TLS Acceleration for Post Quantum Cryptography

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The Shift Toward Quantum Resistant Security

Post-Quantum Cryptography (PQC) is rapidly gaining traction across industries as organizations prepare for the next major shift in cybersecurity. With government mandates, NIST standardization efforts, and the growing threat of quantum-based attack vectors, the move toward quantum-resistant cryptography is no longer option, it’s essential.

Hardware Driven Security for a Quantum Future

Eideticom addresses this shift with a hardware platform designed for efficient PQC integration. The NoLoad Cryptographic Accelerator delivers a hardware-based approach designed for agility, performance and scalability. Built on FPGA technology and deployed as a PCIe Add-in Card (AIC), the accelerator securely offloads compute-intensive public key operations such as signature generation and verification from traditional CPU infrastructure. 

The platform is fully TLS 1.3 compliant, integrates seamlessly with widely used frameworks such as OpenSSL or NGINX, and supports both current and upcoming PQC algorithms standardized by NIST. With robust performance future facing design, Eideticom’s NoLoad helps enterprises secure their data against both todays and tomorrow’s threats by delivering the resilience needed for the post-quantum era. 

Benefits of NoLoad

The NoLoad Cryptographic Accelerator delivers a comprehensive set of features designed to simplify adoption of post-quantum cryptography while maintaining system performance. Flexible standard compliant architecture provides the scalability enterprises need to transition smoothly and securely into the adoption of PQC standards.

  • Broad support of PQC and Classical cryptography algorithms:
    • Post Quantum Cryptography Support
      • FIPS 203 (ML-KEM): 512, 768, 1024
      • FIPS 204 (ML-DSA): 44, 65, 87
    • ECDSA/ECDH(E)/RSA
      • P-256, P-384, P-521 & X25519
  • Crypto Agility
    • NoLoad PQC can rapidly change the mix of encryption methods on-the-fly allowing organizations to replace outdated encryption without disrupting their systems
  • Ease of Integration and Use
    • NoLoad’s NVMe compliant interface provides in-box driver support for all CPU platforms and Operating Systems including Linux, FreeBSD and Windows
    • Best in class CPU efficiency
  • NIST compliance
    • CAVP1 certified cryptographic algorithms
  • Key Management
    • Secure Key Import/Export/Rotate
  • Customizable
    • NoLoad’s FPGA fabric and smart interconnect provide the ability to incorporate customer’s proprietary algorithms and scale the performance as required

Building Resilient Infrastructure for the Post-Quantum Era

The shift to PQC algorithms isn’t just about future-proofing data, it also alows for the strengthening of modern digital infrastructure. The NoLoad Cryptographic Accelerator provides the scalability and performance necessary to protect against threats like Distributed Denial of Service (DDoS) attacks. The NoLoad securely offloads PQC-enabled TLS operations from the CPU, this mitigates resource depletion and maintains the responsive of critical services while under load. 

NIST-Standardized PQC Algorithms

To drive adoption of quantum-safe cryptography, NIST has recently standardized three algorithms: 

  • FIPS 203: ML-KEM
  • FIPS 204: ML-DSA
  • FIPS 205: SLH-DSA

The Power of Hybrid PQC

ML-KEM is a quantum-resistant Key Encapsulation Method (KEM) that can be integrated into hybrid PQC-TLS key exchange algorithms. In recent years, major platforms such as Google Chrome and Cloudflare have begun supporting the X25519MLKEM768 hybrid key exchange, which combines the quantum-safe ML-KEM algorithm with the widely used classical X25519 elliptic curve cryptography (ECC). 

The hybrid approach enhances security by providing dual protection, even if one algorithm were ever compromised, the other continues to safeguard communications. Combining the strengths of classical and post-quantum methods, hybrid PQ-TLS ensures both robust protection and future readiness.

The NoLoad Cryptographic Accelerator fully supports X25519MLKEM768 and its variants within TLS 1.3, and its field-upgradable architecture allows deployed systems to adopt new cryptographic algorithms as standards evolve without disruption.

SOURCES

1 NIST Cryptographic Algorithm Validation Program https://csrc.nist.gov/projects/cryptographic-algorithm-validation-program

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