| # References and Prior-Art Landmarks |
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| This release is self-contained, but it should be evaluated against mature compression and archiving systems. |
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| ## Mature archivers and codecs |
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| - 7-Zip: mature open-source archiver with AES-256 encryption, Windows shell integration, file manager, and command-line tooling. |
| - WinZip AES encryption extension: ZIP-compatible AES encryption extension documentation. |
| - Zstandard: modern fast lossless compressor with broad speed/ratio trade-off and dictionary compression. |
| - Brotli: lossless LZ77 + Huffman format specified in RFC 7932. |
| - xz/LZMA: high-ratio general-purpose compression family. |
| - ZIP/Deflate: broadly compatible baseline. |
| - zpaq/paq/cmix: high-ratio research/benchmark-oriented compressors. |
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| ## Research principles used |
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| - Minimum Description Length: choose the shortest exact description among candidates. |
| - Kolmogorov-style generator compression: a compact program/recipe plus residual can be shorter than raw bytes. |
| - Transform coding: reversible basis changes can reveal structure to entropy coders. |
| - Content-defined chunking: chunk boundaries depend on content, improving dedupe across shifted versions. |
| - Reed-Solomon-style parity intuition: parity equations over finite fields can repair corrupted shards. |
| - Symmetric-key post-quantum margin: 256-bit symmetric keys maintain high generic-search resistance. |
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| ## HVCE-specific lineage |
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| - OGA-2 Core → OGA-Ω → OGA-AXIOM → OGA-PROOF → OGA-PRIME. |
| - SPWSE-Ω² proof-carrying interventional closure compilation. |
| - Nanophotonic field compression via exact separable/modal fields. |
| - Causal neural residualization with no hidden model side information. |
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