WordPress plugin: internal architecture
How the plugin organizes itself inside includes/ (or wherever the PSR-4 root lives) once the bootstrap (see wp-plugin-bootstrap) and lifecycle (see wp-plugin-lifecycle) are in place. The bootstrap is the launcher; this skill is the engine layout.
Out of scope: bootstrap-file content, activation / deactivation / uninstall, cron specifics, REST endpoint design — covered by sibling skills.
When to use this skill
Trigger when ANY of the following is true:
- Scaffolding the
includes/(orsrc/) folder of a new plugin. - Reviewing the class layout in a PR — folder structure, where things live, what's reused.
- Deciding whether a meta key / option name belongs in a class const, a
Schema.php, or a PHP enum. - Reviewing asset enqueue code — wrong hook, missing dependencies, unconditional loading.
- The user asks "should this be a singleton" or "where should this constant live".
Folder layout — by-type or by-feature
There are two reasonable organizational schemes for includes/. Pick one and stay consistent.
By-type (group classes by their WP role). Works for small-to-medium plugins (≤ 15 classes, 1-3 features):
includes/
├── Plugin.php # composition root / wiring
├── Schema.php # central constants
├── Actions/ # JFB / WC actions
├── Events/ # JFB events
├── Settings/ # admin settings
├── Rest/ # REST controllers
└── Api/ # external HTTP clients
By-feature (group everything that belongs to a feature together). Scales better past 3-4 distinct features:
includes/
├── Plugin.php
├── Schema.php
├── Verdict/ # AI Verdict feature
│ ├── VerdictAction.php
│ ├── VerdictTrueEvent.php
│ └── VerdictFalseEvent.php
├── Enrichment/
│ ├── EnrichmentAction.php
│ └── EnrichmentDoneEvent.php
├── Settings/
│ └── SettingsTab.php
└── Updater/
└── UpdateChecker.php
The wrong move is mixing both in the same plugin. A reader gets confused, an AI gets lost, and refactors become tedious. By-type is fine until it isn't — when a third feature ships and Actions/ has 9 classes from 3 unrelated domains, switch the whole plugin to by-feature.
Hard rule across both styles: one class per file, file name matches class name (VerdictAction.php → class VerdictAction), PSR-4 maps <RootNamespace>\Verdict\VerdictAction to includes/Verdict/VerdictAction.php. The kebab-case class-foo-bar.php filename is a holdover from PHPCS-WPCS-old; modern plugins use PascalCase that matches the class.
Centralization — Schema / Constants is non-negotiable
Every string that appears more than once — meta key, option name, custom hook name, cron event name, CPT slug, capability slug, transient prefix — lives in one place. Three patterns that all work:
Class const on the feature class
class UsageTracker {
public const OPTION_PREFIX = 'myplugin_usage_';
public static function current_month_key(): string {
return self::OPTION_PREFIX . gmdate( 'Y_m' );
}
}
When the constant logically belongs to one feature, define it there. Cleanest scope.
Dedicated Schema class for cross-feature constants
namespace MyPlugin;
final class Schema {
public const META_FORM_SETTINGS = '_myplugin_form_settings';
public const OPTION_GLOBAL = 'myplugin_global_settings';
public const CPT_LOG = 'myplugin_log';
public const CRON_DAILY = 'myplugin_daily_cleanup';
public const HOOK_BEFORE_REQUEST = 'myplugin/before_request';
private function __construct() {} // not instantiable
}
Then everywhere: Schema::META_FORM_SETTINGS instead of the literal string. Renaming becomes one-line; typos become impossible (the class autoloader catches them).
PHP 8.1+ enum for typed value sets
For a fixed value set (failure modes, output types, etc.), use enums only when the plugin's declared minimum PHP version is 8.1 or higher:
enum FailureMode: string {
case Halt = 'halt';
case Permissive = 'permissive';
case Restrictive = 'restrictive';
}
// Then instead of error-prone string parsing:
$mode = FailureMode::tryFrom( $raw ) ?? FailureMode::Halt;
Type-safe, enumerable, documents itself.
For PHP 7.4 / 8.0-compatible plugins, use class constants plus explicit validation instead:
final class FailureMode {
public const HALT = 'halt';
public const PERMISSIVE = 'permissive';
public const RESTRICTIVE = 'restrictive';
public static function normalize( string $raw ): string {
return in_array( $raw, self::all(), true ) ? $raw : self::HALT;
}
public static function all(): array {
return array( self::HALT, self::PERMISSIVE, self::RESTRICTIVE );
}
}
The hard rule: if you find yourself typing the same magic string in two files, that's the moment to centralize. The wrong direction is "I'll only have it in two places, no need yet" — git grep next year proves the lie.
