2020-11-23 10:00:11 +00:00
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module hunt.jwt.JwtToken;
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import hunt.jwt.Base64Codec;
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import hunt.jwt.Claims;
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import hunt.jwt.Component;
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import hunt.jwt.Exceptions;
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import hunt.jwt.Header;
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import hunt.jwt.Jwt;
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import hunt.jwt.JwtAlgorithm;
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import hunt.jwt.JwtOpenSSL;
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import std.conv;
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import std.datetime;
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import std.json;
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import std.string;
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2021-03-04 12:38:00 +00:00
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import hunt.logging;
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2020-11-23 10:00:11 +00:00
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/**
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* represents a token
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*/
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class JwtToken {
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private {
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Claims _claims;
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Header _header;
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this(Claims claims, Header header) {
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this._claims = claims;
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this._header = header;
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}
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@property string data() {
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return this.header.base64 ~ "." ~ this.claims.base64;
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}
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}
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this(in JwtAlgorithm alg, in string typ = "JWT") {
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this._claims = new Claims();
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this._header = new Header(alg, typ);
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}
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@property Claims claims() {
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return this._claims;
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}
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@property Header header() {
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return this._header;
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}
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/**
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* used to get the signature of the token
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* Parmas:
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* secret = the secret key used to sign the token
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* Returns: the signature of the token
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*/
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string signature(string secret) {
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return Base64URLNoPadding.encode(cast(ubyte[])sign(this.data, secret, this.header.alg));
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}
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/**
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* encodes the token
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* Params:
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* secret = the secret key used to sign the token
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*Returns: base64 representation of the token including signature
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*/
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string encode(string secret) {
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if ((this.claims.exp != ulong.init && this.claims.iat != ulong.init) && this.claims.exp < this.claims.iat) {
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throw new ExpiredException("Token has already expired");
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}
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if ((this.claims.exp != ulong.init && this.claims.nbf != ulong.init) && this.claims.exp < this.claims.nbf) {
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throw new ExpiresBeforeValidException("Token will expire before it becomes valid");
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}
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string token = this.data ~ "." ~ this.signature(secret);
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version(HUNT_AUTH_DEBUG) {
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2021-03-04 12:38:00 +00:00
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import std.stdio;
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writeln("secret: %s, token: %s", secret, token);
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2020-11-23 10:00:11 +00:00
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}
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return token;
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}
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///
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unittest {
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JwtToken token = new JwtToken(JwtAlgorithm.HS512);
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long now = Clock.currTime.toUnixTime();
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string secret = "super_secret";
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token.claims.exp = now - 3600;
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assertThrown!ExpiredException(token.encode(secret));
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token.claims.exp = now + 3600;
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token.claims.nbf = now + 7200;
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assertThrown!ExpiresBeforeValidException(token.encode(secret));
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}
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/**
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* overload of the encode(string secret) function to simplify encoding of token without algorithm none
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* Returns: base64 representation of the token
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*/
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string encode() {
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assert(this.header.alg == JwtAlgorithm.NONE);
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return this.encode("");
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}
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static JwtToken decode(string token, string delegate(ref JSONValue jose) lazyKey) {
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import std.algorithm : count;
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import std.conv : to;
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import std.uni : toUpper;
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2021-03-04 12:38:00 +00:00
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version(HUNT_JWT_DEBUG) {
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2020-11-23 10:00:11 +00:00
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tracef("token: %s", token);
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}
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if(count(token, ".") != 2)
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throw new VerifyException("Token is incorrect.");
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string[] tokenParts = split(token, ".");
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JSONValue header;
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try {
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2021-03-04 12:38:00 +00:00
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header = parseJSON(cast(string)urlsafeB64Decode(tokenParts[0]));
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2020-11-23 10:00:11 +00:00
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} catch(Exception e) {
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throw new VerifyException("Header is incorrect.");
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}
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JwtAlgorithm alg;
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try {
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// toUpper for none
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alg = to!(JwtAlgorithm)(toUpper(header["alg"].str()));
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} catch(Exception e) {
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throw new VerifyException("Algorithm is incorrect.");
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}
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if (auto typ = ("typ" in header)) {
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string typ_str = typ.str();
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if(typ_str && typ_str != "JWT")
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throw new VerifyException("Type is incorrect.");
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}
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const key = lazyKey(header);
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2021-03-04 12:38:00 +00:00
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if(!key.empty() && !verifySignature(tokenParts[0]~"."~tokenParts[1], tokenParts[2], key, alg))
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2020-11-23 10:00:11 +00:00
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throw new VerifyException("Signature is incorrect.");
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JSONValue payload;
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try {
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2021-03-04 12:38:00 +00:00
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payload = parseJSON(cast(string)urlsafeB64Decode(tokenParts[1]));
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2020-11-23 10:00:11 +00:00
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} catch(JSONException e) {
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// Code coverage has to miss this line because the signature test above throws before this does
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throw new VerifyException("Payload JSON is incorrect.");
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}
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Header h = new Header(header);
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Claims claims = new Claims(payload);
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return new JwtToken(claims, h);
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}
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static JwtToken decode(string encodedToken, string key="") {
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return decode(encodedToken, (ref _) => key);
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}
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static bool verify(string token, string key) {
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import std.algorithm : count;
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import std.conv : to;
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import std.uni : toUpper;
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if(count(token, ".") != 2)
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throw new VerifyException("Token is incorrect.");
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string[] tokenParts = split(token, ".");
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2021-03-04 12:38:00 +00:00
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string decHeader = cast(string)urlsafeB64Decode(tokenParts[0]);
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2020-11-23 10:00:11 +00:00
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JSONValue header = parseJSON(decHeader);
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JwtAlgorithm alg;
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try {
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// toUpper for none
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alg = to!(JwtAlgorithm)(toUpper(header["alg"].str()));
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} catch(Exception e) {
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throw new VerifyException("Algorithm is incorrect.");
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}
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if (auto typ = ("typ" in header)) {
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string typ_str = typ.str();
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if(typ_str && typ_str != "JWT")
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throw new VerifyException("Type is incorrect.");
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}
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2021-03-04 12:38:00 +00:00
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return verifySignature(tokenParts[0]~"."~tokenParts[1], tokenParts[2], key, alg);
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2020-11-23 10:00:11 +00:00
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}
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}
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alias verify = JwtToken.verify;
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alias decode = JwtToken.decode;
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deprecated("Using JwtToken instead.")
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alias Token = JwtToken;
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