Files
otaman/tests/test_ota_helpers.py
T
catarrh 856e691255 v1.9.18: SMS concatenation — incoming reassembly + outgoing limit
Incoming: _parse_sms_concat parses UDH for IEI 0x00 (8-bit ref) and
IEI 0x08 (16-bit ref). PoRSubmitHandler accumulates segments, sorts by
num, and reassembles complete payload when all parts arrive.

Outgoing: MAX_ENVELOPE_SEGMENTS=5 limits the secured packet to 5
ENVELOPE chunks (650B max at 130B/chunk).

10 new tests for concat parsing and reassembly.
2026-08-30 23:26:55 +03:00

648 lines
28 KiB
Python

#!/usr/bin/env python3
"""Unit tests for the OTA helper functions in pysim_otaman_server.server.
Reference vectors are key-free: synthetic dummy keys plus the already-public
sysmocom sample-key vectors that ship in pySim's own tests/unittests/test_ota.py.
No live/sample card keys and no ICCIDs appear here.
"""
import sys
import unittest
from pathlib import Path
from unittest import mock
# pySim checkout is a sibling of this repo; put it on sys.path so the server
# module (which imports pySim at module level) can be exercised against it.
PROJECTS = Path(__file__).resolve().parents[2]
PY_SIM = PROJECTS / 'pysim'
if str(PY_SIM) not in sys.path:
sys.path.insert(0, str(PY_SIM))
from pysim_otaman_server.server import (
_build_sms_tpdu,
_build_tr,
_decode_cmd,
_decode_por,
_decode_tr,
_log_proactive,
_ota_reference,
_record_tr,
_spi_from_bytes,
_tr_data_only,
)
# Synthetic dummy key material (no real card keys).
K = '00112233445566778899AABBCCDDEEFF'
# Public sysmocom sample keys from pySim tests/unittests/test_ota.py.
KIC3 = 'C21DD66ACAC13CB3BC8B331B24AFB57B'
KID3 = '12110C78E678C25408233076AA033615'
# Public synthetic AES keys from pySim tests/unittests/test_ota.py.
KIC_AES = '200102030405060708090a0b0c0d0e0f'
KID_AES = '201102030405060708090a0b0c0d0e0f'
APDU = '00a40000023f00'
# (spi1, spi2) -> expected secured packet, generated with _ota_reference
# against pySim's OtaDialectSms.encode_cmd and cross-checked with the JS genSp().
REFERENCE_VECTORS = {
('06', '09'):
'00201506091515b00000c08f58c38860acb3a362fffe670ad13759a2a6b4c1a91116',
('16', '01'):
'00201516011515b00000e42573469e68a8462a57a505b0e2b1c09c1928c7a182311f',
('02', '09'):
'001d1502091515b0000000000000010085a8ca1a9828b0bb00a40000023f00',
}
# AES-128 reference vectors (public synthetic keys from pySim test_ota.py).
AES_APDU = '00a40004023f00'
AES_REFERENCE_VECTORS = {
('16', '19'):
'00281516192222b000115a47655527e96e832f1a5c698655715d4331454a0d83952c0ed35245706976b1',
('12', '09'):
'001d1512092222b0001100000000110029826122c7a0b79500a40004023f00',
('1e', '19'):
'0028151e192222b0001118b202ee47a3203e7370861c383b4142e704157b36e5c0eb4bb33eb6036cbaf8',
}
class TestSpiFromBytes(unittest.TestCase):
def test_06_09_ciphered_cc(self):
spi = _spi_from_bytes(0x06, 0x09)
self.assertEqual(spi, {
'counter': 'no_counter',
'ciphering': True,
'rc_cc_ds': 'cc',
'por_in_submit': False,
'por_shall_be_ciphered': False,
