Files
lib_xua/tests/test_midi_rx.py

68 lines
2.6 KiB
Python

# Copyright 2014-2024 XMOS LIMITED.
# This Software is subject to the terms of the XMOS Public Licence: Version 1.
import pytest
import Pyxsim
from Pyxsim import testers
from pathlib import Path
from uart_rx_checker import UARTRxChecker
from midi_test_helpers import midi_expect_rx, create_midi_rx_file, create_midi_tx_file, tempdir, MIDI_TEST_CONFIGS, MIDI_RATE
from distutils.dir_util import copy_tree # we're using python 3.7 and dirs_exist_ok=True isn't available until 3.8 :(
MAX_CYCLES = 15000000
#####
# This test takes the built binary, copies it to a tmp dir and runs the midi Rx test which sends some commands
# to using the UARTRX checker and the firmware receives them
#####
@pytest.mark.parametrize("config", MIDI_TEST_CONFIGS)
def test_rx(capfd, config, build_midi):
# Need tempdir as we use the same config files and this causes issues when using xdist
with tempdir() as tmpdirname:
copy_tree(build_midi, tmpdirname)
xe = str(Path(tmpdirname) / f"{config}/test_midi_{config}.xe")
midi_commands = [[0x90, 60, 81]]
create_midi_rx_file(1)
create_midi_tx_file()
expected = midi_expect_rx().expect(midi_commands)
tester = testers.ComparisonTester(midi_expect_rx().expect(midi_commands),
ordered = True)
rx_port = "tile[1]:XS1_PORT_1F"
tx_port = "tile[1]:XS1_PORT_4C" # Needed so that UARTRxChecker (a transmitter) knows when to start
baud = MIDI_RATE
bpb = 8
parity = 0
stop = 1
midi_commands_flattened = [item for row in midi_commands for item in row]
# midi_commands_flattened.append(0x00) # send a null afterwards to give RXChecker to complete
simthreads = [
UARTRxChecker(tx_port, rx_port, parity, baud, stop, bpb, midi_commands_flattened, debug=False)
]
simargs = ["--max-cycles", str(MAX_CYCLES)]
#This is just for local debug so we can capture the traces if needed. It slows xsim down so not needed
# simargs.extend(["--trace-to", "trace.txt", "--vcd-tracing", "-tile tile[1] -ports -o trace.vcd"])
# Print to console
# with capfd.disabled():
# print("++++", expected, "++++")
# print("****", capture, "****")
# print("****", capture.split("\n"), "****")
# print(xe)
Pyxsim.run_with_pyxsim(
xe,
simthreads=simthreads,
timeout=1200,
simargs=simargs,
)
capture = capfd.readouterr().out
result = tester.run(capture.split("\n"))
assert result