PL PCDU enum #229
@ -333,10 +333,8 @@ def pack_acs_ctrl_command(p: ServiceProviderParams): # noqa C901
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break
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else:
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print("The line does not have the required length of 69 characters")
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tle = line1.encode()+line2.encode()
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q.add_pus_tc(
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create_action_cmd(ACS_CONTROLLER, ActionId.UPDATE_TLE,tle)
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)
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tle = line1.encode() + line2.encode()
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q.add_pus_tc(create_action_cmd(ACS_CONTROLLER, ActionId.UPDATE_TLE, tle))
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elif op_code in OpCodes.SET_PARAMETER_SCALAR:
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q.add_log_cmd(f"{Info.SET_PARAMETER_SCALAR}")
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set_acs_ctrl_param_scalar(q)
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@ -1059,7 +1057,9 @@ def handle_gps_data_processed(pw: PrintWrapper, hk_data: bytes):
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)
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]
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current_idx += inc_len_vec
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source = struct.unpack(fmt_source, hk_data[current_idx: current_idx + inc_len_source])[0]
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source = struct.unpack(
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fmt_source, hk_data[current_idx : current_idx + inc_len_source]
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)[0]
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current_idx += inc_len_source
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if GPS_COURCE_DICT.get(source) is not None:
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pw.dlog(f"GPS Source: {GPS_COURCE_DICT[source]}")
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@ -19,9 +19,11 @@ from tmtccmd.fsfw.tmtc_printer import FsfwTmTcPrinter
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_LOGGER = logging.getLogger(__name__)
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class GpsInfo:
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MAX_SATELLITES = 30
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class OpCode:
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OFF = "off"
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ON = "on"
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@ -70,7 +72,9 @@ def add_gps_cmds(defs: TmtcDefinitionWrapper):
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)
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def pack_gps_command(object_id: bytes, q: DefaultPusQueueHelper, op_code: str):
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def pack_gps_command( # noqa: C901
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object_id: bytes, q: DefaultPusQueueHelper, op_code: str
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): # noqa: C901
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if op_code in OpCode.RESET_GNSS:
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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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@ -80,34 +84,52 @@ def pack_gps_command(object_id: bytes, q: DefaultPusQueueHelper, op_code: str):
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raise ValueError("invalid interval")
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q.add_log_cmd(f"GPS: {Info.ENABLE_CORE_HK}")
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cmds = create_enable_periodic_hk_command_with_interval(
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diag=False, sid=make_sid(object_id=object_id, set_id=SetId.CORE_HK), interval_seconds=interval
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diag=False,
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sid=make_sid(object_id=object_id, set_id=SetId.CORE_HK),
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interval_seconds=interval,
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)
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for cmd in cmds:
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q.add_pus_tc(cmd)
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if op_code in OpCode.DISABLE_CORE_HK:
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q.add_log_cmd(f"gps: {Info.DISABLE_CORE_HK}")
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q.add_pus_tc(create_disable_periodic_hk_command(diag=False, sid=make_sid(object_id=object_id,
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set_id=SetId.CORE_HK)))
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q.add_pus_tc(
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create_disable_periodic_hk_command(
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diag=False, sid=make_sid(object_id=object_id, set_id=SetId.CORE_HK)
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)
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)
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if op_code in OpCode.REQ_CORE_HK:
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q.add_log_cmd(f"GPS: {Info.REQ_CORE_HK}")
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q.add_pus_tc(create_request_one_hk_command(sid=make_sid(object_id=object_id, set_id=SetId.CORE_HK)))
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q.add_pus_tc(
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create_request_one_hk_command(
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sid=make_sid(object_id=object_id, set_id=SetId.CORE_HK)
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)
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)
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if op_code in OpCode.ENABLE_SKYVIEW_HK:
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interval = float(input("Please specify interval in floating point seconds: "))
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if interval <= 0:
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raise ValueError("invalid interval")
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q.add_log_cmd(f"GPS: {Info.ENABLE_SKYVIEW_HK}")
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cmds = create_enable_periodic_hk_command_with_interval(
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diag=False, sid=make_sid(object_id=object_id, set_id=SetId.SKYVIEW_HK), interval_seconds=interval
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diag=False,
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sid=make_sid(object_id=object_id, set_id=SetId.SKYVIEW_HK),
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interval_seconds=interval,
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)
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for cmd in cmds:
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q.add_pus_tc(cmd)
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if op_code in OpCode.DISABLE_SKYVIEW_HK:
