Files
DriverVault/API Server/internal/api/integrations_ankersolix.go
T
tajniak81andClaude Opus 5 3064bff8ad The charger's own card list gets a door, and says where it differs
0104 was already implemented and already in the action catalogue; nothing
routed to it, so the only way to see the device's list was as a side
effect of writing a card. It has an endpoint now, and the panel a button.

The two lists are compared where they meet: a card the charger holds and
the account has forgotten still opens it, and a card only the account
holds will not, and neither shows anywhere else. The comparison is drawn
only when they disagree, and the device's reading is dropped on a refresh
rather than measured against an account list from a later moment.

The new test asks all four card routes without a token: a capability the
plugin implements and the catalogue advertises is still unusable if
nothing routes to it, and no other test here would notice.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-03 14:35:27 +02:00

713 lines
27 KiB
Go

package api
import (
"context"
"encoding/json"
"net/http"
"net/url"
"strings"
)
// This file mirrors integrations.go for the Anker Solix V1 Smart EV Charger
// plugin: the same three-layer cascade (global → org → user) lets everyone run
// the integration under their own Anker account while a superadmin (and, in an
// organization, an org admin) can impose settings from above. See integrations.go
// for the full rationale; only the fields differ.
//
// - global (L1): pluginSettings on the app_settings singleton, set in the API
// Server panel by a superadmin — the top of the cascade for everyone.
// - org (L2): pluginSettings.ankerSolix on the caller's organization record.
// - user (L3): pluginSettings.ankerSolix on the caller's own user record.
//
// The Anker email + password resolve together as a *pair* from the highest layer
// that supplies an email, so credential halves are never mixed across layers. The
// country resolves on its own. Enablement is strictly per-user (L3), gated by the
// global master switch and, for org users, the org gate.
const (
ankerPlugin = "anker-solix"
ankerSecretMask = "••••••••"
// Control modes for the Anker Solix charger, in order of how much they demand
// of the deployment. own and proxy are OCPP paths (see internal/ocpp) and need
// the charger to dial in to us. modbus is the local path (the ankersolix
// plugin's modbus.go), where we dial the charger — which needs the server on
// the charger's network. mqtt is the remote path (cloudmqtt.go): both sides
// meet at Anker's own broker, so the charger needs no reachability at all,
// which is what makes it the mode for a charger behind a customer's router.
ankerControlOff = "off" // monitoring only (default)
ankerControlOwn = "own" // DriverVault is the charger's Central System
ankerControlProxy = "proxy" // DriverVault relays to Anker's cloud and injects
ankerControlModbus = "modbus" // DriverVault talks Modbus TCP to the charger on the LAN
ankerControlMqtt = "mqtt" // DriverVault commands the charger over Anker's cloud broker
)
// normalizeControlMode maps a raw control-mode value to a recognized mode, or ""
// when unset/unknown so the cascade continues to the next layer. An explicit
// "off" is recognized (and thus wins its layer).
func normalizeControlMode(v string) string {
switch strings.ToLower(strings.TrimSpace(v)) {
case ankerControlOwn:
return ankerControlOwn
case ankerControlProxy:
return ankerControlProxy
case ankerControlModbus:
return ankerControlModbus
case ankerControlMqtt:
return ankerControlMqtt
case ankerControlOff:
return ankerControlOff
default:
return ""
}
}
// ankerConfig is one layer's Anker Solix settings.
type ankerConfig struct {
Email string `json:"email"`
Password string `json:"password"`
Country string `json:"country"`
// ControlMode is the control path: off | mqtt | modbus | own | proxy.
// It resolves independently of the credentials, like Country.
ControlMode string `json:"controlMode"`
}
// ankerChargerBinding is what we know about one charger the caller controls:
// its OCPP control token, its local Modbus address, or both. The operator
// installs the token into the charger (as its OCPP Basic-auth password); we keep
// only its SHA-256 hash and a short hint, never the plaintext — the token is
// shown to the owner exactly once, at generation. User-layer only, not a cascade
// credential.
type ankerChargerBinding struct {
TokenHash string `json:"tokenHash,omitempty"` // sha256(token), lowercase hex
TokenHint string `json:"tokenHint,omitempty"` // last 4 chars, for the UI
AddedAt string `json:"addedAt,omitempty"`
// ModbusHost and ModbusPort address the charger's local Modbus TCP server,
// which the owner enables in the Anker app (Settings > Integrations > Modbus
// TCP; the app then shows this address). They are per charger rather than per
// account because they are a LAN address, not a credential — and unlike the
// OCPP token they are not a secret, so they are stored and shown verbatim.
ModbusHost string `json:"modbusHost,omitempty"`
ModbusPort int `json:"modbusPort,omitempty"` // 0 means the standard 502
}
// ankerStored is what we persist per user/org under pluginSettings.ankerSolix.
type ankerStored struct {
Config ankerConfig `json:"config"`
// Enabled is the personal per-user opt-in (user layer). Default false.
Enabled bool `json:"enabled"`
// Disabled is the organization layer's off switch, stored inverted so that
// absent == enabled. Only meaningful on the org record; ignored on user records.
Disabled bool `json:"disabled,omitempty"`
// ControlChargers maps a charger serial to its OCPP control token (user layer).
ControlChargers map[string]ankerChargerBinding `json:"controlChargers,omitempty"`
}
// ankerSettingsDoc is the pluginSettings JSON shape for the ankerSolix key.
type ankerSettingsDoc struct {
AnkerSolix ankerStored `json:"ankerSolix"`
}
// ankerFieldView is one field's resolved state for the UI.
type ankerFieldView struct {
Effective string `json:"effective"` // resolved value in force (secrets/inherited creds masked)
Own string `json:"own"` // the caller's own editable-layer value (secret masked)
Source string `json:"source"` // global | org | user | unset
Locked bool `json:"locked"` // set above the caller's editable layer
}
// ankerResolution is the fully-resolved Anker Solix state for one caller.
type ankerResolution struct {
eff ankerConfig // effective (unmasked) — used only server-side (probes)
userOwn ankerConfig // caller's personal (L3) values (unmasked)
orgOwn ankerConfig // organization (L2) values (unmasked)
source map[string]string // field -> layer name (global|org|user|unset)
isSuper bool // superadmin: manages the global layer in the panel
canOrg bool // caller may edit the organization layer (org admin)
available bool // global master switch (plugin enabled in the panel)
orgEnabled bool // org gate (default true; gates the org's users)
enabled bool // caller's personal enable flag
}
// ankerLayerRank orders the cascade layers; a higher number is lower priority.
var ankerLayerRank = map[string]int{"global": 1, "org": 2, "user": 3}
// resolveAnker computes the cascade for a caller. userRaw is the caller's
// pluginSettings blob (read from their user record).
func (s *Server) resolveAnker(ctx context.Context, who *callerIdentity, userRaw json.RawMessage) ankerResolution {
g, masterEnabled, _ := s.plugins.RawConfig(ankerPlugin)
gc := ankerConfig{Email: g["email"], Password: g["password"], Country: g["country"], ControlMode: g["controlMode"]}
var oStored ankerStored
if who.OrgID != "" {
oStored, _ = s.orgAnker(ctx, who.OrgID)
}
oc := oStored.Config
var uStored ankerStored
if len(userRaw) > 0 {
var d ankerSettingsDoc
_ = json.Unmarshal(userRaw, &d)
uStored = d.AnkerSolix
}
uc := uStored.Config
res := ankerResolution{
source: map[string]string{},
userOwn: uc,
orgOwn: oc,
isSuper: who.isSuperadmin(),
// An org admin may edit the organization layer in addition to their own
// personal layer. Requires the service account (org writes go through it).
canOrg: who.isManager() && !who.isSuperadmin() && who.OrgID != "" && s.pb.Configured(),
available: masterEnabled,
orgEnabled: !oStored.Disabled, // default true; off only when the org disabled it
enabled: uStored.Enabled,
}
// Ordered layers, top (highest priority) first.
