Files
DriverVault/API Server/internal/plugins/manager.go
T
tajniak81andClaude Opus 5 358ee68f94 Cars: create a car from a manufacturer service, with a per-car data tab
A car can now be imported straight from the account its owner already has
with the manufacturer, and every reading that service exposes shows up on
the car's own tab. MyToyota is the first provider.

API Server — internal/api/vehicleproviders.go adds a generic layer over a
plugin that can enumerate vehicles and read data about them. Adding the
next manufacturer is one vehicleSource adapter plus a line in
vehicleSources(): no new endpoints, no Web App changes.

  GET  /api/vehicle-providers                     providers + connect state
  GET  /api/vehicle-providers/{p}/vehicles        the caller's vehicles
  POST /api/vehicle-providers/{p}/import          create a car from one
  GET  /api/cars/{id}/provider                    live snapshot for the tab
  POST /api/cars/{id}/provider                    link / unlink a car
  POST /api/cars/{id}/provider/sync               re-apply provider data

Two properties shape it. Credentials are always the caller's own, resolved
through the same global -> org -> user cascade as the integration settings,
so a shared car shows provider data only when that vehicle is on the
viewer's account — the owner's credentials are never borrowed. And upstream
shapes are not modelled: these are unofficial APIs, so the layer searches
payloads by key name for the readings worth promoting (odometer, fuel,
battery, range) and flattens the rest to dotted key/value pairs alongside
the raw JSON. A renamed field costs one blank value, not a broken page.

The Toyota gate and its wording now live in toyotaSource, so the older
/api/integrations/toyota/vehicles endpoint and the new ones cannot drift.

Manager.InvokeBatchWith shares one transient plugin instance across a batch
of actions. The tab pulls seven capabilities, and InvokeWith builds a fresh
instance per call — which for a connector that authenticates lazily means a
fresh OAuth login per call. Batching logs in once.

cars gains provider + provider_vehicle_id (schema.go and
setup-pocketbase.mjs both). carPayload deliberately omits them, so an
ordinary car edit can neither reassign the car nor break its link;
carProviderPayload writes the link on its own.

Web App — Dashboard grows an "import from service" button beside "add car",
shown only once an account is connected, opening CarImportModal: pick the
vehicle, choose what to pull (identity / fuel type / dates / odometer, all
on by default), import. ProviderPanel becomes the car's first tab, ahead of
Information, labelled with the service: headline readings, the vehicle
record, one card per capability with its raw response, and an offer to take
the provider's odometer when it is ahead of the stored one. On an unlinked
car the tab instead offers to link it, VIN-matched. Info stays the default
selection — landing on the provider tab would fire a login on every car
page view. Full en/pl/da translations.

Tests cover the payload walking, Toyota normalization, import-selection
defaults, and — through the real handler chain against a stand-in
PocketBase — that every route is registered and that a closed gate is soft
on a listing (200 + a reason the UI can show) but hard on a write (4xx, so
a caller cannot read the reply as a created car).

