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InstallationManager left both PRE_PACKAGE_* and POST_PACKAGE_* as empty
stubs, so a subscriber never ran at all and the difference from upstream was
silent rather than an explicit error.
Operations cross the boundary as R-table entities with generated proxy
stubs. Materializing them the way a Link crosses is not possible: a
materialized value is revived by unserialize() on the child side, so its
properties never pass through the wire decoder and a nested handle
descriptor would not come back as a stub — and an operation always holds a
PackageInterface. execute() now shares one Rc per operation through the
whole batch pipeline, so a plugin sees one object for both the pre- and the
post-event of an operation, as it does in PHP.
POST_PACKAGE_* also moves out of the operation's promise chain into the
post-exec callback list PHP runs after waitOnPromises().
The stub generator materializes non-public class constants verbatim now,
which the operation classes need for their `protected const TYPE`: a
constant has no entity behind it, so a copy in the worker cannot diverge,
and keeping the declared visibility exposes nothing the real class hides.
The E2E fixture added here compares the recorded events against upstream
Composer. It also surfaced that upstream starts an operation's chain where
it is built (a null prepare() becomes an already-fulfilled React promise
whose handlers run through the immediately drained queue) while this port
only drives its futures in wait_on_promises, so the repository state a
pre-event observes differs; that half of the comparison is a separate
`#[ignore]`d test.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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AliasPackage, CompleteAliasPackage and RootAliasPackage now have generated
proxy stubs, so a package handed to a plugin no longer has to be a real
package: it crosses as the stub matching its concrete variant, answers
getAliasOf / setRootPackageAlias / isRootPackageAlias /
hasSelfVersionRequires, and can be constructed from plugin code.
The setters RootPackageInterface declares are routed through that interface
for every root package instead of through the base Package state. Only the
alias variant needs it -- RootAliasPackage overrides all nine to write
through to the package it aliases -- but a real RootPackage delegates to the
same base state either way, so both take one path.
An alias of an alias has no representation here, so narrowing the
constructor argument to a real package is an explicit error rather than a
silent demotion.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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The link getters and setters and the release date accessors were explicit
errors for every non-empty value, because an immutable value has no entity
to point a handle at. They now cross as materialized values: the descriptor
names the real class and the constructor arguments, and each side builds a
genuine instance of its own.
The semver constraint a link holds is encoded structurally rather than
re-parsed from its string form, so the pretty strings and the conjunctive
flag survive the crossing.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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A single install leaves the installer contract half tested: it never reaches
`update`, never runs over an already-installed tree, and never reaches the
plugin's own `uninstall()` override — the one chaining onto the promise
`LibraryInstaller::uninstall` returns. Nor does it touch the configuration
surface real projects use, `installer-paths` and `installer-name`, which the
plugin reads back through the package proxy.
All three now compare command output as well as the resulting tree against
upstream Composer. Progress bar frames are dropped from that comparison:
Shirabe renders them differently for every install, including projects with
no plugin at all, so they say nothing about the plugin under test.
With those covered the plugin joins the verified list in the README.
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The fixture project pins composer/installers 2.3.0 and requires two packages
of framework-specific types, so the plugin's LibraryInstaller subclass decides
where they land. Upstream Composer and Shirabe install the same project and
the whole resulting tree is compared.
The plugin tarball is fetched by `fixtures/e2e-installers/fetch` into a
git-ignored directory and pinned by a digest over the extracted files, so the
third-party source never enters this repository and the test skips itself
while the directory is absent. The tree is staged and only moved into place
once verified, so an unverified tree is never observable under the name the
test looks for.
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The fixture plugin registers an InstallerInterface implementation of its own
and installs a package of a custom type with it, recording every contract
call it receives. A fresh install produces a byte-identical project tree on
both implementations, trace included.
A second test pins the divergence a re-run and a `remove` expose: the two
implementations consult getInstaller at different points, so the trace
order — and its length once `remove` re-creates the Composer instance —
differs. It is written in full and marked ignored rather than trimmed.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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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 pinned plugin and its real dependency tree (nine packages, fetched by
commit and verified by tree hash into the git-ignored ext/) install under
both implementations, and the list/help renderings of the plugin-provided
normalize command must match upstream byte for byte. The execution
comparison is written but ignored: NormalizeCommand builds a second,
in-process Composer instance, and the worker's proxy stubs reject native
construction of the classes that path instantiates. Stale comments about
the missing worker-side application are updated to the current facts.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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A Shirabe-authored CommandProvider fixture plugin (greet) runs under both
implementations: exit codes, the command's own output, help/list rendering,
alias resolution, a validation failure, and a file recording the shared
object graph the command observed (root package, strict application FQCN,
and the exit code of the built-in about command it invoked) must match.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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Port Application::getPluginCommands: resolve the local composer with
plugins force-enabled, fall back to Factory::createGlobal, and collect
commands from CommandProvider capability adapters. PhpCommandProxy now
mirrors name/description/aliases/hidden over RPC so `list` output
matches upstream; input definitions remain TODO(plugin).