type layer struct {
name string
c ankerConfig
}
layers := []layer{{"global", gc}}
if who.OrgID != "" {
layers = append(layers, layer{"org", oc})
}
layers = append(layers, layer{"user", uc})
// Country resolves independently: the highest layer that sets it wins.
res.source["country"] = "unset"
for _, l := range layers {
if v := strings.TrimSpace(l.c.Country); v != "" {
res.eff.Country, res.source["country"] = v, l.name
break
}
}
// Control mode resolves independently too, defaulting to off (monitoring
// only). The highest layer that sets a recognized value wins; an explicit
// "off" set above still wins (and locks lower layers to monitoring).
res.eff.ControlMode = ankerControlOff
res.source["controlMode"] = "unset"
for _, l := range layers {
if v := normalizeControlMode(l.c.ControlMode); v != "" {
res.eff.ControlMode, res.source["controlMode"] = v, l.name
break
}
}
// Credentials resolve as a pair from the highest layer with an email, so the
// email and password never come from different layers.
credSrc := "unset"
for _, l := range layers {
if e := strings.TrimSpace(l.c.Email); e != "" {
res.eff.Email, res.eff.Password, credSrc = e, l.c.Password, l.name
break
}
}
res.source["email"] = credSrc
res.source["password"] = credSrc
return res
}
// ankerLockedFor reports whether a field whose value comes from source is locked
// for a caller whose editable layer is editable (i.e. the value is set above them).
func ankerLockedFor(source, editable string) bool {
if editable == "none" {
return true // superadmin edits the global layer in the panel, not here
}
sr, ok := ankerLayerRank[source]
if !ok {
return false // unset — the caller may be the first to set it
}
return sr < ankerLayerRank[editable]
}
// ankerMaskPresent returns the secret mask when v is non-empty, else "".
func ankerMaskPresent(v string) string {
if strings.TrimSpace(v) != "" {
return ankerSecretMask
}
return ""
}
// orgAnker reads an organization's stored Anker Solix settings (config + the org
// gate) and its raw pluginSettings blob via the service account. Best effort:
// zero values on any miss so callers proceed as if the org layer were empty.
func (s *Server) orgAnker(ctx context.Context, orgID string) (ankerStored, json.RawMessage) {
if orgID == "" || !s.pb.Configured() {
return ankerStored{}, nil
}
data, status, err := s.pb.Raw(ctx, http.MethodGet,
"/api/collections/"+colOrgs+"/records/"+url.PathEscape(orgID)+"?fields=pluginSettings", nil)
if err != nil || status != http.StatusOK {
return ankerStored{}, nil
}
var rec struct {
PluginSettings json.RawMessage `json:"pluginSettings"`
}
_ = json.Unmarshal(data, &rec)
var doc ankerSettingsDoc
if len(rec.PluginSettings) > 0 {
_ = json.Unmarshal(rec.PluginSettings, &doc)
}
return doc.AnkerSolix, rec.PluginSettings
}
// mergeAnker applies a mutation to the ankerSolix entry of a pluginSettings blob,
// preserving any other plugin keys, and returns the new blob.
func mergeAnker(existing json.RawMessage, apply func(*ankerStored)) json.RawMessage {
doc := map[string]json.RawMessage{}
if len(existing) > 0 {
_ = json.Unmarshal(existing, &doc)
}
if doc == nil {
doc = map[string]json.RawMessage{} // existing was JSON null
}
var as ankerStored
if raw, ok := doc["ankerSolix"]; ok {
_ = json.Unmarshal(raw, &as)
}
apply(&as)
b, _ := json.Marshal(as)
doc["ankerSolix"] = b
out, _ := json.Marshal(doc)
return out
}
// ankerScopeView builds the masked field set for one editable scope. editable is
// the layer the caller edits in this scope ("user" | "org" | "none"); a field is
// locked when its effective value is set above that layer.
