMapTool(CursorLocationMapTool):
def __init__(self, *args, **kwds):
super(SpectralProfileMapTool, self).__init__(*args, **kwds)
class TemporalProfileMapTool(CursorLocationMapTool):
def __init__(self, *args, **kwds):
super(TemporalProfileMapTool, self).__init__(*args, **kwds)
class FullExtentMapTool(QgsMapTool):
def __init__(self, canvas):
super(FullExtentMapTool, self).__init__(canvas)
self.canvas = canvas
def canvasReleaseEvent(self, mouseEvent):
self.canvas.zoomToFullExtent()
def flags(self):
return QgsMapTool.Transient
class PixelScaleExtentMapTool(QgsMapTool):
def __init__(self, canvas):
super(PixelScaleExtentMapTool, self).__init__(canvas)
self.canvas = canvas
def flags(self):
return QgsMapTool.Transient
def canvasReleaseEvent(self, mouseEvent):
layers = self.canvas.layers()
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unitsPxX = []
unitsPxY = []
for lyr in self.canvas.layers():
if isinstance(lyr, QgsRasterLayer):
unitsPxX.append(lyr.rasterUnitsPerPixelX())
unitsPxY.append(lyr.rasterUnitsPerPixelY())
if len(unitsPxX) > 0:
unitsPxX = np.asarray(unitsPxX)
unitsPxY = np.asarray(unitsPxY)
if True:
# zoom to largest pixel size
i = np.nanargmax(unitsPxX)
else:
# zoom to smallest pixel size
i = np.nanargmin(unitsPxX)
unitsPxX = unitsPxX[i]
unitsPxY = unitsPxY[i]
f = 0.2
width = f * self.canvas.size().width() * unitsPxX #width in map units
height = f * self.canvas.size().height() * unitsPxY #height in map units
center = SpatialPoint.fromMapCanvasCenter(self.canvas)
extent = SpatialExtent(center.crs(), 0, 0, width, height)
extent.setCenter(center, center.crs())
self.canvas.setExtent(extent)
s = ""
class MapLayerInfo(object):
"""
A minimum description of a QgsMapLayer source.
"""
def __init__(self, srcOrMapLayer, isVisible, provider='gdal', renderer=None):
self.mSrc = ''
self.mLayer = None
self.mProvider = None
self.mRenderer = None
self.setRenderer(renderer)
if isinstance(srcOrMapLayer, QgsMapLayer):
self.mSrc = srcOrMapLayer.source()
self.mProvider = srcOrMapLayer.providerType()
self.mLayer = srcOrMapLayer
if isinstance(srcOrMapLayer, QgsVectorLayer):
self.mRenderer = srcOrMapLayer.renderer()
elif isinstance(srcOrMapLayer, QgsRasterLayer):
self.mRenderer = srcOrMapLayer.renderer()
self.mSrc = srcOrMapLayer
assert provider in ['ogr','gdal']
self.mProvider = provider
self.mIsVisible = isVisible
def isSameSource(self, other):
if not isinstance(other, MapLayerInfo):
return False
return self.mSrc == other.mSrc
def initMapLayer(self):
if self.mProvider == 'gdal':
self.mLayer = QgsRasterLayer(self.mSrc)
elif self.mProvider == 'ogr':
self.mLayer = QgsVectorLayer(self.mSrc,os.path.basename(self.mSrc), 'ogr', True)
self.setRenderer(self.mRenderer)
def setRenderer(self, renderer):
self.mRenderer = renderer
if self.mProvider == 'ogr' and isinstance(renderer, QgsFeatureRenderer) or \
self.mProvider == 'gdal' and isinstance(renderer, QgsRasterRenderer):
self.mRenderer = renderer
if self.isInitialized():
from timeseriesviewer.mapvisualization import cloneRenderer
copyRenderer(self.mRenderer, self.mLayer)
def setIsVisible(self, b):
self.mIsVisible = b
def isVisible(self):
return self.mIsVisible
def layer(self):
"""returns a QgsMapLayer object related to the specified source.
If not provided in the constructor, the QgsMapLayer will be initialized with first call of this method.
