mirror of
https://github.com/J3vb/OwnCord.git
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* fix(ws): 2 defect(s) (OC-0013, OC-0140) * fix(voice): 1 defect(s) (OC-0044) * fix(ws): 1 defect(s) (OC-0024) * fix(server): 1 defect(s) (OC-0027) * fix(ws): 1 defect(s) (OC-0028) * fix(server): 7 defect(s) (OC-0033, OC-0066, OC-0067, OC-0068, OC-0074, OC-0077, OC-0106) * fix(ws): 1 defect(s) (OC-0051) * fix(client): 1 defect(s) (OC-0053) * fix(client): 1 defect(s) (OC-0055) * fix(service): 1 defect(s) (OC-0069) * fix(voice): 1 defect(s) (OC-0072) * fix(service): 1 defect(s) (OC-0082) * fix(client): 1 defect(s) (OC-0083) * fix(plugin): 1 defect(s) (OC-0088) * fix(plugin): 4 defect(s) (OC-0104, OC-0126, OC-0127, OC-0133) * fix(admin): 1 defect(s) (OC-0110) * fix(client): 1 defect(s) (OC-0114) * fix(api): 1 defect(s) (OC-0139) * fix(client): 1 defect(s) (OC-0149) * test(server): adapt existing tests to updated OpenDM and IncrementMentionCounts signatures * style(plugin): modernize loops and goroutine spawns in race test * fix(ws): mirror the focus admission gate in the post-subscribe revalidation * fix(service): detach DM post-commit side effects from the request ctx, fail delete closed, add empty-fan-out fallback * fix(plugin): preserve enabled intent when upgrade reactivation hits a runtime-less build * chore(skills): harden bughunt-fix workflow and fold review lessons into bughunt-run/db-change * Add comprehensive documentation for task-observer skill - Introduced environments.md to outline activation setup, compaction behavior, and handoff-doc mode. - Created skill-authoring.md detailing taxonomy, licensing, confidentiality, and editing rules for skill creation. - Added weekly-review.md for a structured review process of OPEN observations, including scheduled and in-session fallback modes. * chore(go): pin toolchain go1.26.6 (stdlib CVE fixes flagged by govulncheck)
619 lines
20 KiB
Go
619 lines
20 KiB
Go
// Phase C Step 9 — Plugin registry, lifecycle, and host-API plumbing.
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//
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// The Registry is the long-lived handle the rest of the server holds onto. It
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// owns the Wazero runtime (in the wazero-tagged build), the loaded plugin
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// instances, and the dispatch tables for host-API capabilities (commands,
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// events, storage, http, ui).
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//
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// In the default build the runtime is a stub: LoadAll walks the plugins
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// directory and persists each manifest into the PluginStore so admins can see
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// what is "installed", but the .wasm files are NOT executed. Calling
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// Dispatch() in the default build returns ErrRuntimeUnavailable.
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package plugin
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import (
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"archive/zip"
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"context"
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"errors"
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"fmt"
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"io"
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"log/slog"
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"os"
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"path/filepath"
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"strings"
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"sync"
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)
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// Config is the runtime configuration sourced from PluginsConfig.
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type Config struct {
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Directory string
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MaxMemoryMB int
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CPUBudgetMs int
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HTTPAllowlist []string
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Store PluginStore
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}
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// Registry is the central plugin coordinator.
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type Registry struct {
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cfg Config
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mu sync.RWMutex
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plugins map[int64]*Instance // by plugin row id
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byName map[string]*Instance // by manifest name
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commands map[string]*Instance // command name → owning plugin
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uiTabs []UITabBinding // declared by `ui` capability plugins
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// sink is the hub→plugin event fan-out. Plugins subscribe to topics via
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// Subscribe; the WS hub calls sink.Dispatch on each broadcast.
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sink *EventSink
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// runtimePlatform is populated by platformInit in the wazero-tagged build
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// with a concrete *wazero.Runtime. The default build leaves it nil and
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// falls back to manifest-only behaviour. platformClose tears the runtime
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// down; both fields are set by platformInit atomically.
