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grant_request.go
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grant_request.go
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package pubnub
import (
"bytes"
"encoding/json"
"fmt"
"io/ioutil"
"net/http"
"net/url"
"strconv"
"strings"
"time"
"github.com/pubnub/go/pnerr"
)
// PNGrantType grant types
type PNGrantType int
const grantPath = "/v1/auth/grant/sub-key/%s"
const (
// PNReadEnabled Read Enabled
PNReadEnabled PNGrantType = 1 + iota
// PNWriteEnabled Write Enabled
PNWriteEnabled
// PNManageEnabled Manage Enabled
PNManageEnabled
// PNDeleteEnabled Delete Enabled
PNDeleteEnabled
)
var emptyGrantResponse *GrantResponse
type grantBuilder struct {
opts *grantOpts
}
func newGrantBuilder(pubnub *PubNub) *grantBuilder {
builder := grantBuilder{
opts: &grantOpts{
pubnub: pubnub,
},
}
return &builder
}
func newGrantBuilderWithContext(pubnub *PubNub, context Context) *grantBuilder {
builder := grantBuilder{
opts: &grantOpts{
pubnub: pubnub,
ctx: context,
},
}
return &builder
}
func (b *grantBuilder) Read(read bool) *grantBuilder {
b.opts.Read = read
return b
}
func (b *grantBuilder) Write(write bool) *grantBuilder {
b.opts.Write = write
return b
}
func (b *grantBuilder) Manage(manage bool) *grantBuilder {
b.opts.Manage = manage
return b
}
func (b *grantBuilder) Delete(del bool) *grantBuilder {
b.opts.Delete = del
return b
}
// TTL in minutes for which granted permissions are valid.
//
// Min: 1
// Max: 525600
// Default: 1440
//
// Setting value to 0 will apply the grant indefinitely (forever grant).
func (b *grantBuilder) TTL(ttl int) *grantBuilder {
b.opts.TTL = ttl
b.opts.setTTL = true
return b
}
// AuthKeys sets the AuthKeys for the Grant request.
func (b *grantBuilder) AuthKeys(authKeys []string) *grantBuilder {
b.opts.AuthKeys = authKeys
return b
}
// Channels sets the Channels for the Grant request.
func (b *grantBuilder) Channels(channels []string) *grantBuilder {
b.opts.Channels = channels
return b
}
// ChannelGroups sets the ChannelGroups for the Grant request.
func (b *grantBuilder) ChannelGroups(groups []string) *grantBuilder {
b.opts.ChannelGroups = groups
return b
}
// QueryParam accepts a map, the keys and values of the map are passed as the query string parameters of the URL called by the API.
func (b *grantBuilder) QueryParam(queryParam map[string]string) *grantBuilder {
b.opts.QueryParam = queryParam
return b
}
// Execute runs the Grant request.
func (b *grantBuilder) Execute() (*GrantResponse, StatusResponse, error) {
rawJSON, status, err := executeRequest(b.opts)
if err != nil {
return emptyGrantResponse, status, err
}
return newGrantResponse(rawJSON, status)
}
type grantOpts struct {
pubnub *PubNub
ctx Context
AuthKeys []string
Channels []string
ChannelGroups []string
QueryParam map[string]string
// Stringified permissions
// Setting 'true' or 'false' will apply permissions to level
Read bool
Write bool
Manage bool
Delete bool
// Max: 525600
// Min: 1
// Default: 1440
// Setting 0 will apply the grant indefinitely
TTL int
// nil hacks
setTTL bool
}
func (o *grantOpts) config() Config {
return *o.pubnub.Config
}
func (o *grantOpts) client() *http.Client {
return o.pubnub.GetClient()
}
func (o *grantOpts) context() Context {
return o.ctx
}
func (o *grantOpts) validate() error {
if o.config().PublishKey == "" {
return newValidationError(o, StrMissingPubKey)
}
if o.config().SubscribeKey == "" {
return newValidationError(o, StrMissingSubKey)
}
if o.config().SecretKey == "" {
return newValidationError(o, StrMissingSecretKey)
}
return nil
}
func (o *grantOpts) buildPath() (string, error) {
return fmt.Sprintf(grantPath, o.pubnub.Config.SubscribeKey), nil
}
func (o *grantOpts) buildQuery() (*url.Values, error) {
q := defaultQuery(o.pubnub.Config.UUID, o.pubnub.telemetryManager)
if o.Read {
q.Set("r", "1")
} else {
q.Set("r", "0")
}
if o.Write {
