mirror of https://gitlab.com/pamhyr/pamhyr2
more work on adis results
parent
bdc975f280
commit
c668dddcfd
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@ -35,11 +35,11 @@ _translate = QCoreApplication.translate
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logger = logging.getLogger()
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class PlotAdis_dx(PamhyrPlot):
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class PlotAdis(PamhyrPlot):
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def __init__(self, canvas=None, trad=None, toolbar=None,
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results=None, reach_id=0, profile_id=0,
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pol_id=[0], key="C", type_pol=[7], parent=None):
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super(PlotAdis_dx, self).__init__(
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super(PlotAdis, self).__init__(
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canvas=canvas,
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trad=trad,
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data=results,
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@ -106,114 +106,15 @@ class PlotAdis_dx(PamhyrPlot):
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self._init = False
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return
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self.draw_min_and_max(reach)
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self.draw_data(reach)
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self.draw_profiles_hs(reach)
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self.draw_current(reach)
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self.enable_legend()
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self.draw_min_and_max()
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self.draw_data()
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self.draw_current()
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self.idle()
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#self.update_current()
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self._init = True
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def draw_profiles_hs(self, reach):
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lhs = filter(
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lambda hs: hs._input_reach.reach is reach.geometry,
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filter(
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lambda hs: hs._input_reach is not None,
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self.results.study.river.hydraulic_structures.lst
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)
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)
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for hs in lhs:
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x = hs.input_rk
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z_min = reach.geometry.get_z_min()
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z_max = reach.geometry.get_z_max()
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self.canvas.axes.plot(
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[x, x],
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[min(z_min), max(z_max)],
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linestyle="--",
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lw=1.,
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color=self.color_plot_previous,
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)
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self.canvas.axes.annotate(
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" > " + hs.name,
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(x, max(z_max)),
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horizontalalignment='left',
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verticalalignment='top',
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annotation_clip=True,
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fontsize=9, color=self.color_plot_previous,
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)
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def draw_data(self, reach):
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profile = reach.profile(self._current_profile_id)
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x = reach.geometry.get_rk()
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for i in range(len(self._current_pol_id)):
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pol_id = self._current_pol_id[i]
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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y = [0.0]*len(x)
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else:
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y = list(map(lambda p:
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p.get_ts_key(
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self._current_timestamp, "pols"
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)[pol_id][self.val_id[self._key]],
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reach.profiles))
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self._lines.append(self.canvas.axes.plot(
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x, y,
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label=self.label[self._key],
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color=self.color_plot,
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**self.plot_default_kargs
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)[0])
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#self.set_y_lim()
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def draw_current(self, reach):
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rk = reach.geometry.get_rk()
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self._current, = self.canvas.axes.plot(
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[rk[self._current_profile_id], rk[self._current_profile_id]],
