Found via `codespell -S tests -L ist,adn,ciph,ue,ot,readd,te,oce,tye` Change-Id: I00a72e4f479dcef88f7d1058ce53edd0129d336a
414 lines
14 KiB
Python
414 lines
14 KiB
Python
# -*- coding: utf-8 -*-
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""" pySim: various utilities only used by legacy tools (pySim-{prog,read})
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"""
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# Copyright (C) 2009-2010 Sylvain Munaut <tnt@246tNt.com>
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# Copyright (C) 2021 Harald Welte <laforge@osmocom.org>
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program 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
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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from typing import Optional, Tuple
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from pySim.utils import Hexstr, rpad, enc_plmn, h2i, i2s, s2h
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from pySim.utils import dec_xplmn_w_act, dec_xplmn, dec_mcc_from_plmn, dec_mnc_from_plmn
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from osmocom.utils import swap_nibbles, h2b, b2h
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def hexstr_to_Nbytearr(s, nbytes):
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return [s[i:i+(nbytes*2)] for i in range(0, len(s), (nbytes*2))]
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def format_xplmn_w_act(hexstr):
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s = ""
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for rec_data in hexstr_to_Nbytearr(hexstr, 5):
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rec_info = dec_xplmn_w_act(rec_data)
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if rec_info['mcc'] == "" and rec_info['mnc'] == "":
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rec_str = "unused"
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else:
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rec_str = "MCC: %s MNC: %s AcT: %s" % (
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rec_info['mcc'], rec_info['mnc'], ", ".join(rec_info['act']))
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s += "\t%s # %s\n" % (rec_data, rec_str)
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return s
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def format_xplmn(hexstr: Hexstr) -> str:
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s = ""
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for rec_data in hexstr_to_Nbytearr(hexstr, 3):
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rec_info = dec_xplmn(rec_data)
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if not rec_info['mcc'] and not rec_info['mnc']:
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rec_str = "unused"
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else:
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rec_str = "MCC: %s MNC: %s" % (rec_info['mcc'], rec_info['mnc'])
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s += "\t%s # %s\n" % (rec_data, rec_str)
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return s
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def format_ePDGSelection(hexstr):
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ePDGSelection_info_tag_chars = 2
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ePDGSelection_info_tag_str = hexstr[:2]
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s = ""
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# Minimum length
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len_chars = 2
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# TODO: Need to determine length properly - definite length support only
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# Inconsistency in spec: 3GPP TS 31.102 version 15.2.0 Release 15, 4.2.104
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# As per spec, length is 5n, n - number of PLMNs
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# But, each PLMN entry is made of PLMN (3 Bytes) + ePDG Priority (2 Bytes) + ePDG FQDN format (1 Byte)
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# Totalling to 6 Bytes, maybe length should be 6n
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len_str = hexstr[ePDGSelection_info_tag_chars:ePDGSelection_info_tag_chars+len_chars]
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# Not programmed scenario
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if int(len_str, 16) == 255 or int(ePDGSelection_info_tag_str, 16) == 255:
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len_chars = 0
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ePDGSelection_info_tag_chars = 0
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if len_str[0] == '8':
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# The bits 7 to 1 denotes the number of length octets if length > 127
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if int(len_str[1]) > 0:
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# Update number of length octets
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len_chars = len_chars * int(len_str[1])
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len_str = hexstr[ePDGSelection_info_tag_chars:len_chars]
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content_str = hexstr[ePDGSelection_info_tag_chars+len_chars:]
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# Right pad to prevent index out of range - multiple of 6 bytes
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content_str = rpad(content_str, len(content_str) +
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(12 - (len(content_str) % 12)))
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for rec_data in hexstr_to_Nbytearr(content_str, 6):
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rec_info = dec_ePDGSelection(rec_data)
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if rec_info['mcc'] == 0xFFF and rec_info['mnc'] == 0xFFF:
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rec_str = "unused"
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else:
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rec_str = "MCC: %03d MNC: %03d ePDG Priority: %s ePDG FQDN format: %s" % \
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(rec_info['mcc'], rec_info['mnc'],
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rec_info['epdg_priority'], rec_info['epdg_fqdn_format'])
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s += "\t%s # %s\n" % (rec_data, rec_str)
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return s
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def enc_st(st, service, state=1):
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"""
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Encodes the EF S/U/IST/EST and returns the updated Service Table
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Parameters:
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st - Current value of SIM/USIM/ISIM Service Table
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service - Service Number to encode as activated/de-activated
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state - 1 mean activate, 0 means de-activate
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Returns:
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s - Modified value of SIM/USIM/ISIM Service Table
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Default values:
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- state: 1 - Sets the particular Service bit to 1
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"""
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st_bytes = [st[i:i+2] for i in range(0, len(st), 2)]
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s = ""
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# Check whether the requested service is present in each byte
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for i in range(0, len(st_bytes)):
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# Byte i contains info about Services num (8i+1) to num (8i+8)
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if service in range((8*i) + 1, (8*i) + 9):
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byte = int(st_bytes[i], 16)
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# Services in each byte are in order MSB to LSB
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# MSB - Service (8i+8)
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# LSB - Service (8i+1)
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mod_byte = 0x00
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# Copy bit by bit contents of byte to mod_byte with modified bit
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# for requested service
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for j in range(1, 9):
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mod_byte = mod_byte >> 1
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if service == (8*i) + j:
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mod_byte = state == 1 and mod_byte | 0x80 or mod_byte & 0x7f
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else:
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mod_byte = byte & 0x01 == 0x01 and mod_byte | 0x80 or mod_byte & 0x7f
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byte = byte >> 1
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s += ('%02x' % (mod_byte))
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else:
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s += st_bytes[i]
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return s
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def dec_st(st, table="sim") -> str:
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"""
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Parses the EF S/U/IST and prints the list of available services in EF S/U/IST
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"""
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if table == "isim":
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from pySim.ts_31_103 import EF_IST_map
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lookup_map = EF_IST_map
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elif table == "usim":
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from pySim.ts_31_102 import EF_UST_map
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lookup_map = EF_UST_map
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else:
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from pySim.ts_51_011 import EF_SST_map
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lookup_map = EF_SST_map
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st_bytes = [st[i:i+2] for i in range(0, len(st), 2)]
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avail_st = ""
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# Get each byte and check for available services
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for i in range(0, len(st_bytes)):
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# Byte i contains info about Services num (8i+1) to num (8i+8)
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byte = int(st_bytes[i], 16)
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# Services in each byte are in order MSB to LSB
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# MSB - Service (8i+8)
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# LSB - Service (8i+1)
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for j in range(1, 9):
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if byte & 0x01 == 0x01 and ((8*i) + j in lookup_map):
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# Byte X contains info about Services num (8X-7) to num (8X)
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# bit = 1: service available
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# bit = 0: service not available
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avail_st += '\tService %d - %s\n' % (
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(8*i) + j, lookup_map[(8*i) + j])
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byte = byte >> 1
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return avail_st
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def enc_ePDGSelection(hexstr, mcc, mnc, epdg_priority='0001', epdg_fqdn_format='00'):
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"""
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Encode ePDGSelection so it can be stored at EF.ePDGSelection or EF.ePDGSelectionEm.
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See 3GPP TS 31.102 version 15.2.0 Release 15, section 4.2.104 and 4.2.106.
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Default values:
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- epdg_priority: '0001' - 1st Priority
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- epdg_fqdn_format: '00' - Operator Identifier FQDN
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"""
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plmn1 = enc_plmn(mcc, mnc) + epdg_priority + epdg_fqdn_format
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# TODO: Handle encoding of Length field for length more than 127 Bytes
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content = '80' + ('%02x' % (len(plmn1)//2)) + plmn1
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content = rpad(content, len(hexstr))
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return content
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def dec_ePDGSelection(sixhexbytes):
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"""
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Decode ePDGSelection to get EF.ePDGSelection or EF.ePDGSelectionEm.
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See 3GPP TS 31.102 version 15.2.0 Release 15, section 4.2.104 and 4.2.106.
