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			526 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			JavaScript
		
	
			
		
		
	
	
			526 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			JavaScript
		
	
| /* global
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|   window,
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|   libsignal,
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|   textsecure,
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|   StringView,
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|   Multibase,
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|   TextEncoder,
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|   TextDecoder,
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|   crypto,
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|   dcodeIO,
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|   libloki
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| */
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| 
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| // eslint-disable-next-line func-names
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| (function() {
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|   window.libloki = window.libloki || {};
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| 
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|   class FallBackDecryptionError extends Error {}
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| 
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|   const IV_LENGTH = 16;
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|   const NONCE_LENGTH = 12;
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| 
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|   async function DHEncrypt(symmetricKey, plainText) {
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|     const iv = libsignal.crypto.getRandomBytes(IV_LENGTH);
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|     const ciphertext = await libsignal.crypto.encrypt(
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|       symmetricKey,
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|       plainText,
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|       iv
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|     );
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|     const ivAndCiphertext = new Uint8Array(
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|       iv.byteLength + ciphertext.byteLength
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|     );
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|     ivAndCiphertext.set(new Uint8Array(iv));
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|     ivAndCiphertext.set(new Uint8Array(ciphertext), iv.byteLength);
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|     return ivAndCiphertext;
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|   }
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| 
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|   async function deriveSymmetricKey(pubkey, seckey) {
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|     const ephemeralSecret = await libsignal.Curve.async.calculateAgreement(
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|       pubkey,
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|       seckey
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|     );
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| 
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|     const salt = window.Signal.Crypto.bytesFromString('LOKI');
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| 
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|     const key = await crypto.subtle.importKey(
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|       'raw',
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|       salt,
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|       { name: 'HMAC', hash: { name: 'SHA-256' } },
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|       false,
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|       ['sign']
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|     );
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|     const symmetricKey = await crypto.subtle.sign(
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|       { name: 'HMAC', hash: 'SHA-256' },
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|       key,
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|       ephemeralSecret
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|     );
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| 
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|     return symmetricKey;
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|   }
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| 
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|   async function encryptForPubkey(pubkeyX25519, payloadBytes) {
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|     const ephemeral = await libloki.crypto.generateEphemeralKeyPair();
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| 
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|     const snPubkey = StringView.hexToArrayBuffer(pubkeyX25519);
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| 
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|     const symmetricKey = await deriveSymmetricKey(snPubkey, ephemeral.privKey);
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| 
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|     const ciphertext = await EncryptGCM(symmetricKey, payloadBytes);
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| 
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|     return { ciphertext, symmetricKey, ephemeralKey: ephemeral.pubKey };
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|   }
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| 
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|   async function decryptForPubkey(seckeyX25519, ephemKey, ciphertext) {
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|     const symmetricKey = await deriveSymmetricKey(ephemKey, seckeyX25519);
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| 
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|     const plaintext = await DecryptGCM(symmetricKey, ciphertext);
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| 
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|     return plaintext;
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|   }
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| 
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|   async function EncryptGCM(symmetricKey, plaintext) {
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|     const nonce = crypto.getRandomValues(new Uint8Array(NONCE_LENGTH));
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| 
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|     const key = await crypto.subtle.importKey(
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|       'raw',
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|       symmetricKey,
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|       { name: 'AES-GCM' },
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|       false,
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|       ['encrypt']
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|     );
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| 
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|     const ciphertext = await crypto.subtle.encrypt(
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|       { name: 'AES-GCM', iv: nonce, tagLength: 128 },
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|       key,
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|       plaintext
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|     );
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| 
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|     const ivAndCiphertext = new Uint8Array(
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|       NONCE_LENGTH + ciphertext.byteLength
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|     );
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| 
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|     ivAndCiphertext.set(nonce);
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|     ivAndCiphertext.set(new Uint8Array(ciphertext), nonce.byteLength);
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| 
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|     return ivAndCiphertext;
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|   }
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| 
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|   async function DecryptGCM(symmetricKey, ivAndCiphertext) {
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|     const nonce = ivAndCiphertext.slice(0, NONCE_LENGTH);
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|     const ciphertext = ivAndCiphertext.slice(NONCE_LENGTH);
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| 
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|     const key = await crypto.subtle.importKey(
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|       'raw',
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|       symmetricKey,
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|       { name: 'AES-GCM' },
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|       false,
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|       ['decrypt']
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|     );
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| 
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|     return crypto.subtle.decrypt(
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|       { name: 'AES-GCM', iv: nonce },
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|       key,
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|       ciphertext
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|     );
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|   }
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| 
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|   async function DHDecrypt(symmetricKey, ivAndCiphertext) {
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|     const iv = ivAndCiphertext.slice(0, IV_LENGTH);
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|     const ciphertext = ivAndCiphertext.slice(IV_LENGTH);
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|     return libsignal.crypto.decrypt(symmetricKey, ciphertext, iv);
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|   }
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| 
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|   class FallBackSessionCipher {
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|     constructor(address) {
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|       this.identityKeyString = address.getName();
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|       this.pubKey = StringView.hexToArrayBuffer(address.getName());
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|     }
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| 
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|     // Should we use ephemeral key pairs here rather than long term keys on each side?
