GPS HK Parsing #86
@ -34,8 +34,7 @@ class CustomServiceList(enum.Enum):
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REACTION_WHEEL_4 = "rw-4"
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RW_ASSEMBLY = "rw-ass"
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RAD_SENSOR = "rad_sensor"
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GPS_0 = "gps0"
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GPS_1 = "gps1"
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GPS_CTRL = "gnss-ctrl"
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PLOC_MEMORY_DUMPER = "ploc_memory_dumper"
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CORE = "core"
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STAR_TRACKER = "star_tracker"
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@ -1,4 +1,4 @@
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from pus_tc.devs.gps import GpsOpCodes
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from pus_tc.devs.gps import OpCodes
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from pus_tc.devs.pcdu import add_pcdu_cmds
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from pus_tc.devs.rad_sensor import add_rad_sens_cmds
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from tmtccmd.config import (
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@ -89,15 +89,6 @@ def add_ccsds_cmds(cmd_dict: ServiceOpCodeDictT):
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cmd_dict[CustomServiceList.CCSDS_HANDLER.value] = service_ccsds_handler_tuple
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def add_gps_cmds(cmd_dict: ServiceOpCodeDictT):
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op_code_dict = {
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GpsOpCodes.RESET_GNSS.value: ("Reset GPS", {OpCodeDictKeys.TIMEOUT: 2.0})
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}
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service_tuple = ("GPS 0", op_code_dict)
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cmd_dict[CustomServiceList.GPS_0.value] = service_tuple
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cmd_dict[CustomServiceList.GPS_1.value] = service_tuple
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def add_str_cmds(cmd_dict: ServiceOpCodeDictT):
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op_code_dict_srv_star_tracker = {
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"0": (
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@ -1,22 +1,63 @@
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import enum
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from tmtccmd.config.definitions import QueueCommands
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from config.definitions import CustomServiceList
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from tmtccmd.config import add_op_code_entry, add_service_op_code_entry
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from tmtccmd.tc.pus_3_fsfw_hk import make_sid, generate_one_hk_command
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from tmtccmd.config.definitions import QueueCommands, ServiceOpCodeDictT
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from tmtccmd.logging import get_console_logger
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from tmtccmd.tc.definitions import TcQueueT
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from tmtccmd.tc.pus_8_funccmd import generate_action_command
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from config.object_ids import GPS_HANDLER_1_ID, GPS_HANDLER_0_ID
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LOGGER = get_console_logger()
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class GpsOpCodes(enum.Enum):
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RESET_GNSS = "5"
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class OpCodes:
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REQ_OS_HK = ["0", "hk-os"]
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RESET_GNSS = ["5", "reset"]
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class Info:
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REQ_OS_HK = "Request One-Shot HK"
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RESET_GNSS = "Reset GNSS using reset pin"
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class SetIds:
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HK = 0
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def add_gps_cmds(cmd_dict: ServiceOpCodeDictT):
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op_code_dict = dict()
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add_op_code_entry(
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op_code_dict=op_code_dict, keys=OpCodes.RESET_GNSS, info=Info.RESET_GNSS
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)
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add_op_code_entry(
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op_code_dict=op_code_dict, keys=OpCodes.REQ_OS_HK, info=Info.REQ_OS_HK
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)
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add_service_op_code_entry(
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srv_op_code_dict=cmd_dict,
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op_code_entry=op_code_dict,
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name=CustomServiceList.GPS_CTRL.value,
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info="GPS/GNSS Controller"
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)
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def pack_gps_command(object_id: bytes, tc_queue: TcQueueT, op_code: str):
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if op_code == GpsOpCodes.RESET_GNSS.value:
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if op_code in OpCodes.RESET_GNSS:
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if object_id == GPS_HANDLER_0_ID:
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tc_queue.appendleft((QueueCommands.PRINT, "Resetting GPS device 0"))
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# TODO: This needs to be re-implemented
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LOGGER.warning("Reset pin handling needs to be re-implemented")
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return
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# tc_queue.appendleft((QueueCommands.PRINT, "Resetting GPS device 0"))
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elif object_id == GPS_HANDLER_1_ID:
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tc_queue.appendleft((QueueCommands.PRINT, "Resetting GPS device 1"))
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LOGGER.warning("Reset pin handling needs to be re-implemented")
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return
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# tc_queue.appendleft((QueueCommands.PRINT, "Resetting GPS device 1"))
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cmd = generate_action_command(object_id=object_id, action_id=int(op_code))
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tc_queue.appendleft(cmd.pack_command_tuple())
