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465 lines
14 KiB
JavaScript
465 lines
14 KiB
JavaScript
/* jshint esversion: 6 */
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/* global process */
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const HK = require("../hk-util");
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const Store = require("../storage/file");
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const BlobStore = require("../storage/blob");
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const Util = require("../common-util");
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const nThen = require("nthen");
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const Meta = require("../metadata");
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const Pins = require("../pins");
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const Core = require("../commands/core");
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const Saferphore = require("saferphore");
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const Logger = require("../log");
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const Tasks = require("../storage/tasks");
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const Env = {
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Log: {},
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};
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// support the usual log API but pass it to the main process
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Logger.levels.forEach(function (level) {
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Env.Log[level] = function (label, info) {
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process.send({
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log: level,
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label: label,
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info: info,
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});
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};
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});
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var ready = false;
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var store;
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var pinStore;
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var blobStore;
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const init = function (config, _cb) {
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const cb = Util.once(Util.mkAsync(_cb));
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if (!config) {
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return void cb('E_INVALID_CONFIG');
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}
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nThen(function (w) {
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Store.create(config, w(function (err, _store) {
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if (err) {
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w.abort();
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return void cb(err);
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}
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store = _store;
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}));
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Store.create({
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filePath: config.pinPath,
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}, w(function (err, _pinStore) {
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if (err) {
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w.abort();
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return void cb(err);
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}
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pinStore = _pinStore;
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}));
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BlobStore.create({
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blobPath: config.blobPath,
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blobStagingPath: config.blobStagingPath,
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archivePath: config.archivePath,
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getSession: function () {},
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}, w(function (err, blob) {
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if (err) {
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w.abort();
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return void cb(err);
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}
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blobStore = blob;
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}));
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}).nThen(function (w) {
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Tasks.create({
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log: Env.Log,
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taskPath: config.taskPath,
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store: store,
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}, w(function (err, tasks) {
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if (err) {
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w.abort();
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return void cb(err);
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}
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Env.tasks = tasks;
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}));
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}).nThen(function () {
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cb();
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});
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};
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/* computeIndex
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can call back with an error or a computed index which includes:
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* cpIndex:
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* array including any checkpoints pushed within the last 100 messages
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* processed by 'sliceCpIndex(cpIndex, line)'
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* offsetByHash:
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* a map containing message offsets by their hash
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* this is for every message in history, so it could be very large...
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* except we remove offsets from the map if they occur before the oldest relevant checkpoint
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* size: in bytes
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* metadata:
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* validationKey
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* expiration time
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* owners
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* ??? (anything else we might add in the future)
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* line
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* the number of messages in history
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* including the initial metadata line, if it exists
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*/
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const computeIndex = function (data, cb) {
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if (!data || !data.channel) {
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return void cb('E_NO_CHANNEL');
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}
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const channelName = data.channel;
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const cpIndex = [];
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let messageBuf = [];
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let i = 0;
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const CB = Util.once(cb);
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const offsetByHash = {};
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let size = 0;
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nThen(function (w) {
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// iterate over all messages in the channel log
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// old channels can contain metadata as the first message of the log
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// skip over metadata as that is handled elsewhere
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// otherwise index important messages in the log
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store.readMessagesBin(channelName, 0, (msgObj, readMore) => {
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let msg;
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// keep an eye out for the metadata line if you haven't already seen it
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// but only check for metadata on the first line
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if (!i && msgObj.buff.indexOf('{') === 0) {
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i++; // always increment the message counter
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msg = HK.tryParse(Env, msgObj.buff.toString('utf8'));
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if (typeof msg === "undefined") { return readMore(); }
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// validate that the current line really is metadata before storing it as such
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// skip this, as you already have metadata...