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runtimePlatform any
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platformClose func(context.Context) error
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}
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// Instance is a single loaded plugin.
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type Instance struct {
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ID int64
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Manifest *Manifest
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Dir string // on-disk plugin directory, from foundPlugin.Dir — NOT derived from Manifest.Name
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WASMPath string
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Enabled bool
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// invokeMu serializes guest calls for this instance. wazero's Function.Call
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// is not goroutine-safe, and concurrent invocations race the module's shared
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// linear-memory buffer (F2). Held by the wazero-tagged invokeCommand around
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// the whole allocate/write/dispatch/read sequence.
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invokeMu sync.Mutex //nolint:unused // used only by the wazero-tagged build
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// module is the wazero compiled module in the wazero-tagged build, or
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// nil in the default build.
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module any //nolint:unused // assigned by wazero-tagged build
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// compiled is the wazero CompiledModule behind module. Retained so
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// teardown can close it — the shared runtime otherwise keeps every
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// compile from every re-activation cycle until process exit.
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compiled any //nolint:unused // assigned by wazero-tagged build
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}
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// UITabBinding is the public projection of a plugin's declared UI tab,
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// served to the client bridge so it can render iframe tabs.
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type UITabBinding struct {
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PluginID int64
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PluginName string
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Tab UITab
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}
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// NewRegistry constructs a registry. In the default build it is a thin
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// holder; the wazero-tagged build replaces this constructor with one that
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// stands up a real Wazero runtime.
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func NewRegistry(cfg Config) (*Registry, error) {
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if cfg.Store == nil {
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return nil, fmt.Errorf("plugin: NewRegistry requires a non-nil PluginStore")
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}
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r := &Registry{
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cfg: cfg,
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plugins: make(map[int64]*Instance),
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byName: make(map[string]*Instance),
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commands: make(map[string]*Instance),
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sink: NewEventSink(),
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}
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// platformInit is supplied by sandbox_default.go (no-op) or
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// sandbox_wazero.go (real Wazero runtime). Either way it owns the
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// runtimePlatform + platformClose pair on the Registry.
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platform, closeFn, err := platformInit(cfg)
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if err != nil {
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return nil, fmt.Errorf("plugin: platform init: %w", err)
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}
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r.runtimePlatform = platform
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r.platformClose = closeFn
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return r, nil
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}
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// Close shuts the registry down. In the wazero-tagged build it tears the
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// runtime down and frees module memory.
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func (r *Registry) Close(ctx context.Context) error {
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r.mu.Lock()
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for _, inst := range r.plugins {
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r.platformDeactivate(ctx, inst)
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}
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for id := range r.plugins {
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delete(r.plugins, id)
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}
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for n := range r.byName {
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delete(r.byName, n)
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}
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for c := range r.commands {
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delete(r.commands, c)
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}
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r.uiTabs = nil
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closeFn := r.platformClose
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r.platformClose = nil
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r.runtimePlatform = nil
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r.mu.Unlock()
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if closeFn != nil {
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return closeFn(ctx)
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}
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return nil
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}
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// Sink returns the registry's EventSink, used by the WS hub to fan out
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// broadcast events to subscribed plugins and by the wazero build to deliver
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// plugin output back to WS clients.
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func (r *Registry) Sink() *EventSink {
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return r.sink
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}
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// LoadAll scans cfg.Directory and persists every plugin.json found into the
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// PluginStore. In the wazero-tagged build it then compiles each entrypoint
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// into a runnable module; the default build stops at the persistence step.
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func (r *Registry) LoadAll(ctx context.Context) error {
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if r == nil {
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return nil
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}
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// Clean up any staging directories left over from a previous crash
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// during InstallFromZip. These are named ".install-XXXXXX" and are
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// safe to remove because a successful install always renames them away.
