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# Description This PR tries to allow the `ls` command to use multiple threads if so specified. The reason why you'd want to use threads is if you notice `ls` taking a long time. The one place I see that happening is from WSL. I'm not sure how real-world this test is but you can see that this simple `ls` of a folder with length takes a while 9366 ms. I've run this test many times and it ranges from about 15 seconds to about 10 seconds. But with the `--threads` parameter, it takes less time, 2744ms in this screenshot. ![image](https://github.com/user-attachments/assets/e5c4afa2-7837-4437-8e6e-5d4bc3894ae1) The only way forward I could find was to _always_ use threading and adjust the number of threads based on if the user provides a flag. That seemed the easiest way to do it after applying @devyn's interleave advice. No feelings hurt if this doesn't land. It's more of an experiment but I think it has potential. # User-Facing Changes <!-- List of all changes that impact the user experience here. This helps us keep track of breaking changes. --> # Tests + Formatting <!-- Don't forget to add tests that cover your changes. Make sure you've run and fixed any issues with these commands: - `cargo fmt --all -- --check` to check standard code formatting (`cargo fmt --all` applies these changes) - `cargo clippy --workspace -- -D warnings -D clippy::unwrap_used` to check that you're using the standard code style - `cargo test --workspace` to check that all tests pass (on Windows make sure to [enable developer mode](https://learn.microsoft.com/en-us/windows/apps/get-started/developer-mode-features-and-debugging)) - `cargo run -- -c "use toolkit.nu; toolkit test stdlib"` to run the tests for the standard library > **Note** > from `nushell` you can also use the `toolkit` as follows > ```bash > use toolkit.nu # or use an `env_change` hook to activate it automatically > toolkit check pr > ``` --> # After Submitting <!-- If your PR had any user-facing changes, update [the documentation](https://github.com/nushell/nushell.github.io) after the PR is merged, if necessary. This will help us keep the docs up to date. --> |
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nu-cli | ||
nu-cmd-base | ||
nu-cmd-extra | ||
nu-cmd-lang | ||
nu-cmd-plugin | ||
nu-color-config | ||
nu-command | ||
nu-derive-value | ||
nu-engine | ||
nu-explore | ||
nu-glob | ||
nu-json | ||
nu-lsp | ||
nu-parser | ||
nu-path | ||
nu-plugin | ||
nu-plugin-core | ||
nu-plugin-engine | ||
nu-plugin-protocol | ||
nu-plugin-test-support | ||
nu-pretty-hex | ||
nu-protocol | ||
nu-std | ||
nu-system | ||
nu-table | ||
nu-term-grid | ||
nu-test-support | ||
nu-utils | ||
nu_plugin_custom_values | ||
nu_plugin_example | ||
nu_plugin_formats | ||
nu_plugin_gstat | ||
nu_plugin_inc | ||
nu_plugin_nu_example | ||
nu_plugin_polars | ||
nu_plugin_python | ||
nu_plugin_query | ||
nu_plugin_stress_internals | ||
nuon | ||
README.md |
Nushell core libraries and plugins
These sub-crates form both the foundation for Nu and a set of plugins which extend Nu with additional functionality.
Foundational libraries are split into two kinds of crates:
- Core crates - those crates that work together to build the Nushell language engine
- Support crates - a set of crates that support the engine with additional features like JSON support, ANSI support, and more.
Plugins are likewise also split into two types:
- Core plugins - plugins that provide part of the default experience of Nu, including access to the system properties, processes, and web-connectivity features.
- Extra plugins - these plugins run a wide range of different capabilities like working with different file types, charting, viewing binary data, and more.