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- 0x0011a_cb (Operation Dark Vector): nation-state CTF redesign with an AES-128-ECB sealed target and a plaintext launch origin; RP2350 firmware with bearing-driven servo, tri-color LEDs, GSV stats, and a realistic no-fix path - docs: story-driven classified brief, GDB and Ghidra tutorials with deep step-throughs, regenerated artifacts and PDFs - scripts: docstring standard, AES per-student randomizer, telemetry monitor - week 3 to week 5 lessons: Ghidra patching tutorial, CMSIS-SVD hardware RE, double floating-point and GPIO architecture chapters, README structure
303 lines
7.4 KiB
Python
303 lines
7.4 KiB
Python
#!/usr/bin/env python3
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# MIT License
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#
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# Copyright (c) 2026 Kevin Thomas
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to deal
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# in the Software without restriction, including without limitation the rights
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# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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# copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in all
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# copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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# SOFTWARE.
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#
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# Author: Kevin Thomas
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# Email: kevin@mytechnotalent.com
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# GitHub: https://github.com/mytechnotalent
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# File: telemetry_monitor.py
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# Desc: Real-time telemetry monitor for Operation Dark Vector.
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# Created: 2026
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"""
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Real-time telemetry monitor for Operation Dark Vector.
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Reads live avionics and GPS telemetry from the FT232RL USB-to-UART ground
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station bridge, parses coordinates and distance, and prints a mission status
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dashboard to the terminal.
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"""
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import argparse
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import re
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import sys
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import time
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try:
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import serial
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except ImportError:
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serial = None
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def _format_coord(val: float, pos_c: str, neg_c: str) -> str:
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"""
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Format a decimal coordinate with cardinal direction.
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Parameters
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----------
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val : float
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Coordinate value in degrees.
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pos_c : str
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Cardinal letter for positive values.
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neg_c : str
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Cardinal letter for negative values.
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Returns
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-------
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str
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Formatted coordinate string.
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"""
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card = pos_c if val >= 0.0 else neg_c
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return f"{abs(val):.6f} deg {card}"
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def _format_pos(lat: float, lon: float) -> str:
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"""
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Format combined latitude and longitude string.
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Parameters
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----------
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lat : float
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Latitude coordinate.
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lon : float
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Longitude coordinate.
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Returns
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-------
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str
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Formatted dual coordinate string.
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"""
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lat_s = _format_coord(lat, 'N', 'S')
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lon_s = _format_coord(lon, 'E', 'W')
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return f"{lat_s} {lon_s}"
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def _format_hud_rows(
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cur_lat: float,
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cur_lon: float,
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is_rel: bool,
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has_lock: bool = False
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) -> list[str]:
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"""
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Format HUD data rows.
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Parameters
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----------
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cur_lat : float
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Current UAV latitude.
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cur_lon : float
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Current UAV longitude.
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is_rel : bool
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Whether payload has released.
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has_lock : bool
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Whether active GNSS 3D lock has been acquired.
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Returns
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-------
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list[str]
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List of formatted box rows.
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"""
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if cur_lat == 0.0 and cur_lon == 0.0:
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c_s = "0.000000 deg N 0.000000 deg E"
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g_s = "SEARCHING SATELLITES"
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m_s = "MOTOR STOPPED [WAITING FOR 3D LOCK]"
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else:
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c_s = _format_pos(cur_lat, cur_lon)
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g_s = "ACTIVE 3D LOCK" if has_lock else "SEARCHING SATELLITES"
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m_s = "ACTIVE PROPULSION [SERVO SPINNING]" if has_lock else "MOTOR STOPPED [WAITING FOR 3D LOCK]"
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return [
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f"| CURRENT POSITION : {c_s:<44} |",
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f"| GNSS SUBSYSTEM : {g_s:<44} |",
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f"| PROPULSION MOTOR : {m_s:<44} |"
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]
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def _print_box(title: str, link: str, rows: list[str]) -> None:
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"""
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Print framed ASCII box.