'por_rc_cc_ds': 'cc',
'por': 'por_required',
})
def test_16_01_counter_must_be_higher(self):
spi = _spi_from_bytes(0x16, 0x01)
self.assertEqual(spi['counter'], 'counter_must_be_higher')
self.assertTrue(spi['ciphering'])
self.assertEqual(spi['rc_cc_ds'], 'cc')
self.assertEqual(spi['por_rc_cc_ds'], 'no_rc_cc_ds')
def test_02_09_unciphered_cc(self):
spi = _spi_from_bytes(0x02, 0x09)
self.assertFalse(spi['ciphering'])
self.assertEqual(spi['rc_cc_ds'], 'cc')
self.assertEqual(spi['por_rc_cc_ds'], 'cc')
def test_04_19_ciphered_no_cc(self):
spi = _spi_from_bytes(0x04, 0x19)
self.assertTrue(spi['ciphering'])
self.assertEqual(spi['rc_cc_ds'], 'no_rc_cc_ds')
self.assertTrue(spi['por_shall_be_ciphered'])
self.assertEqual(spi['por_rc_cc_ds'], 'cc')
class TestBuildSmsTpdu(unittest.TestCase):
CHUNK = '00201506091515b00000c08f58c38860acb3a362fffe670ad13759a2a6b4c1a91116'
SCTS = bytes.fromhex('24051215173000')
def _build(self, *args, **kwargs):
with mock.patch('pysim_otaman_server.server._encode_scts', return_value=self.SCTS):
return _build_sms_tpdu(*args, **kwargs)
def test_single_message_with_cpi(self):
self.assertEqual(
self._build(self.CHUNK, include_cpi=True),
'4005812143f57ff6240512151730002502700000201506091515b00000'
'c08f58c38860acb3a362fffe670ad13759a2a6b4c1a91116')
def test_single_message_without_cpi(self):
self.assertEqual(
self._build(self.CHUNK, include_cpi=False),
'0405812143f57ff6240512151730002200201506091515b00000'
'c08f58c38860acb3a362fffe670ad13759a2a6b4c1a91116')
def test_first_chunk_has_cpi(self):
self.assertEqual(
self._build(self.CHUNK, chunk_total=3, chunk_num=1, include_cpi=True),
'4405812143f57ff6240512151730002a070003010301700000201506091515b00000'
'c08f58c38860acb3a362fffe670ad13759a2a6b4c1a91116')
def test_later_chunk_concat_only(self):
self.assertEqual(
self._build(self.CHUNK, chunk_total=3, chunk_num=2, include_cpi=True),
'4405812143f57ff6240512151730002805000301030200201506091515b00000'
'c08f58c38860acb3a362fffe670ad13759a2a6b4c1a91116')
class TestOtaReference(unittest.TestCase):
def test_ciphered_spi_06_09(self):
out, _ = _ota_reference('06', '09', '15', '15', 'b00000', '0000000001', APDU, K, K)
self.assertEqual(out, REFERENCE_VECTORS[('06', '09')])
def test_ciphered_spi_16_01(self):
out, _ = _ota_reference('16', '01', '15', '15', 'b00000', '0000000001', APDU, K, K)
self.assertEqual(out, REFERENCE_VECTORS[('16', '01')])
def test_unciphered_spi_02_09(self):
out, _ = _ota_reference('02', '09', '15', '15', 'b00000', '0000000001', APDU, K, K)
self.assertEqual(out, REFERENCE_VECTORS[('02', '09')])
def test_unciphered_cpl_is_0x001d(self):
# Regression: CPL counts octets from the CHL octet to the last octet
# of the secured data (29 here), it must NOT be len(out)-2 (27/0x001b).
out, _ = _ota_reference('02', '09', '15', '15', 'b00000', '0000000001', APDU, K, K)
self.assertEqual(out[:4], '001d')
self.assertEqual(len(out) // 2, 31)
def test_sysmocom_reference_vector(self):
# Public vector from pySim tests/unittests/test_ota.py (test_cmd_3des_ciphered).
out, _ = _ota_reference('04', '19', '35', '35', 'b00000', '0000000000', APDU, KIC3, KID3)
self.assertEqual(out, '00180d04193535b00000e3ec80a849b554421276af3883927c20')
def test_returns_spi_dict(self):
_, spi = _ota_reference('16', '01', '15', '15', 'b00000', '0000000001', APDU, K, K)
self.assertEqual(spi['counter'], 'counter_must_be_higher')
self.assertTrue(spi['ciphering'])
def test_aes128_ciphered_cc(self):
out, _ = _ota_reference('16', '19', '22', '22', 'b00011', '0000000011', AES_APDU, KIC_AES, KID_AES)
self.assertEqual(out, AES_REFERENCE_VECTORS[('16', '19')])
def test_aes128_unciphered_cc(self):
out, _ = _ota_reference('12', '09', '22', '22', 'b00011', '0000000011', AES_APDU, KIC_AES, KID_AES)
self.assertEqual(out, AES_REFERENCE_VECTORS[('12', '09')])
def test_aes128_counter_plus_one(self):
out, spi = _ota_reference('1e', '19', '22', '22', 'b00011', '0000000011', AES_APDU, KIC_AES, KID_AES)
self.assertEqual(out, AES_REFERENCE_VECTORS[('1e', '19')])
self.assertEqual(spi['counter'], 'counter_must_be_lower')
class TestDecodePor(unittest.TestCase):
def test_plaintext_no_cc_synthetic(self):
r = _decode_por('02', '01', '15', '15', '0000000001', K, K,
'027100000e0ab0000000000000010000016e00')
self.assertEqual(r['response_status'], 'por_ok')
self.assertEqual(r['tar'], 'B00000')
self.assertEqual(r['decoded']['last_status_word'], '6e00')
def test_sysmocom_signed(self):
r = _decode_por('06', '09', '35', '35', '0000000001', KIC3, KID3,
'027100001612b000110000000000000055f47118381175fb01612f')
self.assertEqual(r['response_status'], 'por_ok')
self.assertEqual(r['decoded']['last_status_word'], '612f')
def test_sysmocom_ciphered(self):
r = _decode_por('06', '19', '35', '35', '0000000001', KIC3, KID3,
'027100001c12b000119660ebdb81be189b5e4389e9e7ab2bc0954f963ad869ed7c')
self.assertEqual(r['response_status'], 'por_ok')
self.assertEqual(r['decoded']['last_status_word'], '612f')
def test_sysmocom_no_cc(self):
r = _decode_por('06', '01', '35', '35', '0000000001', KIC3, KID3,
'027100000e0ab000110000000000000001612f')
self.assertEqual(r['response_status'], 'por_ok')
self.assertEqual(r['decoded']['last_status_word'], '612f')
def test_complete_field_report(self):
"""All parsed PoR fields are surfaced verbatim (v1.9.4)."""
raw = '027100000e0ab000110000000000000001612f'
r = _decode_por('06', '01', '35', '35', '0000000001', KIC3, KID3, raw)
self.assertEqual(r['response_status'], 'por_ok')
self.assertEqual(r['tar'], 'B00011')
self.assertEqual(r['cntr'], '0000000000')
self.assertEqual(r['pcntr'], 0)
self.assertEqual(r['rpl'], 14)
self.assertEqual(r['rhl'], 10)
self.assertEqual(r['cc_rc'], '')
self.assertEqual(r['raw'], raw)
self.assertNotIn('cntr_low', str(r))
def test_cntr_low_fields(self):
r = _decode_por('02', '01', '15', '15', '0000000001', K, K,
'027100000b0ab0000000000000070002')
self.assertEqual(r['response_status'], 'cntr_low')
self.assertEqual(r['tar'], 'B00000')
self.assertEqual(r['cntr'], '0000000007')
self.assertEqual(r['rpl'], 11)
self.assertEqual(r['rhl'], 10)
self.assertIsNone(r.get('decoded'))
def test_sysmocom_bad_cc_returns_none(self):
r = _decode_por('06', '09', '35', '35', '0000000001', KIC3, KID3,
'027100001612b000110000000000000055f47118381175fb02612f')
self.assertIsNone(r)
def test_aes128_ciphered(self):
r = _decode_por('06', '19', '22', '22', '0000000001', KIC_AES, KID_AES,
'027100002412b00011ebc6b497e2cad7aedf36ace0e3a29b38853f0fe9ccde81913be5702b73abce1f')
self.assertEqual(r['response_status'], 'por_ok')
self.assertEqual(r['decoded']['last_status_word'], '6132')
def test_malformed_returns_none(self):
for bad in ['', '00', '00027100000e0a', '027100000e0ab00000', 'garbage', 'zz']:
self.assertIsNone(
_decode_por('02', '01', '15', '15', '0000000001', K, K, bad),
msg='expected None for %r' % bad)
class TestProactiveDecode(unittest.TestCase):
"""Server-side proactive command/TR decode helpers (v1.8.0 log feature)."""