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if entries, rdErr := os.ReadDir(r.cfg.Directory); rdErr == nil {
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for _, e := range entries {
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if e.IsDir() && strings.HasPrefix(e.Name(), ".install-") {
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staleDir := filepath.Join(r.cfg.Directory, e.Name())
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if rmErr := os.RemoveAll(staleDir); rmErr != nil {
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slog.Warn("plugin: failed to remove stale staging dir", "dir", staleDir, "err", rmErr)
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}
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}
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}
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}
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manifests, err := scanPluginDirectory(r.cfg.Directory)
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if err != nil {
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return fmt.Errorf("plugin: scan %q: %w", r.cfg.Directory, err)
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}
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for _, found := range manifests {
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if err := r.installFromDisk(ctx, found); err != nil {
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slog.Warn("plugin: failed to install from disk", "name", found.Manifest.Name, "err", err)
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continue
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}
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}
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return r.activateAll(ctx)
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}
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// installFromDisk persists a manifest discovered on disk into the PluginStore
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// and registers it in the in-memory registry.
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func (r *Registry) installFromDisk(ctx context.Context, found foundPlugin) error {
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manifestJSON, err := found.Manifest.serialize()
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if err != nil {
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return err
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}
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id, err := r.cfg.Store.InstallPlugin(ctx, found.Manifest.Name, found.Manifest.Version, manifestJSON)
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if err != nil {
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return fmt.Errorf("InstallPlugin: %w", err)
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}
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r.mu.Lock()
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defer r.mu.Unlock()
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// Re-install: tear down the old instance and drop its command bindings.
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// Bindings are keyed to the old *Instance, so leaving them in place both
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// blocked the fresh instance from re-registering its own commands and
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// kept dispatch routing into the orphaned old module until restart.
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if old := r.byName[found.Manifest.Name]; old != nil {
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r.platformDeactivate(ctx, old)
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for cmd, owner := range r.commands {
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if owner == old {
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delete(r.commands, cmd)
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}
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}
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if old.ID != id {
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delete(r.plugins, old.ID)
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}
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}
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inst := &Instance{
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ID: id,
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Manifest: found.Manifest,
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Dir: found.Dir,
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WASMPath: found.WASMPath,
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Enabled: false,
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}
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r.plugins[id] = inst
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r.byName[found.Manifest.Name] = inst
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return nil
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}
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// InstallFromZip extracts a plugin .zip uploaded via the admin API into a
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// temp directory, validates it (zip-slip safe, no symlinks, size-capped),
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// then renames it into the plugin directory and registers it via
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// installFromDisk. Returns the new plugin name on success.
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//
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// The zip must contain a top-level plugin.json. The plugin's directory name
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// is taken from manifest.Name (validated by Manifest.Validate to a strict
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// charset). Re-installing an existing plugin replaces it.
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const (
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maxZipBytes = 16 * 1024 * 1024 // 16 MiB compressed
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maxUncompressedSum = 64 * 1024 * 1024 // 64 MiB total uncompressed
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)
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func (r *Registry) InstallFromZip(ctx context.Context, zipBytes []byte) (string, error) {
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if r == nil || r.cfg.Directory == "" {
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return "", fmt.Errorf("plugin runtime not configured")
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}
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if int64(len(zipBytes)) > maxZipBytes {
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return "", fmt.Errorf("plugin zip exceeds %d bytes", maxZipBytes)
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}
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zr, err := zip.NewReader(bytesReaderAt(zipBytes), int64(len(zipBytes)))
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if err != nil {
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return "", fmt.Errorf("invalid zip: %w", err)
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}
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// Stage 1: extract into a temp dir under the plugin directory.
