392 lines
12 KiB
Python
392 lines
12 KiB
Python
from typing import (
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Annotated,
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AsyncGenerator,
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Final,
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Generator,
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List,
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Literal,
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Optional,
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Tuple,
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TypeVar,
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TypedDict,
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Any,
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cast,
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Dict,
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Union,
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)
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from loguru import logger
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import numpy as np
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import plotly.graph_objects as go
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import streamlit as st
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import anyio
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from anyio.abc import TaskGroup, UDPSocket
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from anyio import create_memory_object_stream, create_udp_socket
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from anyio.streams.memory import MemoryObjectSendStream, MemoryObjectReceiveStream
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from threading import Thread
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from time import sleep
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from pydantic import BaseModel, computed_field
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from datetime import datetime, timedelta
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import awkward as ak
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from awkward import Array as AwkwardArray, Record as AwkwardRecord
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from app.model import AlgoReport
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from app.utils import Instant
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from collections import deque
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from dataclasses import dataclass
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from aiomqtt import Client as MqttClient, Message as MqttMessage
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from app.proto.hr_packet import HrPacket, HrOnlyPacket, HrPpgPacket, HrConfidence
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MQTT_BROKER: Final[str] = "weihua-iot.cn"
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MQTT_BROKER_PORT: Final[int] = 1883
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MAX_LENGTH = 600
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TOPIC: Final[str] = "/hr/region/1/band/#"
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UDP_DEVICE_ID: Final[int] = 0xFF
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NDArray = np.ndarray
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T = TypeVar("T")
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class DeviceHistory(TypedDict):
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timescape: deque[datetime]
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hr_data: deque[float]
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# https://handmadesoftware.medium.com/streamlit-asyncio-and-mongodb-f85f77aea825
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class AppState(TypedDict):
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worker_thread: Thread
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message_queue: MemoryObjectReceiveStream[bytes]
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mqtt_message_queue: MemoryObjectReceiveStream[MqttMessage]
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task_group: TaskGroup
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device_histories: Dict[Union[int, str], DeviceHistory] # device_id -> DeviceHistory
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refresh_inst: Instant
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DEFAULT_BUSY_POLLING_INTERVAL: Final[float] = 0.001
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UDP_SERVER_HOST: Final[str] = "localhost"
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UDP_SERVER_PORT: Final[int] = 50_000
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MAX_LENGTH = 600
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NDArray = np.ndarray
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T = TypeVar("T")
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def unwrap(value: Optional[T]) -> T:
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if value is None:
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raise ValueError("Value is None")
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return value
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def parse_ble_hr_measurement(data: bytes) -> Optional[int]:
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"""
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Parse BLE Heart Rate Measurement characteristic data according to Bluetooth specification.
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Args:
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data: Raw bytes from the heart rate measurement characteristic
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Returns:
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Heart rate value in BPM, or None if parsing fails
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Note:
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```cpp
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/**
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* @brief Structure of the Heart Rate Measurement characteristic
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*
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* @see https://www.bluetooth.com/specifications/gss/
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* @see section 3.116 Heart Rate Measurement of the document: GATT Specification Supplement.
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*/
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struct ble_hr_measurement_flag_t {
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// LSB first
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/*
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* 0: uint8_t
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* 1: uint16_t
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*/
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bool heart_rate_value_format : 1;
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bool sensor_contact_detected : 1;
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bool sensor_contact_supported : 1;
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bool energy_expended_present : 1;
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bool rr_interval_present : 1;
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uint8_t reserved : 3;
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};
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```
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"""
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if len(data) < 2:
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return None
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# First byte contains flags
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flags = data[0]
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# Bit 0: Heart Rate Value Format (0 = uint8, 1 = uint16)
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heart_rate_value_format = (flags & 0x01) != 0
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try:
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if heart_rate_value_format:
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# 16-bit heart rate value (little endian)
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if len(data) < 3:
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return None
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hr_value = int.from_bytes(data[1:3], byteorder="little")
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else:
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# 8-bit heart rate value
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hr_value = data[1]
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return hr_value
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except (IndexError, ValueError):
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return None
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def hr_confidence_to_percentage(confidence: HrConfidence) -> float:
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"""Convert HrConfidence enum to percentage value"""
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if confidence == HrConfidence.ZERO:
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return 0 # mid-point of [0,25)
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elif confidence == HrConfidence.LOW:
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return 37.5 # mid-point of [25,50)
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elif confidence == HrConfidence.MEDIUM:
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return 62.5 # mid-point of [50,75)
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elif confidence == HrConfidence.HIGH:
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return 100 # mid-point of (75,100]
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else:
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raise ValueError(f"Invalid HrConfidence: {confidence}")
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def create_device_history() -> DeviceHistory:
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"""Create a new device history structure"""
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return {
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"timescape": deque(maxlen=MAX_LENGTH),
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"hr_data": deque(maxlen=MAX_LENGTH),
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}
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def get_device_name(device_id: Union[int, str]) -> str:
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"""Get display name for device"""
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if device_id == UDP_DEVICE_ID:
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return "UDP Device"
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return f"Device {device_id}"
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@st.cache_resource
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def resource(params: Any = None):
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set_ev = anyio.Event()
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tx, rx = create_memory_object_stream[bytes]()
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mqtt_tx, mqtt_rx = create_memory_object_stream[MqttMessage]()
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tg: Optional[TaskGroup] = None
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async def udp_task():
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async with await create_udp_socket(
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local_host=UDP_SERVER_HOST, local_port=UDP_SERVER_PORT, reuse_port=True
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) as udp:
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logger.info(
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"UDP server listening on {}:{}", UDP_SERVER_HOST, UDP_SERVER_PORT
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)
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async for packet, _ in udp:
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await tx.send(packet)
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async def mqtt_task():
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async with MqttClient(MQTT_BROKER, port=MQTT_BROKER_PORT) as client:
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await client.subscribe(TOPIC)
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logger.info(
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"Subscribed to MQTT broker {}:{} topic {}",
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MQTT_BROKER,
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MQTT_BROKER_PORT,
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TOPIC,
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)
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async for message in client.messages:
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await mqtt_tx.send(message)
