Files
DriverVault/API Server/internal/api/chargerproviders.go
T
tajniak81andClaude Opus 5 2425a8d3d6 A field we have no name for is still a field it sent
Two cards on the Charging page were answering with a fraction of what the charger
and the account actually report, and in both the losses happened quietly, in a
parse that kept the fields it recognised and dropped the rest on the floor.

Charger information asked three account-wide views and kept fourteen fields.
A charger registered on its own is absent from the site view, which is the only
one of the three carrying state, charge power and OCPP status — so exactly the
charger that stands alone got the column of dashes, and nothing said why. The
per-charger station record, get_evcharger_station_info, is what the mobile app
opens when you tap a charger, and it is the one view that answers for a charger
outside a station; it is now the fourth view, asked per charger, a failure there
costing that charger's row and no more. Alongside it, every field each of the
four views sent is kept as attrs, under the cloud's own key, nested objects
joined with a dot and arrays carrying their index. First view to answer a key
wins, which is the rule the named fields already merged by. Two hundred keys and
two hundred and forty runes per value keep a station record with a session list
from becoming the whole card.

Charger readings lost data twice over. The frame decoder skipped any field byte
its per-message map could not name, and a message type with no map decoded to
nothing at all; those fields are now kept under the message and the byte they
arrived in — 0410.c9 — decoded but unscaled, because a factor is half of a
meaning and we do not have the other half. Then the projection read forty-odd
names into typed fields and dropped the remainder: sessionStartedAt, the
per-phase session energies, the three touch modes, the load-balance monitor and
its meter flag, the solar monitor. Those land in extra, and the list maintains
itself — the four accessors note every key they read, extra is what is left, and
a field modelled later stops appearing there without anyone remembering to
remove it.

Keeping unnamed fields had one consequence worth guarding. An unmapped message
now decodes to something rather than nothing, and ingest stamped settingsAt for
anything that was not telemetry — the timestamp a control command waits on to
say the charger acknowledged it. A frame we cannot read is not an
acknowledgement, so the stamp is now conditional on the message type being one
we map, while its fields are kept either way.

Both cards show the remainder as what it is: the service's own key, no unit, no
translation, no renaming, under a heading that says whose words these are. The
blocks appear only when there is something in them, so a Modbus charger's
readings card and a charger the cloud says nothing more about are unchanged.
Naming one of these fields is a later commit, made from evidence; inventing a
label for it today would only make a guess look settled.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-02 20:58:15 +02:00

402 lines
14 KiB
Go

package api
// Charger providers are the garage's import aimed at the wall instead of the
// driveway: a charger already on a service the user has connected becomes a
// charger in DriverVault, without anyone copying a serial off a label.
//
// GET /api/charger-providers — providers, with connect state
// GET /api/charger-providers/{provider}/chargers — the caller's chargers there
// POST /api/charger-providers/{provider}/import — create a home charger from one
//
// The shape deliberately follows vehicleproviders.go — a chargerSource is a
// small adapter over an existing plugin plus its per-user credential cascade, so
// the next charger service is one adapter appended to chargerSources() and
// nothing else. What differs is how little is imported: a car pulls identity,
// dates and an odometer from several capabilities, whereas a charger is a name,
// a serial and the hardware behind it, all of which the list already carries. So
// there is no include selection here and no second round of calls.
//
// Credentials are the caller's own, resolved through the same global → org →
// user cascade the Settings page edits. Nothing borrows another user's account.
import (
"context"
"encoding/json"
"net/http"
"net/url"
"strings"
"drivervault/apiserver/internal/models"
)
// chargerSource adapts one plugin that can enumerate the caller's chargers.
type chargerSource interface {
// id is the URL segment and the value persisted on home_charger.provider.
id() string
// label names the provider to the user ("Anker Solix").
label() string
// service is the upstream service behind it ("Anker Solix cloud").
service() string
// gate resolves the caller's effective config from the integration cascade.