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|     async encrypt(plaintext) {
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|       const myKeyPair = await textsecure.storage.protocol.getIdentityKeyPair();
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|       if (!myKeyPair) {
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|         throw new Error('Failed to get keypair for encryption');
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|       }
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|       const myPrivateKey = myKeyPair.privKey;
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|       const symmetricKey = await libsignal.Curve.async.calculateAgreement(
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|         this.pubKey,
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|         myPrivateKey
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|       );
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|       const ivAndCiphertext = await DHEncrypt(symmetricKey, plaintext);
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|       const binaryIvAndCiphertext = dcodeIO.ByteBuffer.wrap(
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|         ivAndCiphertext
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|       ).toString('binary');
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|       return {
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|         type: textsecure.protobuf.Envelope.Type.SESSION_REQUEST,
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|         body: binaryIvAndCiphertext,
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|         registrationId: undefined,
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|       };
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|     }
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| 
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|     async decrypt(ivAndCiphertext) {
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|       const myKeyPair = await textsecure.storage.protocol.getIdentityKeyPair();
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|       if (!myKeyPair) {
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|         throw new Error('Failed to get keypair for decryption');
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|       }
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|       const myPrivateKey = myKeyPair.privKey;
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|       const symmetricKey = await libsignal.Curve.async.calculateAgreement(
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|         this.pubKey,
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|         myPrivateKey
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|       );
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|       try {
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|         return await DHDecrypt(symmetricKey, ivAndCiphertext);
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|       } catch (e) {
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|         throw new FallBackDecryptionError(
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|           `Could not decrypt message from ${this.identityKeyString} using FallBack encryption.`
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|         );
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|       }
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|     }
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|   }
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| 
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|   const base32zIndex = Multibase.names.indexOf('base32z');
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|   const base32zCode = Multibase.codes[base32zIndex];
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| 
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|   function decodeSnodeAddressToPubKey(snodeAddress) {
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|     const snodeAddressClean = snodeAddress
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|       .replace('.snode', '')
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|       .replace('https://', '')
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|       .replace('http://', '');
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|     return Multibase.decode(`${base32zCode}${snodeAddressClean}`);
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|   }
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| 
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|   async function generateEphemeralKeyPair() {
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|     const keys = await libsignal.Curve.async.generateKeyPair();
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|     // Signal protocol prepends with "0x05"
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|     keys.pubKey = keys.pubKey.slice(1);
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|     return keys;
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|   }
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| 
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|   async function generateSignatureForPairing(secondaryPubKey, type) {
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|     const pubKeyArrayBuffer = StringView.hexToArrayBuffer(secondaryPubKey);
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|     // Make sure the signature includes the pairing action (pairing or unpairing)
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|     const len = pubKeyArrayBuffer.byteLength;
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|     const data = new Uint8Array(len + 1);
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|     data.set(new Uint8Array(pubKeyArrayBuffer), 0);
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|     data[len] = type;
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| 
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|     const myKeyPair = await textsecure.storage.protocol.getIdentityKeyPair();
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|     if (!myKeyPair) {
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|       throw new Error('Failed to get keypair for pairing signature generation');
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|     }
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|     const signature = await libsignal.Curve.async.calculateSignature(
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|       myKeyPair.privKey,
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|       data.buffer
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|     );
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|     return signature;
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|   }
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| 
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|   async function verifyAuthorisation(authorisation) {
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|     const {
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|       primaryDevicePubKey,
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|       secondaryDevicePubKey,
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|       requestSignature,
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|       grantSignature,
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|     } = authorisation;
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|     const isGrant = !!grantSignature;
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|     if (!primaryDevicePubKey || !secondaryDevicePubKey) {
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|       window.log.warn(
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|         'Received a pairing request with missing pubkeys. Ignored.'
