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2d53854b19
* initial commit * Add UTF check --------- Co-authored-by: Harshavardhana <harsha@minio.io>
383 lines
12 KiB
Go
383 lines
12 KiB
Go
// Copyright (c) 2015-2021 MinIO, Inc.
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//
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// This file is part of MinIO Object Storage stack
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package auth
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import (
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"crypto/rand"
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"crypto/subtle"
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"encoding/base64"
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"encoding/json"
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"errors"
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"fmt"
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"io"
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"strconv"
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"strings"
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"time"
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jwtgo "github.com/golang-jwt/jwt/v4"
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"github.com/minio/minio/internal/jwt"
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)
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const (
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// Minimum length for MinIO access key.
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accessKeyMinLen = 3
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// Maximum length for MinIO access key.
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// There is no max length enforcement for access keys
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accessKeyMaxLen = 20
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// Minimum length for MinIO secret key for both server
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secretKeyMinLen = 8
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// Maximum secret key length for MinIO, this
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// is used when autogenerating new credentials.
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// There is no max length enforcement for secret keys
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secretKeyMaxLen = 40
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// Alpha numeric table used for generating access keys.
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alphaNumericTable = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ"
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// Total length of the alpha numeric table.
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alphaNumericTableLen = byte(len(alphaNumericTable))
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reservedChars = "=,"
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)
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// Common errors generated for access and secret key validation.
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var (
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ErrInvalidAccessKeyLength = fmt.Errorf("access key length should be between %d and %d", accessKeyMinLen, accessKeyMaxLen)
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ErrInvalidSecretKeyLength = fmt.Errorf("secret key length should be between %d and %d", secretKeyMinLen, secretKeyMaxLen)
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ErrNoAccessKeyWithSecretKey = fmt.Errorf("access key must be specified if secret key is specified")
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ErrNoSecretKeyWithAccessKey = fmt.Errorf("secret key must be specified if access key is specified")
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ErrContainsReservedChars = fmt.Errorf("access key contains one of reserved characters '=' or ','")
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)
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// AnonymousCredentials simply points to empty credentials
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var AnonymousCredentials = Credentials{}
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// ContainsReservedChars - returns whether the input string contains reserved characters.
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func ContainsReservedChars(s string) bool {
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return strings.ContainsAny(s, reservedChars)
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}
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// IsAccessKeyValid - validate access key for right length.
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func IsAccessKeyValid(accessKey string) bool {
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return len(accessKey) >= accessKeyMinLen
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}
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// IsSecretKeyValid - validate secret key for right length.
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func IsSecretKeyValid(secretKey string) bool {
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return len(secretKey) >= secretKeyMinLen
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}
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// Default access and secret keys.
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const (
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DefaultAccessKey = "minioadmin"
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DefaultSecretKey = "minioadmin"
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)
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// Default access credentials
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var (
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DefaultCredentials = Credentials{
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AccessKey: DefaultAccessKey,
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SecretKey: DefaultSecretKey,
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}
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)
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// claim key found in credentials which are service accounts
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const iamPolicyClaimNameSA = "sa-policy"
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const (
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// AccountOn indicates that credentials are enabled
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AccountOn = "on"
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// AccountOff indicates that credentials are disabled
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AccountOff = "off"
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)
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// Credentials holds access and secret keys.
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type Credentials struct {
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AccessKey string `xml:"AccessKeyId" json:"accessKey,omitempty" yaml:"accessKey"`
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SecretKey string `xml:"SecretAccessKey" json:"secretKey,omitempty" yaml:"secretKey"`
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SessionToken string `xml:"SessionToken" json:"sessionToken,omitempty" yaml:"sessionToken"`
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Expiration time.Time `xml:"Expiration" json:"expiration,omitempty" yaml:"-"`
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Status string `xml:"-" json:"status,omitempty"`
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ParentUser string `xml:"-" json:"parentUser,omitempty"`
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Groups []string `xml:"-" json:"groups,omitempty"`
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Claims map[string]interface{} `xml:"-" json:"claims,omitempty"`
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Name string `xml:"-" json:"name,omitempty"`
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Description string `xml:"-" json:"description,omitempty"`
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// Deprecated: In favor of Description - when reading credentials from
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// storage the value of this field is placed in the Description field above
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// if the existing Description from storage is empty.
