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LHTool.py
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#!/usr/bin/python
# -*- coding: latin-1 -*-
# Reggie Next - New Super Mario Bros. Wii / New Super Mario Bros 2 Level Editor
# Milestone 2 Alpha 4
# Copyright (C) 2009-2014 Treeki, Tempus, angelsl, JasonP27, Kamek64,
# MalStar1000, RoadrunnerWMC
# This file is part of Reggie Next.
# Reggie Next is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
# Reggie Next is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
# You should have received a copy of the GNU General Public License
# along with Reggie Next. If not, see <http://www.gnu.org/licenses/>.
# LHTool.py
# Pure-Python decompressing functions for LH-compressed files
# BONUS: Contains command-line functions.
# Originally written by Treeki <treeki@gmail.com> in C++.
################################################################
################################################################
import ctypes
import os
import sys
u8 = ctypes.c_ubyte
u16 = ctypes.c_ushort
u32 = ctypes.c_uint
class LHContext():
"""
A storage place for LH data while decompressing
"""
def __init__(self):
self.buf1 = bytearray(0x800)
self.buf2 = bytearray(0x80)
def getDecompressedSize(compData):
"""
Reads the header of the compressed data to predict the
data size once decompressed
"""
outSize = compData[1] | (compData[2] << 8) | (compData[3] << 16)
if outSize == 0:
outSize = compData[4] | (compData[5] << 8) | (compData[6] << 16) | (compData[7] << 24)
return outSize
def loadLHPiece(buf, inData, unk):
"""
Unknown. Has something to do with reading the LH header(s)?
"""
r0, r4, r6, r7, r9, r10, r11, r12, r30 = \
[u32() for i in range(9)]
inOffset, dataSize, copiedAmount = \
[u32() for i in range(3)]
r6.value = 1 << unk.value;
r7.value = 2
r9.value = 1
r10.value = 0
r11.value = 0
r12.value = r6.value - 1
r30.value = r6.value << 1
if unk.value <= 8:
r6.value = inData[0]
inOffset.value = 1
copiedAmount.value = 1
else:
r6.value = inData[0] | (inData[1] << 8)
inOffset.value = 2
copiedAmount.value = 2
dataSize.value = (r6.value + 1) << 2
while copiedAmount.value < dataSize.value:
r6.value = unk.value + 7
r6.value = (r6.value - r11.value) >> 3
if r11.value < unk.value:
for i in range(r6.value):
r4.value = inData[inOffset.value]
r10.value <<= 8
r10.value |= r4.value
copiedAmount.value += 1
inOffset.value += 1
r11.value += r6.value << 3
if r9.value < r30.value:
r0.value = r11.value - unk.value
r9.value += 1
r0.value = r10.value >> r0.value
r0.value &= r12.value
buf[r7.value] = r0.value >> 8
buf[r7.value + 1] = r0.value & 0xFF
r7.value += 2
r11.value -= unk.value
return copiedAmount.value
def decompressLH(inData):
"""
Decompresses LH data. Argument should be a
bytes or bytearray object.
"""
# Make a LHContext
context = LHContext()
# Make an in buffer (must be safely mutable)
inBuf = bytearray(inData)
# Make an out buffer
outBuf = bytearray(getDecompressedSize(inBuf))
outIndex = u32(0)
outSize = u32(inBuf[1] | (inBuf[2] << 8) | (inBuf[3] << 16))
inBuf = inBuf[4:]
if outSize.value == 0:
outSize = inBuf[0] | (inBuf[1] << 8) | (inBuf[2] << 16) | (inBuf[3] << 24)
inBuf = inBuf[4:]
inBuf = inBuf[loadLHPiece(context.buf1, inBuf, u8(9)):]
inBuf = inBuf[loadLHPiece(context.buf2, inBuf, u8(5)):]
r0 = u32(0x10)
r3 = u32(0x100)
r4 = u32(0)
r5 = u32(0)
r6 = u32(0)
r7, r8, r9, r10, r11, r12, r25 = [u32() for i in range(7)]
flag = False
while outIndex.value < outSize.value:
r12.value = 2 # Used as an offset into context.buf1
r7.value = r4.value # Used as an offset into inBuf
enter = True
while flag or enter:
enter = False
if r6.value == 0:
r5.value = inBuf[r7.value]
r6.value = 8
r4.value += 1
r7.value += 1
r11.value = (context.buf1[r12.value] << 8) | context.buf1[r12.value + 1]
r8.value = r5.value >> (r6.value - 1)
r6.value -= 1
r9.value = r8.value & 1
r10.value = r11.value & 0x7F
r8.value = r3.value >> r9.value # sraw?
