mirror of https://gitlab.com/pamhyr/pamhyr2
interactive selection in results
parent
88dd9cf15a
commit
7b8191e2f0
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@ -22,10 +22,14 @@ from functools import reduce
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from tools import timer, trace
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from tools import timer, trace
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from View.Tools.PamhyrPlot import PamhyrPlot
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from View.Tools.PamhyrPlot import PamhyrPlot
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import numpy as np
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from matplotlib import collections
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from PyQt5.QtCore import (
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from PyQt5.QtCore import (
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QCoreApplication
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QCoreApplication, Qt, QItemSelectionModel,
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QItemSelection, QItemSelectionRange
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)
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)
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from PyQt5.QtWidgets import QApplication, QTableView
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_translate = QCoreApplication.translate
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_translate = QCoreApplication.translate
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@ -57,6 +61,74 @@ class PlotXY(PamhyrPlot):
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self.label_y = _translate("Results", "Y (m)")
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self.label_y = _translate("Results", "Y (m)")
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self._isometric_axis = True
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self._isometric_axis = True
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self._tablemodel = parent._table["profile"]
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self._table = parent.find(QTableView, f"tableView_profile")
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def onpick(self, event):
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print(event.mouseevent.button.value)
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if event.mouseevent.inaxes != self.canvas.axes:
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return
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if event.mouseevent.button.value != 1:
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return
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modifiers = QApplication.keyboardModifiers()
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if modifiers not in [Qt.ControlModifier,
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Qt.NoModifier,
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Qt.ShiftModifier]:
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return
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ind, point = self._closest_section(event)
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if self._table is None:
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return
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self._select_in_table([ind])
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self._table.blockSignals(False)
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return
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def _closest_section(self, event):
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axes = self.canvas.axes
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mx = event.mouseevent.xdata
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my = event.mouseevent.ydata
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bx, by = axes.get_xlim(), axes.get_ylim()
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ratio = (bx[0] - bx[1]) / (by[0] - by[1])
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segments = event.artist.get_segments()
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ind = event.ind
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points = []
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for i in ind:
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points = points + [[i, j] for j in segments[i]]
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def dist_mouse(point):
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x, y = point[1]
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d2 = (((mx - x) / ratio) ** 2) + ((my - y) ** 2)
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return d2
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closest = min(
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points, key=dist_mouse
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)
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return closest
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def _select_in_table(self, ind):
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if self._table is None:
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return
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self._table.setFocus()
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selection = self._table.selectionModel()
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index = QItemSelection()
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if len(ind) == 0:
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return
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for i in ind:
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index.append(QItemSelectionRange(self._table.model().index(i, 0)))
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selection.select(
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index,
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QItemSelectionModel.Rows |
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QItemSelectionModel.ClearAndSelect |
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QItemSelectionModel.Select
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)
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if len(ind) > 0:
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self._table.scrollTo(self._table.model().index(ind[-1], 0))
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@property
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@property
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def results(self):
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def results(self):
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@ -90,18 +162,51 @@ class PlotXY(PamhyrPlot):
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self._init = False
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self._init = False
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return
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return
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self.line_xy = [
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#self.line_xy = [
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self.canvas.axes.plot(
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#self.canvas.axes.plot(
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x, y,
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#x, y,
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color=self.color_plot_river_bottom,
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#color=self.color_plot_river_bottom,
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**self.plot_default_kargs
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#**self.plot_default_kargs
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)
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#)
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for x, y, kp in zip(
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#for x, y, kp in zip(
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reach.geometry.get_x(),
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#reach.geometry.get_x(),
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reach.geometry.get_y(),
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#reach.geometry.get_y(),
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reach.geometry.get_kp()
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#reach.geometry.get_kp()
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)
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#)
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]
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#]
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self.line_xy = []
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for xy in zip(reach.geometry.get_x(), reach.geometry.get_y()):
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self.line_xy.append(np.column_stack(xy))
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self._colors, self._style = self.color_hightlight()
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self.line_xy_collection = collections.LineCollection(
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self.line_xy,
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colors=self._colors,
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linestyle=self._style,
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picker=10
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)
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self.canvas.axes.add_collection(self.line_xy_collection)
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def color_hightlight(self):
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reach = self.results.river.reach(self._current_reach_id)
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#rows = sorted(list(
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#set(
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#(i.row() for i in self._current_profile_id)
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#)
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#))
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rows=[self._current_profile_id]
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colors = [self.color_plot for row in range(reach.geometry.number_profiles)]
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style = ["-" for row in range(reach.geometry.number_profiles)]
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if len(rows) > 0:
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for row in rows:
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colors[row] = self.color_plot_current
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if rows[0] > 0:
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colors[rows[0]-1] = self.color_plot_previous
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style[rows[0]-1] = "--"
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if rows[-1] < reach.geometry.number_profiles-1:
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colors[rows[-1]+1] = self.color_plot_next
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style[rows[-1]+1] = "--"
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return colors, style
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def draw_guide_lines(self, reach):
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def draw_guide_lines(self, reach):
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x_complete = reach.geometry.get_guidelines_x()
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x_complete = reach.geometry.get_guidelines_x()
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@ -176,7 +176,8 @@ class ResultsWindow(PamhyrWindow):
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profile_id=0,
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profile_id=0,
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trad=self._trad,
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trad=self._trad,
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toolbar=self.toolbar,
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toolbar=self.toolbar,
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display_current=True
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display_current=True,
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parent=self
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)
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)
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self.plot_xy.draw()
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self.plot_xy.draw()
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