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			222 lines
		
	
	
		
			5.9 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
			
		
		
	
	
			222 lines
		
	
	
		
			5.9 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
let globalEncryptionCallback = null;
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function handleEncryption(requireEncryption, modal, callback) {
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    if (requireEncryption && globalEncryptionKey === null) {
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        globalEncryptionCallback = callback;
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        if (!modal) {
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            $("#noteDetailWrapper").hide();
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        }
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        $("#encryptionPasswordDialog").dialog({
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            modal: modal,
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            width: 400,
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            open: function() {
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                if (!modal) {
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                    // dialog steals focus for itself, which is not what we want for non-modal (viewing)
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                    getNodeByKey(globalCurrentNote.detail.note_id).setFocus();
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                }
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            }
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        });
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    }
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    else {
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        callback();
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    }
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}
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// currently not configurable
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const globalEncryptionKeyTimeToLive = 10 * 60 * 1000; // in milliseconds
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let globalEncryptionKey = null;
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let globalLastEncryptionOperationDate = null;
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function deriveEncryptionKey(password) {
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    const verificationPromise = computeScrypt(password, globalVerificationSalt, (key, resolve, reject) => {
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        $.ajax({
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            url: baseUrl + 'password/verify',
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            type: 'POST',
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            data: JSON.stringify({
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                password: sha256(key)
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            }),
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            contentType: "application/json",
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            success: function (result) {
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                if (result.valid) {
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                    resolve();
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                }
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                else {
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                    alert("Wrong password");
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                    reject();
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                }
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            }
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        });
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    });
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    const encryptionKeyPromise = computeScrypt(password, globalEncryptionSalt, (key, resolve, reject) => resolve(key));
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    return Promise.all([ verificationPromise, encryptionKeyPromise ]).then(results => results[1]);
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}
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function computeScrypt(password, salt, callback) {
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    const normalizedPassword = password.normalize('NFKC');
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    const passwordBuffer = new buffer.SlowBuffer(normalizedPassword);
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    const saltBuffer = new buffer.SlowBuffer(salt);
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    // this settings take ~500ms on my laptop
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    const N = 16384, r = 8, p = 1;
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    // 32 byte key - AES 256
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    const dkLen = 32;
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    const startedDate = new Date();
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    return new Promise((resolve, reject) => {
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        scrypt(passwordBuffer, saltBuffer, N, r, p, dkLen, function (error, progress, key) {
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            if (error) {
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                console.log("Error: " + error);
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                reject();
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            }
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            else if (key) {
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                console.log("Computation took " + (new Date().getTime() - startedDate.getTime()) + "ms");
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                callback(key, resolve, reject);
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            }
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            else {
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                // update UI with progress complete
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            }
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        });
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    });
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}
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$("#encryptionPasswordForm").submit(function() {
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    const password = $("#encryptionPassword").val();
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    $("#encryptionPassword").val("");
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    deriveEncryptionKey(password).then(key => {
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        $("#noteDetailWrapper").show();
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        $("#encryptionPasswordDialog").dialog("close");
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        globalEncryptionKey = key;
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        for (const noteId of globalAllNoteIds) {
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            const note = getNodeByKey(noteId);
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            if (note.data.encryption > 0) {
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                const title = decryptString(note.data.note_title);
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                note.setTitle(title);
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            }
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        }
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        if (globalEncryptionCallback !== null) {
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            globalEncryptionCallback();
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            globalEncryptionCallback = null;
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        }
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    });
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    return false;
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});
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setInterval(function() {
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    if (globalLastEncryptionOperationDate !== null && new Date().getTime() - globalLastEncryptionOperationDate.getTime() > globalEncryptionKeyTimeToLive) {
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        globalEncryptionKey = null;
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        if (globalCurrentNote.detail.encryption > 0) {
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            loadNote(globalCurrentNote.detail.note_id);
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            for (const noteId of globalAllNoteIds) {
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                const note = getNodeByKey(noteId);
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                if (note.data.encryption > 0) {
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                    note.setTitle("[encrypted]");
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                }
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            }
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        }
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    }
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}, 5000);
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function isEncryptionAvailable() {
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    return globalEncryptionKey !== null;
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}
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function getAes() {
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    globalLastEncryptionOperationDate = new Date();
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    return new aesjs.ModeOfOperation.ctr(globalEncryptionKey, new aesjs.Counter(5));
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}
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function encryptNoteIfNecessary(note) {
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    if (note.detail.encryption === 0) {
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        return note;
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    }
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    else {
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        return encryptNote(note);
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    }
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}
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function encryptString(str) {
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    const aes = getAes();
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    const bytes = aesjs.utils.utf8.toBytes(str);
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    const encryptedBytes = aes.encrypt(bytes);
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    return uint8ToBase64(encryptedBytes);
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}
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function decryptString(encryptedBase64) {
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    const aes = getAes();
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    const encryptedBytes = base64ToUint8Array(encryptedBase64);
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    const decryptedBytes = aes.decrypt(encryptedBytes);
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    return aesjs.utils.utf8.fromBytes(decryptedBytes);
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}
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function encryptNote(note) {
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    note.detail.note_title = encryptString(note.detail.note_title);
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    note.detail.note_text = encryptString(note.detail.note_text);
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    note.detail.encryption = 1;
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    return note;
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}
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function encryptNoteAndSendToServer() {
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    handleEncryption(true, true, () => {
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        const note = globalCurrentNote;
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        updateNoteFromInputs(note);
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        encryptNote(note);
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        saveNoteToServer(note);
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        setNoteBackgroundIfEncrypted(note);
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    });
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}
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function decryptNoteAndSendToServer() {
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    handleEncryption(true, true, () => {
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        const note = globalCurrentNote;
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        updateNoteFromInputs(note);
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        note.detail.encryption = 0;
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        saveNoteToServer(note);
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        setNoteBackgroundIfEncrypted(note);
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    });
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}
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function decryptNoteIfNecessary(note) {
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    if (note.detail.encryption > 0) {
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        return decryptNote(note);
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    }
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}
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function decryptNote(note) {
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    note.detail.note_title = decryptString(note.detail.note_title);
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    note.detail.note_text = decryptString(note.detail.note_text);
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} |