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/godot-master

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Consolidated expert library for professional Godot 4.7+ game and application development. Orchestrates 92 Domain Skills through architectural workflows, anti-pattern catalogs, performance budgets, and Server API patterns. Use when: (1) starting a new Godot project, (2) designing game or app architecture, (3) building entity/component systems, (4) debugging performance or physics issues, (5) choosing between 2D/3D approaches, (6) implementing multiplayer, (7) optimizing draw calls or script time, (8) porting between platforms, (9) migrating from 4.6 to 4.7. Primary entry point for ALL Godot development tasks. Keywords: Godot 4.7, AreaLight3D, HDR, Asset Store, godot-master.

Use this Skill: https://skilld.dev/gh/thedivergentai/gd-agentic-skills/godot-master

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referencesautoload-architecture.md

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Available Scripts

autoload_init_order_diag.gd

MANDATORY before trusting a multi-Autoload dependency graph — verifies boot sequence.

singleton_dependency_diagram.gd

MANDATORY with the mermaid/order diagram — maps who may call whom at boot.

global_event_bus.gd

MANDATORY before a cross-system Autoload bus (Achievements, UI, Save events).

safe_scene_switcher.gd

MANDATORY before Autoload-owned scene transitions (deferred free / root management).

service_locator.gd / service_registry.gd

MANDATORY before Engine.register_singleton DI for non-Node services.

persistent_data_holder.gd

Data that must survive change_scene_to_file() (inventory, settings).

static_state_manager.gd

static var global state when you do not need a SceneTree Node.

lazy_loaded_singleton.gd

On-demand instantiate instead of eager boot cost.

cross_autoload_comms.gd

Safe cross-singleton calls after both are ready.

thread_safe_global_access.gd

Mutex / call_deferred for background threads touching Autoload state.

autoload_reference_checker.gd / singleton_health_check_test.gd

Validate registration + defaults (debug / CI).

autoload_bootstrapper.gd / autoload_initializer.gd

Ordered init helpers when _ready is too early for heavy work.

debug_console_autoload.gd

PROCESS_MODE_ALWAYS CanvasLayer console.

global_game_state.gd / stateless_bus.gd

State holder vs pure event bus split.

NEVER Do in AutoLoad Architecture

  • NEVER access AutoLoads in _init() — AutoLoads are initialized sequentially. Accessing one in _init() may find a null reference.
  • NEVER modify a Singleton's size or children in _ready() — If multiple Singletons refer to each other's trees during boot, it can cause layout/sorting errors.
  • NEVER store highly localized, scene-specific data in AutoLoads — This creates "God Objects" and introduces global side effects that are hard to debug.
  • NEVER use Parent.method() calls from an Autoload — Autoloads sit at the root. They are the ultimate "top". Use signals to talk to the active scene.
  • NEVER use an Autoload for pure data containers — If you don't need _process() or signals, use a static var in a class_name script instead.
  • NEVER create circular dependencies between Singletons — If A needs B and B needs A, Godot will hang during the splash screen.
  • NEVER free an Autoload node manually — Removing a singleton from the root can leave dangling references that crash the engine.
  • NEVER use AutoLoads for UI elements that aren't global — Popups that only exist in one level should be in that level, not a global singleton.
  • NEVER assume get_tree().current_scene is accurate in _ready() — In Autoloads, the active scene might still be initializing. Access it via get_tree().root.get_child(-1).
  • NEVER skip process_mode configuration — If your global console or music manager needs to work while the game is paused, set process_mode = PROCESS_MODE_ALWAYS.

When to Use AutoLoads

Good: Game/Audio/Save managers, SceneTransitioner, global score/inventory, cross-scene EventBus.

Avoid: Scene-specific logic, temporary state, pure data (prefer static / Resource), over-architecting tiny projects.


Expert Architecture Patterns

1. Boot order & dependency diagram

MANDATORY: Read autoload_init_order_diag.gd and singleton_dependency_diagram.gd before drawing or trusting any Autoload order.

Autoloads initialize top → bottom in Project Settings. Upper singletons must not call lower ones in _ready(). Move dependents down the list.

graph TD
    subgraph Autoloads [Project Settings order]
        B[1. GlobalAudio] --> C[2. ServiceLocator]
        C --> D[3. QuestManager]
    end
    D --> E[Current Scene]
    E -->|Queries| C

2. Service locator (non-Node DI)

MANDATORY: service_locator.gd / service_registry.gd before Engine.register_singleton.

Use for lightweight RefCounted services; unregister in _exit_tree to avoid dangling engine singletons.