"""
if not self.isInitialized():
self.initMapLayer()
return self.mLayer
def isInitialized(self):
return isinstance(self.mLayer, QgsMapLayer)
def isRegistered(self):
if not self.isInitialized():
return None
ref = QgsProject.instance().mapLayer(self.mLayer.layerId())
return isinstance(ref, QgsMapLayer)
class MapCanvasLayerModel(QAbstractTableModel):
"""
A model to save a list of QgsMapLayers and additional properties.
"""
def __init__(self, parent=None):
super(MapCanvasLayerModel, self).__init__(parent=parent)
self.mColumnNames = ['layerID', 'isVisible', '']
self.mLayerInfos = []
def __len__(self):
return len(self.mLayerInfos)
def __iter__(self):
return iter(self.mLayerInfos)
def __repr__(self):
info = 'MapLayerModel::'
for li in self.mLayerInfos:
if li.isVisible():
info += '{}'.format(li.mSrc)
return info
def setRenderer(self, renderer):
for li in self.mLayerInfos:
assert isinstance(li, MapLayerInfo)
li.setRenderer(renderer)
def setVectorLayerSources(self, vectorSources, **kwds):
self.removeLayerInfos(self.vectorLayerInfos())
self.insertLayerInfos(0, vectorSources, provider='ogr', **kwds)
def setVectorLayerVisibility(self, b):
for li in self.vectorLayerInfos():
li.setIsVisible(b)
def setRasterLayerVisibility(self, b):
for li in self.rasterLayerInfos():
li.setIsVisible(b)
def setRasterLayerSources(self, rasterSources, **kwds):
self.removeLayerInfos(self.rasterLayerInfos())
self.addLayerInfos(rasterSources, provider='gdal', **kwds)
def vectorLayerInfos(self):
return [li for li in self.mLayerInfos if li.mProvider == 'ogr']
def rasterLayerInfos(self):
return [li for li in self.mLayerInfos if li.mProvider == 'gdal']
def addLayerInfo(self, mapLayer, **kwds):
self.addLayerInfos([mapLayer], **kwds)
def addLayerInfos(self, mapLayers, **kwds):
self.insertLayerInfos(len(self), mapLayers, **kwds)
def insertLayerInfo(self, i, mapLayer, **kwds):
self.insertLayerInfo(i, [mapLayer], **kwds)
def insertLayerInfos(self, i, mapLayers, isVisible=True, provider='gdal'):
for mapLayer in mapLayers:
if isinstance(mapLayer, QgsRasterLayer) and provider != 'gdal':
continue
if isinstance(mapLayer, QgsVectorLayer) and provider != 'ogr':
continue
if isinstance(mapLayer, QgsMapLayer) or isinstance(mapLayer, str):
li = MapLayerInfo(mapLayer, isVisible=isVisible, provider=provider)
assert isinstance(li, MapLayerInfo)
self.mLayerInfos.insert(i, li)
i += 1
def removeLayerInfo(self, mapLayer):
self.removeLayerInfos([mapLayer])
def removeLayerInfos(self, mapLayers):
toRemove = []
sourcesToRemove = []
for ml in mapLayers:
if isinstance(ml, QgsMapLayer):
sourcesToRemove.append(ml.source())
else:
sourcesToRemove.append(ml)
toRemove = [li for li in self.mLayerInfos if li in sourcesToRemove]
for li in toRemove:
self.mLayerInfos.remove(li)
def layerSources(self):
return [li.mSrc for li in self.mLayerInfos]
def layers(self):
return [li.layer() for li in self.mLayerInfos]
def visibleLayers(self):
return [li.layer() for li in self.mLayerInfos if li.isVisible()]
def rowCount(self, QModelIndex_parent=None, *args, **kwargs):
return len(self.mLayers)
def columnCount(self, QModelIndex_parent=None, *args, **kwargs):
return self
class MapCanvas(QgsMapCanvas):
saveFileDirectories = dict()
sigShowProfiles = pyqtSignal(SpatialPoint, str)
sigSpatialExtentChanged = pyqtSignal(SpatialExtent)
sigChangeDVRequest = pyqtSignal(QgsMapCanvas, str)
sigChangeMVRequest = pyqtSignal(QgsMapCanvas, str)
