637 lines
No EOL
28 KiB
Python
637 lines
No EOL
28 KiB
Python
import os
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import random
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import re
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import sys
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import time
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from io import BytesIO
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import tools
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from dolreader import DolFile
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try:
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import chardet
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except ImportError as IE:
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print(IE)
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sys.exit(1)
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class GCT:
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def __init__(self, f):
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self.codeList = BytesIO(f.read())
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self.rawLineCount = tools.get_size(f) >> 3
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self.lineCount = self.rawLineCount - 2
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self.size = tools.get_size(f)
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f.seek(0)
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def determine_codelength(self, codetype, info):
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if codetype.startswith(b'\x06'):
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bytelength = int.from_bytes(info, byteorder='big', signed=False)
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padding = tools.get_alignment(bytelength, 8)
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return 0x8 + bytelength + padding
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elif (codetype.startswith(b'\x08') or codetype.startswith(b'\x09')
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or codetype.startswith(b'\x18') or codetype.startswith(b'\x18')):
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return 0x16
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elif (codetype.startswith(b'\xC2') or codetype.startswith(b'\xC4')
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or codetype.startswith(b'\xC3') or codetype.startswith(b'\xC5')
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or codetype.startswith(b'\xD2') or codetype.startswith(b'\xD4')
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or codetype.startswith(b'\xD3') or codetype.startswith(b'\xD5')):
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return 0x8 + (int.from_bytes(info, byteorder='big', signed=False) << 3)
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elif (codetype.startswith(b'\xF2') or codetype.startswith(b'\xF3')
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or codetype.startswith(b'\xF4') or codetype.startswith(b'\xF5')):
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return 0x8 + (int.from_bytes(info[:2], byteorder='big', signed=False) << 3)
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elif codetype.startswith(b'\xF6'):
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return 0x8 + (int.from_bytes(info[:4], byteorder='big', signed=False) << 3)
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else:
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return 0x8
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def optimize_codelist(self, dolFile: DolFile):
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codelist = b''
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codetype = b'temp'
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skipcodes = 0
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while codetype:
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codetype = self.codeList.read(4)
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info = self.codeList.read(4)
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address = 0x80000000 | (int.from_bytes(codetype, byteorder='big', signed=False) & 0x01FFFFFF)
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try:
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if skipcodes <= 0:
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if (codetype.startswith(b'\x00') or codetype.startswith(b'\x01')
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or codetype.startswith(b'\x10') or codetype.startswith(b'\x11')):
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dolFile.seek(address)
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counter = int.from_bytes(info[:-2], byteorder='big', signed=False)
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value = info[2:]
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while counter + 1 > 0:
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dolFile.write(value[1:])
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counter -= 1
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continue
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elif (codetype.startswith(b'\x02') or codetype.startswith(b'\x03')
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or codetype.startswith(b'\x12') or codetype.startswith(b'\x13')):
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dolFile.seek(address)
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counter = int.from_bytes(info[:-2], byteorder='big', signed=False)
