255 lines
11 KiB
Python
255 lines
11 KiB
Python
import itertools
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from .TotalSMZ3.Text.Texts import openFile
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def range_union(ranges):
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ret = []
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for rg in sorted([[r.start, r.stop] for r in ranges]):
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begin, end = rg[0], rg[-1]
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if ret and ret[-1][1] > begin:
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ret[-1][1] = max(ret[-1][1], end)
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else:
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ret.append([begin, end])
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return [range(r[0], r[1]) for r in ret]
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# adapted from ips-util for python 3.2 (https://pypi.org/project/ips-util/)
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class IPS_Patch(object):
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def __init__(self, patchDict=None):
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self.records = []
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self.truncate_length = None
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self.max_size = 0
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if patchDict is not None:
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for addr, data in patchDict.items():
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byteData = bytearray(data)
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self.add_record(addr, byteData)
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def toDict(self):
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ret = {}
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for record in self.records:
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if 'rle_count' in record:
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ret[record['address']] = [int.from_bytes(record['data'],'little')]*record['rle_count']
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else:
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ret[record['address']] = [int(b) for b in record['data']]
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return ret
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@staticmethod
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def load(filename):
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loaded_patch = IPS_Patch()
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with openFile(filename, 'rb') as file:
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header = file.read(5)
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if header != b'PATCH':
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raise Exception('Not a valid IPS patch file!')
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while True:
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address_bytes = file.read(3)
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if address_bytes == b'EOF':
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break
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address = int.from_bytes(address_bytes, byteorder='big')
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length = int.from_bytes(file.read(2), byteorder='big')
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rle_count = 0
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if length == 0:
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rle_count = int.from_bytes(file.read(2), byteorder='big')
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length = 1
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data = file.read(length)
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if rle_count > 0:
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loaded_patch.add_rle_record(address, data, rle_count)
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else:
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loaded_patch.add_record(address, data)
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truncate_bytes = file.read(3)
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if len(truncate_bytes) == 3:
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loaded_patch.set_truncate_length(int.from_bytes(truncate_bytes, byteorder='big'))
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return loaded_patch
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@staticmethod
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def create(original_data, patched_data):
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# The heuristics for optimizing a patch were chosen with reference to
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# the source code of Flips: https://github.com/Alcaro/Flips
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patch = IPS_Patch()
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run_in_progress = False
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current_run_start = 0
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current_run_data = bytearray()
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runs = []
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if len(original_data) > len(patched_data):
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patch.set_truncate_length(len(patched_data))
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original_data = original_data[:len(patched_data)]
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elif len(original_data) < len(patched_data):
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original_data += bytes([0] * (len(patched_data) - len(original_data)))
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if original_data[-1] == 0 and patched_data[-1] == 0:
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patch.add_record(len(patched_data) - 1, bytes([0]))
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for index, (original, patched) in enumerate(zip(original_data, patched_data)):
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if not run_in_progress:
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if original != patched:
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run_in_progress = True
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current_run_start = index
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current_run_data = bytearray([patched])
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else:
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if original == patched:
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runs.append((current_run_start, current_run_data))
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run_in_progress = False
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else:
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current_run_data.append(patched)
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if run_in_progress:
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runs.append((current_run_start, current_run_data))
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for start, data in runs:
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if start == int.from_bytes(b'EOF', byteorder='big'):
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start -= 1
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data = bytes([patched_data[start - 1]]) + data
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grouped_byte_data = list([
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{'val': key, 'count': sum(1 for _ in group), 'is_last': False}
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for key,group in itertools.groupby(data)
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])
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grouped_byte_data[-1]['is_last'] = True
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record_in_progress = bytearray()
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pos = start
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for group in grouped_byte_data:
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if len(record_in_progress) > 0:
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# We don't want to interrupt a record in progress with a new header unless
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# this group is longer than two complete headers.
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if group['count'] > 13:
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patch.add_record(pos, record_in_progress)
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pos += len(record_in_progress)
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record_in_progress = bytearray()
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patch.add_rle_record(pos, bytes([group['val']]), group['count'])
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pos += group['count']
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else:
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record_in_progress += bytes([group['val']] * group['count'])
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elif (group['count'] > 3 and group['is_last']) or group['count'] > 8:
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# We benefit from making this an RLE record if the length is at least 8,
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# or the length is at least 3 and we know it to be the last part of this diff.
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# Make sure not to overflow the maximum length. Split it up if necessary.
