High-level Python wrapper around the upstream cosma-tech/kogger_acousticAntenna
driver. Configures a Kogger acoustic antenna as a permanent slave transponder
in a single start() call: address filter, echo filter, optional TDMA sync slot,
permanent response window, and Python callbacks for each ping received.
No modification to the upstream driver — only composes existing public methods
in the right order. Snapshot of upstream driver included read-only under driver/
for reference.
Includes:
- transponder_continu.py (302 lines): the wrapper class + CLI
- examples/auv_slave.py (79 lines): usage example with logging
- README.md: design rationale, usage, multi-AUV TDMA, watchdog, hardware wiring
- driver/: snapshot of cosma-tech/kogger_acousticAntenna at commit 1b539f9
('Add index slot for multi pinger', 2025-03-11)
Built for Cosma context (USV master + N AUVs slaves) following the design
conversation in Discord #ping-pong-ping (2026-04-27). See poulpe/ping-pong-ping
on Gitea for the interactive demo of the protocol.
179 lines
6.5 KiB
Python
Executable File
179 lines
6.5 KiB
Python
Executable File
#! /usr/bin/env python
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# Test to run AUV. Will respond to all ping received and save the state received
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import time
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import sys
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import json
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from loguru import logger
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import os
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import datetime
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# Add the parent directory to the Python path to find the driver module
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sys.path.insert(0, os.path.abspath(os.path.join(os.path.dirname(__file__), '..')))
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try:
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#from kogger_protocol_driver import KoggerSBPDevice, setup_logging
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import kogger_protocol_driver
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except ImportError:
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logger.critical("Failed to import KoggerSBPDevice. Make sure kogger_protocol_driver.py is in the parent directory.")
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sys.exit(1)
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# --- Script Configuration ---
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# Set the desired logging level: "DEBUG", "INFO", "WARNING", "ERROR", "CRITICAL"
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LOG_LEVEL = "INFO"
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timestamp = datetime.datetime.now().strftime("%Y-%m-%d_%H-%M-%S")
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LOG_FILE = "log/"+str(timestamp)+"_log_auv.log"
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# Default serial port if not provided via command line
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#DEFAULT_SERIAL_PORT = "/dev/ttyUSB0"
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DEFAULT_SERIAL_PORT = "/dev/serial/by-path/platform-fd500000.pcie-pci-0000:01:00.0-usb-0:1.3:1.0"
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DEFAULT_SERIAL_PORT = "/dev/ttyAMA4"
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DEFAULT_SERIAL_SPEED = 921600
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response_received = -1
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antenna = None
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def print_message(message):
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"""
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This function is a callback that will be executed for each message
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received from the antenna that is not a direct response to a command.
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"""
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parsed = json.loads(str(message).replace("nan", "'nan'").replace("'",'"'))
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logger.info(json.dumps(parsed, indent=2))
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try:
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global response_received
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response_received = message["id"]
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logger.info("resp="+str(response_received))
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except Exception as e:
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logger.info("exception="+str(e))
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pass
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def test_callback(message):
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global antenna
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data=antenna.get_usbl_data()
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global response_received
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response_received = message["id"]
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logger.info("test!!!!!!"+str(data))
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return message
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def check_all_getters(antenna):
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"""
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Calls all get_* methods on the antenna object and prints the results.
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"""
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print("\n--- Checking all getter methods ---")
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# A list of all getter methods to call.
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# Some methods require arguments, which are provided as tuples.