q.Set("w", "1")
} else {
q.Set("w", "0")
}
if o.Manage {
q.Set("m", "1")
} else {
q.Set("m", "0")
}
if o.Delete {
q.Set("d", "1")
} else {
q.Set("d", "0")
}
if len(o.AuthKeys) > 0 {
q.Set("auth", strings.Join(o.AuthKeys, ","))
}
if len(o.Channels) > 0 {
q.Set("channel", strings.Join(o.Channels, ","))
}
if len(o.ChannelGroups) > 0 {
q.Set("channel-group", strings.Join(o.ChannelGroups, ","))
}
if o.setTTL {
if o.TTL >= -1 {
q.Set("ttl", fmt.Sprintf("%d", o.TTL))
}
}
timestamp := time.Now().Unix()
q.Set("timestamp", strconv.Itoa(int(timestamp)))
SetQueryParam(q, o.QueryParam)
return q, nil
}
func (o *grantOpts) jobQueue() chan *JobQItem {
return o.pubnub.jobQueue
}
func (o *grantOpts) buildBody() ([]byte, error) {
return []byte{}, nil
}
func (o *grantOpts) httpMethod() string {
return "GET"
}
func (o *grantOpts) isAuthRequired() bool {
return true
}
func (o *grantOpts) requestTimeout() int {
return o.pubnub.Config.NonSubscribeRequestTimeout
}
func (o *grantOpts) connectTimeout() int {
return o.pubnub.Config.ConnectTimeout
}
func (o *grantOpts) operationType() OperationType {
return PNAccessManagerGrant
}
func (o *grantOpts) telemetryManager() *TelemetryManager {
return o.pubnub.telemetryManager
}
// GrantResponse is the struct returned when the Execute function of Grant is called.
type GrantResponse struct {
Level string
SubscribeKey string
TTL int
Channels map[string]*PNPAMEntityData
ChannelGroups map[string]*PNPAMEntityData
ReadEnabled bool
WriteEnabled bool
ManageEnabled bool
DeleteEnabled bool
}
// PNPAMEntityData is the struct containing the access details of the channels.
type PNPAMEntityData struct {
Name string
AuthKeys map[string]*PNAccessManagerKeyData
ReadEnabled bool
WriteEnabled bool
ManageEnabled bool
DeleteEnabled bool
TTL int
}
// PNAccessManagerKeyData is the struct containing the access details of the channel groups.
type PNAccessManagerKeyData struct {
ReadEnabled bool
WriteEnabled bool
ManageEnabled bool
DeleteEnabled bool
TTL int
}
func newGrantResponse(jsonBytes []byte, status StatusResponse) (
*GrantResponse, StatusResponse, error) {
resp := &GrantResponse{}
var value interface{}
err := json.Unmarshal(jsonBytes, &value)
if err != nil {
e := pnerr.NewResponseParsingError("Error unmarshalling response",
ioutil.NopCloser(bytes.NewBufferString(string(jsonBytes))), err)
return emptyGrantResponse, status, e
}
constructedChannels := make(map[string]*PNPAMEntityData)
constructedGroups := make(map[string]*PNPAMEntityData)
grantData, _ := value.(map[string]interface{})
payload := grantData["payload"]
parsedPayload := payload.(map[string]interface{})
auths, _ := parsedPayload["auths"].(map[string]interface{})
ttl, _ := parsedPayload["ttl"].(float64)
if val, ok := parsedPayload["channel"]; ok {
channelName := val.(string)
auths := make(map[string]*PNAccessManagerKeyData)
channelMap, _ := parsedPayload["auths"].(map[string]interface{})
entityData := &PNPAMEntityData{
Name: channelName,
}
for key, value := range channelMap {
auths[key] = createPNAccessManagerKeyData(value, entityData, false)
}
entityData.AuthKeys = auths
entityData.TTL = int(ttl)
constructedChannels[channelName] = entityData
}
if val, ok := parsedPayload["channel-groups"]; ok {
groupName, _ := val.(string)
constructedAuthKey := make(map[string]*PNAccessManagerKeyData)
entityData := &PNPAMEntityData{
Name: groupName,
}
if _, ok := val.(string); ok {
for authKeyName, value := range auths {
constructedAuthKey[authKeyName] = createPNAccessManagerKeyData(value, entityData, false)
}
entityData.AuthKeys = constructedAuthKey
constructedGroups[groupName] = entityData
}
if groupMap, ok := val.(map[string]interface{}); ok {
groupName, _ := val.(string)
constructedAuthKey := make(map[string]*PNAccessManagerKeyData)
entityData := &PNPAMEntityData{
Name: groupName,
}
for groupName, value := range groupMap {
valueMap := value.(map[string]interface{})