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|       );
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|       return false;
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|     } else if (!requestSignature) {
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|       window.log.warn(
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|         'Received a pairing request with missing request signature. Ignored.'
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|       );
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|       return false;
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|     }
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|     const verify = async (signature, signatureType) => {
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|       const encoding = typeof signature === 'string' ? 'base64' : undefined;
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|       await this.verifyPairingSignature(
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|         primaryDevicePubKey,
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|         secondaryDevicePubKey,
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|         dcodeIO.ByteBuffer.wrap(signature, encoding).toArrayBuffer(),
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|         signatureType
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|       );
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|     };
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|     try {
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|       await verify(requestSignature, PairingType.REQUEST);
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|     } catch (e) {
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|       window.log.warn(
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|         'Could not verify pairing request authorisation signature. Ignoring message.'
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|       );
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|       window.log.error(e);
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|       return false;
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|     }
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|     // can't have grant without requestSignature?
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|     if (isGrant) {
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|       try {
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|         await verify(grantSignature, PairingType.GRANT);
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|       } catch (e) {
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|         window.log.warn(
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|           'Could not verify pairing grant authorisation signature. Ignoring message.'
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|         );
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|         window.log.error(e);
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|         return false;
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|       }
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|     }
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|     return true;
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|   }
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| 
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|   // FIXME: rename to include the fact it's relative to YOUR device
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|   async function validateAuthorisation(authorisation) {
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|     const {
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|       primaryDevicePubKey,
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|       secondaryDevicePubKey,
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|       grantSignature,
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|     } = authorisation;
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|     const alreadySecondaryDevice = !!window.storage.get('isSecondaryDevice');
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|     const ourPubKey = textsecure.storage.user.getNumber();
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|     const isRequest = !grantSignature;
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|     if (isRequest && alreadySecondaryDevice) {
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|       window.log.warn(
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|         'Received a pairing request while being a secondary device. Ignored.'
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|       );
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|       return false;
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|     } else if (isRequest && primaryDevicePubKey !== ourPubKey) {
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|       window.log.warn(
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|         'Received a pairing request addressed to another pubkey. Ignored.'
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|       );
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|       return false;
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|     } else if (isRequest && secondaryDevicePubKey === ourPubKey) {
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|       window.log.warn('Received a pairing request from ourselves. Ignored.');
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|       return false;
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|     }
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|     return this.verifyAuthorisation(authorisation);
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|   }
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| 
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|   async function verifyPairingSignature(
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|     primaryDevicePubKey,
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|     secondaryPubKey,
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|     signature,
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|     type
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|   ) {
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|     const secondaryPubKeyArrayBuffer = StringView.hexToArrayBuffer(
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|       secondaryPubKey
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|     );
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|     const primaryDevicePubKeyArrayBuffer = StringView.hexToArrayBuffer(
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|       primaryDevicePubKey
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|     );
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|     const len = secondaryPubKeyArrayBuffer.byteLength;
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|     const data = new Uint8Array(len + 1);
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|     // For REQUEST type message, the secondary device signs the primary device pubkey
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|     // For GRANT type message, the primary device signs the secondary device pubkey
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|     let issuer;
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|     if (type === PairingType.GRANT) {
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|       data.set(new Uint8Array(secondaryPubKeyArrayBuffer));
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|       issuer = primaryDevicePubKeyArrayBuffer;
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|     } else if (type === PairingType.REQUEST) {
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|       data.set(new Uint8Array(primaryDevicePubKeyArrayBuffer));
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|       issuer = secondaryPubKeyArrayBuffer;
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|     }
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|     data[len] = type;
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|     // Throws for invalid signature
