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"""Test the MySmartBike BLE parsers with real message data."""
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import pytest
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from custom_components.mysmartbike_ble.parsers import (
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BikeDataParser,
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read16,
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read24,
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read32,
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read_unsigned_byte,
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)
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class TestReadFunctions:
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"""Test byte reading functions (big-endian)."""
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def test_read16_big_endian(self):
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"""Test 16-bit big-endian read."""
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# Big-endian: first byte is most significant
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data = bytes([0x12, 0x34])
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assert read16(data, 0) == 0x1234
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def test_read24_big_endian(self):
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"""Test 24-bit big-endian read."""
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data = bytes([0x12, 0x34, 0x56])
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assert read24(data, 0) == 0x123456
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def test_read32_big_endian(self):
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"""Test 32-bit big-endian read."""
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data = bytes([0x12, 0x34, 0x56, 0x78])
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assert read32(data, 0) == 0x12345678
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def test_read_unsigned_byte(self):
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"""Test unsigned byte read."""
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assert read_unsigned_byte(0xFF) == 255
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assert read_unsigned_byte(0x00) == 0
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assert read_unsigned_byte(0x7F) == 127
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class TestEbmParser:
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"""Test EBM message parsing with real data."""
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# Real EBM message from log: 246a245a230056af68000bef6f00002340
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# Expected: Odometer ~568.1 km, Range ~78.2 km
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EBM_MESSAGE = bytes.fromhex("246a245a230056af68000bef6f00002340")
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def test_ebm_message_recognition(self):
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"""Test that EBM message type is recognized."""
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parser = BikeDataParser()
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msg_type = parser.recognize_message_type(self.EBM_MESSAGE)
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assert msg_type == "ebm"
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def test_ebm_odometry_parsing(self):
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"""Test odometry value parsing from real EBM message."""
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parser = BikeDataParser()
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result = parser.parse_ebm_message(self.EBM_MESSAGE)
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assert result is not None
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# Odometry: 0x0056af68 = 5681000 / 10000 = 568.1 km
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assert abs(result["odometry"] - 568.1) < 0.1
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def test_ebm_autonomy_parsing(self):
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"""Test autonomy/range value parsing from real EBM message."""
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parser = BikeDataParser()
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result = parser.parse_ebm_message(self.EBM_MESSAGE)
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assert result is not None
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# Autonomy: 0x000bef6f = 782191 / 10000 = 78.2 km
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assert abs(result["autonomy"] - 78.2) < 0.1
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def test_ebm_light_status(self):
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"""Test light status parsing from real EBM message."""
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parser = BikeDataParser()
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result = parser.parse_ebm_message(self.EBM_MESSAGE)
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assert result is not None
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# Byte 13 = 0x00, so light is off
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assert result["is_light_on"] is False
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def test_ebm_state_update(self):
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"""Test that parser state is updated after parsing."""
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parser = BikeDataParser()
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parser.parse_ebm_message(self.EBM_MESSAGE)
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assert parser.state["ebm"] is not None
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assert "odometry" in parser.state["ebm"]
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assert "autonomy" in parser.state["ebm"]
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class TestMotorParser:
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"""Test motor message parsing with real data."""
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# Real motor message from log: 246d245a230117000000000000004f642340
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MOTOR_MESSAGE = bytes.fromhex("246d245a230117000000000000004f642340")
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def test_motor_message_recognition(self):
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"""Test that motor message type is recognized."""
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parser = BikeDataParser()
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msg_type = parser.recognize_message_type(self.MOTOR_MESSAGE)
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assert msg_type == "motor"
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def test_motor_parsing(self):
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"""Test motor value parsing from real message."""
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parser = BikeDataParser()
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result = parser.parse_motor_message(self.MOTOR_MESSAGE)
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assert result is not None
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# Assist level at byte 5 = 0x01
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assert result["assist_level"] == 1
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# Temperature at byte 6 = 0x17 = 23°C
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assert result["temperature_celsius"] == 23
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class TestBatteryParser:
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"""Test battery message parsing with real data."""
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# Real battery message from log: 2462245a230193541700000877071a27342340
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BATTERY_MESSAGE = bytes.fromhex("2462245a230193541700000877071a27342340")
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def test_battery_message_recognition(self):
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"""Test that battery message type is recognized."""
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parser = BikeDataParser()
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msg_type = parser.recognize_message_type(self.BATTERY_MESSAGE)
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assert msg_type == "battery"
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def test_battery_voltage(self):
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"""Test battery voltage parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# Voltage: 0x0193 = 403 / 10 = 40.3 V
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assert abs(result["voltage"] - 40.3) < 0.1
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def test_battery_soc(self):
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"""Test battery state of charge parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# SoC at byte 7 = 0x54 = 84%
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assert result["soc"] == 84
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def test_battery_temperature(self):
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"""Test battery temperature parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# Temperature at byte 8 = 0x17 = 23
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assert result["temperature"] == 23
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def test_battery_current(self):
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"""Test battery current parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# Current: 0x0000 = 0 / 10 = 0.0 A
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assert result["current"] == 0.0
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def test_battery_capacity(self):
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"""Test battery nominal capacity parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# Nominal capacity: 0x0877 = 2167 / 10 = 216.7 Wh
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assert abs(result["nominal_capacity"] - 216.7) < 0.1
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def test_battery_remaining(self):
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"""Test battery remaining energy parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# Remaining Wh: 0x071a = 1818 / 10 = 181.8 Wh
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assert abs(result["remaining_wh"] - 181.8) < 0.1
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def test_battery_cycles(self):
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"""Test battery cycles parsing."""
