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https://github.com/bec-project/bec_widgets.git
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refactor: placeholders for stream plot
This commit is contained in:
0
bec_widgets/examples/stream_plot/__init__.py
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0
bec_widgets/examples/stream_plot/__init__.py
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155
bec_widgets/examples/stream_plot/line_plot.ui
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155
bec_widgets/examples/stream_plot/line_plot.ui
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@ -0,0 +1,155 @@
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<?xml version="1.0" encoding="UTF-8"?>
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<ui version="4.0">
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<class>Form</class>
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<widget class="QWidget" name="Form">
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<property name="geometry">
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<rect>
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<x>0</x>
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<y>0</y>
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<width>845</width>
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<height>635</height>
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</rect>
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</property>
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<property name="windowTitle">
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<string>Line Plot</string>
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</property>
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<layout class="QGridLayout" name="gridLayout">
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<item row="0" column="0">
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<widget class="QSplitter" name="splitter">
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<property name="orientation">
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<enum>Qt::Horizontal</enum>
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</property>
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<widget class="QSplitter" name="splitter_plot">
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<property name="sizePolicy">
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<sizepolicy hsizetype="Expanding" vsizetype="Expanding">
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<horstretch>1</horstretch>
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<verstretch>1</verstretch>
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</sizepolicy>
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</property>
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<property name="orientation">
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<enum>Qt::Vertical</enum>
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</property>
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<widget class="GraphicsLayoutWidget" name="glw_plot"/>
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<widget class="GraphicsLayoutWidget" name="glw_image"/>
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</widget>
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<widget class="QWidget" name="">
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<layout class="QVBoxLayout" name="verticalLayout" stretch="1,1,1,15">
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<item>
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<widget class="QPushButton" name="pushButton_generate">
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<property name="text">
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<string>Generate 1D and 2D data without stream</string>
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</property>
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</widget>
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</item>
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<item>
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<widget class="QGroupBox" name="groupBox">
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<property name="sizePolicy">
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<sizepolicy hsizetype="Expanding" vsizetype="Expanding">
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<horstretch>0</horstretch>
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<verstretch>0</verstretch>
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</sizepolicy>
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</property>
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<property name="title">
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<string>1st angle of azimutal segment (deg)</string>
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</property>
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<layout class="QHBoxLayout" name="horizontalLayout">
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<item>
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<widget class="QDoubleSpinBox" name="doubleSpinBox">
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<property name="sizePolicy">
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<sizepolicy hsizetype="Expanding" vsizetype="Fixed">
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<horstretch>0</horstretch>
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<verstretch>0</verstretch>
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</sizepolicy>
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</property>
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<property name="maximum">
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<double>360.000000000000000</double>
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</property>
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<property name="singleStep">
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<double>0.250000000000000</double>
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</property>
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</widget>
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</item>
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<item>
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<widget class="QComboBox" name="comboBox">
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<property name="sizePolicy">
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<sizepolicy hsizetype="Expanding" vsizetype="Expanding">
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<horstretch>0</horstretch>
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<verstretch>0</verstretch>
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</sizepolicy>
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</property>
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<item>
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<property name="text">
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<string>f1amp</string>
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</property>
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</item>
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<item>
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<property name="text">
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<string>f2amp</string>
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</property>
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</item>
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<item>
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<property name="text">
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<string>f2 phase</string>
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</property>
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</item>
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</widget>