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async def combined_task():
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nonlocal set_ev, tg
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tg = anyio.create_task_group()
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set_ev.set()
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async with tg:
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async with anyio.create_task_group() as inner_tg:
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inner_tg.start_soon(udp_task)
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inner_tg.start_soon(mqtt_task)
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tr = Thread(target=anyio.run, args=(combined_task,))
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tr.start()
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while not set_ev.is_set():
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sleep(DEFAULT_BUSY_POLLING_INTERVAL)
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logger.info("UDP and MQTT tasks initialized in single thread")
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state: AppState = {
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"worker_thread": tr,
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"message_queue": rx,
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"mqtt_message_queue": mqtt_rx,
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"task_group": unwrap(tg),
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"device_histories": {},
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"refresh_inst": Instant(),
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}
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logger.info("Resource created")
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return state
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def main():
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state = resource()
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device_histories = state["device_histories"]
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def on_export():
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file_name = f"history_{datetime.now().strftime('%Y%m%d_%H%M%S')}.parquet"
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logger.info(f"Exporting to {file_name}")
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# Export all device histories
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export_data = {
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device_id: ak.Record(dev_hist)
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for device_id, dev_hist in device_histories.items()
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}
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rec = ak.Record(export_data)
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ak.to_parquet(rec, file_name)
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def on_clear():
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nonlocal device_histories
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logger.info("Clearing history")
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device_histories.clear()
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# https://docs.streamlit.io/develop/api-reference/layout
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st.title("MAX-BAND Visualizer")
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with st.container(border=True):
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c1, c2 = st.columns(2)
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with c1:
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st.button(
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"Export",
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help="Export the current data to a parquet file",
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on_click=on_export,
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)
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with c2:
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st.button(
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"Clear",
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help="Clear the current data",
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on_click=on_clear,
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)
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# Device selection
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if device_histories:
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selected_devices = st.multiselect(
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"Select devices to display:",
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options=list(device_histories.keys()),
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default=list(device_histories.keys()),
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format_func=get_device_name,
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)
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else:
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selected_devices = []
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placeholder = st.empty()
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while True:
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# Process UDP messages (treat as device_id = 0)
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try:
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message = state["message_queue"].receive_nowait()
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hr_value = parse_ble_hr_measurement(message)
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if hr_value is not None:
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now = datetime.now()
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if UDP_DEVICE_ID not in device_histories:
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device_histories[UDP_DEVICE_ID] = create_device_history()
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dev_hist = device_histories[UDP_DEVICE_ID]
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dev_hist["timescape"].append(now)
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dev_hist["hr_data"].append(float(hr_value))
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logger.debug("UDP Device: HR={}", hr_value)
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except anyio.WouldBlock:
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pass
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try:
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mqtt_message = state["mqtt_message_queue"].receive_nowait()
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if mqtt_message.payload:
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try:
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# Ensure payload is bytes
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payload_bytes = mqtt_message.payload
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if isinstance(payload_bytes, str):
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payload_bytes = payload_bytes.encode("utf-8")
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elif not isinstance(payload_bytes, bytes):
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continue
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hr_packet = HrPacket()
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hr_packet.parse(payload_bytes)
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now = datetime.now()
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# Extract HR data based on packet type
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device_id = None
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hr_value = None
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if hr_packet.hr_only_packet:
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packet = hr_packet.hr_only_packet
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device_id = packet.id
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hr_value = packet.hr
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elif hr_packet.hr_ppg_packet:
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packet = hr_packet.hr_ppg_packet
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device_id = packet.id
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hr_value = packet.hr
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if device_id is not None and hr_value is not None:
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# Ensure device history exists
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if device_id not in device_histories:
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device_histories[device_id] = create_device_history()
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dev_hist = device_histories[device_id]
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dev_hist["timescape"].append(now)
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dev_hist["hr_data"].append(float(hr_value))
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logger.debug("Device {}: HR={}", device_id, hr_value)
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except Exception as e:
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logger.error("Failed to parse MQTT protobuf message: {}", e)
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except anyio.WouldBlock:
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pass
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# Update visualization - HR Graphs
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with placeholder.container():
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if device_histories:
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st.subheader("Heart Rate Data")
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# Create plots for selected devices
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traces = []
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colors = [
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"red",
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"green",
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"blue",
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"orange",
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"purple",
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"brown",
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"pink",
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"gray",
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"olive",
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"cyan",
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]
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for i, device_id in enumerate(selected_devices):
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if device_id in device_histories:
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dev_hist = device_histories[device_id]
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if dev_hist["hr_data"] and dev_hist["timescape"]:
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color = colors[i % len(colors)]
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traces.append(
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go.Scatter(
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x=list(dev_hist["timescape"]),
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y=list(dev_hist["hr_data"]),
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mode="lines+markers",
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name=get_device_name(device_id),
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line=dict(color=color),
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marker=dict(size=4),
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)
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)
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if traces:
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fig = go.Figure(data=traces)
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fig.update_layout(
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title="Heart Rate Monitor",
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xaxis_title="Time",
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yaxis_title="Heart Rate (BPM)",
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hovermode="x unified",
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showlegend=True,
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height=500,
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)
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st.plotly_chart(fig, use_container_width=True)
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else:
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st.info("No heart rate data available for selected devices")
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if __name__ == "__main__":
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main()
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