Why a cryptographic inventory is key for addressing the quantum computing threat
Cybersecurity Classified by Officially
When quantum computers become generally available, they’ll be able to crack current public-key cryptographic algorithms, putting digitally stored and transmitted data at risk. But the threat already exists, as attackers use the "harvest now, decrypt later" tactic. Discover why building a comprehensive cryptographic inventory and executing a phased operational strategy are critical for protecting your data against quantum computing attacks. Quantum computing risks are an operational threat today due to "harvest now, decrypt later" (HNDL) tactics, in which adversaries actively harvest and store encrypted data to decrypt it retroactively once quantum capabilities mature. When run on a quantum computer that’s powerful enough, Shor’s Algorithm will break foundational asymmetric infrastructure like the RSA, ECC, and Diffie-Hellman algorithms, although symmetric encryption standards like AES-256 are expected to remain secure against quantum attacks. Globally, more regulatory bodies are starting to mandate a comprehensive cryptographic inventory, making absolute visibility across the digital environment a prerequisite for an orderly post-quantum migration. Transitioning to quantum-resis...
Read the original at the source: https://www.tenable.com/blog/why-a-cryptographic-inventory-is-key-for-addressing-the-quantum-computing-threat
Officially imported this from Tenable’s own source. If you work there, claiming the profile and verifying the domain lets you choose to show the full text here.
This publication has changed since it was first published
2 versions recorded. The original is kept in full — nothing is overwritten.
- v2 imported change on current
- v1 as first published on
Provenance
- Organization
- Tenable — imported from official source
- Official source
- https://www.tenable.com/blog/feed RSS
- Imported
- September 18, 2026 11:35
- Versions
- 2 recorded
- Identity
-
https://www.tenable.com/211105