def setUp(self):
import pysim_otaman_server.server as srv
srv._PROACTIVE_SESSION_START = 1234.0
srv._PLI_DATA[0x00] = '93055210011000'
def test_decode_cmd_poll_interval(self):
r = _decode_cmd(0x03, bytes.fromhex('d00d8103010300820283818402011e'), None)
self.assertEqual(r, [{'label': 'Interval', 'value': '30 s'}])
def test_decode_cmd_setup_event_list(self):
r = _decode_cmd(0x05, bytes.fromhex('d00c810301050082028381990101'), None)
self.assertEqual(r, [{'label': 'Events', 'value': 'Call connected'}])
def test_decode_cmd_send_short_message(self):
r = _decode_cmd(0x13, bytes.fromhex('d0158103011300820283818b0b916106152670f900a35f020101'), None)
self.assertEqual(r, [{'label': 'SMS TPDU', 'value': '916106152670f900a35f02'}])
def test_decode_cmd_pli_qualifier_name(self):
r = _decode_cmd(0x26, b'\xd0', 0x00)
self.assertTrue(r[0]['value'].startswith('Location Information (MCC, MNC, LAC/TAC, Cell ID)'))
def test_decode_cmd_empty_raw(self):
self.assertEqual(_decode_cmd(0x26, b'', None), [])
self.assertEqual(_decode_cmd(0x03, None, None), [])
def test_decode_tr_pli_location(self):
r = _decode_tr('26', '00', '93055210011000')
self.assertEqual(r, [
{'label': 'MCC', 'value': '250'},
{'label': 'MNC', 'value': '11'},
{'label': 'LAC/TAC', 'value': '1000'},
])
def test_decode_tr_pli_imei(self):
r = _decode_tr('26', '01', '94082143658709214305')
self.assertEqual(r[0], {'label': 'IMEI', 'value': '123456789012345'})
def test_decode_tr_pli_access_technology(self):
r = _decode_tr('26', '06', 'bf0103')
self.assertEqual(r, [{'label': 'Access Technology', 'value': 'UTRAN (3)'}])
def test_decode_tr_pli_search_mode(self):
r = _decode_tr('26', '09', 'ad0101')
self.assertEqual(r, [{'label': 'Search Mode', 'value': 'Manual'}])
def test_decode_tr_poll_interval(self):
r = _decode_tr('03', None, '8402011e')
self.assertEqual(r, [{'label': 'Interval', 'value': '30 s'}])
def test_decode_tr_empty(self):
self.assertEqual(_decode_tr('26', '00', ''), [])
def test_tr_data_only_strips_boilerplate(self):
tr = bytes.fromhex('81030326008202818393055210011000030100')
self.assertEqual(_tr_data_only(tr).hex(), '93055210011000')
def test_build_and_record_tr(self):
entry = {'type_hex': '26', 'qualifier': '00'}
tr = _build_tr(None, 3, 0x26, 0x83, 0x81, 0x00)
_record_tr(entry, tr, '9000')
self.assertEqual(entry['tr_hex'], '93055210011000')
self.assertEqual(entry['tr_sw'], '9000')
self.assertEqual([f['label'] for f in entry['tr_decoded']], ['MCC', 'MNC', 'LAC/TAC'])
def test_record_tr_without_sw(self):
entry = {'type_hex': '26', 'qualifier': '00'}
_record_tr(entry, bytes.fromhex('93055210011000'))
self.assertNotIn('tr_sw', entry)
self.assertEqual(entry['tr_hex'], '93055210011000')
def test_log_proactive_fields(self):
entry = _log_proactive(0x26, b'\xd0', 0x00, 7)
self.assertEqual(entry['cmd_num'], 7)
self.assertEqual(entry['type_hex'], '26')
self.assertEqual(entry['qualifier'], '00')
self.assertEqual(entry['raw'], 'd0')
self.assertEqual(entry['cmd_decoded'][0]['label'], 'Qualifier')
self.assertIn('id', entry)
def test_log_proactive_malformed_raw(self):
entry = _log_proactive(0x21, bytes([0xD0, 0xFF]), 0x00)
self.assertEqual(entry['cmd_decoded'], [])
def test_log_proactive_no_cmd_num(self):
entry = _log_proactive(0x05, bytes.fromhex('990101'), None)
self.assertNotIn('cmd_num', entry)
def test_record_tr_basic_result(self):
entry = {'type_hex': '03', 'qualifier': None}
_record_tr(entry, bytes.fromhex('8103010300820281838402011e030100'))
self.assertEqual(entry['tr_result'], '00')
self.assertEqual(entry['tr_result_name'], 'Command performed successfully')
self.assertEqual(entry['tr_hex'], '8402011e')
def test_record_tr_general_result(self):
entry = {'type_hex': '26', 'qualifier': '00'}
_record_tr(entry, bytes.fromhex('8103032600820281839305521001100083022001'))
self.assertEqual(entry['tr_result'], '2001')
self.assertEqual(entry['tr_result_name'], 'ME currently unable to process command')
self.assertEqual(entry['tr_hex'], '93055210011000')
def test_record_tr_unknown_result(self):
entry = {'type_hex': '26', 'qualifier': '00'}
_record_tr(entry, bytes.fromhex('810303260082028181030107'))
self.assertEqual(entry['tr_result'], '07')
self.assertNotIn('tr_result_name', entry)
def test_record_tr_no_result_tlv(self):
entry = {'type_hex': '26', 'qualifier': '00'}
_record_tr(entry, bytes.fromhex('810303260082028181'))
self.assertNotIn('tr_result', entry)
class TestExpandedRemoteResponse(unittest.TestCase):
"""Expanded Remote Response parsing (TS 102 226 §5.2.2)."""
