mirror of
https://github.com/qmk/qmk_firmware
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fce9cb9338
* cleanup issues identified by lgtm * fix the git_status check
316 lines
11 KiB
Python
Executable file
316 lines
11 KiB
Python
Executable file
#!/usr/bin/env python
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#
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# Copyright 2021 Don Kjer
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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from __future__ import print_function
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import argparse
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from struct import pack, unpack
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import os, sys
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MAGIC_FEEA = '\xea\xff\xfe\xff'
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MAGIC_FEE9 = '\x16\x01'
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EMPTY_WORD = '\xff\xff'
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WORD_ENCODING = 0x8000
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VALUE_NEXT = 0x6000
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VALUE_RESERVED = 0x4000
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VALUE_ENCODED = 0x2000
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BYTE_RANGE = 0x80
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CHUNK_SIZE = 1024
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STRUCT_FMTS = {
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1: 'B',
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2: 'H',
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4: 'I'
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}
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PRINTABLE='0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ!"#$%&\'()*+,-./:;<=>?@[\\]^_`{|}~ '
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EECONFIG_V1 = [
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("MAGIC", 0, 2),
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("DEBUG", 2, 1),
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("DEFAULT_LAYER", 3, 1),
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("KEYMAP", 4, 1),
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("MOUSEKEY_ACCEL", 5, 1),
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("BACKLIGHT", 6, 1),
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("AUDIO", 7, 1),
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("RGBLIGHT", 8, 4),
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("UNICODEMODE", 12, 1),
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("STENOMODE", 13, 1),
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("HANDEDNESS", 14, 1),
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("KEYBOARD", 15, 4),
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("USER", 19, 4),
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("VELOCIKEY", 23, 1),
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("HAPTIC", 24, 4),
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("MATRIX", 28, 4),
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("MATRIX_EXTENDED", 32, 2),
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("KEYMAP_UPPER_BYTE", 34, 1),
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]
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VIABASE_V1 = 35
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VERBOSE = False
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def parseArgs():
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parser = argparse.ArgumentParser(description='Decode an STM32 emulated eeprom dump')
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parser.add_argument('-s', '--size', type=int,
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help='Size of the emulated eeprom (default: input_size / 2)')
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parser.add_argument('-o', '--output', help='File to write decoded eeprom to')
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parser.add_argument('-y', '--layout-options-size', type=int,
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help='VIA layout options size (default: 1)', default=1)
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parser.add_argument('-t', '--custom-config-size', type=int,
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help='VIA custom config size (default: 0)', default=0)
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parser.add_argument('-l', '--layers', type=int,
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help='VIA keyboard layers (default: 4)', default=4)
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parser.add_argument('-r', '--rows', type=int, help='VIA matrix rows')
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parser.add_argument('-c', '--cols', type=int, help='VIA matrix columns')
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parser.add_argument('-m', '--macros', type=int,
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help='VIA macro count (default: 16)', default=16)
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parser.add_argument('-C', '--canonical', action='store_true',
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help='Canonical hex+ASCII display.')
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parser.add_argument('-v', '--verbose', action='store_true', help='Verbose output')
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parser.add_argument('input', help='Raw contents of the STM32 flash area used to emulate eeprom')
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return parser.parse_args()
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def decodeEepromFEEA(in_file, size):
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decoded=size*[None]
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pos = 0
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while True:
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chunk = in_file.read(CHUNK_SIZE)
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for i in range(0, len(chunk), 2):
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decoded[pos] = unpack('B', chunk[i])[0]
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pos += 1
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if pos >= size:
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break
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if len(chunk) < CHUNK_SIZE or pos >= size:
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break
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return decoded
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def decodeEepromFEE9(in_file, size):
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decoded=size*[None]
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pos = 0
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# Read compacted flash
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while True:
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read_size = min(size - pos, CHUNK_SIZE)
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chunk = in_file.read(read_size)
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for i in range(len(chunk)):
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decoded[pos] = unpack('B', chunk[i])[0] ^ 0xFF
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pos += 1
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if pos >= size:
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break
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if len(chunk) < read_size or pos >= size:
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break
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if VERBOSE:
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print("COMPACTED EEPROM:")
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dumpBinary(decoded, True)
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print("WRITE LOG:")
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# Read write log
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while True:
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entry = in_file.read(2)
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if len(entry) < 2:
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print("Partial log address at position 0x%04x" % pos, file=sys.stderr)
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break
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pos += 2
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if entry == EMPTY_WORD:
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break
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be_entry = unpack('>H', entry)[0]
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entry = unpack('H', entry)[0]
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if not (entry & WORD_ENCODING):
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address = entry >> 8
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decoded[address] = entry & 0xFF
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if VERBOSE:
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print("[0x%04x]: BYTE 0x%02x = 0x%02x" % (be_entry, address, decoded[address]))
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else:
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if (entry & VALUE_NEXT) == VALUE_NEXT:
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# Read next word as value
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value = in_file.read(2)
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if len(value) < 2:
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print("Partial log value at position 0x%04x" % pos, file=sys.stderr)
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break
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pos += 2
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address = entry & 0x1FFF
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address <<= 1
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address += BYTE_RANGE
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decoded[address] = unpack('B', value[0])[0] ^ 0xFF
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decoded[address+1] = unpack('B', value[1])[0] ^ 0xFF
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be_value = unpack('>H', value)[0]
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if VERBOSE:
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print("[0x%04x 0x%04x]: WORD 0x%04x = 0x%02x%02x" % (be_entry, be_value, address, decoded[address+1], decoded[address]))
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else:
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# Reserved for future use
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if entry & VALUE_RESERVED:
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if VERBOSE:
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print("[0x%04x]: RESERVED 0x%04x" % (be_entry, address))
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continue
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address = entry & 0x1FFF
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address <<= 1
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decoded[address] = (entry & VALUE_ENCODED) >> 13
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decoded[address+1] = 0
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if VERBOSE:
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print("[0x%04x]: ENCODED 0x%04x = 0x%02x%02x" % (be_entry, address, decoded[address+1], decoded[address]))
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return decoded
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def dumpBinary(data, canonical):
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def display(pos, row):
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print("%04x" % pos, end='')
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for i in range(len(row)):
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if i % 8 == 0:
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print(" ", end='')
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char = row[i]
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if char is None:
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print(" ", end='')
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else:
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print(" %02x" % row[i], end='')
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if canonical:
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print(" |", end='')
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for i in range(len(row)):
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char = row[i]
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if char is None:
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char = " "
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else:
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char = chr(char)
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if char not in PRINTABLE:
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char = "."