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"""
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res = {'mcc': 0, 'mnc': 0, 'epdg_priority': 0, 'epdg_fqdn_format': ''}
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plmn_chars = 6
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epdg_priority_chars = 4
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epdg_fqdn_format_chars = 2
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# first three bytes (six ascii hex chars)
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plmn_str = sixhexbytes[:plmn_chars]
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# two bytes after first three bytes
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epdg_priority_str = sixhexbytes[plmn_chars:plmn_chars +
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epdg_priority_chars]
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# one byte after first five bytes
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epdg_fqdn_format_str = sixhexbytes[plmn_chars +
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epdg_priority_chars:plmn_chars + epdg_priority_chars + epdg_fqdn_format_chars]
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res['mcc'] = dec_mcc_from_plmn(plmn_str)
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res['mnc'] = dec_mnc_from_plmn(plmn_str)
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res['epdg_priority'] = epdg_priority_str
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res['epdg_fqdn_format'] = epdg_fqdn_format_str == '00' and 'Operator Identifier FQDN' or 'Location based FQDN'
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return res
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def first_TLV_parser(bytelist):
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'''
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first_TLV_parser([0xAA, 0x02, 0xAB, 0xCD, 0xFF, 0x00]) -> (170, 2, [171, 205])
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parses first TLV format record in a list of bytelist
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returns a 3-Tuple: Tag, Length, Value
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Value is a list of bytes
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parsing of length is ETSI'style 101.220
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'''
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Tag = bytelist[0]
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if bytelist[1] == 0xFF:
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Len = bytelist[2]*256 + bytelist[3]
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Val = bytelist[4:4+Len]
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else:
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Len = bytelist[1]
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Val = bytelist[2:2+Len]
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return (Tag, Len, Val)
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def TLV_parser(bytelist):
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'''
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TLV_parser([0xAA, ..., 0xFF]) -> [(T, L, [V]), (T, L, [V]), ...]
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loops on the input list of bytes with the "first_TLV_parser()" function
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returns a list of 3-Tuples
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'''
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ret = []
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while len(bytelist) > 0:
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T, L, V = first_TLV_parser(bytelist)
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if T == 0xFF:
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# padding bytes
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break
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ret.append((T, L, V))
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# need to manage length of L
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if L > 0xFE:
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bytelist = bytelist[L+4:]
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else:
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bytelist = bytelist[L+2:]
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return ret
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def dec_addr_tlv(hexstr):
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"""
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Decode hex string to get EF.P-CSCF Address or EF.ePDGId or EF.ePDGIdEm.
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See 3GPP TS 31.102 version 13.4.0 Release 13, section 4.2.8, 4.2.102 and 4.2.104.
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"""
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# Convert from hex str to int bytes list
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addr_tlv_bytes = h2i(hexstr)
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# Get list of tuples containing parsed TLVs
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tlvs = TLV_parser(addr_tlv_bytes)
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for tlv in tlvs:
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# tlv = (T, L, [V])
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# T = Tag
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# L = Length
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# [V] = List of value
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# Invalid Tag value scenario
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if tlv[0] != 0x80:
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continue
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# Empty field - Zero length
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if tlv[1] == 0:
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continue
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# Uninitialized field
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if all([v == 0xff for v in tlv[2]]):
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continue
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# First byte in the value has the address type
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addr_type = tlv[2][0]
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# TODO: Support parsing of IPv6
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# Address Type: 0x00 (FQDN), 0x01 (IPv4), 0x02 (IPv6), other (Reserved)
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if addr_type == 0x00: # FQDN
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# Skip address tye byte i.e. first byte in value list
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content = tlv[2][1:]
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return (i2s(content), '00')
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elif addr_type == 0x01: # IPv4
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# Skip address tye byte i.e. first byte in value list
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# Skip the unused byte in Octet 4 after address type byte as per 3GPP TS 31.102
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ipv4 = tlv[2][2:]
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content = '.'.join(str(x) for x in ipv4)
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return (content, '01')
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else:
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raise ValueError("Invalid address type")
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return (None, None)
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def enc_addr_tlv(addr, addr_type='00'):
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"""
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Encode address TLV object used in EF.P-CSCF Address, EF.ePDGId and EF.ePDGIdEm.