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|     await libsignal.Curve.async.verifySignature(issuer, data.buffer, signature);
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|   }
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|   async function decryptToken({ cipherText64, serverPubKey64 }) {
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|     const ivAndCiphertext = new Uint8Array(
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|       dcodeIO.ByteBuffer.fromBase64(cipherText64).toArrayBuffer()
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|     );
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| 
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|     const serverPubKey = new Uint8Array(
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|       dcodeIO.ByteBuffer.fromBase64(serverPubKey64).toArrayBuffer()
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|     );
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|     const keyPair = await textsecure.storage.protocol.getIdentityKeyPair();
 | |
|     if (!keyPair) {
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|       throw new Error('Failed to get keypair for token decryption');
 | |
|     }
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|     const { privKey } = keyPair;
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|     const symmetricKey = await libsignal.Curve.async.calculateAgreement(
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|       serverPubKey,
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|       privKey
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|     );
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| 
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|     const token = await DHDecrypt(symmetricKey, ivAndCiphertext);
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| 
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|     const tokenString = dcodeIO.ByteBuffer.wrap(token).toString('utf8');
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|     return tokenString;
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|   }
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| 
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|   const sha512 = data => crypto.subtle.digest('SHA-512', data);
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| 
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|   const PairingType = Object.freeze({
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|     REQUEST: 1,
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|     GRANT: 2,
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|   });
 | |
| 
 | |
|   /**
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|    * A wrapper around Signal's SessionCipher.
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|    * This handles specific session reset logic that we need.
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|    */
 | |
|   class LokiSessionCipher {
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|     constructor(storage, protocolAddress) {
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|       this.storage = storage;
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|       this.protocolAddress = protocolAddress;
 | |
|       this.sessionCipher = new libsignal.SessionCipher(
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|         storage,
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|         protocolAddress
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|       );
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|       this.TYPE = Object.freeze({
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|         MESSAGE: 1,
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|         PREKEY: 2,
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|       });
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|     }
 | |
| 
 | |
|     decryptWhisperMessage(buffer, encoding) {
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|       return this._decryptMessage(this.TYPE.MESSAGE, buffer, encoding);
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|     }
 | |
| 
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|     decryptPreKeyWhisperMessage(buffer, encoding) {
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|       return this._decryptMessage(this.TYPE.PREKEY, buffer, encoding);
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|     }
 | |
| 
 | |
|     async _decryptMessage(type, buffer, encoding) {
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|       // Capture active session
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|       const activeSessionBaseKey = await this._getCurrentSessionBaseKey();
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| 
 | |
|       if (type === this.TYPE.PREKEY && !activeSessionBaseKey) {
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|         const wrapped = dcodeIO.ByteBuffer.wrap(buffer);
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|         await window.libloki.storage.verifyFriendRequestAcceptPreKey(
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|           this.protocolAddress.getName(),
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|           wrapped
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|         );
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|       }
 | |
| 
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|       const decryptFunction =
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|         type === this.TYPE.PREKEY
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|           ? this.sessionCipher.decryptPreKeyWhisperMessage
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|           : this.sessionCipher.decryptWhisperMessage;
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|       const result = await decryptFunction(buffer, encoding);
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| 
 | |
|       // Handle session reset
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|       // This needs to be done synchronously so that the next time we decrypt a message,
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|       // we have the correct session
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|       try {
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|         await this._handleSessionResetIfNeeded(activeSessionBaseKey);
 | |
|       } catch (e) {
 | |
|         window.log.info('Failed to handle session reset: ', e);
 | |
|       }
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| 
 | |
|       return result;
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|     }
 | |
| 
 | |
|     async _handleSessionResetIfNeeded(previousSessionBaseKey) {
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|       if (!previousSessionBaseKey) {
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|         return;
 | |
|       }
 | |
| 
 | |
|       let conversation;
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|       try {
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|         conversation = await window.ConversationController.getOrCreateAndWait(
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|           this.protocolAddress.getName(),
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|           'private'
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|         );
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|       } catch (e) {
 | |
|         window.log.info(
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|           'Error getting conversation: ',
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|           this.protocolAddress.getName()
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|         );
 | |
|         return;
 | |
|       }
 | |
| 
 | |
|       if (conversation.isSessionResetOngoing()) {
 | |
|         const currentSessionBaseKey = await this._getCurrentSessionBaseKey();
 | |
|         if (currentSessionBaseKey !== previousSessionBaseKey) {
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|           if (conversation.isSessionResetReceived()) {
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|             // The other user used an old session to contact us; wait for them to switch to a new one.