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remaining_length = group['count']
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while remaining_length > 0xffff:
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patch.add_rle_record(pos, bytes([group['val']]), 0xffff)
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remaining_length -= 0xffff
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pos += 0xffff
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patch.add_rle_record(pos, bytes([group['val']]), remaining_length)
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pos += remaining_length
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else:
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# Just begin a new standard record.
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record_in_progress += bytes([group['val']] * group['count'])
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if len(record_in_progress) > 0xffff:
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patch.add_record(pos, record_in_progress[:0xffff])
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record_in_progress = record_in_progress[0xffff:]
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pos += 0xffff
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# Finalize any record still in progress.
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if len(record_in_progress) > 0:
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patch.add_record(pos, record_in_progress)
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return patch
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def add_record(self, address, data):
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if address == int.from_bytes(b'EOF', byteorder='big'):
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raise RuntimeError('Start address {0:x} is invalid in the IPS format. Please shift your starting address back by one byte to avoid it.'.format(address))
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if address > 0xffffff:
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raise RuntimeError('Start address {0:x} is too large for the IPS format. Addresses must fit into 3 bytes.'.format(address))
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if len(data) > 0xffff:
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raise RuntimeError('Record with length {0} is too large for the IPS format. Records must be less than 65536 bytes.'.format(len(data)))
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if len(data) == 0: # ignore empty records
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return
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record = {'address': address, 'data': data, 'size':len(data)}
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self.appendRecord(record)
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def add_rle_record(self, address, data, count):
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if address == int.from_bytes(b'EOF', byteorder='big'):
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raise RuntimeError('Start address {0:x} is invalid in the IPS format. Please shift your starting address back by one byte to avoid it.'.format(address))
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if address > 0xffffff:
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raise RuntimeError('Start address {0:x} is too large for the IPS format. Addresses must fit into 3 bytes.'.format(address))
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if count > 0xffff:
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raise RuntimeError('RLE record with length {0} is too large for the IPS format. RLE records must be less than 65536 bytes.'.format(count))
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if len(data) != 1:
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raise RuntimeError('Data for RLE record must be exactly one byte! Received {0}.'.format(data))
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record = {'address': address, 'data': data, 'rle_count': count, 'size': count}
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self.appendRecord(record)
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def appendRecord(self, record):
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sz = record['address'] + record['size']
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if sz > self.max_size:
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self.max_size = sz
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self.records.append(record)
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def set_truncate_length(self, truncate_length):
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self.truncate_length = truncate_length
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def encode(self):
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encoded_bytes = bytearray()
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encoded_bytes += 'PATCH'.encode('ascii')
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for record in self.records:
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encoded_bytes += record['address'].to_bytes(3, byteorder='big')
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if 'rle_count' in record:
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encoded_bytes += (0).to_bytes(2, byteorder='big')
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encoded_bytes += record['rle_count'].to_bytes(2, byteorder='big')
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else:
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encoded_bytes += len(record['data']).to_bytes(2, byteorder='big')
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encoded_bytes += record['data']
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encoded_bytes += 'EOF'.encode('ascii')
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if self.truncate_length is not None:
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encoded_bytes += self.truncate_length.to_bytes(3, byteorder='big')
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return encoded_bytes
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# save patch into IPS file
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def save(self, path):
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with open(path, 'wb') as ipsFile:
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ipsFile.write(self.encode())
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# applies patch on an existing bytearray
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def apply(self, in_data):
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out_data = bytearray(in_data)
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for record in self.records:
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if record['address'] >= len(out_data):
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out_data += bytes([0] * (record['address'] - len(out_data) + 1))
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if 'rle_count' in record:
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out_data[record['address'] : record['address'] + record['rle_count']] = b''.join([record['data']] * record['rle_count'])
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else:
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out_data[record['address'] : record['address'] + len(record['data'])] = record['data']
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if self.truncate_length is not None:
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out_data = out_data[:self.truncate_length]
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return out_data
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# applies patch on an opened file
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def applyFile(self, handle):
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for record in self.records:
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handle.seek(record['address'])
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if 'rle_count' in record:
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handle.write(bytearray(b'').join([record['data']]) * record['rle_count'])
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else:
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handle.write(record['data'])
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# appends an IPS_Patch on top of this one
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def append(self, patch):
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if patch.truncate_length is not None and (self.truncate_length is None or patch.truncate_length > self.truncate_length):
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self.set_truncate_length(patch.truncate_length)
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for record in patch.records:
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if record['size'] > 0: # ignore empty records
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self.appendRecord(record)
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# gets address ranges written to by this patch
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def getRanges(self):
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def getRange(record):
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return range(record['address'], record['address']+record['size'])
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return range_union([getRange(record) for record in self.records])
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