Tech
How Karak’s Latest Tech Integration Could Make Data Breaches Obsolete
- Space and Time uses zero-knowledge proofs to ensure secure and tamper-proof data processing for smart contracts and enterprises.
- The integration facilitates faster development and deployment of Distributed Secure Services (DSS) on the Karak platform.
Karak, a platform known for its strong security capabilities, is enhancing its Distributed Secure Services (DSS) by integrating Space and Time as a zero-knowledge (ZK) coprocessor. This move is intended to strengthen trustless operations across its network, especially in slashing and rewards mechanisms.
Space and Time is a verifiable processing layer that uses zero-knowledge proofs to ensure that computations on decentralized data warehouses are secure and untampered with. This system enables smart contracts, large language models (LLMs), and enterprises to process data without integrity concerns.
The integration with Karak will enable the platform to use Proof of SQL, a new ZK-proof approach developed by Space and Time, to confirm that SQL query results are accurate and have not been tampered with.
One of the key features of this integration is the enhancement of DSS on Karak. DSS are decentralized services that use re-staked assets to secure the various operations they provide, from simple utilities to complex marketplaces. The addition of Space and Time technology enables faster development and deployment of these services, especially by simplifying slashing logic, which is critical to maintaining security and trust in decentralized networks.
Additionally, Space and Time is developing its own DSS for blockchain data indexing. This service will allow community members to easily participate in the network by running indexing nodes. This is especially beneficial for applications that require high security and decentralization, such as decentralized data indexing.
The integration architecture follows a detailed and secure flow. When a Karak slashing contract needs to verify a SQL query, it calls the Space and Time relayer contract with the required SQL statement. This contract then emits an event with the query details, which is detected by operators in the Space and Time network.
These operators, responsible for indexing and monitoring DSS activities, validate the event and route the work to a verification operator who runs the query and generates the necessary ZK proof.
The result, along with a cryptographic commitment on the queried data, is sent to the relayer contract, which verifies and returns the data to the Karak cutter contract. This end-to-end process ensures that the data used in decision-making, such as determining penalties within the DSS, is accurate and reliable.
Karak’s mission is to provide universal security, but it also extends the capabilities of Space and Time to support multiple DSSs with their data indexing needs. As these technologies evolve, they are set to redefine the secure, decentralized computing landscape, making it more accessible and efficient for developers and enterprises alike. This integration represents a significant step towards a more secure and verifiable digital infrastructure in the blockchain space.
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