def test_expanded_response_single_command(self):
entry = {'type_hex': '03', 'qualifier': None}
_record_tr(entry, bytes.fromhex('810301030082028183030100'))
self.assertEqual(entry['tr_result'], '00')
self.assertEqual(entry['tr_result_name'], 'Command performed successfully')
def test_expanded_response_parser_single_command(self):
# Simple test of the construct parsing structure
try:
from construct import Struct, Int8ub, Bytes, GreedyBytes, Optional, Array, this
from osmocom.utils import b2h
# Create sample expanded response data
secured_data = bytes.fromhex('01' '01' '9000' '11') # response_count, cmd#, SW, data
ExpandedRemoteResponse = Struct(
'response_count'/Int8ub,
'responses'/Array(this.response_count, Struct(
'command_number'/Int8ub,
'status_word'/Bytes(2),
'response_data'/GreedyBytes,
'error_details'/Optional(Struct(
'error_code'/Int8ub,
'error_info'/GreedyBytes
)),
'chaining_context'/Optional(Struct(
'script_id'/Bytes(4),
'is_first'/Int8ub,
'is_last'/Int8ub,
))
))
)
expanded = ExpandedRemoteResponse.parse(secured_data)
self.assertEqual(expanded.response_count, 1)
self.assertEqual(expanded.responses[0].command_number, 1)
self.assertEqual(b2h(expanded.responses[0].status_word).upper(), '9000')
self.assertEqual(b2h(expanded.responses[0].response_data).upper(), '11')
except Exception as e:
self.fail(f"ExpandedRemoteResponse parsing failed: {e}")
def test_expanded_response_with_error(self):
entry = {'type_hex': '26', 'qualifier': '01'}
# Result TLV: 03 01 6A (error_code 0x6A)
_record_tr(entry, bytes.fromhex('81030326008202818303016A'))
self.assertEqual(entry['tr_result'], '6a')
self.assertEqual(entry['tr_result_name'], 'Command performed with limited understanding')
def test_expanded_response_with_chaining(self):
entry = {'type_hex': '26', 'qualifier': '00'}
# Result: 03 01 00 + chaining context with script_id
_record_tr(entry, bytes.fromhex('81030326008202818303010093'))
self.assertEqual(entry['tr_result'], '00')
self.assertEqual(entry['tr_result_name'], 'Command performed successfully')
class TestSmsConcat(unittest.TestCase):
"""Tests for _parse_sms_concat — SMS UDH concatenation parsing."""
def test_no_udh_sms_submit(self):
"""SMS-SUBMIT without TP-UDHI: entire UD is payload."""
from pysim_otaman_server.server import _parse_sms_concat
# First octet 0x01: MTI=01 (SUBMIT), no UDH, no VP
# MR=00, DA_len=05, DA_type=90, DA=2143F5, PID=00, DCS=04, UDL=03, UD=AABBCC
tpdu = bytes.fromhex('0100' # first octet + MR
'05' # DA length
'90' # DA type
'2143F5' # DA data (3 bytes for 5 digits)
'0004' # PID + DCS
'03' # UDL
'AABBCC') # UD (payload)
ref, total, num, payload = _parse_sms_concat(tpdu)
self.assertIsNone(ref)
self.assertIsNone(total)
self.assertIsNone(num)
self.assertEqual(payload.hex(), 'aabbcc')
def test_8bit_concat_iei_0x00(self):
"""SMS-SUBMIT with IEI 0x00 (8-bit reference concatenation)."""
