mirror of
https://github.com/vivisect/vivisect
synced 2026-06-08 18:04:23 +00:00
724 lines
22 KiB
Python
724 lines
22 KiB
Python
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import struct
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class v_enum(object):
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def __init__(self):
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object.__setattr__(self, "_vs_reverseMap", {})
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def __setattr__(self, name, value):
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'''if duplicate values, last one wins!'''
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self._vs_reverseMap[value] = name
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return object.__setattr__(self, name, value)
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def vsReverseMapping(self, val, default=None):
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'''Maps an integer to its name. Returns default if not found'''
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return self._vs_reverseMap.get(val, default)
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class v_bitmask(object):
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def __init__(self):
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object.__setattr__(self, "_vs_reverseMap", {})
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def __setattr__(self, name, value):
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self._vs_reverseMap[value] = name
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return object.__setattr__(self, name, value)
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def vsReverseMapping(self, val, default=None):
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'''Returns a list of names where apply the AND of the mask and val is non-zero'''
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return [ v for k,v in self._vs_reverseMap.items() if (val&k) != 0 ]
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class v_base(object):
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def __init__(self):
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self._vs_meta = {}
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def vsGetMeta(self, name, defval=None):
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return self._vs_meta.get(name, defval)
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def vsSetMeta(self, name, value):
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self._vs_meta[name] = value
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# Sub-classes (primitive base, or VStruct must have these
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def vsParse(self, bytes): return NotImplemented
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def vsCalculate(self): pass
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def vsIsPrim(self): return NotImplemented
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def vsGetTypeName(self): return NotImplemented
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class v_prim(v_base):
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def __init__(self):
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v_base.__init__(self)
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# Used by base len(),vsGetFormat, etc...
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self._vs_value = None
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self._vs_length = None
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self._vs_fmt = None
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self._vs_align = None
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def vsIsPrim(self):
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return True
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def vsGetTypeName(self):
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return self.__class__.__name__
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def vsParse(self, bytes, offset=0):
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"""
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Parser for primitives which assumes we are
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calling parse directly.
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"""
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return NotImplemented
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def vsParseFd(self, fd):
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# Most primitives should be able to simply use this...
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fbytes = fd.read(self._vs_length)
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if len(fbytes) != self._vs_length:
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raise Exception('Not enough data in fd!')
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self.vsParse(fbytes)
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def vsEmit(self):
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'''
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Return the actual bytes which represent this field
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'''
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return NotImplemented
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def vsGetValue(self):
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"""
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Get the type specific value for this field.
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(Used by the structure dereference method to return
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a python native for the field by name)
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"""
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return self._vs_value
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def vsSetValue(self, value):
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"""
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Set the type specific value for this field.
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"""
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self._vs_value = value
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def vsSetLength(self, size):
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'''
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Set the length of this primitive type. This may be used to
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dynamically update the length of string fields, etc...
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'''
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return NotImplemented
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def __repr__(self):
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return repr(self.vsGetValue())
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def __len__(self):
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return self._vs_length
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def __str__(self):
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return str(self.vsGetValue())
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num_fmts = {
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(True,1):'>B',
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(True,2):'>H',
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(True,4):'>I',
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(True,8):'>Q',
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(False,1):'<B',
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(False,2):'<H',
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(False,4):'<I',
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(False,8):'<Q',
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}
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class v_number(v_prim):
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_vs_length = 1
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def __init__(self, value=0, bigend=False):
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v_prim.__init__(self)
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self._vs_bigend = bigend
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self._vs_value = value
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self._vs_length = self.__class__._vs_length
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self._vs_fmt = num_fmts.get( (bigend, self._vs_length) )
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def vsGetValue(self):
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return self._vs_value
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def vsParse(self, fbytes, offset=0):
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'''
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Parse the given numeric type from the given bytes...