Singleton discipline — composition root yes, everything else no
The Plugin class is often the composition root: one object wires services,
hooks, controllers, settings, and integrations after bootstrap. It MAY expose a
small instance() helper when the surrounding plugin style already uses that
pattern, but a singleton is not required. A plain new Plugin(...)->register()
from the bootstrap is usually easier to test.
Beyond the composition root, don't make everything a singleton by reflex.
- A
SettingsRepositorydoesn't needgetInstance()— instantiate it where you need it (new SettingsRepository()); it's cheap. - A logger MAY be a singleton if it holds connection state (a buffer, a remote handler) — but most plugin loggers wrap
error_log, which is itself globally available. No state, no singleton. - An external API client (Stripe, OpenAI, Slack) is NOT a singleton. Inject the API key + dependencies at construction; pass it where it's needed.
The price of singleton-everywhere: tests can't substitute mocks, dependencies become hidden, and you accumulate a Plugin::instance()->get_storage_manager()->get_provider_registry() getter chain that nobody can refactor.
When in doubt: write the class as a regular class. Promote to singleton only when there's a concrete reason (genuine global state, expensive lazy initialization shared across many call sites, or compatibility with an existing plugin API).
Asset enqueueing — conditional, on the right hook
The wrong way: enqueue every script and stylesheet on every page load via wp_enqueue_scripts. The right way:
Pick the right hook for the right context. Verified in WP source:
- Frontend pages:
wp_enqueue_scripts(wp-includes/script-loader.php:2311) - wp-admin pages:
admin_enqueue_scripts(wp-admin/admin-header.php:123) — receives$hook_suffixargument identifying the current admin page - Block editor (Gutenberg):
enqueue_block_editor_assets - Front + back of blocks:
enqueue_block_assets - Login screen:
login_enqueue_scripts - Customizer preview:
customize_preview_init
- Frontend pages:
Gate by context inside the hook callback:
add_action( 'admin_enqueue_scripts', static function ( string $hook_suffix ): void { // Only on the plugin's own settings page if ( $hook_suffix !== 'settings_page_myplugin' ) { return; } wp_enqueue_script( /* ... */ ); } );For frontend, gate by
is_singular()/has_block( 'myplugin/contact' )/ specific shortcodes.Always declare dependencies — even ones that "feel obvious".
wp-element,wp-components,wp-i18n,wp-hooks, your own scripts. Without proper deps the script may run before the dependency is defined and break.Cache-bust deterministically. Two valid patterns:
filemtime( $script_path )— perfect during development (every save invalidates cache).- The plugin
VERSIONconstant — best for production (predictable, changes on release). - A hybrid:
defined('SCRIPT_DEBUG') && SCRIPT_DEBUG ? filemtime() : VERSION.
$argsarray since WP 6.3 — the 5th parameter overloads from a boolean$in_footerto an array supportingstrategy('defer'or'async'),in_footer, andfetchpriority(since 6.9). Use'strategy' => 'defer'instead of jQuery-era ready-handlers when feasible.
wp_add_inline_script preferred over wp_localize_script for new code
wp_localize_script (since 2.2) creates a JavaScript object from an associative array. It still works, but for arbitrary runtime config it is a legacy-shaped helper: it requires an array payload and creates a top-level global. Use wp_set_script_translations() for JavaScript translations.
wp_add_inline_script (since 4.5) is the modern path: any JS string, before or after the registered script. Use wp_json_encode() to serialize structured data:
wp_add_inline_script(
'myplugin-editor',
'window.MyPluginConfig = ' . wp_json_encode( array(
'restUrl' => esc_url_raw( rest_url( 'myplugin/v1/' ) ),
'nonce' => wp_create_nonce( 'wp_rest' ),
) ) . ';',
'before'
);
Both functions still work; for a new plugin, default to wp_add_inline_script
for configuration and wp_set_script_translations() for script translations.
