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Rebuild the API Reference around one page per symbol and richer, verified content.
Pages & navigation
- One HTML page per symbol (kw-*, type-*, phase-*, screen-*, fn-*, annot-*, op-*)
instead of a single scrolling page; namespace overview pages (ns-screen …
ns-color) and a searchable index (api.html) with client-side fuzzy search.
- Sticky-header scroll offset (scroll-margin) so a jumped-to entry/param/color is
never hidden, plus a flash highlight on the scrolled-to target.
Deep linking in every snippet & example
- Namespace members split: `Screen`→namespace page, `fill_rectangle`→method page;
`Color`→palette page, `Charcoal`→its swatch — separately.
- Named arguments (`width:`) link to that parameter's anchor on the method page.
- Hover any token for a summary card built from the real API data (symbols.json).
Content & coverage
- Full authoritative surface documented from the compiler: every keyword, type,
the 6 phases (Start/Input/FixedUpdate/Update/LateUpdate/Render, each its own
page), all 22 annotations, namespace methods with parameter docs, builtins,
the world_* reflection ABI, networking, operators — 155 symbols.
- Longer, clearer explanations; "model"/"model instance" terminology, not "entity";
descriptive identifiers in every example (Position{column,row}, Velocity{delta_x,
delta_y}, Health{current,maximum}, Player/Enemy) — no Pos/Seg/x/dx.
- Accuracy fixes from compiler ground-truth: world_count() takes no arg,
world_query_next(property, cursor) arg order, event fields bind by name; dropped
`when` and `module` (not in the self-hosted parser).
Tooling
- inventory.json + check.py: coverage guard (every symbol has a page), duplicate-
token guard, and broken-link guard — fail CI so docs can't drift.
- validate.py: compiles every ```ludic example against bin/ludicc (158 compile).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
31 lines
1.3 KiB
Markdown
31 lines
1.3 KiB
Markdown
---
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id: kw-var
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name: var
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category: structure
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kind: keyword
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tokens: var
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sig: var name: T = value
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tip: A mutable binding — at program scope, your game's persistent named state.
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order: 6
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---
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A <code>var</code> declares a <b>mutable</b> binding: unlike `let`, you may reassign it later with `=`, `+=`, `-=`, and friends. Where it appears decides its lifetime — inside a handler or function body it is a local, and at program scope it is persistent, named game state that every handler shares. Program-scope `var`s are the modern replacement for numeric registers: instead of `reg(0)`, you write `var score: int = 0` and read and write `score` by name. Use `var` for anything that genuinely changes — accumulators, the current score, a mode flag, an elapsed-frame counter — and prefer `let` for values that never change.
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```ludic
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program Scorekeeper {
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var score: int = 0
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var elapsed_frames: int = 0
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handler Tick phase Update {
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elapsed_frames = elapsed_frames + 1
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if elapsed_frames % 60 == 0 { score = score + 1 }
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}
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handler DrawWorld phase Render {
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Screen.clear(Color.MidnightBlue)
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Screen.draw_text(x: 6, y: 4, text: "SCORE", color: Color.White, scale: 1)
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Screen.draw_number(x: 52, y: 4, value: score, color: Color.Gold, scale: 1)
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Screen.show()
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}
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}
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```
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