mirror of
https://github.com/zadam/trilium.git
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375 lines
No EOL
9.3 KiB
JavaScript
375 lines
No EOL
9.3 KiB
JavaScript
let globalEncryptionCallback = null;
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function handleEncryption(requireEncryption, modal, callback) {
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if (requireEncryption && globalDataKey === 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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let globalDataKey = null;
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let globalLastEncryptionOperationDate = null;
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function getDataKey(password) {
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return computeScrypt(password, globalEncryptionSalt, (key, resolve, reject) => {
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const dataKeyAes = getDataKeyAes(key);
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const decryptedDataKey = decrypt(dataKeyAes, globalEncryptedDataKey);
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if (decryptedDataKey === false) {
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reject("Wrong password.");
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}
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resolve(decryptedDataKey);
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});
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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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getDataKey(password).then(key => {
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$("#noteDetailWrapper").show();
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$("#encryptionPasswordDialog").dialog("close");
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globalDataKey = 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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.catch(reason => {
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console.log(reason);
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alert(reason);
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});
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return false;
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});
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function resetEncryptionSession() {
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globalDataKey = 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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setInterval(function() {
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if (globalLastEncryptionOperationDate !== null && new Date().getTime() - globalLastEncryptionOperationDate.getTime() > globalEncryptionSessionTimeout * 1000) {
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resetEncryptionSession();
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}
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}, 5000);
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function isEncryptionAvailable() {
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return globalDataKey !== null;
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}
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function getDataAes() {
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globalLastEncryptionOperationDate = new Date();
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return new aesjs.ModeOfOperation.ctr(globalDataKey, new aesjs.Counter(5));
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}
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function getDataKeyAes(key) {
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return new aesjs.ModeOfOperation.ctr(key, 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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return encrypt(getDataAes(), str);
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}
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function encrypt(aes, str) {
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const payload = aesjs.utils.utf8.toBytes(str);
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const digest = sha256Array(payload).slice(0, 4);
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const digestWithPayload = concat(digest, payload);
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const encryptedBytes = aes.encrypt(digestWithPayload);
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return uint8ToBase64(encryptedBytes);
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}
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function decryptString(encryptedBase64) {
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const decryptedBytes = decrypt(getDataAes(), encryptedBase64);
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return aesjs.utils.utf8.fromBytes(decryptedBytes);
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}
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function decrypt(aes, encryptedBase64) {
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const encryptedBytes = base64ToUint8Array(encryptedBase64);
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const decryptedBytes = aes.decrypt(encryptedBytes);
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const digest = decryptedBytes.slice(0, 4);
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const payload = decryptedBytes.slice(4);
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const hashArray = sha256Array(payload);
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const computedDigest = hashArray.slice(0, 4);
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if (!arraysIdentical(digest, computedDigest)) {
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return false;
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}
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return payload;
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}
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function concat(a, b) {
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const result = [];
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for (let key in a) {
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result.push(a[key]);
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}
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for (let key in b) {
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result.push(b[key]);
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}
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return result;
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}
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function sha256Array(content) {
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const hash = sha256.create();
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hash.update(content);
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return hash.array();
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}
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function arraysIdentical(a, b) {
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let i = a.length;
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if (i !== b.length) return false;
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while (i--) {
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if (a[i] !== b[i]) return false;
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}
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return true;
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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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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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}
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function encryptSubTree(noteId) {
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handleEncryption(true, true, () => {
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updateSubTreeRecursively(noteId, note => {
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if (note.detail.encryption === null || note.detail.encryption === 0) {
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encryptNote(note);
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note.detail.encryption = 1;
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return true;
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}
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else {
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return false;
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}
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},
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note => {
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if (note.detail.note_id === globalCurrentNote.detail.note_id) {
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loadNote(note.detail.note_id);
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}
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else {
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setTreeBasedOnEncryption(note);
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}
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});
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alert("Encryption finished.");
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});
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}
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function decryptSubTree(noteId) {
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handleEncryption(true, true, () => {
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updateSubTreeRecursively(noteId, note => {
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if (note.detail.encryption === 1) {
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decryptNote(note);
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note.detail.encryption = 0;
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return true;
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}
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else {
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return false;
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}
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},
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note => {
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if (note.detail.note_id === globalCurrentNote.detail.note_id) {
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loadNote(note.detail.note_id);
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}
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else {
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setTreeBasedOnEncryption(note);
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}
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});
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alert("Decryption finished.");
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});
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}
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function updateSubTreeRecursively(noteId, updateCallback, successCallback) {
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updateNoteSynchronously(noteId, updateCallback, successCallback);
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const node = getNodeByKey(noteId);
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if (!node || !node.getChildren()) {
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return;
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}
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for (const child of node.getChildren()) {
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updateSubTreeRecursively(child.key, updateCallback, successCallback);
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}
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}
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function updateNoteSynchronously(noteId, updateCallback, successCallback) {
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$.ajax({
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url: baseUrl + 'notes/' + noteId,
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type: 'GET',
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async: false,
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success: function (note) {
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const needSave = updateCallback(note);
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if (!needSave) {
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return;
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}
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for (const link of note.links) {
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delete link.type;
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}
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$.ajax({
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url: baseUrl + 'notes/' + noteId,
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type: 'PUT',
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data: JSON.stringify(note),
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contentType: "application/json",
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async: false,
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success: function () {
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if (successCallback) {
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successCallback(note);
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}
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},
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error: function () {
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console.log("Updating " + noteId + " failed.");
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}
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});
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},
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error: function () {
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console.log("Reading " + noteId + " failed.");
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}
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});
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} |