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q.add_log_cmd(f"gps: {Info.DISABLE_SKYVIEW_HK}")
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q.add_pus_tc(create_disable_periodic_hk_command(diag=False, sid=make_sid(object_id=object_id,
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set_id=SetId.SKYVIEW_HK)))
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q.add_pus_tc(
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create_disable_periodic_hk_command(
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diag=False, sid=make_sid(object_id=object_id, set_id=SetId.SKYVIEW_HK)
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)
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)
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if op_code in OpCode.REQ_SKYVIEW_HK:
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q.add_log_cmd(f"GPS: {Info.REQ_SKYVIEW_HK}")
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q.add_pus_tc(create_request_one_hk_command(sid=make_sid(object_id=object_id, set_id=SetId.SKYVIEW_HK)))
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q.add_pus_tc(
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create_request_one_hk_command(
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sid=make_sid(object_id=object_id, set_id=SetId.SKYVIEW_HK)
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)
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)
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if op_code in OpCode.ON:
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q.add_log_cmd(f"GPS: {Info.ON}")
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q.add_pus_tc(create_mode_command(object_id, Mode.ON, 0))
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@ -131,7 +153,7 @@ def handle_gps_data(
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def handle_core_data(pw: PrintWrapper, hk_data: bytes):
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if len(hk_data) < 4*8+4+2+8:
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if len(hk_data) < 4 * 8 + 4 + 2 + 8:
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pw.dlog(
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f"GPS Core dataset with size {len(hk_data)} does not have expected size"
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f" of {4*8+4+2+8} bytes"
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@ -177,7 +199,7 @@ def handle_core_data(pw: PrintWrapper, hk_data: bytes):
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def handle_skyview_data(pw: PrintWrapper, hk_data: bytes):
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data_length = 8+GpsInfo.MAX_SATELLITES*(8+3*2+1)
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data_length = 8 + GpsInfo.MAX_SATELLITES * (8 + 3 * 2 + 1)
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if len(hk_data) < data_length:
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pw.dlog(
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f"GPS Skyview dataset with size {len(hk_data)} does not have expected size"
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@ -193,24 +215,46 @@ def handle_skyview_data(pw: PrintWrapper, hk_data: bytes):
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inc_len_int16 = struct.calcsize(fmt_str_int16)
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inc_len_double = struct.calcsize(fmt_str_double)
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inc_len_uint8 = struct.calcsize(fmt_str_uint8)
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unix = struct.unpack(fmt_str_unix, hk_data[current_idx: current_idx + inc_len_unix])
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unix = struct.unpack(
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fmt_str_unix, hk_data[current_idx : current_idx + inc_len_unix]
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)
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current_idx += inc_len_unix
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prn_id = struct.unpack(fmt_str_int16, hk_data[current_idx: current_idx + inc_len_int16])
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prn_id = struct.unpack(
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fmt_str_int16, hk_data[current_idx : current_idx + inc_len_int16]
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)
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current_idx += inc_len_int16
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azimuth = struct.unpack(fmt_str_int16, hk_data[current_idx: current_idx + inc_len_int16])
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azimuth = struct.unpack(
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fmt_str_int16, hk_data[current_idx : current_idx + inc_len_int16]
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)
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current_idx += inc_len_int16
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elevation = struct.unpack(fmt_str_int16, hk_data[current_idx: current_idx + inc_len_int16])
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elevation = struct.unpack(
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fmt_str_int16, hk_data[current_idx : current_idx + inc_len_int16]
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)
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current_idx += inc_len_int16
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signal_to_noise = struct.unpack(fmt_str_double, hk_data[current_idx: current_idx + inc_len_double])
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signal_to_noise = struct.unpack(
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fmt_str_double, hk_data[current_idx : current_idx + inc_len_double]
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)
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current_idx += inc_len_double
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used = struct.unpack(fmt_str_uint8, hk_data[current_idx: current_idx + inc_len_uint8])
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used = struct.unpack(
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fmt_str_uint8, hk_data[current_idx : current_idx + inc_len_uint8]
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)
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current_idx += inc_len_uint8
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pw.dlog(f"Skyview Time: {unix} unix-sec")
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pw.dlog("{:<8} {:<8} {:<8} {:<8} {:<8}".format('PRN_ID', 'AZ [°]', 'EL [°]', 'S2N [dBW]', 'USED'))
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pw.dlog(
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"{:<8} {:<8} {:<8} {:<8} {:<8}".format(
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"PRN_ID", "AZ [°]", "EL [°]", "S2N [dBW]", "USED"
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)
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)
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for idx in range(GpsInfo.MAX_SATELLITES):
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pw.dlog("{:<8} {:<8} {:<8} {:<8} {:<8}".format(prn_id[idx], azimuth[idx], elevation[idx], signal_to_noise[idx],
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used[idx]))
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pw.dlog(
