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# 文件名: py代码/iot_widget.py
from PyQt6.QtWidgets import (QWidget, QVBoxLayout, QPushButton, QLabel,
QHBoxLayout, QFrame)
from PyQt6.QtCore import pyqtSignal, Qt, QTimer, QSize
from PyQt6.QtGui import QPainter, QColor, QBrush, QPen
import time
class BulbWidget(QWidget):
"""
自定义绘制的灯泡控件
"""
def __init__(self, parent=None):
super().__init__(parent)
self.setMinimumSize(100, 150)
self._is_on = False
def set_on(self, is_on):
if self._is_on != is_on:
self._is_on = is_on
self.update() # 触发重绘
def paintEvent(self, event):
painter = QPainter(self)
painter.setRenderHint(QPainter.RenderHint.Antialiasing)
# 定义颜色
if self._is_on:
# 亮起:黄色核心,带光晕
color = QColor(255, 235, 59)
glow_color = QColor(255, 235, 59, 100)
else:
# 熄灭:纯黑色
color = QColor(20, 20, 20)
glow_color = Qt.GlobalColor.transparent
# 绘制中心圆 (灯泡主体)
center_x = self.width() // 2
center_y = self.height() // 2 - 20
radius = 40
# 如果亮起,先画光晕
if self._is_on:
painter.setPen(Qt.PenStyle.NoPen)
painter.setBrush(QBrush(glow_color))
painter.drawEllipse(center_x - radius - 10, center_y - radius - 10,
(radius + 10) * 2, (radius + 10) * 2)
# 画灯泡实体
painter.setPen(QPen(Qt.GlobalColor.gray, 2))
painter.setBrush(QBrush(color))
painter.drawEllipse(center_x - radius, center_y - radius, radius * 2, radius * 2)
# 画底座 (简单的矩形)
base_w = 30
base_h = 25
base_x = center_x - base_w // 2
base_y = center_y + radius - 5
painter.setBrush(QBrush(QColor(80, 80, 80))) # 深灰色底座
painter.drawRect(base_x, base_y, base_w, base_h)
# 底座螺纹线
painter.setPen(QPen(QColor(150, 150, 150), 1))
painter.drawLine(base_x, base_y + 8, base_x + base_w, base_y + 8)
painter.drawLine(base_x, base_y + 16, base_x + base_w, base_y + 16)
class IoTWidget(QWidget):
"""
无线物联网控制页面
"""
# 信号:发送串口指令
send_command_signal = pyqtSignal(str)
def __init__(self, parent=None):
super().__init__(parent)
self.init_ui()
# 轮询定时器
self.poll_timer = QTimer()
self.poll_timer.setInterval(500) # 0.5秒 = 500ms
self.poll_timer.timeout.connect(self.send_poll_query)
def init_ui(self):
main_layout = QVBoxLayout(self)
# --- 顶部控制栏 ---
top_bar = QHBoxLayout()
top_bar.setAlignment(Qt.AlignmentFlag.AlignLeft)
self.btn_toggle = QPushButton("启动监控")
self.btn_toggle.setCheckable(True)
self.btn_toggle.setFixedSize(120, 40)
# 样式表:未选中灰色,选中变绿
self.btn_toggle.setStyleSheet("""
QPushButton {
background-color: #95a5a6; /* 默认灰色 */
color: white;
border-radius: 5px;
font-weight: bold;
}
QPushButton:checked {
background-color: #2ecc71; /* 激活绿色 */
}
QPushButton:hover {
border: 2px solid white;
}
""")
self.btn_toggle.clicked.connect(self.on_toggle_clicked)
top_bar.addWidget(self.btn_toggle)
main_layout.addLayout(top_bar)
# --- 中间显示区域 ---
center_layout = QVBoxLayout()
center_layout.setAlignment(Qt.AlignmentFlag.AlignCenter)
self.lbl_status = QLabel("系统待机")
self.lbl_status.setStyleSheet("color: #aaa; font-size: 14pt;")
self.lbl_status.setAlignment(Qt.AlignmentFlag.AlignCenter)
self.bulb = BulbWidget()
center_layout.addStretch()
center_layout.addWidget(self.bulb)
center_layout.addWidget(self.lbl_status)
center_layout.addStretch()
main_layout.addLayout(center_layout)
def on_toggle_clicked(self, checked):
if checked:
# === 按钮变绿 (开启) ===
self.btn_toggle.setText("监控运行中")
self.lbl_status.setText("正在配置 RX 频率...")
# 1. 发送 RX 本振设置指令 (根据 params_widget 的逻辑,这里发送 'rx_lo_freq=434')
# 注意:具体数值格式取决于单片机解析,这里假设它能识别 '434' 代表 434MHz
# 或者如果是 Hz,可能是 434000000。这里按题目要求发送 "434M" 相关的设置。
# 参考 params_widget,命令格式通常是 key=value。
self.send_command_signal.emit("rx_lo_freq=434")
time.sleep(2) # 短暂等待,确保指令发送顺序
self.send_command_signal.emit("query_led_state=1")
# 2. 启动定时器 (稍微延迟一点启动,给本振设置留点时间)
QTimer.singleShot(200, self.start_polling)
else:
# === 按钮恢复 (关闭) ===
self.btn_toggle.setText("启动监控")
self.lbl_status.setText("系统待机")
# 停止轮询
self.poll_timer.stop()
# 灯泡熄灭
self.bulb.set_on(False)
# 系统结束后发送指令 ---
self.send_command_signal.emit("query_led_state=0")
def start_polling(self):
if self.btn_toggle.isChecked():
self.lbl_status.setText("正在轮询状态...")
self.poll_timer.start()
def send_poll_query(self):
# 发送查询指令
self.send_command_signal.emit("query_led_state?")
def handle_response(self, value_str):
"""
处理来自 MainWindow (SerialWorker) 的响应数据
value_str: 可能是 "1", "0" 或者带杂乱字符的 "1\x01"
"""
# 只有在开启状态下才处理
if not self.btn_toggle.isChecked():
return
# --- [!! 修改开始 !!] ---
# 原始数据可能包含隐形字符 (如 \x01, \r, \n 等),导致 "1" != "1\x01"
# 方案:只判断字符串中是否“包含” 1 或 0,或者清洗字符串
# 调试打印,方便你看清到底收到了什么
print(f"[IoT] Raw value received: {repr(value_str)}")
if "1" in value_str:
self.bulb.set_on(True)
self.lbl_status.setText("状态: 灯泡点亮 (1)")
elif "0" in value_str:
self.bulb.set_on(False)
self.lbl_status.setText("状态: 灯泡熄灭 (0)")
# --- [!! 修改结束 !!] ---