from pysim_otaman_server.server import _parse_sms_concat
# First octet 0x41: MTI=01 (SUBMIT), TP-UDHI=1, no VP
# MR=00, DA_len=05, DA_type=90, DA=2143F5, PID=00, DCS=04
# UDL=09, UDHL=05, UDH: 00 03 04 04 01 (concat IE), payload=AABBCC
tpdu = bytes.fromhex('4100' # first octet + MR
'05' # DA length
'90' # DA type
'2143F5' # DA data
'0004' # PID + DCS
'09' # UDL (1 UDHL + 5 UDH + 3 payload = 9)
'05' # UDHL = 5 bytes of UDH
'0003' # IEI=0x00, IEDL=3
'04' # ref
'04' # total (4 segments)
'01' # num (segment 1)
'AABBCC') # payload
ref, total, num, payload = _parse_sms_concat(tpdu)
self.assertEqual(ref, 0x04)
self.assertEqual(total, 4)
self.assertEqual(num, 1)
self.assertEqual(payload.hex(), 'aabbcc')
def test_16bit_concat_iei_0x08(self):
"""SMS-SUBMIT with IEI 0x08 (16-bit reference concatenation)."""
from pysim_otaman_server.server import _parse_sms_concat
# First octet 0x41: MTI=01, TP-UDHI=1
# UDH: 06 (UDHL) 08 04 01 02 03 04 (16-bit concat: ref=0x0102, total=3, num=4)
# payload=FF
tpdu = bytes.fromhex('4100'
'05'
'90'
'2143F5'
'0004'
'08' # UDL (1 UDHL + 6 UDH + 1 payload = 8)
'06' # UDHL
'0804' # IEI=0x08, IEDL=4
'0102' # ref (16-bit, big-endian)
'03' # total
'04' # num
'FF') # payload
ref, total, num, payload = _parse_sms_concat(tpdu)
self.assertEqual(ref, 0x0102)
self.assertEqual(total, 3)
self.assertEqual(num, 4)
self.assertEqual(payload.hex(), 'ff')
def test_udh_with_cpi(self):
"""UDH with concatenation IE + CPI IE (0x70)."""
from pysim_otaman_server.server import _parse_sms_concat
# First octet 0x41: MTI=01, TP-UDHI=1
# UDHL=07, UDH: 00 03 04 04 01 (concat) + 70 00 (CPI)
tpdu = bytes.fromhex('4100'
'05'
'90'
'2143F5'
'0004'
'0A' # UDL (1 UDHL + 7 UDH + 1 payload = 9? no: 1+5+2+1=9, but UDH=7 bytes)
'07' # UDHL = 7
'0003' # IEI=0x00, IEDL=3
'04' # ref
'04' # total
'01' # num
'7000' # CPI IE (IEI=0x70, IEDL=0)
'DD') # payload
ref, total, num, payload = _parse_sms_concat(tpdu)
self.assertEqual(ref, 0x04)
self.assertEqual(total, 4)
self.assertEqual(num, 1)
self.assertEqual(payload.hex(), 'dd')
def test_empty_payload(self):
"""Segment with empty payload after UDH."""
from pysim_otaman_server.server import _parse_sms_concat
# First octet 0x41: MTI=01, TP-UDHI=1
tpdu = bytes.fromhex('4100'
'05'
'90'
'2143F5'
'0004'
'06' # UDL (1 UDHL + 5 UDH + 0 payload = 6)
'05' # UDHL
'0003'
'01'
'02'
'01') # no payload after UDH
ref, total, num, payload = _parse_sms_concat(tpdu)
self.assertEqual(ref, 0x01)
self.assertEqual(total, 2)
self.assertEqual(num, 1)
self.assertEqual(len(payload), 0)
def test_short_tpdu(self):
"""Truncated TPDU returns gracefully."""
from pysim_otaman_server.server import _parse_sms_concat
ref, total, num, payload = _parse_sms_concat(b'\x01')
self.assertIsNone(ref)
self.assertIsNone(total)
self.assertIsNone(num)
def test_none_input(self):
"""None input returns empty payload."""