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'''
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sizeoff = offset + self._vs_length
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if self._vs_fmt != None:
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b = fbytes[ offset : sizeoff ]
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self._vs_value = struct.unpack(self._vs_fmt, b)[0]
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else:
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r = []
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for i in range(self._vs_length):
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r.append( ord( fbytes[ offset + i ] ) )
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if not self._vs_bigend:
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r.reverse()
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self._vs_value = 0
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for x in r:
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self._vs_value = (self._vs_value << 8) + x
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return sizeoff
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def vsEmit(self):
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'''
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Emit the bytes for this numeric type...
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'''
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if self._vs_fmt != None:
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return struct.pack(self._vs_fmt, self._vs_value)
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r = []
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for i in range(self._vs_length):
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r.append( chr( (self._vs_value >> (i*8)) & 0xff) )
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if self._vs_bigend:
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r.reverse()
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return ''.join(r)
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def vsSetValue(self, value):
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"""
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Assure that the value is long() able for all numeric types.
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"""
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self._vs_value = long(value)
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def __int__(self):
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return int(self._vs_value)
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def __long__(self):
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return long(self._vs_value)
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##################################################################
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# Implement the number API
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def __add__(self, other): return long(self) + long(other)
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def __sub__(self, other): return long(self) - long(other)
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def __mul__(self, other): return long(self) * long(other)
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def __div__(self, other): return long(self) / long(other)
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def __floordiv__(self, other): return long(self) // long(other)
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def __mod__(self, other): return long(self) % long(other)
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def __divmod__(self, other): return divmod(long(self), long(other))
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def __pow__(self, other, modulo=None): return pow(long(self), long(other), modulo)
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def __lshift__(self, other): return long(self) << long(other)
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def __rshift__(self, other): return long(self) >> long(other)
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def __and__(self, other): return long(self) & long(other)
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def __xor__(self, other): return long(self) ^ long(other)
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def __or__(self, other): return long(self) | long(other)
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# Operator swapped variants
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def __radd__(self, other): return long(other) + long(self)
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def __rsub__(self, other): return long(other) - long(self)
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def __rmul__(self, other): return long(other) * long(self)
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def __rdiv__(self, other): return long(other) / long(self)
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def __rfloordiv__(self, other): return long(other) // long(self)
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def __rmod__(self, other): return long(other) % long(self)
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def __rdivmod__(self, other): return divmod(long(other), long(self))
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def __rpow__(self, other, modulo=None): return pow(long(other), long(self), modulo)
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def __rlshift__(self, other): return long(other) << long(self)
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def __rrshift__(self, other): return long(other) >> long(self)
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def __rand__(self, other): return long(other) & long(self)
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def __rxor__(self, other): return long(other) ^ long(self)
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def __ror__(self, other): return long(other) | long(self)
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# Inplace variants
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def __iadd__(self, other): self.vsSetValue(self+other); return self
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def __isub__(self, other): self.vsSetValue(self - other); return self
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def __imul__(self, other): self.vsSetValue(self*other); return self
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def __idiv__(self, other): self.vsSetValue(self/other); return self
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def __ifloordiv__(self, other): self.vsSetValue(self // other); return self
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def __imod__(self, other): self.vsSetValue(self % other); return self
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def __ipow__(self, other, modulo=None): self.vsSetValue(pow(self, other, modulo)); return self
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def __ilshift__(self, other): self.vsSetValue(self << other); return self
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def __irshift__(self, other): self.vsSetValue(self >> other); return self
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def __iand__(self, other): self.vsSetValue(self & other); return self
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def __ixor__(self, other): self.vsSetValue(self ^ other); return self
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def __ior__(self, other): self.vsSetValue(self | other); return self
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# operator helpers
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def __neg__(self): return -(long(self))
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def __pos__(self): return +(long(self))
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def __abs__(self): return abs(long(self))
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def __invert__(self): return ~(long(self))
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# index use helper
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def __index__(self): return long(self)
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def __coerce__(self, other):
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try:
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return long(self),long(other)
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except Exception, e:
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return NotImplemented
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# Print helpers
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def __hex__(self): return hex(long(self))
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def __oct__(self): return oct(long(self))