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self.canvas.axes.get_ylim(),
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#[self.y_max, self.y_min],
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color="grey",
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linestyle="dashed",
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lw=1.,
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)
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def update_current(self):
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self.hide_current()
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self.canvas.axes.relim(visible_only=True)
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self.canvas.axes.autoscale_view()
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self.show_current()
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reach = self.results.river.reach(self._current_reach_id)
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rk = reach.geometry.get_rk()
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self._current.set_data(
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[rk[self._current_profile_id], rk[self._current_profile_id]],
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self.canvas.axes.get_ylim()
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)
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def draw_min_and_max(self, reach):
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profile = reach.profile(self._current_profile_id)
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x = reach.geometry.get_rk()
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y = [-inf]*reach.geometry.number_profiles
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z = [inf]*reach.geometry.number_profiles
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for pol_id in self._current_pol_id:
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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for i in range(reach.geometry.number_profiles):
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y[i] = max(0.0, y[i])
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z[i] = min(0.0, z[i])
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else:
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val_id = self.val_id[self._key]
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for i, p in enumerate(reach.profiles):
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rk_y = list(map(lambda data_el:
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data_el[pol_id][val_id],
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p.get_key("pols")
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))
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y[i] = max(np.max(rk_y), y[i])
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z[i] = min(np.min(rk_y), z[i])
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def draw_min_and_max(self):
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x, y, z = self.get_min_and_max()
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self._line_max, = self.canvas.axes.plot(
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x, y,
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@ -233,53 +134,82 @@ class PlotAdis_dx(PamhyrPlot):
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markersize=0
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)
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def update_min_and_max(self):
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x, y, z = self.get_min_and_max()
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self._line_max.set_data(x, y)
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self._line_min.set_data(x, z)
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def set_reach(self, reach_id):
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self._current_reach_id = reach_id
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self._current_profile_id = 0
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self.draw()
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def set_profile(self, profile_id):
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self._current_profile_id = profile_id
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self.update_current()
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self.update_idle()
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def set_timestamp(self, timestamp):
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self._current_timestamp = timestamp
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self.update()
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def update(self):
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if not self._init:
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self.draw()
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self.update_min_and_max()
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self.update_data()
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#self.set_y_lim
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self.update_idle()
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def update_min_and_max(self):
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def hide_current(self):
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self._current.set_visible(False)
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def show_current(self):
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self._current.set_visible(True)
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def set_pollutant(self, pol_id):
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for l in self._lines:
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l.remove()
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self._lines = []
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self._current_pol_id = pol_id
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self.update_min_and_max()
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self.draw_data()
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self.update_current()
