mirror of
https://github.com/hakril/PythonForWindows
synced 2026-06-08 14:31:45 +00:00
327 lines
10 KiB
Python
327 lines
10 KiB
Python
import ctypes
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import mmap
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import platform
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import windows
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import windows.k32testing as k32api
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class PyObj(ctypes.Structure):
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_fields_ = [("ob_refcnt", ctypes.c_size_t),
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("ob_type", ctypes.c_void_p)] #must be cast
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class PyMmap(PyObj):
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_fields_ = [("ob_addr", ctypes.c_size_t), ("ob_size", ctypes.c_size_t)]
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# Specific mmap class for code injection
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class MyMap(mmap.mmap):
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""" A mmap that is never unmapped and that contains the page address """
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def __init__(self, *args, **kwarg):
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#Get the page address by 'introspection' of the C struct
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m = PyMmap.from_address(id(self))
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self.addr = m.ob_addr
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#Prevent garbage collection (so unmaping) of the page
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m.ob_refcnt += 1
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@classmethod
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def get_map(cls, size):
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""" Dispatch to the good mmap implem depending on the current system """
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systems = {'windows' : Win32MyMap,
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'linux' : UnixMyMap }
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x = platform.system().lower()
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if x not in systems:
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raise ValueError("Unknow system {0}".format(x))
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return systems[x].get_map(size)
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class Win32MyMap(MyMap):
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@classmethod
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def get_map(cls, size):
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#access = mmap.ACCESS_READ | mmap.ACCESS_WRITE
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#return cls(-1, size, access=access)
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access = mmap.ACCESS_READ | mmap.ACCESS_WRITE
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addr = k32api.VirtualAlloc(0, size, 0x1000, 0x40)
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new_map = (ctypes.c_char * size).from_address(addr)
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new_map.addr = addr
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if new_map.addr == 0:
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raise ctypes.WinError()
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return new_map
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class UnixMyMap(MyMap):
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@classmethod
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def get_map(cls, size):
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prot = mmap.PROT_EXEC | mmap.PROT_WRITE | mmap.PROT_READ
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return cls(-1, size, prot=prot)
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class CustomAllocator(object):
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int_size = {'32bit' : 4, '64bit' : 8}
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def __init__(self):
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self.maps = []
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self.get_new_page(0x1000)
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self.names = []
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@classmethod
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def get_int_size(cls):
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bits = platform.architecture()[0]
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if bits not in cls.int_size:
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raise ValueError("Unknow platform bits <{0}>".format(bits))
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return cls.int_size[bits]
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def get_new_page(self, size):
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self.maps.append(MyMap.get_map(size))
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self.cur_offset = 0
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self.cur_page_size = size
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def reserve_size(self, size):
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if size + self.cur_offset > self.cur_page_size:
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self.get_new_page((payload_size + 0x1000) & ~0xfff)
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addr = self.maps[-1].addr + self.cur_offset
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self.cur_offset += size
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return addr
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def reserve_int(self, nb_int=1):
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int_size = self.get_int_size()
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return self.reserve_size(int_size * nb_int)
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def write_code(self, code):
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size = len(code)
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if size + self.cur_offset > self.cur_page_size:
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self.get_new_page((payload_size + 0x1000) & ~0xfff)
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self.maps[-1][self.cur_offset: self.cur_offset + size] = code
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addr = self.maps[-1].addr + self.cur_offset
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self.cur_offset += size
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return addr
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allocator = CustomAllocator()
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def get_functions():
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# Windows only with python27.dll | improve this ?
