mirror of
https://github.com/tillitis/tillitis-key1.git
synced 2024-10-01 01:45:38 -04:00
376 lines
11 KiB
Python
Executable File
376 lines
11 KiB
Python
Executable File
#!/usr/bin/env python3
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import hid_test
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import time
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import numpy
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from subprocess import run
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import usb.core
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import uuid
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import encode_usb_strings
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import serial
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import serial.tools.list_ports;
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import shutil
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# Locations for external utilities and files referenced by the test program
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file_locations = {
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'iceprog':'/home/matt/Other-Repos/icestorm/iceprog/iceprog',
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'chprog':'/home/matt/Other-Repos/chprog/chprog',
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'app_gateware':'/home/matt/Other-Repos/mta1_mkdf/hw/boards/mta1-usb-v1/test/app_test/top.bin',
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'ch552_firmware':'/home/matt/Other-Repos/mta1_mkdf/hw/boards/mta1-usb-v1/ch552_fw/usb_device_cdc.bin',
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'ch552_firmware_injected':'/tmp/ch552_fw_injected.bin',
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'pico_bootloader_source':'/home/matt/Blinkinlabs-Repos/ice40_flasher/bin/main.uf2',
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'pico_bootloader_target':'/media/matt/RPI-RP2/main.uf2'
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}
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def measure_voltages(device, samples):
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""" Measure the voltage levels of the three mta1 power rails multiple times, and return the average values """
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adc_vals = numpy.array([0,0,0])
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for i in range(0,samples):
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adc_vals = adc_vals + device.adc_read_all()
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adc_vals = dict(zip(['1.2','2.5','3.3'],adc_vals/samples))
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return adc_vals
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def voltage_test():
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"""Turn on the device, delay, measure voltage, then turn it off"""
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d = hid_test.ice40_flasher()
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d.gpio_set_direction(7, True)
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d.gpio_put(7, True)
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time.sleep(.2)
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vals = measure_voltages(d,20)
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d.gpio_put(7, False)
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d.close()
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print('voltages:',vals)
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if (
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(abs(vals['1.2'] - 1.2) > .2)
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| (abs(vals['2.5'] - 2.5) > .2)
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| (abs(vals['3.3'] - 3.3) > .2)
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):
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return False
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return True
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def flash_validate_id():
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""" Read the ID from the flash, and verify that it's not all 0's or 1's (which would indicate a communications issue) """
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result = run([
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file_locations['iceprog'],
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'-t'
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],
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capture_output=True)
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err = result.stderr.split(b'\n')
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for line in err:
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if line.startswith(b'flash ID:'):
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vals_b = line.split(b' 0x')[1:]
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flash_id = int(b''.join(vals_b),16)
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print(line, hex(flash_id))
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if (flash_id == 0) or (flash_id == 0xFFFFFFFF):
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return False
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return True
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return (result.returncode == 0)
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def flash_program():
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""" Program and verify the SPI flash """
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result = run([
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file_locations['iceprog'],
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file_locations['app_gateware']
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])
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print(result)
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return (result.returncode == 0)
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def flash_check():
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""" Verify the contents of the SPI flash """
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result = run([
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file_locations['iceprog'],
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'-c',
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file_locations['app_gateware']
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])
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print(result)
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return (result.returncode == 0)
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def test_extra_io():
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""" Test the RTS, CTS, and GPIO1-4 lines by measuring a test pattern generated by the app_test gateware when RTS is toggled """
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time.sleep(.1)
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d = hid_test.ice40_flasher()
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d.gpio_put(16, False)
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d.gpio_set_direction(16, True)
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expected_results = [1<<(i%5) for i in range(9,-1,-1)]
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results = []
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for i in range(0,10):
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vals = d.gpio_get_all()
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pattern = (vals >> 17) & 0b11111
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results.append(pattern)
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d.gpio_put(16, True)
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d.gpio_put(16, False)
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d.gpio_set_direction(16, False)
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d.close()
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print(results,expected_results,results == expected_results)
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return results == expected_results
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def disable_power():
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""" Disable power to the mta1-usb device """
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time.sleep(.1)
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d = hid_test.ice40_flasher()
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d.gpio_put(7, False)
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d.close()
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def test_found_bootloader():
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""" Search for a CH552 in USB bootloader mode """
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print('\n\n\nSearching for CH552 bootloader, plug in USB cable now!')