Hook naming — prefix everything
Custom action / filter hooks the plugin emits (so other developers can wire into your behavior) follow ONE naming convention, picked once and never deviated from:
// Slash-separated (common in modern plugins and integrations)
do_action( 'myplugin/before_request', $payload );
apply_filters( 'myplugin/api_response', $response, $request );
// Underscore-separated (classic; common in WordPress core)
do_action( 'myplugin_before_request', $payload );
Both are common in the ecosystem, but WordPress core itself mostly uses
underscore-separated hook names such as pre_get_posts and
rest_pre_serve_request. If the project uses WPCS rules that discourage slashes
in hook names, pick underscores. The hard rule: prefix every custom hook with
the plugin slug. do_action( 'before_request', ... ) is a foot-gun —
collisions with other plugins are guaranteed at scale.
When you DO emit a custom hook, give it a docblock right above:
/**
* Fires before the AI request is sent.
*
* @since 1.0.0
*
* @param array $payload The request payload (mutable downstream).
*/
do_action( 'myplugin/before_request', $payload );
@since lets users pin their integration; AI assistants reading the source rely on these to suggest correct hooks.
Critical rules
- One class per file, file name matches class name, PSR-4 namespace mirrors the folder path.
- Pick by-type or by-feature, never both in the same plugin. Switch styles by refactoring the whole
includes/at once. - Centralize every repeated string (meta keys, option names, hook names, cron events, CPT slugs) in a class const, a
Schemaclass, or a PHP 8.1+ enum when the plugin requires PHP 8.1+. - Plugin class is a composition root; singleton is optional. Default all other classes to regular classes; promote to singleton only with a concrete reason.
- Enqueue conditionally on the right hook (
wp_enqueue_scripts/admin_enqueue_scripts($hook_suffix)/enqueue_block_editor_assets); never enqueue unconditionally ininit. wp_add_inline_scriptoverwp_localize_scriptfor shipping config / JSON to JS. Both work; the inline-script path is the modern default.- Prefix every custom hook with the plugin slug. No collision-prone bare names.
$argsarray inwp_enqueue_script(since 6.3) — use'strategy' => 'defer'where possible.
Common mistakes
// WRONG — magic strings scattered across files
update_post_meta( $post_id, '_myplugin_settings', $value ); // file A
get_post_meta( $post_id, '_myplugin_setings', true ); // file B (typo!)
// RIGHT — one source of truth
update_post_meta( $post_id, Schema::META_SETTINGS, $value );
// WRONG — enqueue on init unconditionally
add_action( 'init', function () {
wp_enqueue_script( 'myplugin-frontend', /* ... */ );
} );
// queues assets in broad request contexts and bypasses page-specific gates
// RIGHT — frontend hook + context gate
add_action( 'wp_enqueue_scripts', function () {
if ( ! has_block( 'myplugin/contact' ) ) return;
wp_enqueue_script( 'myplugin-frontend', /* ... */ );
} );
// WRONG — singleton by reflex
final class HttpClient {
private static ?self $instance = null;
public static function instance(): self { /* ... */ }
}
// 1 plugin = 1 client, can't test, can't swap base URL per call site
// RIGHT — regular class with explicit dependencies
$client = new HttpClient( $api_key, $base_url );
$client->post( '/things', $payload );
// WRONG — bare hook name
do_action( 'before_save', $data ); // collides with 5 other plugins
// RIGHT
do_action( 'myplugin/before_save', $data );
Cross-references
- Run
wp-plugin-bootstrapfor the main file (header, autoload, requirements, Plugin bootstrapping). - Run
wp-plugin-lifecyclefor activation / deactivation /uninstall.php. - Run
wp-security-auditon any classes that handle user input — the architecture is irrelevant if the controllers leak.
What this skill does NOT cover
- Dependency-injection containers (PHP-DI, Symfony Container, etc.). For most WP plugins they're overkill; constructor injection without a container is plenty.
- Service layer architecture beyond "regular class, not singleton" — domain-driven design, hexagonal, etc. are valid choices but are a different conversation.
- Block / Gutenberg-specific architecture (
block.json,Edit/Savecomponents) — separate skill territory. - Test architecture — what kind of tests, where they live, how they boot WP. Adjacent topic, separate skill.
- Performance tuning of asset enqueue (concatenation, defer, preload) beyond what the WP 6.3+
$argsarray enables.
References
wp_enqueue_script: wp-includes/functions.wp-scripts.php — note the@since 6.3.0on$argsarray overload.wp_add_inline_script: wp-includes/functions.wp-scripts.php — since WP 4.5.admin_enqueue_scriptsaction with$hook_suffix: wp-admin/admin-header.php:123.wp_enqueue_scriptsaction: wp-includes/script-loader.php:2311.- PHP enums: php.net/manual/en/language.enumerations.php.