func (s *Server) ankerScopeView(res ankerResolution, editable string) map[string]any {
own := res.userOwn
if editable == "org" {
own = res.orgOwn
}
field := func(key, eff, ownv string, secret bool) ankerFieldView {
src := res.source[key]
locked := ankerLockedFor(src, editable)
fv := ankerFieldView{Source: src, Locked: locked}
switch {
case secret:
// Never expose a secret; show only presence.
fv.Effective, fv.Own = ankerMaskPresent(eff), ankerMaskPresent(ownv)
case key == "email" && locked:
// Inherited email — hide the concrete value from a lower layer.
fv.Effective, fv.Own = ankerMaskPresent(eff), ankerMaskPresent(ownv)
default:
fv.Effective, fv.Own = eff, ownv
}
return fv
}
return map[string]any{
"editableLayer": editable,
"fields": map[string]ankerFieldView{
"email": field("email", res.eff.Email, own.Email, false),
"password": field("password", res.eff.Password, own.Password, true),
"country": field("country", res.eff.Country, own.Country, false),
"controlMode": field("controlMode", res.eff.ControlMode, own.ControlMode, false),
},
}
}
// ankerView builds the masked, client-safe response body from a resolution.
func (s *Server) ankerView(who *callerIdentity, res ankerResolution) map[string]any {
out := map[string]any{
"available": res.available,
"orgEnabled": res.orgEnabled,
"enabled": res.enabled,
"controlMode": res.eff.ControlMode, // effective control mode (off|mqtt|modbus|own|proxy)
"role": who.Role,
"orgId": who.OrgID,
"canEditOrg": res.canOrg,
"isSuperadmin": res.isSuper,
}
if res.isSuper {
// Superadmin manages the global layer in the panel; here it is read-only.
out["editableLayer"] = "none"
out["scopes"] = map[string]any{"user": s.ankerScopeView(res, "none")}
return out
}
scopes := map[string]any{"user": s.ankerScopeView(res, "user")}
if res.canOrg {
scopes["org"] = s.ankerScopeView(res, "org")
}
out["scopes"] = scopes
return out
}
// ankerGate returns the reason the integration cannot run for this caller, or ""
// when it can. requireOptIn additionally demands the personal enable flag, which
// a live probe deliberately does not: the probe is how you check credentials
// before switching the integration on.
func ankerGate(res ankerResolution, requireOptIn bool) string {
switch {
case !res.available:
return "The Anker Solix integration is disabled by the administrator"
case !res.orgEnabled:
return "The Anker Solix integration is disabled for your organization"
case requireOptIn && !res.enabled:
return "Enable the Anker Solix integration in Settings to load your chargers"
case strings.TrimSpace(res.eff.Email) == "" || strings.TrimSpace(res.eff.Password) == "":
return "Enter your Anker account email and password to connect"
}
return ""
}
// GET /api/integrations/anker-solix — resolved Anker Solix view for the caller.
func (s *Server) handleGetAnker(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)
res := s.resolveAnker(r.Context(), who, userRaw)
writeJSON(w, http.StatusOK, s.ankerView(who, res))
}
// PUT /api/integrations/anker-solix — save the caller's editable layer. Body:
// {enabled?: bool, scope?: "user"|"org", config?: {email, password, country}}.
// Fields locked above the caller are ignored; a password left at the mask is
// preserved.
func (s *Server) handlePutAnker(w http.ResponseWriter, r *http.Request) {
who := caller(r)
if who == nil {
writeError(w, http.StatusUnauthorized, "not authenticated")
return
}
if !s.pb.Configured() {
writeError(w, http.StatusServiceUnavailable, "integration settings not configured on the server")
return
}
var body struct {
Enabled *bool `json:"enabled"`
Scope string `json:"scope"` // "user" (default) | "org" (admins only)
Config map[string]string `json:"config"`
}
if err := json.NewDecoder(r.Body).Decode(&body); err != nil {
writeError(w, http.StatusBadRequest, "invalid json")
return
}
userRaw := s.userPluginSettings(r.Context(), who.ID)
res := s.resolveAnker(r.Context(), who, userRaw)
// Resolve which layer this write targets. Everyone edits their own personal
// (user) layer by default; an org admin may target the organization layer by
// asking for scope "org". Superadmins are read-only here (they manage global
// in the panel) and may only toggle their personal enable flag.
