Static Parameter Generation =========================== An evaluated ``dip::Environment`` can be exported as static, language-native parameters. This is intended for simulations and compiled applications that need to include a validated DIPL configuration directly, without parsing DIPL at run time. Supported formats are C++, C, Fortran, Rust, Julia, JSON, and YAML. Native representation --------------------- Groups become nested native structures. Lists retain their order, maps retain their keys as iterable key/value entries, and scalar arrays are emitted as native nested collections. C++ uses ``std::array`` and supports one-, two-, and three-dimensional arrays without an additional matrix-library dependency. The Julia exporter uses immutable named tuples, tuples, and ``key => value`` pairs for the same purpose. C++ --- From C++: .. code-block:: cpp environment.generate(snt::dip::ExportFormat::CPP, "parameters.hpp"); environment.generate(snt::dip::ExportFormat::JULIA, "parameters.jl"); Generation is also available from the :doc:`Python binding <../../integrations/python>`, the :doc:`C binding <../../integrations/c>`, the :doc:`command-line interface <../../integrations/cli>`, and the :ref:`command-oriented C++ API guide `. Command line ------------ For command-line workflows, parse a DIPL input or load a DIPH5 environment and select an output format: .. code-block:: console snt dip parse --input file config.dip --generate cpp parameters.hpp snt dip parse --load config.diph5 --generate julia parameters.jl The CLI format names are ``cpp``, ``c``, ``fortran``, ``rust``, ``julia``, ``json``, and ``yaml``. Generation exports the complete evaluated environment; request and tag filters only control text printed by the command.