Add "contents" labels to charts
Add a default "contents label" (eg. OHLC values for bar charts) to each chart and update on crosshair interaction. Few technical changes to make this happen: - adjust bar graphics to have the HL line be in the "middle" of the underlying arrays' "index range" in the containing view. - add a label dict each chart's graphics name to a label + update routine - use symbol names instead of this "main" identifier crap for referring to particular price curves/graphicsits_happening
parent
bfdd2c43cc
commit
69aced7521
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@ -1,7 +1,7 @@
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"""
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High level Qt chart widgets.
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"""
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from typing import Optional, Tuple, Dict, Any
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from typing import Tuple, Dict, Any
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import time
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from PyQt5 import QtCore, QtGui
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@ -172,14 +172,15 @@ class LinkedSplitCharts(QtGui.QWidget):
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# add crosshairs
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self._ch = CrossHair(
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parent=self,
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linkedsplitcharts=self,
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digits=self.digits
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)
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self.chart = self.add_plot(
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name='main',
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name=symbol.key,
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array=array,
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xaxis=self.xaxis,
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ohlc=True,
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_is_main=True,
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)
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# add crosshair graphic
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self.chart.addItem(self._ch)
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@ -195,12 +196,13 @@ class LinkedSplitCharts(QtGui.QWidget):
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array: np.ndarray,
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xaxis: DynamicDateAxis = None,
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ohlc: bool = False,
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_is_main: bool = False,
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) -> 'ChartPlotWidget':
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"""Add (sub)plots to chart widget by name.
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If ``name`` == ``"main"`` the chart will be the the primary view.
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"""
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if self.chart is None and name != 'main':
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if self.chart is None and not _is_main:
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raise RuntimeError(
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"A main plot must be created first with `.plot_main()`")
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@ -230,14 +232,14 @@ class LinkedSplitCharts(QtGui.QWidget):
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# draw curve graphics
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if ohlc:
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cpw.draw_ohlc(array)
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cpw.draw_ohlc(name, array)
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else:
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cpw.draw_curve(array)
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cpw.draw_curve(name, array)
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# add to cross-hair's known plots
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self._ch.add_plot(cpw)
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if name != "main":
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if not _is_main:
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# track by name
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self.subplots[name] = cpw
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@ -279,13 +281,7 @@ class ChartPlotWidget(pg.PlotWidget):
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super().__init__(**kwargs)
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self._array = array # readonly view of data
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self._graphics = {} # registry of underlying graphics
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# XXX: label setting doesn't seem to work?
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# likely custom graphics need special handling
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# label = pg.LabelItem(justify='right')
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# self.addItem(label)
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# label.setText("Yo yoyo")
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# label.setText("<span style='font-size: 12pt'>x=")
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self._labels = {} # registry of underlying graphics
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# show only right side axes
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self.hideAxis('left')
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@ -303,6 +299,11 @@ class ChartPlotWidget(pg.PlotWidget):
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# based on ohlc contents
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self.sigXRangeChanged.connect(self._set_yrange)
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def _update_contents_label(self, index: int) -> None:
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if index > 0 and index < len(self._array):
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for name, (label, update) in self._labels.items():
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update(index)
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def _set_xlimits(
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self,
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xfirst: int,
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@ -331,6 +332,7 @@ class ChartPlotWidget(pg.PlotWidget):
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def draw_ohlc(
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self,
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name: str,
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data: np.ndarray,
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# XXX: pretty sure this is dumb and we don't need an Enum
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style: pg.GraphicsObject = BarItems,
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@ -345,7 +347,25 @@ class ChartPlotWidget(pg.PlotWidget):
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graphics.draw_from_data(data)
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self.addItem(graphics)
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self._graphics['ohlc_main'] = graphics
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self._graphics[name] = graphics
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# XXX: How to stack labels vertically?
