2020-02-03 11:16:02 +03:00
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package service
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import (
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"context"
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2020-03-24 16:48:37 +03:00
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"fmt"
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2020-03-23 19:19:30 +03:00
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"strings"
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2020-03-24 16:48:37 +03:00
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"sync"
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2020-02-03 11:16:02 +03:00
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"time"
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"github.com/micro/go-micro/v2/auth"
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2020-03-26 16:12:43 +03:00
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authPb "github.com/micro/go-micro/v2/auth/service/proto/auth"
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rulePb "github.com/micro/go-micro/v2/auth/service/proto/rules"
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2020-03-23 19:19:30 +03:00
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"github.com/micro/go-micro/v2/auth/token"
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"github.com/micro/go-micro/v2/auth/token/jwt"
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"github.com/micro/go-micro/v2/client"
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log "github.com/micro/go-micro/v2/logger"
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2020-03-25 21:34:13 +03:00
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"github.com/micro/go-micro/v2/util/jitter"
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2020-02-03 11:16:02 +03:00
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)
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// NewAuth returns a new instance of the Auth service
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func NewAuth(opts ...auth.Option) auth.Auth {
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svc := new(svc)
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svc.Init(opts...)
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return svc
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}
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// svc is the service implementation of the Auth interface
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type svc struct {
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options auth.Options
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auth authPb.AuthService
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rule rulePb.RulesService
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jwt token.Provider
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rules []*rulePb.Rule
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sync.Mutex
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}
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func (s *svc) String() string {
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return "service"
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}
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func (s *svc) Init(opts ...auth.Option) {
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for _, o := range opts {
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o(&s.options)
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}
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dc := client.DefaultClient
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s.auth = authPb.NewAuthService("go.micro.auth", dc)
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s.rule = rulePb.NewRulesService("go.micro.auth", dc)
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2020-02-03 11:16:02 +03:00
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2020-03-23 19:19:30 +03:00
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// if we have a JWT public key passed as an option,
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// we can decode tokens with the type "JWT" locally
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// and not have to make an RPC call
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if key := s.options.PublicKey; len(key) > 0 {
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s.jwt = jwt.NewTokenProvider(token.WithPublicKey(key))
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}
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// load rules periodically from the auth service
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timer := time.NewTicker(time.Second * 30)
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go func() {
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2020-03-25 21:34:13 +03:00
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// load rules immediately on startup
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s.loadRules()
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2020-03-24 17:16:57 +03:00
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for {
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<-timer.C
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2020-03-25 21:34:13 +03:00
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// jitter for up to 5 seconds, this stops
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// all the services calling the auth service
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// at the exact same time
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time.Sleep(jitter.Do(time.Second * 5))
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s.loadRules()
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}
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}()
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}
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2020-02-10 11:26:28 +03:00
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func (s *svc) Options() auth.Options {
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return s.options
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}
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// Generate a new account
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func (s *svc) Generate(id string, opts ...auth.GenerateOption) (*auth.Account, error) {
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options := auth.NewGenerateOptions(opts...)
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rsp, err := s.auth.Generate(context.TODO(), &authPb.GenerateRequest{
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Id: id,
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Roles: options.Roles,
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Metadata: options.Metadata,
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SecretExpiry: int64(options.SecretExpiry.Seconds()),
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})
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if err != nil {
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return nil, err
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}
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return serializeAccount(rsp.Account), nil
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}
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// Grant access to a resource
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func (s *svc) Grant(role string, res *auth.Resource) error {
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_, err := s.rule.Create(context.TODO(), &rulePb.CreateRequest{
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Role: role,
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Access: rulePb.Access_GRANTED,
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Resource: &authPb.Resource{
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Type: res.Type,
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Name: res.Name,
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Endpoint: res.Endpoint,
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},
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})
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return err
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}
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2020-03-23 19:19:30 +03:00
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// Revoke access to a resource
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func (s *svc) Revoke(role string, res *auth.Resource) error {
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_, err := s.rule.Delete(context.TODO(), &rulePb.DeleteRequest{
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Role: role,
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Access: rulePb.Access_GRANTED,
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Resource: &authPb.Resource{
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Type: res.Type,
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Name: res.Name,
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Endpoint: res.Endpoint,
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},
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})
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return err
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}
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// Verify an account has access to a resource
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func (s *svc) Verify(acc *auth.Account, res *auth.Resource) error {
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queries := [][]string{
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{res.Type, res.Name, res.Endpoint}, // check for specific role, e.g. service.foo.ListFoo:admin (role is checked in accessForRule)
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{res.Type, res.Name, res.Endpoint, "*"}, // check for wildcard role, e.g. service.foo.ListFoo:*
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{res.Type, res.Name, "*"}, // check for wildcard endpoint, e.g. service.foo*
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{res.Type, "*"}, // check for wildcard name, e.g. service.*
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{"*"}, // check for wildcard type, e.g. *
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}
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// endpoint is a url which can have wildcard excludes, e.g.
