pycrate/pycrate_csn1dir/dtm_handover_ps_radio_resou...

236 lines
7.8 KiB
Python

# -*- coding: UTF-8 -*-
#/**
# * Software Name : pycrate
# * Version : 0.4
# *
# * Copyright 2018. Benoit Michau. ANSSI. P1sec.
# *
# * This library is free software; you can redistribute it and/or
# * modify it under the terms of the GNU Lesser General Public
# * License as published by the Free Software Foundation; either
# * version 2.1 of the License, or (at your option) any later version.
# *
# * This library is distributed in the hope that it will be useful,
# * but WITHOUT ANY WARRANTY; without even the implied warranty of
# * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
# * Lesser General Public License for more details.
# *
# * You should have received a copy of the GNU Lesser General Public
# * License along with this library; if not, write to the Free Software
# * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
# * MA 02110-1301 USA
# *
# *--------------------------------------------------------
# * File Name : pycrate_csn1dir/dtm_handover_ps_radio_resources_ie.py
# * Created : 2018-11-21
# * Authors : Benoit Michau
# *--------------------------------------------------------
#*/
# specification: TS 44.060 - d60
# section: 12.46 DTM Handover PS Radio Resources
# top-level object: DTM Handover PS Radio Resources IE
# external references
from pycrate_csn1dir.padding_bits import padding_bits
from pycrate_csn1dir.gprs_cell_options_ie import gprs_cell_options_ie
from pycrate_csn1dir.egprs_window_size_ie import egprs_window_size_ie
from pycrate_csn1dir.cell_identification_ie import cell_identification_ie
from pycrate_csn1dir.egprs_modulation_and_coding_scheme_ie import egprs_modulation_and_coding_scheme_ie
from pycrate_csn1dir.gprs_power_control_parameters_ie import gprs_power_control_parameters_ie
# code automatically generated by pycrate_csn1
# change object type with type=CSN1T_BSTR (default type is CSN1T_UINT) in init
# add dict for value interpretation with dic={...} in CSN1Bit init
# add dict for key interpretation with kdic={...} in CSN1Alt init
from pycrate_csn1.csnobj import *
downlink_tbf_assignment_struct = CSN1List(name='downlink_tbf_assignment_struct', list=[
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='pfi', bit=7)])}),
CSN1Bit(name='rlc_mode'),
CSN1Bit(name='tfi_assignment', bit=5),
CSN1Bit(name='control_ack'),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='egprs_window_size', obj=egprs_window_size_ie)])})])
downlink_assignment_struct = CSN1List(name='downlink_assignment_struct', list=[
CSN1Bit(name='timeslot_allocation', bit=8),
CSN1Ref(name='downlink_tbf_assignment', obj=downlink_tbf_assignment_struct)])
timeslot_description_struct = CSN1Alt(name='timeslot_description_struct', alt={
'0': ('', [
CSN1Bit(name='ms_timeslot_allocation', bit=8)]),
'1': ('', [
CSN1Bit(name='alpha', bit=4),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn0', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn1', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn2', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn3', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn4', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn5', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn6', bit=5)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='gamma_tn7', bit=5)])})])})
uplink_tbf_assignment_struct = CSN1List(name='uplink_tbf_assignment_struct', list=[
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='pfi', bit=7)])}),
CSN1Bit(name='rlc_mode'),
CSN1Bit(name='tfi_assignment', bit=5),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='channel_coding_command', bit=2)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='egprs_channel_coding_command', obj=egprs_modulation_and_coding_scheme_ie)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='egprs_window_size', obj=egprs_window_size_ie)])}),
CSN1Bit(name='usf_granularity'),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='tbf_timeslot_allocation', bit=('# unprocessed: (N)', lambda: 0))])}),
CSN1Alt(alt={
'0': ('', [
CSN1Bit(name='usf_allocation', bit=3)]),
'1': ('', [
CSN1Bit(name='usf_allocation', bit=3),
CSN1Alt(num=('# unprocessed: (M-1)', lambda: 0), alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='usf_allocation', bit=3)])})])})])
gprs_mode_struct = CSN1List(name='gprs_mode_struct', list=[
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='channel_coding_command', bit=2)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='global_timeslot_description', obj=timeslot_description_struct),
CSN1List(num=-1, list=[
CSN1Val(name='', val='1'),
CSN1Ref(name='uplink_assignment', obj=uplink_tbf_assignment_struct)]),
CSN1Val(name='', val='0')])}),
CSN1List(num=-1, list=[
CSN1Val(name='', val='1'),
CSN1Ref(name='downlink_assignment', obj=downlink_assignment_struct)]),
CSN1Val(name='', val='0')])
egprs_mode_struct = CSN1List(name='egprs_mode_struct', list=[
CSN1List(list=[
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='egprs_window_size', obj=egprs_window_size_ie)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='egprs_channel_coding_command', obj=egprs_modulation_and_coding_scheme_ie)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='bep_period2', bit=4)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='global_timeslot_description', obj=timeslot_description_struct),
CSN1List(num=-1, list=[
CSN1Val(name='', val='1'),
CSN1Ref(name='uplink_assignment', obj=uplink_tbf_assignment_struct)]),
CSN1Val(name='', val='0')])})]),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Ref(name='egprs_window_size', obj=egprs_window_size_ie)])}),
CSN1Bit(name='link_quality_measurement_mode', bit=2),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='bep_period2', bit=4)])})])}),
CSN1List(num=-1, list=[
CSN1Val(name='', val='1'),
CSN1Ref(name='downlink_assignment', obj=downlink_assignment_struct)]),
CSN1Val(name='', val='0')])})])
dtm_handover_ps_radio_resources_ie = CSN1List(name='dtm_handover_ps_radio_resources_ie', list=[
CSN1Ref(name='cell_identification', obj=cell_identification_ie),
CSN1Bit(name='max_lapdm', bit=3),
CSN1Bit(name='gprs_ms_txpwr_max_cch', bit=5),
CSN1Ref(name='gprs_cell_options', obj=gprs_cell_options_ie),
CSN1Ref(name='gprs_power_control_parameters', obj=gprs_power_control_parameters_ie),
CSN1Bit(name='extended_dynamic_allocation'),
CSN1Bit(name='rlc_reset'),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='p0', bit=4),
CSN1Bit(name='pr_mode')])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='uplink_control_timeslot', bit=3)])}),
CSN1Alt(alt={
'0': ('', [
CSN1Ref(name='gprs_mode', obj=gprs_mode_struct)]),
'1': ('', [
CSN1Ref(name='egprs_mode', obj=egprs_mode_struct)])}),
CSN1Alt(alt={
'0': ('', [
CSN1Bit(bit=-1)]),
'1': ('', [
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='primary_tsc_set'),
CSN1Bit(name='primary_tsc_value', bit=3)])}),
CSN1Alt(alt={
'0': ('', []),
'1': ('', [
CSN1Bit(name='secondary_dl_tsc_set'),
CSN1Bit(name='secondary_dl_tsc_value', bit=3)])}),
CSN1Ref(obj=padding_bits)]),
None: ('', [])})])