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See 3GPP TS 31.102 version 13.4.0 Release 13, section 4.2.8, 4.2.102 and 4.2.104.
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Default values:
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- addr_type: 00 - FQDN format of Address
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"""
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s = ""
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# TODO: Encoding of IPv6 address
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if addr_type == '00': # FQDN
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hex_str = s2h(addr)
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s += '80' + ('%02x' % ((len(hex_str)//2)+1)) + '00' + hex_str
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elif addr_type == '01': # IPv4
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ipv4_list = addr.split('.')
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ipv4_str = ""
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for i in ipv4_list:
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ipv4_str += ('%02x' % (int(i)))
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# Unused bytes shall be set to 'ff'. i.e 4th Octet after Address Type is not used
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# IPv4 Address is in octet 5 to octet 8 of the TLV data object
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s += '80' + ('%02x' % ((len(ipv4_str)//2)+2)) + '01' + 'ff' + ipv4_str
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return s
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def dec_msisdn(ef_msisdn: Hexstr) -> Optional[Tuple[int, int, Optional[str]]]:
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"""
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Decode MSISDN from EF.MSISDN or EF.ADN (same structure).
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See 3GPP TS 31.102, section 4.2.26 and 4.4.2.3.
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"""
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# Convert from str to (kind of) 'bytes'
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ef_msisdn = h2b(ef_msisdn)
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# Make sure mandatory fields are present
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if len(ef_msisdn) < 14:
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raise ValueError("EF.MSISDN is too short")
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# Skip optional Alpha Identifier
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xlen = len(ef_msisdn) - 14
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msisdn_lhv = ef_msisdn[xlen:]
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# Parse the length (in bytes) of the BCD encoded number
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bcd_len = msisdn_lhv[0]
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# BCD length = length of dial num (max. 10 bytes) + 1 byte ToN and NPI
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if bcd_len == 0xff:
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return None
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elif bcd_len > 11 or bcd_len < 1:
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raise ValueError(
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"Length of MSISDN (%d bytes) is out of range" % bcd_len)
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# Parse ToN / NPI
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ton = (msisdn_lhv[1] >> 4) & 0x07
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npi = msisdn_lhv[1] & 0x0f
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bcd_len -= 1
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# No MSISDN?
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if not bcd_len:
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return (npi, ton, None)
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msisdn = swap_nibbles(b2h(msisdn_lhv[2:][:bcd_len])).rstrip('f')
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# International number 10.5.118/3GPP TS 24.008
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if ton == 0x01:
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msisdn = '+' + msisdn
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return (npi, ton, msisdn)
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def enc_msisdn(msisdn: str, npi: int = 0x01, ton: int = 0x03) -> Hexstr:
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"""
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Encode MSISDN as LHV so it can be stored to EF.MSISDN.
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See 3GPP TS 31.102, section 4.2.26 and 4.4.2.3. (The result
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will not contain the optional Alpha Identifier at the beginning.)
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Default NPI / ToN values:
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- NPI: ISDN / telephony numbering plan (E.164 / E.163),
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- ToN: network specific or international number (if starts with '+').
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"""
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# If no MSISDN is supplied then encode the file contents as all "ff"
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if msisdn in ["", "+"]:
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return "ff" * 14
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# Leading '+' indicates International Number
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if msisdn[0] == '+':
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msisdn = msisdn[1:]
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ton = 0x01
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# An MSISDN must not exceed 20 digits
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if len(msisdn) > 20:
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raise ValueError("msisdn must not be longer than 20 digits")
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# Append 'f' padding if number of digits is odd
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if len(msisdn) % 2 > 0:
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msisdn += 'f'
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# BCD length also includes NPI/ToN header
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bcd_len = len(msisdn) // 2 + 1
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npi_ton = (npi & 0x0f) | ((ton & 0x07) << 4) | 0x80
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bcd = rpad(swap_nibbles(msisdn), 10 * 2) # pad to 10 octets
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return ('%02x' % bcd_len) + ('%02x' % npi_ton) + bcd + ("ff" * 2)
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