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class v_uint8(v_number):
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_vs_builder = True
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_vs_length = 1
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class v_uint16(v_number):
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_vs_builder = True
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_vs_length = 2
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class v_uint24(v_number):
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_vs_builder = True
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_vs_length = 3
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class v_uint32(v_number):
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_vs_builder = True
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_vs_length = 4
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class v_uint64(v_number):
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_vs_builder = True
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_vs_length = 8
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class v_int8(v_number):
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_vs_builder = True
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_vs_length = 1
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class v_int16(v_number):
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_vs_builder = True
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_vs_length = 2
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class v_int24(v_number):
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_vs_builder = True
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_vs_length = 3
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class v_int32(v_number):
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_vs_builder = True
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_vs_length = 4
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class v_int64(v_number):
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_vs_builder = True
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_vs_length = 8
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pointersize = struct.calcsize("P")
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class v_size_t(v_number):
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_vs_builder = True
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_vs_length = pointersize
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def __repr__(self):
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return "0x%.8x" % self._vs_value
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class v_ptr(v_size_t):
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pass
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class v_ptr32(v_ptr):
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_vs_builder = True
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_vs_length = 4
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class v_ptr64(v_ptr):
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_vs_builder = True
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_vs_length = 8
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float_fmts = {
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(True,4):'>f',
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(True,8):'>d',
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(False,4):'<f',
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(False,8):'<d',
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}
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class v_float(v_prim):
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_vs_length = 4
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def __init__(self, value=0.0, bigend=False):
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v_prim.__init__(self)
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self._vs_bigend = bigend
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self._vs_value = value
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self._vs_length = self.__class__._vs_length
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self._vs_fmt = float_fmts.get( (bigend, self._vs_length) )
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def vsSetValue(self, value):
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"""
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Assure that the value is float() able for all numeric types.
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"""
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self._vs_value = float(value)
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def vsGetValue(self):
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return self._vs_value
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def vsParse(self, fbytes, offset=0):
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'''
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Parse the given numeric type from the given bytes...
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'''
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sizeoff = offset + self._vs_length
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if self._vs_fmt != None:
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b = fbytes[ offset : sizeoff ]
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self._vs_value = struct.unpack(self._vs_fmt, b)[0]
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else:
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r = []
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for i in range(self._vs_length):
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r.append( ord( fbytes[ offset + i ] ) )
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if not self._vs_bigend:
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r.reverse()
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self._vs_value = 0
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for x in r:
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self._vs_value = (self._vs_value << 8) + x
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return sizeoff
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def vsEmit(self):
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'''
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Emit the bytes for this numeric type...
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'''
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if self._vs_fmt != None:
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return struct.pack(self._vs_fmt, self._vs_value)
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r = []
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for i in range(self._vs_length):
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r.append( chr( (self._vs_value >> (i*8)) & 0xff) )
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if self._vs_bigend:
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r.reverse()
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return ''.join(r)
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def __int__(self):
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return int(self._vs_value)
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def __long__(self):
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return long(self._vs_value)
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def __add__(self, other): return double(self) + double(other)
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def __sub__(self, other): return double(self) - double(other)
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def __mul__(self, other): return double(self) * double(other)
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def __div__(self, other): return double(self) / double(other)
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def __floordiv__(self, other): return double(self) // double(other)
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def __mod__(self, other): return double(self) % double(other)
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def __divmod__(self, other): return divmod(double(self), double(other))
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def __pow__(self, other, modulo=None): return pow(double(self), double(other), modulo)
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def __lshift__(self, other): return double(self) << double(other)
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def __rshift__(self, other): return double(self) >> double(other)
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def __and__(self, other): return double(self) & double(other)
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def __xor__(self, other): return double(self) ^ double(other)