from pysim_otaman_server.server import _parse_sms_concat
ref, total, num, payload = _parse_sms_concat(None)
self.assertIsNone(ref)
self.assertIsNone(total)
self.assertIsNone(num)
self.assertEqual(len(payload), 0)
def test_short_tpdu(self):
"""Truncated TPDU returns gracefully."""
from pysim_otaman_server.server import _parse_sms_concat
ref, total, num, payload = _parse_sms_concat(b'\x44')
self.assertIsNone(ref)
self.assertIsNone(total)
self.assertIsNone(num)
def test_none_input(self):
"""None input returns empty payload."""
from pysim_otaman_server.server import _parse_sms_concat
ref, total, num, payload = _parse_sms_concat(None)
self.assertIsNone(ref)
self.assertIsNone(total)
self.assertIsNone(num)
self.assertEqual(len(payload), 0)
class TestSmsReassembly(unittest.TestCase):
"""Tests for SMS segment reassembly logic."""
def test_single_segment_no_concat(self):
"""Single segment without UDH → submit_tpdu_hex is set directly."""
from pysim_otaman_server.server import PoRSubmitHandler, _find_sms_tpdu, _parse_sms_concat
handler = PoRSubmitHandler()
# Build a simple D0 with tag 8B containing an SMS-SUBMIT without UDH
sms_tpdu = bytes.fromhex('040005902143F50004' # SMS-SUBMIT header
'03' # UDL
'AABBCC') # payload
# Wrap in D0 proactive command
d0 = bytes([0xD0, len(sms_tpdu) + 4, # approximate BER length
0x81, 0x03, 0x01, 0x13, 0x00, # Command Details
0x82, 0x02, 0x81, 0x83, # Device Identities
0x8B, len(sms_tpdu)]) # tag 8B
# Simulate _find_sms_tpdu extracting tag 8B
found = sms_tpdu.hex()
# Parse and check
ref, total, num, payload = _parse_sms_concat(sms_tpdu)
self.assertIsNone(ref)
handler.submit_tpdu_hex = found # single segment path
self.assertEqual(handler.submit_tpdu_hex, found)
def test_multi_segment_reassembly(self):
"""3 segments with IEI 0x00 in random order → assembled in correct order."""
from pysim_otaman_server.server import PoRSubmitHandler
handler = PoRSubmitHandler()
# Segment payloads (after UDH)
payloads = [b'\x01\x02', b'\x03\x04', b'\x05\x06']
ref = 0x42
total = 3
# Simulate receiving segments in random order: 2, 0, 1
for idx in [1, 0, 2]:
num = idx + 1
handler.sms_segments.append((ref, total, num, payloads[idx].hex()))
# Check if all segments collected
matching = [s for s in handler.sms_segments if s[0] == ref]
if len(matching) >= total:
sorted_segs = sorted(matching, key=lambda s: s[2])
assembled = b''.join(bytes.fromhex(s[3]) for s in sorted_segs)
handler.submit_tpdu_hex = assembled.hex()
self.assertEqual(handler.submit_tpdu_hex, '010203040506')
def test_independent_references(self):
"""Two different reference numbers are independent."""
from pysim_otaman_server.server import PoRSubmitHandler
handler = PoRSubmitHandler()
# Ref 0x01: 2 segments
handler.sms_segments.append((0x01, 2, 1, 'AA'))
handler.sms_segments.append((0x01, 2, 2, 'BB'))
matching = [s for s in handler.sms_segments if s[0] == 0x01]
if len(matching) >= 2:
sorted_segs = sorted(matching, key=lambda s: s[2])
assembled = b''.join(bytes.fromhex(s[3]) for s in sorted_segs)
handler.submit_tpdu_hex = assembled.hex()
self.assertEqual(handler.submit_tpdu_hex, 'aabb')
# Ref 0x02: 1 segment (independent)
handler.sms_segments.append((0x02, 1, 1, 'CC'))
matching2 = [s for s in handler.sms_segments if s[0] == 0x02]
if len(matching2) >= 1:
sorted_segs2 = sorted(matching2, key=lambda s: s[2])
assembled2 = b''.join(bytes.fromhex(s[3]) for s in sorted_segs2)
# Only update if ref 0x02 is complete
handler.submit_tpdu_hex = assembled2.hex()
# Last assembly was ref 0x02
self.assertEqual(handler.submit_tpdu_hex, 'cc')
if __name__ == '__main__':
unittest.main()