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-17 14:13:11 +02:00

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package plugins
import (
"context"
"encoding/json"
"errors"
"log"
"net/http"
"os"
"sort"
"strings"
"sync"
"time"
)
// secretMask is what a set secret value is echoed back as. On save, a field that
// still equals the mask is left unchanged (mirrors the pb-config password flow).
const secretMask = "••••••••"
// record is the persisted state for one plugin. For builtins, Kind/BaseURL are
// omitted (the descriptor comes from the registry); external plugins set them.
type record struct {
Kind string `json:"kind,omitempty"`
BaseURL string `json:"baseURL,omitempty"`
Provider string `json:"provider,omitempty"`
Enabled bool `json:"enabled"`
Config map[string]string `json:"config,omitempty"`
}
// View is the plugin shape returned to the panel (secrets masked).
type View struct {
Descriptor
Enabled bool `json:"enabled"`
Config map[string]string `json:"config"`
BaseURL string `json:"baseURL,omitempty"`
Health *Health `json:"health,omitempty"`
}
// Manager owns the plugin registry, persisted state, and live instances.
type Manager struct {
path string
mu sync.Mutex
factories map[string]Factory
records map[string]*record
live map[string]Plugin
health map[string]*Health
client *http.Client
}
// NewManager builds a Manager backed by the JSON state file at path.
func NewManager(path string) *Manager {
return &Manager{
path: path,
factories: builtinFactories(),
records: map[string]*record{},
live: map[string]Plugin{},
health: map[string]*Health{},
client: &http.Client{Timeout: 12 * time.Second},
}
}
// Load reads the state file and initialises every enabled plugin. A missing file
// is fine (no plugins configured yet).
func (m *Manager) Load() error {
m.mu.Lock()
defer m.mu.Unlock()
if data, err := os.ReadFile(m.path); err == nil {
var recs map[string]*record
if err := json.Unmarshal(data, &recs); err != nil {
return err
}
m.records = recs
} else if !errors.Is(err, os.ErrNotExist) {
return err
}
ctx := context.Background()
for name, rec := range m.records {
if !rec.Enabled {
continue
}
p := construct(name, m.factories[name], rec)
if p == nil {
log.Printf("plugins: cannot construct %q (unknown builtin?)", name)
continue
}
if err := p.Init(ctx, rec.Config); err != nil {
log.Printf("plugins: init %q failed: %v", name, err)
continue
}
m.live[name] = p
}
return nil
}
// construct builds a plugin instance from a builtin factory or an external record.
func construct(name string, f Factory, rec *record) Plugin {
if f != nil {
return f()
}
if rec != nil && rec.Kind == KindExternal {
return newExternalPlugin(name, rec.BaseURL, rec.Provider)
}
return nil
}
// descriptorFor returns a plugin's descriptor without needing a live instance.
func (m *Manager) descriptorFor(name string, rec *record) Descriptor {
if p := m.live[name]; p != nil {
return p.Descriptor()
}
if f := m.factories[name]; f != nil {
return f().Descriptor()
}
if rec != nil && rec.Kind == KindExternal {
return newExternalPlugin(name, rec.BaseURL, rec.Provider).Descriptor()
}
return Descriptor{Name: name}
}
// maskConfig echoes config back with secret fields masked when set.
func maskConfig(d Descriptor, cfg map[string]string) map[string]string {
out := map[string]string{}
for k, v := range cfg {
out[k] = v
}
for _, f := range d.ConfigFields {
if f.Secret && out[f.Key] != "" {
out[f.Key] = secretMask
}
}
return out
}
// List returns every known plugin (registry persisted), sorted by name.
func (m *Manager) List() []View {
m.mu.Lock()
defer m.mu.Unlock()
names := map[string]bool{}
for n := range m.factories {
names[n] = true
}
for n := range m.records {
names[n] = true
}
out := make([]View, 0, len(names))
for name := range names {
rec := m.records[name]
d := m.descriptorFor(name, rec)
v := View{Descriptor: d, Health: m.health[name]}
if rec != nil {
v.Enabled = rec.Enabled
v.BaseURL = rec.BaseURL
v.Config = maskConfig(d, rec.Config)
} else {
v.Config = map[string]string{}
}
out = append(out, v)
}
sort.Slice(out, func(i, j int) bool { return out[i].Name < out[j].Name })
return out
}
// Get returns a single plugin view (ok=false when unknown).
func (m *Manager) Get(name string) (View, bool) {