sigChangeSVRequest = pyqtSignal(QgsMapCanvas, QgsRasterRenderer)

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sigDataLoadingFinished = pyqtSignal(np.timedelta64)
def __init__(self, parent=None):
super(MapCanvas, self).__init__(parent=parent)
self.mLayerModel = MapCanvasLayerModel(parent=self)
#the canvas
self.mRefreshScheduled = False

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def resetRenderStartTime():
self.mRenderStartTime = np.datetime64('now' ,'ms')
resetRenderStartTime()
def emitRenderTimeDelta(*args):
dt = np.datetime64('now', 'ms') - self.mRenderStartTime
self.sigDataLoadingFinished.emit(dt)
self.renderStarting.connect(resetRenderStartTime)
self.renderComplete.connect(emitRenderTimeDelta)
self.setSizePolicy(QSizePolicy.Fixed, QSizePolicy.Fixed)
self.setCanvasColor(SETTINGS.value('CANVAS_BACKGROUND_COLOR', QColor(0, 0, 0)))
self.setContextMenuPolicy(Qt.DefaultContextMenu)
#refreshTimer.timeout.connect(self.onTimerRefresh)
#self.extentsChanged.connect(lambda : self._setDataRefreshed())
self.extentsChanged.connect(lambda : self.sigSpatialExtentChanged.emit(self.spatialExtent()))
#self.mLazyRasterSources = []
#self.mLazyVectorSources = []
self.mRendererRaster = None
self.mRendererVector = None
self.mWasVisible = False
self.mMapSummary = self.mapSummary()
from timeseriesviewer.crosshair import CrosshairMapCanvasItem
self.crosshairItem = CrosshairMapCanvasItem(self)
self.mMapTools = dict()
self.mMapTools['zoomOut'] = QgsMapToolZoom(self, True)
self.mMapTools['zoomIn'] = QgsMapToolZoom(self, False)
self.mMapTools['pan'] = QgsMapToolPan(self)
from timeseriesviewer.maptools import CursorLocationMapTool
mt = CursorLocationMapTool(self)
mt.sigLocationRequest.connect(lambda c: self.sigShowProfiles.emit(c, 'identifyTemporalProfile'))
self.mMapTools['identifyTemporalProfile'] = mt
mt = CursorLocationMapTool(self)
mt.sigLocationRequest.connect(lambda c : self.sigShowProfiles.emit(c, 'identifySpectralProfile'))
self.mMapTools['identifySpectralProfile'] = mt
mt = CursorLocationMapTool(self)
#mt.sigLocationRequest.connect(self.sigShowProfiles.emit)
mt.sigLocationRequest.connect(lambda c: self.sigShowProfiles.emit(c, 'identifyCursorLocationValues'))
self.mMapTools['identifyCursorLocationValues'] = mt
mt = CursorLocationMapTool(self)
mt.sigLocationRequest.connect(lambda pt: self.setCenter(pt))
self.mMapTools['moveCenter'] = mt
def setMapView(self, mapView):
from timeseriesviewer.mapvisualization import MapView
assert isinstance(mapView, MapView)
self.mMapView = mapView

Benjamin Jakimow
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scope = self.expressionContextScope()
def setTSD(self, tsd):
from timeseriesviewer.timeseries import TimeSeriesDatum
assert isinstance(tsd, TimeSeriesDatum)
self.mTSD = tsd

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scope = self.expressionContextScope()
scope.setVariable('map_date', str(tsd.date), isStatic=True)
scope.setVariable('map_doy', tsd.doy, isStatic=True)
scope.setVariable('map_sensor', tsd.sensor.name(), isStatic=False)
tsd.sensor.sigNameChanged.connect(lambda name : scope.setVariable('map_sensor', name))
s = ""
def setFixedSize(self, size):
assert isinstance(size, QSize)
if self.size() != size:
super(MapCanvas, self).setFixedSize(size)
def setCrs(self, crs):
assert isinstance(crs, QgsCoordinateReferenceSystem)
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