r8.value = r11.value & r8.value
flag = (r8.value == 0)
r8.value = (r10.value + 1) << 1
r9.value += r8.value
if flag:
r12.value &= ~3
r8.value = r9.value << 1
r12.value += r8.value
else:
r8.value = r12.value & ~3
r7.value = r9.value << 1
r7.value = (context.buf1[r8.value + r7.value] << 8) | context.buf1[r8.value + r7.value + 1]
if r7.value < 0x100:
outBuf[outIndex.value] = u8(r7.value).value
outIndex.value += 1
continue
# block copy?
r7.value &= 0xFF
r25.value = 2
r7.value += 3
r7.value &= 0xFFFF # r7 is really an ushort, probably
r8.value = r4.value # used as an offset into inBuf
enter = True
while enter or flag:
enter = False
if r6.value == 0:
r5.value = inBuf[r8.value]
r6.value = 8
r4.value += 1
r8.value += 1
r12.value = (context.buf2[r25.value] << 8) | context.buf2[r25.value + 1]
r9.value = r5.value >> (r6.value - 1)
r6.value -= 1
r10.value = r9.value & 1
r11.value = r12.value & 7
r9.value = r0.value >> r10.value # sraw
r9.value = r12.value & r9.value
flag = (r9.value == 0)
r9.value = r11.value + 1
r9.value <<= 1
r10.value += r9.value
if flag:
r25.value &= ~3
r9.value = r10.value << 1
r25.value += r9.value
else:
r9.value = r25.value & ~3
r8.value = r10.value << 1
r11.value = (context.buf2[r9.value + r8.value] << 8) | context.buf2[r9.value + r8.value + 1]
r10.value = 0
if r11.value != 0:
r8.value = r4.value # offset into inBuf
r10.value = 1
r11.value -= 1
r9.value = r11.value & 0xFFFF
while r9.value != 0:
r10.value = (r10.value << 1) & 0xFFFF
if r6.value == 0:
r5.value = inBuf[r8.value]
r6.value = 8
r4.value += 1
r8.value += 1
r6.value -= 1
r9.value = r5.value >> r6.value
r9.value &= 1
r10.value |= r9.value
r11.value -= 1
r9.value = r11.value & 0xFFFF
if (outIndex.value + r7.value) > outSize.value:
r7.value = outSize.value - outIndex.value
r7.value &= 0xFFFF
r9.value = r10.value + 1
r8.value = outIndex.value # offset into outBuf
r10.value = r9.value & 0xFFFF
# Block copy loop
r9.value = r7.value & 0xFFFF
r7.value -= 1
while r9.value != 0:
r9.value = outIndex.value - r10.value
outIndex.value += 1
outBuf[r8.value] = outBuf[r9.value]
r8.value += 1
r9.value = r7.value & 0xFFFF
r7.value -= 1
return bytes(outBuf)
def isLHCompressed(data):
"""
Returns True if it appears that the data is LH-compressed.
"""
# The only way to tell if a file is LH-compressed is that
# it appears that every LH file begins with an @.
# Since U8 archives begin with U\xAA8-, they will
# never trigger this.
return data.startswith(b'@')
def main():
"""
Main script function for command-line usage
"""
# Print message
print('LH Tool by RoadrunnerWMC')
print('For the Reggie! Next Level Editor')
print('Originally LH Decompressor by Treeki')
print('Converted to Python by RoadrunnerWMC')
print('Compressing not yet implemented!')
# Argument parsing!
argv = list(sys.argv)
selfName = argv[0]
argv = argv[1:]
argsAreCorrect = ('-d' in argv) or ('-c' in argv)
if ('-d' in argv) and ('-c' in argv):
argsAreCorrect = False
if len(argv) != 3:
argsAreCorrect = False
if not argsAreCorrect:
errorTxt = '' \
'Command-line arguments are missing or wrong. Usage:\n' \
'To decompress a file: ' + selfName + ' -d compFile.bin decompFile.bin\n' \
'To compress a file: ' + selfName + ' -c decompFile.bin compFile.bin\n'
raise ValueError(errorTxt)
if '-d' in argv:
mode = 'd'
argv.remove('-d')
else:
mode = 'c'
argv.remove('-c')
inFileName = argv[0]
outFileName = argv[1]
# Open the file
with open(inFileName, 'rb') as inFile:
inData = inFile.read()
# Do stuff with the data
if mode == 'd':
# Decompress
outData = decompressLH(inData)
else:
# Compress
raise NotImplementedError('Compression is not yet implemented!!!')
# Save the file
with open(outFileName, 'wb') as outFile:
outFile.write(outData)
if __name__ == '__main__': main()