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label = pg.LabelItem(
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justify='left',
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size='5pt',
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)
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self.scene().addItem(label)
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def update(index: int) -> None:
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label.setText(
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"{name} O:{} H:{} L:{} C:{} V:{}".format(
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*self._array[index].item()[2:],
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name=name,
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)
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)
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self._labels[name] = (label, update)
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self._update_contents_label(index=-1)
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# set xrange limits
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xlast = data[-1]['index']
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@ -357,8 +377,8 @@ class ChartPlotWidget(pg.PlotWidget):
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def draw_curve(
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self,
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name: str,
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data: np.ndarray,
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name: Optional[str] = 'line_main',
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) -> pg.PlotDataItem:
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# draw the indicator as a plain curve
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curve = pg.PlotDataItem(
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@ -371,10 +391,24 @@ class ChartPlotWidget(pg.PlotWidget):
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# register overlay curve with name
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if not self._graphics and name is None:
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name = 'line_main'
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name = 'a_line_bby'
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self._graphics[name] = curve
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# XXX: How to stack labels vertically?
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label = pg.LabelItem(
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justify='left',
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size='5pt',
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)
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self.scene().addItem(label)
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def update(index: int) -> None:
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data = self._array[index]
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label.setText(f"{name}: {index} {data}")
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self._labels[name] = (label, update)
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self._update_contents_label(index=-1)
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# set a "startup view"
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xlast = len(data) - 1
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@ -531,29 +565,28 @@ async def add_new_bars(delay_s, linked_charts):
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)
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# read value at "open" of bar
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last_quote = ohlc[-1]
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# last_quote = ohlc[-1]
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# XXX: If the last bar has not changed print a flat line and
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# move to the next. This is a "animation" choice that we may not
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# keep.
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# if last_quote == ohlc[-1]:
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# log.debug("Printing flat line for {sym}")
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# update chart graphics and resize view
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price_chart.update_from_array(price_chart.name, ohlc)
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price_chart._set_yrange()
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for name, chart in linked_charts.subplots.items():
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chart.update_from_array(chart.name, chart._array)
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chart._set_yrange()
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# We **don't** update the bar right now
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# since the next quote that arrives should in the
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# tick streaming task
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await sleep()
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# XXX: If the last bar has not changed print a flat line and
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# move to the next. This is a "animation" choice that we may not
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# keep.
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if last_quote == ohlc[-1]:
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log.debug("Printing flat line for {sym}")
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price_chart.update_from_array('ohlc_main', ohlc)
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# resize view
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price_chart._set_yrange()
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for name, chart in linked_charts.subplots.items():
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chart.update_from_array('line_main', chart._array)
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# resize view
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chart._set_yrange()
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# TODO: should we update a graphics again time here?
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# Think about race conditions with data update task.
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async def _async_main(
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@ -639,9 +672,10 @@ async def _async_main(
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last,
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)
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chart.update_from_array(
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'ohlc_main',
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chart.name,
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chart._array,
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)
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chart._set_yrange()
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async def chart_from_fsp(
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@ -676,7 +710,7 @@ async def chart_from_fsp(
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stream = await portal.result()
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# receive processed historical data-array as first message
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history = (await stream.__anext__())
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history: np.ndarray = (await stream.__anext__())
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# TODO: enforce type checking here
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newbars = np.array(history)
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@ -686,10 +720,19 @@ async def chart_from_fsp(
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array=newbars,
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)
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# update sub-plot graphics
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# check for data length mis-allignment and fill missing values
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diff = len(chart._array) - len(linked_charts.chart._array)
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if diff < 0:
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data = chart._array
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chart._array = np.append(
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data,
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np.full(abs(diff), data[-1], dtype=data.dtype)
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)
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# update chart graphics
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async for value in stream:
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chart._array[-1] = value
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chart.update_from_array('line_main', chart._array)
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chart.update_from_array(chart.name, chart._array)
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chart._set_yrange()
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@ -703,7 +746,7 @@ def _main(
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# Qt entry point
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run_qtractor(
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func=_async_main,
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args=(sym, brokername),
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main_widget=ChartSpace,
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tractor_kwargs=tractor_kwargs,
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args=(sym, brokername),
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main_widget=ChartSpace,
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tractor_kwargs=tractor_kwargs,
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)
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@ -2,7 +2,6 @@
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Chart graphics for displaying a slew of different data types.