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if op_code in OpCodes.REQ_OS_HK:
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tc_queue.appendleft((QueueCommands.PRINT, f"GMSS: {Info.REQ_OS_HK}"))
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cmd = generate_one_hk_command(sid=make_sid(object_id=object_id, set_id=SetIds.HK), ssc=0)
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tc_queue.appendleft(cmd.pack_command_tuple())
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@ -1,6 +1,4 @@
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import os
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import struct
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from datetime import datetime
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from pus_tm.defs import PrintWrapper
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from tmtccmd.utility.tmtc_printer import FsfwTmTcPrinter
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@ -9,51 +7,31 @@ from tmtccmd.utility.tmtc_printer import FsfwTmTcPrinter
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def handle_gps_data(printer: FsfwTmTcPrinter, hk_data: bytes):
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pw = PrintWrapper(printer)
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pw.dlog(f"Received GPS data, HK data length {len(hk_data)}")
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var_index = 0
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header_list = [
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"Latitude",
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"Longitude",
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"Altitude",
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"Fix Mode",
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"Sats in Use",
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"Date",
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"Unix Seconds",
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]
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latitude = struct.unpack("!d", hk_data[0:8])[0]
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longitude = struct.unpack("!d", hk_data[8:16])[0]
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altitude = struct.unpack("!d", hk_data[16:24])[0]
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fix_mode = hk_data[24]
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sat_in_use = hk_data[25]
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year = struct.unpack("!H", hk_data[26:28])[0]
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month = hk_data[28]
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day = hk_data[29]
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hours = hk_data[30]
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minutes = hk_data[31]
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seconds = hk_data[32]
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current_idx = 0
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fmt_str = "!ddddBBBHBBBBBI"
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inc_len = struct.calcsize(fmt_str)
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(
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lat,
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long,
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alt,
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speed,
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fix,
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sats_in_use,
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sats_in_view,
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year,
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month,
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day,
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hours,
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minutes,
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seconds,
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unix_seconds
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) = struct.unpack(fmt_str, hk_data[current_idx: current_idx + inc_len])
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current_idx += inc_len
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date_string = f"{day}.{month}.{year} {hours}:{minutes}:{seconds}"
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unix_seconds = struct.unpack("!I", hk_data[33:37])[0]
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content_list = [
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latitude,
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longitude,
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altitude,
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fix_mode,
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sat_in_use,
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date_string,
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unix_seconds,
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]
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var_index += 13
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if not os.path.isfile("gps_log.txt"):
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with open("gps_log.txt", "w") as gps_file:
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gps_file.write(
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"Time, Latitude [deg], Longitude [deg], Altitude [m], Fix Mode, Sats in Use, "
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"Date, Unix Seconds\n"
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)
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with open("gps_log.txt", "a") as gps_file:
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gps_file.write(
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f"{datetime.now()}, {latitude}, {longitude}, {altitude}, "
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f"{fix_mode}, {sat_in_use}, {date_string}, {unix_seconds}\n"
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)
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validity_buffer = hk_data[37:39]
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pw.dlog(str(header_list))
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pw.dlog(str(content_list))
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printer.print_validity_buffer(validity_buffer=validity_buffer, num_vars=10)
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pw.dlog(f"Lat: {lat} deg")
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pw.dlog(f"Long: {long} deg")
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pw.dlog(f"Altitude: {alt} m | Speed: {speed} m/s")
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pw.dlog(f"Fix Type: {fix} | Sats in View {sats_in_view} | Sats in Use {sats_in_use}")
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pw.dlog(f"GNSS Date: {date_string}")
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pw.dlog(f"Unix seconds {unix_seconds}")
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printer.print_validity_buffer(validity_buffer=hk_data[current_idx:], num_vars=14)
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