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</item>
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</layout>
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</widget>
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</item>
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<item>
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<layout class="QHBoxLayout" name="horizontalLayout_2">
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<item>
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<widget class="QLabel" name="label">
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<property name="text">
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<string>Precision</string>
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</property>
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</widget>
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</item>
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<item>
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<widget class="QSpinBox" name="spinBox_precision">
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<property name="value">
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<number>4</number>
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</property>
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</widget>
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</item>
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</layout>
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</item>
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<item>
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<widget class="QTableWidget" name="cursor_table">
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<property name="textElideMode">
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<enum>Qt::ElideMiddle</enum>
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</property>
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<column>
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<property name="text">
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<string>Display</string>
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</property>
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</column>
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<column>
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<property name="text">
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<string>X</string>
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</property>
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</column>
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<column>
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<property name="text">
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<string>Y</string>
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</property>
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</column>
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</widget>
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</item>
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</layout>
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</widget>
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</widget>
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</item>
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</layout>
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</widget>
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<customwidgets>
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<customwidget>
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<class>GraphicsLayoutWidget</class>
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<extends>QGraphicsView</extends>
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<header>pyqtgraph.h</header>
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</customwidget>
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</customwidgets>
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<resources/>
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<connections/>
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</ui>
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411
bec_widgets/examples/stream_plot/stream_plot.py
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411
bec_widgets/examples/stream_plot/stream_plot.py
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@ -0,0 +1,411 @@
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import os
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import threading
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import time
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import warnings
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from typing import Any
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import numpy as np
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import pyqtgraph
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import pyqtgraph as pg
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from bec_lib.core import BECMessage, MessageEndpoints
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from bec_lib.core.redis_connector import MessageObject, RedisConnector
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from PyQt5.QtCore import pyqtSlot
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from PyQt5.QtWidgets import QCheckBox, QTableWidgetItem
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from pyqtgraph import mkBrush, mkColor, mkPen
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from pyqtgraph.Qt import QtCore, QtWidgets, uic
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from pyqtgraph.Qt.QtCore import pyqtSignal
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from bec_widgets.qt_utils import Crosshair, Colors
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from bec_widgets.bec_dispatcher import bec_dispatcher
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client = bec_dispatcher.client
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class BasicPlot(QtWidgets.QWidget):
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update_signal = pyqtSignal()
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roi_signal = pyqtSignal(tuple)
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def __init__(self, name="", y_value_list=["gauss_bpm"]) -> None:
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"""
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Basic plot widget for displaying scan data.
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Args:
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name (str, optional): Name of the plot. Defaults to "".
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y_value_list (list, optional): List of signals to be plotted. Defaults to ["gauss_bpm"].
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"""
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super(BasicPlot, self).__init__()
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# Set style for pyqtgraph plots
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pg.setConfigOption("background", "w")
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pg.setConfigOption("foreground", "k")
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current_path = os.path.dirname(__file__)
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uic.loadUi(os.path.join(current_path, "line_plot.ui"), self)
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self._idle_time = 100
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self.producer = RedisConnector(["localhost:6379"]).producer()
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self.y_value_list = y_value_list
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self.previous_y_value_list = None
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self.plotter_data_x = []
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self.plotter_data_y = []