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self.update_idle()
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class PlotAdis_dx(PlotAdis):
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def __init__(self, canvas=None, trad=None, toolbar=None,
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results=None, reach_id=0, profile_id=0,
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pol_id=[0], key="C", type_pol=[7], parent=None):
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super(PlotAdis_dx, self).__init__(
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canvas=canvas,
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trad=trad,
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toolbar=toolbar,
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results=results,
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reach_id=reach_id,
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profile_id=profile_id,
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pol_id=pol_id,
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key=key,
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type_pol=type_pol,
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parent=parent
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)
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def draw_data(self):
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reach = self.results.river.reach(self._current_reach_id)
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profile = reach.profile(self._current_profile_id)
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x = reach.geometry.get_rk()
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y = [-inf]*reach.geometry.number_profiles
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z = [inf]*reach.geometry.number_profiles
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for pol_id in self._current_pol_id:
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for i in range(len(self._current_pol_id)):
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pol_id = self._current_pol_id[i]
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name = self.data.pollutants_list[pol_id]
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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for i in range(reach.geometry.number_profiles):
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y[i] = max(0.0, y[i])
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z[i] = min(0.0, z[i])
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y = [0.0]*len(x)
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else:
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val_id = self.val_id[self._key]
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for i, p in enumerate(reach.profiles):
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rk_y = list(map(lambda data_el:
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data_el[pol_id][val_id],
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p.get_key("pols")
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))
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y[i] = max(np.max(rk_y), y[i])
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z[i] = min(np.min(rk_y), z[i])
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y = list(map(lambda p:
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p.get_ts_key(
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self._current_timestamp, "pols"
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)[pol_id][self.val_id[self._key]],
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reach.profiles))
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self._lines.append(self.canvas.axes.plot(
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x, y,
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label=self.label[self._key]+" "+name,
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color=self.color_plot,
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**self.plot_default_kargs
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)[0])
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self._line_max.set_data(x, y)
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self._line_min.set_data(x, z)
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self.enable_legend()
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def update_data(self):
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reach = self.results.river.reach(self._current_reach_id)
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@ -302,44 +232,186 @@ class PlotAdis_dx(PamhyrPlot):
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self.update_current()
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def hide_current(self):
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self._current.set_visible(False)
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def show_current(self):
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self._current.set_visible(True)
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def set_pollutant(self, pol_id):
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for l in self._lines:
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l.remove()
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self._lines = []
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reach = self.results.river.reach(self._current_reach_id)
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self._current_pol_id = pol_id
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self.update_min_and_max()
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self.draw_data(reach)
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self.update_current()
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#self.set_y_lim
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self.update_idle()
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def set_y_lim(self):
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def draw_current(self):
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reach = self.results.river.reach(self._current_reach_id)