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print(char, end='')
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print("|", end='')
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print("")
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size = len(data)
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prev_row = ''
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first_repeat = True
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for pos in range(0, size, 16):
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row=data[pos:pos+16]
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row[len(row):16] = (16-len(row))*[None]
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if row == prev_row:
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if first_repeat:
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print("*")
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first_repeat = False
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else:
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first_repeat = True
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display(pos, row)
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prev_row = row
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print("%04x" % (pos+16))
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def dumpEeconfig(data, eeconfig):
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print("EECONFIG:")
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for (name, pos, length) in eeconfig:
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fmt = STRUCT_FMTS[length]
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value = unpack(fmt, ''.join([chr(x) for x in data[pos:pos+length]]))[0]
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print(("%%04x %%s = 0x%%0%dx" % (length * 2)) % (pos, name, value))
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def dumpVia(data, base, layers, cols, rows, macros,
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layout_options_size, custom_config_size):
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magicYear = data[base + 0]
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magicMonth = data[base + 1]
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magicDay = data[base + 2]
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# Sanity check
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if not 10 <= magicYear <= 0x99 or \
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not 0 <= magicMonth <= 0x12 or \
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not 0 <= magicDay <= 0x31:
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print("ERROR: VIA Signature is not valid; Year:%x, Month:%x, Day:%x" % (magicYear, magicMonth, magicDay))
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return
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if cols is None or rows is None:
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print("ERROR: VIA dump requires specifying --rows and --cols", file=sys.stderr)
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return 2
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print("VIA:")
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# Decode magic
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print("%04x MAGIC = 20%02x-%02x-%02x" % (base, magicYear, magicMonth, magicDay))
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# Decode layout options
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options = 0
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pos = base + 3
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for i in range(base+3, base+3+layout_options_size):
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options = options << 8
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options |= data[i]
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print(("%%04x LAYOUT_OPTIONS = 0x%%0%dx" % (layout_options_size * 2)) % (pos, options))
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pos += layout_options_size + custom_config_size
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# Decode keycodes
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keymap_size = layers * rows * cols * 2
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if (pos + keymap_size) >= (len(data) - 1):
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print("ERROR: VIA keymap requires %d bytes, but only %d available" % (keymap_size, len(data) - pos))
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return 3
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for layer in range(layers):
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print("%s LAYER %d %s" % ('-'*int(cols*2.5), layer, '-'*int(cols*2.5)))
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for row in range(rows):
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print("%04x | " % pos, end='')
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for col in range(cols):
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keycode = (data[pos] << 8) | (data[pos+1])
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print(" %04x" % keycode, end='')
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pos += 2
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print("")
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# Decode macros
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for macro_num in range(macros):
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macro = ""
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macro_pos = pos
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while pos < len(data):
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char = chr(data[pos])
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pos += 1
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if char == '\x00':
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print("%04x MACRO[%d] = '%s'" % (macro_pos, macro_num, macro))
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break
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else:
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macro += char
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return 0
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def decodeSTM32Eeprom(input, canonical, size=None, output=None, **kwargs):
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input_size = os.path.getsize(input)
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if size is None:
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size = input_size >> 1
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# Read the first few bytes to check magic signature
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with open(input, 'rb') as in_file:
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magic=in_file.read(4)
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in_file.seek(0)
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if magic == MAGIC_FEEA:
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decoded = decodeEepromFEEA(in_file, size)
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eeconfig = EECONFIG_V1
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via_base = VIABASE_V1
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elif magic[:2] == MAGIC_FEE9:
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decoded = decodeEepromFEE9(in_file, size)
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eeconfig = EECONFIG_V1
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via_base = VIABASE_V1
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else:
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print("Unknown magic signature: %s" % " ".join(["0x%02x" % ord(x) for x in magic]), file=sys.stderr)
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return 1
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if output is not None:
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with open(output, 'wb') as out_file:
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out_file.write(pack('%dB' % len(decoded), *decoded))
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print("DECODED EEPROM:")
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dumpBinary(decoded, canonical)
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dumpEeconfig(decoded, eeconfig)
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if kwargs['rows'] is not None and kwargs['cols'] is not None:
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return dumpVia(decoded, via_base, **kwargs)
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return 0
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def main():
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global VERBOSE
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kwargs = vars(parseArgs())
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VERBOSE = kwargs.pop('verbose')
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return decodeSTM32Eeprom(**kwargs)
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if __name__ == '__main__':
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sys.exit(main())
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