
Developed and delivered a runnable Etherlink kernel target within the tezos/riscv-pvm repository, focusing on secure, isolated execution for embedded systems. The work established the foundational sandboxed runtime, including durable storage initialization and integration of sample inbox data, enabling immediate validation of sandboxed execution flows. Leveraging Rust and Makefile, the implementation combined kernel development with build system enhancements to support end-to-end kernel target initialization. This approach provided a robust framework for future iteration and testing of smart contract execution in a RISC-V environment, emphasizing system programming principles and secure runtime design without addressing bug fixes during the initial development period.
June 2025 focused on delivering a runnable Etherlink kernel target within the tezos/riscv-pvm repository and laying the sandboxed runtime foundations necessary for secure, isolated execution. The work established end-to-end kernel target initialization with sandbox runtime support, including durable storage initialization and sample inbox data, enabling immediate validation and iteration on sandboxed execution flows.
June 2025 focused on delivering a runnable Etherlink kernel target within the tezos/riscv-pvm repository and laying the sandboxed runtime foundations necessary for secure, isolated execution. The work established end-to-end kernel target initialization with sandbox runtime support, including durable storage initialization and sample inbox data, enabling immediate validation and iteration on sandboxed execution flows.

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