editable := "user"
switch {
case res.isSuper:
editable = "none"
case strings.EqualFold(strings.TrimSpace(body.Scope), "org"):
if !res.canOrg {
writeError(w, http.StatusForbidden, "only an organization admin can edit organization settings")
return
}
editable = "org"
}
// Build the new target-layer config from its current own values, overlaying
// only fields the caller is allowed to change in this scope.
newOwn := res.userOwn
if editable == "org" {
newOwn = res.orgOwn
}
applyField := func(key string, set func(*ankerConfig, string)) {
v, ok := body.Config[key]
if !ok || ankerLockedFor(res.source[key], editable) {
return
}
if key == "password" && v == ankerSecretMask {
return // keep current secret
}
set(&newOwn, strings.TrimSpace(v))
}
applyField("email", func(c *ankerConfig, v string) { c.Email = v })
applyField("password", func(c *ankerConfig, v string) { c.Password = v })
applyField("country", func(c *ankerConfig, v string) { c.Country = strings.ToUpper(v) })
applyField("controlMode", func(c *ankerConfig, v string) { c.ControlMode = normalizeControlMode(v) })
// Persist the organization layer (admins) via the service account.
if editable == "org" {
_, orgRaw := s.orgAnker(r.Context(), who.OrgID)
newDoc := mergeAnker(orgRaw, func(as *ankerStored) {
as.Config = newOwn
// In the org scope the enable flag is the org master switch, stored
// inverted (disabled) so absent means enabled.
if body.Enabled != nil {
as.Disabled = !*body.Enabled
}
})
_, st, err := s.pb.Raw(r.Context(), http.MethodPatch,
"/api/collections/"+colOrgs+"/records/"+url.PathEscape(who.OrgID),
map[string]json.RawMessage{"pluginSettings": newDoc})
if err != nil {
writeUpstreamDown(w, err)
return
}
if st != http.StatusOK {
writeError(w, http.StatusBadGateway, "could not save organization settings")
return
}
}
// Persist the user record: the personal enable flag lives here (user/
// superadmin scope — in the org scope it targets the org gate instead), and
// so does the personal config layer when this write targets the user scope.
personalEnable := body.Enabled != nil && editable != "org"
if personalEnable || editable == "user" {
newDoc := mergeAnker(userRaw, func(as *ankerStored) {
if personalEnable {
as.Enabled = *body.Enabled
}
if editable == "user" {
as.Config = newOwn
}
})
if err := s.pb.Update(r.Context(), s.usersCollection(), who.ID,
map[string]any{"pluginSettings": newDoc}, nil); err != nil {
writePBError(w, err)
return
}
}
// Re-resolve and return the fresh view.
fresh := s.userPluginSettings(r.Context(), who.ID)
res2 := s.resolveAnker(r.Context(), who, fresh)
writeJSON(w, http.StatusOK, s.ankerView(who, res2))
}
// POST /api/integrations/anker-solix/health — live probe using the caller's
// resolved config. Never returns secrets.
func (s *Server) handleAnkerHealth(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)
res := s.resolveAnker(r.Context(), who, userRaw)
if reason := ankerGate(res, false); reason != "" {
writeJSON(w, http.StatusOK, map[string]any{"health": map[string]any{"status": "down", "detail": reason}})
return
}
cfg := map[string]string{
"email": res.eff.Email,
"password": res.eff.Password,
"country": res.eff.Country,
}
h, err := s.plugins.HealthCheckWith(r.Context(), ankerPlugin, cfg)
if err != nil {
writeJSON(w, http.StatusBadGateway, map[string]any{"error": err.Error()})
return
}
writeJSON(w, http.StatusOK, map[string]any{"health": h})
}
// GET /api/integrations/anker-solix/chargers — the caller's Anker EV chargers,
// fetched server-side under their resolved credentials. Gated by the same
// switches as the settings view (global master, org gate, personal opt-in,
// credentials present); when any gate is off it returns 200 with an empty list
// plus a reason, so the UI can degrade quietly rather than error.