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Parameters
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----------
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title : str
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Box title line.
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link : str
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Sub-header line.
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rows : list[str]
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Body content rows.
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Returns
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-------
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None
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"""
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hdr = f"+{'-' * 65}+"
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print(hdr)
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print(title)
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print(link)
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print(hdr)
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for r in rows:
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print(r)
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print(hdr + "\n", flush=True)
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def _print_hud(
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cur_lat: float,
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cur_lon: float,
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is_released: bool,
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has_lock: bool = False
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) -> None:
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"""
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Display the 67-character telemetry mission HUD.
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Parameters
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----------
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cur_lat : float
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Current UAV latitude.
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cur_lon : float
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Current UAV longitude.
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is_released : bool
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Whether payload solenoid has been energized.
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has_lock : bool
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Whether active GNSS 3D lock has been acquired.
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Returns
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-------
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None
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"""
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rows = _format_hud_rows(cur_lat, cur_lon, is_released, has_lock)
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title = f"|{'DARK VECTOR TELEMETRY CONSOLE':^65}|"
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status = f"{'STATUS: ONLINE':>20}"
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link = f"| LINK: FT232RL / RYLR998 LORA GROUND STATION{status} |"
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_print_box(title, link, rows)
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def _run_demo() -> None:
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"""
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Execute simulation of drone telemetry stream.
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Parameters
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----------
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None
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Returns
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-------
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None
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"""
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print("[*] Running simulated ground station telemetry stream...\n")
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_print_hud(0.0, 0.0, False, False)
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time.sleep(1.0)
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_print_hud(38.840280, -77.428890, False, True)
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time.sleep(1.0)
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_print_hud(38.861110, -77.439585, False, True)
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time.sleep(1.0)
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_print_hud(38.881940, -77.450280, True, True)
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def _process_line(
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line: str,
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coords: dict[str, any]
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) -> bool:
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"""
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Parse a single line of serial telemetry using regex.
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Parameters
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----------
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line : str
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Raw serial string.
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coords : dict[str, any]
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State dictionary of coordinates.
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Returns
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-------
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bool
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True if telemetry data was updated, False otherwise.
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"""
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updated = False
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m_cur = re.search(r"CURRENT LAT:\s*([-+]?\d*\.?\d+).*?LON:\s*([-+]?\d*\.?\d+)", line)
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if m_cur:
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coords["cur_lat"] = float(m_cur.group(1))
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coords["cur_lon"] = float(m_cur.group(2))
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coords["has_lock"] = True
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updated = True
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if "PAYLOAD RELEASED" in line:
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coords["released"] = 1.0
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updated = True
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return updated
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def _monitor_serial(port: str, baud: int) -> None:
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"""
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Monitor serial stream from FT232RL ground station.
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Parameters
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----------
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port : str
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Serial device path.
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baud : int
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Baud rate.
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Returns
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-------
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None
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"""
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if serial is None:
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sys.exit("pyserial required: pip install pyserial")
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coords = {
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"cur_lat": 0.0,
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"cur_lon": 0.0,
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"released": 0.0,
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"has_lock": False
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}
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with serial.Serial(port, baud, timeout=1.0) as ser:
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while True:
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raw = ser.readline().decode("utf-8", errors="ignore").strip()
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if raw:
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_process_line(raw, coords)
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rel = coords["released"] > 0.5
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_print_hud(coords["cur_lat"], coords["cur_lon"], rel, coords["has_lock"])
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def main() -> None:
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"""
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Parse arguments and start telemetry monitor.
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Parameters
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----------
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None
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Returns
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-------
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None
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"""
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parser = argparse.ArgumentParser(description="Dark Vector Telemetry")
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parser.add_argument("--port", default="/dev/tty.usbserial-0001")
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parser.add_argument("--baud", type=int, default=115200)
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parser.add_argument("--demo", action="store_true")
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args = parser.parse_args()
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if args.demo:
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_run_demo()
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return
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_monitor_serial(args.port, args.baud)
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if __name__ == "__main__":
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main()
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