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value = info[2:]
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while counter + 1 > 0:
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dolFile.write(value)
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counter -= 1
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continue
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elif (codetype.startswith(b'\x04') or codetype.startswith(b'\x05')
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or codetype.startswith(b'\x14') or codetype.startswith(b'\x15')):
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dolFile.seek(address)
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dolFile.write(info)
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continue
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elif (codetype.startswith(b'\x06') or codetype.startswith(b'\x07')
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or codetype.startswith(b'\x16') or codetype.startswith(b'\x17')):
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dolFile.seek(address)
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arraylength = int.from_bytes(info, byteorder='big', signed=False)
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padding = tools.get_alignment(arraylength, 8)
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while arraylength > 0:
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value = self.codeList.read(1)
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dolFile.write(value)
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arraylength -= 1
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self.codeList.seek(padding, 1)
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continue
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elif (codetype.startswith(b'\x08') or codetype.startswith(b'\x09')
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or codetype.startswith(b'\x18') or codetype.startswith(b'\x19')):
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dolFile.seek(address)
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value = int.from_bytes(info, byteorder='big', signed=False)
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data = self.codeList.read(2).hex()
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size = int(data[:-3], 16)
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counter = int(data[1:], 16)
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address_increment = tools.read_uint16(self.codeList)
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value_increment = tools.read_uint32(self.codeList)
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while counter + 1 > 0:
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if size == 0:
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tools.write_ubyte(dolFile, value)
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dolFile.seek(-1, 1)
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elif size == 1:
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tools.write_uint16(dolFile, value)
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dolFile.seek(-2, 1)
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elif size == 2:
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tools.write_uint32(dolFile, value)
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dolFile.seek(-4, 1)
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else:
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raise ValueError('Size type {} does not match 08 codetype specs'.format(size))
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dolFile.seek(address_increment, 1)
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value += value_increment
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counter -= 1
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if value > 0xFFFFFFFF:
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value -= 0x100000000
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continue
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elif (codetype.startswith(b'\xC6') or codetype.startswith(b'\xC7')
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or codetype.startswith(b'\xC6') or codetype.startswith(b'\xC7')):
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dolFile.seek(address)
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dolFile.insertBranch(int.from_bytes(info, byteorder='big', signed=False), dolFile.tell())
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continue
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if codetype.hex().startswith('2') or codetype.hex().startswith('3'):
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skipcodes += 1
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elif codetype.startswith(b'\xE0'):
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skipcodes -= 1
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elif codetype.startswith(b'\xF0'):
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codelist += b'\xF0\x00\x00\x00\x00\x00\x00\x00'
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break
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self.codeList.seek(-8, 1)
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length = self.determine_codelength(codetype, info)
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while length > 0:
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codelist += self.codeList.read(1)
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length -= 1
