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https://github.com/easytarget/MQ-Pro-IO.git
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pin map tool
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commit
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@ -1,21 +1,64 @@
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from subprocess import run,PIPE
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import shlex
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from importlib import import_module
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from sys import path,argv
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path.append('maps')
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'''
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Runs 'gpioinfo' and parses it's output to a more human form, with pin designator included
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Gathers the pinmux table and parses it's output to a more human form, with pin designator included
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'''
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rawlist = run(['sudo', 'gpioinfo'],stdout=PIPE,universal_newlines=True)
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pinlist = rawlist.stdout.splitlines()[1:]
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# get the model for our board, generate an index and prep it
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dtname = run(['cat','/proc/device-tree/model'],stdout=PIPE,universal_newlines=True).stdout[:-1]
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if len(argv) == 2:
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model = argv[1]
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else:
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model = dtname
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board = import_module(model.replace(' ','-'))
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muxindex = [pin[0] for pin in board.gpio]
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for pin in board.gpio:
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pin.append('')
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# start
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print('{} (dtb name: {})\n'.format(board.name, dtname))
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# Get the full pinmux list
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rawlist = run(['sudo', 'cat','/sys/kernel/debug/pinctrl/2000000.pinctrl/pinmux-pins'],stdout=PIPE,universal_newlines=True).stdout
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pinlist = rawlist.splitlines()[2:]
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# interpret list
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for line in pinlist:
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out = shlex.split(line)
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number = int(out[1][:-1])
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pin = 'P{}{}'.format('ABCDEFGH'[int(number / 32)], number % 32)
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print('pin: {:3d}, {:>4}'.format(number, pin), end='')
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print(', {:>6}'.format(out[4]), end='')
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if out[2] != 'unnamed':
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print(', name: ' + out[2], end='')
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if out[3] != 'unused':
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print(', used by: ' + out[3], end='')
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pmux = line.split()
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if int(pmux[1]) in muxindex:
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state = 'free'
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if pmux[3] == 'device':
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state = pmux[6] + ' (' + pmux[4] + ')'
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elif pmux[3] == 'GPIO':
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state = 'gpio (' + pmux[4] + ')'
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board.gpio[muxindex.index(int(pmux[1]))][3] = state
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# work out column widths
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width = []
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for c in range(0, board.cols):
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wide = 0
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for p in range(c, len(board.gpio), board.cols):
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w = len(board.gpio[p][3])
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wide = w if w > wide else wide
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width.append(wide)
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# Output result.
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for l in range(0, len(board.gpio), board.cols):
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for p in range(l, l + board.cols):
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if board.gpio[p][2] is None:
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board.gpio[p][3] = ''
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board.gpio[p][2] = ''
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pad = (width[p - l] - len(board.gpio[p][3])) * ' '
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if p % 2 == 0:
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print(' {}{} {:>5} {:>3} --o'.format(pad, board.gpio[p][3], board.gpio[p][2], str(board.gpio[p][1])), end='')
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else:
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print(' o-- {:3} {:5} {}{} '.format(str(board.gpio[p][1]), board.gpio[p][2], board.gpio[p][3], pad), end='')
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print()
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print()
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print('Notes:')
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for l in board.notes:
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print('- ' + l)
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40
tools/maps/MangoPi-MQ-Pro.py
Normal file
40
tools/maps/MangoPi-MQ-Pro.py
Normal file
@ -0,0 +1,40 @@
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'''
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Map file for a MangoPi MQ Pro
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The 'gpio' list has 40 entries corresponding
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to pins 1-40 on the 2-row GPIO header.
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Each gpio[] entry is a list with two items:
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[0] the pinmux pin number, or 'None' if a power pin
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[1] the pin number on the connector
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[2] a text description, or 'None' to omit the pin
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'''
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name = 'MangoPI MQ Pro GPIO header'
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cols = 2
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gpio = [
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[None, 1, '3v3'], [None, 2, '5v'],
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[ 205, 3, 'PG13'], [None, 4, '5v'],
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[ 204, 5, 'PG12'], [None, 6, 'gnd'],
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[ 39, 7, 'PB7'], [ 40, 8, 'PB8'],
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[None, 9, 'gnd'], [ 41, 10, 'PB9'],
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[ 117, 11, 'PD21'], [ 37, 12, 'PB5'],
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[ 118, 13, 'PD22'], [None, 14, 'gnd'],
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[ 32, 15, 'PB0'], [ 33, 16, 'PB1'],
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[None, 17, '3v3'], [ 110, 18, 'PD14'],
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[ 108, 19, 'PD12'], [None, 20, 'gnd'],
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[ 109, 21, 'PD13'], [ 65, 22, 'PC1'],
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[ 107, 23, 'PD11'], [ 106, 24, 'PD10'],
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[None, 25, 'gnd'], [ 111, 26, 'PD15'],
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[ 145, 27, 'PE17'], [ 144, 28, 'PE16'],
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[ 42, 29, 'PB10'], [None, 30, 'gnd'],
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[ 43, 31, 'PB11'], [ 64, 32, 'PC0'],
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[ 44, 33, 'PB12'], [None, 34, 'gnd'],
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[ 38, 35, 'PB6'], [ 34, 36, 'PB2'],
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[ 113, 37, 'PD17'], [ 35, 38, 'PB3'],
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[None, 39, 'gnd'], [ 36, 40, 'PB4'],
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]
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notes = ['I2C pins 2,5,27 and 28 (PG13, PG12, PE17 and PE16) have 10K pullup resistors to 3v3',
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'The onboard blue status LED is on PD18 [pwm2]']
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