109 lines
3.9 KiB
Python
109 lines
3.9 KiB
Python
# -*- coding: UTF-8 -*-
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#/**
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# * Software Name : pycrate
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# * Version : 0.4
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# *
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# * Copyright 2018. Benoit Michau. ANSSI. P1sec.
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# *
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# * This library is free software; you can redistribute it and/or
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# * modify it under the terms of the GNU Lesser General Public
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# * License as published by the Free Software Foundation; either
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# * version 2.1 of the License, or (at your option) any later version.
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# *
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# * This library is distributed in the hope that it will be useful,
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# * but WITHOUT ANY WARRANTY; without even the implied warranty of
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# * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# * Lesser General Public License for more details.
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# *
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# * You should have received a copy of the GNU Lesser General Public
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# * License along with this library; if not, write to the Free Software
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# * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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# * MA 02110-1301 USA
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# *
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# *--------------------------------------------------------
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# * File Name : pycrate_csn1dir/ec_system_information_type_3.py
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# * Created : 2018-11-21
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# * Authors : Benoit Michau
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# *--------------------------------------------------------
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#*/
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# specification: TS 44.018 - d80
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# section: 9.1.43r EC System information type 3
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# top-level object: EC System Information Type 3
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# code automatically generated by pycrate_csn1
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# change object type with type=CSN1T_BSTR (default type is CSN1T_UINT) in init
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# add dict for value interpretation with dic={...} in CSN1Bit init
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# add dict for key interpretation with kdic={...} in CSN1Alt init
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from pycrate_csn1.csnobj import *
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spare_padding = CSN1Val(name='spare_padding', val='L', num=-1)
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Spare_padding = spare_padding
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Spare_Padding = spare_padding
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ec_neighbour_cell_reselection_parameters_struct = CSN1List(name='ec_neighbour_cell_reselection_parameters_struct', list=[
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CSN1Bit(name='nb_ncell', bit=5),
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CSN1List(num=([0], lambda x: x + 1), list=[
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Alt(alt={
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'0': ('', [
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CSN1Bit(name='bsic', bit=6)]),
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'1': ('', [
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CSN1Bit(name='bsic', bit=9)])})])}),
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CSN1Bit(name='cell_type'),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Bit(name='cell_bar_access'),
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CSN1Bit(name='same_ra_as_serving_cell')])}),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Bit(name='ec_rxlev_access_min', bit=6),
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CSN1Bit(name='ms_txpwr_max_cch', bit=5)])}),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Bit(name='cell_reselect_offset', bit=6)])})])})])])
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ec_cell_reselection_parameters_struct = CSN1List(name='ec_cell_reselection_parameters_struct', list=[
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CSN1Bit(name='cell_reselect_hysteresis', bit=3),
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CSN1Bit(name='cell_reselect_offset', bit=6),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Bit(name='c1_delta_min', bit=2),
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CSN1Bit(name='c1_delta_max', bit=3)])})])
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ec_neighbour_cell_description_struct = CSN1List(name='ec_neighbour_cell_description_struct', list=[
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CSN1Bit(name='numberofoctets', bit=5),
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CSN1Bit(name='neighbour_frequency_list_information', bit=([0], lambda x: 8 * (x + 1)))])
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ec_system_information_type_3 = CSN1List(name='ec_system_information_type_3', list=[
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CSN1Bit(name='message_type', bit=3),
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CSN1Bit(name='ec_si_3_index', bit=2),
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CSN1Bit(name='ec_si_3_count', bit=2),
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CSN1Bit(name='ec_si_change_mark', bit=5),
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CSN1Bit(name='ec_si_4_indicator'),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Ref(name='ec_cell_reselection_parameters', obj=ec_cell_reselection_parameters_struct)])}),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Ref(name='ec_neighbour_cell_description', obj=ec_neighbour_cell_description_struct)])}),
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CSN1Alt(alt={
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'0': ('', []),
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'1': ('', [
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CSN1Ref(name='ec_neighbour_cell_reselection_parameters', obj=ec_neighbour_cell_reselection_parameters_struct)])}),
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CSN1Ref(obj=spare_padding)])
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