// When ok is false nothing is called and detail says, in one sentence, what
// the user has to do about it. userRaw is the caller's pluginSettings blob,
// passed in so one request reads it once.
gate(ctx context.Context, s *Server, who *callerIdentity, userRaw json.RawMessage) (cfg map[string]string, ok bool, detail string)
// listAction is the plugin capability that enumerates chargers.
listAction() string
// chargers maps that capability's payload onto normalized entries.
chargers(raw json.RawMessage) []providerCharger
}
// chargerSources are the registered providers, in menu order.
func chargerSources() []chargerSource {
return []chargerSource{ankerChargerSource{}, greencellChargerSource{}}
}
func chargerSourceByID(id string) (chargerSource, bool) {
for _, src := range chargerSources() {
if src.id() == id {
return src, true
}
}
return nil, false
}
// providerCharger is one charger on the caller's provider account, normalized
// into the fields a home charger is built from.
type providerCharger struct {
ID string `json:"id"` // the provider's own id — the serial, for both
Name string `json:"name"`
Vendor string `json:"vendor,omitempty"`
Model string `json:"model,omitempty"`
Firmware string `json:"firmware,omitempty"`
SiteID string `json:"siteId,omitempty"`
SiteName string `json:"siteName,omitempty"`
Status string `json:"status,omitempty"` // the service's own word for its state
Online *bool `json:"online,omitempty"`
// How the charger is registered on the account — standalone, inside a
// system (site), or merely bound to it. A charger can be several at once,
// and which ones it is decides how much the service says about it.
Sources []string `json:"sources,omitempty"`
// What it is doing right now, when the service knows: the charge power as
// the service words it (the unit is upstream's, so it is relayed verbatim)
// and the charger's OCPP connector state as the service sees it.
Power string `json:"power,omitempty"`
OcppStatus *int `json:"ocppStatus,omitempty"`
OcppStatusDesc string `json:"ocppStatusDesc,omitempty"`
// Attrs is everything else the service said about this charger, under the
// service's own field names. The fields above are the ones DriverVault has a
// name for; this is the remainder, relayed so a card can show what the
// account actually knows rather than only the part we modelled.
Attrs map[string]string `json:"attrs,omitempty"`
// LinkedChargerID is set when this one is already in DriverVault, so the UI
// never offers to import the same charger twice.
LinkedChargerID string `json:"linkedChargerId,omitempty"`
}
// --- the providers ------------------------------------------------------------
// ankerChargerSource imports from the Anker Solix cloud. The chargers capability
// merges the cloud's several views of an account (see the plugin's chargers.go),
// so a charger arrives here whether it stands alone or belongs to a system.
type ankerChargerSource struct{}
func (ankerChargerSource) id() string { return ankerPlugin }
func (ankerChargerSource) label() string { return "Anker Solix" }
func (ankerChargerSource) service() string { return "Anker Solix cloud" }
func (ankerChargerSource) listAction() string { return "chargers" }
func (ankerChargerSource) gate(ctx context.Context, s *Server, who *callerIdentity, userRaw json.RawMessage) (map[string]string, bool, string) {
res := s.resolveAnker(ctx, who, userRaw)
if reason := ankerGate(res, true); reason != "" {
return nil, false, reason
}
return map[string]string{
"email": res.eff.Email,
"password": res.eff.Password,
"country": res.eff.Country,
}, true, ""
}
func (ankerChargerSource) chargers(raw json.RawMessage) []providerCharger {
var env struct {
Chargers []struct {
SN string `json:"sn"`
Name string `json:"name"`
Model string `json:"model"`
Firmware string `json:"firmware"`
SiteID string `json:"siteId"`
SiteName string `json:"siteName"`
Sources []string `json:"sources"`
StatusDesc string `json:"statusDesc"`
Online *bool `json:"online"`
Power string `json:"power"`
OcppStatus *int `json:"ocppStatus"`
OcppStatusDesc string `json:"ocppStatusDesc"`
Attrs map[string]string `json:"attrs"`
} `json:"chargers"`
}
if json.Unmarshal(raw, &env) != nil {
return nil
}
out := make([]providerCharger, 0, len(env.Chargers))
for _, c := range env.Chargers {
if c.SN == "" {
continue
}
out = append(out, providerCharger{
ID: c.SN, Name: c.Name, Vendor: "Anker Solix", Model: c.Model,
Firmware: c.Firmware, SiteID: c.SiteID, SiteName: c.SiteName,
Sources: c.Sources, Status: c.StatusDesc, Online: c.Online,
Power: c.Power, OcppStatus: c.OcppStatus, OcppStatusDesc: c.OcppStatusDesc,
Attrs: c.Attrs,
})
}
return out
}
// greencellChargerSource imports from a Greencell wallbox on the user's own MQTT
// broker. There is no cloud account behind it — the charger announces itself on
// the broker, which is why this provider can be connected while offering nothing
// until a charger answers.
