304 lines
11 KiB
Python
304 lines
11 KiB
Python
import datetime
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import enum
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import logging
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import struct
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from eive_tmtc.config.definitions import CustomServiceList
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from eive_tmtc.config.object_ids import PWR_CONTROLLER
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from eive_tmtc.pus_tm.defs import PrintWrapper
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from tmtccmd.config.tmtc import (
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tmtc_definitions_provider,
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TmtcDefinitionWrapper,
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OpCodeEntry,
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)
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from tmtccmd.tc import service_provider
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from tmtccmd.tc.queue import DefaultPusQueueHelper
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from tmtccmd.tc.pus_200_fsfw_mode import Mode, pack_mode_command
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from tmtccmd.tc.decorator import ServiceProviderParams
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from tmtccmd.tc.pus_3_fsfw_hk import (
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generate_one_hk_command,
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make_sid,
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enable_periodic_hk_command_with_interval,
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disable_periodic_hk_command,
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create_request_one_diag_command,
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)
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from tmtccmd.fsfw.tmtc_printer import FsfwTmTcPrinter
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from tmtccmd.tc.pus_20_fsfw_param import create_load_param_cmd
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from tmtccmd.pus.s20_fsfw_param_defs import (
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create_scalar_float_parameter,
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create_scalar_double_parameter,
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)
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_LOGGER = logging.getLogger(__name__)
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class SetId(enum.IntEnum):
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CORE_HK_SET = 0
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ENABLE_PL_SET = 1
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# class ActionId(enum.IntEnum):
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class ParamId(enum.IntEnum):
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BATTERY_INTERNAL_RESISTANCE = 0
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BATTERY_MAXIMUM_CAPACITY = 1
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COULOMB_COUNTER_VOLTAGE_UPPER_THRESHOLD = 2
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MAX_ALLOWED_TIME_DIFF = 3
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PAYLOAD_OP_LIMIT_ON = 4
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PAYLOAD_OP_LIMIT_LOW = 5
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HIGHER_MODES_LIMIT = 6
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class OpCodes:
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OFF = ["mode_off"]
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ON = ["mode_on"]
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NML = ["mode_normal"]
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SET_PARAMETER = ["set_parameter"]
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REQUEST_CORE_HK = ["core_hk"]
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ENABLE_CORE_HK = ["core_enable_hk"]
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DISABLE_CORE_HK = ["core_disable_hk"]
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REQUEST_ENABLE_PL_HK = ["enable_pl_hk"]
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ENABLE_ENABLE_PL_HK = ["enable_pl_enable_hk"]
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DISABLE_ENABLE_PL_HK = ["enable_pl_disable_hk"]
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class Info:
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OFF = "PWR Ctrl Mode to OFF"
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ON = "PWR Ctrl Mode to ON"
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NML = "PWR Ctrl Mode to NORMAL"
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SET_PARAMETER = "Set Parameter"
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REQUEST_CORE_HK = "Request Core HK once"
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ENABLE_CORE_HK = "Enable Core HK Data Generation"
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DISABLE_CORE_HK = "Disable Core HK Data Generation"
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REQUEST_ENABLE_PL_HK = "Request Enable PL HK once"
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ENABLE_ENABLE_PL_HK = "Enable Enable PL HK Data Generation"
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DISABLE_ENABLE_PL_HK = "Disable Enable PL HK Data Generation"
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@tmtc_definitions_provider
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def acs_cmd_defs(defs: TmtcDefinitionWrapper):
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oce = OpCodeEntry()
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oce.add(keys=OpCodes.OFF, info=Info.OFF)
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oce.add(keys=OpCodes.ON, info=Info.ON)
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oce.add(keys=OpCodes.NML, info=Info.NML)
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oce.add(keys=OpCodes.SET_PARAMETER, info=Info.SET_PARAMETER)
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oce.add(keys=OpCodes.REQUEST_CORE_HK, info=Info.REQUEST_CORE_HK)
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oce.add(keys=OpCodes.ENABLE_CORE_HK, info=Info.ENABLE_CORE_HK)
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oce.add(keys=OpCodes.DISABLE_CORE_HK, info=Info.DISABLE_CORE_HK)
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oce.add(keys=OpCodes.REQUEST_ENABLE_PL_HK, info=Info.REQUEST_ENABLE_PL_HK)
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oce.add(keys=OpCodes.ENABLE_ENABLE_PL_HK, info=Info.ENABLE_ENABLE_PL_HK)
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oce.add(keys=OpCodes.DISABLE_ENABLE_PL_HK, info=Info.DISABLE_ENABLE_PL_HK)
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defs.add_service(
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name=CustomServiceList.PWR_CTRL.value, info="PWR Controller", op_code_entry=oce
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)