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except RuntimeError:
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self.codeList.seek(-8, 1)
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length = self.determine_codelength(codetype, info)
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while length > 0:
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codelist += self.codeList.read(1)
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length -= 1
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self.codeList = BytesIO(codelist)
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self.size = tools.get_size(self.codeList)
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class CodeHandler:
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def __init__(self, f):
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self._rawData = BytesIO(f.read())
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'''Get codelist pointer'''
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f.seek(0xFA)
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codelistUpper = f.read(2).hex()
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f.seek(0xFE)
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codelistLower = f.read(2).hex()
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self.codeListPointer = int(codelistUpper[2:] + codelistLower[2:], 16)
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self.handlerLength = tools.get_size(f)
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self.initAddress = 0x80001800
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self.startAddress = 0x800018A8
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self.wiiVIHook = b'\x7C\xE3\x3B\x78\x38\x87\x00\x34\x38\xA7\x00\x38\x38\xC7\x00\x4C'
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self.gcnVIHook = b'\x7C\x03\x00\x34\x38\x83\x00\x20\x54\x85\x08\x3C\x7C\x7F\x2A\x14\xA0\x03\x00\x00\x7C\x7D\x2A\x14\x20\xA4\x00\x3F\xB0\x03\x00\x00'
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self.wiiGXDrawHook = b'\x3C\xA0\xCC\x01\x38\x00\x00\x61\x3C\x80\x45\x00\x98\x05\x80\x00'
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self.gcnGXDrawHook = b'\x38\x00\x00\x61\x3C\xA0\xCC\x01\x3C\x80\x45\x00\x98\x05\x80\x00'
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self.wiiPADHook = b'\x3A\xB5\x00\x01\x3A\x73\x00\x0C\x2C\x15\x00\x04\x3B\x18\x00\x0C'
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self.gcnPADHook = b'\x3A\xB5\x00\x01\x2C\x15\x00\x04\x3B\x18\x00\x0C\x3B\xFF\x00\x0C'
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self.allocation = None
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self.hookAddress = None
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self.hookType = None
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self.geckoCodes = None
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self.includeAll = False
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self.optimizeList = False
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if self.handlerLength < 0x900:
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self.type = "Mini"
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else:
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self.type = "Full"
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f.seek(0)
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def gecko_parser(self, geckoText, parseAll=False):
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with open(r'{}'.format(geckoText), 'rb') as gecko:
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result = chardet.detect(gecko.read())
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encodeType = result['encoding']
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with open(r'{}'.format(geckoText), 'r', encoding=encodeType) as gecko:
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geckoCodes = ''
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state = None
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for line in gecko.readlines():
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if line in ('', '\n'):
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continue
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if state is None:
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if line.startswith('$') or line.startswith('['):
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state = 'Dolphin'
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else:
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state = 'OcarinaM'
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try:
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if state == 'OcarinaM':
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if parseAll.lower() == 'all':
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geckoLine = re.findall(r'[A-F0-9]{8}[\t\f ][A-F0-9]{8}', line, re.IGNORECASE)[0]
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elif parseAll.lower() == 'active':
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geckoLine = re.findall(r'(?:\*\s*)([A-F0-9]{8}[\t\f ][A-F0-9]{8})', line, re.IGNORECASE)[0]
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else:
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geckoLine = re.findall(r'(?:\*\s*)([A-F0-9]{8}[\t\f ][A-F0-9]{8})', line, re.IGNORECASE)[0]
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else:
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geckoLine = re.findall(r'(?<![$\*])[A-F0-9]{8}[\t\f ][A-F0-9]{8}', line, re.IGNORECASE)[0]