type greencellChargerSource struct{}
func (greencellChargerSource) id() string { return greencellPlugin }
func (greencellChargerSource) label() string { return "Greencell" }
func (greencellChargerSource) service() string { return "Greencell (MQTT broker)" }
func (greencellChargerSource) listAction() string { return "chargers" }
func (greencellChargerSource) gate(ctx context.Context, s *Server, who *callerIdentity, userRaw json.RawMessage) (map[string]string, bool, string) {
res := s.resolveGreencell(ctx, who, userRaw)
if reason := greencellGate(res, true); reason != "" {
return nil, false, reason
}
return greencellPluginConfig(res), true, ""
}
func (greencellChargerSource) chargers(raw json.RawMessage) []providerCharger {
var env struct {
Chargers []struct {
SN string `json:"sn"`
Name string `json:"name"`
Model string `json:"model"`
} `json:"chargers"`
}
if json.Unmarshal(raw, &env) != nil {
return nil
}
out := make([]providerCharger, 0, len(env.Chargers))
for _, c := range env.Chargers {
if c.SN == "" {
continue
}
out = append(out, providerCharger{ID: c.SN, Name: c.Name, Vendor: "Greencell", Model: c.Model})
}
return out
}
// --- handlers -----------------------------------------------------------------
// GET /api/charger-providers — every provider with whether the caller can use it
// and, when they cannot, the one sentence that says what to do about it. Never
// an error: an unconnected provider is a normal state with an answer.
func (s *Server) handleListChargerProviders(w http.ResponseWriter, r *http.Request) {
who := caller(r)
if who == nil {
writeError(w, http.StatusUnauthorized, "not authenticated")
return
}
userRaw := s.userPluginSettings(r.Context(), who.ID)
out := make([]map[string]any, 0, len(chargerSources()))
for _, src := range chargerSources() {
_, ok, detail := src.gate(r.Context(), s, who, userRaw)
out = append(out, map[string]any{
"id": src.id(),
"label": src.label(),
"service": src.service(),
"connected": ok,
"detail": detail,
})
}
writeJSON(w, http.StatusOK, map[string]any{"providers": out})
}
// resolveChargerSource looks up the provider named in the path and gates it for
// the caller. On any failure it writes the response and returns ok=false.
//
// softGate picks how a closed gate is reported, exactly as the vehicle side does:
// a listing answers 200 with an empty list and a reason, so the UI can say
// "connect this in Settings"; a write answers 400, because there the caller asked
// for something that did not happen.
func (s *Server) resolveChargerSource(w http.ResponseWriter, r *http.Request, softGate bool) (chargerSource, map[string]string, bool) {
who := caller(r)
if who == nil {
writeError(w, http.StatusUnauthorized, "not authenticated")
return nil, nil, false
}
src, found := chargerSourceByID(r.PathValue("provider"))
if !found {
writeError(w, http.StatusNotFound, "unknown charger provider")
return nil, nil, false
}
userRaw := s.userPluginSettings(r.Context(), who.ID)
cfg, ok, detail := src.gate(r.Context(), s, who, userRaw)
if !ok {
if softGate {
writeJSON(w, http.StatusOK, map[string]any{
"provider": src.id(),
"label": src.label(),
"service": src.service(),
"chargers": []any{},
"unavailable": true,
"detail": detail,
})
} else {
writeError(w, http.StatusBadRequest, detail)
}
return nil, nil, false
}
return src, cfg, true
}
// GET /api/charger-providers/{provider}/chargers — the chargers on that account,
// each annotated with the DriverVault charger it is already linked to.
