
Jeremy Kun contributed to core build system and cryptography infrastructure across repositories such as grpc/bazel-central-registry, openfheorg/openfhe-development, and bazelbuild/bazel-central-registry. He enabled MacOS Bazel debug build compatibility for the soplex module, resolving platform-specific preprocessor conflicts and improving local development reliability. In openfheorg/openfhe-development, Jeremy addressed C++ build errors by refactoring include directives and enhancing test robustness through type consistency. He also standardized LLVM/Clang installation in google/heir’s CI workflows using shell scripting. His work integrated ISL 0.27 as a Bazel module, streamlining dependency management. Jeremy’s contributions leveraged C++, Bazel, and CI/CD automation for maintainable, cross-platform builds.

October 2025 performance summary for bazel-central-registry: Delivered ISL Bazel module integration (version 0.27) to the central registry. Introduced the module definition and presubmit configuration for ISL 0.27, wired dependency management and verification build targets, and linked the work to commit f8fa634df0c4c792b516a4ca034eaa34951ccc75 (#6130). This work improves downstream reproducibility, accelerates CI verification, and lays the groundwork for future ISL upgrades with reduced risk.
October 2025 performance summary for bazel-central-registry: Delivered ISL Bazel module integration (version 0.27) to the central registry. Introduced the module definition and presubmit configuration for ISL 0.27, wired dependency management and verification build targets, and linked the work to commit f8fa634df0c4c792b516a4ca034eaa34951ccc75 (#6130). This work improves downstream reproducibility, accelerates CI verification, and lays the groundwork for future ISL upgrades with reduced risk.
In September 2025, delivered two primary outcomes across two repositories that strengthened CI reliability and accelerated cryptographic workloads, while improving test robustness. The work focused on standardizing build environments for LLVM/Clang tooling and enhancing permutation-oriented cryptographic routines, delivering clear business value through more predictable CI and faster cryptographic processing.
In September 2025, delivered two primary outcomes across two repositories that strengthened CI reliability and accelerated cryptographic workloads, while improving test robustness. The work focused on standardizing build environments for LLVM/Clang tooling and enhancing permutation-oriented cryptographic routines, delivering clear business value through more predictable CI and faster cryptographic processing.
July 2025 monthly summary for openfheorg/openfhe-development. Delivered a critical build-system fix to resolve compile-time errors by addressing missing include directives across multiple C++ files, and cleaned up unused imports identified by clang-tidy. The changes also simplify the upgrade process by reducing reliance on external patches, improving CI reliability and developer onboarding.
July 2025 monthly summary for openfheorg/openfhe-development. Delivered a critical build-system fix to resolve compile-time errors by addressing missing include directives across multiple C++ files, and cleaned up unused imports identified by clang-tidy. The changes also simplify the upgrade process by reducing reliance on external patches, improving CI reliability and developer onboarding.
June 2025: MacOS Bazel debug build compatibility for the soplex module in grpc/bazel-central-registry completed. Resolved conflict with the DEBUG preprocessor symbol on Apple platforms; added Bazel module files, build definitions, and patches to adjust soplex configurations and verbosity. Resulted in reliable local development and testing on Mac, improving platform parity and contributor productivity.
June 2025: MacOS Bazel debug build compatibility for the soplex module in grpc/bazel-central-registry completed. Resolved conflict with the DEBUG preprocessor symbol on Apple platforms; added Bazel module files, build definitions, and patches to adjust soplex configurations and verbosity. Resulted in reliable local development and testing on Mac, improving platform parity and contributor productivity.
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