PhpClass::php_class_name returns an owned String because PHP-backed
proxies only know their class at runtime (the override-skip warning
prints get_class). CommandProvider::getCommands hands out shared
Rc<RefCell> handles since the commands are stored in the application.
Factory::createGlobal now propagates createConfig errors instead of
swallowing them, and Application::getComposer only catches the
exception classes upstream catches, so a ParsingException reaches
doRun's GithubActionError path as in Composer.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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getPluginCapability was a no-op returning None. Now it runs the real
flow: class_exists in the worker, new $capabilityClass($ctorArgs) with
the plugin's own phandle spliced in as $ctorArgs['plugin'], both
instanceof checks answered by is_a in the child, and a per-interface
Rust adapter over the resulting entity (CommandProvider and the plain
Capability marker; anything else is an explicit error).
getPluginCapabilities now propagates errors instead of swallowing them.
Capable::get_capabilities widens from IndexMap<String, String> to
IndexMap<String, PhpMixed>: upstream casts the return with (array) and
validates only the queried key, so the narrow type both rejected maps
Composer accepts and made the invalidImplementationClassNames data
provider unrepresentable. The old code also returned ' 0 ' (trimmed to
the falsy '0') as a valid class name where upstream throws; the
rewritten validation follows upstream's empty/is_string/trim sequence.
CommandProvider::get_commands returns BaseCommand adapters whose name is
read back over RPC after the PHP constructor ran configure(); executing
one still needs the PHP-side Symfony Application and stays an explicit
error. The is_array / instanceof BaseCommand checks that upstream's
Application::getPluginCommands performs on the raw getCommands value
live in the adapter, because Vec<Box<dyn BaseCommand>> asserts every
element up front.
Ports testCommandProviderCapability (plugin-v8 end to end against the
real worker) and testQueryingWithInvalidCapabilityClassNameThrows (all
eight provider cases); the two tests that pass a PHPUnit mock plugin
into PHP stay ignored — a Rust-native mock has no PHP-side entity to
cross the boundary as $ctorArgs['plugin'].
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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Run upstream Composer and Shirabe over pristine copies of a fixture
project at the same path and require composer.lock, the whole vendor tree
(including the plugin-generated GeneratedConfig.php), the plugin's IO
lines and the exit code to match byte for byte.
The plugin under test (phpstan/extension-installer 1.4.3) is downloaded by
fixtures/e2e/fetch — pinned to an upstream commit and hash-verified — into
a git-ignored directory rather than committed; the test skips while it is
absent, like the other real-PHP prerequisites. Its dependencies are
minimal stand-ins resolved from local repositories, so test runs stay
offline. A zip dist would exercise the known lossy-string byte-precision
debt in RemoteFilesystem, so the fixture serves the plugin through a path
dist until that is resolved.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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The PHP worker is shared across the test binary, so whichever subscriber
test runs first owns the bare class name and every later install registers
the plugin under a _composer_tmpN rename (as upstream does). The exact-name
lookup made the removal test depend on lock acquisition order.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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Wire removePlugin to EventDispatcher::removeListener now that subscriber
listeners carry the plugin's P-table handle: PHP's $candidate[0] ===
$listener identity check maps to phandle equality on Callable::PhpMethod.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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Wires the addPlugin subscriber branch end to end: EventSubscriberInterface
and Capable become fallible and dyn-compatible (their sole implementor is
the PHP plugin proxy, which answers getSubscribedEvents over RPC), listeners
register as Callable::PhpMethod and are invoked with a per-call event handle,
and the R table now drops entries when a child-side stub destructs. The R
table keeps its IndexMap with monotonically increasing handles, so released
handles are never reused and no generation counter is needed.
Upstream has no subscriber-plugin test, so the path is covered by a
Shirabe-owned fixture exercising all three getSubscribedEvents shapes.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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InstallationManager::execute now takes &self (the mock recorder moved
into a RefCell) and its callers hold only shared borrows: plugin
registration inside a batch re-enters the same manager handle through
Composer::getInstallationManager()->getInstallPath(), which panicked
on the RefCell re-borrow under the &mut shape — the same re-entrancy
the repository side already fixed, unreachable from the ported tests
because they call PluginInstaller::install directly like PHPUnit does.