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import sys
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import windows
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PyGILState_Ensure = windows.utils.get_func_addr('python27', 'PyGILState_Ensure')
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PyObject_CallObject = windows.utils.get_func_addr('python27', 'PyObject_CallObject')
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PyGILState_Release = windows.utils.get_func_addr('python27', 'PyGILState_Release')
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return [PyGILState_Ensure, PyObject_CallObject, PyGILState_Release]
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def analyse_callback(callback):
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if not callable(callback):
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raise ValueError("Need a callable object :)")
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obj_id = id(callback)
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if not hasattr(callback, '_objects'):
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raise ValueError("Need a ctypes PyCFuncPtr")
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return obj_id
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# For windows 32 bits with stdcall
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def generate_stub_32(callback):
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from simple_x86 import *
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obj_id = analyse_callback(callback)
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c_callback = ctypes.c_ulong.from_address(id(callback._objects['0']) + 3 * ctypes.sizeof(ctypes.c_void_p)).value
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gstate_save_addr = allocator.reserve_int()
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return_addr_save_addr = allocator.reserve_int()
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save_ebx = allocator.reserve_int()
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save_ecx = allocator.reserve_int()
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save_edx = allocator.reserve_int()
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save_esi = allocator.reserve_int()
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save_edi = allocator.reserve_int()
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ensure, objcall, release = get_functions()
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### Shellcode ###
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code = MultipleInstr()
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code += Mov_DX_EBX(save_ebx)
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code += Mov_DX_ECX(save_ecx)
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code += Mov_DX_EDX(save_edx)
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code += Mov_DX_ESI(save_esi)
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code += Mov_DX_EDI(save_edi)
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code += Mov_EAX_X(ensure)
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code += Call_EAX()
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code += Mov_DX_EAX(gstate_save_addr)
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#Save real return addr (for good argument parsing by the callback)
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code += Pop_EAX()
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code += Mov_DX_EAX(return_addr_save_addr)
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# Set call_real_function to 0 (no call by default)
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code += Mov_EAX_X(c_callback)
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code += Call_EAX()
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# Restore real return value
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code += Mov_EBX_DX(return_addr_save_addr)
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code += Push_EBX()
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# Save return value
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code += Push_EAX()
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code += Mov_EBX_DX(gstate_save_addr)
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code += Push_EBX()
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code += Mov_EAX_X(release)
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code += Call_EAX()
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# Discard `release` argument
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code += Pop_EAX()
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# Restore return value
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code += Pop_EAX()
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code += Mov_EBX_DX(save_ebx)
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code += Mov_ECX_DX(save_ecx)
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code += Mov_EDX_DX(save_edx)
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code += Mov_ESI_DX(save_esi)
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code += Mov_EDI_DX(save_edi)
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code += Ret()
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return code
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# For windows 32 bits with stdcall
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def generate_stub_64(callback):
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import simple_x64 as x64
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from simple_x64 import *
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obj_id = analyse_callback(callback)
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REG_LEN = ctypes.sizeof(ctypes.c_void_p)
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c_callback = ctypes.c_ulong.from_address(id(callback._objects['0']) + 3 * ctypes.sizeof(ctypes.c_void_p)).value
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register_to_save = ("RBX", "RCX", "RDX", "RSI", "RDI", "R8", "R9", "R10", "R11", "R12", "R13", "R14", "R15")
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push_all_save_register = MultipleInstr([getattr(x64, "Push_" + reg)() for reg in register_to_save])
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pop_all_save_register = MultipleInstr([getattr(x64, "Pop_" + reg)() for reg in reversed(register_to_save)])
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# Reserve parallel `stack`
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save_register_space = allocator.reserve_int(len(register_to_save) + 1)
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save_register_space += REG_LEN # The + 1 is for the second-stack xchg
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save_register_space_end = save_register_space + (ctypes.sizeof(ctypes.c_void_p) * (len(register_to_save) ))
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save_rbx = save_register_space_end - REG_LEN
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save_rcx = save_register_space_end - REG_LEN - REG_LEN
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save_rdx = save_register_space_end - REG_LEN - (REG_LEN * 2)
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save_rsi = save_register_space_end - REG_LEN - (REG_LEN * 3)
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save_rdi = save_register_space_end - REG_LEN - (REG_LEN * 4)
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save_r8 = save_register_space_end - REG_LEN - (REG_LEN * 5)
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save_r9 = save_register_space_end - REG_LEN - (REG_LEN * 6)
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gstate_save_addr = allocator.reserve_int()
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return_addr_save_addr = allocator.reserve_int()
