add dipole set handling
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a3e03350fa
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@ -439,6 +439,8 @@ def handle_imtq_hk(printer: FsfwTmTcPrinter, hk_data: bytes, set_id: int):
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return handle_raw_mtm_measurement(printer, hk_data, False)
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return handle_raw_mtm_measurement(printer, hk_data, False)
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elif set_id == ImtqSetId.RAW_MTM_WITH_TORQUE:
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elif set_id == ImtqSetId.RAW_MTM_WITH_TORQUE:
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return handle_raw_mtm_measurement(printer, hk_data, True)
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return handle_raw_mtm_measurement(printer, hk_data, True)
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elif set_id == ImtqSetId.DIPOLES:
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return handle_dipole_set(printer, hk_data)
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elif set_id == ImtqSetId.STATUS_SET:
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elif set_id == ImtqSetId.STATUS_SET:
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return handle_status_set(printer, hk_data)
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return handle_status_set(printer, hk_data)
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else:
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else:
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@ -455,6 +457,24 @@ def unpack_status_set(hk_data: bytes) -> List:
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return [status_mode, status_error, status_conf, status_uptime]
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return [status_mode, status_error, status_conf, status_uptime]
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def handle_dipole_set(printer: FsfwTmTcPrinter, hk_data: bytes):
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pw = PrintWrapper(printer)
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pw.dlog("Received iMTQ dipole set")
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fmt_str = "!hhhH"
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fmt_len = struct.calcsize(fmt_str)
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(
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dipole_x,
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dipole_y,
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dipole_z,
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current_torque_duration
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) = struct.unpack(fmt_str, hk_data)
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pw.dlog(f"Dipole X: {dipole_x}")
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pw.dlog(f"Dipole Y: {dipole_y}")
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pw.dlog(f"Dipole Z: {dipole_z}")
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pw.dlog(f"Current torque duration: {current_torque_duration}")
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pw.printer.print_validity_buffer(hk_data[fmt_len:], 2)
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def unpack_eng_hk(hk_data: bytes) -> List:
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def unpack_eng_hk(hk_data: bytes) -> List:
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digital_voltage = struct.unpack("!H", hk_data[0:2])[0]
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digital_voltage = struct.unpack("!H", hk_data[0:2])[0]
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analog_voltage = struct.unpack("!H", hk_data[2:4])[0]
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analog_voltage = struct.unpack("!H", hk_data[2:4])[0]
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