1768.py¶
What 1768.py does¶
Guided SUSA tool journey
1768.py supports malware analysis. In this guide, you will use it to extract configuration from a safe training sample without executing it. The procedure and screenshots provide the practical reference; the surrounding context explains what to record and how to judge the result.
Tool guide at a glance¶
Extract configuration from a safe training sample without executing it.
An inert or purpose-built training sample stored in a disposable isolated analysis VM.
A static observation or capability finding with sample hash, tool output, and confidence statement.
Evidence and safety
Do not execute unknown samples on SUSA. Disable shared folders and credentials, and use only authorised training material. Record the input identifier, tool version, relevant commands or settings, time and time zone, output location, and any errors or limitations as you work.
Choose your journey¶
01Understand the evidenceLearn the malware analysis concepts and limitations.Complete when you can explain what the evidence can and cannot show.Beginner · No tool required · 15–25 min 02Follow the 1768.py guideWork through the commands, screenshots, and instructional sequence below.Complete when the documented workflow produces its expected output.Guided · SUSA workstation · Time varies 03Interactive labPractise the tool workflow in a safe browser simulation.Complete when the guided result is supported by the case evidence.Beginner · Browser only · 10–20 min 04Full LabInvestigate an authorised training scenario with fewer prompts and preserve a reviewable result.Complete when another analyst can reproduce and verify the outcome.Intermediate · Isolated lab · 45–90 min
How the labs complement this guide
The Interactive Lab is a safe browser simulation for practising the workflow and validation logic. The Full Lab is an independent exercise for an isolated, authorised environment. Confirm the installed tool version and expected output before relying on either exercise in a real case.
Accessing 1768.py in SUSA¶
1768.py is a Python tool by Didier Stevens used to extract and decode Cobalt Strike Beacon configuration from files such as PE executables, shellcode, and memory dumps.
Download 1768.json and 1768.py.
Move the two files to C:\Tools\1768 folder.
Move the two memory samples from C:\Tools\VolatilityWorkbench-v2.1 to C:\Lab\memory.
Open a command prompt and run the following command against your extracted process memroy (minidump) for CCC.exe. Note this is for testing purposes and 1768.py is known to produce a lot of false positives.
Adding 1768.py to Path Environment¶
Open Environment Variables (Start → Environment Variables → Edit the system environment variables → Environment Variables).
Under User variables, select path and click Edit.
Click New and add (one entry per line):
Click OK (then OK on other windows to save changes).
Testing 1768.py¶
Open an administrator Command Prompt and run the following command:
The -x flag increases false positives because it tells 1768.py to try all 256 possible single-byte XOR keys when looking for a Cobalt Strike config.
To reduce the false positives, use the sanity check flag -S
If prompted to install minidump module, install it by running:
If prompted to update pip, update it by running:
The result of the command should be similar to below screenshot:









