FSPQ-4096: Fast Scalable Pre-Quantum Virtual Register Architecture for Cryptographic Entropy Generation

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Autore principale: Pirolo, Andrés Sebastián
Natura: Recurso digital
Pubblicazione: Zenodo 2026
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author Pirolo, Andrés Sebastián
Pirolo, Andrés Sebastián
author_facet Pirolo, Andrés Sebastián
Pirolo, Andrés Sebastián
contents <p> </p> <h2>FSPQ-4096: Dual-Pipeline XNOR Collider for High-Entropy Seed Generation</h2> <h3>Abstract</h3> <p>We present <strong>FSPQ-4096</strong>, a 4096-bit virtual register architecture implemented as 64 contiguous <code>uint64_t</code> words in standard C++, designed to generate high-entropy seeds for cryptographic applications.</p> <p>The architecture employs a <strong>Dual-Pipeline XNOR Collider</strong>, consisting of two independent entropy evolution pipelines—one seeded normally and one seeded from its bitwise complement. Their outputs are combined via bitwise XNOR to produce a 512-byte super-seed exhibiting near-ideal statistical properties.</p> <p>On an ARM Snapdragon 8 Gen 2 using NEON intrinsics, the architecture achieves a Shannon entropy of 7.99996 bits/byte (theoretical maximum: 8.0), an avalanche effect of 50.12% (ideal: 50.0%), and an entropy throughput of 48.80 MB/s.</p> <p>Injected into OpenSSL’s PRNG pool via <code>RAND_seed()</code>, the generated super-seed enriches RSA-4096 key generation, completing in 2–3 seconds on mobile ARM with full OpenSSL validation, OAEP encryption roundtrip, PSS signature roundtrip, and tamper detection confirmed by a 25/25 automated test suite.</p> <p>The <code>uint4096_virtual</code> register is a protected general-purpose computational primitive. This paper establishes prior art for its application to cryptographic entropy generation.</p> <h1>STATEMENT OF PRIOR ART AND LICENSE TERMS</h1> <p>(PolyForm Noncommercial 1.0.0 Framework)</p> <h2>1. Academic and Research Use (Permitted)</h2> <p>The author expressly authorizes free use of this work for:</p> <p>• Academic research<br>• Independent study<br>• Educational purposes<br>• Experimental validation<br>• Benchmarking and comparative analysis<br>• Testing within private or institutional systems<br>• Reproduction of results for scientific publication</p> <p>Researchers, students, and engineers may freely implement, test, analyze, and publish findings derived from this work, provided proper attribution is included.</p> <p>Non-commercial experimentation is explicitly encouraged.</p> <h2>2. Statement of Prior Art</h2> <p>This document constitutes a public disclosure establishing prior art for the FSPQ-4096 architecture and its entropy-generation methodology. The disclosure prevents third-party patent claims over the described conceptual framework.</p> <h2>3. License Scope</h2> <p>Conceptual methods are publicly disclosed.</p> <p>Source code, implementations, binaries, optimized intrinsics versions, and derivative architectures are <strong>not in the public domain</strong> and remain protected intellectual property.</p> <p>All implementations are licensed under the <strong>PolyForm Noncommercial License 1.0.0</strong>.</p> <h2>4. Noncommercial Restriction</h2> <p>Use is permitted for non-commercial purposes only.</p> <p>Any activity that generates revenue, supports a commercial product, integrates into proprietary systems, or forms part of a paid service shall be considered commercial use.</p> <p>Commercial use requires explicit written permission from the author.</p> <h2>5. Commercial Use Requirement</h2> <p>If this architecture, or any derivative of it, is to be used in a commercial product, security platform, SaaS infrastructure, hardware device, or cryptographic service, prior written authorization must be obtained.</p> <p>Commercial entities must request permission before deployment.</p> <h2>6. Anti-Circumvention</h2> <p>Reimplementation, structural replication, architectural mimicry, translation to another programming language, hardware description (e.g., HDL), or partial functional reproduction shall be considered derivative use.</p> <p>Attempts to avoid license obligations through refactoring, renaming, or modular fragmentation do not exempt compliance.</p> <h2>7. Presumption of Derivation</h2> <p>Any system exhibiting substantial structural, statistical, or performance similarity developed after exposure to this work shall be presumed derivative unless independently proven otherwise.</p> <h2>8. Knowledge Contamination</h2> <p>Exposure to the source code, technical documentation, or architectural description constitutes knowledge contamination. Subsequent similar implementations by exposed parties are not considered clean-room unless documented prior to exposure.</p> <h2>9. Intellectual Property Ownership</h2> <p>All intellectual property rights, including but not limited to architectural design, structural layout, entropy-combination logic, and performance optimization strategies, remain exclusively owned by the author.</p> <p>No ownership rights are transferred under this license.</p> <h2>10. Remedies and Enforcement</h2> <p>Violation of these terms may result in termination of license rights and pursuit of available legal remedies, including injunctive relief and damages, as permitted by applicable law.</p>