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if (HK.isMetadataMessage(msg)) { return readMore(); }
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}
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i++;
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if (msgObj.buff.indexOf('cp|') > -1) {
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msg = msg || HK.tryParse(Env, msgObj.buff.toString('utf8'));
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if (typeof msg === "undefined") { return readMore(); }
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// cache the offsets of checkpoints if they can be parsed
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if (msg[2] === 'MSG' && msg[4].indexOf('cp|') === 0) {
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cpIndex.push({
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offset: msgObj.offset,
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line: i
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});
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// we only want to store messages since the latest checkpoint
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// so clear the buffer every time you see a new one
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messageBuf = [];
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}
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}
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// if it's not metadata or a checkpoint then it should be a regular message
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// store it in the buffer
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messageBuf.push(msgObj);
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return readMore();
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}, w((err) => {
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if (err && err.code !== 'ENOENT') {
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w.abort();
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return void CB(err);
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}
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// once indexing is complete you should have a buffer of messages since the latest checkpoint
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// map the 'hash' of each message to its byte offset in the log, to be used for reconnecting clients
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messageBuf.forEach((msgObj) => {
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const msg = HK.tryParse(Env, msgObj.buff.toString('utf8'));
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if (typeof msg === "undefined") { return; }
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if (msg[0] === 0 && msg[2] === 'MSG' && typeof(msg[4]) === 'string') {
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// msgObj.offset is API guaranteed by our storage module
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// it should always be a valid positive integer
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offsetByHash[HK.getHash(msg[4])] = msgObj.offset;
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}
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// There is a trailing \n at the end of the file
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size = msgObj.offset + msgObj.buff.length + 1;
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});
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}));
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}).nThen(function () {
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// return the computed index
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CB(null, {
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// Only keep the checkpoints included in the last 100 messages
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cpIndex: HK.sliceCpIndex(cpIndex, i),
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offsetByHash: offsetByHash,
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size: size,
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//metadata: metadata,
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line: i
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});
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});
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};
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const computeMetadata = function (data, cb) {
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const ref = {};
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const lineHandler = Meta.createLineHandler(ref, Env.Log.error);
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return void store.readChannelMetadata(data.channel, lineHandler, function (err) {
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if (err) {
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// stream errors?
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return void cb(err);
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}
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cb(void 0, ref.meta);
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});
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};
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/* getOlderHistory
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* allows clients to query for all messages until a known hash is read
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* stores all messages in history as they are read
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* can therefore be very expensive for memory
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* should probably be converted to a streaming interface
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Used by:
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* GET_HISTORY_RANGE
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*/
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const getOlderHistory = function (data, cb) {
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const oldestKnownHash = data.hash;
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const channelName = data.channel;
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//const store = Env.store;
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//const Log = Env.Log;
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var messageBuffer = [];
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var found = false;
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store.getMessages(channelName, function (msgStr) {
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if (found) { return; }
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let parsed = HK.tryParse(Env, msgStr);
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if (typeof parsed === "undefined") { return; }
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// identify classic metadata messages by their inclusion of a channel.
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// and don't send metadata, since:
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// 1. the user won't be interested in it
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// 2. this metadata is potentially incomplete/incorrect
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if (HK.isMetadataMessage(parsed)) { return; }
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var content = parsed[4];
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if (typeof(content) !== 'string') { return; }
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var hash = HK.getHash(content);
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if (hash === oldestKnownHash) {
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found = true;
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}
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messageBuffer.push(parsed);
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}, function (err) {
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cb(err, messageBuffer);
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});
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};
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const getPinState = function (data, cb) {
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const safeKey = data.key;
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var ref = {};
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var lineHandler = Pins.createLineHandler(ref, Env.Log.error);
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// if channels aren't in memory. load them from disk
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// TODO replace with readMessagesBin
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pinStore.getMessages(safeKey, lineHandler, function () {
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cb(void 0, ref.pins); // FIXME no error handling?
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});
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};
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const _getFileSize = function (channel, _cb) {
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var cb = Util.once(Util.mkAsync(_cb));
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if (!Core.isValidId(channel)) { return void cb('INVALID_CHAN'); }
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if (channel.length === 32) {
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return void store.getChannelSize(channel, function (e, size) {
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if (e) {
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if (e.code === 'ENOENT') { return void cb(void 0, 0); }
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return void cb(e.code);
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}
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cb(void 0, size);
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});
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}
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// 'channel' refers to a file, so you need another API
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blobStore.size(channel, function (e, size) {
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if (typeof(size) === 'undefined') { return void cb(e); }
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cb(void 0, size);
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});
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};
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const getFileSize = function (data, cb) {
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_getFileSize(data.channel, cb);
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};
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const _iterateFiles = function (channels, handler, cb) {
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if (!Array.isArray(channels)) { return cb('INVALID_LIST'); }
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var L = channels.length;
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var sem = Saferphore.create(10);
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// (channel, next) => { ??? }
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var job = function (channel, wait) {
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return function (give) {
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handler(channel, wait(give()));
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};
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};
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nThen(function (w) {
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for (var i = 0; i < L; i++) {