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for trys in range(0,50):
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devices= usb.core.find(idVendor=0x4348, idProduct=0x55e0, find_all=True)
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count = len(list(devices))
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if count == 1:
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return True
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time.sleep(0.1)
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post = usb.core.find(idVendor=0x4348, idProduct=0x55e0, find_all=True)
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post_count = len(list(post))
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return (post_count == 1)
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def inject_serial_number(infile, outfile, serial):
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""" Inject a serial number into the specified CH552 firmware file """
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magic = encode_usb_strings.string_to_descriptor("68de5d27-e223-4874-bc76-a54d6e84068f")
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replacement = encode_usb_strings.string_to_descriptor(serial)
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f = bytearray(open(infile, 'rb').read())
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pos = f.find(magic)
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if pos < 0:
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print('failed to find magic string')
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exit(1)
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f[pos:(pos+len(magic))] = replacement
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with open(outfile, 'wb') as of:
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of.write(f)
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def flash_ch552(serial):
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""" Flash an attached CH552 device (in bootloader mode) with the USB CDC firmware, injected with the given serial number """
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print(serial)
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inject_serial_number(
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file_locations['ch552_firmware'],
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file_locations['ch552_firmware_injected'],
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serial)
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# Program the CH552 using CHPROG
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result = run([
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file_locations['chprog'],
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file_locations['ch552_firmware_injected']
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])
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print(result)
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return (result.returncode == 0)
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def find_serial_device(desc):
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""" Look for a serial device that has the given attributes """
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for port in serial.tools.list_ports.comports():
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matched = True
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for key, value in desc.items():
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if not getattr(port, key) == value:
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matched = False
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if matched:
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print(port.device)
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return port.device
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return None
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def test_found_ch552(serial):
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""" Search all serial devices for one that has the correct description and serial number """
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time.sleep(1)
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description = {
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'vid':0x1207,
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'pid':0x8887,
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'manufacturer':'Tillitis',
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'product':'MTA1-USB-V1',
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'serial_number':serial
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}
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if find_serial_device(description) == None:
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return False
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return True
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def ch552_find_and_program():
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""" Load the CDC ACM firmware onto a CH552 with a randomly generated serial number, and verify that it boots correctly """
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if not test_found_bootloader():
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print('Error finding CH552!')
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return False
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serial = str(uuid.uuid4())
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if not flash_ch552(serial):
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print('Error flashing CH552!')
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return False
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if not test_found_ch552(serial):
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print('Error finding flashed CH552!')
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return False
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return True
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def test_txrx_touchpad():
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""" Test UART communication by asking the operator to interact with the touch pad """
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description = {
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'vid':0x1207,
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'pid':0x8887,
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'manufacturer':'Tillitis',
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'product':'MTA1-USB-V1'
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}
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s = serial.Serial(find_serial_device(description),9600, timeout=.2)
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if not s.isOpen():
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print('couldn\'t find/open serial device')
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return False
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s.write(b'0123')
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time.sleep(0.1)
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s.read(20)
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try:
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s.write(b'0')
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[count, touch_count] = s.read(2)
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print(count,touch_count)
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input('\n\n\nPress touch pad once and check LED, then press Enter')
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s.write(b'0')
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[count_post, touch_count_post] = s.read(2)
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print(count_post,touch_count_post)
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if (count_post - count != 1) or (touch_count_post - touch_count !=1):
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return False
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return True
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except ValueError as e:
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print(e)
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return False
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def production_test(args):
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""" mta1-usb-v1 production test. Specify --noflash to skip flashing the gateware to the SPI flash, and --noch552 to skip programming the USB CDC firmware to the CH552 """
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if not voltage_test():
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print('voltage out of range')
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return False
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if not flash_validate_id():
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print('Error reading flash ID')
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return False
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if not args.noflash:
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if not flash_program():
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print('Error programming flash')
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return False
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else:
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if not flash_check():
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print('Error checking flash')
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return False
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if not test_extra_io():
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print('Error testing io')
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return False
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if not args.noch552:
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disable_power()
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if not ch552_find_and_program():
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return False
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if not test_txrx_touchpad():
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print('Error reading touchpad!')
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return False
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return True
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def program_pico():
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""" Load the ice40 flasher firmware onto an rpi pico in bootloader mode """
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print('Attach test rig to USB')
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for trys in range(0,50):
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try:
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shutil.copyfile(
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file_locations['pico_bootloader_source'],
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file_locations['pico_bootloader_target']
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)
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return True
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except FileNotFoundError:
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time.sleep(0.1)
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except PermissionError:
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time.sleep(0.1)
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return False
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def programmer_production_test(args):
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""" mta1-usb-v1-programmer production test. Place a (programmed) mta1-usb-v1 into the programmer, connect the programmer to the PC, then start the test. """
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if not program_pico():
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print('error programming the pico')
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return False
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# Let the board start
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time.sleep(2)
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if not voltage_test():
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print('voltage out of range')
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return False
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if not flash_validate_id():
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print('Error reading flash ID')
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return False
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if not flash_check():
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print('Error programming flash')
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return False
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if not test_extra_io():
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print('Error testing io')
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return False
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return True
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if __name__ == '__main__':
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import argparse
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parser = argparse.ArgumentParser(description='GPIO short connector test')
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parser.add_argument('--noch552', action='store_true', help='Skip programming the CH552. Used for re-testing an mta1-usb-v1 board.')
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parser.add_argument('--noflash', action='store_true', help='Skip programming the SPI flash. Used for re-testing an mta1-usb-v1 board')
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parser.add_argument('--programmer', action='store_true', help='Program/test the programmer')
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parser.add_argument('--ch552', action='store_true', help='Program/test (only) the CH552.')
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args = parser.parse_args()
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while True:
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input('\n\n\nPress Enter to start')
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if args.programmer:
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result = programmer_production_test(args)
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elif args.ch552:
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result = ch552_find_and_program()
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else:
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result = production_test(args)
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if result:
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print('\n\n\nDONE')
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else:
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print('\n\n\nFAIL')
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try:
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disable_power()
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except AttributeError as e:
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print(e)
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