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<p>Viat /ˈviː.æt/ is a bleeding-edge layered-dynamic-proof-of-work HYBRID-post-quantum multi-algo cryptocurrency. Viat is designed for realtime decentralized validation, extreme decentralized scalability, decentralized block creation, asynchronous architecture, and the highest security potential. Each transaction is treated as its own block, allowing massive parallelism and constant-time lookups through a modular extendable trie-based filesystem optimized for SPECIFIC modernized filesystems on modern SSDs. Viat’s blockchain architecture is a general purpose superstructure with specialized self-constructing branches that incorporates both linear and dag based blockchains. Wallets have their own localized chains while global state is brought to order by two types of miners: arbiters for validation and auditors for canonical history. This design creates a linear relationship between network hardware resources and max tps potential through massive parallel decentralized validation.</p>
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<p>VIAT /ˈviː.æt/ is a bleeding-edge layered-dynamic-proof-of-work HYBRID-post-quantum multi-algo cryptocurrency. Viat is designed for realtime decentralized validation, extreme decentralized scalability, decentralized block creation, asynchronous architecture, and the highest security potential. Each transaction is treated as its own block, allowing massive parallelism and constant-time lookups through a modular extendable trie-based filesystem optimized for SPECIFIC modernized filesystems on modern SSDs. Viat’s blockchain architecture is a general purpose superstructure with specialized self-constructing branches that incorporates both linear and dag based blockchains. Wallets have their own localized chains while global state is brought to order by two types of miners: arbiters for validation and auditors for canonical history. This design creates a linear relationship between network hardware resources and max tps potential through massive parallel decentralized validation.</p>
<p> <spanstyle="margin-left: 10px">BLOCKCHAIN TYPES: [DAG ◉ LINEAR BLOCKCHAIN]</span></p>
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<p> <spanstyle="margin-left: 10px">ENCODING: CBOR-X BINARY DATA SERIALIZATION FORMAT</span></p>
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<hrstyle="margin: 25px auto; width: 75%" />
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<p>VIAT uses a hybrid post-quantum signature scheme that balances speed, security, and long-term survivability. Each transaction is signed using both Ed25519—an efficient, widely adopted classical signature algorithm—and <ahref="https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.204.pdf" target="_blank">Dilithium</a>, a NIST-selected post-quantum lattice-based scheme. This dual-signature approach ensures compatibility with existing systems while providing strong resistance to future quantum threats. As an added layer of resilience, <ahref="https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.205.pdf" target="_blank">SPHINCS+</a>, a conservative, stateless hash-based signature, is included as a non-default fallback (primarily used by auditors) to safeguard against the failure or deprecation of either primary scheme. This layered cryptographic design offers robust protection and future-proof assurance, especially suited for risk-averse users and institutions. </p>
<p>Viat /ˈviː.æt/ is a bleeding-edge layered-dynamic-proof-of-work HYBRID-post-quantum multi-algo cryptocurrency. Viat is designed for realtime decentralized validation, extreme decentralized scalability, decentralized block creation, asynchronous architecture, and the highest security potential. Each transaction is treated as its own block, allowing massive parallelism and constant-time lookups through a modular extendable trie-based filesystem optimized for SPECIFIC modernized filesystems on modern SSDs. Viat’s blockchain architecture is a general purpose superstructure with specialized self-constructing branches that incorporates both linear and dag based blockchains. Wallets have their own localized chains while global state is brought to order by two types of miners: arbiters for validation and auditors for canonical history. This design creates a linear relationship between network hardware resources and max tps potential through massive parallel decentralized validation.</p>
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<p>VIAT /ˈviː.æt/ is a bleeding-edge layered-dynamic-proof-of-work HYBRID-post-quantum multi-algo cryptocurrency. Viat is designed for realtime decentralized validation, extreme decentralized scalability, decentralized block creation, asynchronous architecture, and the highest security potential. Each transaction is treated as its own block, allowing massive parallelism and constant-time lookups through a modular extendable trie-based filesystem optimized for SPECIFIC modernized filesystems on modern SSDs. Viat’s blockchain architecture is a general purpose superstructure with specialized self-constructing branches that incorporates both linear and dag based blockchains. Wallets have their own localized chains while global state is brought to order by two types of miners: arbiters for validation and auditors for canonical history. This design creates a linear relationship between network hardware resources and max tps potential through massive parallel decentralized validation.</p>
<p> <spanstyle="margin-left: 10px">BLOCKCHAIN TYPES: [DAG ◉ LINEAR BLOCKCHAIN]</span></p>
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<p> <spanstyle="margin-left: 10px">ENCODING: CBOR-X BINARY DATA SERIALIZATION FORMAT</span></p>
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<hrstyle="margin: 25px auto; width: 75%" />
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<p>VIAT uses a hybrid post-quantum signature scheme that balances speed, security, and long-term survivability. Each transaction is signed using both Ed25519—an efficient, widely adopted classical signature algorithm—and <ahref="https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.204.pdf" target="_blank">Dilithium</a>, a NIST-selected post-quantum lattice-based scheme. This dual-signature approach ensures compatibility with existing systems while providing strong resistance to future quantum threats. As an added layer of resilience, <ahref="https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.205.pdf" target="_blank">SPHINCS+</a>, a conservative, stateless hash-based signature, is included as a non-default fallback (primarily used by auditors) to safeguard against the failure or deprecation of either primary scheme. This layered cryptographic design offers robust protection and future-proof assurance, especially suited for risk-averse users and institutions. </p>
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