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except IndexError:
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continue
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geckoCodes += geckoLine.replace(' ', '').strip()
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return geckoCodes
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def encrypt_key(self, key: int):
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b1 = key & 0xFF
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b2 = (key >> 8) & 0xFF
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b3 = (key >> 16) & 0xFF
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b4 = (key >> 24) & 0xFF
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b3 ^= b4
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b2 ^= b3
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b1 ^= b2
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return (b1 << 24) | (b2 << 16) | (b3 << 8) | b4
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def encrypt_data(self, key: int):
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self.geckoCodes.codeList.seek(0)
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i = 0
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while True:
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try:
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packet = tools.read_uint32(self.geckoCodes.codeList)
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self.geckoCodes.codeList.seek(-4, 1)
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tools.write_uint32(self.geckoCodes.codeList, (packet^key) & 0xFFFFFFFF)
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key += (i << 3) & 0xFFFFFFFF
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if key > 0xFFFFFFFF:
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key -= 0x100000000
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i += 1
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except:
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break
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class KernelLoader:
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def __init__(self, f):
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self._rawData = BytesIO(f.read())
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self.initDataList = None
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self.gpModDataList = None
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self.gpDiscDataList = None
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self.gpKeyAddrList = None
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self.codeLocation = None
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self.initAddress = None
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self.protect = False
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self.verbosity = 0
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self.quiet = False
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self.encrypt = False
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def set_variables(self, entryPoint: list, baseOffset: int=0):
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self._rawData.seek(0)
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if self.gpModDataList is None:
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return
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sample = self._rawData.read(2)
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while sample:
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if sample == b'GH':
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self._rawData.seek(-2, 1)
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tools.write_uint16(self._rawData, self.gpModDataList[0])
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elif sample == b'GL':
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self._rawData.seek(-2, 1)
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tools.write_uint16(self._rawData, baseOffset + self.gpModDataList[1])
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elif sample == b'IH':
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self._rawData.seek(-2, 1)
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tools.write_uint16(self._rawData, entryPoint[0])
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elif sample == b'IL':
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self._rawData.seek(-2, 1)
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tools.write_uint16(self._rawData, entryPoint[1])
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elif sample == b'KH':
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self._rawData.seek(-2, 1)
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tools.write_uint16(self._rawData, self.gpKeyAddrList[0])
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elif sample == b'KL':
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self._rawData.seek(-2, 1)
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tools.write_uint16(self._rawData, baseOffset + self.gpKeyAddrList[1])
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sample = self._rawData.read(2)
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def complete_data(self, codeHandler: CodeHandler, initpoint: list):
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upperAddr, lowerAddr = ((self.initAddress >> 16) & 0xFFFF, self.initAddress & 0xFFFF)
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key = random.randrange(0x100000000)
