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A plugin can now hand an InstallerInterface implementation to
InstallationManager::addInstaller across the wire, and a legacy
composer-installer package is loaded as one; both are backed by a
PhpInstallerProxy forwarding the whole installer contract to the entity in
the PHP worker. An installer returning a real promise is an explicit error
until promises can cross the boundary.
InstallationManager takes installers as shared handles instead of boxes, so
the object identity removeInstaller and PluginManager's registeredPlugins
compare against survives registration, and holds them in a RefCell:
Installer::run keeps a shared borrow of the manager for the whole run, and a
plugin activated inside it registers its installer from there. The type
cache keys on the installer itself, like upstream, so re-entrant
registration cannot leave a stale index behind. InstallerInterface::supports
is fallible for the same reason getCapabilities and getCommands are: it
answers over RPC.
Cloning a proxy stub clones the Rust-side entity and rebinds the copy to the
fresh handle. Previously only the classes declaring __clone got a throwing
body, and the rest let two stubs share (and twice release) one handle.
Package entities answer with AnyPackage::dup, which already carries
BasePackage::__clone and the RootAliasPackage override; the others are an
explicit error.
The package proxy covers the whole PackageInterface surface; only the link
maps and the release date still lack a wire image for their value objects.
PluginManager gains a test-only seam for the reported Plugin API version,
and the three PluginInstallerTest cases that need it are ported.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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The Package family settles on pure rust-proxy: it is genuinely mutable
(60+ setters, and Composer itself mutates packages in flight), so the
planned snapshot-with-writeback treatment is dropped rather than filed
as an override. The other open questions remain open with their interim
behavior pinned instead of resolved: proxy-side getLoop() access and the
ConsoleIO table/progress-bar members are explicit errors, and the
InstalledVersions state a plugin observes after a Rust-side dump is
undefined, marked TODO(plugin) at the reload site.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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A plugin can reach ProcessExecutor::executeAsync() through the
rust-proxy stub, which resolves with a real Symfony Process instance
that can't be reconstructed on the Rust side (its state is tied to
whichever process calls proc_open(), and it refuses serialization).
Add execute_async_php() as a todo!() stub, documented as a dual-
instantiation split in plugin-class-classification.md: Rust-internal
callers keep using execute_async(), while the plugin path must forward
spawning to the PHP child once the RPC channel exists.
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Answers how a given class is treated at the plugin boundary, accepting a
PHP source file, a Rust source file, or a (short or fully qualified)
class name. Reads report.json and generates it first when missing. Rust
paths resolve by normalized segment matching because the snake_case
mapping is not reversible for acronyms (io_interface.rs -> IOInterface).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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Decides, for every composer/composer class, how it is treated at the
plugin boundary (rust-proxy / rust-snapshot / contract / two-world /
php-native / unsupported) so that upstream updates re-classify new or
rewritten classes without re-deriving the design by hand. Rules and
category definitions live in docs/dev/plugin-class-classification.md;
the tool (PHP + nikic/PHP-Parser) implements them as a reachability
closure with direction marks, per-method pure/mutator analysis, and a
leaf-first fixed point for unreachable classes, with three small
versioned exception lists.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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