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parser = BikeDataParser()
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result = parser.parse_battery_message(self.BATTERY_MESSAGE)
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assert result is not None
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# Cycles: 0x2734 = 10036, cycles = 10036 % 10000 = 36
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assert result["cycles"] == 36
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def test_battery_number_detection(self):
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"""Test primary/secondary battery detection."""
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parser = BikeDataParser()
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parser.parse_battery_message(self.BATTERY_MESSAGE)
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# Battery number = 10036 / 10000 = 1 (primary)
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assert parser.state["battery_primary"] is not None
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assert parser.state["battery_primary"]["cycles"] == 36
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class TestVinParser:
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"""Test VIN/serial number message parsing."""
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# Example VIN message: $s$V#SB000000002207203#@
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# Hex: 24 73 24 56 23 + serial + 23 40
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VIN_SERIAL = "SB000000002207203"
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VIN_MESSAGE = f"$s$V#{VIN_SERIAL}#@".encode("utf-8")
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def test_vin_message_recognition(self):
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"""Test that VIN message type is recognized."""
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parser = BikeDataParser()
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msg_type = parser.recognize_message_type(self.VIN_MESSAGE)
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assert msg_type == "vin"
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def test_vin_parsing_standard_format(self):
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"""Test VIN parsing from standard format $s$V#<serial>#@."""
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parser = BikeDataParser()
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result = parser.parse_vin_message(self.VIN_MESSAGE)
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assert result == self.VIN_SERIAL
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assert parser.vin == self.VIN_SERIAL
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def test_vin_parsing_r0_format(self):
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"""Test VIN parsing from R0 format (20 chars ending with @)."""
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parser = BikeDataParser()
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# R0 format: R0<17 char serial>@
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serial = "AB123456789012345"
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message = f"R0{serial}@".encode("utf-8")
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result = parser.parse_vin_message(message)
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assert result == serial
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assert parser.vin == serial
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def test_vin_handle_message_updates_state(self):
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"""Test that handle_message updates VIN state."""
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parser = BikeDataParser()
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parser.handle_message(self.VIN_MESSAGE)
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assert parser.vin == self.VIN_SERIAL
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class TestAssistParser:
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"""Test assist level message parsing with real data."""
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# Real assist message from log: 246d2441233033312340
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ASSIST_MESSAGE = bytes.fromhex("246d2441233033312340")
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def test_assist_message_recognition(self):
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"""Test that assist message type is recognized."""
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parser = BikeDataParser()
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msg_type = parser.recognize_message_type(self.ASSIST_MESSAGE)
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assert msg_type == "assist"
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def test_assist_parsing(self):
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"""Test assist level parsing from real message."""
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parser = BikeDataParser()
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result = parser.parse_assist_level_message(self.ASSIST_MESSAGE)
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assert result is not None
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# Message is "031" which means min=0, max=3, current=1
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assert result["min"] == 0
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assert result["max"] == 3
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assert result["current"] == 1
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class TestProtocolParser:
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"""Test protocol version message parsing."""
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# Protocol message format: $s$P#<version>#@
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PROTOCOL_MESSAGE_V102 = b"$s$P#1.02#@"
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PROTOCOL_MESSAGE_V100 = b"$s$P#1.00#@"
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PROTOCOL_MESSAGE_V300 = b"$s$P#3.00#@"
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PROTOCOL_MESSAGE_ERROR = b"$s$P#ER#@"
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def test_protocol_message_recognition(self):
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"""Test that protocol message type is recognized."""
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parser = BikeDataParser()
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msg_type = parser.recognize_message_type(self.PROTOCOL_MESSAGE_V102)
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assert msg_type == "protocol"
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def test_protocol_parsing_v102(self):
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"""Test protocol version 1.02 parsing."""
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parser = BikeDataParser()
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result = parser.parse_protocol_message(self.PROTOCOL_MESSAGE_V102)
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assert result == "1.02"
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assert parser.protocol_version == "1.02"
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def test_protocol_parsing_v100(self):
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"""Test protocol version 1.00 parsing."""
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parser = BikeDataParser()
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result = parser.parse_protocol_message(self.PROTOCOL_MESSAGE_V100)
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assert result == "1.00"
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assert parser.protocol_version == "1.00"
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def test_protocol_parsing_v300(self):
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"""Test protocol version 3.00 parsing."""
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parser = BikeDataParser()
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result = parser.parse_protocol_message(self.PROTOCOL_MESSAGE_V300)
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assert result == "3.00"
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assert parser.protocol_version == "3.00"
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def test_protocol_parsing_error(self):
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"""Test protocol error response handling."""
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parser = BikeDataParser()
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result = parser.parse_protocol_message(self.PROTOCOL_MESSAGE_ERROR)
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assert result is None
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assert parser.protocol_version is None
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def test_protocol_handle_message_updates_state(self):
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"""Test that handle_message updates protocol version."""
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parser = BikeDataParser()
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parser.handle_message(self.PROTOCOL_MESSAGE_V102)
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assert parser.protocol_version == "1.02"
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