ludic/tools/editors
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feat(types): option (some/none) safety type (#53)
Types phase 3 — the option/result safety pair. result/ok/err/try shipped in
#46; this adds its companion option:

- some(v)   -> option   (present value; any i32-width scalar)
- none()    -> option   (empty; no magic -1 sentinel)
- is_some / is_none -> bool
- unwrap_or(o, fallback) -> int

A heap %Option = { i32 present, i32 value }, bare builtins guarded by find_fn
(a user fn of the same name still wins), gated by g_uses_option so unused
programs compile byte-identically — same idiom as result.

Wired: emit_call codegen + %Option decl (emit_decl) + g_uses_option (emit_core),
reseeded seed, vocabulary sync (header/JetBrains/TextMate), builtin docs +
inventory, and a self-asserting example (examples/library/optionresult.ludic +
feat_case). All suites green incl. golden renders byte-identical and the
bootstrap fixpoint.

Tagged-union enums (variant payloads + binding match + exhaustiveness) are the
deep type-system feature, split out to #56.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-08-31 19:11:27 +03:00
..
emacs Phase 6a: rename core vocabulary (game/main/component/archetype/system) 2026-08-27 18:22:13 +03:00
helix Baseline: Ludic compiler + toolchain, Phase 1 syntax fixes complete 2026-08-27 15:15:35 +03:00
jetbrains feat(types): option (some/none) safety type (#53) 2026-08-31 19:11:27 +03:00
neovim/lua Baseline: Ludic compiler + toolchain, Phase 1 syntax fixes complete 2026-08-27 15:15:35 +03:00
shared feat(types): option (some/none) safety type (#53) 2026-08-31 19:11:27 +03:00
sublime Baseline: Ludic compiler + toolchain, Phase 1 syntax fixes complete 2026-08-27 15:15:35 +03:00
vscode feat(types): option (some/none) safety type (#53) 2026-08-31 19:11:27 +03:00
zed Baseline: Ludic compiler + toolchain, Phase 1 syntax fixes complete 2026-08-27 15:15:35 +03:00
README.md feat(tooling): port the doc/lint/grammar checks to Ludic (no Python) 2026-08-31 01:06:38 +03:00

Ludic in your editor

Everything here is built on one idea: write the language knowledge once, in C, and let every editor talk to it. There is one lexer, one vocabulary, one formatter and one language server. VS Code and JetBrains get first-class plugins because those are the two that were asked for; every other editor gets the same capabilities by pointing at the same binary.

tools/ludic-tools/            the actual language knowledge, in C, no dependencies
  ludic_syntax.h              lexer + the vocabulary — the source of truth
  ludic_fmt.h                 comment-preserving formatter
  ludic_index.h               error-tolerant reader: declarations, bindings, scopes
  ludic_workspace.h           multi-file model: imports, compilation units, Markdown
  ludic_json.h                just enough JSON for LSP
  ludic_fmt_main.c            -> bin/ludic-fmt
  ludic_lsp.c                 -> bin/ludic-lsp

tools/editors/
  shared/                     TextMate grammar + Markdown injection + language config
  vscode/                     VS Code extension
  jetbrains/                  IntelliJ Platform plugin (Community editions included)
  neovim/ helix/ emacs/ sublime/ zed/     configuration, no plugin needed

Build it

bin/x tools

Produces bin/ludic-fmt and bin/ludic-lsp. Add --install to symlink both into ~/.local/bin, --test to run bin/x test-tools afterwards.

