394 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			394 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
#
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# The MIT License (MIT)
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#
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# Copyright (c) 2023 HiFiPhile
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to deal
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# in the Software without restriction, including without limitation the rights
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# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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# copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in
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# all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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# THE SOFTWARE.
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# udev rules :
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# ACTION=="add", SUBSYSTEM=="tty", SUBSYSTEMS=="usb", MODE="0666", PROGRAM="/bin/sh -c 'echo $$ID_SERIAL_SHORT | rev | cut -c -8 | rev'", SYMLINK+="ttyUSB_%c.%s{bInterfaceNumber}"
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# ACTION=="add", SUBSYSTEM=="block", SUBSYSTEMS=="usb", ENV{ID_FS_USAGE}=="filesystem", MODE="0666", PROGRAM="/bin/sh -c 'echo $$ID_SERIAL_SHORT | rev | cut -c -8 | rev'", RUN{program}+="/usr/bin/systemd-mount --no-block --automount=yes --collect $devnode /media/blkUSB_%c.%s{bInterfaceNumber}"
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import argparse
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import os
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import sys
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import time
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import serial
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import subprocess
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import json
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import glob
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import platform
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# for RPI double reset
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if platform.machine() == 'aarch64':
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    try:
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        import gpiozero
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    except ImportError:
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        pass
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ENUM_TIMEOUT = 10
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# get usb serial by id
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def get_serial_dev(id, vendor_str, product_str, ifnum):
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    if vendor_str and product_str:
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        # known vendor and product
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        vendor_str = vendor_str.replace(' ', '_')
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        product_str = product_str.replace(' ', '_')
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        return f'/dev/serial/by-id/usb-{vendor_str}_{product_str}_{id}-if{ifnum:02d}'
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    else:
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        # just use id: mostly for cp210x/ftdi flasher
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        pattern = f'/dev/serial/by-id/usb-*_{id}-if{ifnum:02d}*'
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        port_list = glob.glob(pattern)
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        return port_list[0]
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# Currently not used, left as reference
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def get_disk_dev(id, vendor_str, lun):
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    # get usb disk by id
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    return f'/dev/disk/by-id/usb-{vendor_str}_Mass_Storage_{id}-0:{lun}'
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def get_hid_dev(id, vendor_str, product_str, event):
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    return f'/dev/input/by-id/usb-{vendor_str}_{product_str}_{id}-{event}'
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def open_serial_dev(port):
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    timeout = ENUM_TIMEOUT
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    ser = None
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    while timeout:
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        if os.path.exists(port):
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            try:
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                # slight delay since kernel may occupy the port briefly
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                time.sleep(0.5)
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                timeout = timeout - 0.5
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                ser = serial.Serial(port, timeout=1)
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                break
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            except serial.SerialException:
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                pass
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        time.sleep(0.5)
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        timeout = timeout - 0.5
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    assert timeout, 'Device not available or Cannot open port'
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    return ser
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def read_disk_file(id, fname):
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    # on different self-hosted, the mount point is different
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    file_list = [
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        f'/media/blkUSB_{id[-8:]}.02/{fname}',
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        f'/media/{os.getenv("USER")}/TinyUSB MSC/{fname}'
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    ]
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    timeout = ENUM_TIMEOUT
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    while timeout:
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        for file in file_list:
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            if os.path.isfile(file):
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                with open(file, 'rb') as f:
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                    data = f.read()
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                    return data
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        time.sleep(1)
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        timeout = timeout - 1
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    assert timeout, 'Device not available'
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    return None
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# -------------------------------------------------------------
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# Flashing firmware
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# -------------------------------------------------------------
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def run_cmd(cmd):
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    #print(cmd)
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    r = subprocess.run(cmd, shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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    if r.returncode != 0:
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        title = 'command error'
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        if os.getenv('CI'):
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            print(f"::group::{title}")
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            print(r.stdout.decode("utf-8"))
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            print(f"::endgroup::")
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        else:
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            print(title)
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            print(r.stdout.decode("utf-8"))
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    return r
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def flash_jlink(board, firmware):
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    script = ['halt', 'r', f'loadfile {firmware}.elf', 'r', 'go', 'exit']
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    with open('flash.jlink', 'w') as f:
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        f.writelines(f'{s}\n' for s in script)
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    ret = run_cmd(f'JLinkExe -USB {board["flasher_sn"]} {board["flasher_args"]} -if swd -JTAGConf -1,-1 -speed auto -NoGui 1 -ExitOnError 1 -CommandFile flash.jlink')