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def __or__(self, other): return double(self) | double(other)
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# Operator swapped variants
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def __radd__(self, other): return double(other) + double(self)
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def __rsub__(self, other): return double(other) - double(self)
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def __rmul__(self, other): return double(other) * double(self)
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def __rdiv__(self, other): return double(other) / double(self)
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def __rfloordiv__(self, other): return double(other) // double(self)
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def __rmod__(self, other): return double(other) % double(self)
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def __rdivmod__(self, other): return divmod(double(other), double(self))
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def __rpow__(self, other, modulo=None): return pow(double(other), double(self), modulo)
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def __rlshift__(self, other): return double(other) << double(self)
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def __rrshift__(self, other): return double(other) >> double(self)
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def __rand__(self, other): return double(other) & double(self)
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def __rxor__(self, other): return double(other) ^ double(self)
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def __ror__(self, other): return double(other) | double(self)
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# Inplace variants
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def __iadd__(self, other): self.vsSetValue(self+other); return self
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def __isub__(self, other): self.vsSetValue(self - other); return self
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def __imul__(self, other): self.vsSetValue(self*other); return self
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def __idiv__(self, other): self.vsSetValue(self/other); return self
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def __ifloordiv__(self, other): self.vsSetValue(self // other); return self
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def __imod__(self, other): self.vsSetValue(self % other); return self
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def __ipow__(self, other, modulo=None): self.vsSetValue(pow(self, other, modulo)); return self
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def __ilshift__(self, other): self.vsSetValue(self << other); return self
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def __irshift__(self, other): self.vsSetValue(self >> other); return self
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def __iand__(self, other): self.vsSetValue(self & other); return self
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def __ixor__(self, other): self.vsSetValue(self ^ other); return self
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def __ior__(self, other): self.vsSetValue(self | other); return self
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# operator helpers
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def __neg__(self): return -(double(self))
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def __pos__(self): return +(double(self))
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def __abs__(self): return abs(double(self))
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def __invert__(self): return ~(double(self))
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# index use helper
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def __index__(self): return double(self)
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def __coerce__(self, other):
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try:
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return double(self),double(other)
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except Exception, e:
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return NotImplemented
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# Print helpers
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def __hex__(self): return hex(double(self))
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def __oct__(self): return oct(double(self))
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class v_double(v_float):
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_vs_length = 8
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class v_bytes(v_prim):
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'''
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v_bytes is used for fixed width byte fields.
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'''
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_vs_builder = True
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def __init__(self, size=0, vbytes=None):
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v_prim.__init__(self)
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if vbytes == None:
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vbytes = '\x00' * size
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self._vs_length = len(vbytes)
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self._vs_value = vbytes
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self._vs_align = 1
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self._vs_fmt = '%ds' % self._vs_length
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def vsSetValue(self, val):
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if len(val) != self._vs_length:
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raise Exception('v_bytes field set to wrong length!')
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self._vs_value = val
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def vsParse(self, fbytes, offset=0):
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offend = offset + self._vs_length
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self._vs_value = fbytes[offset : offend]
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return offend
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def vsEmit(self):
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return self._vs_value
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def vsSetLength(self, size):
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size = int(size)
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self._vs_length = size
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self._vs_fmt = '%ds' % size
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# Either chop or expand my string...
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b = self._vs_value[:size]
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self._vs_value = b.ljust(size, '\x00')
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def __repr__(self):
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return self._vs_value.encode('hex')
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class v_str(v_prim):
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'''
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A string placeholder class which will automagically return
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up to a null terminator (and will keep it's size by null
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padding when assigned to)
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'''
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_vs_builder = True
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def __init__(self, size=4, val=''):
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v_prim.__init__(self)
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self._vs_length = size
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self._vs_fmt = '%ds' % size
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self._vs_value = val.ljust(size, '\x00')
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self._vs_align = 1
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|
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def vsParse(self, fbytes, offset=0):
|
|
offend = offset + self._vs_length
|
|
self._vs_value = fbytes[offset : offend]
|
|
return offend
|
|
|
|
def vsEmit(self):
|
|
return self._vs_value
|
|
|
|
def vsGetValue(self):
|
|
s = self._vs_value.split("\x00")[0]
|
|
return s
|
|
|
|
def vsSetValue(self, val):
|
|
self._vs_value = val.ljust(self._vs_length, '\x00')
|
|
|
|
def vsSetLength(self, size):
|
|
size = int(size)
