% Regression tests for the XCP_CAN
~ scanner

+ Basic operations

= Imports

from test.testsocket import TestSocket, cleanup_testsockets

+ Tests XCPonCAN Scanner

=  modules

load_contrib("automotive.xcp.xcp", globals_dict=globals())
load_contrib("automotive.xcp.scanner", globals_dict=globals())


= xcp can scanner broadcast ID-Range

id_range = range(50, 53)
slave_id_1 = 10
response_id_1 = 11
slave_id_2 = 20
response_id_2 = 21

slave_1_response = XCPOnCAN(identifier=response_id_1) / CTOResponse(packet_code=0xFF) / TransportLayerCmdGetSlaveIdResponse(can_identifier=slave_id_1)
slave_2_response = XCPOnCAN(identifier=response_id_2) / CTOResponse(packet_code=0xFF) / TransportLayerCmdGetSlaveIdResponse(can_identifier=slave_id_2)

random_xcp_response_1 = XCPOnCAN(identifier=30) / CTOResponse(packet_code=0xFF) / GenericResponse(b"\x00\x00")
random_xcp_response_2 = XCPOnCAN(identifier=40) / CTOResponse(packet_code=0xFF) / GenericResponse(b"\x00\x00")

sock1 = TestSocket(XCPOnCAN)
sock2 = TestSocket(XCPOnCAN)
sock1.pair(sock2)

def ecu():
    for i in range(50, 53):
        sock1.sniff(count=1, store=False, timeout=2)
        if i == 50:
            sock1.send(CAN(identifier=0x90, data=b'\x01\x02\x03'))
            sock1.send(CAN(identifier=0x90, data=b'\x05\x02\x03'))
            sock1.send(CAN(identifier=0x90, data=b'\xff\x05\x03'))
        if i == 51:
            sock1.send(random_xcp_response_1)
            sock1.send(random_xcp_response_2)
        if i == 52:
            sock1.send(slave_1_response)
            sock1.send(slave_2_response)


thread = threading.Thread(target=ecu)
thread.start()

scanner = XCPOnCANScanner(sock2, id_range=id_range, sniff_time=0.5)
result = scanner.scan_with_get_slave_id()
thread.join(timeout=3)
sock1.close()
sock2.close()
assert len(result) == 2
assert result[0].request_id == slave_id_1
assert result[0].response_id == response_id_1
assert result[1].request_id == slave_id_2
assert result[1].response_id == response_id_2


= xcp can scanner connect ID-range
id_range = range(50, 53)
slave_id = 52
response_id = 11

connect_response = XCPOnCAN(identifier=response_id) / CTOResponse(packet_code=0xFF) / ConnectPositiveResponse()

random_xcp_response_1 = XCPOnCAN(identifier=30) / CTOResponse(packet_code=0xFF) / GenericResponse(b"\x00\x00")
random_xcp_response_2 = XCPOnCAN(identifier=40) / CTOResponse(packet_code=0xFF) / GenericResponse(b"\x10")

sock1 = TestSocket(XCPOnCAN)
sock2 = TestSocket(XCPOnCAN)
sock1.pair(sock2)


def ecu():
    for i in range(50, 53):
        sock1.sniff(count=1, store=False, timeout=2)
        if i == 50:
            sock1.send(CAN(identifier=0x90, data=b'\x01\x02\x03'))
            sock1.send(CAN(identifier=0x90, data=b'\xff\x05\x03'))
        if i == 51:
            sock1.send(CAN(identifier=0x90, data=b'\x05\x02\x03'))
            sock1.send(random_xcp_response_1)
            sock1.send(random_xcp_response_2)
        if i == slave_id:
            sock1.send(CAN(identifier=0x90, data=b'\xff\x05\x03'))
            sock1.send(connect_response)


thread = threading.Thread(target=ecu)
thread.start()

scanner = XCPOnCANScanner(sock2, id_range=id_range, sniff_time=0.5)
result = scanner.scan_with_connect()
thread.join(timeout=3)
sock1.close()
sock2.close()

assert len(result) == 1
assert result[0].request_id == slave_id
assert result[0].response_id == response_id


+ Cleanup

= Delete TestSockets

cleanup_testsockets()
