Major changes: - Organized Python v1 implementation into v1/ subdirectory - Created Rust workspace with 9 modular crates: - wifi-densepose-core: Core types, traits, errors - wifi-densepose-signal: CSI processing, phase sanitization, FFT - wifi-densepose-nn: Neural network inference (ONNX/Candle/tch) - wifi-densepose-api: Axum-based REST/WebSocket API - wifi-densepose-db: SQLx database layer - wifi-densepose-config: Configuration management - wifi-densepose-hardware: Hardware abstraction - wifi-densepose-wasm: WebAssembly bindings - wifi-densepose-cli: Command-line interface Documentation: - ADR-001: Workspace structure - ADR-002: Signal processing library selection - ADR-003: Neural network inference strategy - DDD domain model with bounded contexts Testing: - 69 tests passing across all crates - Signal processing: 45 tests - Neural networks: 21 tests - Core: 3 doc tests Performance targets: - 10x faster CSI processing (~0.5ms vs ~5ms) - 5x lower memory usage (~100MB vs ~500MB) - WASM support for browser deployment
157 lines
5.8 KiB
Python
Executable File
157 lines
5.8 KiB
Python
Executable File
#!/usr/bin/env python3
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"""
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WebSocket Streaming Test Script
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Tests real-time pose data streaming via WebSocket
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"""
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import asyncio
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import json
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import websockets
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from datetime import datetime
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async def test_pose_streaming():
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"""Test pose data streaming via WebSocket."""
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uri = "ws://localhost:8000/api/v1/stream/pose?zone_ids=zone_1,zone_2&min_confidence=0.3&max_fps=10"
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print(f"[{datetime.now()}] Connecting to WebSocket...")
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try:
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async with websockets.connect(uri) as websocket:
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print(f"[{datetime.now()}] Connected successfully!")
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# Wait for connection confirmation
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response = await websocket.recv()
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data = json.loads(response)
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print(f"[{datetime.now()}] Connection confirmed:")
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print(json.dumps(data, indent=2))
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# Send a ping message
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ping_msg = {"type": "ping"}
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await websocket.send(json.dumps(ping_msg))
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print(f"[{datetime.now()}] Sent ping message")
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# Listen for messages for 10 seconds
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print(f"[{datetime.now()}] Listening for pose updates...")
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start_time = asyncio.get_event_loop().time()
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message_count = 0
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while asyncio.get_event_loop().time() - start_time < 10:
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try:
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# Wait for message with timeout
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message = await asyncio.wait_for(websocket.recv(), timeout=1.0)
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data = json.loads(message)
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message_count += 1
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msg_type = data.get("type", "unknown")
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if msg_type == "pose_update":
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print(f"[{datetime.now()}] Pose update received:")
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print(f" - Frame ID: {data.get('frame_id')}")
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print(f" - Persons detected: {len(data.get('persons', []))}")
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print(f" - Zone summary: {data.get('zone_summary', {})}")
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elif msg_type == "pong":
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print(f"[{datetime.now()}] Pong received")
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else:
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print(f"[{datetime.now()}] Message type '{msg_type}' received")
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except asyncio.TimeoutError:
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# No message received in timeout period
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continue
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except Exception as e:
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print(f"[{datetime.now()}] Error receiving message: {e}")
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print(f"\n[{datetime.now()}] Test completed!")
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print(f"Total messages received: {message_count}")
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# Send disconnect message
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disconnect_msg = {"type": "disconnect"}
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await websocket.send(json.dumps(disconnect_msg))
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except Exception as e:
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print(f"[{datetime.now()}] WebSocket error: {e}")
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async def test_event_streaming():
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"""Test event streaming via WebSocket."""
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uri = "ws://localhost:8000/api/v1/stream/events?event_types=motion,presence&zone_ids=zone_1"
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print(f"\n[{datetime.now()}] Testing event streaming...")
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print(f"[{datetime.now()}] Connecting to WebSocket...")
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try:
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async with websockets.connect(uri) as websocket:
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print(f"[{datetime.now()}] Connected successfully!")
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# Wait for connection confirmation
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response = await websocket.recv()
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data = json.loads(response)
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print(f"[{datetime.now()}] Connection confirmed:")
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print(json.dumps(data, indent=2))
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# Get status
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status_msg = {"type": "get_status"}
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await websocket.send(json.dumps(status_msg))
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print(f"[{datetime.now()}] Requested status")
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# Listen for a few messages
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for i in range(5):
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try:
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message = await asyncio.wait_for(websocket.recv(), timeout=2.0)
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data = json.loads(message)
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print(f"[{datetime.now()}] Event received: {data.get('type')}")
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except asyncio.TimeoutError:
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print(f"[{datetime.now()}] No event received (timeout)")
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except Exception as e:
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print(f"[{datetime.now()}] WebSocket error: {e}")
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async def test_websocket_errors():
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"""Test WebSocket error handling."""
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print(f"\n[{datetime.now()}] Testing error handling...")
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# Test invalid endpoint
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try:
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uri = "ws://localhost:8000/api/v1/stream/invalid"
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async with websockets.connect(uri) as websocket:
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print("Connected to invalid endpoint (unexpected)")
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except Exception as e:
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print(f"[{datetime.now()}] Expected error for invalid endpoint: {type(e).__name__}")
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# Test sending invalid JSON
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try:
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uri = "ws://localhost:8000/api/v1/stream/pose"
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async with websockets.connect(uri) as websocket:
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await websocket.send("invalid json {")
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response = await websocket.recv()
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data = json.loads(response)
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if data.get("type") == "error":
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print(f"[{datetime.now()}] Received expected error for invalid JSON")
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except Exception as e:
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print(f"[{datetime.now()}] Error testing invalid JSON: {e}")
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async def main():
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"""Run all WebSocket tests."""
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print("=" * 60)
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print("WiFi-DensePose WebSocket Streaming Tests")
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print("=" * 60)
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# Test pose streaming
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await test_pose_streaming()
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# Test event streaming
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await test_event_streaming()
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# Test error handling
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await test_websocket_errors()
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print("\n" + "=" * 60)
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print("All tests completed!")
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print("=" * 60)
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if __name__ == "__main__":
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asyncio.run(main()) |