func (s *Server) handleAnkerChargers(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)
res := s.resolveAnker(r.Context(), who, userRaw)
if reason := ankerGate(res, true); reason != "" {
writeJSON(w, http.StatusOK, map[string]any{"chargers": []any{}, "unavailable": true, "detail": reason})
return
}
cfg := map[string]string{
"email": res.eff.Email,
"password": res.eff.Password,
"country": res.eff.Country,
}
raw, err := s.plugins.InvokeWith(r.Context(), ankerPlugin, cfg, "chargers", nil)
if err != nil {
writeJSON(w, http.StatusBadGateway, map[string]any{"error": err.Error()})
return
}
// The plugin already answers {chargers, count, boundCount?, warnings?}; relay
// that document as-is so the UI sees exactly what the capability produced.
writeJSON(w, http.StatusOK, json.RawMessage(raw))
}
// GET /api/integrations/anker-solix/chargers/{sn}/details — every view the
// account holds about one charger: the station record, the totals, the history,
// the sessions, the OCPP backend, the cards, the sharing, the binding, the
// firmware and the rest, plus the site's own views when the charger belongs to
// one. Gated exactly like the charger list, and answered
// the same way when a gate is off: 200 with nothing and the reason, because a
// disconnected integration is a normal state with an answer.
func (s *Server) handleAnkerChargerDetails(w http.ResponseWriter, r *http.Request) {
who := caller(r)
if who == nil {
writeError(w, http.StatusUnauthorized, "not authenticated")
return
}
sn := strings.TrimSpace(r.PathValue("sn"))
if sn == "" {
writeError(w, http.StatusBadRequest, "charger serial required")
return
}
userRaw := s.userPluginSettings(r.Context(), who.ID)
res := s.resolveAnker(r.Context(), who, userRaw)
if reason := ankerGate(res, true); reason != "" {
writeJSON(w, http.StatusOK, map[string]any{"sn": sn, "views": []any{}, "unavailable": true, "detail": reason})
return
}
cfg := map[string]string{
"email": res.eff.Email,
"password": res.eff.Password,
"country": res.eff.Country,
}
raw, err := s.plugins.InvokeWith(r.Context(), ankerPlugin, cfg, "charger-details",
mustJSON(map[string]any{"sn": sn}))
if err != nil {
writeJSON(w, http.StatusBadGateway, map[string]any{"error": err.Error()})
return
}
writeJSON(w, http.StatusOK, json.RawMessage(raw))
}
// The two card writes. They are the only calls in the Anker connector that
// change anything on the account, so both are gated exactly like the reads,
// rate-limited beside the control commands — a card is who may start a charge,
// which is the same actuator asked a slower question — and audited by serial and
// card, with the number kept out of the log line: it is the credential itself.
// Both answer with the card list as it stands after the write, so the caller
// sees what the account holds rather than what an undocumented endpoint claimed.
// ankerCardBody is what a card write is asked for.
type ankerCardBody struct {
CardNumber string `json:"cardNumber"`
CardName string `json:"cardName"`
}
// POST /api/integrations/anker-solix/chargers/{sn}/rfid-cards — add a card to
// the charger, or rename one already on it.
func (s *Server) handleAnkerCardSave(w http.ResponseWriter, r *http.Request) {
who, sn, cfg, ok := s.ankerCardGate(w, r)
if !ok {
return
}
var body ankerCardBody
if r.Body != nil {
_ = json.NewDecoder(r.Body).Decode(&body)
}
if strings.TrimSpace(body.CardNumber) == "" {
writeError(w, http.StatusBadRequest, "card number required")
return
}
s.ankerCardWrite(w, r, who, cfg, "rfid-card-save", sn, map[string]any{
"sn": sn, "cardNumber": body.CardNumber, "cardName": body.CardName,
})
}
// DELETE /api/integrations/anker-solix/chargers/{sn}/rfid-cards/{number} —
// remove one card, named in full.