for _, v := range m.List() {
if v.Name == name {
return v, true
}
}
return View{}, false
}
// Upsert enables/disables a plugin and merges its config, then (re)initialises or
// shuts down the live instance to match. Secrets left at the mask are preserved.
func (m *Manager) Upsert(ctx context.Context, name string, enabled bool, incoming map[string]string) (View, error) {
m.mu.Lock()
_, isBuiltin := m.factories[name]
rec := m.records[name]
if !isBuiltin && (rec == nil || rec.Kind != KindExternal) {
m.mu.Unlock()
return View{}, errUnknown
}
if rec == nil {
rec = &record{}
m.records[name] = rec
}
d := m.descriptorFor(name, rec)
merged := map[string]string{}
for k, v := range rec.Config {
merged[k] = v
}
// Apply incoming values, honouring the secret-mask keep-current rule.
secretKeys := map[string]bool{}
for _, f := range d.ConfigFields {
if f.Secret {
secretKeys[f.Key] = true
}
}
for k, v := range incoming {
if secretKeys[k] && v == secretMask {
continue // keep existing secret
}
merged[k] = strings.TrimSpace(v)
}
// Validate required fields when enabling.
if enabled {
for _, f := range d.ConfigFields {
if f.Required && merged[f.Key] == "" {
m.mu.Unlock()
return View{}, errors.New("missing required setting: " + f.Label)
}
}
}
rec.Enabled = enabled
rec.Config = merged
if err := m.persistLocked(); err != nil {
m.mu.Unlock()
return View{}, err
}
// Reconcile the live instance.
if old := m.live[name]; old != nil {
_ = old.Shutdown(ctx)
delete(m.live, name)
}
var initErr error
if enabled {
p := construct(name, m.factories[name], rec)
if p != nil {
if err := p.Init(ctx, merged); err != nil {
initErr = err
} else {
m.live[name] = p
}
}
}
m.mu.Unlock()
v, _ := m.Get(name)
return v, initErr
}
// RegisterExternal adds a new external (remote HTTP) plugin at runtime — the
// "add a plugin without a rebuild" path. It starts disabled.
func (m *Manager) RegisterExternal(name, baseURL, provider string) error {
name = strings.TrimSpace(name)
baseURL = strings.TrimRight(strings.TrimSpace(baseURL), "/")
if name == "" || baseURL == "" {
return errors.New("name and baseURL are required")
}
if !strings.HasPrefix(baseURL, "http://") && !strings.HasPrefix(baseURL, "https://") {
baseURL = "http://" + baseURL
}
m.mu.Lock()
defer m.mu.Unlock()
if _, dup := m.factories[name]; dup {
return errors.New("a builtin plugin already uses that name")
}
if _, dup := m.records[name]; dup {
return errors.New("a plugin with that name already exists")
}
m.records[name] = &record{Kind: KindExternal, BaseURL: baseURL, Provider: provider}
return m.persistLocked()
}
// Remove deletes an external plugin registration. Builtins can only be disabled.
func (m *Manager) Remove(ctx context.Context, name string) error {
m.mu.Lock()
defer m.mu.Unlock()
rec := m.records[name]
if rec == nil || rec.Kind != KindExternal {
return errors.New("only external plugins can be removed")
}
if p := m.live[name]; p != nil {
_ = p.Shutdown(ctx)
delete(m.live, name)
}
delete(m.records, name)
delete(m.health, name)
return m.persistLocked()
}
// HealthCheck probes a plugin now, building a transient instance if it is not
// currently live (so disabled plugins can still be tested). Result is cached.
func (m *Manager) HealthCheck(ctx context.Context, name string) (Health, error) {
m.mu.Lock()
p := m.live[name]
transient := false
var cfg map[string]string
if p == nil {
rec := m.records[name]
if rec != nil {
cfg = rec.Config
}
p = construct(name, m.factories[name], rec)
transient = true
}
m.mu.Unlock()
if p == nil {
return Health{}, errUnknown
}
if transient {
_ = p.Init(ctx, cfg)
defer func() { _ = p.Shutdown(context.Background()) }()
}
h := p.HealthCheck(ctx)
m.mu.Lock()
hc := h
m.health[name] = &hc
m.mu.Unlock()
return h, nil
}
// HealthCheckWith probes a plugin against a caller-resolved config rather than
// the stored global config. It builds a transient instance, Inits it with cfg,
// probes, and tears it down — so a per-user cascade (see internal/api/
// integrations.go) can health-check under the credentials in force for that
// caller without disturbing the global instance or its cached health.
func (m *Manager) HealthCheckWith(ctx context.Context, name string, cfg map[string]string) (Health, error) {
m.mu.Lock()
rec := m.records[name]