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self.plotter_scan_id = None
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self._current_proj = None
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self._current_metadata_ep = "px_stream/projection_{}/metadata"
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self.proxy_update = pg.SignalProxy(self.update_signal, rateLimit=25, slot=self.update)
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self.data_retriever = threading.Thread(target=self.on_projection, daemon=True)
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self.data_retriever.start()
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# self.comboBox.currentIndexChanged.connect(lambda : print(f'current comboText: {self.comboBox.currentText()}'))
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# self.comboBox.currentIndexChanged.connect(lambda: print(f'current comboIndex: {self.comboBox.currentIndex()}'))
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#
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# self.doubleSpinBox.valueChanged.connect(lambda : print('Spin Changed'))
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# self.splitterH_main.setSizes([1, 1])
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##########################
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# UI
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##########################
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self.init_ui()
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self.init_curves()
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self.hook_crosshair()
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self.pushButton_generate.clicked.connect(self.generate_data)
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def init_ui(self):
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"""Setup all ui elements"""
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##########################
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# 1D Plot
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##########################
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# LabelItem for ROI
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self.label_plot = pg.LabelItem(justify="center")
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self.glw_plot.addItem(self.label_plot)
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self.label_plot.setText("ROI region")
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# ROI selector - so far from [-1,1] #TODO update to scale with xrange
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self.roi_selector = pg.LinearRegionItem([-1, 1])
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self.glw_plot.nextRow() # TODO update of cursor
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self.label_plot_moved = pg.LabelItem(justify="center")
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self.glw_plot.addItem(self.label_plot_moved)
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self.label_plot_moved.setText("Actual coordinates (X, Y)")
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# Label for coordinates clicked
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self.glw_plot.nextRow()
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self.label_plot_clicked = pg.LabelItem(justify="center")
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self.glw_plot.addItem(self.label_plot_clicked)
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self.label_plot_clicked.setText("Clicked coordinates (X, Y)")
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# 1D PlotItem
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self.glw_plot.nextRow()
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self.plot = pg.PlotItem()
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self.plot.setLogMode(True, True)
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self.glw_plot.addItem(self.plot)
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self.plot.addLegend()
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##########################
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# 2D Plot
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##########################
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# Label for coordinates moved
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self.label_image_moved = pg.LabelItem(justify="center")
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self.glw_image.addItem(self.label_image_moved)
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self.label_image_moved.setText("Actual coordinates (X, Y)")
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# Label for coordinates clicked
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self.glw_image.nextRow()
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self.label_image_clicked = pg.LabelItem(justify="center")
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self.glw_image.addItem(self.label_image_clicked)
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self.label_image_clicked.setText("Clicked coordinates (X, Y)")
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# TODO try to lock aspect ratio with view
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# # Create a window
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# win = pg.GraphicsLayoutWidget()
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# win.show()
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#
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# # Create a ViewBox
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# view = win.addViewBox()
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#
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# # Lock the aspect ratio
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# view.setAspectLocked(True)
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# # Create an ImageItem
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# image_item = pg.ImageItem(np.random.random((100, 100)))
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#
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# # Add the ImageItem to the ViewBox
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# view.addItem(image_item)
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# 2D ImageItem
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self.glw_image.nextRow()
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self.plot_image = pg.PlotItem()
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self.glw_image.addItem(self.plot_image)
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def init_curves(self):
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# init of 1D plot
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self.plot.clear()
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self.curves = []
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self.pens = []
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self.brushs = []
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self.color_list = BasicPlot.golden_angle_color(
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colormap="CET-R2", num=len(self.y_value_list)
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)
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for ii, y_value in enumerate(self.y_value_list):
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pen = mkPen(color=self.color_list[ii], width=2, style=QtCore.Qt.DashLine)
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brush = mkBrush(color=self.color_list[ii])
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curve = pg.PlotDataItem(symbolBrush=brush, pen=pen, skipFiniteCheck=True, name=y_value)
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self.plot.addItem(curve)
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self.curves.append(curve)
