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138 lines
5.1 KiB
Plaintext
138 lines
5.1 KiB
Plaintext
/* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is Firefox Sync.
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*
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* The Initial Developer of the Original Code is
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* the Mozilla Foundation.
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* Portions created by the Initial Developer are Copyright (C) 2010
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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* Brian Smith <bsmith@mozilla.com>
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* Philipp von Weitershausen <philipp@weitershausen.de>
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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#include "nsISupports.idl"
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[scriptable, uuid(5ab02a98-5122-4b90-93cd-f259c4b42e3a)]
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interface nsISyncJPAKE : nsISupports
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{
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/**
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* Perform first round of the JPAKE exchange.
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*
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* @param aSignerID
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* String identifying the signer.
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* @param aGX1
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* Schnorr signature value g^x1, in hex representation.
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* @param aGV1
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* Schnorr signature value g^v1 (v1 is a random value), in hex
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* representation.
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* @param aR1
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* Schnorr signature value r1 = v1 - x1 * h, in hex representation.
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* @param aGX2
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* Schnorr signature value g^x2, in hex representation.
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* @param aGV2
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* Schnorr signature value g^v2 (v2 is a random value), in hex
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* representation.
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* @param aR2
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* Schnorr signature value r2 = v2 - x2 * h, in hex representation.
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*/
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void round1(in ACString aSignerID,
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out ACString aGX1,
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out ACString aGV1,
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out ACString aR1,
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out ACString aGX2,
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out ACString aGV2,
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out ACString aR2);
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/**
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* Perform second round of the JPAKE exchange.
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*
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* @param aPeerID
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* String identifying the peer.
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* @param aPIN
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* String containing the weak secret (PIN).
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* @param aGX3
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* Schnorr signature value g^x3, in hex representation.
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* @param aGV3
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* Schnorr signature value g^v3 (v3 is a random value), in hex
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* representation.
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* @param aR3
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* Schnorr signature value r3 = v3 - x3 * h, in hex representation.
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* @param aGX4
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* Schnorr signature value g^x4, in hex representation.
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* @param aGV4
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* Schnorr signature value g^v4 (v4 is a random value), in hex
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* representation.
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* @param aR4
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* Schnorr signature value r4 = v4 - x4 * h, in hex representation.
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* @param aA
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* Schnorr signature value A, in hex representation.
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* @param aGVA
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* Schnorr signature value g^va (va is a random value), in hex
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* representation.
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* @param aRA
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* Schnorr signature value ra = va - xa * h, in hex representation.
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*/
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void round2(in ACString aPeerID,
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in ACString aPIN,
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in ACString aGX3,
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in ACString aGV3,
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in ACString aR3,
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in ACString aGX4,
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in ACString aGV4,
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in ACString aR4,
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out ACString aA,
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out ACString aGVA,
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out ACString aRA);
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/**
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* Perform the final step of the JPAKE exchange. This will compute
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* the key and expand the key to two keys, an AES256 encryption key
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* and a 256 bit HMAC key. It returns a key confirmation value
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* (SHA256d of the key) and the encryption and HMAC keys.
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*
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* @param aB
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* Schnorr signature value B, in hex representation.
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* @param aGVB
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* Schnorr signature value g^vb (vb is a random value), in hex
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* representation.
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* @param aRB
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* Schnorr signature value rb = vb - xb * h, in hex representation.
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* @param aAES256Key
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* The AES 256 encryption key, in base64 representation.
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* @param aHMAC256Key
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* The 256 bit HMAC key, in base64 representation.
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*/
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void final(in ACString aB,
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in ACString aGVB,
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in ACString aRB,
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in ACString aHkdfInfo,
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out ACString aAES256Key,
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out ACString aHMAC256Key);
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};
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