p := construct(name, m.factories[name], rec)
m.mu.Unlock()
if p == nil {
return Health{}, errUnknown
}
_ = p.Init(ctx, cfg)
defer func() { _ = p.Shutdown(context.Background()) }()
return p.HealthCheck(ctx), nil
}
// InvokeWith runs a capability against a caller-resolved config. Like
// HealthCheckWith, it uses a transient instance Inited with cfg so per-user
// credentials drive the call. Returns the plugin's raw JSON result.
func (m *Manager) InvokeWith(ctx context.Context, name string, cfg map[string]string, action string, payload json.RawMessage) (json.RawMessage, error) {
m.mu.Lock()
rec := m.records[name]
p := construct(name, m.factories[name], rec)
m.mu.Unlock()
if p == nil {
return nil, errUnknown
}
_ = p.Init(ctx, cfg)
defer func() { _ = p.Shutdown(context.Background()) }()
return p.Invoke(ctx, action, payload)
}
// BatchCall is one capability invocation inside an InvokeBatchWith request.
type BatchCall struct {
ID string // caller-chosen id, echoed back on the result
Action string // capability id
Params json.RawMessage // action params; may be nil
}
// BatchResult is the outcome of one BatchCall. Exactly one of Result/Err is set.
type BatchResult struct {
ID string
Result json.RawMessage
Err error
}
// batchConcurrency caps how many calls of one batch are in flight at once, so a
// snapshot of a whole vehicle doesn't arrive at the upstream as a burst.
const batchConcurrency = 4
// InvokeBatchWith runs several capabilities against one caller-resolved config,
// sharing a single transient instance. A connector that authenticates lazily
// (Toyota's OAuth login on first request) would otherwise repeat that login for
// every action, because InvokeWith builds and tears down an instance per call;
// sharing the instance logs in once for the whole batch.
//
// Calls run concurrently, so a plugin's Invoke must be safe for concurrent use —
// which the contract already implies, since the live instance is shared by every
// HTTP request. Results come back in request order, each carrying its own error;
// a non-nil error return means the batch never started (unknown plugin).
func (m *Manager) InvokeBatchWith(ctx context.Context, name string, cfg map[string]string, calls []BatchCall) ([]BatchResult, error) {
m.mu.Lock()
rec := m.records[name]
p := construct(name, m.factories[name], rec)
m.mu.Unlock()
if p == nil {
return nil, errUnknown
}
_ = p.Init(ctx, cfg)
defer func() { _ = p.Shutdown(context.Background()) }()
out := make([]BatchResult, len(calls))
sem := make(chan struct{}, batchConcurrency)
var wg sync.WaitGroup
for i, c := range calls {
wg.Add(1)
go func(i int, c BatchCall) {
defer wg.Done()
sem <- struct{}{}
defer func() { <-sem }()
res, err := p.Invoke(ctx, c.Action, c.Params)
out[i] = BatchResult{ID: c.ID, Result: res, Err: err}
}(i, c)
}
wg.Wait()
return out, nil
}
// RawConfig returns a copy of a plugin's stored (global) config and its enabled
// flag. ok is false for an unknown plugin. This is the top layer (L1) of the
// per-user cascade: the config a superadmin set in the panel, which lower layers
// inherit blank fields from. Secrets are returned in clear — callers must mask
// before returning anything to a client.
func (m *Manager) RawConfig(name string) (cfg map[string]string, enabled, ok bool) {
m.mu.Lock()
defer m.mu.Unlock()
_, isBuiltin := m.factories[name]
rec := m.records[name]
if !isBuiltin && rec == nil {
return nil, false, false
}
out := map[string]string{}
if rec != nil {
for k, v := range rec.Config {
out[k] = v
}
enabled = rec.Enabled
}
return out, enabled, true
}
// Shutdown tears down every live plugin instance. Wire into graceful shutdown.
func (m *Manager) Shutdown(ctx context.Context) {
m.mu.Lock()
defer m.mu.Unlock()
for name, p := range m.live {
_ = p.Shutdown(ctx)
delete(m.live, name)
}
}
// persistLocked writes the state file. Caller must hold m.mu.
func (m *Manager) persistLocked() error {
data, err := json.MarshalIndent(m.records, "", " ")
if err != nil {
return err
}
return os.WriteFile(m.path, append(data, '\n'), 0o600)
}
var errUnknown = errors.New("unknown plugin")
// IsUnknown reports whether err came from addressing a plugin that doesn't exist.
func IsUnknown(err error) bool { return errors.Is(err, errUnknown) }