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if err := os.MkdirAll(r.cfg.Directory, 0o750); err != nil {
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return "", fmt.Errorf("create plugin dir: %w", err)
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}
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stage, err := os.MkdirTemp(r.cfg.Directory, ".install-")
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if err != nil {
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return "", fmt.Errorf("create staging dir: %w", err)
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}
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cleanup := func() { _ = os.RemoveAll(stage) }
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stageAbs, absErr := filepath.Abs(stage)
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if absErr != nil {
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cleanup()
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return "", fmt.Errorf("abs staging dir: %w", absErr)
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}
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var totalUncompressed int64
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for _, f := range zr.File {
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// Reject symlinks, devices, and any non-regular file mode.
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if !f.Mode().IsRegular() && !f.Mode().IsDir() {
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cleanup()
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return "", fmt.Errorf("plugin zip: refusing non-regular entry %q (mode=%v)", f.Name, f.Mode())
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}
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if f.Mode()&os.ModeSymlink != 0 {
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cleanup()
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return "", fmt.Errorf("plugin zip: refusing symlink %q", f.Name)
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}
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// Reject zip-slip: cleaned absolute path must stay rooted at the
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// staging directory.
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clean := filepath.Clean(f.Name)
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if strings.HasPrefix(clean, "..") || filepath.IsAbs(clean) || strings.Contains(clean, "..\\") {
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cleanup()
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return "", fmt.Errorf("plugin zip: refusing path-traversal entry %q", f.Name)
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}
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dest := filepath.Join(stageAbs, clean)
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destAbs, dErr := filepath.Abs(dest)
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if dErr != nil {
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cleanup()
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return "", dErr
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}
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rel, relErr := filepath.Rel(stageAbs, destAbs)
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if relErr != nil || strings.HasPrefix(rel, "..") || filepath.IsAbs(rel) {
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cleanup()
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return "", fmt.Errorf("plugin zip: refusing escape %q", f.Name)
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}
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if f.Mode().IsDir() {
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if err := os.MkdirAll(destAbs, 0o750); err != nil {
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cleanup()
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return "", err
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}
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continue
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}
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if err := os.MkdirAll(filepath.Dir(destAbs), 0o750); err != nil {
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cleanup()
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return "", err
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}
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rc, oErr := f.Open()
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if oErr != nil {
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cleanup()
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return "", oErr
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}
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out, cErr := os.OpenFile(destAbs, os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0o600)
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if cErr != nil {
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_ = rc.Close()
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cleanup()
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return "", cErr
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}
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// Cap each file at the remaining uncompressed budget so a zip bomb
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// can't OOM the host.
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remaining := maxUncompressedSum - totalUncompressed
|
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if remaining <= 0 {
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_ = rc.Close()
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_ = out.Close()
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cleanup()
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return "", fmt.Errorf("plugin zip: uncompressed total exceeds %d bytes", maxUncompressedSum)
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}
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n, copyErr := io.CopyN(out, rc, remaining+1)
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_ = rc.Close()
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_ = out.Close()
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if copyErr != nil && copyErr != io.EOF {
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cleanup()
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return "", copyErr
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}
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if n > remaining {
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cleanup()
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return "", fmt.Errorf("plugin zip: uncompressed total exceeds %d bytes", maxUncompressedSum)
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}
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totalUncompressed += n
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}
|
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// Stage 2: parse the manifest now that the staging dir is fully populated.
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manifestPath := filepath.Join(stageAbs, "plugin.json")
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raw, err := os.ReadFile(manifestPath)
|
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if err != nil {
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cleanup()
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return "", fmt.Errorf("plugin zip: missing plugin.json at root: %w", err)
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}
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manifest, err := ParseManifest(raw)
|
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if err != nil {
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cleanup()
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return "", err
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}
|
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// Validate the staged contents the same way scanPluginDirectory does.