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"{:<8} {:<8} {:<8} {:<8} {:<8}".format(
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prn_id[idx],
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azimuth[idx],
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elevation[idx],
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signal_to_noise[idx],
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used[idx],
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)
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)
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FsfwTmTcPrinter.get_validity_buffer(
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validity_buffer=hk_data[current_idx:], num_vars=6
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)
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|
@ -85,6 +85,39 @@ class NormalSubmodesMask(enum.IntEnum):
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HPA_ON = 5
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class SubmodeForNormalMode(enum.IntEnum):
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SSR_ON = 1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON
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DRO_ON = 1 << NormalSubmodesMask.DRO_ON | (
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1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON
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)
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X8_ON = (
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1 << NormalSubmodesMask.DRO_ON
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
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| (1 << NormalSubmodesMask.X8_ON)
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)
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TX_ON = (
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1 << NormalSubmodesMask.DRO_ON
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
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| (1 << NormalSubmodesMask.X8_ON)
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| (1 << NormalSubmodesMask.TX_ON)
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)
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MPA_ON = (
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1 << NormalSubmodesMask.DRO_ON
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
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| (1 << NormalSubmodesMask.X8_ON)
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| (1 << NormalSubmodesMask.TX_ON)
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| (1 << NormalSubmodesMask.MPA_ON)
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)
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HPA_ON = (
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1 << NormalSubmodesMask.DRO_ON
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
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| (1 << NormalSubmodesMask.X8_ON)
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| (1 << NormalSubmodesMask.TX_ON)
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| (1 << NormalSubmodesMask.MPA_ON)
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| (1 << NormalSubmodesMask.HPA_ON)
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)
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class ParamIds(enum.IntEnum):
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NEG_V_LOWER_BOUND = 0
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NEG_V_UPPER_BOUND = 1
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@ -383,41 +416,17 @@ def request_wait_time() -> Optional[float]:
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def submode_mask_to_submode(on_tgt: NormalSubmodesMask) -> int:
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if on_tgt == NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON:
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return 1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON
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return SubmodeForNormalMode.SSR_ON
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if on_tgt == NormalSubmodesMask.DRO_ON:
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return 1 << NormalSubmodesMask.DRO_ON | (
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1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON
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)
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return SubmodeForNormalMode.DRO_ON
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if on_tgt == NormalSubmodesMask.X8_ON:
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return (
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1 << NormalSubmodesMask.DRO_ON
|
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
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| (1 << NormalSubmodesMask.X8_ON)
|
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)
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return SubmodeForNormalMode.X8_ON
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if on_tgt == NormalSubmodesMask.TX_ON:
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return (
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1 << NormalSubmodesMask.DRO_ON
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
|
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| (1 << NormalSubmodesMask.X8_ON)
|
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| (1 << NormalSubmodesMask.TX_ON)
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)
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return SubmodeForNormalMode.TX_ON
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if on_tgt == NormalSubmodesMask.MPA_ON:
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return (
|
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1 << NormalSubmodesMask.DRO_ON
|
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
|
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| (1 << NormalSubmodesMask.X8_ON)
|
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| (1 << NormalSubmodesMask.TX_ON)
|
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| (1 << NormalSubmodesMask.MPA_ON)
|
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)
|
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return SubmodeForNormalMode.MPA_ON
|
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if on_tgt == NormalSubmodesMask.HPA_ON:
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return (
|
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1 << NormalSubmodesMask.DRO_ON
|
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| (1 << NormalSubmodesMask.SOLID_STATE_RELAYS_ADC_ON)
|
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| (1 << NormalSubmodesMask.X8_ON)
|
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| (1 << NormalSubmodesMask.TX_ON)
|
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| (1 << NormalSubmodesMask.MPA_ON)
|
||||
| (1 << NormalSubmodesMask.HPA_ON)
|
||||
)
|
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return SubmodeForNormalMode.HPA_ON
|
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|
||||
|
||||
def pack_wait_time_cmd(q: DefaultPusQueueHelper, param_id: int, print_str: str):
|
||||
|
Loading…
Reference in New Issue
Block a user