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@service_provider(CustomServiceList.PWR_CTRL.value)
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def pack_acs_ctrl_command(p: ServiceProviderParams):
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op_code = p.op_code
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q = p.queue_helper
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if op_code in OpCodes.OFF:
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q.add_log_cmd(f"{Info.OFF}")
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q.add_pus_tc(pack_mode_command(PWR_CONTROLLER, Mode.OFF, 0))
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elif op_code in OpCodes.ON:
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q.add_log_cmd(f"{Info.ON}")
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q.add_pus_tc(pack_mode_command(PWR_CONTROLLER, Mode.ON, 0))
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elif op_code in OpCodes.NML:
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q.add_log_cmd(f"{Info.NML}")
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q.add_pus_tc(pack_mode_command(PWR_CONTROLLER, Mode.NORMAL, 0))
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elif op_code in OpCodes.SET_PARAMETER:
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q.add_log_cmd(f"{Info.SET_PARAMETER}")
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set_pwr_ctrl_param(q)
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elif op_code in OpCodes.REQUEST_CORE_HK:
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q.add_log_cmd(Info.REQUEST_CORE_HK)
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q.add_pus_tc(
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generate_one_hk_command(make_sid(PWR_CONTROLLER, SetId.CORE_HK_SET))
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)
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elif op_code in OpCodes.ENABLE_CORE_HK:
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interval = float(input("Please specify interval in floating point seconds: "))
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q.add_log_cmd(Info.ENABLE_CORE_HK)
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cmd_tuple = enable_periodic_hk_command_with_interval(
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False, make_sid(PWR_CONTROLLER, SetId.CORE_HK_SET), interval
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)
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q.add_pus_tc(cmd_tuple[0])
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q.add_pus_tc(cmd_tuple[1])
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elif op_code in OpCodes.DISABLE_CORE_HK:
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q.add_log_cmd(Info.DISABLE_CORE_HK)
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q.add_pus_tc(
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disable_periodic_hk_command(
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False, make_sid(PWR_CONTROLLER, SetId.CORE_HK_SET)
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)
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)
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elif op_code in OpCodes.REQUEST_ENABLE_PL_HK:
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q.add_log_cmd(Info.REQUEST_ENABLE_PL_HK)
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q.add_pus_tc(
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generate_one_hk_command(make_sid(PWR_CONTROLLER, SetId.ENABLE_PL_SET))
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)
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elif op_code in OpCodes.ENABLE_ENABLE_PL_HK:
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interval = float(input("Please specify interval in floating point seconds: "))
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q.add_log_cmd(Info.ENABLE_ENABLE_PL_HK)
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cmd_tuple = enable_periodic_hk_command_with_interval(
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False, make_sid(PWR_CONTROLLER, SetId.ENABLE_PL_SET), interval
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)
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q.add_pus_tc(cmd_tuple[0])
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q.add_pus_tc(cmd_tuple[1])
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elif op_code in OpCodes.DISABLE_ENABLE_PL_HK:
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q.add_log_cmd(Info.DISABLE_ENABLE_PL_HK)
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q.add_pus_tc(
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disable_periodic_hk_command(
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False, make_sid(PWR_CONTROLLER, SetId.ENABLE_PL_SET)
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)
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)
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def set_pwr_ctrl_param(q: DefaultPusQueueHelper):
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for val in ParamId:
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print("{:<2}: {:<20}".format(val, val.name))
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param = int(input(f"Specify parameter to set \n" f""))
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match param:
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case ParamId.BATTERY_INTERNAL_RESISTANCE:
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value = float(input("Specify parameter value to set [Ohm]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_float_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.BATTERY_INTERNAL_RESISTANCE,
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parameter=value,
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)
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)
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)
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case ParamId.BATTERY_MAXIMUM_CAPACITY:
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value = float(input("Specify parameter value to set [Ah]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_float_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.BATTERY_MAXIMUM_CAPACITY,
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parameter=value,
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)
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)
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)
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case ParamId.COULOMB_COUNTER_VOLTAGE_UPPER_THRESHOLD:
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value = float(input("Specify parameter value to set [V]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_float_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.COULOMB_COUNTER_VOLTAGE_UPPER_THRESHOLD,
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parameter=value,
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)
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)
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)