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spellingShingle FSPQ-4096: Fast Scalable Pre-Quantum Virtual Register Architecture for Cryptographic Entropy Generation
Pirolo, Andrés Sebastián
Pirolo, Andrés Sebastián
cs.CR
Cryptographic Entropy
RSA-4096
Independent cryptography
<p> </p> <h2>FSPQ-4096: Dual-Pipeline XNOR Collider for High-Entropy Seed Generation</h2> <h3>Abstract</h3> <p>We present <strong>FSPQ-4096</strong>, a 4096-bit virtual register architecture implemented as 64 contiguous <code>uint64_t</code> words in standard C++, designed to generate high-entropy seeds for cryptographic applications.</p> <p>The architecture employs a <strong>Dual-Pipeline XNOR Collider</strong>, consisting of two independent entropy evolution pipelines—one seeded normally and one seeded from its bitwise complement. Their outputs are combined via bitwise XNOR to produce a 512-byte super-seed exhibiting near-ideal statistical properties.</p> <p>On an ARM Snapdragon 8 Gen 2 using NEON intrinsics, the architecture achieves a Shannon entropy of 7.99996 bits/byte (theoretical maximum: 8.0), an avalanche effect of 50.12% (ideal: 50.0%), and an entropy throughput of 48.80 MB/s.</p> <p>Injected into OpenSSL’s PRNG pool via <code>RAND_seed()</code>, the generated super-seed enriches RSA-4096 key generation, completing in 2–3 seconds on mobile ARM with full OpenSSL validation, OAEP encryption roundtrip, PSS signature roundtrip, and tamper detection confirmed by a 25/25 automated test suite.</p> <p>The <code>uint4096_virtual</code> register is a protected general-purpose computational primitive. This paper establishes prior art for its application to cryptographic entropy generation.</p> <h1>STATEMENT OF PRIOR ART AND LICENSE TERMS</h1> <p>(PolyForm Noncommercial 1.0.0 Framework)</p> <h2>1. Academic and Research Use (Permitted)</h2> <p>The author expressly authorizes free use of this work for:</p> <p>• Academic research<br>• Independent study<br>• Educational purposes<br>• Experimental validation<br>• Benchmarking and comparative analysis<br>• Testing within private or institutional systems<br>• Reproduction of results for scientific publication</p> <p>Researchers, students, and engineers may freely implement, test, analyze, and publish findings derived from this work, provided proper attribution is included.</p> <p>Non-commercial experimentation is explicitly encouraged.</p> <h2>2. Statement of Prior Art</h2> <p>This document constitutes a public disclosure establishing prior art for the FSPQ-4096 architecture and its entropy-generation methodology. The disclosure prevents third-party patent claims over the described conceptual framework.</p> <h2>3. License Scope</h2> <p>Conceptual methods are publicly disclosed.</p> <p>Source code, implementations, binaries, optimized intrinsics versions, and derivative architectures are <strong>not in the public domain</strong> and remain protected intellectual property.</p> <p>All implementations are licensed under the <strong>PolyForm Noncommercial License 1.0.0</strong>.</p> <h2>4. Noncommercial Restriction</h2> <p>Use is permitted for non-commercial purposes only.</p> <p>Any activity that generates revenue, supports a commercial product, integrates into proprietary systems, or forms part of a paid service shall be considered commercial use.</p> <p>Commercial use requires explicit written permission from the author.</p> <h2>5. Commercial Use Requirement</h2> <p>If this architecture, or any derivative of it, is to be used in a commercial product, security platform, SaaS infrastructure, hardware device, or cryptographic service, prior written authorization must be obtained.</p> <p>Commercial entities must request permission before deployment.</p> <h2>6. Anti-Circumvention</h2> <p>Reimplementation, structural replication, architectural mimicry, translation to another programming language, hardware description (e.g., HDL), or partial functional reproduction shall be considered derivative use.</p> <p>Attempts to avoid license obligations through refactoring, renaming, or modular fragmentation do not exempt compliance.</p> <h2>7. Presumption of Derivation</h2> <p>Any system exhibiting substantial structural, statistical, or performance similarity developed after exposure to this work shall be presumed derivative unless independently proven otherwise.</p> <h2>8. Knowledge Contamination</h2> <p>Exposure to the source code, technical documentation, or architectural description constitutes knowledge contamination. Subsequent similar implementations by exposed parties are not considered clean-room unless documented prior to exposure.</p> <h2>9. Intellectual Property Ownership</h2> <p>All intellectual property rights, including but not limited to architectural design, structural layout, entropy-combination logic, and performance optimization strategies, remain exclusively owned by the author.</p> <p>No ownership rights are transferred under this license.</p> <h2>10. Remedies and Enforcement</h2> <p>Violation of these terms may result in termination of license rights and pursuit of available legal remedies, including injunctive relief and damages, as permitted by applicable law.</p>
title FSPQ-4096: Fast Scalable Pre-Quantum Virtual Register Architecture for Cryptographic Entropy Generation
topic cs.CR
Cryptographic Entropy
RSA-4096
Independent cryptography
url https://doi.org/10.5281/zenodo.18714503