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if err := rejectSymlinksUnder(stageAbs); err != nil {
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cleanup()
|
|
return "", err
|
|
}
|
|
wasmPath := filepath.Join(stageAbs, manifest.Entrypoint)
|
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if info, statErr := os.Lstat(wasmPath); statErr != nil {
|
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cleanup()
|
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return "", fmt.Errorf("entrypoint %s missing: %w", manifest.Entrypoint, statErr)
|
|
} else if info.Mode()&os.ModeSymlink != 0 {
|
|
cleanup()
|
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return "", fmt.Errorf("entrypoint %s is a symlink", manifest.Entrypoint)
|
|
}
|
|
|
|
// Stage 3: atomically rename into the canonical plugin name directory.
|
|
finalDir := filepath.Join(r.cfg.Directory, manifest.Name)
|
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// If a previous version exists, remove it. The store row is replaced by
|
|
// installFromDisk via the existing UPSERT path.
|
|
if _, err := os.Stat(finalDir); err == nil {
|
|
if err := os.RemoveAll(finalDir); err != nil {
|
|
cleanup()
|
|
return "", fmt.Errorf("remove existing plugin dir: %w", err)
|
|
}
|
|
}
|
|
if err := os.Rename(stageAbs, finalDir); err != nil {
|
|
cleanup()
|
|
return "", fmt.Errorf("install rename: %w", err)
|
|
}
|
|
|
|
// Stage 4: register via the existing on-disk install path.
|
|
if err := r.installFromDisk(ctx, foundPlugin{
|
|
Manifest: manifest,
|
|
Dir: finalDir,
|
|
WASMPath: filepath.Join(finalDir, manifest.Entrypoint),
|
|
}); err != nil {
|
|
return manifest.Name, fmt.Errorf("installFromDisk: %w", err)
|
|
}
|
|
|
|
// installFromDisk always registers the fresh instance as disabled and
|
|
// InstallPlugin's upsert never touches the `enabled` column, so a plugin
|
|
// that was enabled before this upgrade would otherwise come out the
|
|
// other side with the store row still saying enabled while the runtime
|
|
// instance sits inactive. LoadAll's startup path avoids this because it
|
|
// always runs activateAll afterward; this is the one caller of
|
|
// installFromDisk that doesn't, so it has to reactivate for itself.
|
|
// EnablePlugin already rolls the DB flag back if activation fails, so
|
|
// the two can no longer disagree.
|
|
if row, err := r.cfg.Store.GetPluginByName(ctx, manifest.Name); err == nil && row != nil && row.Enabled {
|
|
if err := r.EnablePlugin(ctx, row.ID); err != nil {
|
|
if errors.Is(err, ErrRuntimeUnavailable) {
|
|
// Default (non-wazero) build: nothing can activate here, and
|
|
// leaving EnablePlugin's rollback in place would persistently
|
|
// disable a plugin the admin left enabled — after a rebuild
|
|
// with -tags wazero it would silently stay off. Preserve the
|
|
// enabled intent instead; the next wazero-tagged start's
|
|
// activateAll does the real activation.
|
|
if reErr := r.cfg.Store.EnablePlugin(ctx, row.ID); reErr != nil {
|
|
slog.Warn("plugin: could not preserve enabled flag across runtime-less upgrade",
|
|
"name", manifest.Name, "err", reErr)
|
|
} else {
|
|
r.mu.Lock()
|
|
if inst, ok := r.byName[manifest.Name]; ok {
|
|
inst.Enabled = true
|
|
}
|
|
r.mu.Unlock()
|
|
slog.Info("plugin: runtime unavailable, enabled flag preserved across upgrade",
|
|
"name", manifest.Name)
|
|
}
|
|
} else {
|
|
slog.Warn("plugin: reactivate after upgrade failed", "name", manifest.Name, "err", err)
|
|
}
|
|
}
|
|
}
|
|
return manifest.Name, nil
|
|
}
|
|
|
|
// bytesReaderAt is a tiny wrapper that satisfies io.ReaderAt for a byte
|
|
// slice. archive/zip needs ReaderAt; bytes.Reader provides it but importing
|
|
// "bytes" alongside the existing "io" surface keeps the import block tight.