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Comment string `xml:"-" json:"comment,omitempty"`
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}
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func (cred Credentials) String() string {
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var s strings.Builder
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s.WriteString(cred.AccessKey)
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s.WriteString(":")
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s.WriteString(cred.SecretKey)
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if cred.SessionToken != "" {
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s.WriteString("\n")
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s.WriteString(cred.SessionToken)
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}
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if !cred.Expiration.IsZero() && !cred.Expiration.Equal(timeSentinel) {
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s.WriteString("\n")
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s.WriteString(cred.Expiration.String())
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}
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return s.String()
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}
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// IsExpired - returns whether Credential is expired or not.
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func (cred Credentials) IsExpired() bool {
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if cred.Expiration.IsZero() || cred.Expiration.Equal(timeSentinel) {
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return false
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}
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return cred.Expiration.Before(time.Now().UTC())
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}
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// IsTemp - returns whether credential is temporary or not.
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func (cred Credentials) IsTemp() bool {
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return cred.SessionToken != "" && !cred.Expiration.IsZero() && !cred.Expiration.Equal(timeSentinel)
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}
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// IsServiceAccount - returns whether credential is a service account or not
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func (cred Credentials) IsServiceAccount() bool {
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_, ok := cred.Claims[iamPolicyClaimNameSA]
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return cred.ParentUser != "" && ok
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}
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// IsImpliedPolicy - returns if the policy is implied via ParentUser or not.
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func (cred Credentials) IsImpliedPolicy() bool {
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if cred.IsServiceAccount() {
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return cred.Claims[iamPolicyClaimNameSA] == "inherited-policy"
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}
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return false
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}
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// IsValid - returns whether credential is valid or not.
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func (cred Credentials) IsValid() bool {
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// Verify credentials if its enabled or not set.
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if cred.Status == AccountOff {
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return false
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}
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return IsAccessKeyValid(cred.AccessKey) && IsSecretKeyValid(cred.SecretKey) && !cred.IsExpired()
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}
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// Equal - returns whether two credentials are equal or not.
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func (cred Credentials) Equal(ccred Credentials) bool {
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if !ccred.IsValid() {
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return false
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}
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return (cred.AccessKey == ccred.AccessKey && subtle.ConstantTimeCompare([]byte(cred.SecretKey), []byte(ccred.SecretKey)) == 1 &&
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subtle.ConstantTimeCompare([]byte(cred.SessionToken), []byte(ccred.SessionToken)) == 1)
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}
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var timeSentinel = time.Unix(0, 0).UTC()
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// ErrInvalidDuration invalid token expiry
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var ErrInvalidDuration = errors.New("invalid token expiry")
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// ExpToInt64 - convert input interface value to int64.
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func ExpToInt64(expI interface{}) (expAt int64, err error) {
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switch exp := expI.(type) {
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case string:
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expAt, err = strconv.ParseInt(exp, 10, 64)
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case float64:
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expAt, err = int64(exp), nil
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case int64:
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expAt, err = exp, nil
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case int:
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expAt, err = int64(exp), nil
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case uint64:
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expAt, err = int64(exp), nil
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case uint:
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expAt, err = int64(exp), nil
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case json.Number:
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expAt, err = exp.Int64()
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case time.Duration:
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expAt, err = time.Now().UTC().Add(exp).Unix(), nil
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case nil:
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expAt, err = 0, nil
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default:
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expAt, err = 0, ErrInvalidDuration
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}
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if expAt < 0 {
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return 0, ErrInvalidDuration
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}
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return expAt, err
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}
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// GenerateCredentials - creates randomly generated credentials of maximum
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// allowed length.
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func GenerateCredentials() (accessKey, secretKey string, err error) {
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accessKey, err = GenerateAccessKey(accessKeyMaxLen, rand.Reader)
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if err != nil {
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return "", "", err
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}
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secretKey, err = GenerateSecretKey(secretKeyMaxLen, rand.Reader)
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if err != nil {
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return "", "", err
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}
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return accessKey, secretKey, nil
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}
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// GenerateAccessKey returns a new access key generated randomly using
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// the given io.Reader. If random is nil, crypto/rand.Reader is used.
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// If length <= 0, the access key length is chosen automatically.
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//
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// GenerateAccessKey returns an error if length is too small for a valid
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// access key.
