213 lines
6.1 KiB
Python
213 lines
6.1 KiB
Python
import sys
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from PyQt5.QtWidgets import QApplication, QWidget, QVBoxLayout, QLabel, QPushButton, QLineEdit, QPlainTextEdit, QComboBox, QMessageBox
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from PyQt5.QtCore import QProcess, QSize
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from everywhereml.arduino import Sketch, Ino, H
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import platform
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import os
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class LogView(QPlainTextEdit):
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def __init__(self, parent=None):
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super().__init__(parent)
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self.setReadOnly(True)
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self._process = QProcess()
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self._process.readyReadStandardOutput.connect(self.handle_stdout)
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self._process.readyReadStandardError.connect(self.handle_stderr)
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def start_log(self, program, arguments=None):
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if arguments is None:
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arguments = []
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self._process.start(program, arguments)
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def add_log(self, message):
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self.appendPlainText(message.rstrip())
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def handle_stdout(self):
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message = self._process.readAllStandardOutput().data().decode()
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self.add_log(message)
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def handle_stderr(self):
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message = self._process.readAllStandardError().data().decode()
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self.add_log(message)
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def flash(log_view, led1, led2, port):
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"""
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Create a sketch object.
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A sketch is defined by:
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- a name (required)
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- a folder (optional)
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If you leave the folder empty, the current working directory will be used.
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You can use the special name ':system:' to use the default Arduino sketches folder
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(as reported by the command `arduino-cli config dump`)
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"""
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showdialog()
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sketch = Sketch(name="hemocube", folder=":system:")
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"""
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Then you can add files to the project (either the .ino main file or
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C++ header files)
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"""
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sketch += Ino("""
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void setup() {{
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// put your setup code here, to run once:
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Serial.begin(115200);
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}}
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void loop() {{
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// put your main code here, to run repeatedly:
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}}
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""".format(led1dac=led1, led2dac=led2))
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sketch += H("hello.h", """
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void hello() {
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Serial.println("hello smi7");
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}
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""")
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"""
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Compile sketch for Arduino Nano 33 BLE board.
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The board you target must appear in the `arduino-cli board listall` command.
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If you know the FQBN (Fully Qualified Board Name), you can use that too.
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"""
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if sketch.compile(board='arduino:avr:nano:cpu=atmega328old').is_successful:
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# log_view.add_log("Log: \n\n" + sketch.output)
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# log_view.add_log("Sketch stats: \n\n" + sketch.stats)
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print('Log', sketch.output)
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print('Sketch stats', sketch.stats)
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else:
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log_view.add_log("ERROR: \n\n" + sketch.output)
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print('ERROR', sketch.output)
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"""
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You can specify the exact port
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"""
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# sketch.upload(port='/dev/cu.usbmodem14201')
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sketch.upload(port=port)
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# """
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# Or even part of it.
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# The library will look for the best match.
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# """
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# sketch.upload(port='ttyUSB')
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# sketch.upload(port='/dev/cu.usbserial-1420') #/dev/cu.usbmodem
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log_view.add_log("upload: \n\n" + sketch.output)
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print(sketch.output)
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def showdialog():
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msg = QMessageBox()
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msg.setIcon(QMessageBox.Information)
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msg.setText("HemoCube flashing")
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msg.setInformativeText("HemoCube device will be flashed with new values")
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msg.setWindowTitle("Flashing")
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msg.setDetailedText("The LED dac values will be set. Wait for sometime.")
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msg.setStandardButtons(QMessageBox.Ok | QMessageBox.Cancel)
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msg.buttonClicked.connect(msgbtn)
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retval = msg.exec_()
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print("value of pressed message box button:", retval)
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def msgbtn(i):
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print("Button pressed is:",i.text())
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def get_port():
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ports = []
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if platform.system() == 'Darwin':
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ports = list(filter(lambda x: "cu" in x, os.listdir("/dev")))
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else:
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import serial.tools.list_ports
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# ports = ['COM%s' % (i + 1) for i in range(256)]
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serial_ports = list(serial.tools.list_ports.comports())
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for port, desc, hwid in sorted(serial_ports):
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ports.append(port)
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return ports
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# 1. Import QApplication and all the required widgets
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# from PyQt5.QtWidgets import QApplication, QLabel, QWidget
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def addLabel(layout, text):
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layout.addWidget(QLabel(text))
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if __name__ == "__main__":
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app = QApplication(sys.argv)
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window = QWidget()
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layout = QVBoxLayout(window)
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# Create a label Widget and add it to the layout
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labelLed1 = QLabel('Enter LED1 value (1500-3000)')
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layout.addWidget(labelLed1)
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line_edit_led1 = QLineEdit()
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line_edit_led1.setFixedSize(QSize(150, 30))
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layout.addWidget(line_edit_led1)
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labelLed2 = QLabel('Enter LED2 value (1500-3000)')
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left = 0
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top = 25
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right = 0
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bottom = 0
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labelLed2.setContentsMargins(left, top, right, bottom)
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layout.addWidget(labelLed2)
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line_edit_led2 = QLineEdit()
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line_edit_led2.setFixedSize(QSize(150, 30))
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layout.addWidget(line_edit_led2)
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labelPort = QLabel('Select a port')
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layout.addWidget(labelPort)
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cb = QComboBox()
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cb.setFixedSize(QSize(150, 30))
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ports = get_port()
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for port in ports:
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cb.addItem(port)
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layout.addWidget(cb)
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flash_port = ""
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def selectionchange(i):
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flash_port = cb.currentText()
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cb.currentIndexChanged.connect(selectionchange)
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# Create a QPushButton object with a caption on it
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qbtn = QPushButton('Flash')
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qbtn.setFixedSize(QSize(150, 40))
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# Add the QPushButton to the layout
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layout.addWidget(qbtn)
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w = LogView()
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w.resize(640, 480)
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# w.show()
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# w.start_log("adb", ["logcat", "*:I"])
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# w.start_log("arduino-cli", ["monitor", "-p /dev/cu.Bluetooth-Incoming-Port"])
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# w.start_log("arduino-cli", ["lib", "install", "ADS1X15"])
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w.handle_stdout()
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layout.addWidget(w)
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# Close the application when the button is pressed
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# Here I am using slots & signals, which I will demonstrate later in this tutorial
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# qbtn.clicked.connect(lambda:addLabel(layout, "Flashing..."))
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qbtn.clicked.connect(lambda:flash(w, line_edit_led1.text(), line_edit_led2.text(), flash_port))
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window.setWindowTitle("HemoCube QC")
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window.setGeometry(400, 400, 800, 600)
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# helloMsg = QLabel("<h1>Hello, World!</h1>", parent=window)
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# helloMsg.move(60, 15)
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window.show()
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# 5. Run your application's event loop
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sys.exit(app.exec())
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