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    os.remove('flash.jlink')
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    return ret
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def flash_openocd(board, firmware):
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    ret = run_cmd(f'openocd -c "adapter serial {board["flasher_sn"]}" {board["flasher_args"]} -c "program {firmware}.elf reset exit"')
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    return ret
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def flash_esptool(board, firmware):
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    port = get_serial_dev(board["flasher_sn"], None, None, 0)
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    dir = os.path.dirname(f'{firmware}.bin')
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    with open(f'{dir}/config.env') as f:
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        IDF_TARGET = json.load(f)['IDF_TARGET']
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    with open(f'{dir}/flash_args') as f:
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        flash_args = f.read().strip().replace('\n', ' ')
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    command = (f'esptool.py --chip {IDF_TARGET} -p {port} {board["flasher_args"]} '
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               f'--before=default_reset --after=hard_reset write_flash {flash_args}')
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    ret = subprocess.run(command, shell=True, cwd=dir, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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    return ret
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def doublereset_with_rpi_gpio(pin):
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    # Off = 0 = Reset
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    nrst = gpiozero.LED(pin)
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    nrst.off()
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    time.sleep(0.1)
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    nrst.on()
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    time.sleep(0.1)
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    nrst.off()
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    time.sleep(0.1)
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    nrst.on()
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def flash_bossac(board, firmware):
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    # double reset to enter bootloader
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    if platform.machine() == 'aarch64':
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        doublereset_with_rpi_gpio(board["flasher_reset_pin"])
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    port = get_serial_dev(board["uid"], board["flashser_vendor"], board["flasher_product"], 0)
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    timeout = ENUM_TIMEOUT
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    while timeout:
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        if os.path.exists(port):
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            break
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        else:
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            time.sleep(0.5)
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            timeout = timeout - 0.5
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    assert timeout, 'bossac bootloader is not available'
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    # sleep a bit more for bootloader to be ready
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    time.sleep(0.5)
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    ret = run_cmd(f'bossac --port {port} {board["flasher_args"]} -U -i -R -e -w {firmware}.bin')
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    return ret
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# -------------------------------------------------------------
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# Tests
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# -------------------------------------------------------------
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def test_board_test(id):
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    # Dummy test
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    pass
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def test_cdc_dual_ports(id):
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    port1 = get_serial_dev(id, 'TinyUSB', "TinyUSB_Device", 0)
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    port2 = get_serial_dev(id, 'TinyUSB', "TinyUSB_Device", 2)
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    ser1 = open_serial_dev(port1)
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    ser2 = open_serial_dev(port2)
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    # Echo test
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    str1 = b"test_no1"
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    ser1.write(str1)
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    ser1.flush()
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    assert ser1.read(100) == str1.lower(), 'Port1 wrong data'
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    assert ser2.read(100) == str1.upper(), 'Port2 wrong data'
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    str2 = b"test_no2"
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    ser2.write(str2)
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    ser2.flush()
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    assert ser1.read(100) == str2.lower(), 'Port1 wrong data'
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    assert ser2.read(100) == str2.upper(), 'Port2 wrong data'
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def test_cdc_msc(id):
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    # Echo test
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    port = get_serial_dev(id, 'TinyUSB', "TinyUSB_Device", 0)
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    ser = open_serial_dev(port)
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    str = b"test_str"
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    ser.write(str)
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    ser.flush()
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    assert ser.read(100) == str, 'CDC wrong data'
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    # Block test
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    data = read_disk_file(id, 'README.TXT')
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    readme = \
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    b"This is tinyusb's MassStorage Class demo.\r\n\r\n\
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If you find any bugs or get any questions, feel free to file an\r\n\
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issue at github.com/hathach/tinyusb"
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    assert data == readme, 'MSC wrong data'
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def test_cdc_msc_freertos(id):
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    test_cdc_msc(id)
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def test_dfu(id):
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    # Wait device enum
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    timeout = ENUM_TIMEOUT
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    while timeout:
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        ret = subprocess.run(f'dfu-util -l',
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                             shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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        stdout = ret.stdout.decode()
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        if f'serial="{id}"' in stdout and 'Found DFU: [cafe:4000]' in stdout:
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            break
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        time.sleep(1)
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        timeout = timeout - 1
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    assert timeout, 'Device not available'
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    # Test upload
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    try:
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        os.remove('dfu0')
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        os.remove('dfu1')
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    except OSError:
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        pass
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    ret = subprocess.run(f'dfu-util -S {id} -a 0 -U dfu0',
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                         shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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    assert ret.returncode == 0, 'Upload failed'