What you get, in any editor

Feature How
Syntax highlighting LSP semantic tokens, or the TextMate grammar with no server at all
Diagnostics structural errors as you type; ludicc's own errors on save
Completion context-aware — see below
Hover signature + docs for builtins, intrinsics, and everything you declared
Go to definition, find usages, rename across the whole compilation unit, following import — by resolving each occurrence, not by matching text, so renaming a component's x leaves every other x alone
Formatting whole-file, comment-preserving, idempotent
Outline, folding, inlay hints, signature help, document links
```ludic in Markdown highlighted, checked and formatted

Completion knows where the caret is: fields after ., components inside query [...] and after spawn, phase names after phase, scene names after enter, widget types and props inside a ui block, types after : and ->, and otherwise keywords, builtins, and everything in scope.

Per-editor setup

  • VS Code — vscode/. npm install && npx @vscode/vsce package, then install the .vsix. Finds the binaries under bin/ on its own.

  • JetBrains — jetbrains/. ./gradlew buildPlugin, then install the zip from disk. Uses LSP4IJ rather than the paid-IDE LSP API, so it works in Community editions too.

  • Neovim — require('ludic').setup() from neovim/.

  • Helix — merge helix/languages.toml into your config.

  • Emacs — emacs/ludic-mode.el; eglot is wired up in one line.

  • Sublime — sublime/README.md; the TextMate grammar loads as-is.

  • Zed — zed/README.md; LSP-only, no grammar to build.

  • Anything else that speaks LSP:

    command: bin/ludic-lsp --stdio
    languages: ludic, markdown
    initializationOptions: { "compilerPath": "bin/ludicc", "compilerDiagnostics": true, "indentSize": 2 }
    

Markdown

Markdown fenced-code highlighting is not one standard — it is three mechanisms, and this ships all three so that a ```ludic block works wherever you write prose:

  1. TextMate injection (shared/ludic.markdown-injection.json) — what VS Code, Sublime and other TextMate-based editors use. It is a plain grammar file with an injectionSelector, so it is portable rather than VS Code-specific.

  2. Language-ID resolution — JetBrains' Markdown support matches a fence's info string against registered language IDs, so the plugin registering as Ludic is all that is needed; no Markdown-specific code exists in the plugin.

  3. The language server — ludic-lsp accepts Markdown documents directly. It copies the buffer, blanks every byte outside a ```ludic fence, and analyses the result; offsets still line up with the real file, so semantic highlighting, hover, completion and go-to-definition all work inside fences with no editor-side support at all. This is the fallback that works even where the other two do not.

    It reports no diagnostics in Markdown, deliberately. A fence is a snippet — an elision mark, or a body shown without its enclosing game block — so nearly every error found there would be the documentation doing its job. ludic-fmt --check still keeps the fences formatted, which is the part of "is this doc correct" that can be answered without guessing.

The formatter handles Markdown too, which keeps documentation honest:

bin/ludic-fmt --check LANGUAGE.md README.md     # CI: fail if a fence is unformatted
bin/ludic-fmt -w LANGUAGE.md                    # reformat the fences, leave the prose

Keeping a tree formatted

ln -sf ../../tools/git-hooks/pre-commit .git/hooks/pre-commit

The hook runs ludic-fmt --check over the staged .ludic and .md files only, and does nothing at all when bin/ludic-fmt has not been built — so it never blocks a commit on a machine that has not run bin/x tools.

Why the formatter is not ludicc --fmt

The compiler has a canonical printer, and it is the right tool for seeing what the compiler parsed. It is the wrong tool for an editor: it walks the AST after import splicing, so it drops every comment and inlines every imported file into whichever file you pointed it at. Running it as format-on-save on chronorift/combat.ludic would replace that file with the whole game.

ludic-fmt works on the token stream instead. Nothing is dropped or reordered — every token is re-emitted in order, and the only freedom taken is the whitespace between them. Lines are re-indented and respaced but never joined or split, so you keep control of line structure.

Two carve-outs keep the output idiomatic rather than merely uniform, because both spellings are what the language documents and uses:

  • runs of two or more spaces are preserved, so hand-aligned columns (const R_DIR: int = 0 # 0 up) survive a save;
  • id=Root inside a ui block and {Enemy} inside a query stay tight.

bin/x test-tools checks the property that matters: formatting every file in the tree and re-running the compiler's canonical dump produces byte-identical output. The formatter cannot change what a program means.

Keeping it honest

The vocabulary is written down in five places that cannot include each other — the compiler's two tables, ludic_syntax.h, the TextMate grammar (JSON), and the JetBrains lexer (Kotlin). Adding a builtin and forgetting the rest is silent failure, so bin/x check-vocabulary (written in Ludic) compares all five, and bin/x test-tools runs it.

When you add a keyword or builtin: put it in ludic_syntax.h, then run bin/x test-tools and let it tell you which copies still need it.