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func GenerateAccessKey(length int, random io.Reader) (string, error) {
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if random == nil {
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random = rand.Reader
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}
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if length <= 0 {
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length = accessKeyMaxLen
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}
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if length < accessKeyMinLen {
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return "", errors.New("auth: access key length is too short")
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}
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key := make([]byte, length)
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if _, err := io.ReadFull(random, key); err != nil {
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return "", err
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}
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for i := range key {
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key[i] = alphaNumericTable[key[i]%alphaNumericTableLen]
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}
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return string(key), nil
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}
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// GenerateSecretKey returns a new secret key generated randomly using
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// the given io.Reader. If random is nil, crypto/rand.Reader is used.
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// If length <= 0, the secret key length is chosen automatically.
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//
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// GenerateSecretKey returns an error if length is too small for a valid
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// secret key.
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func GenerateSecretKey(length int, random io.Reader) (string, error) {
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if random == nil {
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random = rand.Reader
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}
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if length <= 0 {
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length = secretKeyMaxLen
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}
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if length < secretKeyMinLen {
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return "", errors.New("auth: secret key length is too short")
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}
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key := make([]byte, base64.RawStdEncoding.DecodedLen(length))
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if _, err := io.ReadFull(random, key); err != nil {
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return "", err
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}
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s := base64.RawStdEncoding.EncodeToString(key)
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return strings.ReplaceAll(s, "/", "+"), nil
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}
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// GetNewCredentialsWithMetadata generates and returns new credential with expiry.
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func GetNewCredentialsWithMetadata(m map[string]interface{}, tokenSecret string) (Credentials, error) {
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accessKey, secretKey, err := GenerateCredentials()
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if err != nil {
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return Credentials{}, err
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}
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return CreateNewCredentialsWithMetadata(accessKey, secretKey, m, tokenSecret)
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}
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// CreateNewCredentialsWithMetadata - creates new credentials using the specified access & secret keys
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// and generate a session token if a secret token is provided.
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func CreateNewCredentialsWithMetadata(accessKey, secretKey string, m map[string]interface{}, tokenSecret string) (cred Credentials, err error) {
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if len(accessKey) < accessKeyMinLen || len(accessKey) > accessKeyMaxLen {
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return Credentials{}, ErrInvalidAccessKeyLength
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}
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if len(secretKey) < secretKeyMinLen || len(secretKey) > secretKeyMaxLen {
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return Credentials{}, ErrInvalidSecretKeyLength
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}
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cred.AccessKey = accessKey
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cred.SecretKey = secretKey
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cred.Status = AccountOn
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if tokenSecret == "" {
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cred.Expiration = timeSentinel
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return cred, nil
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}
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expiry, err := ExpToInt64(m["exp"])
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if err != nil {
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return cred, err
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}
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cred.Expiration = time.Unix(expiry, 0).UTC()
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cred.SessionToken, err = JWTSignWithAccessKey(cred.AccessKey, m, tokenSecret)
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if err != nil {
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return cred, err
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}
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return cred, nil
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}
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// JWTSignWithAccessKey - generates a session token.
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func JWTSignWithAccessKey(accessKey string, m map[string]interface{}, tokenSecret string) (string, error) {
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m["accessKey"] = accessKey
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jwt := jwtgo.NewWithClaims(jwtgo.SigningMethodHS512, jwtgo.MapClaims(m))
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return jwt.SignedString([]byte(tokenSecret))
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}
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// ExtractClaims extracts JWT claims from a security token using a secret key
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func ExtractClaims(token, secretKey string) (*jwt.MapClaims, error) {
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if token == "" || secretKey == "" {
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return nil, errors.New("invalid argument")
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}
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claims := jwt.NewMapClaims()
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stsTokenCallback := func(claims *jwt.MapClaims) ([]byte, error) {
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return []byte(secretKey), nil
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}
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if err := jwt.ParseWithClaims(token, claims, stsTokenCallback); err != nil {
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return nil, err
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}
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return claims, nil
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}
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// GetNewCredentials generates and returns new credential.
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func GetNewCredentials() (cred Credentials, err error) {
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return GetNewCredentialsWithMetadata(map[string]interface{}{}, "")
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}
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// CreateCredentials returns new credential with the given access key and secret key.
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// Error is returned if given access key or secret key are invalid length.
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func CreateCredentials(accessKey, secretKey string) (cred Credentials, err error) {
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if !IsAccessKeyValid(accessKey) {
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return cred, ErrInvalidAccessKeyLength
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}
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if !IsSecretKeyValid(secretKey) {
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return cred, ErrInvalidSecretKeyLength
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}
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cred.AccessKey = accessKey
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cred.SecretKey = secretKey
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cred.Expiration = timeSentinel
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cred.Status = AccountOn
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return cred, nil
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}
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