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self.pens.append(pen)
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self.brushs.append(brush)
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# check if roi selector is in the plot
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if self.roi_selector not in self.plot.items:
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self.plot.addItem(self.roi_selector)
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# init of 2D plot
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self.plot_image.clear()
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self.img = pg.ImageItem()
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self.plot_image.addItem(self.img)
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# hooking signals
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self.hook_crosshair()
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self.init_table()
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def splitter_sizes(self):
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...
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def hook_crosshair(self):
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self.crosshair_1d = Crosshair(self.plot, precision=4)
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self.crosshair_1d.coordinatesChanged1D.connect(
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lambda x, y: self.label_plot_moved.setText(f"Moved : ({x}, {y})")
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)
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self.crosshair_1d.coordinatesClicked1D.connect(
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lambda x, y: self.label_plot_clicked.setText(f"Moved : ({x}, {y})")
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)
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self.crosshair_1d.coordinatesChanged1D.connect(
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lambda x, y: self.update_table(table_widget=self.cursor_table, x=x, y_values=y)
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)
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self.crosshair_2D = Crosshair(self.plot_image)
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self.crosshair_2D.coordinatesChanged2D.connect(
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lambda x, y: self.label_image_moved.setText(f"Moved : ({x}, {y})")
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)
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self.crosshair_2D.coordinatesClicked2D.connect(
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lambda x, y: self.label_image_clicked.setText(f"Moved : ({x}, {y})")
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)
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# ROI
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self.roi_selector.sigRegionChangeFinished.connect(self.get_roi_region)
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|
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def generate_data(self):
|
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def gauss(x, mu, sigma):
|
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return (1 / (sigma * np.sqrt(2 * np.pi))) * np.exp(-0.5 * ((x - mu) / sigma) ** 2)
|
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|
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self.plotter_data_x = np.linspace(0, 10, 1000)
|
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self.plotter_data_y = [
|
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gauss(self.plotter_data_x, 1, 1),
|
||||
gauss(self.plotter_data_x, 1.5, 3),
|
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np.sin(self.plotter_data_x),
|
||||
np.cos(self.plotter_data_x),
|
||||
np.sin(2 * self.plotter_data_x),
|
||||
] # List of y-values for multiple curves
|
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self.y_value_list = ["Gauss (1,1)", "Gauss (1.5,3)"] # ["Sine"]#, "Cosine", "Sine2x"]
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|
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# Curves
|
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color_list = ["#384c6b", "#e28a2b", "#5E3023", "#e41a1c", "#984e83", "#4daf4a"]
|
||||
|
||||
self.init_curves()
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||||
|
||||
for ii in range(len(self.y_value_list)):
|
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self.curves[ii].setData(self.plotter_data_x, self.plotter_data_y[ii])
|
||||
|
||||
self.data_2D = np.random.random((150, 30))
|
||||
self.img.setImage(self.data_2D)
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||||
|
||||
if self.roi_selector not in self.plot.items:
|
||||
self.plot.addItem(self.roi_selector)
|
||||
|
||||
def get_roi_region(self):
|
||||
"""For testing purpose now, get roi region and print it to self.label as tuple"""
|
||||
region = self.roi_selector.getRegion()
|
||||
self.label_plot.setText(f"x = {(10 ** region[0]):.4f}, y ={(10 ** region[1]):.4f}")
|
||||
return_dict = {
|
||||
"horiz_roi": [
|
||||
np.where(self.plotter_data_x[0] > 10 ** region[0])[0][0],
|
||||
np.where(self.plotter_data_x[0] < 10 ** region[1])[0][-1],
|
||||
]
|
||||
}
|
||||
msg = BECMessage.DeviceMessage(signals=return_dict).dumps()
|
||||
self.producer.set_and_publish("px_stream/gui_event", msg=msg)
|
||||
self.roi_signal.emit(region)
|
||||
|
||||
def init_table(self):
|
||||
# Init number of rows in table according to n of devices
|
||||
self.cursor_table.setRowCount(len(self.y_value_list))
|
||||
# self.table.setHorizontalHeaderLabels(["(X, Y) - Moved", "(X, Y) - Clicked"]) #TODO can be dynamic
|
||||
self.cursor_table.setVerticalHeaderLabels(self.y_value_list)
|
||||
self.cursor_table.resizeColumnsToContents()
|
||||
|
||||
def update_table(self, table_widget, x, y_values):
|
||||
for i, y in enumerate(y_values):
|
||||
table_widget.setItem(i, 1, QTableWidgetItem(str(x)))
|
||||
table_widget.setItem(i, 2, QTableWidgetItem(str(y)))
|
||||
table_widget.resizeColumnsToContents()
|
||||
|
||||
def update(self):
|
||||
"""Update the plot with the new data."""
|
||||
|
||||
# check if QTable was initialised and if list of devices was changed
|
||||
# if self.y_value_list != self.previous_y_value_list:
|
||||
# self.setup_cursor_table()
|
||||
# self.previous_y_value_list = self.y_value_list.copy() if self.y_value_list else None
|
||||
|
||||
self.curves[0].setData(self.plotter_data_x[0], self.plotter_data_y[0])
|
||||
|
||||
@staticmethod
|
||||
def flip_even_rows(arr):
|
||||
arr_copy = np.copy(arr) # Create a writable copy
|
||||
arr_copy[1::2, :] = arr_copy[1::2, ::-1]
|
||||
return arr_copy
|
||||
|
||||
@staticmethod
|
||||
def remove_curve_by_name(plot: pyqtgraph.PlotItem, name: str) -> None:
|
||||
# def remove_curve_by_name(plot: pyqtgraph.PlotItem, checkbox: QtWidgets.QCheckBox, name: str) -> None:
|
||||
"""Removes a curve from the given plot by the specified name.
|
||||
|
||||
Args:
|
||||
plot (pyqtgraph.PlotItem): The plot from which to remove the curve.
|
||||
name (str): The name of the curve to remove.
|
||||
"""
|
||||
# if checkbox.isChecked():
|
||||
for item in plot.items:
|
||||
if isinstance(item, pg.PlotDataItem) and getattr(item, "opts", {}).get("name") == name:
|
||||
plot.removeItem(item)
|
||||
return
|
||||
|
||||
# else:
|
||||
# return
|
||||
|
||||
@staticmethod
|
||||
def golden_ratio(num: int) -> list:
|
||||
"""Calculate the golden ratio for a given number of angles.
|
||||
|
||||
Args:
|
||||
num (int): Number of angles
|
||||
"""
|
||||
phi = 2 * np.pi * ((1 + np.sqrt(5)) / 2)
|
||||
angles = []
|
||||
for ii in range(num):
|
||||
x = np.cos(ii * phi)
|
||||
y = np.sin(ii * phi)
|
||||
angle = np.arctan2(y, x)
|
||||
angles.append(angle)
|
||||
return angles
|
||||
|
||||
@staticmethod
|
||||
def golden_angle_color(colormap: str, num: int) -> list:
|
||||
"""
|
||||
Extract num colors for from the specified colormap following golden angle distribution.
