惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

The GitHub Blog
The GitHub Blog
S
SegmentFault 最新的问题
MyScale Blog
MyScale Blog
有赞技术团队
有赞技术团队
V
Visual Studio Blog
T
The Blog of Author Tim Ferriss
爱范儿
爱范儿
Vercel News
Vercel News
让小产品的独立变现更简单 - ezindie.com
让小产品的独立变现更简单 - ezindie.com
Y
Y Combinator Blog
Blog — PlanetScale
Blog — PlanetScale
D
DataBreaches.Net
美团技术团队
Microsoft Security Blog
Microsoft Security Blog
大猫的无限游戏
大猫的无限游戏
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
酷 壳 – CoolShell
酷 壳 – CoolShell
GbyAI
GbyAI
A
About on SuperTechFans
云风的 BLOG
云风的 BLOG
The Cloudflare Blog
宝玉的分享
宝玉的分享
V
V2EX
Microsoft Azure Blog
Microsoft Azure Blog

Homepage on Aditya Telange

One Year with evil-winrm-py - A Retrospective Bypassing LinkedIn's Connection Privacy with a Simple Search Filter Making Dynamic Instrumentation Accessible with Frida UI Breaking Payload Encryption in Web Applications HackTheBox (HTB) - Escape HackTheBox (HTB) - Resolute HackTheBox (HTB) - Certified State of VMWare Workstation (Pro?) on Linux Android App Security Testing Lab with MobSleuth Android phone as a Webcam on Linux Breaking down Reverse shell commands HackTheBox (HTB) - Photobomb Merging AOSP Security Patches into Custom ROMs Primer on HTTP Security Headers Image Zoom-In effect with HUGO HackTheBox (HTB) - Legacy HackTheBox (HTB) - Lame Cryptohack - Resisting Bruteforce [10 pts] Cryptohack - RSA Starter 1 [10 pts] Cryptohack - Base64 [10 pts] Cryptohack - Bytes and Big Integers [10 pts] Cryptohack - Hex [5 pts] Cryptohack- XOR Starter [10 pts] HackTheBox (HTB) - Horizontall HackTheBox (HTB) - Forge HackTheBox (HTB) - Previse HackTheBox (HTB) - BountyHunter HackTheBox (HTB) - Explore HackTheBox (HTB) - Cap HackTheBox (HTB) - Pit
Cryptohack - Keyed Permutations [5 pts]
[Aditya Telange](https://x.com/adityatelange) · 2022-05-20 · via Homepage on Aditya Telange

The Solution is shared considering CAN I SHARE MY SOLUTIONS?

Problem

AES, like all good block ciphers, performs a “keyed permutation”. This means that it maps every possible input block to a unique output block, with a key determining which permutation to perform.

A “block” just refers to a fixed number of bits or bytes, which may represent any kind of data. AES processes a block and outputs another block. We’ll be specifically talking the variant of AES which works on 128 bit (16 byte) blocks and a 128 bit key, known as AES-128.

Using the same key, the permutation can be performed in reverse, mapping the output block back to the original input block. It is important that there is a one-to-one correspondence between input and output blocks, otherwise we wouldn’t be able to rely on the ciphertext to decrypt back to the same plaintext we started with.

What is the mathematical term for a one-to-one correspondence?

Solution

FLAG := crypto{bijection}