|
|
self._vs_length = size
|
|
self._vs_fmt = '%ds' % size
|
|
# Either chop or expand my string...
|
|
b = self._vs_value[:size]
|
|
self._vs_value = b.ljust(size, '\x00')
|
|
|
|
class v_zstr(v_prim):
|
|
'''
|
|
A string placeholder class which will automagically return
|
|
up to a null terminator dynamically.
|
|
'''
|
|
|
|
_vs_builder = True
|
|
|
|
def __init__(self, val='', align=1):
|
|
v_prim.__init__(self)
|
|
self._vs_align = align
|
|
self.vsParse(val+'\x00')
|
|
|
|
def vsParse(self, fbytes, offset=0):
|
|
nulloff = fbytes.find('\x00', offset)
|
|
if nulloff == -1:
|
|
raise Exception('v_zstr found no NULL terminator!')
|
|
|
|
# align things correctly
|
|
diff = self._vs_align - ((nulloff-offset) % self._vs_align)
|
|
self._vs_align_pad = diff
|
|
nulloff += diff
|
|
|
|
self._vs_value = fbytes[offset : nulloff]
|
|
self._vs_length = len(self._vs_value)
|
|
return nulloff
|
|
|
|
def vsEmit(self):
|
|
return self._vs_value
|
|
|
|
def vsGetValue(self):
|
|
return self._vs_value[:-self._vs_align_pad]
|
|
|
|
def vsSetValue(self, val):
|
|
# FIXME: just call vsParse?
|
|
length = len(val)
|
|
diff = self._vs_align - (length % self._vs_align)
|
|
self._vs_value = val + '\x00'*(diff)
|
|
self._vs_length = len(self._vs_value)
|
|
self._vs_align_pad = diff
|
|
|
|
def vsSetLength(self, size):
|
|
raise Exception('Cannot vsSetLength on v_zstr! (its dynamic)')
|
|
|
|
class v_wstr(v_str):
|
|
'''
|
|
Unicode variant of the above string class
|
|
|
|
NOTE: the size paramater is in WCHARs!
|
|
'''
|
|
|
|
_vs_builder = True
|
|
|
|
def __init__(self, size=4, encode='utf-16le', val=''):
|
|
v_prim.__init__(self)
|
|
b = val.ljust(size, '\x00').encode(encode)
|
|
self._vs_length = len(b)
|
|
self._vs_value = b
|
|
self._vs_encode = encode
|
|
self._vs_align = 2
|
|
|
|
def vsParse(self, fbytes, offset=0):
|
|
offend = offset + self._vs_length
|
|
self._vs_value = fbytes[offset : offend]
|
|
return offend
|
|
|
|
def vsEmit(self):
|
|
return self._vs_value
|
|
|
|
def vsGetValue(self):
|
|
cstr = self._vs_value.decode(self._vs_encode)
|
|
return cstr.split('\x00')[0]
|
|
|
|
def vsSetValue(self, val):
|
|
rbytes = val.encode(self._vs_encode)
|
|
self._vs_value = rbytes.ljust(len(self), '\x00')
|
|
|
|
def vsGetValue(self):
|
|
s = self._vs_value.decode(self._vs_encode)
|
|
s = s.split("\x00")[0]
|
|
return s
|
|
|
|
class v_zwstr(v_str):
|
|
'''
|
|
Unicode variant of the above zstring class
|
|
'''
|
|
|
|
_vs_builder = True
|
|
|
|
def __init__(self, encode='utf-16le', val='', align=2):
|
|
v_prim.__init__(self)
|
|
self._vs_encode = encode
|
|
self._vs_align = align
|
|
self.vsParse(val+'\x00\x00')
|
|
|
|
def vsParse(self, fbytes, offset=0):
|
|
nulloff = offset
|
|
while nulloff < len(fbytes):
|
|
nulloff = fbytes.find('\x00\x00', nulloff)
|
|
if nulloff == -1:
|
|
raise Exception('v_wzstr found no NULL terminator!')
|
|
#make sure that this is acutally the null word by checking if
|
|
# the alignment is correct
|
|
if ((nulloff-offset) % self._vs_align) == 0:
|
|
#yes, found it
|
|
break
|
|
#advance nulloff by 1 & keep looking
|
|
nulloff += 1
|
|
|
|
# align things correctly
|
|
diff = self._vs_align - ((nulloff-offset) % self._vs_align)
|
|
self._vs_align_pad = diff
|
|
nulloff += diff
|
|
|
|
self._vs_value = fbytes[offset : nulloff]
|
|
self._vs_length = len(self._vs_value)
|
|
return nulloff
|
|
|
|
#offend = offset + self._vs_length
|
|
#self._vs_value = fbytes[offset : offend]
|
|
#return offend
|
|
|
|
def vsEmit(self):
|
|
return self._vs_value
|
|
|
|
def vsGetValue(self):
|
|
cstr = self._vs_value.decode(self._vs_encode)
|
|
return cstr.split('\x00')[0]
|
|
|
|
def vsSetValue(self, val):
|
|
#rbytes = val.encode(self._vs_encode)
|
|
#self._vs_value = rbytes.ljust(len(self), '\x00')
|
|
|
|
# FIXME: just call vsParse?
|
|
rbytes = val.encode(self._vs_encode)
|
|
length = len(rbytes)
|
|
diff = self._vs_align - (length % self._vs_align)
|
|
self._vs_value = rbytes + '\x00'*(diff)
|
|
self._vs_value = rbytes.ljust(len(self), '\x00')
|
|
self._vs_length = len(self._vs_value)
|
|
self._vs_align_pad = diff
|
|
|
|
def vsSetLength(self, size):
|
|
raise Exception('Cannot vsSetLength on v_zwstr! (its dynamic)')
|
|
|
|
|
|
|
|
|
|
|
|
class GUID(v_prim):
|
|
|
|
_vs_builder = True
|
|
|
|
def __init__(self, guidstr=None):
|
|
"""
|
|
Construct a new GUID primitive. You may specify a GUID string in the
|
|
constructor to populate initial values.
|
|
"""
|
|
v_prim.__init__(self)
|
|
self._vs_length = 16
|
|
self._vs_value = "\x00" * 16
|
|
self._vs_fmt = "16s"
|
|
self._guid_fields = (0,0,0,0,0,0,0,0,0,0,0)
|
|
if guidstr != None:
|
|
self._parseGuidStr(guidstr)
|
|
|
|
def vsParse(self, fbytes, offset=0):
|
|
offend = offset + self._vs_length
|
|
self._guid_fields = struct.unpack("<IHH8B", fbytes[offset:offend])
|
|
return offend
|
|
|
|
def vsEmit(self):
|
|
return struck.pack("<IHH8B", *self._guid_fields)
|
|
|
|
def _parseGuidStr(self, gstr):
|
|
gstr = gstr.replace("{","")
|
|
gstr = gstr.replace("}","")
|
|
gstr = gstr.replace("-","")
|
|
bytes = gstr.decode("hex")
|
|
# Totally cheating... ;)
|
|
self._guid_fields = struct.unpack(">IHH8B", bytes)
|
|
|
|
def vsSetValue(self, guidstr):
|
|
self._parseGuidStr(guidstr)
|
|
|
|
def vsGetValue(self):
|
|
return repr(self)
|
|
|
|
def __repr__(self):
|
|
base = "{%.8x-%.4x-%.4x-%.2x%.2x-%.2x%.2x%.2x%.2x%.2x%.2x}"
|
|
return base % self._guid_fields
|
|
|