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rk = reach.geometry.get_rk()
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y0 = []
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self._current, = self.canvas.axes.plot(
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[rk[self._current_profile_id], rk[self._current_profile_id]],
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self.canvas.axes.get_ylim(),
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color="grey",
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linestyle="dashed",
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lw=1.,
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)
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def update_current(self):
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self.hide_current()
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self.canvas.axes.relim(visible_only=True)
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self.canvas.axes.autoscale_view()
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self.show_current()
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reach = self.results.river.reach(self._current_reach_id)
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rk = reach.geometry.get_rk()
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self._current.set_data(
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[rk[self._current_profile_id], rk[self._current_profile_id]],
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self.canvas.axes.get_ylim()
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)
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def get_min_and_max(self):
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reach = self.results.river.reach(self._current_reach_id)
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profile = reach.profile(self._current_profile_id)
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x = reach.geometry.get_rk()
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y = [-inf]*reach.geometry.number_profiles
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z = [inf]*reach.geometry.number_profiles
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for pol_id in self._current_pol_id:
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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y = [0.0]
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for i in range(reach.geometry.number_profiles):
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y[i] = max(0.0, y[i])
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z[i] = min(0.0, z[i])
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else:
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val_id = self.val_id[self._key]
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y = list(
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map(lambda p:
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list(map(lambda data_el:
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data_el[pol_id][val_id],
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p.get_key("pols"))), reach.profiles))
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y0.append(y)
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for i, p in enumerate(reach.profiles):
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rk_y = list(map(lambda data_el:
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data_el[pol_id][val_id],
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p.get_key("pols")
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))
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y[i] = max(np.max(rk_y), y[i])
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z[i] = min(np.min(rk_y), z[i])
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self.y_max = np.max([np.max(y) for y in y0])
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self.y_min = np.min([np.min(y) for y in y0])
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if self.y_max - self.y_min < 0.000001:
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self.y_min = (self.y_max + self.y_min)/2 - 0.5
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self.y_max = (self.y_max + self.y_min)/2 + 0.5
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return x, y, z
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self.canvas.axes.set_ylim(self.y_min, self.y_max)
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def set_profile(self, profile_id):
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self._current_profile_id = profile_id
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self.update_current()
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self.update_idle()
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def set_timestamp(self, timestamp):
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self._current_timestamp = timestamp
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self.update()
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class PlotAdis_dt(PlotAdis):
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def __init__(self, canvas=None, trad=None, toolbar=None,
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results=None, reach_id=0, profile_id=0,
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pol_id=[0], key="C", type_pol=[7], parent=None):
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super(PlotAdis_dt, self).__init__(
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canvas=canvas,
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trad=trad,
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toolbar=toolbar,
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results=results,
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reach_id=reach_id,
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profile_id=profile_id,
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pol_id=pol_id,
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key=key,
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type_pol=type_pol,
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parent=parent