if keys, ok := valueMap["auths"]; ok {
parsedKeys, _ := keys.(map[string]interface{})
for keyName, value := range parsedKeys {
constructedAuthKey[keyName] = createPNAccessManagerKeyData(value, entityData, false)
}
}
createPNAccessManagerKeyData(valueMap, entityData, true)
if val, ok := parsedPayload["ttl"]; ok {
parsedVal, _ := val.(float64)
entityData.TTL = int(parsedVal)
}
entityData.AuthKeys = constructedAuthKey
constructedGroups[groupName] = entityData
}
}
}
if val, ok := parsedPayload["channels"]; ok {
channelMap, _ := val.(map[string]interface{})
for channelName, value := range channelMap {
constructedChannels[channelName] = fetchChannel(channelName,
value, parsedPayload)
}
}
level, _ := parsedPayload["level"].(string)
subKey, _ := parsedPayload["subscribe_key"].(string)
resp.Level = level
resp.SubscribeKey = subKey
resp.Channels = constructedChannels
resp.ChannelGroups = constructedGroups
if r, ok := parsedPayload["r"]; ok {
parsedValue, _ := r.(float64)
if parsedValue == float64(1) {
resp.ReadEnabled = true
} else {
resp.ReadEnabled = false
}
}
if r, ok := parsedPayload["w"]; ok {
parsedValue, _ := r.(float64)
if parsedValue == float64(1) {
resp.WriteEnabled = true
} else {
resp.WriteEnabled = false
}
}
if r, ok := parsedPayload["m"]; ok {
parsedValue, _ := r.(float64)
if parsedValue == float64(1) {
resp.ManageEnabled = true
} else {
resp.ManageEnabled = false
}
}
if r, ok := parsedPayload["d"]; ok {
parsedValue, _ := r.(float64)
if parsedValue == float64(1) {
resp.DeleteEnabled = true
} else {
resp.DeleteEnabled = false
}
}
if r, ok := parsedPayload["ttl"]; ok {
parsedValue, _ := r.(float64)
resp.TTL = int(parsedValue)
}
return resp, status, nil
}
func fetchChannel(channelName string,
value interface{}, parsedPayload map[string]interface{}) *PNPAMEntityData {
auths := make(map[string]*PNAccessManagerKeyData)
entityData := &PNPAMEntityData{
Name: channelName,
}
valueMap, _ := value.(map[string]interface{})
if val, ok := valueMap["auths"]; ok {
parsedValue := val.(map[string]interface{})
for key, value := range parsedValue {
auths[key] = createPNAccessManagerKeyData(value, entityData, false)
}
}
createPNAccessManagerKeyData(value, entityData, true)
if val, ok := parsedPayload["ttl"]; ok {
parsedVal, _ := val.(float64)
entityData.TTL = int(parsedVal)
}
entityData.AuthKeys = auths
return entityData
}
func readKeyData(val interface{}, keyData *PNAccessManagerKeyData, entityData *PNPAMEntityData, writeToEntityData bool, grantType PNGrantType) {
parsedValue, _ := val.(float64)
readValue := false
if parsedValue == float64(1) {
readValue = true
}
if writeToEntityData {
switch grantType {
case PNReadEnabled:
entityData.ReadEnabled = readValue
case PNWriteEnabled:
entityData.WriteEnabled = readValue
case PNManageEnabled:
entityData.ManageEnabled = readValue
case PNDeleteEnabled:
entityData.DeleteEnabled = readValue
}
} else {
switch grantType {
case PNReadEnabled:
keyData.ReadEnabled = readValue
case PNWriteEnabled:
keyData.WriteEnabled = readValue
case PNManageEnabled:
keyData.ManageEnabled = readValue
case PNDeleteEnabled:
keyData.DeleteEnabled = readValue
}
}
}
func createPNAccessManagerKeyData(value interface{}, entityData *PNPAMEntityData, writeToEntityData bool) *PNAccessManagerKeyData {
valueMap := value.(map[string]interface{})
keyData := &PNAccessManagerKeyData{}
if val, ok := valueMap["r"]; ok {
readKeyData(val, keyData, entityData, writeToEntityData, PNReadEnabled)
}
if val, ok := valueMap["w"]; ok {
readKeyData(val, keyData, entityData, writeToEntityData, PNWriteEnabled)
}
if val, ok := valueMap["m"]; ok {
readKeyData(val, keyData, entityData, writeToEntityData, PNManageEnabled)
}
if val, ok := valueMap["d"]; ok {
readKeyData(val, keyData, entityData, writeToEntityData, PNDeleteEnabled)
}
if val, ok := valueMap["ttl"]; ok {
parsedVal, _ := val.(int)
entityData.TTL = parsedVal
}
return keyData
}