Uploaded May 2026 | Updated September 2026, 2 weeks ago
Moving from cryptographic theory to real-world deployment is the next great challenge in cybersecurity. Session 2 of RWPQC 2026 explores the technical hurdles of implementing ML-KEM (Kyber) and ML-DSA (Dilithium) across diverse environments.
Featured Expert Talks:
-Anjan Roy (Radboud/Apple): Demonstrates a "Beyond Portable" approach using Modern C++ (C++20) to eliminate undefined behavior and leverage compile-time evaluation for PQC.
-Jihoon Cho (Samsung SDS): Outlines the "Software-Defined Cryptography" framework necessary for managing PQC migration across a massive enterprise footprint.
-Thomas Pöppelmann (Google): Breaks down the unique "Silicon vs. Cloud" struggle, comparing the high-stakes, years-long product cycles of hardware to the agile, scale-driven world of cloud security.
Tune in to learn more about constant-time code, cryptographic agility, Cryptographic Bill of Materials (CBOM), and hardware-accelerated lattice cryptography.
Chapters:
00:00 - Introduction to Session 2
00:32 - Anjan Roy: Rethinking PQC with Modern C++
04:50 - Using C++ Span-based APIs for safer code
08:48 - Compile-time evaluation and constant expressions
14:40 - Protecting against Undefined Behavior (UB) in Crypto
22:50 - Integrating PQC into project dependencies
29:20 - Jihoon Cho (Samsung SDS): Enterprise PQC Migration
33:20 - The Korean PQC Competition and "Amur" Signature Scheme
41:30 - Defining Cryptographic Agility in 2026
47:15 - Automating CBOM (Cryptographic Bill of Materials)
56:47 - Thomas Pöppelmann (Google): Silicon vs. Cloud Migration
01:01:10 - The "V-Model" and the high cost of Silicon change
01:06:50 - Firmware Signing: The "Nemesis" of Silicon Security
01:15:42 - Why PQC is a "System" challenge, not just a math challenge
01:21:40 - The Hybrid Transition: SEC + PQC
#sandboxaq
Moving from cryptographic theory to real-world deployment is the next great challenge in cybersecurity. Session 2 of RWPQC 2026 explores the technical hurdles of implementing ML-KEM (Kyber) and ML-DSA (Dilithium) across diverse environments.
Featured Expert Talks:
-Anjan Roy (Radboud/Apple): Demonstrates a "Beyond Portable" approach using Modern C++ (C++20) to eliminate undefined behavior and leverage compile-time evaluation for PQC.
-Jihoon Cho (Samsung SDS): Outlines the "Software-Defined Cryptography" framework necessary for managing PQC migration across a massive enterprise footprint.
-Thomas Pöppelmann (Google): Breaks down the unique "Silicon vs. Cloud" struggle, comparing the high-stakes, years-long product cycles of hardware to the agile, scale-driven world of cloud security.
Tune in to learn more about constant-time code, cryptographic agility, Cryptographic Bill of Materials (CBOM), and hardware-accelerated lattice cryptography.
Chapters:
00:00 - Introduction to Session 2
00:32 - Anjan Roy: Rethinking PQC with Modern C++
04:50 - Using C++ Span-based APIs for safer code
08:48 - Compile-time evaluation and constant expressions
14:40 - Protecting against Undefined Behavior (UB) in Crypto
22:50 - Integrating PQC into project dependencies
29:20 - Jihoon Cho (Samsung SDS): Enterprise PQC Migration
33:20 - The Korean PQC Competition and "Amur" Signature Scheme
41:30 - Defining Cryptographic Agility in 2026
47:15 - Automating CBOM (Cryptographic Bill of Materials)
56:47 - Thomas Pöppelmann (Google): Silicon vs. Cloud Migration
01:01:10 - The "V-Model" and the high cost of Silicon change
01:06:50 - Firmware Signing: The "Nemesis" of Silicon Security
01:15:42 - Why PQC is a "System" challenge, not just a math challenge
01:21:40 - The Hybrid Transition: SEC + PQC
#sandboxaq