|
|
type bytesReaderAt []byte
|
|
|
|
func (b bytesReaderAt) ReadAt(p []byte, off int64) (int, error) {
|
|
if off < 0 || off >= int64(len(b)) {
|
|
return 0, io.EOF
|
|
}
|
|
n := copy(p, b[off:])
|
|
if n < len(p) {
|
|
return n, io.EOF
|
|
}
|
|
return n, nil
|
|
}
|
|
|
|
// activateAll attempts to compile + register host-API hooks for every plugin
|
|
// row in the PluginStore that is marked enabled. The default build is a
|
|
// no-op (no Wazero modules to compile).
|
|
func (r *Registry) activateAll(ctx context.Context) error {
|
|
rows, err := r.cfg.Store.ListPlugins(ctx)
|
|
if err != nil {
|
|
return fmt.Errorf("ListPlugins: %w", err)
|
|
}
|
|
for _, row := range rows {
|
|
if !row.Enabled {
|
|
continue
|
|
}
|
|
r.mu.Lock()
|
|
inst, ok := r.byName[row.Name]
|
|
r.mu.Unlock()
|
|
if !ok {
|
|
slog.Warn("plugin: enabled row has no on-disk manifest, skipping", "name", row.Name)
|
|
continue
|
|
}
|
|
if err := r.activate(ctx, inst); err != nil {
|
|
slog.Warn("plugin: activation failed", "name", row.Name, "err", err)
|
|
continue
|
|
}
|
|
// Sync the in-memory enabled flag with the DB row so callers that
|
|
// read inst.Enabled (e.g. /api/v1/admin/plugins listings, future
|
|
// host-side capability checks) see the activated state.
|
|
r.mu.Lock()
|
|
inst.Enabled = true
|
|
r.mu.Unlock()
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// activate compiles and starts a single plugin module. Default build returns
|
|
// ErrRuntimeUnavailable; the wazero-tagged build replaces this with the real
|
|
// implementation via activateWithRuntime.
|
|
//
|
|
// The runtimePlatform read is guarded by r.mu so a concurrent Close() that
|
|
// nil-s the field cannot be observed mid-activation. The captured platform
|
|
// value is then passed into activateWithRuntime as a parameter so the actual
|
|
// compile uses the snapshot rather than re-reading r.runtimePlatform — this
|
|
// closes the race window between the nil check and the wazero call.
|
|
func (r *Registry) activate(ctx context.Context, inst *Instance) error {
|
|
r.mu.RLock()
|
|
platform := r.runtimePlatform
|
|
r.mu.RUnlock()
|
|
if platform == nil {
|
|
return ErrRuntimeUnavailable
|
|
}
|
|
return r.activateWithRuntime(ctx, platform, inst)
|
|
}
|
|
|
|
// EnablePlugin marks a plugin enabled in the store, then attempts to load it.
|
|
func (r *Registry) EnablePlugin(ctx context.Context, id int64) error {
|
|
if err := r.cfg.Store.EnablePlugin(ctx, id); err != nil {
|
|
return err
|
|
}
|
|
r.mu.RLock()
|
|
inst, ok := r.plugins[id]
|
|
r.mu.RUnlock()
|
|
if !ok {
|
|
// No in-memory instance to activate — roll the DB flag back so it
|
|
// doesn't stay stuck at enabled=1 with nothing backing it, the same
|
|
// way the activation-failure path below rolls back.
|
|
_ = r.cfg.Store.DisablePlugin(ctx, id)
|
|
return ErrPluginNotFound
|
|
}
|
|
r.mu.Lock()
|
|
inst.Enabled = true
|
|
r.mu.Unlock()
|
|
if err := r.activate(ctx, inst); err != nil {
|
|
// Roll back the DB flag and the in-memory flag so the next start
|
|
// attempt is consistent.
|
|
_ = r.cfg.Store.DisablePlugin(ctx, id)
|
|
r.mu.Lock()
|
|
inst.Enabled = false
|
|
r.mu.Unlock()
|
|
return err
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// DisablePlugin marks a plugin disabled and tears its module down. The
|
|
// wazero-tagged build frees the compiled module via platformDeactivate so
|
|
// re-enabling recompiles from disk; the default build is a no-op.