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return_value_save_addr = allocator.reserve_int()
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Reserve_space_for_call = MultipleInstr([Push_RDI()] * 4)
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Clean_space_for_call = MultipleInstr([Pop_RDI()] * 4)
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Do_stack_alignement = MultipleInstr([Push_RDI()] * 1)
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Remove_stack_alignement = MultipleInstr([Pop_RDI()] * 1)
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ensure, objcall, release = get_functions()
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### Shellcode ###
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code = MultipleInstr()
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code += Mov_RAX_X(save_register_space_end)
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# A lazy working xchg RSP <-> RAX
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code += Push_RAX()
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code += Push_RSP()
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code += Pop_RAX()
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code += Pop_RSP()
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code += push_all_save_register
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# Re-set RSP to its real value
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code += Push_RAX()
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code += Pop_RSP()
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code += Pop_RAX() # Remove the Push_RAX of lazy xchg
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# GOOO
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code += Mov_RAX_X(ensure)
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code += Reserve_space_for_call
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code += Do_stack_alignement
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code += Call_RAX()
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code += Remove_stack_alignement
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code += Clean_space_for_call
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code += Mov_DX_RAX(gstate_save_addr)
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#Save real return addr (for good argument parsing by the callback)
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code += Pop_RAX()
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code += Mov_DX_RAX(return_addr_save_addr)
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# Restore parameters for real function call
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code += Mov_RAX_X(save_rcx)
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code += Mov_RCX_DRAX()
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code += Mov_RAX_X(save_rdx)
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code += Mov_RDX_DRAX()
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code += Mov_RAX_X(save_r8)
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code += Mov_R8_DRAX()
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code += Mov_RAX_X(save_r9)
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code += Mov_R9_DRAX()
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# Call python code
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code += Mov_RAX_X(c_callback)
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code += Reserve_space_for_call
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code += Call_RAX() # no need for stack alignement here as we poped the return addr
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code += Clean_space_for_call
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# Save return value
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code += Mov_DX_RAX(return_value_save_addr)
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code += Mov_RAX_DX(return_addr_save_addr)
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# Repush real return value
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code += Push_RAX()
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code += Mov_RAX_DX(gstate_save_addr)
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code += Push_RAX()
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code += Pop_RCX()
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code += Mov_RAX_X(release)
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code += Reserve_space_for_call
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code += Do_stack_alignement
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code += Call_RAX()
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code += Remove_stack_alignement
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code += Clean_space_for_call
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# Restore registers
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code += Mov_RAX_X(save_register_space)
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# A lazy working xchg RSP <-> RAX
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code += Push_RAX()
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code += Push_RSP()
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code += Pop_RAX()
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code += Pop_RSP()
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code += pop_all_save_register
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# Re-set RSP to its real value
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code += Push_RAX()
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code += Pop_RSP()
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code += Pop_RAX() # Remove the Push_RAX of lazy xchg
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# Restore return value
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code += Mov_RAX_DX(return_value_save_addr)
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code += Ret()
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return code
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def generate_callback_stub(callback, types):
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func_type = ctypes.WINFUNCTYPE(*types)
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c_callable = func_type(callback)
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if windows.current_process.bitness == 32:
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stub = generate_stub_32(c_callable)
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else:
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stub = generate_stub_64(c_callable)
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stub_addr = allocator.write_code(stub.get_code())
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generate_callback_stub.l.append((stub, c_callable))
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return stub_addr
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generate_callback_stub.l = []
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def create_function(code, types):
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"""Create a python function that call raw machine code
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:param str code: Raw machine code that will be called
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:param list types: Return type and parameters type (see :mod:`ctypes`)
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:return: the created function
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:rtype: function
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"""
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func_type = ctypes.CFUNCTYPE(*types)
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addr = allocator.write_code(code)
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return func_type(addr)
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