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//! ref: composer/src/Composer/Plugin/PluginInterface.php
use crate::composer::ComposerHandle;
use crate::event_dispatcher::EventSubscriberInterface;
use crate::io::IOInterface;
use crate::plugin::Capable;
pub const PLUGIN_API_VERSION: &str = "2.9.0";
pub trait PluginInterface: std::fmt::Debug {
// The PHP methods return void but may throw; the owned `ComposerHandle` follows the shared
// handle policy — plugins typically store `$composer` beyond the call.
fn activate(
&mut self,
composer: ComposerHandle,
io: std::rc::Rc<std::cell::RefCell<dyn IOInterface>>,
) -> anyhow::Result<()>;
fn deactivate(
&mut self,
composer: ComposerHandle,
io: std::rc::Rc<std::cell::RefCell<dyn IOInterface>>,
) -> anyhow::Result<()>;
fn uninstall(
&mut self,
composer: ComposerHandle,
io: std::rc::Rc<std::cell::RefCell<dyn IOInterface>>,
) -> anyhow::Result<()>;
/// PHP: `get_class($plugin)`. Rust has no runtime class name, so each implementor carries
/// the name PHP would report.
fn get_class_name(&self) -> String;
// PHP-side `instanceof EventSubscriberInterface` / `instanceof Capable` checks map to
// these downcast accessors.
fn as_event_subscriber(&self) -> Option<&dyn EventSubscriberInterface> {
None
}
fn as_capable(&self) -> Option<&dyn Capable> {
None
}
/// For testing only: recovers the PHP-backed proxy so tests can read plugin properties the
/// way PHPUnit asserts `$plugins[0]->version`.
fn __as_php_plugin_proxy(&self) -> Option<&crate::plugin::PhpPluginProxy> {
None
}
}
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