|
|
func (r *Registry) DisablePlugin(ctx context.Context, id int64) error {
|
|
if err := r.cfg.Store.DisablePlugin(ctx, id); err != nil {
|
|
return err
|
|
}
|
|
r.mu.Lock()
|
|
defer r.mu.Unlock()
|
|
if inst, ok := r.plugins[id]; ok {
|
|
inst.Enabled = false
|
|
// Drop command bindings owned by this plugin.
|
|
for cmd, owner := range r.commands {
|
|
if owner == inst {
|
|
delete(r.commands, cmd)
|
|
}
|
|
}
|
|
// Free the wazero module so memory is returned to the runtime
|
|
// immediately rather than waiting for registry Close. Safe to call
|
|
// on an instance that was never activated.
|
|
r.platformDeactivate(ctx, inst)
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// removeAll is os.RemoveAll indirected so tests can force a directory-removal
|
|
// failure deterministically. Windows silently succeeds at deleting read-only
|
|
// files (there's no portable, privilege-free way to make a real RemoveAll
|
|
// fail from a test), so this is the seam that lets the error-return path in
|
|
// UninstallPlugin be pinned.
|
|
var removeAll = os.RemoveAll
|
|
|
|
// UninstallPlugin removes a plugin entirely.
|
|
func (r *Registry) UninstallPlugin(ctx context.Context, id int64) error {
|
|
if err := r.DisablePlugin(ctx, id); err != nil {
|
|
slog.Warn("plugin: disable failed during uninstall", "id", id, "err", err)
|
|
}
|
|
|
|
// Capture the plugin's on-disk directory before removing the in-memory
|
|
// record so we can clean it up after the DB row is gone.
|
|
r.mu.RLock()
|
|
inst, instOK := r.plugins[id]
|
|
var pluginDir string
|
|
if instOK {
|
|
pluginDir = inst.Dir
|
|
}
|
|
r.mu.RUnlock()
|
|
|
|
if err := r.cfg.Store.UninstallPlugin(ctx, id); err != nil {
|
|
return err
|
|
}
|
|
|
|
r.mu.Lock()
|
|
if inst, ok := r.plugins[id]; ok {
|
|
delete(r.byName, inst.Manifest.Name)
|
|
}
|
|
delete(r.plugins, id)
|
|
r.mu.Unlock()
|
|
|
|
// Remove on-disk files so the plugin isn't resurrected on the next
|
|
// startup by scanPluginDirectory. The DB row and in-memory record are
|
|
// already gone at this point, so a removal failure is reported rather
|
|
// than swallowed — the caller needs to know the directory still has to
|
|
// be cleaned up by hand before the next restart, or scanPluginDirectory
|
|
// will bring the "uninstalled" plugin right back.
|
|
if pluginDir != "" {
|
|
if err := removeAll(pluginDir); err != nil {
|
|
slog.Warn("plugin: failed to remove plugin directory after uninstall", "dir", pluginDir, "err", err)
|
|
return fmt.Errorf("remove plugin dir: %w", err)
|
|
}
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// List returns the currently registered plugins. Read-only snapshot.
|
|
func (r *Registry) List() []*Instance {
|
|
r.mu.RLock()
|
|
defer r.mu.RUnlock()
|
|
out := make([]*Instance, 0, len(r.plugins))
|
|
for _, p := range r.plugins {
|
|
out = append(out, p)
|
|
}
|
|
return out
|
|
}
|
|
|
|
// UITabBindings returns the declared UI tabs across enabled plugins.
|
|
func (r *Registry) UITabBindings() []UITabBinding {
|
|
r.mu.RLock()
|
|
defer r.mu.RUnlock()
|
|
out := make([]UITabBinding, len(r.uiTabs))
|
|
copy(out, r.uiTabs)
|
|
return out
|
|
}
|