func (s *Server) handleAnkerCardDelete(w http.ResponseWriter, r *http.Request) {
who, sn, cfg, ok := s.ankerCardGate(w, r)
if !ok {
return
}
number := strings.TrimSpace(r.PathValue("number"))
if number == "" {
writeError(w, http.StatusBadRequest, "card number required")
return
}
s.ankerCardWrite(w, r, who, cfg, "rfid-card-delete", sn, map[string]any{
"sn": sn, "cardNumber": number,
})
}
// POST /api/integrations/anker-solix/chargers/{sn}/rfid-cards/scan — open the
// charger's card reader and answer with the card someone taps on it. Takes as
// long as the window does, about twenty seconds, and answers either way: a
// window that closed with nothing tapped is an answer, not a timeout.
func (s *Server) handleAnkerCardScan(w http.ResponseWriter, r *http.Request) {
who, sn, cfg, ok := s.ankerCardGate(w, r)
if !ok {
return
}
s.ankerCardWrite(w, r, who, cfg, "rfid-card-scan", sn, map[string]any{"sn": sn})
}
// GET /api/integrations/anker-solix/chargers/{sn}/rfid-cards/charger — the list
// of cards the charger itself holds, asked of the device with 0104 rather than
// of the account.
//
// The two lists are written together and can still come apart: a card the
// account has forgotten still opens the charger until the device is told
// otherwise, and the account's copy is the only one every other view here
// draws. Asking the device is the only way to see the difference. It answers
// with UIDs and nothing else — the charger has no field for a card's name.
func (s *Server) handleAnkerChargerCards(w http.ResponseWriter, r *http.Request) {
who, sn, cfg, ok := s.ankerCardGate(w, r)
if !ok {
return
}
s.ankerCardWrite(w, r, who, cfg, "rfid-cards-charger", sn, map[string]any{"sn": sn})
}
// ankerCardGate is everything a card call needs before it may run: a caller, a
// serial, an integration that is on and has credentials, and a rate limit. A
// gate that is off answers 409 rather than the reads' 200-with-a-reason: a write
// that did not happen is not a state to render, it is a request that failed.
func (s *Server) ankerCardGate(w http.ResponseWriter, r *http.Request) (*callerIdentity, string, map[string]string, bool) {
who := caller(r)
if who == nil {
writeError(w, http.StatusUnauthorized, "not authenticated")
return nil, "", nil, false
}
sn := strings.TrimSpace(r.PathValue("sn"))
if sn == "" {
writeError(w, http.StatusBadRequest, "charger serial required")
return nil, "", nil, false
}
userRaw := s.userPluginSettings(r.Context(), who.ID)
res := s.resolveAnker(r.Context(), who, userRaw)
if reason := ankerGate(res, true); reason != "" {
writeError(w, http.StatusConflict, reason)
return nil, "", nil, false
}
if !s.ctlRL.allow(who.ID + "|" + sn) {
writeError(w, http.StatusTooManyRequests, "too many card requests; please slow down")
return nil, "", nil, false
}
return who, sn, map[string]string{
"email": res.eff.Email,
"password": res.eff.Password,
"country": res.eff.Country,
}, true
}
// ankerCardWrite runs one card capability and relays its document. The audit
// line names the charger and how the write went, never the card number.
func (s *Server) ankerCardWrite(w http.ResponseWriter, r *http.Request, who *callerIdentity,
cfg map[string]string, action, sn string, params map[string]any) {
raw, err := s.plugins.InvokeWith(r.Context(), ankerPlugin, cfg, action, mustJSON(params))
if err != nil {
s.auditControl(who, sn, action, nil, "failed", err)
writeJSON(w, http.StatusBadGateway, map[string]any{"error": err.Error()})
return
}
s.auditControl(who, sn, action, nil, "ok", nil)
writeJSON(w, http.StatusOK, json.RawMessage(raw))
}