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sem.take(job(channels[i], w));
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}
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}).nThen(function () {
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cb();
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});
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};
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const getTotalSize = function (data, cb) {
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var bytes = 0;
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_iterateFiles(data.channels, function (channel, next) {
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_getFileSize(channel, function (err, size) {
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if (!err) { bytes += size; }
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next();
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});
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}, function (err) {
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if (err) { return cb(err); }
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cb(void 0, bytes);
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});
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};
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const getDeletedPads = function (data, cb) {
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var absentees = [];
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_iterateFiles(data.channels, function (channel, next) {
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_getFileSize(channel, function (err, size) {
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if (err) { return next(); }
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if (size === 0) { absentees.push(channel); }
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next();
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});
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}, function (err) {
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if (err) { return void cb(err); }
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cb(void 0, absentees);
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});
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};
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const getMultipleFileSize = function (data, cb) {
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const counts = {};
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_iterateFiles(data.channels, function (channel, next) {
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_getFileSize(channel, function (err, size) {
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counts[channel] = err? 0: size;
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next();
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});
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}, function (err) {
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if (err) {
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return void cb(err);
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}
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cb(void 0, counts);
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});
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};
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const getHashOffset = function (data, cb) {
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const channelName = data.channel;
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const lastKnownHash = data.lastKnownHash;
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var offset = -1;
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store.readMessagesBin(channelName, 0, (msgObj, readMore, abort) => {
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// tryParse return a parsed message or undefined
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const msg = HK.tryParse(Env, msgObj.buff.toString('utf8'));
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// if it was undefined then go onto the next message
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if (typeof msg === "undefined") { return readMore(); }
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if (typeof(msg[4]) !== 'string' || lastKnownHash !== HK.getHash(msg[4])) {
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return void readMore();
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}
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offset = msgObj.offset;
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abort();
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}, function (err) {
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if (err) { return void cb(err); }
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cb(void 0, offset);
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});
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};
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const removeOwnedBlob = function (data, cb) {
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const blobId = data.blobId;
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const safeKey = data.safeKey;
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nThen(function (w) {
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// check if you have permissions
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blobStore.isOwnedBy(safeKey, blobId, w(function (err, owned) {
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if (err || !owned) {
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w.abort();
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return void cb("INSUFFICIENT_PERMISSIONS");
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}
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}));
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}).nThen(function (w) {
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// remove the blob
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blobStore.archive.blob(blobId, w(function (err) {
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Env.Log.info('ARCHIVAL_OWNED_FILE_BY_OWNER_RPC', {
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safeKey: safeKey,
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blobId: blobId,
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status: err? String(err): 'SUCCESS',
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});
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if (err) {
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w.abort();
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return void cb(err);
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}
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}));
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}).nThen(function () {
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// archive the proof
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blobStore.archive.proof(safeKey, blobId, function (err) {
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Env.Log.info("ARCHIVAL_PROOF_REMOVAL_BY_OWNER_RPC", {
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safeKey: safeKey,
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blobId: blobId,
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status: err? String(err): 'SUCCESS',
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});
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if (err) {
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return void cb("E_PROOF_REMOVAL");
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}
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cb(void 0, 'OK');
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});
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});
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};
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const runTasks = function (data, cb) {
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Env.tasks.runAll(cb);
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};
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const COMMANDS = {
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COMPUTE_INDEX: computeIndex,
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COMPUTE_METADATA: computeMetadata,
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GET_OLDER_HISTORY: getOlderHistory,
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GET_PIN_STATE: getPinState,
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GET_FILE_SIZE: getFileSize,
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GET_TOTAL_SIZE: getTotalSize,
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GET_DELETED_PADS: getDeletedPads,
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GET_MULTIPLE_FILE_SIZE: getMultipleFileSize,
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GET_HASH_OFFSET: getHashOffset,
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REMOVE_OWNED_BLOB: removeOwnedBlob,
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RUN_TASKS: runTasks,
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};
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process.on('message', function (data) {
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if (!data || !data.txid || !data.pid) {
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return void process.send({
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error:'E_INVAL',
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data: data,
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});
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}
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const cb = function (err, value) {
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process.send({
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error: err,
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txid: data.txid,
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pid: data.pid,
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value: value,
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});
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};
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if (!ready) {
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return void init(data.config, function (err) {
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if (err) { return void cb(err); }
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ready = true;
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cb();
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});
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}
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const command = COMMANDS[data.command];
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if (typeof(command) !== 'function') {
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return void cb("E_BAD_COMMAND");
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}
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command(data, cb);
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});
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process.on('uncaughtException', function (err) {
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console.error('[%s] UNCAUGHT EXCEPTION IN DB WORKER', new Date());
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console.error(err);
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console.error("TERMINATING");
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process.exit(1);
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});
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