forked from TrueCloudLab/distribution
7caf058a65
v1.3.0 of azidentity introduces support to workload identity. Signed-off-by: Flavian Missi <fmissi@redhat.com>
143 lines
5.8 KiB
Go
143 lines
5.8 KiB
Go
package jwt
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import (
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"encoding/base64"
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"encoding/json"
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"strings"
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"time"
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)
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// DecodePaddingAllowed will switch the codec used for decoding JWTs respectively. Note that the JWS RFC7515
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// states that the tokens will utilize a Base64url encoding with no padding. Unfortunately, some implementations
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// of JWT are producing non-standard tokens, and thus require support for decoding. Note that this is a global
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// variable, and updating it will change the behavior on a package level, and is also NOT go-routine safe.
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// To use the non-recommended decoding, set this boolean to `true` prior to using this package.
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var DecodePaddingAllowed bool
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// DecodeStrict will switch the codec used for decoding JWTs into strict mode.
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// In this mode, the decoder requires that trailing padding bits are zero, as described in RFC 4648 section 3.5.
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// Note that this is a global variable, and updating it will change the behavior on a package level, and is also NOT go-routine safe.
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// To use strict decoding, set this boolean to `true` prior to using this package.
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var DecodeStrict bool
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// TimeFunc provides the current time when parsing token to validate "exp" claim (expiration time).
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// You can override it to use another time value. This is useful for testing or if your
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// server uses a different time zone than your tokens.
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var TimeFunc = time.Now
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// Keyfunc will be used by the Parse methods as a callback function to supply
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// the key for verification. The function receives the parsed,
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// but unverified Token. This allows you to use properties in the
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// Header of the token (such as `kid`) to identify which key to use.
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type Keyfunc func(*Token) (interface{}, error)
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// Token represents a JWT Token. Different fields will be used depending on whether you're
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// creating or parsing/verifying a token.
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type Token struct {
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Raw string // The raw token. Populated when you Parse a token
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Method SigningMethod // The signing method used or to be used
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Header map[string]interface{} // The first segment of the token
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Claims Claims // The second segment of the token
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Signature string // The third segment of the token. Populated when you Parse a token
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Valid bool // Is the token valid? Populated when you Parse/Verify a token
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}
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// New creates a new Token with the specified signing method and an empty map of claims.
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func New(method SigningMethod) *Token {
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return NewWithClaims(method, MapClaims{})
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}
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// NewWithClaims creates a new Token with the specified signing method and claims.
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func NewWithClaims(method SigningMethod, claims Claims) *Token {
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return &Token{
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Header: map[string]interface{}{
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"typ": "JWT",
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"alg": method.Alg(),
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},
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Claims: claims,
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Method: method,
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}
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}
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// SignedString creates and returns a complete, signed JWT.
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// The token is signed using the SigningMethod specified in the token.
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func (t *Token) SignedString(key interface{}) (string, error) {
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var sig, sstr string
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var err error
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if sstr, err = t.SigningString(); err != nil {
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return "", err
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}
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if sig, err = t.Method.Sign(sstr, key); err != nil {
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return "", err
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}
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return strings.Join([]string{sstr, sig}, "."), nil
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}
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// SigningString generates the signing string. This is the
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// most expensive part of the whole deal. Unless you
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// need this for something special, just go straight for
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// the SignedString.
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func (t *Token) SigningString() (string, error) {
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var err error
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var jsonValue []byte
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if jsonValue, err = json.Marshal(t.Header); err != nil {
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return "", err
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}
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header := EncodeSegment(jsonValue)
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if jsonValue, err = json.Marshal(t.Claims); err != nil {
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return "", err
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}
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claim := EncodeSegment(jsonValue)
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return strings.Join([]string{header, claim}, "."), nil
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}
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// Parse parses, validates, verifies the signature and returns the parsed token.
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// keyFunc will receive the parsed token and should return the cryptographic key
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// for verifying the signature.
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// The caller is strongly encouraged to set the WithValidMethods option to
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// validate the 'alg' claim in the token matches the expected algorithm.
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// For more details about the importance of validating the 'alg' claim,
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// see https://auth0.com/blog/critical-vulnerabilities-in-json-web-token-libraries/
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func Parse(tokenString string, keyFunc Keyfunc, options ...ParserOption) (*Token, error) {
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return NewParser(options...).Parse(tokenString, keyFunc)
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}
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// ParseWithClaims is a shortcut for NewParser().ParseWithClaims().
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//
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// Note: If you provide a custom claim implementation that embeds one of the standard claims (such as RegisteredClaims),
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// make sure that a) you either embed a non-pointer version of the claims or b) if you are using a pointer, allocate the
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// proper memory for it before passing in the overall claims, otherwise you might run into a panic.
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func ParseWithClaims(tokenString string, claims Claims, keyFunc Keyfunc, options ...ParserOption) (*Token, error) {
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return NewParser(options...).ParseWithClaims(tokenString, claims, keyFunc)
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}
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// EncodeSegment encodes a JWT specific base64url encoding with padding stripped
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//
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// Deprecated: In a future release, we will demote this function to a non-exported function, since it
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// should only be used internally
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func EncodeSegment(seg []byte) string {
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return base64.RawURLEncoding.EncodeToString(seg)
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}
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// DecodeSegment decodes a JWT specific base64url encoding with padding stripped
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//
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// Deprecated: In a future release, we will demote this function to a non-exported function, since it
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// should only be used internally
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func DecodeSegment(seg string) ([]byte, error) {
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encoding := base64.RawURLEncoding
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if DecodePaddingAllowed {
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if l := len(seg) % 4; l > 0 {
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seg += strings.Repeat("=", 4-l)
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}
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encoding = base64.URLEncoding
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}
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if DecodeStrict {
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encoding = encoding.Strict()
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}
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return encoding.DecodeString(seg)
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}
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