The worker-side InstalledVersions mirror now matches the full tail of
FilesystemRepository::write: unconditional reload plus the
reflection-based selfDir/installedIsLocalDir restore. The previous
class_exists(false) guard rested on a lazy-load assumption that does
not hold in the worker (its real ClassLoader only knows the Composer
checkout's vendor dir, so a later lazy load would read the checkout's
installed.php, not the project's); the mirror is now skipped only when
the class is not autoloadable at all, i.e. no plugin runtime and hence
no observer code. Boot-time seeding stays TODO(plugin).
Also from the review: registered_plugins entries are removed only
after the deactivate/uninstall loop (PHP unsets last, and a throw must
leave the entry observable); extra.class keeps associative-array
values and fails loudly on non-strings instead of silently dropping
them; the two discarded write() results now propagate (they carry the
reload-push failure); register_package's allow-plugins skip message is
DEBUG like the addPlugin side; the loader-eviction divergence of
REGISTERED_LOADERS and the lossy UTF-8 spots carry searchable
markers; the test-only proxy downcast follows the __ naming rule; the
R-table dispatch clones the entity out instead of holding the table
borrow across the handler; the IO/PartialComposer stubs turn a
plugin-side `new NullIO()` into an explicit error instead of an
ArgumentCountError; and the empty() emulation covers float 0.0.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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Implement the remainder of PluginManager::registerPackage: the plugin
autoload map is built by the ported createLoader/parseAutoloads and
served to the worker over the existing reverse-RPC autoloader, files
entries go through a composerRequire-equivalent glue call, and
already-defined classes take the upstream _composer_tmp rename/eval
path. Instantiation uses the new NewObject/CallPhpMethod lanes backed
by a P table in the worker; PhpPluginProxy adapts the resulting handle
to PluginInterface, with $composer/$io exposed to plugin callbacks via
an R table (unsupported methods stay explicit errors). Hand-written
proxy stubs cover Composer, PartialComposer and the IO hierarchy, and
the stub autoloader is re-prepended after loading the Composer PHP
runtime so its vendor autoloader cannot shadow proxied FQCNs.
FilesystemRepository::write now mirrors InstalledVersions::reload into
a running worker (class_exists-guarded, so an unloaded class keeps its
upstream lazy-load behavior), removing the previously undefined
observation window.
The installer pipeline passes the installed repository as a shared
handle instead of a long-lived `&mut dyn`: plugin registration runs
inside InstallationManager::execute and re-enters the same local
repository through the RepositoryManager, which would panic on the
RefCell re-borrow under the old shape.
PluginInterface lifecycle methods now take an owned ComposerHandle
(plugins retain $composer past the call) and return anyhow::Result
(PHP plugin code may throw); the plugin list uses shared ownership so
the identity comparison of removePlugin survives the dual storage in
registeredPlugins, matching PHP reference semantics.
Ports the activate/upgrade/uninstall tests of PluginInstallerTest,
serialized across the shared worker process whose persistent class
table is exactly what exercises the rename path.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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reasons
Implement test_incapable_plugin_is_correctly_detected and
test_querying_non_provided_capability_returns_null_safely against a
real PluginManager, using hand-written PluginInterface/Capable stubs
in place of PHPUnit's ad-hoc mocks. Wire the shared config_stub test
helper into the plugin test binary, and derive Debug on the SetUp
struct per this project's convention.
The remaining plugin_installer_test.rs cases stay #[ignore]d:
install/update/uninstall wiring in PluginInstaller and class
instantiation in PluginManager::register_package are still
TODO(plugin) stubs, so no plugin ever actually gets registered. Each
now records its blocking TODO(plugin) site via // TODO(phase-d).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
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Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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The per-file stub!/encode_stub!/etc. macros generated #[ignore]d test
functions but obscured the individual test bodies. Expanding them inline
removes the macro indirection so future ports can fill in each function
directly.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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Port PHP setUp/tearDown across the ported integration tests using
same-named set_up()/tear_down() functions and a TearDown struct whose
Drop runs tear_down(). Fixture-init setUp returns its fixtures;
tmpdir-style setUp/tearDown carry state in TearDown fields. Parts that
depend on unported infrastructure (PHPUnit mocks, Config::merge, the PHP
error handler) stay todo!() and are only wired into ignored stubs to
avoid breaking live tests.
Also fix shirabe-php-shim putenv to handle the no-'=' form (PHP unsets
the variable), which Platform::clear_env relies on for the env-clearing
tearDowns.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
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All ignored: ArrayLoader/ValidatingArrayLoader/VersionSelector parse
constraints via a look-around regex; ArchiveManager uses PharData (todo!());
ArchivableFilesFinder/VersionGuesser/Locker mock git/process/IO; the plugin API
is not implemented (TODO(plugin)). Wires up the plugin test target.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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