Tetstack
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Good morning yall
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Yo guys quick question when is UAT??

@Tetstack
diagram.txt
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And the diagram is finally completed. Sorry for not streaming it, run out of social battery.

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Tetstack
diagram.txt
Diagram for K-Sentinel.
I should wait right?
Bruhhh Warr I do, can someone help me?
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Tetstack
Bruhhh Warr I do, can someone help me?
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Tetstack
I should wait right?
I can't seem to be able to see the schedule ? should I wait?
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Tetstack
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So I am starting a new challenge, making low level software while breaking what's left of my gooey brain.

@Tetstack
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Tetstack pinned «So I am starting a new challenge, making low level software while breaking what's left of my gooey brain. @Tetstack»
This next project is more of a personal thing,
AEGISPQC Post-Quantum Cryptography Integration Framework


WHAT IT IS

Cryptographic Abstraction Layer: Middleware wrapping NIST-standardized post-quantum algorithms and classic primitives into a single API.

Hybrid Security Engine: A dual-engine system combining classical key exchange (X25519) with lattice-based Key Encapsulation Mechanisms (KEMs).

Crypto-Agile Platform: Modular library enabling seamless swapping of underlying cipher suites without refactoring application logic.


WHAT IT DOES

Executes Dual Key Encapsulation: Runs parallel key exchanges using ML-KEM (Kyber) and classical ECDH, combining secrets so security holds if either primitive fails.

Enforces Quantum-Safe Digital Signatures: Implements ML-DSA (Dilithium) and SPHINCS+ for identity verification, payload signing, and secure boot validation.

Manages Cryptographic Agility: Enables dynamic runtime switching between security levels (ML-KEM-512, ML-KEM-768, ML-KEM-1024) via configuration policies.

Benchmarks System Performance: Measures memory footprint, public key payload bloat, and serialization latency to optimize constrained deployments.


WHAT IT SOLVES

"Store Now, Decrypt Later" (SNDL) Attacks: Prevents adversaries from intercepting encrypted classical traffic today to decrypt once quantum computers arrive.

Shor's Algorithm Vulnerability: Replaces RSA, ECDSA, and Diffie-Hellman, which rely on mathematical problems easily broken by quantum systems.

Migration Friction: Eliminates rigid, hardcoded implementations by supplying unified abstractions for transition workflows.

Regulatory Non-Compliance: Aligns software infrastructure with upcoming CNSA 2.0, NIST, and CISA PQC transition mandates.
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Tetstack
AEGISPQC Post-Quantum Cryptography Integration Framework WHAT IT IS Cryptographic Abstraction Layer: Middleware wrapping NIST-standardized post-quantum algorithms and classic primitives into a single API. Hybrid Security Engine: A dual…
As of today's news Quantum Computers are kind of dying, but that doe sn't mean there won't be a come back later in the future so what this is basically protect data against attacks launched by future quantum computers. Why?

Well, Quantum Computers Threaten Current Encryption, Basically in three ways.

Shor's Algorithm: Quantum computers utilize quantum mechanics (qubits, superposition, and entanglement) to run Shor’s Algorithm. This solves prime factorization and discrete logarithms in minutes—the exact mathematical problems protecting nearly all current asymmetric encryption (RSA, ECC, Diffie-Hellman, ECDSA).

Grover's Algorithm: Speeds up brute-forcing symmetric keys (like AES). While it doesn't break AES completely, it cuts key strength in half (AES-128 becomes as weak as 64-bit encryption, though AES-256 remains secure).

Harvest Now, Decrypt Later (SNDL): Adversaries are actively intercepting and storing encrypted network traffic today so they can run it through a quantum computer once hardware scales up.
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