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// "/foo/*" will allow "/foo/bar"
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if comps := strings.Split(res.Endpoint, "/"); len(comps) > 1 {
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for i := 1; i < len(comps); i++ {
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wildcard := fmt.Sprintf("%v/*", strings.Join(comps[0:i], "/"))
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queries = append(queries, []string{res.Type, res.Name, wildcard})
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}
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}
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for _, q := range queries {
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for _, rule := range s.listRules(q...) {
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switch accessForRule(rule, acc, res) {
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case rulePb.Access_UNKNOWN:
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continue // rule did not specify access, check the next rule
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case rulePb.Access_GRANTED:
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return nil // rule grants the account access to the resource
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case rulePb.Access_DENIED:
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return auth.ErrForbidden // reule denies access to the resource
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}
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}
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}
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2020-03-26 16:12:43 +03:00
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// no rules were found for the resource, default to denying access
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return auth.ErrForbidden
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}
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// Inspect a token
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func (s *svc) Inspect(token string) (*auth.Account, error) {
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// try to decode JWT locally and fall back to srv if an error
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// occurs, TODO: find a better way of determining if the token
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// is a JWT, possibly update the interface to take an auth.Token
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// and not just the string
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if len(strings.Split(token, ".")) == 3 && s.jwt != nil {
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if tok, err := s.jwt.Inspect(token); err == nil {
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return &auth.Account{
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ID: tok.Subject,
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Roles: tok.Roles,
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Metadata: tok.Metadata,
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}, nil
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}
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}
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rsp, err := s.auth.Inspect(context.TODO(), &authPb.InspectRequest{
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Token: token,
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})
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if err != nil {
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return nil, err
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}
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return serializeAccount(rsp.Account), nil
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}
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2020-03-23 19:19:30 +03:00
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// Refresh an account using a secret
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func (s *svc) Refresh(secret string, opts ...auth.RefreshOption) (*auth.Token, error) {
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options := auth.NewRefreshOptions(opts...)
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2020-03-26 16:12:43 +03:00
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rsp, err := s.auth.Refresh(context.Background(), &authPb.RefreshRequest{
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Secret: secret,
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TokenExpiry: int64(options.TokenExpiry.Seconds()),
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})
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if err != nil {
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return nil, err
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2020-02-03 11:16:02 +03:00
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}
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2020-03-23 19:19:30 +03:00
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return serializeToken(rsp.Token), nil
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2020-02-03 11:16:02 +03:00
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}
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var ruleJoinKey = ":"
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2020-03-26 16:12:43 +03:00
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// accessForRule returns a rule status, indicating if a rule permits access to a
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// resource for a given account
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func accessForRule(rule *rulePb.Rule, acc *auth.Account, res *auth.Resource) rulePb.Access {
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if rule.Role == "*" {
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return rule.Access
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}
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for _, role := range acc.Roles {
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if rule.Role == role {
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return rule.Access
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}
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// allow user.anything if role is user.*
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if strings.HasSuffix(rule.Role, ".*") && strings.HasPrefix(rule.Role, role+".") {
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return rule.Access
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}
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}
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2020-03-26 16:12:43 +03:00
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return rulePb.Access_DENIED
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}
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// listRules gets all the rules from the store which have an id
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// prefix matching the filters
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func (s *svc) listRules(filters ...string) []*rulePb.Rule {
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s.Lock()
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defer s.Unlock()
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prefix := strings.Join(filters, ruleJoinKey)
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var rules []*rulePb.Rule
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for _, r := range s.rules {
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if strings.HasPrefix(r.Id, prefix) {
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rules = append(rules, r)
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}
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}
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return rules
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}
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// loadRules retrieves the rules from the auth service
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func (s *svc) loadRules() {
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rsp, err := s.rule.List(context.TODO(), &rulePb.ListRequest{})
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s.Lock()
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defer s.Unlock()
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if err != nil {
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log.Errorf("Error listing rules: %v", err)
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return
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}
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s.rules = rsp.Rules
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}
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func serializeToken(t *authPb.Token) *auth.Token {
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return &auth.Token{
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Token: t.Token,
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Type: t.Type,
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Created: time.Unix(t.Created, 0),
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Expiry: time.Unix(t.Expiry, 0),
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Subject: t.Subject,
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Roles: t.Roles,
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Metadata: t.Metadata,
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}
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}
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func serializeAccount(a *authPb.Account) *auth.Account {
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var secret *auth.Token
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if a.Secret != nil {
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secret = serializeToken(a.Secret)
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}
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2020-03-23 19:19:30 +03:00
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return &auth.Account{
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ID: a.Id,
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Roles: a.Roles,
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Metadata: a.Metadata,
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Secret: secret,
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}
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}
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