|
||||
|
||||
Args:
|
||||
colormap (str): Name of the colormap
|
||||
num (int): Number of requested colors
|
||||
|
||||
Returns:
|
||||
list: List of colors with length <num>
|
||||
|
||||
Raises:
|
||||
ValueError: If the number of requested colors is greater than the number of colors in the colormap.
|
||||
"""
|
||||
|
||||
cmap = pg.colormap.get(colormap)
|
||||
cmap_colors = cmap.color
|
||||
if num > len(cmap_colors):
|
||||
raise ValueError(
|
||||
f"Number of colors requested ({num}) is greater than the number of colors in the colormap ({len(cmap_colors)})"
|
||||
)
|
||||
angles = BasicPlot.golden_ratio(len(cmap_colors))
|
||||
color_selection = np.round(np.interp(angles, (-np.pi, np.pi), (0, len(cmap_colors))))
|
||||
colors = [
|
||||
mkColor(tuple((cmap_colors[int(ii)] * 255).astype(int))) for ii in color_selection[:num]
|
||||
]
|
||||
return colors
|
||||
|
||||
def on_projection(self):
|
||||
while True:
|
||||
if self._current_proj is None:
|
||||
time.sleep(0.1)
|
||||
continue
|
||||
endpoint = f"px_stream/projection_{self._current_proj}/data"
|
||||
msgs = client.producer.lrange(topic=endpoint, start=-1, end=-1)
|
||||
data = [BECMessage.DeviceMessage.loads(msg) for msg in msgs]
|
||||
if not data:
|
||||
continue
|
||||
with np.errstate(divide="ignore", invalid="ignore"):
|
||||
self.plotter_data_y = [
|
||||
np.sum(
|
||||
np.sum(data[-1].content["signals"]["data"] * self._current_norm, axis=1)
|
||||
/ np.sum(self._current_norm, axis=0),
|
||||
axis=0,
|
||||
).squeeze()
|
||||
]
|
||||
|
||||
self.update_signal.emit()
|
||||
|
||||
@pyqtSlot(dict, dict)
|
||||
def on_dap_update(self, data: dict, metadata: dict):
|
||||
data_test = data
|
||||
|
||||
flipped_data = self.flip_even_rows(data["z"])
|
||||
|
||||
self.img.setImage(flipped_data)
|
||||
|
||||
@pyqtSlot(dict, dict)
|
||||
def new_proj(self, content: dict, _metadata: dict):
|
||||
proj_nr = content["signals"]["proj_nr"]
|
||||
endpoint = f"px_stream/projection_{proj_nr}/metadata"
|
||||
msg_raw = client.producer.get(topic=endpoint)
|
||||
msg = BECMessage.DeviceMessage.loads(msg_raw)
|
||||
self._current_q = msg.content["signals"]["q"]
|
||||
self._current_norm = msg.content["signals"]["norm_sum"]
|
||||
self._current_metadata = msg.content["signals"]["metadata"]
|
||||
|
||||
self.plotter_data_x = [self._current_q]
|
||||
self._current_proj = proj_nr
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
import argparse
|
||||
|
||||
from bec_widgets import ctrl_c
|
||||
|
||||
parser = argparse.ArgumentParser()
|
||||
parser.add_argument(
|
||||
"--signals", help="specify recorded signals", nargs="+", default=["gauss_bpm"]
|
||||
)
|
||||
# default = ["gauss_bpm", "bpm4i", "bpm5i", "bpm6i", "xert"],
|
||||
# dispatcher = bec_dispatcher
|
||||
value = parser.parse_args()
|
||||
print(f"Plotting signals for: {', '.join(value.signals)}")
|
||||
client = bec_dispatcher.client
|
||||
app = QtWidgets.QApplication([])
|
||||
ctrl_c.setup(app)
|
||||
plot = BasicPlot(y_value_list=value.signals)
|
||||
|
||||
bec_dispatcher.connect_slot(plot.new_proj, "px_stream/proj_nr")
|
||||
bec_dispatcher.connect_slot(
|
||||
plot.on_dap_update, MessageEndpoints.processed_data("px_dap_worker")
|
||||
)
|
||||
plot.show()
|
||||
# client.callbacks.register("scan_segment", plot, sync=False)
|
||||
app.exec_()
|
Reference in New Issue
Block a user