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# (method_name, args_tuple)
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getters_to_test = [
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#('get_timestamp', ()),
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#('get_distance', (0,)),
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#('get_distance', (1,)),
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#('get_chart_data', ()),
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('get_attitude', (0,)), #!!OK
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#('get_attitude', (1,)),
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#('get_temperature', ()),
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#('get_dataset_config', (0,)),
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#('get_distance_setup', ()),
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#('get_chart_setup', ()),
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#('get_transceiver_settings', ()),
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#('get_sound_speed', ()),
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#('get_uart_config', (1, 0)), # uart_id=1, version=0
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#('get_uart_config', (1, 1)), # uart_id=1, version=1
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('get_version_info', ()), #!! OK
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('get_mark_status', ()), #!! OK
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#('get_diagnostics', ()),
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#('get_navigation_data', ()),
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#('get_dvl_velocity_data', ()),
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#('get_signal_encoder_data', ()),
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#('get_signal_decoder_data', ()),
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#('get_auto_response_timeout', ()),
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#('get_auto_response_filter', ()),
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#('get_auto_response_payload', ()),
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('get_usbl_solution', ()),
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]
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for method_name, args in getters_to_test:
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try:
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method = getattr(antenna, method_name)
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print(f"Calling {method_name}{args}...")
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result = method(*args)
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print(f"Result: {result}")
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except Exception as e:
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print(f"An error occurred while calling {method_name}: {e}")
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print("-" * 20)
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time.sleep(0.01) # Give the device a moment between commands
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print("--- Finished checking all getter methods ---\n")
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def main():
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"""
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Main function to connect to the Kogger antenna and listen for messages.
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"""
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# Determine the serial port to use
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if len(sys.argv) > 1:
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serial_port = sys.argv[1]
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else:
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serial_port = DEFAULT_SERIAL_PORT
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print(f"No serial port provided. Using default: {serial_port}")
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# Instantiate the driver
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global antenna
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antenna = kogger_protocol_driver.KoggerSBPDevice(serial_port, DEFAULT_SERIAL_SPEED, default_timeout=0.02, log_level=LOG_LEVEL, log_file=LOG_FILE)
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try:
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# Connect to the antenna
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if not antenna.connect():
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print(f"Failed to connect to the antenna on port {serial_port}", file=sys.stderr)
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sys.exit(1)
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print(f"Successfully connected to the antenna on {serial_port}.")
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# Perform a one-time check of all getter functions
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check_all_getters(antenna)
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result = antenna.set_auto_response_filter(0)
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logger.info("set_auto_response_filter(0)="+str(result))
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result = antenna.set_auto_response_timeout(0xffffffff)
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logger.info("set_auto_response_timeout(0xffffffff)="+str(result))
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result = antenna.set_auto_response_payload(0xff)
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logger.info("set_auto_response_payload(0xff)="+str(result))
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antenna.register_precallback(kogger_protocol_driver.ID_USBL_SOLUTION, antenna.callback_usbl_solution)
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antenna.register_callback(kogger_protocol_driver.ID_USBL_SOLUTION, test_callback)
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antenna.register_default_callback(print_message)
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response_received_old = -1
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global response_received
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while True:
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logger.info("response_received="+str(response_received))
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if response_received_old != response_received:
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response_received_old = response_received
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try:
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result = antenna.set_auto_response_payload(response_received)
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except:
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result = antenna.set_auto_response_payload(0xff)
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logger.info("antenna.set_auto_response_payload("+str(response_received)+")="+str(result))
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time.sleep(1)
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for i in range(10000):
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#result = antenna.send_acoustic_ping(i%9)
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result = antenna.send_acoustic_ping(0)
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print("sent "+str(i%9)+"result="+str(result))
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time.sleep(1)
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exit()
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except KeyboardInterrupt:
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print("\nExiting...")
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except Exception as e:
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print(f"An error occurred: {e}", file=sys.stderr)
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exc_type, exc_obj, exc_tb = sys.exc_info()
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fname = os.path.split(exc_tb.tb_frame.f_code.co_filename)[1]
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print(f"type={exc_type}, fname={fname}, line={exc_tb.tb_lineno}")
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finally:
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# Ensure the connection is closed gracefully
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print("Disconnecting from the antenna.")
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antenna.disconnect()
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if __name__ == "__main__":
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main()
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