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)
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def draw_data(self):
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reach = self.results.river.reach(self._current_reach_id)
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profile = reach.profile(self._current_profile_id)
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self.ts = list(self.results.get("timestamps"))
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self.ts.sort()
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x = self.ts
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for i in range(len(self._current_pol_id)):
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pol_id = self._current_pol_id[i]
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name = self.data.pollutants_list[pol_id]
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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y = [0.0]*len(x)
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else:
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val_id = self.val_id[self._key]
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y = list(map(lambda data_el:
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data_el[pol_id][val_id],
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profile.get_key("pols")
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))
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self._lines.append(self.canvas.axes.plot(
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x, y,
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label=self.label[self._key]+" "+name,
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color=self.color_plot,
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**self.plot_default_kargs
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)[0])
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self.set_ticks_time_formater()
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self.enable_legend()
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def update_data(self):
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reach = self.results.river.reach(self._current_reach_id)
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profile = reach.profile(self._current_profile_id)
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x = self.ts
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for i in range(len(self._current_pol_id)):
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pol_id = self._current_pol_id[i]
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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y = [0.0]*len(x)
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else:
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y = list(map(lambda data_el:
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data_el[pol_id][self.val_id[self._key]],
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profile.get_key("pols")
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))
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self._lines[i].set_data(x, y)
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self._current.set_data(
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[self._current_timestamp, self._current_timestamp],
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self.canvas.axes.get_ylim()
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)
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self.update_current()
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def draw_current(self):
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self._current, = self.canvas.axes.plot(
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[self._current_timestamp, self._current_timestamp],
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self.canvas.axes.get_ylim(),
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color="grey",
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linestyle="dashed",
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lw=1.,
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)
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def update_current(self):
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self.hide_current()
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self.canvas.axes.relim(visible_only=True)
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self.canvas.axes.autoscale_view()
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self.show_current()
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self._current.set_data(
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[self._current_timestamp, self._current_timestamp],
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self.canvas.axes.get_ylim()
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)
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def get_min_and_max(self):
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reach = self.results.river.reach(self._current_reach_id)
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self.ts = list(self.results.get("timestamps"))
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self.ts.sort()
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x = self.ts
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y = [-inf]*len(x)
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z = [inf]*len(x)
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for pol_id in self._current_pol_id:
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if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
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for i in range(len(x)):
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y[i] = max(0.0, y[i])
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z[i] = min(0.0, z[i])
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else:
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val_id = self.val_id[self._key]
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for i, ts in enumerate(x):
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ts_y = list(map(lambda p:
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p.get_ts_key(
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ts, "pols"
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)[pol_id][val_id],
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reach.profiles
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))
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y[i] = max(np.max(ts_y), y[i])
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z[i] = min(np.min(ts_y), z[i])
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return x, y, z
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def set_profile(self, profile_id):
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self._current_profile_id = profile_id
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self.update()
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def set_timestamp(self, timestamp):
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self._current_timestamp = timestamp
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self.update_current()
|
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self.update_idle()
|
||||
|
|
@ -1,270 +0,0 @@
|
|||
# PlotSedAdisDt.py -- Pamhyr
|
||||
# Copyright (C) 2023-2024 INRAE
|
||||
#
|
||||
# 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 3 of the License, or
|
||||
# (at your option) any later version.
|
||||
#
|
||||
# This program is distributed in the hope that it will be useful,
|
||||
# but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
# GNU General Public License for more details.
|
||||
#
|
||||
# You should have received a copy of the GNU General Public License
|
||||
# along with this program. If not, see <https://www.gnu.org/licenses/>.
|
||||
|
||||
# -*- coding: utf-8 -*-
|
||||
|
||||
import logging
|
||||
import numpy as np
|
||||
|
||||
from functools import reduce
|
||||
from datetime import datetime
|
||||
|
||||
from tools import timer, trace
|
||||
from View.Tools.PamhyrPlot import PamhyrPlot
|
||||
|
||||
from PyQt5.QtCore import (
|
||||
QCoreApplication
|
||||
)
|
||||
|
||||
_translate = QCoreApplication.translate
|
||||
|
||||
logger = logging.getLogger()
|
||||
|
||||
|
||||
class PlotAdis_dt(PamhyrPlot):
|
||||
def __init__(self, canvas=None, trad=None, toolbar=None,
|
||||
results=None, reach_id=0, profile_id=0,
|
||||
pol_id=[0], key="C", type_pol=[7], parent=None):
|
||||
super(PlotAdis_dt, self).__init__(
|
||||
canvas=canvas,
|
||||
trad=trad,
|
||||
data=results,
|
||||
toolbar=toolbar,
|
||||
parent=parent
|
||||
)
|
||||
|
||||
self._current_timestamp = max(results.get("timestamps"))
|
||||
self._current_reach_id = reach_id
|
||||
self._current_profile_id = profile_id
|
||||
self._current_pol_id = pol_id
|
||||
self._key = key
|
||||
self._type_pol = type_pol
|
||||
|
||||
self.label_x = self._trad["unit_time_s"]
|
||||
self._available_values_y = self._trad.get_dict("values_y_pol")
|
||||
|
||||
self.label = {}
|
||||
self.label_max = {}
|
||||
self.label_min = {}
|
||||
self.label["C"] = _translate("Results", "Concentration")
|
||||
self.label_max["C"] = _translate("Results", "Max Concentration")
|
||||
if self._type_pol[pol_id[0]] == -1: # Total
|
||||
self.label["M"] = _translate("Results", "Thickness")
|
||||
self.label_max["M"] = _translate("Results", "Max Thickness")
|
||||
self.label_min["M"] = _translate("Results", "Min Thickness")
|
||||
self.label_y = self._available_values_y["unit_thickness"]
|
||||
else:
|
||||
self.label["M"] = _translate("Results", "Mass")
|
||||
self.label_max["M"] = _translate("Results", "Max Mass")
|
||||
self.label_min["M"] = _translate("Results", "Min Mass")
|
||||
self.label_y = self._available_values_y["unit_"+self._key]
|
||||
self.val_id = {}
|
||||
self.val_id["C"] = 0
|
||||
self.val_id["G"] = 1
|
||||
self.val_id["M"] = 2
|
||||
self.val_id["D"] = 3
|
||||
|
||||
self._lines = [None]*len(self._current_pol_id)
|
||||
|
||||
self._isometric_axis = False
|
||||
|
||||
@property
|
||||
def results(self):
|
||||
return self.data
|
||||
|
||||
@results.setter
|
||||
def results(self, results):
|
||||
self.data = results
|
||||
self._current_timestamp = max(results.get("timestamps"))
|
||||
|
||||
@timer
|
||||
def draw(self, highlight=None):
|
||||
self.init_axes()
|
||||
|
||||
if self.results is None:
|
||||
return
|
||||
|
||||
reach = self.results.river.reach(self._current_reach_id)
|
||||
profile = reach.profile(self._current_profile_id)
|
||||
|
||||
if reach.geometry.number_profiles == 0:
|
||||
self._init = False
|
||||
return
|
||||
|
||||
self.draw_max(reach)
|
||||
self.draw_data(reach, profile)
|
||||
self.draw_current()
|
||||
|
||||
self.set_ticks_time_formater()
|
||||
|
||||
self.enable_legend()
|
||||
|
||||
self.idle()
|
||||
self.update_current()
|
||||
self._init = True
|
||||
|
||||
def draw_data(self, reach, profile):
|
||||
self.ts = list(self.results.get("timestamps"))
|
||||
self.ts.sort()
|
||||
|
||||
x = self.ts
|
||||
for i in range(len(self._current_pol_id)):
|
||||
pol_id = self._current_pol_id[i]
|
||||
if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
|
||||
y = [0.0]*len(x)
|
||||
else:
|
||||
val_id = self.val_id[self._key]
|
||||
y = list(map(lambda data_el:
|
||||
data_el[pol_id][val_id],
|
||||
profile.get_key("pols")
|
||||
))
|
||||
|
||||
self._lines[i], = self.canvas.axes.plot(
|
||||
x, y,
|
||||
label=self.label[self._key],
|
||||
color=self.color_plot,
|
||||
**self.plot_default_kargs
|
||||
)
|
||||
|
||||
def draw_current(self):
|
||||
self._current, = self.canvas.axes.plot(
|
||||
[self._current_timestamp, self._current_timestamp],
|
||||
self.canvas.axes.get_ylim(),
|
||||
color="grey",
|
||||
linestyle="dashed",
|
||||
lw=1.,
|
||||
)
|
||||
|
||||
def draw_max(self, reach):
|
||||
self.ts = list(self.results.get("timestamps"))
|
||||
self.ts.sort()
|
||||
|
||||
x = self.ts
|
||||
if self.val_id[self._key] > 0 and self._type_pol == 1:
|
||||
y = [0.0]*len(x)
|
||||
else:
|
||||
y = []
|
||||
val_id = self.val_id[self._key]
|
||||
for ts in x:
|
||||
ts_y = list(map(lambda p:
|
||||
p.get_ts_key(
|
||||
ts, "pols"
|
||||
)[self._current_pol_id[0]][val_id],
|
||||
reach.profiles))
|