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"""
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from typing import List
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from enum import Enum
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from itertools import chain
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import numpy as np
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@ -23,10 +22,14 @@ _mouse_rate_limit = 30
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class CrossHair(pg.GraphicsObject):
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def __init__(self, parent, digits: int = 0):
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def __init__(
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self,
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linkedsplitcharts: 'LinkedSplitCharts',
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digits: int = 0
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) -> None:
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super().__init__()
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self.pen = pg.mkPen('#a9a9a9') # gray?
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self.parent = parent
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self.lsc = linkedsplitcharts
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self.graphics = {}
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self.plots = []
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self.active_plot = None
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@ -110,18 +113,27 @@ class CrossHair(pg.GraphicsObject):
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# mouse was not on active plot
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return
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self.graphics[self.active_plot]['hl'].setY(
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mouse_point.y()
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)
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x, y = mouse_point.x(), mouse_point.y()
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plot = self.active_plot
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self.graphics[plot]['hl'].setY(y)
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self.graphics[self.active_plot]['yl'].update_label(
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evt_post=pos, point_view=mouse_point
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)
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# move the vertical line to the current x coordinate in all charts
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for opts in self.graphics.values():
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opts['vl'].setX(mouse_point.x())
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for plot, opts in self.graphics.items():
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# move the vertical line to the current x
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opts['vl'].setX(x)
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# update the chart's "contents" label
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plot._update_contents_label(int(x))
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# update the label on the bottom of the crosshair
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self.xaxis_label.update_label(evt_post=pos, point_view=mouse_point)
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self.xaxis_label.update_label(
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evt_post=pos,
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point_view=mouse_point
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)
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def boundingRect(self):
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try:
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def bars_from_ohlc(
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data: np.ndarray,
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w: float,
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start: int = 0,
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w: float = 0.43,
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) -> np.ndarray:
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"""Generate an array of lines objects from input ohlc data.
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"""
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@ -160,9 +172,15 @@ def bars_from_ohlc(
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open, high, low, close, index = q[
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['open', 'high', 'low', 'close', 'index']]
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# place the x-coord start as "middle" of the drawing range such
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# that the open arm line-graphic is at the left-most-side of
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# the indexe's range according to the view mapping.
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index_start = index + w
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# high - low line
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if low != high:
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hl = QLineF(index, low, index, high)
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# hl = QLineF(index, low, index, high)
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hl = QLineF(index_start, low, index_start, high)
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else:
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# XXX: if we don't do it renders a weird rectangle?
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# see below too for handling this later...
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@ -170,9 +188,9 @@ def bars_from_ohlc(
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hl._flat = True
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# open line
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o = QLineF(index - w, open, index, open)
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o = QLineF(index_start - w, open, index_start, open)
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# close line
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c = QLineF(index + w, close, index, close)
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c = QLineF(index_start + w, close, index_start, close)
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# indexing here is as per the below comments
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# lines[3*i:3*i+3] = (hl, o, c)
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@ -207,7 +225,7 @@ class BarItems(pg.GraphicsObject):
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sigPlotChanged = QtCore.Signal(object)
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# 0.5 is no overlap between arms, 1.0 is full overlap
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w: float = 0.4
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w: float = 0.43
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bull_pen = pg.mkPen('#808080')
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# XXX: tina mode, see below
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@ -234,7 +252,7 @@ class BarItems(pg.GraphicsObject):
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):
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"""Draw OHLC datum graphics from a ``np.recarray``.
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"""
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lines = bars_from_ohlc(data, start=start)
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lines = bars_from_ohlc(data, self.w, start=start)
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# save graphics for later reference and keep track
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# of current internal "last index"
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@ -280,7 +298,7 @@ class BarItems(pg.GraphicsObject):
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if extra > 0:
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# generate new graphics to match provided array
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new = array[index:index + extra]
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lines = bars_from_ohlc(new)
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lines = bars_from_ohlc(new, self.w)
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bars_added = len(lines)
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self.lines[index:index + bars_added] = lines
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self.index += bars_added
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# if the bar was flat it likely does not have
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# the index set correctly due to a rendering bug
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# see above
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body.setLine(i, low, i, high)
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body.setLine(i + self.w, low, i + self.w, high)
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body._flat = False
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else:
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body.setLine(body.x1(), low, body.x2(), high)
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