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case ParamId.MAX_ALLOWED_TIME_DIFF:
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value = float(input("Specify parameter value to set [s]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_double_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.MAX_ALLOWED_TIME_DIFF,
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parameter=value,
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)
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)
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)
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case ParamId.PAYLOAD_OP_LIMIT_ON:
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value = float(input("Specify parameter value to set [1]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_float_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.PAYLOAD_OP_LIMIT_ON,
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parameter=value,
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)
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)
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)
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case ParamId.PAYLOAD_OP_LIMIT_LOW:
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value = float(input("Specify parameter value to set [1]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_float_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.PAYLOAD_OP_LIMIT_LOW,
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parameter=value,
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)
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)
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)
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case ParamId.HIGHER_MODES_LIMIT:
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value = float(input("Specify parameter value to set [1]: "))
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q.add_pus_tc(
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create_load_param_cmd(
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create_scalar_float_parameter(
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object_id=PWR_CONTROLLER,
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domain_id=0,
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unique_id=ParamId.HIGHER_MODES_LIMIT,
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parameter=value,
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)
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)
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)
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def handle_pwr_ctrl_hk_data(
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pw: PrintWrapper,
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set_id: int,
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hk_data: bytes,
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packet_time: datetime.datetime,
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):
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pw.ilog(_LOGGER, f"Received PWR CTRL HK with packet time {packet_time}")
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match set_id:
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case SetId.CORE_HK_SET:
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handle_core_hk_data(pw, hk_data)
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case SetId.ENABLE_PL_SET:
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handle_enable_pl_data(pw, hk_data)
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def handle_core_hk_data(pw: PrintWrapper, hk_data: bytes):
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pw.dlog("Received Core HK Set")
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fmt_int16 = "!h"
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fmt_float = "!f"
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inc_len_int16 = struct.calcsize(fmt_int16)
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inc_len_float = struct.calcsize(fmt_float)
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if len(hk_data) < inc_len_int16 + 2 * inc_len_float:
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pw.dlog("Received HK set too small")
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return
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current_idx = 0
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total_battery_current = struct.unpack(
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fmt_int16, hk_data[current_idx : current_idx + inc_len_int16]
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)[0]
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current_idx += inc_len_int16
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open_circuit_voltage_charge = struct.unpack(
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fmt_float, hk_data[current_idx : current_idx + inc_len_float]
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)[0]
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current_idx += inc_len_float
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coulomb_counter_charge = struct.unpack(
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fmt_float, hk_data[current_idx : current_idx + inc_len_float]
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)[0]
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current_idx += inc_len_float
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pw.dlog(f"Total Battery Current: {total_battery_current} [mA]")
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pw.dlog(f"Open Circuit Voltage Charge: {open_circuit_voltage_charge*100:8.3f} [%]")
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pw.dlog(f"Coulomb Counter Charge: {coulomb_counter_charge*100:8.3f} [%]")
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=3)
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def handle_enable_pl_data(pw: PrintWrapper, hk_data: bytes):
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pw.dlog("Received Enable PL HK Set")
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fmt_uint16 = "!B"
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inc_len_uint16 = struct.calcsize(fmt_uint16)
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if len(hk_data) < inc_len_uint16:
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pw.dlog("Received HK set too small")
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return
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current_idx = 0
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pl_use_allowed = struct.unpack(
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fmt_uint16, hk_data[current_idx : current_idx + inc_len_uint16]
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)[0]
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current_idx += inc_len_uint16
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pw.dlog(f"PL Use Allowed: {pl_use_allowed}")
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=1)
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