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    ret = subprocess.run(f'dfu-util -S {id} -a 1 -U dfu1',
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                         shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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    assert ret.returncode == 0, 'Upload failed'
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    with open('dfu0') as f:
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        assert 'Hello world from TinyUSB DFU! - Partition 0' in f.read(), 'Wrong uploaded data'
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    with open('dfu1') as f:
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        assert 'Hello world from TinyUSB DFU! - Partition 1' in f.read(), 'Wrong uploaded data'
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    os.remove('dfu0')
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    os.remove('dfu1')
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def test_dfu_runtime(id):
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    # Wait device enum
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    timeout = ENUM_TIMEOUT
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    while timeout:
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        ret = subprocess.run(f'dfu-util -l',
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                             shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
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        stdout = ret.stdout.decode()
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        if f'serial="{id}"' in stdout and 'Found Runtime: [cafe:4000]' in stdout:
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            break
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        time.sleep(1)
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        timeout = timeout - 1
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    assert timeout, 'Device not available'
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def test_hid_boot_interface(id):
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    kbd = get_hid_dev(id, 'TinyUSB', 'TinyUSB_Device', 'event-kbd')
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    mouse1 = get_hid_dev(id, 'TinyUSB', 'TinyUSB_Device', 'if01-event-mouse')
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    mouse2 = get_hid_dev(id, 'TinyUSB', 'TinyUSB_Device', 'if01-mouse')
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    # Wait device enum
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    timeout = ENUM_TIMEOUT
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    while timeout:
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        if os.path.exists(kbd) and os.path.exists(mouse1) and os.path.exists(mouse2):
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            break
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        time.sleep(1)
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        timeout = timeout - 1
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    assert timeout, 'Device not available'
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def test_hid_composite_freertos(id):
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    # TODO implement later
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    pass
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# -------------------------------------------------------------
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# Main
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# -------------------------------------------------------------
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def main():
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    """
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    Hardware test on specified boards
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    """
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    parser = argparse.ArgumentParser()
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    parser.add_argument('config_file', help='Configuration JSON file')
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    parser.add_argument('-b', '--board', action='append', default=[], help='Boards to test, all if not specified')
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    args = parser.parse_args()
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    config_file = args.config_file
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    boards = args.board
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    # if config file is not found, try to find it in the same directory as this script
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    if not os.path.exists(config_file):
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        config_file = os.path.join(os.path.dirname(__file__), config_file)
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    with open(config_file) as f:
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        config = json.load(f)
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    # all possible tests
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    all_tests = [
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        'cdc_dual_ports', 'cdc_msc', 'dfu', 'dfu_runtime', 'hid_boot_interface',
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    ]
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    if len(boards) == 0:
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        config_boards = config['boards']
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    else:
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        config_boards = [e for e in config['boards'] if e['name'] in boards]
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    for item in config_boards:
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        name = item['name']
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        print(f'Testing board:{name}')
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        flasher = item['flasher'].lower()
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        # default to all tests
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        if 'tests' in item:
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            test_list = item['tests']
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        else:
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            test_list = all_tests
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        # board_test is added last to disable board's usb
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        test_list.append('board_test')
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        # remove skip_tests
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        if 'tests_skip' in item:
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            for skip in item['tests_skip']:
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                if skip in test_list:
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                    test_list.remove(skip)
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        for test in test_list:
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            fw_dir = f'cmake-build/cmake-build-{name}/device/{test}'
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            if not os.path.exists(fw_dir):
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                fw_dir = f'examples/cmake-build-{name}/device/{test}'
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            fw_name = f'{fw_dir}/{test}'
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            print(f'  {test} ...', end='')
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            # flash firmware. It may fail randomly, retry a few times
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            for i in range(3):
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                ret = globals()[f'flash_{flasher}'](item, fw_name)
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                if ret.returncode == 0:
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                    break
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                else:
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                    print(f'Flashing failed, retry {i+1}')
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                    time.sleep(1)
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            assert ret.returncode == 0, 'Flash failed\n' + ret.stdout.decode()
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            # run test
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            globals()[f'test_{test}'](item['uid'])
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            print('OK')
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if __name__ == '__main__':
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    main()
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