||||
y.append(np.max(ts_y))
|
||||
|
||||
self._line_max, = self.canvas.axes.plot(
|
||||
x, y,
|
||||
label=self.label_max[self._key],
|
||||
color=self.color_plot_highlight,
|
||||
linestyle='dotted',
|
||||
lw=1.,
|
||||
markersize=0
|
||||
)
|
||||
|
||||
def set_reach(self, reach_id):
|
||||
self._current_reach_id = reach_id
|
||||
self._current_profile_id = 0
|
||||
self.draw()
|
||||
|
||||
def set_profile(self, profile_id):
|
||||
self._current_profile_id = profile_id
|
||||
self.update()
|
||||
|
||||
def set_timestamp(self, timestamp):
|
||||
self._current_timestamp = timestamp
|
||||
self.update_current()
|
||||
self.update_idle()
|
||||
|
||||
def update(self):
|
||||
if not self._init:
|
||||
self.draw()
|
||||
|
||||
self.update_max()
|
||||
self.update_data()
|
||||
self.update_idle()
|
||||
|
||||
def update_max(self):
|
||||
reach = self.results.river.reach(self._current_reach_id)
|
||||
self.ts = list(self.results.get("timestamps"))
|
||||
self.ts.sort()
|
||||
|
||||
x = self.ts
|
||||
if self.val_id[self._key] > 0 and self._type_pol == 1:
|
||||
y = [0.0]*len(x)
|
||||
else:
|
||||
y = []
|
||||
val_id = self.val_id[self._key]
|
||||
for ts in x:
|
||||
ts_y = list(map(lambda p:
|
||||
p.get_ts_key(
|
||||
ts, "pols"
|
||||
)[self._current_pol_id[0]][val_id],
|
||||
reach.profiles))
|
||||
y.append(np.max(ts_y))
|
||||
|
||||
self._line_max.set_data(x, y)
|
||||
|
||||
def update_data(self):
|
||||
reach = self.results.river.reach(self._current_reach_id)
|
||||
profile = reach.profile(self._current_profile_id)
|
||||
|
||||
x = self.ts
|
||||
for i in range(len(self._current_pol_id)):
|
||||
pol_id = self._current_pol_id[i]
|
||||
if self.val_id[self._key] > 0 and self._type_pol[pol_id] == 1:
|
||||
y = [0.0]*len(x)
|
||||
else:
|
||||
y = list(map(lambda data_el:
|
||||
data_el[pol_id][self.val_id[self._key]],
|
||||
profile.get_key("pols")
|
||||
))
|
||||
|
||||
self._lines[i].set_data(x, y)
|
||||
|
||||
self._current.set_data(
|
||||
[self._current_timestamp, self._current_timestamp],
|
||||
self.canvas.axes.get_ylim()
|
||||
)
|
||||
|
||||
self.hide_current()
|
||||
self.canvas.axes.relim(visible_only=True)
|
||||
self.canvas.axes.autoscale_view()
|
||||
self.show_current()
|
||||
|
||||
def update_current(self):
|
||||
self._current.set_data(
|
||||
[self._current_timestamp, self._current_timestamp],
|
||||
self.canvas.axes.get_ylim()
|
||||
)
|
||||
|
||||
def hide_current(self):
|
||||
self._current.set_visible(False)
|
||||
|
||||
def show_current(self):
|
||||
self._current.set_visible(True)
|
||||
|
||||
def set_pollutant(self, pol_id):
|
||||
if len(pol_id) == len(self._current_pol_id):
|
||||
self._current_pol_id = pol_id
|
||||
self.update()
|
||||
self.update_current()
|
||||
else:
|
||||
self._current_pol_id = pol_id
|
||||
self._lines = [None]*len(self._current_pol_id)
|
||||
self.draw()
|
||||
self.update_current()
|
||||
|
||||
|
|
@ -46,8 +46,8 @@ from PyQt5.QtWidgets import (
|
|||
from View.Tools.Plot.PamhyrCanvas import MplCanvas
|
||||
from View.Tools.Plot.PamhyrToolbar import PamhyrPlotToolbar
|
||||
|
||||
from View.Results.PlotSedAdisDt import PlotAdis_dt
|
||||
from View.Results.PlotSedAdisDx import PlotAdis_dx
|
||||
#from View.Results.PlotSedAdisDt import PlotAdis_dt
|
||||
from View.Results.PlotSedAdisDx import PlotAdis_dx, PlotAdis_dt
|
||||
|
||||
from View.Results.CustomPlot.Plot import CustomPlot
|
||||
from View.Results.CustomPlot.CustomPlotValuesSelectionDialog import (
|
||||
|
|
@ -276,9 +276,6 @@ class ResultsWindowAdisTS(PamhyrWindow):
|
|||
|
||||
self.plot_mdt.draw()
|
||||
|
||||
#if self._type_pol[self._pol_id[0]] != 7:
|
||||
#self.find(QTabWidget, "tabWidget").setTabVisible(2, False)
|
||||
|
||||
# Thickness
|
||||
|
||||
self.canvas_tdx = MplCanvas(width=5, height=4, dpi=100)
|
||||
|
|
@ -481,7 +478,6 @@ class ResultsWindowAdisTS(PamhyrWindow):
|
|||
if reach_id is not None:
|
||||
self.plot_cdt.set_reach(reach_id)
|
||||
self.plot_cdx.set_reach(reach_id)
|
||||
#if self._type_pol[self._pol_id[0]] != 1:
|
||||
self.plot_mdx.set_reach(reach_id)
|
||||
self.plot_mdt.set_reach(reach_id)
|
||||
self.plot_tdt.set_reach(reach_id)
|
||||
|
|
@ -493,7 +489,6 @@ class ResultsWindowAdisTS(PamhyrWindow):
|
|||
if profile_id is not None:
|
||||
self.plot_cdt.set_profile(profile_id)
|
||||
self.plot_cdx.set_profile(profile_id)
|
||||
#if self._type_pol[self._pol_id[0]] != 1:
|
||||
self.plot_mdx.set_profile(profile_id)
|
||||
self.plot_mdt.set_profile(profile_id)
|
||||
self.plot_tdt.set_profile(profile_id)
|
||||
|
|
@ -505,14 +500,9 @@ class ResultsWindowAdisTS(PamhyrWindow):
|
|||
self._pol_id = [p+1 for p in pol_id] # remove total_sediment
|
||||
self.plot_cdt.set_pollutant(self._pol_id)
|
||||
self.plot_cdx.set_pollutant(self._pol_id)
|
||||
#if self._type_pol[self._pol_id[0]] != 1:
|
||||
#self.find(QTabWidget, "tabWidget").setTabVisible(2, True)
|
||||
#self.plot_mdx.set_pollutant(self._pol_id)
|
||||
#self.plot_mdt.set_pollutant(self._pol_id)
|
||||
#else:
|
||||
#self.find(QTabWidget, "tabWidget").setTabVisible(2, False)
|
||||
self.plot_mdx.set_pollutant(self._pol_id)
|
||||
self.plot_mdt.set_pollutant(self._pol_id)
|
||||
|
||||
#self.update_table_selection_pol(self._pol_id)
|
||||
|
||||
if timestamp is not None:
|
||||
self.plot_cdt.set_timestamp(timestamp)
|
||||
|
|
@ -573,17 +563,15 @@ class ResultsWindowAdisTS(PamhyrWindow):
|
|||
def _reload_plots(self):
|
||||
self.plot_cdt.results = self._results
|
||||
self.plot_cdx.results = self._results
|
||||
if self._type_pol[self._pol_id] == 7:
|
||||
self.plot_mdx.results = self._results
|
||||
self.plot_mdt.results = self._results
|
||||
self.plot_mdx.results = self._results
|
||||
self.plot_mdt.results = self._results
|
||||
self.plot_tdt.results = self._results
|
||||
self.plot_tdx.results = self._results
|
||||
|
||||
self.plot_cdt.draw()
|
||||
self.plot_cdx.draw()
|
||||
if self._type_pol[self._pol_id] == 7:
|
||||
self.plot_mdx.draw()
|
||||
self.plot_mdt.draw()
|
||||
self.plot_mdx.draw()
|
||||
self.plot_mdt.draw()
|
||||
self.plot_tdt.draw()
|
||||
self.plot_tdx.draw()
|
||||
|
||||
|
|
|
|||
Loading…
Reference in New Issue