func (s *Server) handleProviderChargers(w http.ResponseWriter, r *http.Request) {
src, cfg, ok := s.resolveChargerSource(w, r, true)
if !ok {
return
}
chargers, err := s.fetchProviderChargers(r.Context(), src, cfg)
if err != nil {
writeJSON(w, http.StatusBadGateway, map[string]any{"error": err.Error()})
return
}
linked := s.linkedChargers(r.Context(), s.currentUserID(r), src.id())
for i := range chargers {
chargers[i].LinkedChargerID = linked[chargers[i].ID]
}
writeJSON(w, http.StatusOK, map[string]any{
"provider": src.id(),
"label": src.label(),
"service": src.service(),
"chargers": chargers,
})
}
// fetchProviderChargers invokes the provider's list capability and normalizes it.
func (s *Server) fetchProviderChargers(ctx context.Context, src chargerSource, cfg map[string]string) ([]providerCharger, error) {
raw, err := s.plugins.InvokeWith(ctx, src.id(), cfg, src.listAction(), nil)
if err != nil {
return nil, err
}
return src.chargers(raw), nil
}
// linkedChargers maps provider charger id -> home charger id for one user and
// provider. Best effort: an unreachable PocketBase yields an empty map and the
// UI simply shows nothing as linked.
func (s *Server) linkedChargers(ctx context.Context, userID, provider string) map[string]string {
out := map[string]string{}
if userID == "" || provider == "" {
return out
}
res, err := s.pb.List(ctx, colHomeChargers, url.Values{
"filter": {"owner='" + userID + "' && provider='" + provider + "'"},
"perPage": {"200"},
})
if err != nil {
return out
}
var recs []homeChargerRecord
if json.Unmarshal(res.Items, &recs) != nil {
return out
}
for _, rec := range recs {
if rec.ProviderChargerID != "" {
out[rec.ProviderChargerID] = rec.ID
}
}
return out
}
// POST /api/charger-providers/{provider}/import — create a home charger from one
// on the account. Body: {chargerId, name?}. The name defaults to what the service
// calls it, then to the provider's own label, so a charger is never nameless.
func (s *Server) handleChargerImport(w http.ResponseWriter, r *http.Request) {
var body struct {
ChargerID string `json:"chargerId"`
Name string `json:"name"`
}
if err := decodeJSON(r, &body); err != nil {
writeError(w, http.StatusBadRequest, err.Error())
return
}
src, cfg, ok := s.resolveChargerSource(w, r, false)
if !ok {
return
}
chargers, err := s.fetchProviderChargers(r.Context(), src, cfg)
if err != nil {
writeJSON(w, http.StatusBadGateway, map[string]any{"error": err.Error()})
return
}
charger, found := findProviderCharger(chargers, body.ChargerID)
if !found {
writeError(w, http.StatusNotFound, "that charger is not on your "+src.label()+" account")
return
}
me := s.currentUserID(r)
if existing := s.linkedChargers(r.Context(), me, src.id())[charger.ID]; existing != "" {
writeJSON(w, http.StatusConflict, map[string]any{
"error": "this charger is already in DriverVault",
"chargerId": existing,
})
return
}
hc := models.HomeCharger{
Name: strings.TrimSpace(body.Name),
Serial: charger.ID,
Vendor: charger.Vendor,
Model: charger.Model,
SiteName: charger.SiteName,
}
if hc.Name == "" {
hc.Name = strings.TrimSpace(charger.Name)
}
if hc.Name == "" {
hc.Name = src.label() + " charger"
}
payload := homeChargerPayload(hc)
payload["owner"] = me
payload["provider"] = src.id()
payload["provider_charger_id"] = charger.ID
var rec homeChargerRecord
if err := s.pb.Create(r.Context(), colHomeChargers, payload, &rec); err != nil {
writePBError(w, err)
return
}
writeJSON(w, http.StatusCreated, map[string]any{"charger": rec.toModel()})
}
// findProviderCharger locates a charger by the provider's id, matched case
// insensitively — a serial is often typed or pasted in the case it was printed.
func findProviderCharger(list []providerCharger, id string) (providerCharger, bool) {
id = strings.TrimSpace(id)
for _, c := range list {
if strings.EqualFold(c.ID, id) {
return c, true
}
}
return providerCharger{}, false
}