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|             await this._restoreSession(previousSessionBaseKey);
 | |
|           } else {
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|             // Our session reset was successful; we initiated one and got a new session back from the other user.
 | |
|             await this._deleteAllSessionExcept(currentSessionBaseKey);
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|             await conversation.onNewSessionAdopted();
 | |
|           }
 | |
|         } else if (conversation.isSessionResetReceived()) {
 | |
|           // Our session reset was successful; we received a message with the same session from the other user.
 | |
|           await this._deleteAllSessionExcept(previousSessionBaseKey);
 | |
|           await conversation.onNewSessionAdopted();
 | |
|         }
 | |
|       }
 | |
|     }
 | |
| 
 | |
|     async _getCurrentSessionBaseKey() {
 | |
|       const record = await this.sessionCipher.getRecord(
 | |
|         this.protocolAddress.toString()
 | |
|       );
 | |
|       if (!record) {
 | |
|         return null;
 | |
|       }
 | |
|       const openSession = record.getOpenSession();
 | |
|       if (!openSession) {
 | |
|         return null;
 | |
|       }
 | |
|       const { baseKey } = openSession.indexInfo;
 | |
|       return baseKey;
 | |
|     }
 | |
| 
 | |
|     async _restoreSession(sessionBaseKey) {
 | |
|       const record = await this.sessionCipher.getRecord(
 | |
|         this.protocolAddress.toString()
 | |
|       );
 | |
|       if (!record) {
 | |
|         return;
 | |
|       }
 | |
|       record.archiveCurrentState();
 | |
| 
 | |
|       const sessionToRestore = record.sessions[sessionBaseKey];
 | |
|       if (!sessionToRestore) {
 | |
|         throw new Error(`Cannot find session with base key ${sessionBaseKey}`);
 | |
|       }
 | |
| 
 | |
|       record.promoteState(sessionToRestore);
 | |
|       record.updateSessionState(sessionToRestore);
 | |
|       await this.storage.storeSession(
 | |
|         this.protocolAddress.toString(),
 | |
|         record.serialize()
 | |
|       );
 | |
|     }
 | |
| 
 | |
|     async _deleteAllSessionExcept(sessionBaseKey) {
 | |
|       const record = await this.sessionCipher.getRecord(
 | |
|         this.protocolAddress.toString()
 | |
|       );
 | |
|       if (!record) {
 | |
|         return;
 | |
|       }
 | |
|       const sessionToKeep = record.sessions[sessionBaseKey];
 | |
|       record.sessions = {};
 | |
|       record.updateSessionState(sessionToKeep);
 | |
|       await this.storage.storeSession(
 | |
|         this.protocolAddress.toString(),
 | |
|         record.serialize()
 | |
|       );
 | |
|     }
 | |
|   }
 | |
| 
 | |
|   window.libloki.crypto = {
 | |
|     DHEncrypt,
 | |
|     EncryptGCM, // AES-GCM
 | |
|     DHDecrypt,
 | |
|     DecryptGCM, // AES-GCM
 | |
|     FallBackSessionCipher,
 | |
|     FallBackDecryptionError,
 | |
|     decryptToken,
 | |
|     generateSignatureForPairing,
 | |
|     verifyPairingSignature,
 | |
|     verifyAuthorisation,
 | |
|     validateAuthorisation,
 | |
|     PairingType,
 | |
|     LokiSessionCipher,
 | |
|     generateEphemeralKeyPair,
 | |
|     encryptForPubkey,
 | |
|     decryptForPubkey,
 | |
|     _decodeSnodeAddressToPubKey: decodeSnodeAddressToPubKey,
 | |
|     sha512,
 | |
|   };
 | |
| })();
 |