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self._rawData.seek(0)
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sample = self._rawData.read(4)
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while sample:
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if sample == b'HEAP': #Found keyword "HEAP". Goes with the resize of the heap
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self._rawData.seek(-4, 1)
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gpModInfoOffset = self._rawData.tell()
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if lowerAddr + gpModInfoOffset > 0x7FFF: #Absolute addressing
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gpModUpperAddr = upperAddr + 1
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else:
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gpModUpperAddr = upperAddr
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if codeHandler.allocation == None:
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codeHandler.allocation = (codeHandler.handlerLength + codeHandler.geckoCodes.size + 7) & -8
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tools.write_uint32(self._rawData, codeHandler.allocation)
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elif sample == b'LSIZ': #Found keyword "LSIZ". Goes with the size of the loader
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self._rawData.seek(-4, 1)
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tools.write_uint32(self._rawData, len(self._rawData.getbuffer()))
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elif sample == b'HSIZ': #Found keyword "HSIZ". Goes with the size of the codeHandler
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self._rawData.seek(-4, 1)
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tools.write_sint32(self._rawData, codeHandler.handlerLength)
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elif sample == b'CSIZ': #Found keyword "CSIZ". Goes with the size of the codes
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self._rawData.seek(-4, 1)
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tools.write_sint32(self._rawData, codeHandler.geckoCodes.size)
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elif sample == b'HOOK': #Found keyword "HOOK". Goes with the codehandler hook
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self._rawData.seek(-4, 1)
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tools.write_uint32(self._rawData, codeHandler.hookAddress)
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elif sample == b'CRPT': #Found keyword "CRPT". Boolean of the encryption
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self._rawData.seek(-4, 1)
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tools.write_bool(self._rawData, self.encrypt, 4)
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elif sample == b'CYPT': #Found keyword "CYPT". Encryption Key
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self._rawData.seek(-4, 1)
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gpKeyOffset = self._rawData.tell()
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if lowerAddr + gpKeyOffset > 0x7FFF: #Absolute addressing
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gpKeyUpperAddr = upperAddr + 1
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else:
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gpKeyUpperAddr = upperAddr
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tools.write_uint32(self._rawData, codeHandler.encrypt_key(key))
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sample = self._rawData.read(4)
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self.gpModDataList = (gpModUpperAddr, gpModInfoOffset)
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self.gpKeyAddrList = (gpKeyUpperAddr, gpKeyOffset)
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self.set_variables(initpoint, lowerAddr)
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if self.encrypt:
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codeHandler.encrypt_data(key)
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def patch_arena(self, codeHandler: CodeHandler, dolFile: DolFile):
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self.complete_data(codeHandler, [(dolFile.entryPoint >> 16) & 0xFFFF, dolFile.entryPoint & 0xFFFF])
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self._rawData.seek(0, 2)
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self._rawData.write(codeHandler._rawData.getvalue() + codeHandler.geckoCodes.codeList.getvalue())
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self._rawData.seek(0)
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kernelData = self._rawData.getvalue()
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status = dolFile.append_text_sections([(kernelData, self.initAddress)])
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if status is True:
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dolFile.entryPoint = self.initAddress
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return status
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def patch_legacy(self, codeHandler: CodeHandler, dolFile: DolFile):
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codeHandler._rawData.seek(0)
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codeHandler.geckoCodes.codeList.seek(0)
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handlerData = codeHandler._rawData.getvalue() + codeHandler.geckoCodes.codeList.getvalue()