3. Event bus vs state holder

MANDATORY: global_event_bus.gd for cross-system past-tense events. Keep mutable run state in persistent_data_holder.gd / global_game_state.gd — not on the bus.

4. Safe scene switching from Autoload

MANDATORY: safe_scene_switcher.gd — deferred free + root ownership. Pair with godot-scene-management for threaded loads.

5. Health checks

MANDATORY in debug/CI: singleton_health_check_test.gd / autoload_reference_checker.gd — assert presence + Engine.has_singleton for registered services.

Expert insights (WHY — keep in body)

  • Boot order — WHY: Autoloads init top→bottom in Project Settings. Upper singletons must not call lower ones in _ready() (autoload_init_order_diag.gd).
  • Service locator vs Node Autoload — WHY: RefCounted services avoid SceneTree overhead; register via Engine.register_singleton and unregister in _exit_tree (service_locator.gd).
  • Event bus vs state — WHY: buses emit past-tense events; mutable run state belongs in persistent_data_holder.gd, not on the bus.
  • current_scene in _ready() — WHY: active scene may still be mounting; use get_tree().root.get_child(-1) or defer until scene ready.

Deep recipes (on demand)

Topic Reference / script
Service locator / boot diagram / health checks expert-patterns.md
Beginner registration only autoload-patterns.md

Reference

Progressive disclosure: open Official Documentation links only when researching a specific API; load Related Skills when routing to a peer domain — do not preload the whole lattice.

Official Documentation

  • Singletons (AutoLoad) — How AutoLoads register under /root, become global names, and why boot order matches Project Settings list order.
  • Autoloads versus regular nodes — Decision guide for when a global singleton is justified versus a scene-owned node or static helper.
  • Scene organization — Keep scene-local data out of AutoLoads so managers do not become God Objects.
  • Logic preferences — Prefer signals and ownership edges over reaching into Autoload trees for gameplay orchestration.
  • Using SceneTree — Why current_scene can be unreliable during Autoload _ready() and how root children relate to the active scene.
  • Change scenes manually — Deferred free + root reparent patterns behind safe global scene switchers.
  • Pausing games — process_mode / PROCESS_MODE_ALWAYS for consoles, music, and managers that must run while get_tree().paused.
  • Overridable functions — _init vs _ready timing so cross-Autoload access does not hit nulls during sequential boot.
  • Using signals — Emit/connect model for Autoload event buses that decouple scenes without hard node paths.
  • Engine — register_singleton / get_singleton for lightweight service locators that are not SceneTree Nodes.
  • Thread-safe APIs — Which engine APIs need Mutex/call_deferred when background threads touch global Autoload state.
  • Saving games — Persistence patterns for inventory/settings held in long-lived Autoload data holders.

Related Skills

Prerequisites
  • godot-project-foundations — AutoLoad entries live in Project Settings / project.godot; get registration and naming right before wiring managers.
  • godot-gdscript-mastery — Typed signals, static var / class_name, and deferred calls are the language tools this skill’s patterns assume.
  • godot-signal-architecture — Event-bus and Signal-Up contracts for Autoload mediators without circular emit chains.
Complements
  • godot-scene-management — Pair with safe scene switchers so transitions own loading/unload while AutoLoads keep cross-scene state.
  • godot-save-load-systems — Serialize what persistent Autoload holders store; do not invent a second save path inside GameManager.
  • godot-resource-data-patterns — Prefer Resources for shared config; reserve AutoLoads for lifecycle + signals, not duplicated data blobs.
  • godot-composition — Component ownership alternative when a “manager Autoload” is really scene-scoped behavior in disguise.
  • godot-audio-systems — Music/SFX pools are classic Autoload homes; use this skill for ownership and boot order around those managers.
  • godot-state-machine-advanced — Global MENU/PLAYING/PAUSED FSMs belong here when the Autoload is only the owner, not the whole game logic dump.
  • godot-debugging-profiling — Init-order diagnostics and singleton health checks escalate into debugger/profiler workflows when boot hangs.
Downstream / consumers
  • godot-performance-optimization — Escalate when too many Node Autoloads, eager preloads, or per-frame manager work show up in profilers.
  • godot-testing-patterns — GUT/CI health checks for registered singletons and reset of global state between tests.
  • godot-multiplayer-networking — Global state Autoloads become authority/replication hazards; consume this skill’s DI patterns carefully online.
  • godot-inventory-system — Typical consumer of persistent Autoload holders for inventory that must survive change_scene_to_file().
Master
  • godot-master — Library router and mirrored module entry; open when discovering which Domain Skill owns a cross-cutting singleton concern.

Source: SKILL.md on GitHub

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