Merge branch 'remember-device' of OAuth3/oauth3.js into v1.2
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						commit
						f79fa608d7
					
				@ -8,6 +8,9 @@
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    OAUTH3.crypto.core = require('./oauth3.node.crypto');
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  } catch (error) {
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    OAUTH3.crypto.core = {};
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    OAUTH3.crypto.core.ready = false;
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    var finishBeforeReady = [];
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    var deferedCalls = [];
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    // We don't currently have a fallback method for this function, so we assign
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    // it directly to the core object instead of the webCrypto object.
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@ -17,10 +20,31 @@
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    };
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    var webCrypto = {};
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    var deferCryptoCall = function(name) {
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      return function() {
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        var args = arguments;
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        return new OAUTH3.PromiseA(function(resolve, reject) {
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          deferedCalls.push(function(){
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            try {
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              webCrypto[name].apply(webCrypto, args)
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                .then(function(result){
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                  resolve(result);
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                });
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            } catch(e) {
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              reject(e);
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            }
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          });
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        });
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      };
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    };
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    OAUTH3.crypto.core.sha256 = deferCryptoCall("sha256");
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    webCrypto.sha256 = function (buf) {
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      return OAUTH3._browser.window.crypto.subtle.digest({name: 'SHA-256'}, buf);
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    };
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    OAUTH3.crypto.core.pbkdf2 = deferCryptoCall("pbkdf2");
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    webCrypto.pbkdf2 = function (password, salt) {
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      return OAUTH3._browser.window.crypto.subtle.importKey('raw', OAUTH3._binStr.binStrToBuffer(password), {name: 'PBKDF2'}, false, ['deriveKey'])
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        .then(function (key) {
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@ -32,12 +56,15 @@
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        });
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    };
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    OAUTH3.crypto.core.encrypt = deferCryptoCall("encrypt");
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    webCrypto.encrypt = function (rawKey, iv, data) {
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      return OAUTH3._browser.window.crypto.subtle.importKey('raw', rawKey, {name: 'AES-GCM'}, false, ['encrypt'])
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        .then(function (key) {
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          return OAUTH3._browser.window.crypto.subtle.encrypt({name: 'AES-GCM', iv: iv}, key, data);
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        });
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    };
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    OAUTH3.crypto.core.decrypt = deferCryptoCall("decrypt");
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    webCrypto.decrypt = function (rawKey, iv, data) {
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      return OAUTH3._browser.window.crypto.subtle.importKey('raw', rawKey, {name: 'AES-GCM'}, false, ['decrypt'])
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        .then(function (key) {
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@ -45,6 +72,7 @@
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        });
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    };
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    OAUTH3.crypto.core.genEcdsaKeyPair = deferCryptoCall("genEcdsaKeyPair");
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    webCrypto.genEcdsaKeyPair = function () {
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      return OAUTH3._browser.window.crypto.subtle.generateKey({name: 'ECDSA', namedCurve: 'P-256'}, true, ['sign', 'verify'])
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        .then(function (keyPair) {
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@ -57,6 +85,7 @@
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        });
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    };
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    OAUTH3.crypto.core.sign = deferCryptoCall("sign");
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    webCrypto.sign = function (jwk, msg) {
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      return OAUTH3._browser.window.crypto.subtle.importKey('jwk', jwk, {name: 'ECDSA', namedCurve: jwk.crv}, false, ['sign'])
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        .then(function (key) {
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@ -66,6 +95,8 @@
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          return new Uint8Array(sig);
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        });
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    };
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    OAUTH3.crypto.core.verify = deferCryptoCall("verify");
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    webCrypto.verify = function (jwk, msg, signature) {
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      // If the JWK has properties that should only exist on the private key or is missing
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      // "verify" in the key_ops, importing in as a public key won't work.
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@ -103,18 +134,19 @@
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        return prom;
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      };
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      function checkException(name, func) {
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        OAUTH3.PromiseA.resolve().then(func)
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        return OAUTH3.PromiseA.resolve().then(func)
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          .then(function () {
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            OAUTH3.crypto.core[name] = webCrypto[name];
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          }, function (err) {
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            console.warn('error with WebCrypto', name, '- using fallback', err);
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            loadFallback().then(function () {
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            return loadFallback().then(function () {
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              OAUTH3.crypto.core[name] = OAUTH3_crypto_fallback[name];
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            });
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          });
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      }
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      function checkResult(name, expected, func) {
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        checkException(name, function () {
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        finishBeforeReady.push(checkException(name, function () {
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          return func()
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            .then(function (result) {
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              if (typeof expected === typeof result) {
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@ -127,7 +159,7 @@
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                throw new Error("result ("+result+") doesn't match expectation ("+expected+")");
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              }
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            });
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        });
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        }));
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      }
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      var zeroBuf = new Uint8Array([0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0]);
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@ -159,12 +191,20 @@
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        return webCrypto.verify(jwk, dataBuf, sig);
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      });
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      // The results of these functions are less predictable, so we can't check their return value.
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      checkException('genEcdsaKeyPair', function () {
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      finishBeforeReady.push(checkException('genEcdsaKeyPair', function () {
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        return webCrypto.genEcdsaKeyPair();
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      });
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      checkException('sign', function () {
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      }));
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      finishBeforeReady.push(checkException('sign', function () {
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        return webCrypto.sign(jwk, dataBuf);
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      });
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      }));
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      OAUTH3.PromiseA.all(finishBeforeReady)
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        .then(function(results) {
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          OAUTH3.crypto.core.ready = true;
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          deferedCalls.forEach(function(request) {
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            request();
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          });
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        });
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    }
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    checkWebCrypto();
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  }
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