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status = dolFile.append_text_sections([(handlerData, codeHandler.initAddress)])
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return status
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def protect_game(self, codeHandler: CodeHandler):
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oldpos = codeHandler.geckoCodes.codeList.tell()
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protectdata = [b'\xC0\x00\x00\x00\x00\x00\x00\x17',
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b'\x7C\x08\x02\xA6\x94\x21\xFF\x70',
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b'\x90\x01\x00\x08\xBC\x61\x00\x0C',
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b'\x48\x00\x00\x0D\x00\xD0\xC0\xDE',
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b'\x00\xD0\xDE\xAD\x7F\xE8\x02\xA6',
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b'\x3B\xDF\x00\x08\x3C\x60\x80\x00',
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b'\x38\x80\x11\x00\x38\xA0\x00\x00',
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b'\x60\x63\x1E\xF8\x7C\x89\x03\xA6',
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b'\x38\x80\x00\x00\x7D\x03\x22\x14',
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b'\x54\xE9\x06\x3E\x89\x08\x00\x08',
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b'\x7D\x3F\x48\xAE\x38\xE7\x00\x01',
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b'\x7C\x08\x48\x40\x41\x82\x00\x0C',
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b'\x60\xA7\x00\x00\x48\x00\x00\x04',
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b'\x54\xE8\x06\x3E\x28\x08\x00\x03',
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b'\x41\x81\x00\x10\x38\x84\x00\x01',
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b'\x42\x00\xFF\xCC\x48\x00\x00\x2C',
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b'\x38\xA0\x00\x08\x7C\x84\x1A\x14',
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b'\x7C\xA9\x03\xA6\x38\x60\x00\x00',
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b'\x38\x84\xFF\xFF\x54\x66\x07\xBE',
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b'\x7C\xDE\x30\xAE\x38\x63\x00\x01',
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b'\x9C\xC4\x00\x01\x42\x00\xFF\xF0',
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b'\xB8\x61\x00\x0C\x80\x01\x00\x08',
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b'\x38\x21\x00\x90\x7C\x08\x03\xA6',
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b'\x4E\x80\x00\x20\x00\x00\x00\x00']
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codeHandler.geckoCodes.codeList.seek(-8, 2)
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for chunk in protectdata:
|
|
codeHandler.geckoCodes.codeList.write(chunk)
|
|
codeHandler.geckoCodes.codeList.write(b'\xF0\x00\x00\x00\x00\x00\x00\x00')
|
|
codeHandler.geckoCodes.codeList.seek(0, 2)
|
|
codeHandler.geckoCodes.size = codeHandler.geckoCodes.codeList.tell()
|
|
codeHandler.geckoCodes.codeList.seek(oldpos)
|
|
|
|
def build(self, parser: tools.CommandLineParser, gctFile, dolFile: DolFile, codeHandler: CodeHandler, tmpdir, dump):
|
|
beginTime = time.time()
|
|
|
|
with open(dump, 'wb+') as final:
|
|
|
|
if dolFile.get_full_size() < 0x100:
|
|
parser.error(tools.color_text('DOL header is corrupted. Please provide a clean file\n', defaultColor=tools.TREDLIT), exit=False)
|
|
return
|
|
|
|
oldStart = dolFile.entryPoint
|
|
|
|
'''Initialize our codes'''
|
|
|
|
foundData = False
|
|
|
|
if '.' in gctFile:
|
|
if os.path.splitext(gctFile)[1].lower() == '.txt':
|
|
with open(os.path.join(tmpdir, 'gct.bin'), 'wb+') as temp:
|
|
temp.write(bytes.fromhex('00D0C0DE'*2 + codeHandler.gecko_parser(gctFile, codeHandler.includeAll) + 'F000000000000000'))
|
|
temp.seek(0)
|
|
codeHandler.geckoCodes = GCT(temp)
|
|
foundData = True
|
|
elif os.path.splitext(gctFile)[1].lower() == '.gct':
|
|
with open(gctFile, 'rb') as gct:
|
|
codeHandler.geckoCodes = GCT(gct)
|
|
foundData = True
|
|
|
|
else:
|
|
with open(os.path.join(tmpdir, 'gct.bin'), 'wb+') as temp:
|
|
temp.write(bytes.fromhex('00D0C0DE'*2))
|
|
|
|
for file in os.listdir(gctFile):
|
|
if os.path.isfile(os.path.join(gctFile, file)):
|
|
if os.path.splitext(file)[1].lower() == '.txt':
|
|
temp.write(bytes.fromhex(codeHandler.gecko_parser(os.path.join(gctFile, file), codeHandler.includeAll)))
|
|
foundData = True
|
|
elif os.path.splitext(file)[1].lower() == '.gct':
|
|
with open(os.path.join(gctFile, file), 'rb') as gct:
|
|
temp.write(gct.read()[8:-8])
|
|
foundData = True
|
|
else:
|
|
print(tools.color_text(f' :: HINT: {file} is not a .txt or .gct file', defaultColor=tools.TYELLOWLIT))
|
|
|
|
temp.write(bytes.fromhex('F000000000000000'))
|
|
temp.seek(0)
|
|
codeHandler.geckoCodes = GCT(temp)
|
|
|
|
if not foundData:
|
|
parser.error(tools.color_text('No valid gecko code file found\n', defaultColor=tools.TREDLIT), exit=False)
|
|
return
|
|
|
|
if self.protect and self.codeLocation == "ARENA":
|
|
self.protect_game(codeHandler)
|
|
|
|
if self.codeLocation == 'AUTO':
|
|
if codeHandler.initAddress + codeHandler.handlerLength + codeHandler.geckoCodes.size > 0x80002FFF:
|
|
self.codeLocation = 'ARENA'
|
|
else:
|
|
self.codeLocation = 'LEGACY'
|
|
|
|
'''Get entrypoint (or BSS midpoint) for insert'''
|
|
|
|
if self.initAddress:
|
|
try:
|
|
dolFile.resolve_address(self.initAddress)
|
|
print(tools.color_text(f'\n :: WARNING: Init address specified for GeckoLoader (0x{self.initAddress:X}) clobbers existing dol sections', defaultColor=tools.TYELLOW))
|
|
except RuntimeError:
|
|
pass
|
|
else:
|
|
self.initAddress = dolFile.seek_nearest_unmapped(dolFile.bssAddress, tools.get_size(self._rawData) + codeHandler.handlerLength + codeHandler.geckoCodes.size)
|
|
self._rawData.seek(0)
|
|
|
|
'''Is insertion legacy?'''
|
|
|
|
if codeHandler.geckoCodes.size <= 0x10:
|
|
dolFile.save(final)
|
|
if self.verbosity >= 1:
|
|
print(tools.color_text('\n :: All codes have been successfully pre patched', defaultColor=tools.TGREENLIT))
|
|
return
|
|
|
|
if self.codeLocation == 'LEGACY':
|
|
codeHandler.allocation = 0x80003000 - (codeHandler.initAddress + codeHandler.handlerLength)
|
|
hooked = determine_codehook(dolFile, codeHandler, True)
|
|
status = self.patch_legacy(codeHandler, dolFile)
|
|
legacy = True
|
|
else:
|
|
hooked = determine_codehook(dolFile, codeHandler, False)
|
|
status = self.patch_arena(codeHandler, dolFile)
|
|
legacy = False
|
|
|
|
if not hooked:
|
|
parser.error(tools.color_text('Failed to find a hook address. Try using option --codehook to use your own address\n', defaultColor=tools.TREDLIT))
|
|
|
|
if status is False:
|
|
parser.error(tools.color_text('Not enough text sections to patch the DOL file! Potentially due to previous mods?\n', defaultColor=tools.TREDLIT), exit=False)
|
|
return
|
|
|
|
dolFile.save(final)
|
|
|
|
if codeHandler.allocation < codeHandler.geckoCodes.size:
|
|
print(tools.color_text('\n :: WARNING: Allocated codespace was smaller than the given codelist. The game will crash if run', defaultColor=tools.TYELLOW))
|
|
|
|
if self.quiet:
|
|
return
|
|
|
|
if codeHandler.allocation > 0x70000:
|
|
print(tools.color_text(f'\n :: WARNING: Allocations beyond 0x70000 will crash certain games. You allocated 0x{codeHandler.allocation:X}', defaultColor=tools.TYELLOW))
|
|
|
|
elif codeHandler.allocation > 0x40000:
|
|
print(tools.color_text(f'\n :: HINT: Recommended allocation limit is 0x40000. You allocated 0x{codeHandler.allocation:X}', defaultColor=tools.TYELLOWLIT))
|
|
|
|
if self.verbosity >= 2:
|
|
print('')
|
|
if legacy == False:
|
|
info = [f' :: Start of game modified to address 0x{self.initAddress:X}',
|
|
f' :: Game function "__init_registers()" located at address 0x{oldStart:X}',
|
|
f' :: Allocation is 0x{codeHandler.allocation:X}; codelist size is 0x{codeHandler.geckoCodes.size:X}',
|
|
f' :: Codehandler hooked at 0x{codeHandler.hookAddress:X}',
|
|
f' :: Codehandler is of type "{codeHandler.type}"',
|
|
f' :: Of the 7 text sections in this DOL file, {len(dolFile.textSections)} are now being used']
|
|
else:
|
|
info = [f' :: Game function "__init_registers()" located at address 0x{oldStart:X}',
|
|
f' :: Allocation is 0x{codeHandler.allocation:X}; codelist size is 0x{codeHandler.geckoCodes.size:X}',
|
|
f' :: Codehandler hooked at 0x{codeHandler.hookAddress:X}',
|
|
f' :: Codehandler is of type "{codeHandler.type}"',
|
|
f' :: Of the 7 text sections in this DOL file, {len(dolFile.textSections)} are now being used']
|
|
for bit in info:
|
|
print(tools.color_text(bit, defaultColor=tools.TGREENLIT))
|
|
|
|
elif self.verbosity >= 1:
|
|
print('')
|
|
info = [f' :: GeckoLoader set at address 0x{self.initAddress:X}',
|
|
f' :: Legacy size is 0x{codeHandler.allocation:X}; codelist size is 0x{codeHandler.geckoCodes.size:X}',
|
|
f' :: Codehandler is of type "{codeHandler.type}"']
|
|
for bit in info:
|
|
print(tools.color_text(bit, defaultColor=tools.TGREENLIT))
|
|
|
|
print(tools.color_text(f'\n :: Compiled in {(time.time() - beginTime):0.4f} seconds!\n', defaultColor=tools.TGREENLIT))
|
|
|
|
|
|
def resource_path(relative_path: str):
|
|
""" Get absolute path to resource, works for dev and for PyInstaller """
|
|
base_path = getattr(sys, '_MEIPASS', os.path.dirname(os.path.abspath(__file__)))
|
|
return os.path.join(base_path, relative_path)
|
|
|
|
def determine_codehook(dolFile: DolFile, codeHandler: CodeHandler, hook=False):
|
|
if codeHandler.hookAddress == None:
|
|
if not assert_code_hook(dolFile, codeHandler):
|
|
return False
|
|
|
|
if hook:
|
|
insert_code_hook(dolFile, codeHandler, codeHandler.hookAddress)
|
|
return True
|
|
|
|
|
|
def assert_code_hook(dolFile: DolFile, codeHandler: CodeHandler):
|
|
for _, address, size, _, in dolFile.textSections:
|
|
dolFile.seek(address, 0)
|
|
sample = dolFile.read(size)
|
|
|
|
if codeHandler.hookType == 'VI':
|
|
result = sample.find(codeHandler.gcnVIHook)
|
|
elif codeHandler.hookType == 'GX':
|
|
result = sample.find(codeHandler.gcnGXDrawHook)
|
|
elif codeHandler.hookType == 'PAD':
|
|
result = sample.find(codeHandler.gcnPADHook)
|
|
else:
|
|
raise NotImplementedError(f'Unsupported hook type specified ({codeHandler.hookType})')
|
|
|
|
if result >= 0:
|
|
dolFile.seek(address, 0)
|
|
dolFile.seek(result, 1)
|
|
else:
|
|
if codeHandler.hookType == 'VI':
|
|
result = sample.find(codeHandler.wiiVIHook)
|
|
elif codeHandler.hookType == 'GX':
|
|
result = sample.find(codeHandler.wiiGXDrawHook)
|
|
elif codeHandler.hookType == 'PAD':
|
|
result = sample.find(codeHandler.wiiPADHook)
|
|
else:
|
|
raise NotImplementedError(f'Unsupported hook type specified ({codeHandler.hookType})')
|
|
|
|
if result >= 0:
|
|
dolFile.seek(address, 0)
|
|
dolFile.seek(result, 1)
|
|
else:
|
|
continue
|
|
|
|
sample = tools.read_uint32(dolFile)
|
|
while sample != 0x4E800020:
|
|
sample = tools.read_uint32(dolFile)
|
|
|
|
dolFile.seek(-4, 1)
|
|
codeHandler.hookAddress = dolFile.tell()
|
|
|
|
return True
|
|
return False
|
|
|
|
def insert_code_hook(dolFile: DolFile, codeHandler: CodeHandler, address: int):
|
|
dolFile.seek(address)
|
|
dolFile.insert_branch(codeHandler.startAddress, address, lk=0) |